Used Optimizer Edger for sale (3,143)
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Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Symons cone crusher/mobile crusherSpring cone crusher PYB900, PYD900
Call
Condition: new, Year of construction: 2025, The PYB series spring cone crusher is a traditional cone crusher developed by introducing advanced technology from abroad. Here are some key features and information about the PYB spring cone crusher:
1. Structure and Working Principle:
- The crusher consists of an outer cone (mantle) and an inner cone (concave), with a crushing chamber in between.
- The outer cone is fixed, and the inner cone is eccentrically oscillated to crush the material.
2. Spring System:
- The crusher is equipped with a spring system to provide overload protection. When non-crushable materials enter the crushing chamber, the spring is compressed, allowing the material to pass through without causing damage to the crusher.
3. Adjustable Discharge Opening:
- The discharge opening can be adjusted to control the size of the crushed product.
4. Application:
- PYB spring cone crushers are widely used in industries like metallurgy, construction, road building, chemistry, etc.
- They are suitable for crushing hard and medium-hard ores and rocks, such as iron ore, copper ore, limestone, quartz, granite, basalt, diabase.
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5. Advantages:
- Overload protection through the spring system.
- Adjustable discharge opening allows for flexibility in the size of the crushed product.
- Simple structure and reliable performance.
6. Disadvantages:
- Compared to more modern cone crusher designs, the spring cone crusher may have limitations in terms of efficiency and energy consumption.
7. Maintenance:
- Regular maintenance is required to ensure optimal performance and longevity.
8. Model Names:
- Different models in the PYB series may have variations in specifications, such as PYB600, PYB900, PYB1200, etc., indicating the diameter of the cone.
9. Manufacturer:
- Various manufacturers produce PYB series spring cone crushers. It's important to choose a reputable manufacturer with a history of producing reliable and quality equipment.
Before selecting a crusher, it's advisable to consider the specific requirements of your project and compare the features of different models. Additionally, check the manufacturer's reputation and customer reviews to ensure the reliability and performance of the equipment.
Listing
Dong Guan Shi
3,593 km
Industrial robot/Collaborative Robot
Universal RobotsUR5
Call
Condition: used, Year of construction: 2020, The UR5 robot is a 6-axis robot arm, it has a payload of 5 kg and a reach of 850 mm
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4 units of UR5 collaborative robots are currently available for purchase. Prior to shipment, each unit will undergo thorough testing, cleaning, and professional packaging to ensure optimal condition upon arrival.
Listing
Romania
5,627 km
Fiber Laser Cutting Machine
MazakOPTIPLEX 3015 FIBER II
Call
Year of construction: 2015, operating hours: 13,792 h, condition: ready for operation (used), General Data
Machine weight 8000 kg
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Control Unit
Brand MAZATROL
Model Preview 3
Main Drive
Laser power 4.0 kW
Workpiece
Workpiece weight 900 kg
Table
Outer length 3000 mm
Outer width 1500 mm
Table load 900 kg
This Fiber Laser Cutting Machine was manufactured in 2015. It features a 4.0 kW IPG Fiber Laser and MAZATROL PREVIEW 3 CNC Control, optimized for precision in cutting mild steel up to 9.0 mm and stainless steel up to 16.0 mm. The machine supports a table size of 3000 mm x 1500 mm and a max workpiece weight of approximately 900 kg. If you are looking to get high-quality cutting capabilities, consider the Mazak OPTIPLEX 3015 FIBER II machine we have for sale. Contact us for more information.
Application Types
Cutting
Listing
Fevziçakmak
4,844 km
Sheet Metal Straightener / Leveler
TFON MACHINE CO.Leveling Machine - TF-S 3513
Call
Condition: new, Year of construction: 2025, -Tfon Leveltech® S-3513 Leveling Machine
-The Tfon Leveltech® S-3513 is a precision leveling machine optimized for ultra-thin materials, combining advanced electromechanical controls with easy operation for consistent, high-quality flattening results.
-Key Specifications:
Material Thickness: 0 – 0.3 mm
-Maximum Material Width: 1.300 mm
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Minimum Material Length: 70 mm
Quick Change System for Straightening Rollers: Standard.
Flattening Gap Adjustment: Electromechanical / PC Controlled
Machine Dimensions (L × W × H): 2,685 × 1,585 × 1,820 mm.
Total Weight: 5.000 kg.
Listing
Русе
5,506 km
Gear hobbing machine
CHURCHILLU 3615
Call
Condition: ready for operation (used), Year of construction: 1966, operating hours: 1,00,000 h, functionality: fully functional, workpiece weight (max.): 11,500 kg, feed length X-axis: 483 mm, feed length Y-axis: 381 mm, feed length Z-axis: 521 mm, rotary table diameter: 737 mm, table diameter: 737 mm, total length: 3,960 mm, gear diameter: 914 mm, total height: 2,300 mm, total width: 2,130 mm, input frequency: 50 Hz, workpiece diameter (max.): 914 mm, type of input current: three-phase, spindle speed (max.): 200 rpm, spindle speed (min.): 50 rpm, grinding spindle motor power: 7,500 W, overall weight: 8,000 kg, rotational speed (max.): 300 rpm, rotational speed (min.): 65 rpm, Machine Description — Churchill U/PH 3615 Gear Hobbing Machine
The Churchill U/PH 3615 is a heavy-duty gear hobbing machine designed for the precise and efficient production of spur and helical gears. Built with a robust and rigid structure, this machine delivers excellent stability and high cutting performance, even under demanding industrial conditions.
This machine features a vertical gear hob spindle with infinitely variable spindle speed, allowing operators to optimize cutting speed for various gear sizes and materials. The solid construction minimizes vibration and ensures consistent gear quality throughout extended production runs.
The hobbing machine is capable of handling large workpieces up to 914 mm in diameter and supports a wide range of gear widths, making it suitable for both medium and heavy machining tasks. The machine’s substantial rotary table (762 mm diameter) and extended travel ranges offer flexibility for different gear configurations.
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Powered by a 10 HP (≈7.5 kW) main drive motor, this unit provides reliable power for stable cutting. The horizontal travel of the worktable is 483 mm, while the vertical travel of the tool slide is 381 mm, allowing precise movement control in X and Y axes. The hob slide offers 127 mm travel in the Z axis, enabling effective depth control during gear cutting.
The hob spindle speed is continuously adjustable between 50 and 200 rpm, making it adaptable to different hobbing conditions. Vertical feed rates range from 0.38 to 5 mm per revolution, allowing smooth and controlled engagement of the hob with the workpiece.
Constructed in 1966 and designed for durability, the Churchill U/PH 3615 remains a reliable and fully functional machine capable of handling large industrial gear production. Its sturdy frame, accurate drives, and flexible feed options make it a preferred choice for workshops seeking dependable gear manufacturing performance.
