Woven Mesh
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Woven Mesh with Different Weave Types for Various Industrial Filtration

Woven mesh is constructed from high quality stainless steel wires, nickel wires, copper wires, brass wires, Monel wires, Hastelloy wires and other metal wires by using advanced weave technology. It features high temperature resistance, good corrosion resistance, high tensile strength and great abrasion resistance. In addition, its precise opening size also ensures a stable filter rating. As one of the main filter materials, woven mesh can be fabricated into round, belt, cylinder, pleated, and other shape filter elements and are widely used in the separation and filtration of petroleum, chemical, pharmaceuticals, food and other industries.

Many rolls of woven mesh made of different raw materials
Weave Type
A sketch of plain weave
Plain Weave
Detailed Specifications
Plain Weave

The simplest and most commonly used type with square openings. It is woven by alternating the weft wire over and under the warp wire. The weft wire and warp wire are in the same diameter, delivering uniform opening sizes. It is often used for weaving coarse mesh and typically serves as the protection layer of coarse filtration and filter media.

Plain weave woven mesh model interpenetration
Table 1: Plain Weave Woven Mesh Specifications
Item Mesh Count Wire Diameter Mesh Opening Open Area
- Warp/Inch × Weft/Inch Inch mm Inch mm %
BD-P-11 1 × 1 0.08 2.03 0.92 23.37 84.6
BD-P-22 2 × 2 0.063 1.6 0.437 11.1 76.4
BD-P-33 3 × 3 0.054 1.37 0.279 7.09 70.1
BD-P-44 4 × 4 0.063 1.6 0.187 4.75 56
BD-P-44 4 × 4 0.047 1.19 0.203 5.16 65.9
BD-P-55 5 × 5 0.041 1.04 0.159 4.04 63.2
BD-P-66 6 × 6 0.035 0.89 0.132 3.35 62.7
BD-P-88 8 × 8 0.028 0.71 0.097 2.46 60.2
BD-P-1010 10 × 10 0.025 0.64 0.075 1.91 56.3
BD-P-1010 10 × 10 0.02 0.51 0.08 2.03 64
BD-P-1212 12 × 12 0.023 0.584 0.06 1.52 51.8
BD-P-1212 12 × 12 0.02 0.508 0.063 1.6 57.2
BD-P-1414 14 × 14 0.023 0.584 0.048 1.22 45.2
BD-P-1414 14 × 14 0.02 0.508 0.051 1.3 51
BD-P-1616 16 × 16 0.018 0.457 0.0445 1.13 50.7
BD-P-1818 18 × 18 0.017 0.432 0.0386 0.98 48.3
BD-P-2020 20 × 20 0.02 0.508 0.03 0.76 36
BD-P-2020 20 × 20 0.016 0.406 0.034 0.86 46.2
BD-P-2424 24 × 24 0.014 0.356 0.0277 0.7 44.2
BD-P-3030 30 × 30 0.013 0.33 0.0203 0.52 37.1
BD-P-3030 30 × 30 0.012 0.305 0.0213 0.54 40.8
BD-P-3030 30 × 30 0.009 0.229 0.0243 0.62 53.1
BD-P-3535 35 × 35 0.011 0.279 0.0176 0.45 37.9
BD-P-4040 40 × 40 0.01 0.254 0.015 0.38 36
BD-P-5050 50 × 50 0.009 0.229 0.011 0.28 30.3
BD-P-5050 50 × 50 0.008 0.203 0.012 0.31 36
BD-P-6060 60 × 60 0.0075 0.191 0.0092 0.23 30.5
BD-P-6060 60 × 60 0.007 0.178 0.0097 0.25 33.9
BD-P-7070 70 × 70 0.0065 0.165 0.0078 0.2 29.8
BD-P-8080 80 × 80 0.0065 0.165 0.006 0.15 23
BD-P-8080 80 × 80 0.0055 0.14 0.007 0.18 31.4
BD-P-9090 90 × 90 0.005 0.127 0.0061 0.16 30.1
BD-P-100100 100 × 100 0.0045 0.114 0.0055 0.14 30.3
BD-P-100100 100 × 100 0.004 0.102 0.006 0.15 36
BD-P-100100 100 × 100 0.0035 0.089 0.0065 0.17 42.3
BD-P-110110 110 × 110 0.004 0.1016 0.0051 0.1295 30.7
BD-P-120120 120 × 120 0.0037 0.094 0.0064 0.1168 30.7
BD-P-150150 150 × 150 0.0026 0.066 0.0041 0.1041 37.4
BD-P-160160 160 × 160 0.0025 0.0635 0.0038 0.0965 36.4
BD-P-180180 180 × 180 0.0023 0.0584 0.0033 0.0838 34.7
BD-P-200200 200 × 200 0.0021 0.0533 0.0029 0.0737 33.6
BD-P-250250 250 × 250 0.0016 0.0406 0.0024 0.061 36
BD-P-270270 270 × 270 0.0016 0.0406 0.0021 0.0533 32.2
BD-P-300300 300 × 300 0.0051 0.0381 0.0018 0.0457 29.7
BD-P-325325 325 × 325 0.0014 0.0356 0.0017 0.0432 30
BD-P-400400 400 × 400 0.001 0.0254 0.0015 0.37 36
×
A sketch of twill weave
Twill Weave
Detailed Specifications
Twill Weave

