Monel Wire Mesh Manufacturers provides high-performance nickel-copper alloy wire mesh products that are designed to perform in high-demand military, chemical, oil and gas, and aerospace environments. Monel wire mesh is appreciated because of its great resistance to seawater corrosion, acids, alkalis, and high-temperature environment and good mechanical stability. In addition to Monel products, there are also related sub-products that are supplied by the manufacturers, like Welded Wire Mesh, which is used with rigid structures, and Inconel Wire Mesh, which is used in environments of extreme temperatures and oxidizing environment so that there is a total of alloy wire mesh solutions available to meet the various industrial requirements.
The Monel wire mesh does not degrade quickly in the presence of chloride or excessive moisture, unlike carbon steel or other standard stainless meshes, and thus it can be used to service in harsh environments in the long run. Correct weight and dimensional information is invaluable in the large scale projects in which the calculation of loads, support design, shipping weight, and installation planning are to be strictly checked. An adequately developed Monel Wire Mesh Weight Chart KG MM PDF can guide the engineers, consultants, and procurement professionals towards identifying the right mesh specification and maximizing the quantity of materials, costs of transporting them, and the handling efficiency.
Monel wire mesh weight chart gives detailed information with respect to the diameter of the wire, mesh number, aperture size, and weight per square meter or per roll. These charts can particularly be handy with filtration systems, heat exchangers, offshore platforms, and chemical processing units where the accuracy of the mesh selection has a direct effect on the flow rate, strength, and service life. Monel wire mesh is usually produced in the woven type, including plain weave, twill weave, and Dutch weave, and gives predictable performance in high-pressure operating environments as well as corrosive operating environments.
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Weight Chart Tables
Chart 1: Monel Wire Mesh Weight Chart - Woven Mesh
| Mesh Size | Wire Diameter (mm) | Opening (mm) | Weight per m² (kg) | Approx Weight per Roll (30 m²) (kg) |
|---|---|---|---|---|
| 10 × 10 | 1.00 | 1.54 | 7.80 | 234.0 |
| 20 × 20 | 0.60 | 0.67 | 4.20 | 126.0 |
| 30 × 30 | 0.45 | 0.40 | 3.10 | 93.0 |
| 40 × 40 | 0.35 | 0.29 | 2.30 | 69.0 |
| 60 × 60 | 0.25 | 0.17 | 1.60 | 48.0 |
Chart 2: Monel Wire Mesh Material Grades & Properties
| Material Grade | Standard | Density (g/cm³) | Tensile Strength (MPa) | Operating Temp (°C) | Typical Applications |
|---|---|---|---|---|---|
| Monel 400 Wire Mesh | ASTM B164 / B725 | 8.80 | 480–620 | -200 to 550 | Marine, chemical plants |
| Monel K500 Wire Mesh | ASTM B865 | 8.44 | 750–960 | -200 to 600 | Offshore, aerospace |
| Inconel Wire Mesh | ASTM / ISO | 8.19 | 700–1000 | -200 to 1000 | High-temperature processing |
| Welded Wire Mesh (Alloy) | ASTM / IS | 7.85–8.80 | 400–600 | -40 to 500 | Structural panels |
Chart 3: Monel Wire Mesh Weight Chart & Panel / Heavy Mesh
| Wire Diameter (mm) | Mesh Opening (mm) | Panel Size (m) | Weight per Panel (kg) | Weight per m² (kg) |
|---|---|---|---|---|
| 4.0 | 100 × 100 | 2 × 3 | 46.0 | 7.67 |
| 3.15 | 75 × 75 | 2 × 3 | 35.5 | 5.92 |
| 2.5 | 50 × 50 | 2 × 3 | 26.4 | 4.40 |
| 2.0 | 25 × 25 | 1 × 2 | 12.8 | 6.40 |
| 1.6 | 12.5 × 12.5 | 1 × 2 | 9.6 | 4.80 |
The monel heavy wire mesh and panel materials are used where screening with high load, impact-resistant protective covers, marine enclosures, and industrial separation systems require strength and corrosion resistance to be combined.
Monel wire mesh offers durable, corrosion-free, and long-life product solutions to many industries, including marine engineering, oil and gas, chemical processing, power generation, and defense. A reliable Monel Wire Mesh Weight Chart KG MM PDF will be instrumental in ensuring that budgeting is done accurately, resources are obtained efficiently, and the project is carried out smoothly in technologically challenging environments.
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