Thin Oil Vibrating Screen

The movement of the thin oil vibrating screen is driven by an electric motor through a V-belt to a vibrator with an eccentric mass, which causes the screen bed to perform periodic asymmetrical reciprocating mechanical vibration. This loosens the material layer on the screen surface and throws it off the screen surface, allowing fine materials to fall through the material layer, separate through the screen holes, and vibrate out the materials stuck in the screen holes. The fine materials move downwards and are discharged through the screen mesh.

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Product Introduction

 

The thin oil vibrating screen operates via a motor driving an eccentric exciter through a V-belt, generating periodic asymmetric reciprocating mechanical vibration. This vibration loosens the material layer on the screen deck, lifts materials off the screen surface, and allows fine particles to pass through the material layer and screen holes for separation. It also shakes out materials stuck in the screen holes, while fine particles move downward and are discharged through the screen mesh.

Core Functions:

  1. Efficient screening & classification of materials by particle size.
  2. Self-cleaning screen holes to avoid clogging and maintain stable throughput.
  3. Gentle material handling to reduce wear and preserve particle integrity.
  4. Stable operation with thin oil lubrication for extended component life.

Application Fields:

  • Mining: Screening ores (iron, copper, non-metallic ores) in crushing lines.
  • Construction: Classifying aggregates (sand, gravel) for concrete/asphalt.
  • Metallurgy: Processing sinter, slag, and smelting raw materials.
  • Coal Industry: Sorting coal and coal gangue.
  • Chemical: Separating granular chemical raw materials or products.

 

Advantages & Characteristics

 

Working Principle

 

The thin oil vibrating screen operates as follows: A motor drives an eccentric exciter via a V-belt. The exciter generates periodic asymmetric reciprocating mechanical vibration, which is transmitted to the screen deck. This vibration loosens the material layer on the deck, lifts materials off the screen surface, and allows fine particles to pass through the screen holes for classification. Meanwhile, the vibration shakes out materials stuck in the holes (preventing clogging), and the screened fine materials move downward to be discharged through the mesh. The screen’s thin oil lubrication system reduces friction in the exciter and bearings, ensuring stable, long-term operation.

 

Technical Parameters

 

 

 

 

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