Each weft wire passes alternately over and under 2 warp wires, staggered on successive warps. It is generally used for weaving fine mesh and is suitable for fine filtration than plain weave.

Twill weave woven mesh model interpenetration
Table 2: Twill Weave Woven Mesh Specifications
Item Mesh Count Wire Diameter Mesh Opening Open Area
- Warp/Inch × Weft/Inch mm mm %
BD-T-150150 150 × 150 0.07 0.0993 34.4
BD-T-165165 165 × 165 0.058 0.0959 38.83
BD-T-180180 180 × 180 0.058 0.0831 34.69
BD-T-200200 200 × 200 0.058 0.069 29.52
BD-T-225225 225 × 225 0.05 0.069 33.62
BD-T-235235 235 × 235 0.045 0.0631 34.07
BD-T-250250 250 × 250 0.04 0.0616 36.76
BD-T-270270 270 × 270 0.04 0.0541 33.05
BD-T-280280 280 × 280 0.04 0.0507 31.25
BD-T-300300 300 × 300 0.035 0.0497 34.43
BD-T-300300 300 × 300 0.038 0.0467 30.4
BD-T-300300 300 × 300 0.04 0.0447 27.85
BD-T-315315 315 × 315 0.035 0.0456 32.01
BD-T-325325 325 × 325 0.035 0.0432 30.52
BD-T-350350 350 × 350 0.035 0.0376 26.82
BD-T-350350 350 × 350 0.03 0.0426 34.43
BD-T-363363 363 × 363 0.03 0.04 32.65
BD-T-385385 385 × 385 0.03 0.0377 31.01
BD-T-400400 400 × 400 0.025 0.0385 36.76
BD-T-400400 400 × 400 0.028 0.0355 31.25
BD-T-400400 400 × 400 0.03 0.0335 27.83
BD-T-420420 420 × 420 0.03 0.0302 25.17
BD-T-450450 450 × 450 0.025 0.0314 31
BD-T-500500 500 × 500 0.025 0.0258 25.79
BD-T-510510 510 × 510 0.025 0.0248 24.8
BD-T-530530 530 × 530 0.024 0.0239 24.9
BD-T-635635 635 × 635 0.018 0.022 30.25
BD-T-635635 635 × 635 0.02 0.02 25
BD-T-800800 800 × 800 0.016 0.0164 25.62
×
A sketch of plain Dutch weave
Plain Dutch Weave
Detailed Specifications
Plain Dutch Weave

Similar to plain weave, but the diameter of the warp wire is bigger than the weft wire. During the weaving process, the finer weft wires are driven closer to form a tight filter medium that has higher filter rating and strength than plain weave. Besides, it also forms tapered or wedge-shaped openings. Typically, coarse mesh works as a reinforcing layer of the metal sintered mesh and the fine mesh as the filtration layer of the metal sintered mesh.

