Used Airstream Classifier for sale (113)
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Listing
Turkey
2,987 km
Screening Machine
FABO Tracked Screening PlantMobile Screening Plant FTS-1560
Call
Year of construction: 2026, condition: new, functionality: fully functional, FTS 15-60 is a compact and heavy steel structured trucked plant with three-decks screen. Also integrated with tracked moving system and robust structure. Works via conveyor belt system. The fully electrically driven plant is designed in a variety for maximum capacities and suitable for feeding materials with a maximum edge length of 200 mm. All functions, as well as subsequent and previous crushing plants, conveyor belts, etc. are electrically lockable.
• Production capacity: 500-600 TPH
• Screen dimension: 1550x6100mm
• Mobile three-decks screen
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• Diesel electric drive
• Classifier screen plant up to 4 final fraction sizes
Maximum feeding size 100 x 160 mm
Listing
Bodzanów
1,692 km
Busch Vacuum Pump RA 0400 B 461 DUBI
BuschRA 0400 B 461 DUBI
Call
Condition: refurbished (used), overall weight: 11 kg, Technical specifications:
Product number
RA 0400 B 4ZI
Engine power 11 kW
Capacity 400 m3/h
Maximum vacuum 0.5 mbar
Noise level 74 dB
Rotational speed 1100 rpm
Weight 350 kg
Dimensions [h x l x w] 1411 x 981 x 1410 mm
The pump achieves a vacuum of 0.5 mbar, which is confirmed by our recorded video (5.8 to the power of minus 1 on the sensor indicates 0.58 mBar).
The unit, after a major overhaul, operates like new.
New seals, filters, and separators.
Oil-lubricated vacuum pump, suction – a device used in technology for removing gases (creating a vacuum) in a closed space. Pumps are classified according to their operating principle into: volumetric, jet, ion-sorption, ion-magnetic, molecular, condensation, adsorption, and ion pumps.
The most important parameters of vacuum pumps are:
final pressure (the lowest pressure that can be achieved with that pump),
pumping speed and the dependence of this speed on pressure,
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capacity (usually measured in m3 of gas pumped per unit of time).
Listing
Wuppertal
836 km
Strand-pelletizing cutting length adjust
COMACSG-100 SV
Call
Year of construction: 2000, condition: reconditioned (used), Stock - No.: 2107
1 used, partly overhauled and functionally tested strand-pelletizer
COMAC Type SG-100 SV
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infeed width 100 mm
Cutting Rotor width 110 mm,
parallel cut with 32 teeth
Rotor- Ø 200 mm
>> strand-pellet cutting length adjustment
2 drives:
1x for cutting-Rotor - 4 kW
1x for infeed-roller 1,5 kW
with STÖBER reduction-speed gear
Noise protected housing of pelletizing Chamber
Inspection visit / trial-run shortly by appointment possible.
We can also offer suitable strand-cooling bath, strandb-blower or
pellet classifier ex stock.
More strand-eplletizer and other pelletizing systems/units ex our stock availabe ( waterring - , hot-face- and underwater pelletizing )
Listing
Fohnsdorf
1,548 km
Screening plants
ASCOGS Compact
Call
Year of construction: 2025, condition: new, functionality: fully functional, The ASCO® GS COMPACT is a robust and efficient solution for separating and classifying coarse material in various industries, such as mining, construction, and recycling. Utilizing strong, evenly spaced parallel bars, the Grizzly Screen separates larger particles and rock fragments while allowing finer material to pass through. This ensures effective material processing and prevents unnecessary wear on downstream equipment.
Technical Specifications:
- System capacity: 65 t/h with springs, 60 t/h without springs
- Maximum bucket width: 2.9 m
- Screening area: 4.9 m²
- Weight: 1120 kg
- Width: 3.2 m
- Length: 2.85 m
- Height: 2.7 m
- Loading height: 2.56 m
Options:
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- Outriggers with springs
- Outriggers without springs
Listing
Bodzanów
1,692 km
Busch RA 0250 D 5ZI Vacuum Pump
BuschRA 0250 D 5ZI
Call
Condition: refurbished (used), Technical specifications:
Product number
RA 0250 D 5ZI
Engine power 5.5 kW
Capacity 250 m3/h
Max. vacuum 0.5 mbar
Noise level 74 dB
Rotational speed 1500 rpm
Weight 250 kg
Dimensions [h x l x w] 1011 x 581 x 410 mm
The pump achieves a vacuum of 0.5 mbar, as confirmed by the recorded video.
The unit has undergone a major overhaul.
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The pump is in very good condition, with new filters, oils, separators, etc.
Oil-sealed vacuum pump, suction – a device used in technology to remove gases (create a vacuum) in a closed space. Pumps are classified according to their operating principle into: positive displacement, kinetic, ion-sorption, ion-magnetic, molecular, condensation, adsorption, and ionic pumps.
The most important parameters of vacuum pumps are:
final pressure (the lowest pressure that can be achieved with such a pump),
pumping speed and the dependence of this speed on pressure,
capacity (usually measured in m3 of gas pumped per unit of time).
Listing
Zheng Zhou Shi
8,333 km
Filtration system / mining separator
Ore beneficiation plant for gold copperOre dressing plant for zinc lead nickel
Call
Condition: new, Year of construction: 2026, 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.
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5. Dewatering: Removal of excess water to prepare the concentrate for further processing or shipping.
