The Sintered Stainless Steel Multi-Layer Wire Mesh Laminated Plate is a product constructed by overlapping multiple layers of woven wire mesh and subsequently sintering them in a vacuum furnace under high temperatures and pressures. This process enhances the strength and overall durability of the material while ensuring uniform filter aperture distribution. By addressing the limitations of individual layers such as reduced strength, poor rigidity, and unstable aperture size, this sintered multi-layer wire mesh plate offers a balanced combination of filter rating, permeability, and robustness.
Ideal for applications demanding high filter accuracy, resistance to pressure differentials, abrasion, heat, cold, and processing, this product finds utility across various industries including petrochemicals, nuclear, synthetic fibers, pharmaceuticals, food, and aerospace.
Sintering can be applied to various types of woven wire meshes, effectively bonding all wires together to prevent medium migration. Through the vacuum furnace sintering process, the wires are fused securely, ensuring stability and eliminating the risk of component failure or malfunctions in critical applications such as medical or hydraulic fluid filtration. Once sintered, the mesh structure remains fixed, preventing wire movement under pressure and ensuring consistent aperture sizes throughout its service life.
Specification
Material: Stainless steel wire
Filtration precision: 1um
Technic: Woven, vacuum sintering
Layers: 5 layers
Width: 20mm
Length: 100mm
Thickness: 5mm
What is the structure of 5-layers stainless steel wire mesh plate?
The structure of TOPTITECH's five-layer laminated board, a widely adopted sintered wire mesh design, involves layering a single fine wire mesh between two thicker square woven meshes and enclosing them within two robust Dutch woven metal wire meshes. This configuration is sintered to create a solid plate, with the subtle wire mesh acting as the filter bed. Customizable to specific filtration requirements ranging from 1 micron to 200 microns, this design offers versatility and precision in filtration applications.
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The multi-layer sintered stainless steel wire mesh filter tube is a type of filter component. It is formed by multiple layers of fine stainless steel wire mesh and the gaps between the layers are bonded through a special high-temperature sintering process, creating a tubular structure. This type of filter tube typically employs high-quality stainlessThe manufacturing process of this type of filter tube involves several steps: Selection of high-quality stainless steel wire materials, such as 316L stainless steel wire, typically arranged in multiple layers. Selection of high-quality stainless steel wire materials. This causes the layers of wire mesh to sinter and fuse together, creating an integral filtering structure. Filter tubes form a fixed grid structure. With precise pore sizes and a certain level of filtration accuracy, effectively filtering out tiny particles and impurities in liquids or gases. Finally, the tube is cut or customized into different sizes and shapes to meet specific filtration requirements. The main features Effective Filtration: To ensure sterility and hygiene, pharmaceutical factories routinely perform thorough cleaning and disinfection of pharmaceutical tools and filtration equipment. Sintered stainless steel powder filters facilitate this process as steel, unlike other metals, has fewer pores that easily trap impurities. Micron-Level Pores: The mesh filter core can remove particles as small as 0.2 microns and can be customized for your specific equipment. Stainless steel's malleability and stable performance are robust. Choosing the appropriate stainless steel sanitary filter depends on its application within the processing unit. Easy Cleaning and Disinfection: The popularity of sintered stainless steel filters in the pharmaceutical industry stems from their ease of cleaning and disinfection. Maintaining equipment cleanliness ensures prolonged equipment lifespan while minimizing contamination risks. High and Low-Temperature Resistance: Stainless steel alloys are known for their excellent performance at both high and low temperatures. At high temperatures, stainless steel demonstrates outstanding compressive strength, making it suitable for high-temperature filtration needs. Conversely, at lower temperatures, stainless steel's tensile strength actually increases more than at room temperature, making it ideal for refrigeration and low-temperature filtration equipment.
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