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What are the benefits of using a stainless steel filter mesh?

What are the benefits of using a stainless steel filter mesh?

Main materials of stainless steel filter: 304, 304L, 316, 316L stainless steel punching net, stainless steel woven mesh, stainless steel welded wire mesh, etc. It is used for screening and filtration under acid and alkali environmental conditions, as a mud net in the petroleum industry, as a sieve filter in the chemical fiber industry, and as a pickling net in the electroplating industry.

Stainless steel filter mesh features:

1. The filtering effect is very stable: high-quality raw materials are selected in the process of production, so that it is not easily deformed during use;

2. High strength: high-quality materials have high pressure resistance and can withstand large working strength;

3, the cleaning is simple: the single layer of filter material has the characteristics of simple cleaning, especially suitable for backwashing;

4, with high temperature resistance: can withstand high temperatures of about 480 ° C;

5, with corrosion resistance: stainless steel raw materials themselves have high corrosion resistance and wear resistance;

6, easy to process: high-quality materials, whether it is cutting, bending, stretching, welding and other procedures can be done very well.

Stainless steel screens are different from general mesh products. Instead, there are strict series of mesh sizes. And there are mesh products that conform to industry, organization, and standards for classifying and screening objects.

Pay attention to the following aspects when using stainless steel mesh belts at high temperatures to enhance the durability of stainless steel mesh belts.

1. Ordinary mesh belts work hot and brittle at high temperatures, as do stainless steel mesh belts;

2, the impact of high temperature environment on lubrication, silicon, graphite and molybdenum disulfide lubricants have good heat resistance;

3. The effect of temperature changes on the use of stainless steel mesh belts (cooling and expansion);

4. Brittleness of carbon precipitation;

5, creep;

6. When the ambient temperature exceeds 400 °C, the expansion between parts will cause intermittent reduction, and should also be fully considered;

7. The difference in thermal expansion coefficient of stainless steel mesh belts due to different manufacturing processes, when different materials are welded together, there is the possibility of thermal fatigue;

8. The heat generated by the mesh belt due to friction during work.


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