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
8,333 km
Sand washing plant for silica sand
Wheel bucket / Spiral sand washerSilica / M sand washing machine
Call
Condition: new, functionality: fully functional, power: 11 kW (14.96 HP), Year of construction: 2025, A spiral-type sand washer machine, also known as a spiral sand washing machine or screw sand washer, is a piece of equipment designed for washing, classifying, and dewatering sand and other granular materials. This type of sand washer typically features a spiral or screw-shaped structure for the purpose of lifting, conveying, and washing materials.
Here are key features and aspects of a spiral-type sand washer machine:
1. Spiral Structure: The core component of the machine is a spiral or screw-shaped structure, often enclosed within a tub or trough. This spiral impeller is responsible for lifting, conveying, and washing the sand as it rotates.
2. Tub or Trough Design: The spiral structure is usually housed within a tub or trough that holds the water and sand mixture. This design allows for efficient washing and separation of impurities from the sand.
3. Multiple Blades: The spiral impeller typically has multiple blades or flights that provide mechanical agitation to the sand, ensuring thorough cleaning.
4. Water Injection: Water is injected into the tub or trough to aid in the washing process. The combination of water and the rotating spiral helps to remove impurities from the sand.
5. Adjustable Weirs: Some spiral-type sand washers have adjustable weirs or gates that control the flow of water and the retention time of the sand in the machine, allowing for customization of the washing process.
6. Classification and Dewatering: Spiral sand washers often include features for classifying and dewatering the sand. This may involve the use of a separate compartment or mechanism for fine sand recovery and water drainage.
7. Variable Speed: The rotational speed of the spiral can often be adjusted to optimize the washing process for different types of materials and particle sizes.
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8. Capacity: The capacity of a spiral-type sand washer is influenced by factors such as the size of the machine, the pitch of the spiral, and the efficiency of the washing process. Different models are available to suit various production requirements.
9. Materials Handling: Spiral sand washers are commonly used in applications such as aggregate processing, mining, concrete production, and other industries where the removal of impurities from sand is essential.
10. Ease of Maintenance: Many spiral-type sand washers are designed for easy maintenance, with accessible components and inspection points.
Spiral-type sand washer machines are efficient tools for cleaning and processing sand, ensuring that the final product meets quality standards for use in construction, concrete production, and other applications. The specific features and capabilities of these machines can vary between different models and manufacturers.
Listing
Fohnsdorf
1,548 km
Screening plants
ASCOGS Medi
Call
Year of construction: 2025, condition: new, functionality: fully functional, The ASCO® GS MEDI is a robust and efficient solution for separating and classifying coarse material in various industries, such as mining, construction, and recycling. Utilizing strong, evenly spaced parallel bars, the Grizzly Screen separates larger particles and rock fragments while allowing finer material to pass through. This ensures effective material processing and prevents unnecessary wear on downstream equipment. Our Grizzly Screens are durable, low-maintenance, and customizable to your specific requirements to ensure the best possible performance in your separation process.
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Technical specifications:
- System capacity: 85 t/h with springs, 75 t/h without springs
- Maximum bucket width: 3.7 m
- Screening area: 6.8 m²
- Weight: 1500 kg
- Width: 3.97 m
- Length: 2.98 m
- Height: 3 m
- Loading height: 2.78 m
Options:
- Outriggers with springs
- Outriggers without springs
Listing
Augsburg
1,253 km
Multiprocess System
Hosokawa AlpineMultiprocess System MPS (RENTAL UNIT)
Call
Year of construction: 2024, condition: new, functionality: fully functional, Rental Multiprocess System in stainless steel.
Stand-alone lab scale grinding and classifying plant. This compact plug-and-play system is perfect for Research and Development (R&D) and small-scale productions. It operates in small batches of a few kilos.
The system can be fitted with different modules (one at a time) to either grind or classify different products, both coarse and super fine grinding are possible, providing a wide variety of end results.
The exchange of the different modules is fast and easy, allowing to perform different tasks in a short time.
*Jet mills are subject to export license depending on destination country
ALPINE multi-process plant AFG 100 (MPS)
The basis of this concept is the use of a basic module which combines all the additional components of a grinding/classifying plant (frame, dosing system, fittings, separator filter, control system etc.). In just a few simple steps, appropriate modules can be integrated to implement various grinding and classifying processes in this one machine:
• ALPINE Fluidized Bed Opposed Jet Mill AFG 100
• ALPINE Turboplex Fine Classifier ATP 50
• Alpine Zirkoplex Classifier Mill ZPS 50
Characteristics:
• Multi-process plant offers maximum flexibility
• Small-scale production on a qualified, GMP-compliant plant
• Use of scale-up capable process technology
• Short change-over and assembly times as well as easy cleaning due to optimized disassembly.
• Compact plant design on a laboratory scale
• Ready-to-use system on delivery
Design:
Design: Non Pressure Shock Resistant (NPSR), suitable for inert operation (N2)
ATEX
- inside non ATEX
- outside non ATEX
Material of construction
- product contacting parts: stainless steel
- non product contacting parts: stainless steel
Wear protection: none
Batch operation, for a few kilos normally (product dependent)
Scope: Hosokawa Alpine Multiprocess System in stainless steel. Complete system with feeding screw, grinding or classifying module, cyclone, filter, blower, control cabinet, motors
Can be fitted with the following modules: 100 AFG, 50 ATP and 50 ZPS.