Overall, the Churchill U/PH 3615 offers:
-Heavy-duty, industrial-grade build quality
-Large part capacity and flexible travel ranges
-Adjustable spindle speeds and feed rates
-Reliable operation for continuous gear production
Discover more used machines
Listing
Schwanberg
6,382 km
Panel saw
SCM gabbianip90
Call
Condition: new, SCM gabbiani p90 panel dividing saw - exhibition machine - special price!
Technical data:
Saw blade projection mm 90
Worktable height mm 950
Number of collets 5 as standard
CUTTING DIMENSIONS mm 3300 x 3200
Variable saw carriage speed m/min 6 - 60
Variable pusher speed m/min 0 - 60
Saw blade motor power kW 7.0
Speed rpm 4650
Saw blade diameter mm 340
Saw shaft diameter of main saw blade mm 80
Scoring motor power kW 1.5
Speed rpm 5850
Scoring blade diameter mm 200
Scoring blade shaft diameter mm 80
Compressed air requirement NL/min 300
Compressed air bar 7.0
Extraction air requirement m3/h 2440
Extraction air speed m/sec 20
Suction nozzle diameter mm 4x120
including the following options:
590134 Cutting depth 3200 mm (version 33)
OF0263 eye-M control panel with integrated PC
590261 Cut editor
OF0454 Maestro pattern
590271 Maestro connect: preparation without "gateway" for subsequent installation
OF0457 Human-machine interface software (HMI) MAESTRO ACTIVE
590258 Rear table with castors, on the side of the longitudinal stop
590246 Fixed air cushion table 2500x800 mm with castors and reinforced fan
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590239 2 x movable air cushion table 1500x600 mm with castors and reinforced fan
590244 Saw carriage with independent stroke control of the saw and scoring saw blade
590245 Optimized vertical stroke of the saw blade on 2 levels (medium/maximum)
590143 Device for grooves with manual height adjustment of the saw blade
590241 Execution of grooves (feed/return of the saw carriage)
590164 Double lateral automatic aligner
301230 Foot switch for starting and stopping the work cycle
590044 Compact labeling unit - printing of labels with barcode
590144 4 x additional clamps
900088 Magnetic tape monitoring of the pusher position
102015 European safety regulations (CE mark)
109993 MACHINE LANGUAGE: German
Listing
Zheng Zhou Shi
3,684 km
Drying system
Single & Triple pass rotary dryerFor wood, sawdust,coal,fertilizer drying
Call
Condition: new, Year of construction: 2025, functionality: fully functional, power: 11 kW (14.96 HP), A triple pass rotary drum dryer is a type of industrial dryer that is used to reduce or remove moisture from a material. It gets its name from the three rotating drums through which the material passes, each with a different purpose in the drying process. This type of dryer is commonly used in the production of various bulk solids, including minerals, agricultural products, and biomass.
Here are the key features and components of a triple pass rotary drum dryer:
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1. Triple Pass Design:
- The material being dried passes through three rotating drums or cylinders, hence the term "triple pass." Each drum serves a specific purpose in the drying process.
2. Material Flow:
- The material enters the dryer and first passes through the innermost drum. After the initial drying phase, it moves to the middle drum and then to the outer drum, undergoing additional drying in each pass.
3. Heat Source:
- Heat is typically provided by a combustion system, such as a burner or furnace, located at one end of the drum dryer. The hot gases generated by the combustion process flow through the rotating drums, transferring heat to the material.
4. Air Flow:
- The dryer is designed to optimize air flow through the drums, ensuring efficient drying. In a triple pass design, the material and hot gases move counter-currently through the three drums, enhancing heat transfer and drying efficiency.
5. Lifting Flights or Lifters:
- Lifters are internal components inside the drums designed to lift and cascade the material as it rotates. This movement promotes good heat transfer and uniform drying.
6. Retention Time:
- The triple pass configuration allows for an extended retention time of the material in the drying system. This longer exposure to heat enhances the drying efficiency, making the triple pass rotary drum dryer suitable for materials with high moisture content.
7. Cooling Section:
- After the material completes the three passes and reaches the end of the drum dryer, a cooling section may be included to reduce the temperature of the dried material before it is discharged.
8. Applications:
- Triple pass rotary drum dryers are used in various industries, including agriculture (drying crops like grains), minerals (drying ores or concentrates), and biomass (drying wood chips or other organic materials).
9. Efficiency and Energy Consumption:
- Triple pass rotary drum dryers are known for their high efficiency due to the extended drying time and effective heat transfer. However, they may have higher energy consumption compared to single or double pass dryers.
When selecting a triple pass rotary drum dryer, it's essential to consider factors such as the type of material to be dried, required moisture reduction, and overall processing requirements. Proper design and operation are crucial to achieving optimal drying performance.
Listing
Tatabánya
6,150 km
Liquid tempering unit, tool-temp 138
Tool-TempTT138 B SPEZ
Call
Condition: ready for operation (used), Tempering unit, liquid tempering unit, industrial tempering unit, Thermolator, Tool-Temp TT138 B SPEZ, used machine
Manufacturer: Tool-Temp
Type: TT138 B SPEZ
Overall dimensions: 1240 × 480 × 1400 mm (incl. castors)
Weight: Approx. 180 kg (empty)
Properties:
Self-optimizing electronic microprocessor controller (MP-888) with digital display (set and actual temperature)
Automatic temperature monitoring
Electronic flow control with digital display and automatic minimum-flow control
Pressure-increasing pump
Temperature measurement at the mould
Pressure relief system
Leak stopper and mould drainage using compressed air
Automatic filling (automatic medium fill)
Max. temperature range:
Water: up to 160 °C
Heating capacity:
24 kW — switchable in stages (6/18), automatic switching of required heating power
Cooling capacity:
Indirect: approx. 85 kW at 160 °C
Direct: approx. 60 kW at 60 °C
Pump capacity:
Motor: 1.8 kW
Pressure mode: max. 6.5 bar | max. 75 l/min
Vacuum mode: max. 8 m H₂O
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Seal-less magnetic coupling drive (no mechanical seal)
Connections:
Medium (water): ¾" BSP female thread
Cooling water inlet: 1" BSP female thread (with water filter)
Cooling water outlet: 1" BSP male thread
Compressed air (for mould drainage/venting): ¼" BSP female thread
Listing
Obertraubling
6,624 km
Box wagon high + long
Mercedes-BenzSprinter 314 L2H2 Ladebordwand Bär Klima
Call
Condition: excellent (used), functionality: fully functional, mileage: 38,503 km, power: 105 kW (142.76 HP), fuel type: diesel, gearing type: mechanical, wheelbase: 3,665 mm, overall weight: 3,500 kg, empty load weight: 2,535 kg, maximum load weight: 965 kg, first registration: 11/2020, next inspection (TÜV): 09/2026, emission class: euro6, color: silver, number of seats: 3, number of previous owners: 1, machine/vehicle number: SLS8400, Equipment: ABS, additional headlights, air conditioning, airbag, central locking, electronic stability program (ESP), immobilizer system, navigation system, onboard computer, power assisted steering, second-hand vehicle warranty, sliding door, soot filter, tail-lift, truck registration, 229L Stuttgart
