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Xinxiang Yonghua Machinery Co., Ltd. is a joint-stock enterprise specializing in the production of large and medium-sized mining machinery and equipment. The company integrates design, development, manufacturing, sales, and technical services. Our products include Mobile Crusher, Crushing Equipment, Sand Making Equipment, Supporting Equipment, The EPC General Contracting for Large-scale Aggregate Production Line.
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Vibrating Dewatering ScreenProcessing capacity: 10-300 t/hview more
Screen size: 1.2m × 3m-2.4m × 6m
Power: 2 × 3kw-2 × 15kw
Mesh aperture: 0.3-3mm -
Vibrating FeederProcessing capacity: 10-600t/hview more
Feeding force: ≤ 800mm
Vibration frequency: 15-20Hz
Amplitude: 3-5mm
Why Choose Us
Advanced Equipment
We are equipped with hundreds of advanced CNC machining equipment, including CNC DVT 8-meter vertical lathes, TK6926J CNC floor-standing milling and boring machines, various heavy-duty CNC horizontal lathes, specialized processing equipment for complex eccentric and special-shaped parts, and CNC cutting equipment, ensuring high-precision and high-efficiency manufacturing capabilities.
Customized Services
Our team of over 50 professional technicians can provide customized solutions based on our clients' specific needs, helping them overcome the dual challenges of site space limitations and complex terrain, achieving efficient and flexible equipment deployment and application.
Professional Certifications
Our equipment strictly adheres to international quality and safety standards. We are ISO 9001 quality management system certified, CE European Machinery Directive certified, and ASME machinery and pressure equipment certified. We also offer optional ATEX explosion-proof certification for machinery designed for use in explosive or hazardous environments, ensuring global product compliance and safety.
Rapid Global After-Sales Support
We offer an efficient and professional global after-sales service system: responding to customer requests within 1 minute, providing remote technical support within 30 minutes, dispatching on-site engineers within 72 hours, and providing uninterrupted 24/7 service. We also maintain a sufficient inventory of genuine spare parts to ensure stable equipment operation.
Our Best-Selling Supporting Equipment
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Vibrating Dewatering Screen
The vibrating dewatering screen takes the dual-motor self-synchronization technology as its core. Through linear reciprocating vibration, it realizes the dewatering, desliming and medium removal of materials, and is widely applied in fields such as sand and gravel aggregates, slime recovery, and dry discharge of tailings.
Vibrating Feeder
As the core pre-treatment equipment in the crushing and screening production line, the vibrating feeder adopts the double eccentric shaft excitation technology to achieve continuous and uniform feeding of lumpy and granular materials, and it also has the function of rough screening.
Vibrating Dewatering Screen Specification
|
Model |
Feed size (mm) |
Processing capacity (kw) |
Sieve plate specifications (mm) |
Screen plate area (㎡) |
Power (kw) |
Dimensions (mm) |
|
ZSD1530 |
≤10 |
30-60 |
1500*3000 |
4.5 |
3.0*2 |
3080*2500*1600 |
|
ZSD1848 |
≤10 |
60-100 |
1800*4800 |
8.64 |
7.5*2 |
4790*3065*1960 |
|
ZSD2448 |
≤10 |
80-150 |
2400*4800 |
11.52 |
11*2 |
5000*3740*1960 |
|
ZSD3060 |
≤10 |
120-200 |
3000*6000 |
18 |
18.5*2 |
6160*4520*2220 |
|
ZSD3660 |
≤10 |
150-250 |
3600*6000 |
21.6 |
22*2 |
6160*5120*2280 |
Vibrating Dewatering Screen Features
The whole machine is installed at a positive inclination angle, and the installation angle is 4 degrees adjustable, which is suitable for the requirements of different process materials.
The folding design of the feeding end of the screen panel is more conducive to dewatering treatment and prolongs the service life of the screen panel.
The rubber damping spring design has the advantages of good damping effect, low noise, small resonance field, good resilience, stable mechanical performance, long service life and low cost.
The wallboard is not welded. The steel plate with better impact toughness and cold bending is selected, and the rivet is used for hydraulic tension assembly.
Through finite element analysis, optimize the structural strength and vibration quality of the screen machine to the greatest extent, reduce stress and prolong the service life of the equipment.
The fluids touching parts and easily worn parts are sprayed with polyurea by the spraying machine imported from the United States, which is corrosion-resistant, erosion resistant and wear-resistant.
The post weld heat treatment process of main components can effectively eliminate the welding stress.
Product serialization to meet the manufacturing requirements of customers under different process conditions; Polyurethane screen panel is modular, more versatile and more convenient to replace.

Basic Principles of Vibrating Dewatering Screen
The vibrating dewatering screen separates or dehydrates materials through mechanical vibration. The vibrating dewatering screen is driven by a vibrating motor to convert electrical energy into mechanical energy, driving the screen body to produce high-frequency linear vibration.