A HOSOKAWA ALPINE Originals machine
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Refurbished by the original manufacturer
Use of original components only
Original manufacturer warranty
Guaranteed manufacturer spare parts supply
Short lead time
Before delivery, the machine is overhauled, all wear parts are revised and exchanged if needed and customized to your specific needs
Possibility to provide all additionally required peripherals or adapt to existing production plant
We are also interested in buying back disused HOSOKAWA ALPINE machinery
Listing
Zheng Zhou Shi
8,333 km
Ball mill for powder and mining plant
Mingyuan Ball Mill For Fine PowderPowder grinding mill for coal, silica
Call
Condition: new, functionality: fully functional, power: 55 kW (74.78 HP), Year of construction: 2026, Ball Mill for Powder and Mining Plant: Structure, Function, and Technical Details
A ball mill is a key grinding machine widely used in mining, metallurgy, cement, chemical, and powder-making industries. It is designed to grind various ores and other materials into fine powder through impact and attrition between steel balls and the material inside a rotating cylindrical shell. In mining plants, ball mills are essential for ore beneficiation, preparing materials for flotation, magnetic separation, or leaching processes. In powder production, they ensure uniform particle size and high surface area for further processing.
Working Principle
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The ball mill operates on a simple yet effective principle: as the cylindrical shell rotates around its horizontal axis, the grinding media (steel or ceramic balls) are lifted along the inner wall by centrifugal force and friction. When they reach a certain height, they fall freely, striking and grinding the material below. This repeated motion causes both impact and abrasion, reducing the material to the desired fineness. The grinding process can be performed in dry or wet conditions depending on the application.
Structural Composition
A standard ball mill consists of several main components:
Feeding part: Equipped with a feeder or screw conveyor to ensure uniform material input.
Discharging part: Can be grate type or overflow type, depending on the discharge method.
Rotating part: The cylindrical shell made of steel plates, lined with wear-resistant liners.
Transmission system: Includes motor, reducer, small transmission gear, and electrical control.
Grinding media: Steel balls or ceramic balls of different diameters for efficient grinding.
The internal liner design and ball size distribution are optimized to achieve maximum grinding efficiency and minimal energy consumption.
Technical Details
Typical Specifications:
Feeding size: ≤25 mm
Discharge size: 0.074–0.4 mm
Capacity: 0.65–615 t/h (depending on model and material hardness)
Cylinder speed: 18–38 r/min
Power: 18.5–4500 kW
Liner material: High manganese steel, rubber, or alloy steel
Grinding media load: 30–45% of cylinder volume
Operating Modes:
Dry grinding: Suitable for materials that must remain moisture-free, such as cement clinker, limestone, and quartz.
Wet grinding: Common in ore beneficiation, where water or slurry improves grinding efficiency and particle uniformity.
Application in Mining Plants
In mining operations, ball mills are used after crushing to further reduce ore size and liberate valuable minerals. They are integrated into grinding circuits with classifiers, hydrocyclones, and flotation systems. The ground material is classified by size, and oversized particles are returned to the mill for regrinding. This closed-circuit system ensures consistent product fineness and efficient energy use.
Common Applications:
Gold, copper, iron, and zinc ore grinding
Cement clinker and slag processing
Silicate and ceramic powder production
Coal and mineral powder preparation
Conclusion
A ball mill is an indispensable piece of equipment in both powder production and mining beneficiation plants. Its ability to grind materials into fine, uniform particles makes it vital for downstream processes such as flotation, sintering, and chemical reactions.
Listing
Turkey
2,987 km
Mobile Screen
FABO Mobile ScreenMEY-2050 Mobile Screening Machine
Call
Year of construction: 2026, condition: new, *All of our products are made with care and covered for 1 year warranty!
*Installation and Operator Training FREE
FABO MEY Series mobile sand screening and washing plant is an ideal solutions for the classifying and washing of materials which was provided as pre-crushed.
Most important advantage of plant is having all equipment on only a single chassis. Transportation can be done by only one truck.
TECHNICAL SPECIFICATIONS:
- Hopper: 8 m3
- Plant Dimensions: 13500x4500x3600 mm
- Production Capacity: 120-200 Tons Per Hour
- Screw Washer Size: 600x6000 mm Double Helix
- Vibrating Screen and Deck: 1600x4500 (4 decks)
- Total Motor Power: 68 Kw
- Generator (optional): 130 kvA
MEY-1645 IS A COMBINATION OF:
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• Bunker(Hopper)
• Vibrating Screen with Washing Nozzles
• Double Helix Screw Washer
• Folding type feeding and stock conveyor belts
• Hydraulic feet
• Mobile Chassis with axles and tires
• Fully Automation System
• Easy walking platforms for maintenance
• Diesel Generator (Optional)
FOR FURTHER INFORMATION PLEASE FEEL FREE TO CALL US!!!
Listing
Gorzów Wielkopolski
1,252 km
Aspiration system 15000 m3
HolzingRLA X
Call
Condition: new, Year of construction: 2026, Capacity: ~15,000 m³/h
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Motor power: 22 kW
Filter surface area: 53.08 m²
Helical gear reducer: 0.55 kW
Vibration motor power: 0.17 kW (2 pcs.)
Filter type: 3 micron, polyester
Filter dimensions: Ø160 x 1100 mm
Number of filters: 96 pcs.
Automatic vibratory filter cloth cleaning system – during breaks and during filter operation, allows for continuous monitoring of proper operation.
The filters used are classified as filtration category "G," allowing for air purification up to 0.2 mg/m³/h (H2).