9775 Paint colour Iridium Silver MB 9775
A50 Front axle with increased load capacity
AI1 Control code rear axle, crown gear 215
AR2 Axle ratio I = 3.923
BH6 Control code hydro aggregate variant 5
BK1 Control code wheel brake configuration 1
C6L Multifunction steering wheel
C907 SERIES 907 TRANSPORTER VS30
CB8 Stabilisation Level II
CL1 Steering wheel adjustable in tilt and height
CW2 Omission of vehicle lowering
D03 High roof
D50 Continuous partition
E1D Digital radio (DAB)
E1E Navigation
E1G Live Traffic capability
E1U USB socket 5 V
E2I Auxiliary battery for retrofit consumers, interior
E2N Control Pro-Features in NTG6
E36 Separation relay for additional battery
E3J Pre-installation switch panel
E3M MBUX multimedia system with 7-inch touchscreen
F3F Passenger-optimized shift console
F68 Heated and electrically adjustable exterior mirrors
F907 SERIES 907 TRANSPORTER VS30
FKA Panel van
FR8 Reversing camera
GD8 6-speed manual transmission ECO Gear
H20 All-round heat-insulating glass
HH9 Semi-automatic climate control Tempmatic
HI1 Climate zone 1 (cold/comfort)
IC1 Series C907/C910 Sprinter
IE0 Series C907 VS30 RWD
IG4 Standard
IL5 Left-hand drive
IL6 Metallic paint
IR4 Wheelbase 3665 mm (BM-forming code)
IT4 3.5 tonner
J10 Tachometer km/h
J58 Belt warning system for driver's seat
J65 Outside temperature display
JA8 Crosswind Assist
JG0 Gearshift indicator
JH3 Communication module (LTE) for digital services
JI7 Initial running distance maintenance interval 60,000 km
K13 Main tank 71 litres
KP6 Emission control SCR Generation 3
LA2 Headlamp assistant
LB5 Third brake light
LC2 LED light strip in load compartment
M40 Alternator 14V/200A
MI2 Engine OM651 DE 22 LA 105 kW (143 hp)
MJ8 ECO start/stop function
MP6 Engine version Euro VI
MQ0 OBD (On-board diagnostics) Level D
OH2 HU Freshup 2
PH1 Master code tail lift Bär Cargolift
Q11 Longitudinal member reinforcement
RH2 Tyres 235/65 R16 C
RX5 Wheel brand Maxion Wheels
S22 Armrest for driver's seat, ISO-fix (child seat attachment system)
S23 Dual passenger seat
SA5 Driver airbag
SB1 Comfort driver's seat
SK2 Seat occupancy detection driver's seat
T16 Sliding door right
T77 Grab handle, load compartment sliding door at partition
T86 Grab handle on rear right corner pillar
V42 Lashing rails side wall at belt rail
V43 Wooden floor
V85 Smoker package
V94 Cable duct on side wall
V95 Cable duct at rear portal
VA2 Interior panelling load compartment to roof height (wood)
VF7 Fabric Maturin black
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W54 Rear doors, twin-leaf, 270 degrees
XG7 Without uprating/downrating 3500 kg
XM1 Noise reduction
XM4 Acoustic package
XV1 Reference weight at least 2381 kg required
YK4 Tie-down straps for lashing rails
Z1N Approval N1
Z2E Country version EU-EFTA-UK
Z4V Production Düsseldorf
Z7K Fleet Comfort Package
Z7L Fleet Load Compartment Package
ZM0 Panel van
Listing
Fevziçakmak
4,844 km
Sheet metal deburring machine
TFONSurfacer® RRBC (Tailored Machines)
Call
Condition: new, Year of construction: 2025, -Custom-Made Machines Tailored to Your Production Needs
-Our custom-made machines are meticulously designed and engineered to meet the unique demands of your production processes. Whether your focus is finishing, oxide removal, or radius edge rounding, these machines deliver outstanding precision and performance.
-Finishing:
Achieve smooth, high-quality finishes on a wide range of materials, ensuring a consistently professional, polished appearance
-Oxide Removal:
Effectively eliminate surface oxides to provide a clean, contaminant-free surface—essential for further processing or coating applications.
-Radius Edge Rounding:
Precisely round edges to your specified radius, enhancing both safety and the overall quality of your finished products.
Customization Options
Each machine is tailored specifically to your requirements, offering flexibility in:
Processing Speeds: Adjustable to match your varying production demands
Special Features: Options include dust and fume extraction systems, adjustable pressure settings, and programmable configurations designed to optimize your workflow
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Built for Durability.
Constructed with longevity in mind, our custom machines are built to perform reliably through extended production cycles. Whether for small-scale projects or high-volume industrial applications, these machines provide exceptional results, year after year
Listing
Schwanberg
6,382 km
Band saw, band resaw
CENTAUROSupercut 80
Call
Condition: new, Thin layer from 2 mm thickness
Maximum cutting accuracy up to ± 0.15 mm
Minimal kerf, cutting thickness from 1.3 mm
Ideal for the cutting of dried and wet wood or alternative materials
Surface of the thin layer ready for gluing without need of further processing steps
Friendly user electronic control
Two programmable speeds of the carpet (0-30 m/min) for the best cutting quality and to safeguard the blade life
Optical sensor to start cutting cycle and speed change
Ground table
“Flexam” belt feeding for the best performance
6 rubber idler rollers adjustable in height, for opening/closing to ensure the best pneumatic pressure on the workpiece during feeding
and cutting
Oleo-pneumatic tensioning of the blade for better cutting performance
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Top and bottom ‘’Chaco’’ blade-guides which guarantee the best stability blade during cutting
Internal/external lubrication of the blade to remove residues of resins and chips
4 dust extraction to optimize the suction of dust and chips
Cutting height of 400 mm (500 mm optional)
Cutting width up to 400 mm
High quality powerful motor kW 15 (HP 20)
Ethernet connection for on line service
Carbide or stellite blades for best cutting performance
DM of saw wheels mm 800
Max. cutting height mm 400
fixed working table mm 1290 x 800
Max. saw blade width mm 54 x 0,9
Max. & min. saw blade length mm 5530 / 5380
motor Kw 15 (HP 20)
suction connection nr 2x Ø 120 & 1 x Ø 100
compressed air requirement bar 6/ 27 ltd
machine weight Kg 880
feed speed m/min 0 - 30
height of feeder belt mm 300
length of feeder mm 750
feeder roller DM mm 160
Max. feeder opening mm 200
Max. fence opening mm 200
feeder speed var. mt/ min 0-30
Listing
Zheng Zhou Shi
3,684 km
Powder equipment for sand & micro powder
Mingyuan Powder production equipment1.83X11m Micro Powder Ball Grinding Mill
Call
Condition: new, Year of construction: 2025, functionality: fully functional, Ball Mill with Air Classifier: The Ultimate Powder Processing Equipment
In the world of industrial powder production, precision, efficiency, and flexibility are paramount. Whether producing ultra-fine powders for high-tech applications or coarser materials for everyday products, the combination of a Ball Mill with Air Classifier offers unparalleled performance. This dynamic duo provides a comprehensive solution for industries ranging from chemicals and ceramics to paints, plastics, and pharmaceuticals.