The screen surface is designed to be inclined, so that the material is continuously thrown up and scattered under the action of vibration, and slides down along the inclined surface. During the vibration process, the water is separated from the material under the action of centrifugal force and discharged through the screen holes.
Solid particles are classified according to the difference in particle size. Fine particles smaller than the screen holes pass through the screen with vibration, and coarse particles larger than the screen holes move forward along the screen surface and are discharged from the discharge port.
The drive system usually uses a dual motor synchronous reverse rotation or an exciter structure, which can make the screen body perform stable linear reciprocating motion. The screen aperture can be customized according to the material characteristics, and the inclination angle can be adjusted. The vibrating dewatering screen completes the particle size classification and dewatering of the material simultaneously through the synergistic effect of vibration ejection, gravity sedimentation and screen filtration.

Vibrating Dewatering Screen Industry Applications
|
Industry |
ApplicationScenario |
Function |
CommonMaterials |
|
Sand & Aggregates |
Sand Washing Production Line |
Remove surface moisture from sand, improve product dryness |
Manufactured sand, river sand, quartz sand |
|
Coal Industry |
Coal Slime Recovery in Coal Washery |
Reduce moisture content in coal slime, improve resource utilization |
Clean coal, coal slime, tailings coal |
|
Mineral Processing |
Tailings Dry Discharge System |
Dewater tailings to meet dry stacking standards |
Iron ore tailings, copper ore tailings |
|
Environmental Treatment |
Industrial Sludge Dewatering |
Dewater industrial sludge, reduce sludge volume for easier transport |
Municipal sludge, industrial sludge |
|
Chemical/Metallurgy |
Slurry Concentration Treatment |
Increase slurry concentration |
Calcium carbonate, slag, metal powder |
|
Building Materials |
Ceramic Raw Material Processing |
Control moisture content and particle size of raw materials |
Clay, quartz powder, refractory materials |
Vibrating Feeder Specification
|
Model |
Tank size (mm) |
Feed size (mm) |
Motor power (kw) |
Throughput (t/h) |
|
ZGC0983 |
900*3800 |
≤500 |
3.7*2 |
150-200 |
|
ZGC1238 |
1200*3800 |
≤750 |
4.2*2 |
250-400 |
|
ZGC1250 |
1200*5000 |
≤750 |
7.5*2 |
250-450 |
|
ZGC1538 |
1500*3800 |
≤1000 |
6.3*2 |
400*700 |
|
ZGC1550 |
1500*5000 |
≤1000 |
10*2 |
400-900 |
|
ZGC2050 |
2000*5000 |
≤1200 |
22*2 |
800-1500 |
|
ZGC2560 |
2500*6000 |
≤1600 |
45*2 |
2000*3000 |
Benefits of Vibrating Feeder
Efficient: The vibrating feeder can achieve high-speed transportation of materials, especially suitable for scenarios that require fast transportation.
Accurate Measurement: The vibrating feeder can achieve highly accurate measurement, which helps ensure the accurate placement of materials.
Simple Adjustment: The adjustment system of the vibrating feeder is relatively simple, making it easy to operate and maintain.
Plug And Play: Vibration feeders are usually equipped with a plug and play installation method, making the installation process of the equipment more convenient.
Long Lifespan: The vibration feeder has a longer service life, which can reduce the frequency of equipment replacement and save costs.
Strong Adaptability: The vibrating feeder has low requirements for physical properties such as material composition, content particle size, and moisture content, so it has strong adaptability.
Durability: The vibration feeder has good durability and low maintenance costs, which also helps to reduce operating costs.
Low Noise: The vibration feeder produces less noise during operation, which is beneficial for improving the working environment.
Energy Saving: The vibration feeder uses a vibration motor or electromagnetic driver as the excitation source, thus having good energy-saving effects.
Easy To Clean: Vibration feeders are usually made of stainless steel structure, which makes the equipment easier to clean and particularly suitable for use in the pharmaceutical and food processing industries.
Critical Components of Vibrating Feeder
Feed End: The most upstream part of the feeder trough where raw or bulk material is initially introduced for processing or transport.
Discharge End: Located at the downstream end of the trough, this is where processed or screened material exits the feeder onto subsequent equipment or conveyors.
Eccentric Weight: Offset weights attached to the rotating shaft or flywheel produce the unbalanced forces necessary for oscillatory motion, ensuring uniform vibration transmission along the trough. Proper design of these weights is crucial for efficient material flow and vibration control.
Reactor Springs: High-resilience springs that store and release energy—these are key vibration isolation and oscillation elements that underpin the performance of the feeding process.
Isolation Springs: Functions as shock absorbers, protecting the equipment's supporting framework from potentially damaging vibrational forces.
