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Stainless Steel Screen Composite Screen Mesh

Standard Composite Vibrating Screen Mesh

Standard Composite Vibrating Screen Mesh adopts multi-layer stainless steel mesh compounded with integrated vulcanized rubber frame It follows API RP 13C standard, featuring stable aperture, reliable solid-liquid separation performance and cost-effective Widely used for oilfield drilling solids control, mining, aggregate and coal washing grading & dewatering

2026-09-09 15:17:23
Custom Manufacturing
ISO 9001 Certified
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Standard Composite Vibrating Screen Mesh

Product Overview

Standard Composite Vibrating Screen Mesh is the conventional multi-layer composite screen for shale shakers. It is fabricated by compounding multiple stainless steel wire meshes with different mesh counts, forming gradient pore structure for step-by-step solid particle interception. The whole mesh panel is bonded with one-piece rubber frame through vulcanization process.

This standard composite screen has balanced performance in vibration resistance and filtration precision. The rubber border absorbs vibration impact, prevents edge tearing and wire breakage during long-time high-frequency operation. It avoids premature failure and simplifies screen replacement. With complete standard mesh specifications and competitive price, it serves as the mainstream consumable for most conventional drilling and mineral screening projects. It can be customized in mesh number and panel size to match various shale shaker and vibrating screen models. It is commonly applied in oil & gas drilling solids control, quarry aggregate classification, coal preparation, fine material dewatering and desliming.

Key Features

Composite Metal-Rubber Structure
Steel wire mesh combined with vulcanized rubber frame, anti-tearing at edges.
High Tensile Steel Wire
Stable aperture and high screening precision for fine and medium materials.
Vibration & Noise Reduction
Rubber frame cushions impact, lowers vibration transfer and working noise.
Easy Tensioning & Installation
Integrated frame design for fast mounting on vibrating screen machines.
Good Anti-Blinding Performance
Open woven mesh structure helps reduce material pegging under vibration and maintains stable screening efficiency.
Wide Application Range
Suitable for both dry and wet materials, available for grading, dewatering and desliming operations.

Technical Specifications

Common mesh size rangeSize (mm)
20 – 325600*1040
20 – 325460*1400
20 – 3251000*1150
ItemTechnical Specifications
MaterialMulti-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 AdvantageStandard specification, stable filtration, cost-effective
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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