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Sintered Mesh Filter Element 300x300
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Sintered Mesh Filter Element 300x300

Sintered Mesh Filter Element 300x300

One of the unique features of our sintered mesh filter element is its three-dimensional structure. This structure enables it to filter particles from all directions, ensuring that even the most stubborn debris or pollutants can be effectively removed from the filtration system. In addition, sintered mesh materials can form a uniform filtering layer, thereby achieving stable flow rate and minimal pressure drop.
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Product Details ofSintered Mesh Filter Element 300x300

 

Products Description

 

One of the unique features of our sintered mesh filter element is its three-dimensional structure. This structure enables it to filter particles from all directions, ensuring that even the most stubborn debris or pollutants can be effectively removed from the filtration system. 

specification

 

Type Sintered Mesh Filter Element
OD 300 mm
Height 300 mm
Filter layer Stainless steel
Filtration accuracy 1~50μm
Custom made Avaliable
Product details

 

Sintered Mesh Filter Element 300x300

Making process:

 

1. Raw material selection: Firstly, choose appropriate raw materials. Common raw materials include metal powder, polymer particles, ceramic materials, etc. Choose the appropriate material according to the requirements and uses of the filter element.


2. Mixing and pulping: If metal powder or ceramic materials are used, they need to be mixed with suitable binders to form a uniform paste. This process typically involves mixing, stirring, and pulping.


3. Molding: After pulping, the material paste is injected into the mold to form a green blank of the desired shape (unsintered filter element component). This can be achieved through methods such as injection molding, extrusion molding, and compression molding.


4. Drying: Green bricks need to go through a drying process to remove moisture, usually using air or a baking room for drying.


5. Sintering: The green billet then needs to be sintered, that is, heated to high temperature to bond the material particles together,

forming a sturdy filter structure. The sintering temperature and time depend on the material type and requirements.


6. Cooling and treatment: After sintering, the filter element needs to be cooled and may require surface treatment such as plating or coating to enhance its performance.


7. Cutting and shaping: The filter element may need to be cut and shaped to obtain the desired size and shape.


8. Performance testing: The produced filter cartridge usually needs to undergo performance testing to ensure that it meets specifications and quality standards.


9. Packaging: The completed filter element is usually packaged for transportation and storage.

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