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Stainless steel wire and mesh is a type of wire mesh deep-processed product made of high-grade stainless steel wire SUS302 304 304L 316 316L. Stainless steel wire mesh has different weaving methods: plain weave, twill weave, Dutch weave, Reverse Dutch Weave. Due to its own characteristics of stainless steel, the stainless steel mesh processed has high wear resistance, long service life, accurate mesh, uniform structure, no-curl, easy to use, uniform screen thickness, Antistatic, anti-acid and alkali resistance Corrosion, the product has the characteristics of acid and alkali resistance, temperature resistance, wear-resistance and other properties, therefore, in recent years, stainless steel net is widely used in many different fields.
Weave Type
Plain Square Woven
The most common wire weave, with the same diameter warp and shute wires, woven in a simple over and under pattern.This style produces screens with the same mesh count in both directions.
Twill Square Woven
Each shute wire typically passes over two warp wires and under two producing square openings. Twill weave can be made from larger-diameter wires than would be possible in plain square weave, to obtain greater strength, density, or corrosion resistance.
Plain Dutch Woven
This weave style is woven in a plain, over and under pattern. The plain dutch woven wire style is a very tight weave because a thinner, smaller diameter shute wire is used. Dutch weaves do not have a straight-through, clear opening like most plain weave styles. Instead, the weave style creates a tortuous path through which very fine filtration and particle retention can be achieved. Dutch weaves may be specified by a “mesh count” or an “absolute filter rating.”
Dutch Twill Weave
This weave style is similar to Plain Dutch, except it is woven in Twill style. Each wire passes over two wires then under two wires, still utilizing a smaller-diameter shute wire, allowing an even tighter weave and even finer filtration than the Plain Dutch weave.
Product Size
The Common Mesh Count of Plain Weave | |||||
Mesh (inch) | Wire diameter(inch) | Aperture (inch) | Mesh (inch) | Wire diameter(inch) | Aperture (inch) |
2 | 0.063 | 0.437 | 60 | 0.007 | 0.010 |
5 | 0.041 | 0.159 | 80 | 0.006 | 0.007 |
10 | 0.025 | 0.075 | 100 | 0.004 | 0.007 |
14 | 0.020 | 0.051 | 120 | 0.037 | 0.006 |
18 | 0.017 | 0.039 | 150 | 0.003 | 0.004 |
20 | 0.016 | 0.034 | 180 | 0.002 | 0.003 |
24 | 0.014 | 0.028 | 200 | 0.002 | 0.003 |
30 | 0.009 | 0.024 | 300 | 0.005 | 0.002 |
40 | 0.010 | 0.015 |
The Common Mesh Count of Twill Weave | |||||
Mesh (inch) | Wire diameter(inch) | Aperture (inch) | Mesh (inch) | Wire diameter(inch) | Aperture (inch) |
30 | 0.017 | 0.0163 | 400 | 0.0011 | 0.0014 |
60 | 0.011 | 0.0057 | 500 | 0.0010 | 0.001 |
80 | 0.007 | 0.0055 | 635 | 0.0008 | 0.0008 |
270 | 0.0016 | 0.0021 |
| ||
325 | 0.0014 | 0.0017 |
The Common Mesh Count of Plain Dutch Weave | ||
Mesh (inch) | Wire diameter(inch) | Absolute Filtration Fineness (µm) |
8 × 85 | 0.014 × 0.0126 | 318-340 |
12 × 64 | 0.024 × 0.0165 | 270-285 |
14 × 88 | 0.020 × 0.013 | 225-245 |
20 × 150 | 0.0098 × 0.007 | 155-165 |
24 × 100 | 0.015 × 0.010 | 115-125 |
30 × 150 | 0.009 × 0.007 | 95-100 |
40 × 200 | 0.007 × 0.0055 | 65-70 |
50 × 250 | 0.0055 × 0.0045 | 55-60 |
80 × 400 | 0.0049 × 0.0028 | 43-48 |
The Common Mesh Count of Twill Dutch Weave | ||
Mesh (inch) | Wire diameter(inch) | Absolute Filtration Fineness (µm) |
20 × 250 | 0.0098 × 0.079 | 110-120 |
30 × 360 | 0.0098 × 0.0060 | 90-100 |
120 × 400 | 0.0040 × 0.0025 | 50-55 |
80 × 700 | 0.0040 × 0.0030 | 35-40 |
165 × 800 | 0.0028 × 0.0020 | 24-26 |
200 × 600 | 0.0024 × 0.0018 | 28-32 |
250 × 1400 | 0.0022 × 0.0016 | 11-12 |
325 × 2300 | 0.0015 × 0.0010 | 8-9 |
Product Application
1) It has an ideal uniform pore size distribution and excellent fluid permeability.
2) The surface luster is bright and beautiful, can be better to increase air circulation rate and the light of the sun, with smooth surface, the number of mesh standard, latitude and longitude curve are consistent;
3) High strength, able to withstand thermal stress and impact well, capable of mechanical processing, welding, cleaning and regeneration, especially suitable for purification systems with high cleanliness and safety.