Listing
Oradea
1,981 km
Precision Temperature Control Unit (TCU)
BOFA
Call
Year of construction: 2013, condition: excellent (used), machine/vehicle number: 2310-028, Precision Temperature Control Unit (TCU) - BOFA
Year of manufacture: November 2013, serial number 2310-028, excellent condition, the filter is in good shape, electric documentation of the TCU is present, refrigerant gas: R134a 0.75Kg in the system
Precision temperature control unit designed for solder paste applications
Reverse flow air technology enhances filter performance and increases life
Process monitoring via temperature sensors that can be strategically mounted within the printer
Precision temperature control unit designed for solder paste applications.
The Temperature control unit (TCU) has been designed to meet a very specific process requirement within the electronics sector. The reliable placement of surface mount devices during PCB assembly requires that during the initial printing stage the solder paste is maintained at a temperature that ensures optimum performance.
With assembly now on a global basis, the variation of local climate and factory conditions means that this optimum level cannot be maintained without some form of intervention.
The design of the TCU includes cooling and heating elements which ensure that the temperature within the printing environment is maintained within 1ºC of the optimum paste performance temperature regardless of whether the factory ambient is above or below this level.
Reverse flow air (RFA) technology
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The RFA technology feature causes a fall in velocity and air direction change. Larger particulate falls out of the airstream into the filter’s drop-out chamber. With less particulate entering the filter media the filter life is significantly increased, enhancing filter capture performance and ensuring longer life.
Technical specifications
1. Chiller module
2. Condensate collection container
3. Air outlet
4. Air inlet
5. Castors
6. Service door lock
7. Fail style condensate sensor
8. Four colour beacon mounting plate
Technical data:
Air delivery system: Re-circulating
Temperature range: +/- 8°C from ambient within a programmable range of 19 – 30°C
Temperature control: +/- 1°C
Cooling capacity: 2000W
Temperature sensor: Shared output from integrated printer sensor (0 – 10V input over 0 –50°C)
Air in filter: G4 (91% Average Arrestance) EN 779: 2002
Refrigerant gas: R134a 0.75Kg
Full load current: 12.6A
Start up Current: 20A
Frequency: 50 / 60Hz
Voltage: 230V +/- 10% (207V – 253V working range) Single Phase
Noise Level: higher then 75dBA*
Dimensions: 1285mm (H) + (beacon 450mm), 540mm (W), 670mm (D)
Condensate: Collected in 5 litre container for disposal or piped to drain
Weight: 140Kg
Documentation include: Electrical Schematic
Sales price: 1900 Euro + VAT, negotiable, FCA Oradea, Romania
Irrtum, Anderungen und Zwischenverkauf vorbehalten /
Subject to errors, changes and prior sale /
Ne rezervăm dreptul la greșeli, modificări și vânzare prealabila.
We speak English. /Wir sprechen Deutsch./ Beszélünk magyarul. /Nous parlons français/Vorbim romana
Listing
Zheng Zhou Shi
8,333 km
Cement mill,clinker grinding plant
Clinker grinding mill / cement ball millcement grinding with air classifier
Call
Year of construction: 2026, condition: new, functionality: fully functional, A cement clinker grinding mill is a specialized equipment used to grind the hard nodular clinker into fine powder, which is cement. Most cement is currently ground in ball mills and also vertical roller mills, which are more effective than ball mills.
Here are key features and information about cement clinker grinding mills:
1. Raw Materials:
- The main raw material for making cement is clinker, which is produced by sintering limestone and clay. Other materials such as gypsum, fly ash, or slag may also be added during the grinding process to achieve specific properties.
2. Grinding Process:
- The clinker and other additives are finely ground in the grinding mill to produce cement. The grinding process is a crucial step in cement production and contributes significantly to the final quality of the product.
3. Types of Mills:
- Ball Mills: Traditional ball mills are commonly used for grinding clinker. They operate by rotating a cylinder with steel grinding balls, causing the balls to fall back into the cylinder and onto the material to be ground.
- Vertical Roller Mills (VRM): VRM technology has become increasingly popular for clinker grinding. These mills use a rotating table with rollers to crush and grind the clinker, providing energy efficiency and a smaller footprint compared to ball mills.
4. Gypsum Addition:
- Gypsum is often added during the grinding process to control the setting time of the cement. It prevents flash setting of the clinker and facilitates the formation of a workable and pumpable cement paste.
5. Quality Control:
- Quality control measures, such as monitoring the fineness of the cement, chemical composition, and other properties, are implemented during the grinding process to ensure the final product meets the required specifications and standards.
6. Clinker Cooling:
- Before grinding, the clinker is produced by heating the raw materials in a kiln. The clinker is then cooled before entering the grinding mill to prevent excessive heat build-up during grinding.
7. Dust Collection and Environmental Considerations:
- Dust collectors and air pollution control systems are often employed to capture and control the dust generated during the grinding process, addressing environmental and safety concerns.
8. Packaging and Storage:
- After grinding, the cement is typically stored in silos before being packaged in bags or dispatched in bulk for distribution to construction sites or for sale in the market.
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Cement clinker grinding mills play a crucial role in the cement production process, and advancements in technology continue to improve the efficiency and environmental sustainability of the grinding process.
Technical details
We have different options for different requirements, please contact our team for more info.
Listing
Arnsberg
873 km
Mill
Hosokawa MikropulACM 40
Call
Year of construction: 2000, condition: good (used), Hosokawa Mikropul ACM 30 mill
- disc motor 30 KW
- classifier motor 7,5 KW
weight: 800 kg
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dimension: 1,5 x 0,6 x 1,4m height
The mill is ready for opertaion!
