SUS316L five-layer sintered filter mesh is a widely used sintered mesh with standard structure. It is a new type of filter material made by stacking five layers of stainless steel sintered mesh in sequence and vacuum sintering. Generally, it is a five-layer structure, which is divided into five parts: protection layer, filter control layer, dispersion layer, support skeleton layer, and skeleton layer.
The standard five-layer sintered mesh filter has the characteristics of strong corrosion resistance, good permeability, high strength, easy cleaning and back cleaning, uniform filtration accuracy, hygienic and clean filter material, and no shedding of the wire mesh.
Sintered mesh has a wide range of applications, suitable for various filtration, separation, fluid bed, powder transportation, dust removal and explosion protection, and can be used in petrochemical industry, metallurgical industry, pharmaceutical industry, water treatment, food industry, environmental protection, machinery industry and other industries.
Product parameters
Standard thickness: 1.7MM
Standard material: stainless steel 304, 316, 316L
Standard size: 500*1000MM, 600*1200MM, 1000*1200MM
Note: On the basis of 5 layers of sintered mesh, add a layer of 12 mesh screen to become 6 layers of sintered mesh, with a thickness of 3.5MM, better pressure resistance.
Five-layer structure display
Features
1. Strong tensile strength and stiffness
It has a high mechanical strength, excellent processing, welding, and assembling capabilities, and is simple to use.
2. Consistent and uniform precision
It has a high mechanical strength, excellent processing, welding, and assembling capabilities, and is simple to use.
3. A wide range of applications
It can be utilized in temperatures ranging from -200 �°C to 600 �°C, as well as for acid and alkali filtration.
4. Outstanding cleaning performance
It has a good countercurrent cleaning effect, can be used frequently, and has a long service life (it can be cleaned by countercurrent water, filtrate, ultrasonic, melting, baking, etc.).
5. Excellent performance
Excellent mechanical performance, pressure and suction filtration, ability to satisfy various filtration needs, and ease of operation.
Application fields
1. In the machinery business, precise filtration of different hydraulic fluid lubricants;
2. Filtration, washing, and drying of materials in the pharmaceutical business; filtration and purification of various polymer melts in the chemical fiber film industry; filtration of various high-temperature and corrosive liquids in the petrochemical industry;
3. Use of fluidized plates in the steel sector and gas homogenization in the powder business;
4. Distributors of electrical appliances that are explosion-proof, etc.
316L Five-layer sintered mesh filter disc is a highly durable and efficient filtration material that is created by bonding together five layers of wire mesh  with varying openings and diameters through a process called sintering. This process involves bonding the contact points of the� wire meshes� together in a vacuum, resulting in a seamless, porous material with� enhanced mechanical strength, high permeability, and superior structural integrity. The sintering procedure boosts the mechanical strength of the coarser support layers while maintaining the filtration rating of the finest mesh layer. Additionally, heat and pressure are used to create molecular diffusion welds at every intersection of the wire mesh, further improving the temperature and pressure resistance of the sintered mesh. 316L Five-layer sintered mesh filter disc is widely used in gas distribution,� polyester filtration, water treatment, and other applications where reliable and high-quality filtration is required. Parameters Material:� Stainless steel 316 L Filtration accuracy:� 50 microns Heat resistance:� 600 �°C Size: Diameter95mm*Thickness6.0mm Features Exceptional Mechanical Strength and Stability: The sintering process creates a seamless, integrated material that offers unparalleled mechanical strength and stability, making it highly resistant to wear and tear. High Permeability: The porous nature of the sintered wire mesh filter allows for maximum flow rates, making it ideal for applications where high levels of permeability are required. Corrosion Resistance: Stainless steel is inherently resistant to corrosion, making it an excellent choice for applications where exposure to harsh environments is a concern. Versatile Fabrication: Stainless steel sintered wire mesh filters can be easily fabricated into a variety of shapes and sizes, allowing for customization and versatility in a range of applications. Applications The versatile and efficient stainless steel sintered wire mesh filter finds use in a wide range of applications. It is commonly employed in the filtration of a variety of substances including polymers, food, water, cosmetics, pharmaceuticals, and chemicals. Additionally, it is utilized in the fluidization of bulk materials in conveyors, driers, coolers, and� storage silos, as well as in hydraulic fuel filtration. Its ability to withstand harsh environments and maintain reliable filtration performance makes it a popular choice across industries.
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Five-layer mesh filter element is composed of standard five-layer stainless steel sintered mesh. Standard Sintered Mesh consists five stainless steel layers, which is laminated and sintered in vacuum. This kind of filter cartridge has the following advantages such as strong corrosion resistance, excellent permeability, high strength, easy cleaning and backwashing, accurate filtering accuracy, clean filter material and no screen falling off. The main filter material of the five-layer mesh filter element is a standard five-layer stainless steel sintered mesh. Standard five layer sintering is made of five layers of stainless steel wire mesh by superposition and vacuum sintering. The filter element made of five-layer stainless steel sintered mesh has characteristics such as strong corrosion resistance, good permeability, high strength, easy cleaning and back-washing, accurate filtering accuracy, sanitary and clean filter material, and no peeling of the screen.
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Multi-layer sintered metal mesh filters combine the advantages of woven wire mesh, with micron-level pore sizes and a diffusion-bonded wire mesh laminated plate, to provide mechanical strength and stability. Typically, fine woven metal wire mesh filters are placed within multiple layers of sintered laminated plates to protect the fine mesh from mechanical damage caused by environmental pressure. 5-layer sintered laminated plates are commonly used for sintered wire mesh filters. Parameters Material: SUS334L SUS316L layers: single layer, 2 to 3 layers, 5 layers and 6 layers or customized Sheet size customized Features 1.Uniform pore size 2.High temperature resistance and corrosion resistance 3.Cleanable and Reusable 4.Micron-level pore size Different layers has different performance characteristics Single layer sintered wire mesh is formed by diffusion bonding, resulting in a permanent geometric shape, pore size and filtration level. It is a cost-effective alternative to mesh filters and commonly found in disc, ring, and simple cylindrical shapes. Two to three layers of sintered wire mesh have good mechanical strength and medium-sized pores, suitable for manufacturing pleated cylindrical filters, candle filters, and sintered discs. This type of sintered wire mesh has a filtering layer with the desired pore size sandwiched between outer and inner protection layers. Five-layer sintered wire mesh consists of one layer of fine woven wire mesh sandwiched between two layers of coarser woven wire mesh protection layers. These three layers of woven wire mesh are then sintered together with two support layers to enhance the filtration performance. This type of sintered metal wire mesh laminated plate has a wide range of applications in chemical processing, food and beverage, pharmaceuticals, transportation, and is used for liquid and gas filtration, fluidized beds, and other applications. Application Oil and gas production Chemical industry Food Aerospace Polymer filtration Energy and Nuclear Power
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