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Stainless steel diagonal mesh

Stainless steel diagonal mesh

Product Description : 1、 Basic properties and process: Stainless steel twill mesh is a type of product made using twill weaving technology in stainless steel mesh, using 304, 316, 304L and other types ...
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1、 Basic Attributes and Craftsmanship

Stainless steel twill mesh is a type of product made using twill weaving technology in stainless steel mesh, using 304, 316, 304L and other types of stainless steel wire as raw materials. The characteristic of twill weaving is that the warp and weft threads are not simply interlaced, but form oblique textures according to a certain rule - usually one warp thread will be continuously interwoven with multiple weft threads, presenting an oblique pattern. This process makes the mesh structure more compact while retaining certain elasticity and strength, making it suitable for scenarios with specific requirements for filtration accuracy and structural stability.

2、 Product Features

Tight mesh structure: Compared to plain weave, diagonal weave has denser mesh holes visually. With the same wire diameter and mesh size, the mesh coverage is higher, which can intercept many small impurities during filtration and is suitable for medium precision filtration needs.

Balanced strength performance: twill weaving increases the number of interweaving points between warp and weft fibers, resulting in a more uniform distribution of forces. The tensile strength and impact resistance of the mesh are relatively better, and it is less likely to experience local deformation or fiber diameter breakage when subjected to certain pressures or external collisions.

Corrosion resistance (based on actual reports) and material matching: relying on the characteristics of the selected stainless steel material, 304 twill mesh can resist corrosion in neutral environments at room temperature, while 316 and 304L models remain stable in complex environments such as acid and alkali, high salt, etc., and can adapt to various corrosive scenarios.

Coordination between breathability and filtration: Although the mesh structure is tight, the channels formed by diagonal weaving can still protect the determined breathability and liquid circulation. During the filtration process, it can intercept impurities without excessively hindering the passage of media, and the filtration efficiency is relatively stable.

Good processability: It can be cut into different sizes according to needs, and can also be processed into cylindrical, sheet and other shapes, suitable for various filtering equipment or protective devices, and relatively easy to install and maintain.

3、 Common specifications

Material type:

304 stainless steel diagonal mesh: suitable for general industrial filtration, water purification and other neutral scenarios at room temperature, with moderate cost-effectiveness and a wide range of applications.

316 stainless steel diagonal mesh: It has strong corrosion resistance (based on actual reports) and is suitable for environments with corrosive media such as chemical production and seawater treatment. It can maintain structural stability for a long time.

304L stainless steel diagonal mesh: low carbon content, good welding performance, suitable for filtering or protective equipment that requires welding assembly.

Mesh size and wire diameter:

Mesh size: usually between 20 microns and 5 millimeters, can be selected according to filtration accuracy requirements. Smaller mesh sizes (such as 20-100 microns) are suitable for excellent filtration, such as drug pre-treatment; Larger mesh sizes (such as 1-5 millimeters) can be used for coarse filtration of industrial raw materials.

Wire diameter specification: The wire diameter range is generally 0.05mm-1.5mm. Mesh with finer wire diameter is suitable for precision filtration, while mesh with thicker wire diameter can withstand high pressure and is suitable for heavy-duty filtration or protection scenarios.

Mesh size: The width is commonly 0.5m-2m, and the length is 1m-50m. It can be customized according to actual needs to adapt to different equipment sizes and installation spaces.

4、 Applicable scenarios

Industrial filtration industry:

In chemical production, it is used for filtering liquid raw materials, removing suspended particles and impurities, and protecting the purity of chemical products.

The filtration of oil products in the petroleum industry, such as diesel and lubricating oil, reduces mechanical impurities in the oil and protects equipment.

The filtration of coolant in metal processing intercepts metal debris, prolongs the service life of coolant, and reduces equipment wear.

Water treatment scenario:

The intermediate filtration process in industrial wastewater treatment removes colloidal particles and larger suspended solids from the water, providing conditions for subsequent scale treatment.

The water quality of the swimming pool is filtered to intercept impurities such as hair and sediment in the water, keeping the water clean.

Excellent screening scenario:

Screening of powdered materials, such as grading and screening of pigment and coating powders, to separate particles of different sizes and protect product uniformity.

Screening of powdered raw materials (such as flour and starch) in food processing to remove clumps and impurities and improve food quality.

Protection and Support:

As a protective filter for equipment, such as the air inlet filter of fans and pumps, it prevents foreign objects from entering the interior of the equipment and causing damage.

In some devices, as a support network, such as the support layer of a catalyst carrier, it not only protects breathability but also can withstand the weight of the carrier.

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