Stainless steel wire and mesh is a type of wire mesh deep-processed product made of high-grade stainless steel wire SUS302 304 304L 316 316L. Stainless steel wire mesh has different weaving methods: plain weave, twill weave, Dutch weave, Reverse Dutch Weave. Due to its own characteristics of stainless steel, the stainless steel mesh processed has high wear resistance, long service life, accurate mesh, uniform structure, no-curl, easy to use, uniform screen thickness, Antistatic, anti-acid and alkali resistance Corrosion, the product has the characteristics of acid and alkali resistance, temperature resistance, wear-resistance and other properties, therefore, in recent years, stainless steel net is widely used in many different fields.
Weave Type
Plain Square Woven
The most common wire weave, with the same diameter warp and shute wires, woven in a simple over and under pattern.This style produces screens with the same mesh count in both directions.
Twill Square Woven
Each shute wire typically passes over two warp wires and under two producing square openings. Twill weave can be made from larger-diameter wires than would be possible in plain square weave, to obtain greater strength, density, or corrosion resistance.
Plain Dutch Woven
This weave style is woven in a plain, over and under pattern. The plain dutch woven wire style is a very tight weave because a thinner, smaller diameter shute wire is used. Dutch weaves do not have a straight-through, clear opening like most plain weave styles. Instead, the weave style creates a tortuous path through which very fine filtration and particle retention can be achieved. Dutch weaves may be specified by a “mesh count” or an “absolute filter rating.”
Dutch Twill Weave
This weave style is similar to Plain Dutch, except it is woven in Twill style. Each wire passes over two wires then under two wires, still utilizing a smaller-diameter shute wire, allowing an even tighter weave and even finer filtration than the Plain Dutch weave.
Product Size
The Common Mesh Count of Plain Weave | |||||
Mesh (inch) | Wire diameter(inch) | Aperture (inch) | Mesh (inch) | Wire diameter(inch) | Aperture (inch) |
2 | 0.063 | 0.437 | 60 | 0.007 | 0.010 |
5 | 0.041 | 0.159 | 80 | 0.006 | 0.007 |
10 | 0.025 | 0.075 | 100 | 0.004 | 0.007 |
14 | 0.020 | 0.051 | 120 | 0.037 | 0.006 |
18 | 0.017 | 0.039 | 150 | 0.003 | 0.004 |
20 | 0.016 | 0.034 | 180 | 0.002 | 0.003 |
24 | 0.014 | 0.028 | 200 | 0.002 | 0.003 |
30 | 0.009 | 0.024 | 300 | 0.005 | 0.002 |
40 | 0.010 | 0.015 |
The Common Mesh Count of Twill Weave | |||||
Mesh (inch) | Wire diameter(inch) | Aperture (inch) | Mesh (inch) | Wire diameter(inch) | Aperture (inch) |
30 | 0.017 | 0.0163 | 400 | 0.0011 | 0.0014 |
60 | 0.011 | 0.0057 | 500 | 0.0010 | 0.001 |
80 | 0.007 | 0.0055 | 635 | 0.0008 | 0.0008 |
270 | 0.0016 | 0.0021 |
| ||
325 | 0.0014 | 0.0017 |
The Common Mesh Count of Plain Dutch Weave | ||
Mesh (inch) | Wire diameter(inch) | Absolute Filtration Fineness (µm) |
8 × 85 | 0.014 × 0.0126 | 318-340 |
12 × 64 | 0.024 × 0.0165 | 270-285 |
14 × 88 | 0.020 × 0.013 | 225-245 |
20 × 150 | 0.0098 × 0.007 | 155-165 |
24 × 100 | 0.015 × 0.010 | 115-125 |
30 × 150 | 0.009 × 0.007 | 95-100 |
40 × 200 | 0.007 × 0.0055 | 65-70 |
50 × 250 | 0.0055 × 0.0045 | 55-60 |
80 × 400 | 0.0049 × 0.0028 | 43-48 |
The Common Mesh Count of Twill Dutch Weave | ||
Mesh (inch) | Wire diameter(inch) | Absolute Filtration Fineness (µm) |
20 × 250 | 0.0098 × 0.079 | 110-120 |
30 × 360 | 0.0098 × 0.0060 | 90-100 |
120 × 400 | 0.0040 × 0.0025 | 50-55 |
80 × 700 | 0.0040 × 0.0030 | 35-40 |
165 × 800 | 0.0028 × 0.0020 | 24-26 |
200 × 600 | 0.0024 × 0.0018 | 28-32 |
250 × 1400 | 0.0022 × 0.0016 | 11-12 |
325 × 2300 | 0.0015 × 0.0010 | 8-9 |
Product Application
1) It has an ideal uniform pore size distribution and excellent fluid permeability.
2) The surface luster is bright and beautiful, can be better to increase air circulation rate and the light of the sun, with smooth surface, the number of mesh standard, latitude and longitude curve are consistent;
3) High strength, able to withstand thermal stress and impact well, capable of mechanical processing, welding, cleaning and regeneration, especially suitable for purification systems with high cleanliness and safety.