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Stainless Steel Screen Composite Screen Mesh

Flat Composite Vibrating Screen Mesh

Flat Composite Vibrating Screen Mesh adopts flat multi-layer stainless steel woven mesh compounded with vulcanized rubber frame It features stable aperture, good solid-liquid separation performance and convenient installation Widely used for solids control in oil drilling, as well as grading, dewatering and desliming in mining, aggregate and coal washing industries

2026-09-09 15:08:35
Custom Manufacturing
ISO 9001 Certified
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Flat Composite Vibrating Screen Mesh

Product Overview

Flat Composite Vibrating Screen Mesh consists of flat multi-layer stainless steel wire mesh and integrated vulcanized rubber border. Multiple layers of stainless steel mesh with different mesh counts are compounded together to form gradient filtration structure, which can intercept solid particles step by step. It complies with API RP 13C standard for oilfield drilling fluid solids control.

The flat mesh surface ensures uniform stress distribution during high-frequency vibration. The integral rubber frame absorbs vibration shock, prevents edge tearing and wire breakage, reduces noise and simplifies tensioning operation. With stable pore size and reliable separation effect, it is a common consumable for shale shakers. Multiple standard sizes and mesh ranges are available, and custom specifications are supported to fit different vibrating screen equipment. It is mainly applied in oil & gas drilling solids control, mining, quarry aggregate, coal preparation and fine material dewatering.


Key Features

Flat Multi-layer Composite Structure
Gradient pore design for staged interception of solid particles.
API RP 13C Compliance
Meets oilfield standard for drilling fluid solid-liquid separation.
Integrated Rubber Frame
Buffers vibration impact, prevents edge tearing and reduces noise.
Stable Aperture
Consistent mesh opening maintains stable separation accuracy.
Fast Tensioning & Installation
One-piece rubber border for quick mounting on shale shakers.
Wide Application
Suitable for oil drilling solids control, mineral grading, dewatering and desliming.

Technical Specifications

Common mesh size rangeSize (mm)
20 – 325697*1053
20 – 325697*1050
20 – 325700*1165
20 – 325697*846
ItemTechnical Specifications
MaterialFlat multi-layer stainless steel wire mesh + vulcanized rubber frame
Wire Material OptionHigh carbon steel / stainless steel wire
Aperture Range20 – 325 mesh
Wire Diameter0.3mm – 3.0mm
StructureMulti-layer flat composite, gradient pore filtration
Frame FeatureIntegrated rubber wrapped edge, anti-tearing
Core AdvantageFlat uniform stress, stable filtration, API RP 13C standard
Working Temperature-20℃ to +120℃
ApplicationOilfield solids control, mining, aggregate, coal washing, dewatering
Custom ServiceCustom mesh count and panel dimension

Stainless Steel Screen Composite Screen Mesh

Specifically designed for solid-liquid separation in oil drilling fluid applications, this multi-layer functional filter mesh is composed of stainless steel wire mesh of different mesh sizes through a special composite process, typically comprising a support layer, a filtration layer, and a protective layer.

  • Support Layer: Constructed from high-stiffness stainless steel wire mesh, ensuring structural stability under high-frequency vibration (1,500–3,000 times per minute) and high-pressure drilling fluid impact.
  • Filter Layer: Formed through precision weaving to achieve uniform pore sizes (20–300 mesh options), precisely intercepting rock debris particles ranging from 0.075 to 1.2 mm in drilling fluid.
  • Protective Layer: Constructed from acid- and alkali-resistant stainless steel material to withstand corrosion from corrosive media such as hydrogen sulfide and chloride ions in drilling fluid, thereby extending service life.

Stainless steel composite mesh features a gradient pore size design for graded filtration, with the upper layer intercepting large particles to prevent blockages and the lower layer providing fine filtration to enhance separation efficiency. Additionally, the composite manufacturing process ensures the surface flatness deviation is controlled within 0.5 mm/m, ensuring tight adhesion to the vibrating screen frame and minimizing secondary wear caused by resonance.


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