This article introduces the ball mill with an air classifier, explores its applications, and highlights the key advantages of this essential powder equipment.
General Introduction to Ball Mill with Air Classifier
ball mill with air classifier is an advanced grinding and classification system designed for efficient, high-quality powder production. The system consists of two main components:
1. Ball Mill: A cylindrical grinding device filled with grinding media (such as steel balls) that operates by rotating around its axis. The raw material is reduced to smaller particle sizes through impact and friction within the mill.
2. Air Classifier: A sophisticated device that separates particles based on size using airflow. Fine particles are carried away, while coarser particles are returned to the ball mill for further grinding.
The combination of these two components creates a closed-loop system that ensures consistent particle size distribution, high efficiency, and minimal waste.
Applications of Ball Mill with Air Classifier
The ball mill with air classifier is a versatile solution used in a wide range of industries to process various materials. Key applications include:
1. Mineral Processing
The system is widely used in the production of minerals such as calcium carbonate, quartz, feldspar, and talc. These finely ground minerals are essential for industries like ceramics, paints, plastics, and rubber.
2. Cement and Construction Materials
Cement and other construction materials require precise particle size control for optimal performance. The ball mill with air classifier ensures uniformity and enhances the quality of construction materials.
3. Chemicals and Pharmaceuticals
Fine powders play a critical role in the chemical and pharmaceutical industries. From active pharmaceutical ingredients (APIs) to industrial chemicals, this system delivers the consistent quality required for these applications.
4. Paints, Coatings, and Pigments
The production of paints and coatings demands ultra-fine powders to achieve smooth finishes and vibrant colors. The ball mill with air classifier produces high-quality powders for superior results.
#### 5. Food and Agriculture
Food-grade powders such as additives, preservatives, and agricultural products like fertilizers can be efficiently processed using this system, meeting stringent regulatory requirements.
Industries That Benefit from Ball Mill with Air Classifier
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Several industries rely on the capabilities of this system to produce fine powders with specific characteristics:
- Ceramics: Produces high-purity powders for tiles, insulators, and advanced ceramics.
- Rubber and Plastics: Creates fillers and additives for improved durability and performance.
- Pharmaceuticals: Ensures consistent particle size for APIs and excipients.
-Construction: Delivers materials for concrete, plaster, and other applications.
Listing
Obertraubling
6,624 km
Minibus
Mercedes-BenzVito Tourer 114 CDI Pro 4x4 lang 9-Sitze
Call
Condition: good (used), functionality: fully functional, mileage: 90,126 km, power: 100 kW (135.96 HP), fuel type: diesel, gearing type: automatic, overall weight: 3,200 kg, first registration: 05/2023, next inspection (TÜV): 07/2027, emission class: euro6, color: black, number of seats: 9, number of previous owners: 1, machine/vehicle number: RYA289, Equipment: ABS, air conditioning, airbag, all wheel drive, car registration, central locking, cruise control, electronic stability program (ESP), immobilizer system, navigation system, onboard computer, parking sensors, power assisted steering, sliding door, soot filter, A1O Rear axle shaft make IFA
BB6 Brake booster failure compensation
BB7 CO2-optimized brake system
BH1 Hold function
70 Pedestrian protection
CL1 Steering wheel adjustable for tilt and height
CL4 Multifunction steering wheel with trip computer
CM2 Bumpers and attachments painted in body color
CU4 Aerodynamics package
E07 Hill start assist
E1D Digital radio (DAB)
E2R Radio generation 2
E34 Buffer battery for starting process
EA4 Audio 40
ED4 AGM battery 12 V 92 Ah
EL9 2-way speakers front and rear
EW6 Pre-installation for Remote Services Plus
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EY2 Pre-installation for Live Traffic Information
EY5 Mercedes-Benz emergency call system
EY6 Breakdown management
EZ8 PARKTRONIC
F61 Interior rear-view mirror
F66 Lockable glove compartment
F68 Heated and electrically adjustable exterior mirrors
FKB Combi vehicle
FP4 Chrome package interior
G43 9G-Tronic
H00 Warm/cold air duct to passenger compartment
H20 Heat-insulating glazing all around
HH9 Semi-automatic climate control TEMPMATIC
HI1 Climate zone 1 (cold/comfort)
HX1 Refrigerant R-1234Yf
HZ0 Electric auxiliary heater
HZ7 Semi-automatic climate control, TEMPMATIC in rear
IL6 Metallic paint
IN2 Wheelbase 3200 mm, long overhang
J55 Seatbelt warning for passenger seat
JA1 Warning lamp for windshield washer fluid level
JH3 Communication module (LTE) for digital services
JK3 Instrument cluster with pixel matrix display
JW8 Attention Assist
JX2 Maintenance interval 40,000 km
K51 Misfuel protection
KB5 Main tank 70 liters
KP7 SCR emission control Generation 4
LA2 Light assistant
LD9 Interior light(s) in rear
LE1 Adaptive brake light
MJ8 ECO start-stop function
MK8 Speed limiter 210 km/h
MO6 Emission class Euro 6D M/N1 Gr. II
MS1 Cruise control
MU2 Engine OM654 DE 20 LA 100 kW (136 hp)
MX0 BlueEFFICIENCY package
RY2 Tire pressure monitoring on front and rear axles, wireless
S00 Airbag control unit Generation AB12
S02 Driver seat
S23 Front passenger seat, double seat
SA-Codes
SA6 Airbag front passenger
SH1 Thorax-pelvis sidebag driver
SH9 Windowbags for driver and passenger
T14 Active lock for sliding door
T70 Child safety lock on passenger compartment doors
T74 Grab handle for entry
T75 Grab handles for entry driver and passenger
U63 Passenger compartment seating: 3-seat bench, 2nd row
U71 3-seat bench 1st row with foldable outer seat
UR3 Quick-release seat attachment in rear
V23 Deluxe interior trim
V36 Roof liner
V41 TPO plastic flooring in passenger compartment
VF4 Caluma black upholstery
VH1 Grab handles in rear
VV9 Mounting points in roof frame
W16 Fixed window front left in sidewall/sliding door
W17 Fixed window front right in sidewall/sliding door
W29 Fixed rear window
W50 Double rear door, 180°, without window
W70 Privacy glazing in rear, dark glass
W78 Window in tailgate/rear door with wiper and washer
WM0 Model update control code
WN0 Factory control code
X30 Registration certificate Part 2
X99 Manufacturer Mercedes-Benz AG
XA5 Weight variant 3,200 kg
XC9 COC papers
XI3 Model year change G3-I
XM0 Model update
XO9 Mercedes-Benz Mobilovan with DSB and GGD
Y10 First aid kit
Y44 Warning triangle
Z0A Key account group 1
Z3R Premium tire protection (3 years)
Z42 Passenger car registration
ZC5 Sales indicator 0
ZG2 Permanent all-wheel drive
ZM4 Combi vehicle
ZQ8 Tourer PRO
Listing
Fevziçakmak
4,844 km
Sheet Metal Straightener / Leveler
TFON MACHINE CO.Leveling Machine - TF-M 5516
Call
Condition: new, Year of construction: 2025, -Tfon Leveltech® TF M-5516 Leveling Machine
Engineered for precision leveling, the TF M-5516 efficiently handles material thicknesses from 1 to 15 mm with advanced control features for optimal performance and ease of use.
