PA Sintered Filter
sintered filter
pa sintered filter element
Sintered PA
filter pa (1) (1)
pa sintered filter element
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PA Sintered Filter
sintered filter
pa sintered filter element
Sintered PA
filter pa (1) (1)
pa sintered filter element

PA Filter

Sintered PA filter cartridge is made of high quality polymer polyethylene as the main raw material and carbon fiber sintered by scientific formula. It is compact, sturdy, light and can withstand high pressure, non-toxic and tasteless, and has good corrosion resistance to acid and alkali.

  Personalized customization: 

Whether choosing from these specifications or presenting your unique requirements, Lvyuan ensures a tailored approach to meet your specific needs.

  After-Sales Service and Warranty:

We offer comprehensive after-sales services, including installation guidance and technical support. Our products also come with a specified warranty period to ensure a worry-free experience for our customers.

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sintered PA filters

Product description

The sintered PA filter cartridge is made of high-quality polymer polyethylene as the main raw material and carbon fiber sintered by a scientific formula. It is compact, sturdy, light, can withstand high pressure, is non-toxic and tasteless, and has good corrosion resistance to acid and alkali.

pa filters

Specifcation

Diameter: 20, 25, 30, 35, 38, 40, 45, 50, 60m

68:510 20 30 40

Filtration precision: 0.5um-100um

More sizes are available on request.

Parameters

• Three performance parameters

• Resistant to the corrosion of strong acid and alkalis and the dissolution of organic chemicals

• Excellent strength and wear resistance to ensure its service life

• Smooth surface, not easy to adhere

• Good toughness; the cartridge is not easy to break

• No degranulation phenomenon; strong pressure resistance

PA microporous sintered filter element/filter rod regeneration method

Customizable Features.
Since the PA filter rod has good mechanical properties and will not rupture, 0.6 MPa compressed air can be used for back-blowing to remove slag, and the back-blowing also plays the role of capillary regeneration, but the particles accumulated in the filter layer after a long time of use will affect the filtration speed, and chemical regeneration must be carried out at this time.
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Chemical method
Put the blocked PA filter rod in a solution of 5%–10% acid or broken liquid diffusion bubbles so that the micromaterial blocked in the filter layer can be neutralized, and then backwash with water or air to clean the filter rod. The filter rod filtration effect can be restored.
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Non-standard customization
Dimension, micron rate, connector, specifications, etc. can be customized according to customer requirements.
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Environmentally Friendly
The longevity and reusability of these cartridges contribute to reduced waste generation, aligning with environmentally conscious practices in industrial filtration.
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We’ve got answers.

Browse some answers to our most common questions, or you can drop us a line to ask something else.

See all FAQs
Porous Plastic Filter
Can sintered porous filter discs withstand high temperatures?

Yes, depending on the material selected (e.g., stainless steel or nickel alloys), sintered porous filter discs can withstand high temperatures, making them suitable for applications involving elevated temperatures.

What pore sizes are available for sintered plastic porous filters?

Sintered plastic porous filters are available in a wide range of pore sizes, typically ranging from submicron to several hundred microns, allowing for precise control of filtration performance and particle retention.

What are Porous Metal Filters?

Porous metal filters stand as specialized filtering tools employed in applications where conventional filtration equipment falls short. Typically, metals undergo a sintering process, transforming them into porous or powdered structures, ensuring a more effective filtration process.

Technically, sintering is a metallurgical method applied to solidify metals or alloys into a powdered form. This involves heating the metal or alloy below its melting point to create an intense solid structure with a specific number of pores.

 

Here are some main types of porous filters used across various industrial applications:

• Sintered Porous Metal Filter: These filters boast pores for effective filtration and are crafted to withstand high pressure and mechanical stress. Manufacturing involves sintering plastic and high molecular polymer powder at elevated temperatures.

• Porous Stainless Steel: Utilizing grade 316 steel, these high-performance filters offer excellent pressure and temperature resistance, ideal for harsh conditions.

• Porous Discs: Shaped as filter discs, these filters are designed with precise pore sizes and numbers for efficiency in specific applications.

• Sintered Metal Filter: Tailored for high industrial and commercial demands, these filters accommodate the effective filtration of gases, liquids, and semi-solids.

• Porous Bronze Filter: Manufactured with spherical bronze powder, these filters excel in noise reduction and turbulence-proofing, making them a reliable choice across various industries.

What is Porosity in Filtration?

Porosity, in the context of filtration, measures the pores on the filter surface, determining its efficiency and capabilities. Higher porosity indicates more open structures (pores), allowing maximum flow with minimal pressure drops.

However, it's crucial to note that a higher porosity rate doesn't necessarily guarantee greater efficiency. When selecting the right material for your porous metal filter, consider aspects such as pore size, pressure drop, temperature resistance, and strength.

• Size of Pores: Micron rating is crucial. A material rated at 5 microns will likely stop particles of 5 microns or larger.

• Pressure Drop: Choose a material with a minimum pressure drop for uniform flow.

• Temperature Resistance: Analyze the material's capability to perform efficiently under specific temperatures.

• Strength: Opt for a filter with the strength to withstand changing environmental conditions.

What types of polymers are used to manufacture sintered plastic porous filters?

Common polymers used in the production of sintered plastic porous filters include polyethylene (PE), polypropylene (PP), polytetrafluoroethylene (PTFE), and polyvinylidene fluoride (PVDF), among others.

What are the benefits of using sintered plastic porous filters?

Sintered plastic porous filters offer several advantages, including chemical resistance, high temperature resistance, compatibility with a wide range of fluids, uniform pore size distribution, and excellent filtration efficiency.

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