Listing
Bodzanów
1,692 km
Vacuum pump
BuschRA 0160 D
Call
Condition: ready for operation (used), Technical Data:
Product Number
RA 0160 D
Year of Manufacture
2013
Motor Power 4 kW
Capacity 160 m3/h
Maximum Vacuum 0.3 mbar
Noise Level 74 dB
Rotational Speed 1500 rpm
Weight 250 kg
Dimensions [HxLxW] 1011 x 581 x 410 mm
The pump achieves a vacuum of 0.3 mbar, as confirmed by the measurement on the sensor shown in the video below.
3.1 -1 on the sensor display indicates a vacuum of 3.1 to the power of minus one, which equals 0.31 mbar.
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After complete overhaul
The pump is in excellent condition.
New oil
New oil filter
New exhaust separators
New Electric Motor – ONE-YEAR WARRANTY
Oil-lubricated vacuum pump, suction unit – a device used in technology for removing gases (creating a vacuum) in a closed space. Pumps are classified according to their working principle as: displacement, jet, ion-sorption, ion-magnetic, molecular, condensation, adsorption, and ion pumps.
The most important parameters of vacuum pumps are:
Final pressure (the lowest pressure that can be achieved with such a pump),
Pumping speed and its dependence on pressure,
Capacity (usually measured in m3 of pumped gas per unit of time).
Listing
Wuppertal
836 km
Twin-Screw compounding extruder
BERSTORFFZE 60 A - UT
Call
Year of construction: 2003, condition: refurbished (used), Stock-No. 2086
twin-screw compounding extruder
BERSTORFF type ZE 60 A - UT
screw size 2 x 64 mm - 32 LD
Capacity 800 kg/h depening material specifications
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Drive from 197 kW up to 350 kW possible , optional by appoinment
L/D 34 - 40 LD , by appointment > due to your material formula needs
drive up to 230 kW - 350 kw optional against add.price
1x venting port
new control board
optional - equipment against additional price:
screen-pack-changer
pelletizing
material feeding , loss-in-weight gravimetrci blenders
pellet-classifier
and more
Please inform which equipment you need for a detailled quotation, thank you.
All ex stock available
Listing
Zheng Zhou Shi
8,333 km
Crushing equipment
Mobile / Stationary stone crusher plantSand & aggregate production plant
Call
Condition: new, Year of construction: 2025, A sand aggregate production plant is a facility where various types of aggregates (such as sand, gravel, crushed stone, or recycled concrete) are produced for use in construction and other applications. These plants typically include various stages of processing, from raw material extraction to the final product.
Here are the key components and processes typically involved in a sand aggregate production plant:
1. Raw Material Extraction:
- Quarrying or Mining: Aggregates are often extracted from quarries, mines, or riverbeds. Depending on the type of aggregate, the extraction process may involve drilling, blasting, or dredging.
2. Primary Crushing:
- Jaw Crusher or Gyratory Crusher: The extracted raw material is usually transported to the plant and fed into a primary crusher, where large rocks are broken down into smaller pieces.
3. Secondary Crushing:
- Cone Crusher or Impact Crusher: The crushed material from the primary crusher may undergo further reduction in size through secondary crushing.
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4. Screening:
- Vibrating Screens: After crushing, the material is often screened to separate different sizes of aggregates. This process ensures that the final product meets the required specifications.
5. Washing:
- Sand Washers: In some cases, especially for sand production, washing is done to remove impurities, clay, and fines from the aggregates, ensuring a cleaner and higher-quality product.
6. Grading and Sorting:
- Classifiers or Graders: After washing and screening, the aggregates may go through additional processes to separate them based on size or quality.
7. Stockpiling:
- Stockpiles: The final aggregates are usually stockpiled for storage before being transported to construction sites or other end-users.
8. Aggregate Storage and Handling:
- Storage Bins or Silos: Larger production plants may have storage facilities, such as bins or silos, to store different types and sizes of aggregates before distribution.
9. Quality Control:
- Laboratory Testing: Regular quality control testing is performed on aggregates to ensure they meet specifications for strength, size, gradation, and other properties.
10. Environmental Considerations:
- Water Management: Some plants incorporate water management systems to recycle and reuse water used in the washing process, minimizing environmental impact.
11. Transportation:
- Conveyors or Trucks: Aggregates are typically transported from the production plant to construction sites by conveyors, trucks, or other means.
Listing
Zheng Zhou Shi
8,333 km
Powder grinding machine
Fine powder grinding mill, clinker millSuperfine ball mill for micro powder
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Condition: new, Year of construction: 2026, A superfine ball mill is a type of milling machine that is used to grind materials into very fine particles. This type of ball mill has some distinctive features that make it especially suitable for processing even the hardest materials with low contamination and minimal wear. It is commonly used in various industries, including pharmaceuticals, minerals, pigments, and chemicals, for producing micro powder or nanoparticles.
Here are some key features and considerations for a superfine ball mill for micro powder:
1. High Grinding Efficiency: Superfine ball mills are designed to achieve high grinding efficiency by utilizing grinding media with a relatively small size, leading to a large surface area for grinding.
2. Precision Control: These mills often come with advanced control systems to regulate parameters like rotation speed, temperature, and grinding time, allowing precise control over the particle size distribution.
3. Specialized Design: The mill is typically designed with features to minimize contamination, such as using materials resistant to wear and corrosion. Some mills also have cooling systems to prevent overheating during the milling process.