-Key Specifications
-Material Thickness: 1 – 15 mm
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-Maximum Material Width: 1,600 mm
Minimum Material Length: 110 mm.
Quick Change System for Straightening Rollers: Standard
Flattening Gap Adjustment: Servo Hydraulic / PC Controlled
Overload Protection: Standard
Control Screen: Touchscreen
Machine Size (L × W × H): 3,500 × 2,905 × 1,950 mm
Total Weight: 19.000 kg.
Listing
Zheng Zhou Shi
3,684 km
Construction machine/ sand gravel making
Sand gravel fabrication plant50-600 t/h sand gravel crushing plant
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Condition: new, Sand Gravel Fabrication Plant: Essential Solution for Modern Construction Needs
In the construction and infrastructure industry, high-quality sand and gravel are critical raw materials for creating concrete, asphalt, and other foundational elements. A Sand Gravel Fabrication Plant is the cornerstone of producing these materials efficiently and at scale. With advanced technology, versatility, and scalability, these plants cater to a wide range of projects, ensuring consistent quality and meeting the growing demand for construction materials.
This article explores the general introduction, features, and applications of sand gravel fabrication plants, including both stationary and mobile systems.
General Introduction to Sand Gravel Fabrication Plants
A sand gravel fabrication plant is a specialized facility designed to process raw materials such as sand, gravel, and aggregates into construction-grade products. These plants combine various equipment, including crushers, screens, conveyors, washers, and storage units, to convert raw materials into ready-to-use aggregates.
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There are two primary types of sand gravel fabrication plants:
Stationary Fabrication Plants:
Fixed installations designed for high-capacity production.
Ideal for large-scale operations and long-term projects.
Mobile Sand Gravel Fabrication Plants:
Portable systems that can be transported to different project sites.
Perfect for temporary operations and projects in remote locations.
Both types are equipped with advanced machinery and automation systems to ensure high efficiency, precision, and sustainability.
Applications of Sand Gravel Fabrication Plants
Sand gravel fabrication plants are indispensable across multiple industries due to their ability to produce high-quality aggregates. Key applications include:
1. Construction and Infrastructure
Produces sand and gravel for concrete, asphalt, and base materials.
Supports large-scale infrastructure projects such as highways, bridges, airports, and railways.
2. Residential and Commercial Development
Supplies aggregates for building foundations, driveways, landscaping, and drainage systems.
Plays a vital role in residential housing and commercial property construction.
3. Road Construction
Provides high-quality crushed stones and sand for roadbeds, pavements, and highways.
Ensures durability and longevity of road surfaces.
4. Mining and Quarrying
Efficiently processes mined materials into usable aggregates.
Enhances productivity in quarrying operations with optimized material handling systems.
5. Environmental Restoration
Supplies aggregates for erosion control, land reclamation, and shoreline protection projects.
Facilitates sustainable environmental rehabilitation efforts.
6. Recycling of Construction Waste
Mobile sand gravel fabrication plants are ideal for recycling concrete and asphalt.
Converts waste materials into usable aggregates, reducing landfill burden and promoting sustainability.
Stationary vs. Mobile Sand Gravel Fabrication Plants
Stationary Fabrication Plants
Best For: Long-term, large-scale projects and industrial operations.
Advantages:
High-capacity production.
Robust and durable structures.
Advanced automation for minimal manual intervention.
Listing
Fevziçakmak
4,844 km
Sheet metal beveling machine
TFON Bevel Wizard®️ Bevelling MachineTFON Bevel Wizard®️ TF - C 8010
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Condition: new, Year of construction: 2025, -Tfon Bevel Wizard® Linear
-Precision Beveling for Linear & Non-Linear Applications.
-The TFON Bevel Wizard® Linear is a high-performance beveling solution designed to deliver exceptional accuracy on both straight and contoured sheet edges. Engineered with flexibility at its core, it features an advanced Trace Tracking System that automatically adjusts to variations in material thickness and geometry—ensuring precise and consistent edge processing even for complex parts.
-Key Features
🔹 Advanced Trace Tracking System:
Intelligently detects and adapts to diverse edge shapes and contours in real time.
🔹 Wide Beveling Range:
Adjustable bevel angles from -30° to +80°, ideal for a broad range of applications
- Optimized for Large Workpieces
Capable of processing materials up to 12,000 mm in length and 100 mm in thickness.
- Industrial-Grade Durability:
Built to last with a solid 10,000 kg frame for long-term reliability.
🔹 Superior Surface Finish:
Delivers a high-quality finish with a consistent Emery Band Rotation Speed of 30 m/min and a Ø135 mm contact wheel.
-Technical Specifications:
Beveling Angle Range: -30° to +80°
-Material Thickness: 4 – 100 mm
-Minimum Material Width: 250 mm
Minimum Material Length: 250 mm
Maximum Material Length: 12,000 mm
Part Feed Speed: 1.5 – 5 m/min
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Part Completion Speed: 3 meters/day
Maximum Part Indentation: Ø400 mm
Emery Band Rotation Speed: 30 m/min
Contact Wheel Diameter: Ø135 mm
Emery Band Drum Diameter: Ø400 mm
Machine Weight: 10,000 kg
Engineered for precision. Built for performance. Designed for industrial excellence
Tfon Bevel Wizard® Linear — Where Accuracy Meets Efficiency.
Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
VSI Sand maker / Sand making machineVertical Shaft Impact Crusher for sand
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Condition: new, functionality: fully functional, Year of construction: 2025, The VSI (Vertical Shaft Impactor) sand making machine is a type of crusher designed to accelerate the crushing of aggregate and produce cubical-shaped sand. It is widely used in the field of construction, mining, and other similar industries. Here are key features and information about VSI sand making machines:
1. Working Principle:
- The VSI sand making machine operates on the principle of stone impacting stone or stone impacting iron. Material is fed into the center of the rotor, which accelerates to high speed to throw the material outward against a wear-resistant lining.
2. Rotor and Crushing Chamber:
- The rotor is a crucial part of the VSI machine and is often designed with multiple pockets to facilitate material throwing and crushing.
- The crushing chamber is lined with wear-resistant materials to endure the impact and abrasion during the crushing process.
3. Feedstock Control:
- The feedstock (material to be crushed) can be controlled using a variable speed control system, allowing for adjustments to achieve the desired particle size.
