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Sinter Exhibition

News

  • Jul
    21
    [Exhibition] Welcome to sinter ICIF China 2023
  • Jan
    29
    Sinter Mesh for Filtration Equipment
    Sintered mesh is a type of filter media that is produced by sintering (a process of compacting and forming a solid mass of material by heat or pressure without melting it to the point of liquefaction) layers of woven wire mesh. This results in a porous material with uniform openings for filtration purposes.
  • Jan
    26
    [Industry News] Sintered Mesh Filter - New Fine Filter Material
    Sintered mesh metal filter cloth is a porous metal plate made of multi-layer stainless steel wire mesh, which is sintered into a metal panel. It usually consists of 5 layers (or 6-8 layers) of network: protection network layer, filter network layer, protective network layer, reinforcement network layer, and reinforcement network layer. The sintered filter element has high mechanical strength and a wide range of filtration grades. It is a new type of fine filtration material in the fields of food, beverage, water treatment, dust removal, pharmaceuticals, polymer industry and other fields.
  • Jan
    10
    Multi-layer Sintered Wire Mesh
    Hebei Sinter Filter Technic Co., Ltd. is a company that specializes in the production of stainless steel sintered wire mesh. Sintered wire mesh is a type of porous metal material formed by bonding multiple layers of woven wire mesh through a sintering process. This results in a durable and versatile material with various applications in different industries.
  • Jan
    04
    Advanced Filtration Solutions for Demanding Applications
    Our metal solutions providing adequate performance for filtration products. As a leader in innovative metal filter products, we provide solutions for high temperature and corrosive environments through state-of-the-art technology.
  • Dec
    20
    [Knowledge] Is Sintered Wire Mesh Stronger?
    We offer various types of Sintered Mesh like 5-layer Sintered Mesh,ABCD Type. Sintered wire mesh is stronger and has clear advantages over non-sintered wire mesh in many aspects. Due to its washability and reusability, it is more durable, efficient and environmentally friendly. Woven wire mesh can be stacked in multiple layers and molecularly bonded together through a sintering process, resulting in a highly controlled, highly permeable material suitable for making better filter discs and cutting pieces.
  • Dec
    14
    [Industry News] Applications of Sintered Filters
    Sintered filters are porous, usually cylindrical, metal components manufactured through a sintering process. Copper and metal alloys are mixed together and fused through high temperatures to achieve porosity and create a mesh. These filters are used from household appliances to industrial/chemical plants for greater effectiveness, here we will discuss the applications of sintered filters.
  • Dec
    07
    [Industry News] Wire Mesh Filtration Use for Petroleum
    Filtration plays a crucial role in the petroleum industry for various applications to ensure the quality, safety, and efficiency of petroleum products. Here are some common uses of filtration in the petroleum industry:
  • Nov
    28
    [Industry News] Stainless Steel Sintered Wire Mesh for Dust Collect
    Stainless steel sintered wire mesh is commonly used in dust collection applications. Here are some key points regarding its application for dust collection:
  • Nov
    20
    [Industry News] Stainless Steel Sintered Wire Mesh Uses
    Sintered mesh is manufactured using precision technology and is uniformly woven (or calendered) through industrial rollers and laminated in a furnace under heavy mechanical weight. The product is sintered under high-temperature inert gas in a furnace (diffusion bonding), which means that individual wires and each adjacent layer of the mesh are bonded to each other. Once cooled in a controlled environment, the sintered wire mesh becomes hard and completely flat into the finished product. The manufacturer will then conduct a final cleaning, inspection and certification process.
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