4. Variety of Materials: Superfine ball mills can handle a wide range of materials, including both brittle and fibrous substances. They are often used for milling hard materials that require fine grinding, such as ceramics, minerals, or pigments.
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5. Size Reduction to Micro or Nano Level: The primary goal of a superfine ball mill is to reduce particle size to the micro or even nano level. This is achieved by the intense grinding action that occurs within the mill.
6. Classifier System: Some superfine ball mills incorporate a classifier system to control the particle size distribution more precisely. This allows for the separation of fine particles from coarser ones during the milling process.
7. Batch or Continuous Operation: Depending on the specific design, these mills can operate in either batch or continuous mode, offering flexibility based on the production requirements.
8. Safety Measures: Safety features may be included, such as monitoring and control systems to prevent overloading, overheating, or other potential issues during operation.
When selecting a superfine ball mill for micro powder production, it's important to consider the specific requirements of your application, the characteristics of the materials you're working with, and the desired final particle size distribution. Always follow the manufacturer's guidelines for operation, maintenance, and safety to ensure optimal performance and longevity of the equipment.
Listing
Zheng Zhou Shi
8,333 km
Crushing equipment
Sand Aggregate crushing production lineAggregate & Ballast Crusher Equipment
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Condition: new, functionality: fully functional, Year of construction: 2025, Aggregate and ballast crusher equipment are used in the crushing and processing of various materials for construction and infrastructure projects. These crushers are designed to break down large rocks, gravel, or stones into smaller pieces, producing aggregates and ballast that are essential components in the construction industry. Here are some key aspects related to aggregate and ballast crusher equipment:
1. Jaw Crusher:
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- Jaw crushers are commonly used for primary crushing in aggregate and ballast production. They operate by compressing the material between a stationary and a movable jaw.
2. Impact Crusher:
- Impact crushers are suitable for shaping and producing fine aggregates. They use impact force to crush the material, making them suitable for various types of rock and ore.
3. Cone Crusher:
- Cone crushers are often used for secondary and tertiary crushing in aggregate production. They are efficient for producing 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 use the "rock-on-rock" crushing principle, where rocks are fed into the rotor to be accelerated and crushed against the stationary anvils.
5. Gyratory Crusher:
- Gyratory crushers are primarily used in mining, but they may also be used in the production of aggregates. They have a conical head and a concave surface, which crushes the material between the head and concave.
6. Mobile Crushers:
- Mobile crushers, including mobile jaw crushers and mobile impact crushers, provide flexibility and mobility for on-site crushing of aggregates and ballast. They are often used in construction projects where materials need to be processed directly at the job site.
7. Screens and Scalpers:
- Screens and scalpers are used to separate different sizes of aggregates after the initial crushing stage. Vibrating screens are commonly employed to classify and separate materials based on size.
8. Conveyors:
- Conveyors are crucial for transporting materials between various stages of the crushing process and for stockpiling the final products. They enhance efficiency in material handling.
9. Dust Suppression Systems:
- Crushing operations can generate dust, and dust suppression systems are used to minimize environmental and health impacts. These systems may include water sprays or chemical suppressants.
10. Quality Control:
- Quality control measures, such as particle size analysis and gradation testing, are essential to ensure that the produced aggregates and ballast meet the required specifications and standards.
11. Environmental Considerations:
- Crusher equipment should adhere to environmental regulations, and measures like dust control, noise reduction, and proper waste disposal should be implemented.
When selecting aggregate and ballast crusher equipment, factors such as the type of material, required product size, production capacity, and mobility requirements should be taken into consideration. Additionally, adherence to safety and environmental standards is crucial in the operation of crushing equipment.
Listing
Oradea
1,980 km
Precision Temperature Control Unit (TCU)
BOFA
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Year of construction: 2016, condition: defective spare-parts repository (used), machine/vehicle number: 00050, Precision Temperature Control Unit (TCU) - BOFA
THE DISPLAY CONTROLLER IS DEFECTIVE!
Year of manufacture: November 2016, serial number 00050, excellent condition, the filter is in good shape, electric documentation of the TCU is present, refrigerant gas: R134a 0.75Kg in the system
Precision temperature control unit designed for solder paste applications
Reverse flow air technology enhances filter performance and increases life
Process monitoring via temperature sensors that can be strategically mounted within the printer
Precision temperature control unit designed for solder paste applications.
The Temperature control unit (TCU) has been designed to meet a very specific process requirement within the electronics sector. The reliable placement of surface mount devices during PCB assembly requires that during the initial printing stage the solder paste is maintained at a temperature that ensures optimum performance.
With assembly now on a global basis, the variation of local climate and factory conditions means that this optimum level cannot be maintained without some form of intervention.
The design of the TCU includes cooling and heating elements which ensure that the temperature within the printing environment is maintained within 1ºC of the optimum paste performance temperature regardless of whether the factory ambient is above or below this level.
Reverse flow air (RFA) technology
The RFA technology feature causes a fall in velocity and air direction change. Larger particulate falls out of the airstream into the filter’s drop-out chamber. With less particulate entering the filter media the filter life is significantly increased, enhancing filter capture performance and ensuring longer life.
