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  2. Stainless Steel Mesh Oil Filter Element 24.4x36.4
  3. Stainless Steel Mesh Oil Filter Element 24.4x36.4

Stainless Steel Mesh Oil Filter Element 24.4x36.4

Product: Stainless Steel Oil Filter Element
Media: Stainless steel mesh
Dimension: 24.4x36.4 mm
Filtration accuracy: 40 μm
Skeleton: Aluminum
Description:

Our stainless steel mesh oil filter elements are easy to install and compatible with a wide range of vehicles, making them a versatile and convenient choice for any vehicle owner. The large size and high construction of the elements provide excellent filtration capacity and last longer than traditional paper filters.

Specifications:
Type Stainless Steel Oil Filter Element
Dimension 24.4x36.4 mm
Skeleton Aluminum
Filter layer Stainless steel mesh
Working temperature -20~+100℃
Filtration rate 40μm
Origin Henan,China
Features:

 

Corrosion resistance: stainless steel filter element maintains stability in the temperature range of -200 ℃ to 600 ℃, especially with good corrosion resistance to chlorides. This characteristic makes it perform well in seawater desalination systems and medical cleaning equipment containing chlorine disinfectants, and can work continuously for 3000 hours without corrosion.
 
Mechanical strength: stainless steel filter element has high mechanical strength and can withstand high pressure and impact forces. Its strength is more than twice that of 304 stainless steel, and it has better plasticity and toughness.
 
High temperature resistance: stainless steel has good high temperature resistance and can work continuously under high temperature conditions of 150 ° C.
 
Low temperature and welding performance: stainless steel exhibits good thermal strength at low temperatures and is suitable for low-temperature environments. In addition, its ultra-low carbon design provides better resistance to intergranular corrosion in welding and high-temperature environments.
 
Surface treatment: The inner wall of the filter element is treated with electrolytic polishing, and the roughness Ra value can be controlled within 0.2 μ m, effectively reducing fluid resistance and preventing microbial growth

 

 

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