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sintered metal filter element

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  • Apr
    27
    [Industry News] How to clean the sintered mesh filter
    Stainless steel sintered mesh filter element is a widely used filter element type, usually made of stainless steel wire superimposed and sintered in vacuum. The stainless steel sintered mesh filter element has good corrosion resistance, strong permeability and high strength, high filtration accuracy, and the wire mesh is not easy to fall off. In the stainless steel sintered mesh filter element, if there is a blockage phenomenon, we can use the following methods to clean it:
  • Mar
    31
    [Industry News] What are the uses of stainless steel sintered wire cloth
    The stainless steel sintered wire mesh is a metal wire filter cloth which is made by compressing multiple layers of stainless steel braided wire and then sintering in a vacuum furnace.Stainless steel sintered wire mesh parametersFiltration fineness :2-60micron.Operating temperature :-20℃~ 600℃.Max.P
  • Mar
    14
    [Knowledge] Type C Sintered Wire Mesh
    Type C Sintered Wire Mesh product is sintered by the punching plate and multi-layer stainless steel wire mesh. Due to the support of punching plate, it has the higher pressure and mechanical strength. Type C Sintered Wire Mesh it is mainly used in food&beverage, water treatment, dust removing, pharmacy, polymer,etc. Type C Sintered Wire Mesh can be processed into various filters: tube, disc and sheet. The thickness of the punching plate and structure of the wire mesh can be customized according to the user’s requirements.
  • Sep
    23
    [Industry News] Stainless Steel Sintered Wire Mesh Filter Stainless Steel Pleated Filter
    The Pleated filter os made of sintered wire mesh or metal fiber felt.It is used for excellent heat, pressure and corrosion resisitance,and it is used for high temperature, high viscosity fluid filtration.
  • Feb
    05
    [Knowledge] Type C Sintered Wire Mesh
    Standard materials of theType C Sintered Wire Mesh are SS304, SS304L, SS316, SS316L.According to customer requirements,alloy steels Hastelloy C-276, Monel 400, Inconel 600, SS904, SS904L, and dual phase steel 2205 are acceptable.
  • Dec
    12
    [Knowledge] The Types Of Professional stainless steel sintered wire mesh
    HHebei Sintering Filter Technology Co., Ltd. is a professional manufacturer specializing in the production of stainless steel sintered mesh and various filter elements. It is famous for its rich stainless steel wire and stainless steel wire mesh. We can provide you with 4 types of stainless steel sintered wire mesh.
  • Nov
    06
    [Knowledge] Sintered Mesh Manufacture
    Hebei sinter Filter Technic Co., Ltd develops and supplies sintered wire mesh used for fine, deep or sub-micron filtration. Sintered mesh commonly applied materials are stainless steel types 304L and 316L. Exotic alloys are delivered on request. mold woven wire mesh and non woven sintered web is
  • Oct
    15
    [Knowledge] Sintered Metal Filter Element
    Sintered wire mesh element is made of multiple layers of woven wire mesh together using a sintering process. It is widely used for solid, liquid and air filtration. Our company produce filter elements in a large range of materials, sizes.
  • Apr
    05
    [Knowledge] Five Layer Sintered Wire Mesh
    With a five-layer sintered wire mesh as a strong base, six-layer sintered wire mesh is made to add one layer of 12 mesh. Six-layer sintered mesh laminate may be used as filtering, washing, drying that 3 in one medical filter plate, which may be divided into2 types: split and monolithic construction filter plate.
  • Apr
    04
    [Knowledge] SLS (Single Layer Laminate) Series
    Loss and distortion of the edge lead to inconsistent aperture sizes of the single layer laminate. The sintering method, combination of warmtht and pressure, creates molecular diffusion-welds at each and every "intersection" in the sintered wire mesh where the wires cross over and under one-another, so as to make the sintered wire mesh full of enhanced mechanical and filtration properties.
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