Technical specifications
1. Chiller module
2. Condensate collection container
3. Air outlet
4. Air inlet
5. Castors
6. Service door lock
7. Fail style condensate sensor
8. Four colour beacon mounting plate
Technical data:
Air delivery system: Re-circulating
Temperature range: +/- 8°C from ambient within a programmable range of 19 – 30°C
Temperature control: +/- 1°C
Cooling capacity: 2000W
Temperature sensor: Shared output from integrated printer sensor (0 – 10V input over 0 –50°C)
Air in filter: G4 (91% Average Arrestance) EN 779: 2002
Refrigerant gas: R134a 0.75Kg
Full load current: 12.6A
Start up Current: 20A
Frequency: 50 / 60Hz
Voltage: 230V +/- 10% (207V – 253V working range) Single Phase
Noise Level: higher then 75dBA*
Dimensions: 1285mm (H) + (beacon 450mm), 540mm (W), 670mm (D)
Condensate: Collected in 5 litre container for disposal or piped to drain
Weight: 140Kg
Documentation include: Electrical Schematic
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Sales price: 1.500 Euro + VAT, negotiable, FCA Oradea, Romania
Irrtum, Anderungen und Zwischenverkauf vorbehalten /
Subject to errors, changes and prior sale /
Ne rezervăm dreptul la greșeli, modificări și vânzare prealabila.
We speak English. /Wir sprechen Deutsch./ Beszélünk magyarul. /Nous parlons français/Vorbim romana
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Dealers certified through Machineseeker

Listing
Bopfingen
1,188 km
Extraction system
Call
Year of construction: 2026, condition: new, Airstreamer 480 – Extraction System for Aluminum Chips
The Airstreamer 480 is a high-performance extraction system for aluminum chips, ideally suited for industrial applications. Its robust construction and mobile design, featuring a detachable chip container, ensure flexible use and easy emptying.
Technical Specifications:
✔ Weight: 120 kg, mobile on castors
✔ Chip container: 110-liter capacity, easily detachable
✔ Filter: M-Class polyester, antistatic version
✔ Pneumatic filter cleaning (compressed air connection required on site)
✔ Motor: 2.2 kW, 400 V, 50 Hz
✔ Suction inlet: 100 mm diameter
✔ Airflow: 1,500 m³/h
✔ Nozzle pressure: 30 mbar
✔ Dimensions (W x D x H): approx. 69 x 90 x 241 cm
Safety Notice:
⚠️ Certain types of dust and particles can be combustible, posing a risk of filter fires or dust explosions. The operator is obliged to implement appropriate measures to eliminate ignition sources and to observe applicable ATEX guidelines.
⚠️ This model is not ATEX-certified. A version for ATEX Zone 22 is available on request.
Optional Accessories:
🔹 Super-flexible, low-friction suction hose (120 mm)
🔹 Antistatic kit for grounding all metal parts of the vacuum
🔹 Remote start system
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🔹 Cleaning set (60 mm) for floor and machine cleaning, made of PVC
Includes floor and machine cleaning nozzle, 4 m suction hose, and adapter
🔹 Y hose adapter (100 mm to 100 + 60 mm) with shut-off slide
🔹 XXL silencer for reduced operating noise and increased efficiency
The Airstreamer 480 provides a reliable and efficient solution for the extraction of aluminum chips in industrial manufacturing processes.
We look forward to hearing from you!
Plantec Maschinen GmbH
Listing
Zheng Zhou Shi
8,333 km
Crushing equipment
Stone crushing production lineStone crushing screening plant
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Condition: new, functionality: fully functional, Year of construction: 2026, A stone crushing plant for sand and aggregate making is a facility where stones and rocks are crushed into smaller pieces or gravel. It typically includes several stages of crushing and screening to produce various sizes and grades of sand and aggregate materials, which are essential in construction, landscaping, and other applications. Here's an introduction to the components and processes involved in a typical stone crushing plant:
### Components of a Stone Crushing Plant
1. Primary Crusher:
- Purpose: The primary crusher, often a jaw crusher or gyratory crusher, initially breaks down large rocks into smaller pieces.
- Function: It handles raw materials from the quarry or mine and prepares them for further processing.
2. Secondary Crusher:
- Purpose: A secondary crusher, such as a cone crusher or impact crusher, further reduces the size of the crushed stones.
- Function: It refines the material after primary crushing, producing smaller and more uniform-sized aggregates.
3. Tertiary Crusher (Optional):
- Purpose: In some configurations, a tertiary crusher like a vertical shaft impactor (VSI) may be used for shaping and fine crushing.
- Function: It produces finely crushed materials for specific applications, such as concrete production or road base.
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4. Screening Equipment:
- Purpose: Screening equipment like vibrating screens or trommel screens separates the crushed materials into different sizes.
- Function: It classifies the aggregates into various grades according to size, ensuring uniformity and meeting specifications.
5. Conveyor Systems:
- Purpose: Conveyor belts transport materials between different stages of crushing and screening.
- Function: They ensure efficient material handling and continuous operation within the plant.
6. Washing Equipment (Optional):
- Purpose: Washing equipment, such as sand washers or scrubbers, may be used to remove impurities from sand and aggregate products.
- Function: It improves the quality of the final products by cleaning them and removing fines or contaminants.
### Processes Involved
- Primary Crushing: Large rocks are fed into the primary crusher and reduced to a manageable size.
- Secondary Crushing: The crushed materials from the primary crusher are further processed by secondary crushers to achieve the desired aggregate sizes.
- Screening: The crushed and sized materials are screened to separate them into different sizes and grades.
- Material Handling: Conveyor systems transport materials between different stages of the crushing and screening process.
Final Product Handling:Finished products, such as sand and various sizes of aggregates, are stored or loaded for transport to customers or construction sites.
Applications
- Construction: Used in the production of concrete, asphalt, and road base materials.
