DYC-1000C Ultrasonic Vibrating Screen 500 Mesh High Precision Powder Sieve Carbon Steel

Basic Properties
Place of Origin: Henan, China
Brand Name: DY
Certification: ISO 9001:2015, CE
Model Number: DYC-1000C
Trading Properties
Minimum Order Quantity: 1 Set
Price: USD 2000-4200 / Set
Payment Terms: T/T, L/C, Western Union
Supply Ability: 60 Sets per Month
Specifications
Model: DYC-1000C Screen Diameter: 950 Mm
Screen Layers: 1-3 Layers Screening Mesh: 5-500 Mesh
Ultrasonic Frequency: 30-50 KHz Motor Power: 1.1 KW
Voltage: 380V 50Hz 3 Phase Screening Precision: Up To 98%
Noise Level: Below 75 DB Body Material: Carbon Steel
Dimension (L*W*H): 1200*1050*1000 Mm Weight: 330 Kg
Warranty: 18 Months
High Light:

Carbon Steel Ultrasonic Screen

,

High Precision Anti Caking Sieve

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Custom Ultrasonic Sieve System

Product Description

DYC-1000C Ultrasonic Vibrating Screen

The DYC-1000C ultrasonic vibrating screen combines low-frequency three-dimensional vibration with high-frequency ultrasonic oscillation, delivering 500 mesh ultra-fine sieving with anti agglomeration performance and low noise operation. The Carbon Steel contact parts and fully customizable design make it an ideal solution for difficult-to-screen powders in food, chemical, pharmaceutical and metallurgy industries.

Key Features

  • High Screening Precision: The intelligent ultrasonic generator drives the transducer at 30-50 kHz, transmitting high-frequency oscillation evenly to the screen surface through the resonant ring. Combined with three-dimensional low-frequency movement, it achieves screening precision up to 98% and sieving fineness down to 500 mesh (28 microns).
  • Anti Agglomeration Design: Ultrasonic vibration continuously breaks the surface tension of fine particles, effectively preventing mesh plugging, material agglomeration and clustering. Ideal for high adsorption, high static, high density and light proportion powders such as carbon black, silica, titanium dioxide and toner.
  • Low Noise Operation: The optimized vibration motor and damping structure keep operating noise below 75 dB, creating a comfortable working environment for round-the-clock production.
  • Fully Customizable: Screen layers, mesh size, contact material (304/316L stainless steel or carbon steel), outlet direction and motor voltage can all be customized according to your material characteristics and site requirements.

Technical Specifications

ModelDYC-1000C
Motor Power1.1 kW
Effective Diameter950 mm
Screen Layers1-3 layers
Screening Mesh5-500 mesh
Ultrasonic Frequency30-50 kHz
Voltage380V 50Hz 3 Phase
Screening PrecisionUp to 98%
Noise LevelBelow 75 dB
Body MaterialCarbon Steel
Dimension (L*W*H)1200*1050*1000 mm
Weight330 kg

Working Principle

The ultrasonic generator creates high frequency oscillation, and the transducer converts it into high frequency sine shaped longitudinal oscillatory waves. The waves are transmitted to the resonant ring and create sympathetic vibration, which is then distributed evenly onto the screen surface. Based on the low frequency three-dimensional movement plus ultrasonic vibration, the machine not only prevents screen mesh jam but also significantly improves sieving capacity and quality.

Industry Applications

  • Food industry: milk powder, starch, sugar powder, tea powder, additives
  • Chemical industry: carbon black, silica, titanium dioxide, toner, pigment, resin powder
  • Pharmaceutical industry: fine herbal powder, pills, granules, APIs
  • Metallurgy and new materials: metal powder, lithium battery materials, abrasive powder, kaolin

Packaging & Shipping

Export wooden case with foam protection, loaded by container. Delivery time 15-25 working days after deposit.

FAQ

Q: How does the ultrasonic system prevent mesh blocking? The resonant ring transmits high-frequency ultrasonic oscillation evenly onto the screen surface, which keeps fine particles in a suspended state and prevents them from wedging into the mesh openings. This eliminates the need for frequent manual cleaning.

Q: Can the machine be customized? Yes. Layers, mesh size, material and voltage can all be designed according to your material characteristics and capacity requirements.