Nickel Wire Mesh
Nickel woven mesh, also known as nickel wire cloth or nickel wire screen, is made from high-purity nickel wire (with a nickel content of over 99.9% provided by NHGT) through interlaced weaving. It is commonly used as a filtration medium. The main weaving methods include plain weave, twill weave, and Dutch weave. Among them, plain weave is the most widely used, characterized by its square mesh openings.
Nickel wire mesh has good electrical conductivity, thermal conductivity, ductility, and acid-alkali resistance. It plays a very important role in the fields of electrolytic hydrogen production, new energy, and fuel cell technology. It is often used as a metal filtering material in mining, petroleum, chemical, food, pharmaceutical, and machinery industries.
Features
01
Excellent conductivity
A top conductive material, ideal for electronics and communications like electromagnetic shielding and conductive cloth.
02
High-temperature stability
Withstands high temperatures stably, perfect for high-temperature reactors and catalyst carriers in chemical and petroleum sectors.
03
Strong corrosion resistance
Resists acids, alkalis, salts, widely used in chemical and pharmaceutical equipment and pipelines.
04
High load capacity
High tensile strength and fatigue resistance, suitable for filters, screens, and protective nets.
PRODUCT ADVANTAGES
Long-lasting durability
Its service life is much longer than that of ordinary metal meshes, which can reduce the labor and material costs caused by frequent replacements.
Flexible specifications
The parameters such as mesh size and wire diameter can be adjusted according to actual needs, making it easily adaptable to various scenarios.
Environmentally friendly and recyclable
As a metal material, it can be recycled and reprocessed after being discarded, which conforms to the concept of green environmental protection.
Full-scenario compatibility
It can operate stably in various harsh environments such as acid-alkali corrosion and high-temperature baking, and is suitable for chemical workshops, food processing lines, and other scenarios.
Easy to process and maintain
It has good plasticity, facilitating processing operations such as cutting and bending, and making installation and later maintenance more convenient.
Nickel Mesh 200 Specifications
| Item | Mesh | Diameter (inch) | Weave Type | Width Opening (inch) | Open Area (%) |
| NI200-1 | 8×8 | 0.0280 | Plain | 0.0970 | 60.20 |
| NI200-2 | 10×10 | 0.0200 | Plain | 0.0800 | 64.00 |
| NI200-3 | 12×12 | 0.0140 | Plain | 0.0693 | 69.20 |
| NI200-4 | 16×16 | 0.0120 | Plain | 0.0505 | 65.30 |
| NI200-5 | 16×16 | 0.0140 | Plain | 0.0485 | 60.20 |
| NI200-6 | 20×20 | 0.0045 | Plain | 0.0455 | 82.80 |
| NI200-7 | 20×20 | 0.0070 | Plain | 0.043 | 74.00 |
| NI200-8 | 20×20 | 0.0140 | Plain | 0.0360 | 51.80 |
| NI200-9 | 25×25 | 0.0060 | Plain | 0.0190 | 57.80 |
| NI200-10 | 26×26 | 0.0100 | Plain | 0.0285 | 54.80 |
| NI200-11 | 30×30 | 0.0130 | Plain | 0.0203 | 37.20 |
| NI200-12 | 40×40 | 0.0060 | Plain | 0.0190 | 57.80 |
| NI200-13 | 40×40 | 0.0100 | Plain | 0.0150 | 36.00 |
| NI200-14 | 50×50 | 0.0020 | Plain | 0.0180 | 81.00 |
| NI200-15 | 60×60 | 0.0070 | Plain | 0.0097 | 33.60 |
| NI200-16 | 60×60 | 0.0105 | Twil | 0.0062 | 13.70 |
| NI200-17 | 60×60 | 0.0100 | Twill | 0.0057 | 11.60 |
| NI200-18 | 70×70 | 0.0040 | Plain | 0.0103 | 51.80 |
| NI200-19 | 70×70 | 0.0045 | Plain | 0.0098 | 46.90 |
| NI200-20 | 70×70 | 0.0080 | Twill | 0.0063 | 19.40 |
| NI200-21 | 80×80 | 0.0055 | Twil | 0.0070 | 31.40 |
| NI200-22 | 85×70 | 0.0060 | Plain | 0.0000 | 28.40 |
| NI200-23 | 100×100 | 0.0020 | Plain | 0.0080 | 64.00 |
| NI200-24 | 100×100 | 0.0040 | Plain | 0.0060 | 36.00 |
| NI200-25 | 100×100 | 0.0045 | Plain | 0.0060 | 30.30 |
| NI200-26 | 200×200 | 0.0018 | Plain | 0.0032 | 41.00 |
Nickel Mesh 205 Specifications
| Item | Mesh | Diameter (inch) | Weave Type | Width Opening (inch) | Open Area (%) |
| NI205-1 | 60×60 | 0.0060 | Plain | 0.0107 | 41.00 |
Nickel Mesh 270 Specifications
| Item | Mesh | Diameter (inch) | Type Weave | Width Opening (inch) | Open Area (%) |
| NI270 - 1 | 50×50 | 0.0670 | Plain | 0.0133 | 44.2 |
| NI270 - 2 | 60×60 | 0.0040 | Plain | 0.0127 | 57.8 |
| NI270 - 3 | 60×60 | 0.0060 | Plain | 0.0107 | 41.0 |
| NI270 - 4 | 60×60 | 0.0070 | Plain | 0.0097 | 33.6 |
| NI270 - 5 | 75×75 | 0.0060 | Plain | 0.0073 | 30.3 |
FAQ
1. What are the main application fields of nickel mesh?
It is often used in battery electrodes, chemical catalysis, gas separation, hydrogen production, electronic materials, electrolytic industry, etc.
2. What nickel mesh materials do you provide?
We usually use pure nickel (Ni200/201) and can also provide nickel alloys such as Monel and Inconel.
3. Is your nickel mesh resistant to high temperatures?
Our nickel mesh is highly resistant to high temperatures, up to 1000°C or above, and is widely used in high-temperature gases, heat treatment, vacuum furnaces, etc.
4. How is the corrosion resistance of your nickel mesh?
Our nickel mesh has strong resistance to alkali corrosion and some acid corrosion, making it particularly suitable for caustic environments.
5. How is your nickel mesh packaged? Is transportation safe?
Our nickel mesh is packaged with moisture-proof paper + plastic sealing + wooden boxes and pallets to ensure that the products are not damaged, deformed, or oxidized.
Applications of Nickel Mesh
Shielded rooms and Faraday cages
Electrode substrates or current collectors for fuel cells
Filtration in sulfuric and hydrochloric acid environments
Seawater exchange and evaporation systems
Manufacturing of uranium enrichment and isotope separation equipment.
Automotive Industry: Used as piezoelectric material support mesh for detecting tire pressure changes and in battery electrodes, improving sensitivity and energy conversion efficiency.
Aerospace Industry: Used in fuel cells and cable shielding, offering high-temperature and corrosion resistance.
Chemical Industry: Used as anode mesh in electrolyzers for caustic soda (sodium hydroxide) production, providing long-term resistance to high-temperature, strong alkaline corrosion.
Oil and Gas Industry: Used as a catalyst carrier in refineries.
Chemical Industry: Used in filtration and electrode materials for acidic environments.
New Energy Industry: Used as diffusion layers and electrode structures in hydrogen fuel cells.
Electrical and Electronics Industry: Used in battery electrodes and electromagnetic shielding materials.
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