Plain Dutch weave woven mesh model interpenetration
Table 3: Plain Dutch Weave Woven Mesh Specifications
Item Mesh Count Wire Diameter Wire Diameter Filter Rating Weight Weight
- Warp/Inch × Weft/Inch inch mm μm lb/yd2 kg/m2
BD-PD-885 8 × 85 0.0140 × 0.01260 0.355 × 0.320 318–340 0.497 2.43
BD-PD-1070 10 × 70 0.0240 × 0.01400 0.600 × 0.350 300–325 0.622 3.04
BD-PD-1264 12 × 64 0.0230 × 0.01650 0.580 × 0.400 295–305 0.744 3.64
BD-PD-1488 14 × 88 0.0190 × 0.01200 0.500 × 0.330 195–205 0.644 3.15
BD-PD-20150 20 × 150 0.0098 × 0.00700 0.248 × 0.177 155–165 0.303 1.48
BD-PD-24110 24 × 110 0.0150 × 0.01000 0.355 × 0.250 145–155 0.552 2.7
BD-PD-24120 24 × 120 0.0130 × 0.00900 0.330 × 0.230 115–125 0.458 2.24
BD-PD-30150 30 × 150 0.0090 × 0.00700 0.230 × 0.180 95–105 0.327 1.6
BD-PD-40200 40 × 200 0.0070 × 0.00550 0.180 × 0.140 75–85 0.266 1.3
BD-PD-50250 50 × 250 0.0055 × 0.00450 0.140 × 0.114 55–65 0.204 1
BD-PD-60300 60 × 300 0.0055 × 0.00350 0.140 × 0.090 36–40 0.157 0.77
BD-PD-70400 70 × 400 0.0047 × 0.00256 0.120 × 0.065 36–40 0.138 0.67
BD-PD-80300 80 × 300 0.0049 × 0.00350 0.125 × 0.090 38–42 0.2 0.98
BD-PD-80400 80 × 400 0.0049 × 0.00280 0.125 × 0.071 38–42 0.166 0.81
×
A sketch of twill Dutch weave
Twill Dutch Weave
Detailed Specifications
Twill Dutch Weave

It combines the Dutch and twill weaving process. Each warp wire passes over and under two fine weft wires. Weft wires are driven closer to each other, forming a tight woven mesh with tapered or wedge-shaped openings. In addition, it also forms smaller opening sizes. Typically, coarse mesh works as a reinforcing layer of the metal sintered mesh and the fine mesh as the filtration layer of the metal sintered mesh.

Twill Dutch weave woven mesh model interpenetration
Table 4: Twill Dutch Weave Woven Mesh Specifications
Item Mesh Count Wire Diameter Wire Diameter Filter Rating Weight Weight
- Warp/Inch × Weft/Inch inch mm μm lb/yd2 kg/m2
BD-TD-20200 20 × 200 0.0135 × 0.0105 0.30 × 0.27 138 0.804 3.93
BD-TD-24220 24 × 220 0.0135 × 0.0100 0.30 × 0.25 105–112 0.814 3.98
BD-TD-2050 20 × 50 0.0098 × 0.0079 0.25 × 0.20 98–105 0.575 2.81
BD-TD-30360 30 × 360 0.0100 × 0.0060 0.02 × 0.15 80–84 0.509 2.49
BD-TD-40560 40 × 560 0.0070 × 0.0040 0.18 × 0.10 47–52 0.352 1.72
BD-TD-50500 50 × 500 0.0055 × 0.0043 0.14 × 0.11 37–45 0.36 1.76
BD-TD-80700 80 × 700 0.0040 × 0.0030 0.10 × 0.08 24–26 0.27 1.32
BD-TD-120160 120 × 160 0.0040 × 0.0025 0.10 × 0.063 28–32 0.094 0.46
BD-TD-120400 120 × 400 0.0040 × 0.0025 0.10 × 0.063 3–43 0.143 0.7
BD-TD-165800 165 × 800 0.0028 × 0.0020 0.071 × 0.05 14–16 0.148 0.72
BD-TD-1651400 165 × 1400 0.0028 × 0.0016 0.071 × 0.04 9–11 0.157 0.77
BD-TD-200600 200 × 600 0.0024 × 0.0018 0.061 × 0.046 19–21 0.103 0.5
BD-TD-2001400 200 × 1400 0.0028 × 0.0016 0.071 × 0.04 5–6 0.17 0.83
BD-TD-3252300 325 × 2300 0.0014 × 0.0010 0.035 × 0.025 2–3 0.094 0.46
BD-TD-4002800 400 × 2800 0.0012 × 0.0007 0.030 × 0.018 1–2 0.065 0.32
×
A sketch of reverse Dutch weave
Reverse Dutch Weave
Detailed Specifications
Reverse Dutch Weave