4. Material Types:
- VSI machines are suitable for processing various materials, including hard and abrasive materials such as rocks, ores, and minerals.
5. Cubical Shaping:
- One of the significant advantages of VSI machines is their ability to produce cubical-shaped end products, which is desirable for high-quality concrete and asphalt production.
6. Adjustable Discharge:
- The machine usually has an adjustable discharge opening, allowing for customization of the final product size.
7. Sand Production:
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- VSI sand making machines are primarily used to produce manufactured sand (M-sand) and crushed sand, which are essential components in the construction industry.
8. Maintenance:
- Regular maintenance is required to ensure optimal performance and extend the machine's lifespan. This includes checking wear parts, lubrication, and addressing any issues promptly.
9. Variations:
- Different manufacturers may offer variations of VSI machines with unique features or specifications. Common variations include open rotor and closed rotor designs.
10. Environmental Considerations:
- VSI sand making machines are generally considered environmentally friendly as they produce less dust and noise compared to traditional crushers.
11. Manufacturers:
- Well-known manufacturers produce VSI sand making machines, and it's crucial to choose a reputable supplier with a track record of providing reliable equipment.
When considering a VSI sand making machine, factors such as feed size, capacity, and the desired end product specifications should be taken into account. Additionally, check the reputation of the manufacturer, and consider customer reviews and feedback regarding the specific model you are interested in.
Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Mingyuan Small mobile jaw crusherMobile Diesel jaw crusher 250x400
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Condition: new, functionality: fully functional, power: 11 kW (14.96 HP), Year of construction: 2025, A diesel jaw crusher PE250X400 with a screen typically refers to a mobile jaw crusher equipped with a diesel engine that can be used for primary crushing of various raw materials, and it includes a screening system for separating the crushed material into different sizes. Here are key features and information about such a configuration:
1. Diesel Engine:
- The diesel engine provides the power for the jaw crusher, making it suitable for locations where electric power may not be readily available or practical. Diesel engines are known for their durability and reliability.
2. Jaw Crusher (PE250X400):
- The "PE250X400" indicates the opening size of the jaw crusher in millimeters. In this case, the jaw crusher has an inlet opening of approximately 250mm x 400mm, allowing it to crush various materials with different sizes.
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3. Screening System:
- The inclusion of a screen allows the crushed material to be separated into different sizes based on particle size. This is particularly useful for producing various grades of final products.
4. Mobile Configuration:
- A mobile jaw crusher with a diesel engine and screen is often mounted on a mobile chassis, making it easy to move from one location to another. This mobility is especially beneficial for applications in construction sites or quarry operations.
5. Material Handling:
- The raw material is fed into the jaw crusher, where it is crushed by the reciprocating motion of the movable jaw against the fixed jaw. The crushed material then passes through the screen, and different-sized particles are discharged accordingly.
6. Adjustable Output Size:
- The jaw crusher typically has an adjustable discharge setting, allowing operators to control the size of the final crushed material.
7. Applications:
- Diesel jaw crushers with screens are commonly used in construction, mining, and quarrying applications for processing various materials such as concrete, gravel, rock, and other aggregates.
8. Maintenance and Operation:
- Regular maintenance of the diesel engine, jaw crusher components, and the screen is necessary to ensure optimal performance and longevity.
9. Fuel Efficiency:
- Diesel engines are generally known for their fuel efficiency, making them suitable for applications where a reliable power source is required without access to electrical grids.
When considering a diesel jaw crusher with a screen, it's important to evaluate factors such as the required capacity, material hardness, and the desired final product specifications. Additionally, choose a reputable manufacturer known for producing reliable and high-quality mobile crushing and screening equipment.
Listing
Zheng Zhou Shi
3,684 km
Roll forming line
ball grinding mill for mining &fine sandsilica/Barite/limestone powder plant
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Condition: new, Year of construction: 2025, power: 300 kW (407.89 HP), A ball mill is a key equipment in the grinding process of barite. It is designed to grind and blend solid or hard materials into smaller pieces, particularly powder. In a barite grinding plant, ball mill is often used for grinding barite into an ultrafine powder for various applications.
Here are key features and aspects of a ball mill used for barite grinding in a plant:
1. Mill Structure:
- The ball mill for barite grinding typically consists of a horizontal cylindrical shell with ends that are flanged and bolted on. The ends may contain openings for feeding and discharging the barite.
2. Grinding Media:
- Steel or ceramic balls are commonly used as grinding media in the ball mill. The grinding media helps in the grinding process by reducing the size of the barite particles.
3. Rotation:
- The mill rotates on its horizontal axis. The rotational motion of the mill, driven by a motor, causes the grinding media to cascade and grind the barite.
4. Feed and Discharge:
- Barite is typically fed into the ball mill through a hopper or a conveyor. The ground barite particles are discharged from the mill through a discharge end.
5. Control System:
- Modern ball mills are equipped with control systems to monitor and regulate critical parameters, such as mill speed, feed rate, and temperature. This allows for precise control of the grinding process.
6. Size Reduction:
- The primary purpose of the ball mill is to reduce the size of barite particles. Grinding occurs as the barite is subjected to the impact and friction forces of the grinding media.
7. Classification:
- Depending on the desired fineness, a classification system may be integrated into the ball mill to separate fine particles from coarse ones. This ensures that the final product meets the required specifications.
8. Dust Collection:
- A dust collection system may be incorporated to capture and collect fine particles generated during the grinding process, ensuring a clean and safe working environment.
9. Liners:
- The interior of the ball mill is often lined with wear-resistant materials, such as steel or rubber, to protect the mill shell from abrasion and ensure longer equipment life.
10. Application in Barite Processing:
- The ball mill in a barite grinding plant is a crucial piece of equipment for processing barite ore into a fine powder. This powder is used in various industries, including oil and gas drilling, coatings, and pharmaceuticals.
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11. Safety Features:
- Safety features, such as monitoring devices and emergency shutdown systems, are typically incorporated into ball mills to ensure safe operation.
The specific design and features of a ball mill for barite grinding can vary among different manufacturers and applications. It is essential to follow proper procedures and guidelines for the operation and maintenance of the equipment to ensure optimal performance and longevity.
Listing
Zheng Zhou Shi
3,684 km
Filtration system / mining separator
Ore beneficiation plant for gold copperOre dressing plant for zinc lead nickel
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Condition: new, Year of construction: 2025, functionality: fully functional, power: 400 kW (543.85 HP), Ore Beneficiation Plant for Nickel, Copper, Zinc, Graphite, Gold, Silver, Chrome, Quartz/Silica
In today’s competitive mining and metallurgical industry, maximizing ore value is critical. Our state-of-the-art Ore Beneficiation Plant offers a complete solution designed to increase the content and quality of raw ore, transforming it into a marketable product ready for further processing or direct sale. Engineered for a wide range of minerals—including nickel, copper, zinc, graphite, gold, silver, chrome, and quartz/silica—our ore beneficiation plant delivers exceptional performance, efficiency, and reliability.