- Landscaping: Provides decorative and functional aggregates for gardens, pathways, and driveways.
infrastructure: Essential for building foundations, drainage systems, and structural fill.
As for the capacity we have 30 t/h, 30-50 t/h, 50-100 t/h, 100-150 t/h, 150-200 t/h, 200-300 t/h, 300-500 t/h, and both stationary crushing plant and mobile crushing plant are available for option.
Listing
Oradea
1,981 km
Precision Temperature Control Unit (TCU)
BOFA
Call
Year of construction: 2016, condition: as good as new (ex-display), machine/vehicle number: 00069, Precision Temperature Control Unit (TCU) - BOFA
Year of manufacture: November 2016, serial number 00069, excellent condition, the filter is in good shape, electric documentation of the TCU is present, refrigerant gas: R134a 0.75Kg in the system
Precision temperature control unit designed for solder paste applications
Reverse flow air technology enhances filter performance and increases life
Process monitoring via temperature sensors that can be strategically mounted within the printer
Precision temperature control unit designed for solder paste applications.
The Temperature control unit (TCU) has been designed to meet a very specific process requirement within the electronics sector. The reliable placement of surface mount devices during PCB assembly requires that during the initial printing stage the solder paste is maintained at a temperature that ensures optimum performance.
With assembly now on a global basis, the variation of local climate and factory conditions means that this optimum level cannot be maintained without some form of intervention.
The design of the TCU includes cooling and heating elements which ensure that the temperature within the printing environment is maintained within 1ºC of the optimum paste performance temperature regardless of whether the factory ambient is above or below this level.
Reverse flow air (RFA) technology
The RFA technology feature causes a fall in velocity and air direction change. Larger particulate falls out of the airstream into the filter’s drop-out chamber. With less particulate entering the filter media the filter life is significantly increased, enhancing filter capture performance and ensuring longer life.
Technical specifications
1. Chiller module
2. Condensate collection container
3. Air outlet
4. Air inlet
5. Castors
6. Service door lock
7. Fail style condensate sensor
8. Four colour beacon mounting plate
Technical data:
Air delivery system: Re-circulating
Temperature range: +/- 8°C from ambient within a programmable range of 19 – 30°C
Temperature control: +/- 1°C
Cooling capacity: 2000W
Temperature sensor: Shared output from integrated printer sensor (0 – 10V input over 0 –50°C)
Air in filter: G4 (91% Average Arrestance) EN 779: 2002
Refrigerant gas: R134a 0.75Kg
Full load current: 12.6A
Start up Current: 20A
Frequency: 50 / 60Hz
Voltage: 230V +/- 10% (207V – 253V working range) Single Phase
Noise Level: higher then 75dBA*
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Dimensions: 1285mm (H) + (beacon 450mm), 540mm (W), 670mm (D)
Condensate: Collected in 5 litre container for disposal or piped to drain
Weight: 140Kg
Documentation include: Electrical Schematic
Sales price: 1.900 Euro + VAT, negotiable, FCA Oradea, Romania
Irrtum, Anderungen und Zwischenverkauf vorbehalten /
Subject to errors, changes and prior sale /
Ne rezervăm dreptul la greșeli, modificări și vânzare prealabila.
We speak English. /Wir sprechen Deutsch./ Beszélünk magyarul. /Nous parlons français/Vorbim romana
Listing
Möttingen
1,202 km
Injector sandblasting cabinets for professionals
SAPI SandstrahlkabinenInjektor-Sandstrahlkabinen
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Condition: new, Year of construction: 2025, INJECTOR Sandblasting Cabinets
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The Benefits and Applications of Injector Sandblasting Cabinets
Injector sandblasting cabinets use an air-driven venturi system to create a vacuum that draws abrasive media into the airstream.
The abrasive media is then propelled at high velocity from the blast nozzle, where it impacts the surface to be cleaned or prepared. Injector sandblasting is typically used for lighter applications.
Our SAPI injector sandblasting cabinets—including the Elk, Ram, and Buffalo models—use an air-driven vacuum system that draws the media to the front of the nozzle, where it meets the airstream and then "shoots" the mixture onto the workpiece. These cabinets are ideal for lighter applications and offer efficient and cost-effective solutions.
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The Widder 70/100 injector sandblasting cabinet is a robust and reliable solution for demanding surface preparation requirements. Featuring a large work surface, a right-hand side door, and an efficient dust control system, this cabinet is designed for use with various types of abrasives and can accommodate small to medium-sized parts. It is ideal for industrial applications such as metal fabrication shops and workshops.
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The Elch 100/130 injector sandblasting cabinet from SAPI is a compact and versatile solution for medium to large parts. Equipped with a large viewing window, two side doors, and an efficient filtration system, this cabinet allows for easy monitoring of the blasting process and ensures a clean and safe working environment. The Elch is designed for use with a wide variety of abrasives. Its user-friendly design and efficient blasting process make it an ideal choice for lighter applications in industries such as automotive, aerospace, and manufacturing.
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The Büffel 140/180 injector sandblasting cabinet is a robust blasting machine designed for demanding applications. It features an air-driven venturi system that draws abrasive into the airstream and expels it at high speed from the blast nozzle. The Büffel cabinet is also available with an integrated filtration system that helps reduce dust and improve air quality during the sandblasting process. Loading heavy parts is also easily possible thanks to the front door using a forklift or crane. With its robust construction and efficient blasting performance, the Büffel 140/180 injector sandblasting cabinet is an ideal choice for industrial applications requiring high throughput and minimal downtime.
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