It is in a reverse of the plain Dutch weave wire arrangement using larger warp wires and smaller weft wires. It adopts smaller warp wires to offer a tight mesh structure for filtration and larger weft wires deliver higher strength for the woven mesh to extend its service life. Polymer continuous filter belts are generally produced with reverse Dutch weave.

Reverse Dutch weave woven mesh model interpenetration
Table 5: Reverse Dutch Weave Woven Mesh Specifications
Item Mesh Count Wire Diameter Wire Diameter Filter Rating Weight Weight
- Warp/Inch × Weft/Inch mm inch μm lb/yd2 kg/m2
BD-RD-4810 48 × 10 0.50 × 0.50 0.020 × 0.020 400 0.742 3.63
BD-RD-6318 63 × 18 0.40 × 0.60 0.016 × 0.024 220 0.847 4.14
BD-RD-7215 72 × 15 0.45 × 0.55 0.018 × 0.022 250 0.978 4.78
BD-RD-10016 100 × 16 0.35 × 0.45 0.014 × 0.018 190 0.791 3.87
BD-RD-10720 107 × 20 0.24 × 0.60 0.009 × 0.024 210 0.683 3.34
BD-RD-12016 120 × 16 0.35 × 0.45 0.014 × 0.018 180 0.918 4.49
BD-RD-13217 132 × 17 0.32 × 0.45 0.013 × 0.018 170 0.867 4.24
BD-RD-15224 152 × 24 0.27 × 0.40 0.011 × 0.016 160 0.763 3.73
BD-RD-16017 160 × 17 0.27 × 0.45 0.011 × 0.018 160 0.413 2.02
BD-RD-17018 170 × 18 0.27 × 0.45 0.011 × 0.018 160 0.826 4.01
BD-RD-17146 171 × 46 0.15 × 0.30 0.006 × 0.012 130 0.409 2
BD-RD-18020 180 × 20 0.27 × 0.45 0.011 × 0.018 170 0.877 4.29
BD-RD-20040 200 × 40 0.17 × 0.27 0.007 × 0.011 120 0.444 2.17
BD-RD-24040 240 × 40 0.15 × 0.25 0.006 × 0.010 70 0.405 1.98
BD-RD-26040 260 × 40 0.15 × 0.27 0.006 × 0.011 55 0.448 2.19
BD-RD-29076 290 × 76 0.09 × 0.19 0.004 × 0.007 40 0.26 1.27
BD-RD-30040 300 × 40 0.15 × 0.25 0.006 × 0.010 50 0.472 2.31
BD-RD-30080 300 × 80 0.15 × 0.20 0.006 × 0.010 35 0.509 2.49
×
A sketch of 5-heddle weave
5-Heddle Weave
Detailed Specifications
5-Heddle Weave

Every warp wire alternately up and down each single and four weft wires and vice versa. It provides a rectangular opening and offers high flow rates and good mechanical stability. It is widely used in drainage filtration, undercurrent filtration, and paper-making and chemical packing dehydration.

