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304 Seamless Pipe Sintered Mesh Filter Element

This seamless tube sintered mesh filter is designed to provide excellent filtration and backwashing performance, and can filter solids with diameters as small as 5 microns. The sintered mesh structure ensures that materials will not fall off during the filtration process, thereby reducing the risk of clogging. In addition, its high pollutant absorption capacity ensures a longer service life, thereby reducing maintenance costs.

  • Type Sintered Mesh Filter Element
  • OD 100
  • Height 200
  • Filter media 304 stainless steel
  • Filtration efficiency 99.8%
  • Interface Stainless steel Pipe


Specifications
HUAhANG

1. Special design can achieve an effective filtration area of 100%;


2. Each component adopts a seamless fusion method, which solves many problems that originally existed in use and ensures safety;


3. The design adopts a metal folding frame, which can be reused and replaced;


4. The density of the filter material shows an increasing structure, achieving high efficiency, low resistance, and large dust capacity;

Special design can achieve an effective filtration area of 100%;


2. Each component adopts a seamless fusion method, which solves many problems that originally existed in use and ensures safety;


3. The design adopts a metal folding frame, which can be reused and replaced;


4. The density of the filter material shows an increasing structure, achieving high efficiency, low resistance, and large dust capacity;

Type

Sintered Mesh Filter Element

Filter layer

304 Stainless steel

Filtration accuracy

                                                                     5~25μm

Flow direction

Out-In

Custom made

Avaliable




                                       features



High strength and pressure resistance: The stainless steel sintered filter element adopts multi-layer stainless steel wire mesh sintering technology, which has extremely high mechanical strength and pressure resistance, and can withstand high-pressure fluid impact.

High precision filtration: Its filtration accuracy range is wide, ranging from 1 micron to 800 microns, which can efficiently filter out small particles and impurities, meeting strict requirements for fluid cleanliness.

High temperature resistance: Stainless steel sintered filter element can withstand high temperature environments, with a maximum temperature resistance of about 600 ℃, and can still maintain good filtration effect and stability in high temperature environments.

Corrosion resistance: Due to its materials being mostly SUS316L or 304 stainless steel, it has excellent corrosion resistance and is suitable for filtering corrosive media such as acid and alkali.

Easy to clean: Adopting a surface filtration structure, the reverse flow cleaning effect is good. Surface impurities and particles can be washed away through simple operations such as backwashing, extending the service life





2. Acid cleaning method


Dissolve potassium dichromate or crystals in water to 60 to 80 degrees, and slowly add concentrated sulfuric acid with a concentration of 94% until sufficient. Add slowly and stir. Add up to 1200 milliliters of potassium sulfate or completely dissolve, and the solution will appear dark red in color. At this time, the rate of adding concentrated sulfuric acid can be accelerated until it is completely added. If there are still undissolved crystals after adding concentrated sulfuric acid, they can be heated until dissolved. The function of cleaning solution is to remove general pollutants, grease, and metal particle impurities on the wall of stainless steel filter cartridge, and it can effectively kill the bacteria and microorganisms that grow on the filter cartridge and damage the heat source. If the filter element has been alkaline washed before, the alkaline solution must be washed first, otherwise fatty acids will precipitate and contaminate the filter element.

application area

1. Correct installation: The installation of the filter element must be accurate and stable, avoiding filtering operations when the filter element is not fixed properly to prevent damage to the filter element.

2. Choose the appropriate filter element: Choose the appropriate filter element model and precision according to the working environment, to avoid the filter element precision being too high, which may cause the pressure to exceed its maximum allowable working pressure, resulting in the filter element being flattened.

3. Regular inspection and replacement: Regularly check the condition of the filter element. Once severe blockage or decreased filtration efficiency is found, it should be cleaned or replaced in a timely manner.

4. Avoid excessive pressure and high temperature: When using stainless steel filter cartridges, excessive pressure and high temperature environments should be avoided to prevent damage to the filter cartridges. Choose the appropriate pressure and temperature range to ensure that the filter operates under the specified working conditions.

5. Maintain a clean environment: Keep the usage environment clean and avoid debris and dust from entering the filter element, which may affect the filtering effect. Regularly clean the surrounding environment to ensure that the filter element is working properly.

6. Proper cleaning and maintenance: Stainless steel sintered filter cartridges need to be regularly cleaned to remove accumulated impurities and dirt. Use mild cleaning agents and clean water for cleaning, avoiding physical or chemical damage to the filter element.

7. Rust prevention and scratch prevention: To maintain the performance and appearance of the stainless steel sintered filter element, attention should be paid to preventing rust and scratches. Special coatings or rust inhibitors can be used, and sharp tools should be avoided for operation.

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