Introduction
Mining operations around the world face the challenge of processing ores that are often low in grade and require extensive refinement to be economically viable. Beneficiation—the process of increasing the concentration of valuable minerals—plays a vital role in reducing operational costs, enhancing recovery, and ultimately, ensuring profitability. Our ore beneficiation plant, also known as an ore processing plant or mine dressing plant, integrates advanced technology and robust engineering to deliver an efficient crushing, grinding, classifying, and separation process.
Designed to handle a wide variety of ores, our plant is the ideal solution for mining companies looking to optimize their extraction and processing operations. Whether you’re processing nickel, copper, zinc, graphite, gold, silver, chrome, or quartz/silica, our plant provides the versatility and performance needed to meet today’s rigorous industrial standards.
## What Is an Ore Beneficiation Plant?
An ore beneficiation plant is a facility where raw ore is processed to improve its quality and increase the concentration of valuable minerals. The plant typically includes several stages of processing:
1. Crushing: The raw ore is reduced in size to allow for more efficient downstream processing.
2. Grinding: Further size reduction to liberate the valuable minerals from the waste material.
3. Classifying: Separation of the ore into different size fractions using screening and hydrocyclones.
4. Separation: Employing various physical processes such as magnetic separation, flotation, or gravity separation to concentrate the valuable minerals.
5. Dewatering: Removal of excess water to prepare the concentrate for further processing or shipping.
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This integrated process not only boosts the metal content but also minimizes waste, thereby improving overall cost efficiency and environmental sustainability.
Listing
Zheng Zhou Shi
3,684 km
Ball Mill for Ore mining & sand grinding
batch ball mill & wet mining ball mill2400X4500 ball mill
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Condition: new, fuel type: electric, Year of construction: 2025, machine/vehicle number: 2700x4500, Equipment: low noise, Main Technical parameters of the ball mill
Drum diameter: 2400mm
Drum length: 4500mm
Motor power: 320KW
Max input size: 25mm
Capacity:35-60 t/h
Weight: 72Tons
Ball loading: 30Tons
Besides this model, we also have the other models like 2700x4500, 3200x4500, 1830x13000mm, and so on, and we can also offer customerization service, we can also provide complete grinding solution for various industries like cement, quartz, ore beneficiation plant, and so on, welcome to contact us for more info.
A ball mill is a common grinding machine used to grind and blend materials for use in mineral processing, including ore mining and the production of silica (silicon dioxide). When it comes to ore mining and silica grinding, the characteristics of the ore and the final product requirements will play a crucial role in selecting the appropriate ball mill.
Here are some considerations for using a ball mill in ore mining and silica grinding:
1. Ore Characteristics:
- Hardness: The hardness of the ore determines the type of ball mill that is most suitable. Harder ores may require a more robust and wear-resistant ball mill.
- Particle Size Distribution: The initial particle size of the ore affects the grinding process. Different ores may require different approaches to achieve the desired particle size.
2. Silica Grinding:
- Silica Content: If the primary goal is to grind silica, it's important to consider the initial silica content and the desired final particle size. Silica grinding often requires special attention to prevent excessive wear on the milling equipment.
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3. Ball Mill Type:
- Overflow vs. Grate Discharge: The type of discharge from the ball mill can impact the final product and the grinding efficiency. Overflow mills are generally used for most grinding applications, while grate discharge mills are more suitable for certain types of ores.
4. Mill Size and Capacity:
- Mill Diameter and Length: The size of the ball mill should be selected based on the amount of material to be ground and the desired throughput.
- Capacity: Ensure that the chosen ball mill has the capacity to handle the required volume of material efficiently.
5. Grinding Media:
- Material and Size: The choice of grinding media (balls or cylpebs) and their size depends on the hardness of the ore and the desired final particle size. Different grinding media materials can impact the purity of silica during grinding.
6. Liners and Lifting Aids:
- Liners: Consider the type of liners used in the ball mill to protect the shell and optimize the grinding process.
- Lifting Aids: Some mills use lifting aids to enhance the grinding action and promote better mixing of the material.
7. Control and Monitoring Systems:
- Automation: Utilize control systems to automate the milling process and ensure optimal performance.
- Monitoring: Regularly monitor the milling process to adjust parameters as needed for consistent and efficient operation.
8. Safety Measures:
- Safety Systems: Implement safety features to protect personnel and equipment during operation.
Always follow the manufacturer's recommendations and guidelines for operation and maintenance to ensure safe and efficient use of the ball mill in ore mining and silica grinding applications.
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Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Smooth & teeth double roller crusherRoller crusher for sand, coal crushing
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Condition: new, functionality: fully functional, Year of construction: 2025, A double teeth roller crusher is a type of roller crusher commonly used in industries that involve the crushing of various materials, such as mining, metallurgy, building materials, and chemical processing. This crusher is characterized by its two pairs of closely spaced, parallel, and oppositely rotating rolls with "teeth" or "knurling" on their surfaces. The teeth are designed to grab and crush the material, providing efficient and uniform size reduction.
Here are key features and aspects of double teeth roller crusher equipment:
1. Double Roller Design:
- The crusher features two parallel, counter-rotating rollers, each with a set of teeth or knurling on its surface. The dual roller design facilitates a consistent and efficient crushing process.
2. Teeth Configuration:
- The teeth on the rollers are designed to grip and crush the material. The arrangement and shape of the teeth may vary based on the specific application and the characteristics of the material being processed.
3. Adjustable Gap Settings:
- The gap between the rollers can usually be adjusted to control the size of the crushed particles. This feature allows for customization of the final product size.
4. Material Feed and Discharge:
- Material is typically fed into the top of the crusher and is crushed between the rotating rollers. The crushed material is discharged at the bottom of the machine.
5. High Efficiency:
- Double teeth roller crushers are known for their high efficiency in crushing various materials. The dual roller design provides a more consistent and controlled process compared to single roller crushers.
6. Versatility:
- These crushers are versatile and can be used for various materials, including coal, limestone, slag, clay, and other similar materials.
7. Application in Mining and Processing:
- Double teeth roller crushers are commonly used in the mining industry for the crushing of minerals and ores. They are also utilized in other industries for size reduction and processing of materials.
8. Dust and Noise Control:
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- Some double teeth roller crushers are equipped with features to control dust emissions and reduce noise during operation, improving the working environment.
9. High Torque and Power:
- A powerful motor and a robust drive system are essential components to drive the rotation of the rollers, providing the necessary torque and power for efficient crushing.
10. Maintenance and Safety:
- Regular maintenance is essential for optimal performance. Safety features, such as emergency stops and safety guards, are often incorporated to ensure safe operation.
11. Application in Size Reduction:
- Double teeth roller crushers are effective in size reduction and are suitable for applications where precise control over the final product size is crucial.
It's important to note that the specific design, features, and applications of double teeth roller crushers can vary among different models and manufacturers. When selecting or using this type of equipment, it's advisable to refer to the manufacturer's guidelines and specifications for proper operation and maintenance.
Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Mingyuan stone crusher machinegravel & aggregate production equipment
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Condition: new, Year of construction: 2025, Gravel and aggregate production equipment is used to crush, screen, and process stones, rocks, and other materials for the construction industry. This equipment is essential in producing various types of aggregates, including crushed stone, gravel, sand, and recycled concrete, which are used in the construction of roads, buildings, bridges, and other infrastructure projects. Here are some common types of equipment used in gravel and aggregate production:
1. Jaw Crusher:
- Jaw crushers are primary crushers used to break down large rocks into smaller, more manageable pieces. They are essential for the initial stage of aggregate production.
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2. Impact Crusher:
- Impact crushers are used to crush rocks and stones with the help of impact force. They are suitable for shaping and producing fine aggregates.
3. Cone Crusher:
- Cone crushers are often used for secondary and tertiary crushing in aggregate production. They produce well-shaped and finely graded aggregates.
4. Vertical Shaft Impact (VSI) Crusher:
- VSI crushers are designed for shaping and producing high-quality artificial sand. They are suitable for processing materials with high abrasiveness.
5. Screens:
- Vibrating screens are used to separate different sizes of aggregates. They classify the material based on particle size and ensure that the final products meet specified gradation requirements.
6. Scalping Screens:
- Scalping screens are used to remove oversized materials before they reach the primary crusher. This helps to optimize the crushing process and prevent damage to the equipment.
7. Washing Equipment:
- Washing equipment, such as sand screws or log washers, is used to remove impurities and fine particles from aggregates. This is particularly important for producing high-quality concrete sand.
8. Conveyors:
- Conveyors are used to transport materials between different stages of the crushing and screening process. They play a crucial role in enhancing efficiency in material handling.
9. Stackers and Reclaimers:
- Stackers are used to create stockpiles of processed aggregates, while reclaimers are used to retrieve the material from the stockpile. Both are essential for efficient material storage and handling.
10. Crushing Plants:
- Complete crushing plants include various types of crushers, screens, and conveyors integrated into a single system. These plants are designed to handle large volumes of material efficiently.
Listing
Zheng Zhou Shi
3,684 km
Active lime, LECA/ Oil Proppant plant
Rotary kiln / furnace for clinker, limeActive lime/Oil Proppant production line
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Condition: new, Year of construction: 2025, An active lime production line is a set of equipment designed to produce high-quality lime from limestone, with the aim of meeting various industrial applications, such as in the production of steel, environmental desulfurization, and other processes. The process typically involves several stages, including limestone crushing, calcination, hydration, and finally, the production of active lime. Here is a general overview of the main steps involved in an active lime production line:
1. Limestone Quarrying:
- Raw limestone is extracted from quarries and transported to the lime plant. The limestone may undergo crushing and sizing processes to achieve the desired particle size.
2. Limestone Preheating:
- The raw limestone is typically preheated in a preheater or precalciner before entering the rotary kiln. This preheating step helps to reduce the energy consumption in the kiln by partially decarbonizing the limestone.
3. Loading into the Rotary Kiln:
- The preheated limestone is loaded into the rotary kiln, a large, rotating cylindrical furnace. The kiln is inclined at a slight angle to facilitate the movement of materials through the kiln.
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4. Calcination:
- In the rotary kiln, the limestone undergoes high-temperature calcination (typically in the range of 900 to 1,450 degrees Celsius). This process causes the limestone to undergo chemical and physical changes, converting it into lime (calcium oxide).
5. Cooling:
- After calcination, the lime moves through the cooling zone of the kiln, where it is cooled down. This cooling step is essential to stabilize the lime and prepare it for further processing.
6. Hydration:
- The quicklime produced in the kiln is then slaked with water in a hydration process to produce slaked lime (calcium hydroxide). This is typically done in a separate hydrator.
7. Separation of Unreacted Lime:
- The slaked lime is separated from any unreacted quicklime or impurities. This step ensures that the final product is of high quality.
8. Filtering and Drying:
- The separated slaked lime is filtered to remove excess water, and the resulting product is dried to achieve the desired moisture content.
9. Storage and Packaging:
- The final product, active lime (calcium oxide), is stored in silos or other storage facilities. It can then be packaged for sale or transported to end-users.
10. Environmental Considerations:
- Dust collection systems and other environmental control measures are often implemented to minimize emissions and ensure compliance with environmental regulations.
The design and configuration of an active lime production line can vary based on factors such as the type of limestone used, production capacity requirements, and specific industrial applications. Modern production lines often incorporate advanced technologies to optimize energy efficiency, minimize environmental impact, and ensure high-quality active lime production.
Listing
Zheng Zhou Shi
3,684 km
Crushing unit
Construction waste recycling machineConstruction&demolition management
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Condition: new, Year of construction: 2025, Creating a cheap portable or mobile sand making plant involves optimizing costs while maintaining functionality and efficiency. Here's a basic outline of components and considerations for designing a cost-effective portable sand making plant:
1. Portable Sand Making Machine:
- Select a cost-effective sand making machine that meets your production requirements. Consider factors like capacity, efficiency, and maintenance costs.
- Look for options that offer good performance at a lower initial investment.
2. Screening Equipment:
- Choose a portable screening unit to separate the sand into different sizes. This is crucial for producing high-quality sand with the desired particle size distribution.
- Consider modular screening units that are easy to transport and set up.
3. Conveyor Systems:
- Utilize conveyors to transport raw materials between different components of the plant. Opt for simple and reliable conveyor systems.
- Explore cost-effective conveyor options that are easy to maintain.
4. Hopper and Feeder:
- Incorporate a hopper and feeder system to ensure a continuous flow of raw materials to the sand making machine. This helps optimize the production process.
- Choose a design that minimizes material spillage and wastage.
5. Power Source:
- Consider energy-efficient power sources to reduce operational costs. This could include using generators or connecting to the electrical grid, depending on the availability and cost of electricity in your location.
6. Chassis and Mobility:
- Opt for a simple and robust chassis design that allows for easy transportation. Depending on your needs, choose between wheels or tracks for mobility.
- Aim for a design that facilitates quick setup and dismantling to save time and labor costs.
7. Control System:
- Implement a user-friendly control system that enables operators to monitor and adjust the sand making process efficiently.
- Consider automation features that enhance control and reduce the need for constant manual intervention.
8. Dust Control and Environmental Considerations:
- Integrate effective dust control measures to comply with environmental regulations and ensure a safe working environment.
- Explore environmentally friendly features to align with sustainability goals.
9. Modular Design:
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- Consider a modular design for easy customization and scalability. This allows you to adapt the plant to varying production needs over time.
10. Used Equipment:
- Explore the possibility of using refurbished or used equipment to cut down on initial costs. Ensure that the used equipment is in good working condition and can meet your production requirements.
Remember that while cost optimization is important, it's crucial to maintain the quality and efficiency of the sand making process. Additionally, compliance with environmental regulations should be a priority. Always consider the specific requirements of your project and seek professional advice if needed.
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