5-heddle weave woven mesh model interpenetration
Table 6: 5-HeddleWeave Woven Mesh Specifications
Item Mesh Count Wire Diameter Absolute Filter Raring Nominal Filter Rating Thickness Weight
- Warp/Inch × Weft/Inch mm μm μm mm kg/m2
BD-5H-1513 15 × 13 0.9 × 0.9 1.15–1.20 0.85 2.6 5.67
BD-5H-2420 24 × 20 0.6 × 0.6 0.65–0.75 0.49 1.7 3.96
BD-5H-2817 28 × 17 0.47 × 0.47 0.75–0.80 0.46 1.41 2.53
BD-5H-3018 30 × 18 0.5 × 0.5 0.60–0.65 0.37 1.48 3
BD-5H-4825 48 × 25 0.3 × 0.3 0.46–0.50 0.25 0.82 1.64
BD-5H-4845 48 × 45 0.29 × 0.29 0.24–0.26 0.23 0.83 2
BD-5H-5536 55 × 36 0.3 × 0.3 0.25–0.28 0.175 0.84 2.05
BD-5H-6536 65 × 36 0.3 × 0.3 0.26–0.29 0.1 0.84 2.27
BD-5H-7740 77 × 40 0.24 × 0.24 0.38–0.40 0.095 0.68 1.65
BD-5H-8060 80 × 60 0.2 × 0.2 0.20–0.22 0.127 0.55 1.4
BD-5H-10759 107 × 59 0.16 × 0.16 0.16–0.18 0.077 0.45 1.09
BD-5H-107125 107 × 125 0.16 × 0.14 0.065–0.08 0.07 0.45 1.27
BD-5H-107132 107 × 132 0.16 × 0.14 0.055–0.065 0.055 0.44 1.3
BD-5H-13285 132 × 85 0.14 × 0.2 0.09–0.11 0.052 0.44 1.47
×
Material
SS
CU
BR
NI
Monel
Hastelloy
Stainless Steel

It includes 304, 304L, 316, 316L and other stainless steel materials, featuring rust resistance, corrosion resistance, acid and alkali resistance, high strength, durable, etc. It is widely used in liquid, gas and solid filtration applications.

It can be fabricated into filter discs, filter tubes and other filter elements or work as the protection layer to protect the main filtration layer.

A stainless steel woven mesh roll is displayed.
Copper

It is 99.8% purity, featuring acid and alkali resistance, wear resistance, non-magnetic, sound insulation and good ductility.

It can be used as shielding screen in the circuits, laboratories and computer rooms. In addition, it can be installed on buildings for sound insulation or is fabricated into polymer extruder screen for polymer filtration.

A brass woven mesh roll is unfolding.
Brass

It contains 65% copper and 35% zinc, featuring excellent filtration performance, bright color and smooth surface.

It can be as filtration materials, such as the filter disc or filter tube in the chemical, pharmacy and other fields, or used in paper-making dewatering, or used as the insect screen or window screen in home, hotel and other places.

A copper woven mesh roll is unfolding.
Nickel

It is a sliver-white metal with high electrical conductivity, thermal conductivity, ductility and corrosion resistance. Nickel woven mesh is constructed from nickel wires with high purity not less than 99%.

It is widely used as the filter materials in the mining, oil, chemical, food, pharmaceutical, machinery and other fields.

Nickle chemical composition table
Monel

It is divided into Monel alloy 400 and Monel alloy K500. Alloy 400 has outstanding corrosion resistance performance while alloy K500 has higher tensile strength and hardness than Monel alloy 400 due to the addition of aluminum.

Monel woven mesh has excellent corrosion resistance performance and is widely used in the marine industries, such as the piping system and strainer baskets. It can also be used in petrochemical industries.

Monel chemical composition table
Hastelloy

It is an alloy of nickel, molybdenum and chromium. It is the best corrosion resistant materials among all metal materials and has great chemical stability.

It is widely used in drugs manufacturing, chlorination devices, pesticide processing, incineration scrubber apparatus, etc.

Hastelloy chemical composition table
Glossary
  • Warp. All wires running lengthwise of the cloth as woven.
  • Weft. All wires running across the cloth as woven.
  • Mesh Count. The number of openings per lineal inch, reflecting the tightness of the mesh opening.
  • Wire Diameter. The thickness of the wire before weaving.
  • Mesh Opening. The distance between two adjacent wires.
  • Mesh Centers. The distance between the middle point of two adjacent wires.
Woven mesh sketch marked with relevant terms.
Specification
  • Wire Diameter: 0.02–2 mm
  • Mesh Count: 1–800 count, maximum 400 × 2800 mesh in Dutch weave
  • Mesh Opening: 0.0164–23.37 mm
  • Open Area: 23%–84.6%
Features
  • Solid structure
  • Wide range applications
  • Easy to process
  • Multiple materials available
  • High finish, simple and easy to maintain
  • Excellent resistant to acid, alkali, corrosion and high temperature
Filtration Industries
Application
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