Tuning Springs: Used to adjust the natural operating frequency of the feeder, ensuring the system matches the application's requirements in terms of efficiency and throughput. Frequency tuning also aids in achieving optimal resonance for maximum energy efficiency.
Dynamic Balancer: A counterweight system in balanced feeders, the balancer reacts to reverse drive forces, significantly reducing vibrational transmission to foundations and structures. This leads to quieter operation and extended equipment life.
Liner: Hard-wearing liner material (such as UHMW, polyurethane, rubber, or stainless steel) is installed within the trough to offer protection from abrasion, chemical exposure, extreme temperatures, or material buildup. Liners can be chosen for specific applications like high-wear minerals, powders, hot foundry sand, or sticky food products.
Screen: An integral separator that removes fines or unwanted particulates from more coarse feed material, aiding in product quality and downstream processing efficiency.
Grizzly: A robust, heavy-duty screen composed of parallel bars or rails aligned with the material flow. A grizzly screen excels at scalping large, chunky materials and is frequently used in mining, aggregate, and mineral processing applications to pre-screen and protect downstream equipment.
Applications of Vibrating Feeder
● In the beneficiation plant, the vibrating feeder can uniformly, timed, and continuously transport the ore from the silo to equipment such as crushers and ball mills, providing stable material supply for subsequent grinding, flotation, and other processes. It can also perform coarse screening on the ore, removing some impurities and small pieces of ore in advance.
● In coal mining, coal can be transported from the coal bunker to belt conveyors or other transportation equipment, ensuring the continuity and stability of coal transportation and improving mining efficiency.
● In cement plants, raw materials such as limestone, clay, and iron ore can be evenly fed into the raw material mill for grinding, ensuring uniform composition of raw materials and improving cement quality.
● In ceramic factories, transporting ceramic raw materials such as kaolin and quartz sand to equipment such as ball mills and mixers ensures a stable supply of raw materials, which helps improve the performance and quality of ceramic products.
● In steel plants, vibrating feeders are used to transport raw materials such as iron ore, coke, limestone, etc. to blast furnaces for ironmaking. They can also be used to transport scrap steel and other materials to electric furnaces for steelmaking, ensuring the smooth progress of the smelting process.
● In non-ferrous metal smelting, copper ore, aluminum ore, etc. can be transported to corresponding smelting equipment to provide a stable material flow for the extraction and refining of non-ferrous metals.
● In chemical plants, it can be used to transport various granular and powdery chemical raw materials, such as plastic particles, fertilizer raw materials, pharmaceutical raw materials, etc., to achieve precise batching and quantitative feeding, ensuring the accuracy of chemical reactions and the stability of product quality.
● In the production of coatings and inks, raw materials such as pigments and fillers are evenly transported to mixing equipment to ensure consistency in product color and performance.
● In a flour mill, grains such as wheat can be evenly fed into a grinder for grinding, improving the production efficiency and quality of flour.
● In rice processing plants, rice can be transported to equipment such as hullers and rice mills to achieve continuous processing of rice.
● In the garbage treatment plant, the garbage can be evenly transported to equipment such as incinerators and crushers to improve the efficiency of garbage treatment.
● In pharmaceutical factories, vibrating feeders can be used to convey materials such as drug particles and capsules, achieving automated batching and packaging.
Raw Material Inspection
All incoming steel and alloy materials are inspected for chemical composition, strength, and surface quality using spectrometers and ultrasonic flaw detection equipment.
Precision Machining Checks
During CNC machining, critical components are measured with calipers, micrometers, and coordinate measuring machines (CMMs) to maintain dimensional accuracy.
Welding and Structural Testing
Welded components are inspected visually and through non-destructive testing methods, such as magnetic particle testing (MT) or ultrasonic testing (UT), to identify and eliminate hidden flaws.
Component Pre-Assembly Verification
Key parts like rotors, shafts, and gear units are verified for size, alignment, and compatibility before entering the assembly process.
Assembly Quality Control
Assemblies are checked for alignment, torque settings, and mechanical clearances to ensure proper fit and function.
Performance Testing
All machines undergo dry runs and functional tests to evaluate vibration, noise, stability, and operational reliability before delivery.
Final Inspection & Packaging
Before packing, a final inspection confirms that all components are in place, surfaces are clean, safety labels are applied, and documentation is complete.
Order Process
Contact Customer Service
1
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Submit Order
2
>>
Obtain a Quote
3
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Confirm Order
4
>>
Arrange Payment
5
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Track Order
6
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Receive and Inspect Goods
7
Packaging and Shipping
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Packaging |
Wooden box |
|
Transportation methods |
Road transport, rail transport, sea transport, air transport |
FAQ
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vibrating feeder in coal handling plant, sand vibrating sieve machine, vibrating screen in coal handling plant
