Product Introduction
40 Micron Stainless Steel Sintered Wire Mesh Filter Element is a type of filter that is made by sintering multiple layers of stainless steel wire mesh together. Sintering is a process that involves compacting and heating a material without melting it, which causes the particles to fuse together and form a solid mass.
40 Micron Stainless Steel Sintered Wire Mesh Filter Element consists of multiple layers of wire mesh that are stacked and then sintered together. The sintering process creates a solid bond between the wires, resulting in a robust and durable filter element that can withstand high temperatures, pressures, and corrosive environments.
Parameter
Material: stainless steel
Grade:SS 316L, SS 304L, SS 316, SS 304
OD: Max. 200mm
Length: Max. 1500mm
Accuracy / Pore Size: 0.2um-200um
Porosity: 30%-60%
Temperature resistance: â?¤300â??
Technique: Sintering Process
Surface: Smooth, clean and metallic
Feature
40 Micron Stainless Steel Sintered Wire Mesh Filter Element has several advantages over other types of filters.
First, it has a uniform and controlled pore size, which ensures consistent filtration performance. Second, it has a high dirt-holding capacity, which means that it can capture a large amount of contaminants before needing to be cleaned or replaced.
Third, it has excellent mechanical strength, allowing it to withstand high pressures and mechanical stresses.
Fourthly, it can be cleaned and reused, making them a cost-effective and environmentally friendly filtration solution.
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Sintered stainless steel mesh filter is a new type of filter material made of multi-layer metal woven wire mesh through special lamination pressing and vacuum sintering. The meshes of each layer of wire mesh are interlaced to form a uniform and ideal The filtration structure has excellent filtration accuracy, filtration resistance, mechanical strength, wear resistance, heat resistance, cold resistance and processability, especially ideal for filtration that requires high compressive strength and uniform filtration precision. Parameters: Material: 316L stainless steel Filtration accuracy: 0.22-100um Size: standard or customized Application: (1) Used as dispersion cooling material in extremely high temperature environment; (2) Orifice plate material for gas release liquid fluidized bed; (3) Used for high-precision, high-reliability high-temperature filter materials; (4) Used for high pressure backwash oil filter. Examples: (1) Precision filtration of various hydraulic oils and lubricating oils in the machinery industry; (2) Filtration and purification of various polymer melts in the chemical fiber film industry, filtration of various high-temperature corrosive liquids in the petrochemical industry, filtration, washing and drying of materials in the pharmaceutical industry; (3) Application of gas homogenization in powder industry, fluidized plate in steel industry; (4) Buzzer, etc. in explosion-proof electrical appliances; (5) Gas-solid, liquid-solid, gas-liquid separation. Performance advantages: 1. High strength and rigidity: high mechanical strength and compressive strength; 2. High precision, uniform and stable: uniform filtering performance can be achieved for the filtering particle size with a precision of 1~300 m, and the mesh does not change during use; 3. Wide range of use environments: It can be used for filtration in temperature environments ranging from -200 C to 650 C and acid-base corrosive environments; 4. Excellent cleaning performance: good countercurrent cleaning effect, can be used repeatedly, and long life (can be cleaned by countercurrent water, filtrate, ultrasonic waves, dissolution, baking, etc.).
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Sintered mesh filters are resistant to high temperatures and corrosion, so they are usually used for purification and filtration of liquids and gases, separation and recovery of solid particles, transpiration cooling at extreme high temperatures, and airflow control distribution. Filter cartridges are made of stainless steel 304/316L. Sintered mesh cartridges are available in the operating range from -150C to +300C with differential pressures up to 25 bar. Material:stainless steel304/316L Technique:wire mesh Thickness: is determined by the number of layers of sintered wire mesh, five layers of standard sintered wire mesh thickness is generally 1.7mm. Size: According to the size of the sintering furnace chamber, the common specifications are 500mmX1000mm, 1000mmX1200mm. High strength: high strength even after high temperature sintering, up to 600C Durable and corrosion-resistant: maintains a stable structure at high temperatures and pressures or in highly acidic environments. High filtration accuracy, customizable: filtration accuracy from 1 micron to 8000 microns Widely used: widely used for uniform filtration in high-pressure or high-viscosity environments, such as petroleum, chemical and food grade filtration. Why use wire mesh filter? Stainless steel sintered wire mesh filter is a new type of filtration material which is made of multi-layer metal wire mesh through special laminated pressing and vacuum sintering process, with high mechanical strength and overall steel. The pores of each layer of wire mesh are interlaced to form a uniform and ideal filtration structure, which not only overcomes the shortcomings of ordinary metal wire mesh with low strength, poor rigidity and unstable mesh shape, but also can reasonably match and design the material's pore size, penetration performance and strength characteristics, so as to make it have excellent filtration precision, filtration impedance, mechanical strength, abrasion resistance, heat resistance, and the comprehensive performance is significantly better than that of sintered metal powder and sintered metal powder, and the overall steel. The comprehensive performance is significantly better than other types of filter materials such as sintered metal powder, ceramics, fiber, filter cloth, filter paper and so on. What's the structure of the wire mesh filter Metal sintered filter is a widely used standard structure of sintered wire mesh, generally five-layer structure, divided into five parts: protective layer, filtration and control layer, dispersing layer, supporting skeleton layer, and skeleton layer.
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