Top-Quality Stainless Steel Wire Mesh and Filter Solutions

Nichrome Wire Mesh

Nichrome Wire Mesh: Strong and Heat-Resistant for Industrial Use

Nichrome, an alloy of nickel and chromium, offers high electrical resistance and is commonly used in heating elements. Its wire mesh is known for durability in high-temperature applications, making it a popular choice in industrial heating, laboratory equipment, and in various electrical applications.
nichrome wire mesh

JD Hardware Wire Mesh Co., Ltd produces Nichrome wire mesh, a non-ferrous, nickel-based alloy mesh known for its heat resistance, making it ideal for high-temperature industrial applications. Nichrome, composed mainly of nickel and chromium, comes in variants like Cr20Ni80, Cr15Ni60, and Cr20Ni35, catering to different needs with a range of resistivities and strengths. This mesh is notable for its versatility, durability, and resistance to heat, corrosion, and electricity, meeting diverse industrial requirements.

Our Nichrome mesh is crafted through weaving and stretching, enhancing its structural integrity and adaptability. A standout feature is its ability to form a chromic oxide layer at high temperatures, crucial for corrosion resistance and protecting the underlying metal. Additionally, its high electrical resistance and low temperature coefficient make it an optimal choice for electrical resistors, especially in high-temperature settings. This ensures reliable performance and resistivity in demanding conditions, ideal for manufacturing high-temperature resistors.

Nichrome Wire Mesh Specifications

Our Nichrome wire mesh comes with varied specifications, designed to meet a diverse range of industrial applications. With options for customization in size and weaving patterns, and a focus on high-temperature resilience, our mesh products stand ready to meet the demanding requirements of our clients.

  • Material Composition
    Our Nichrome wire mesh is crafted from premium Nichrome wire, available in three key alloys: Cr20Ni80, Cr15Ni60, and Cr20Ni35. Each alloy is chosen for its unique properties, ensuring the mesh meets specific performance criteria.
  • Mesh Count Range
    We offer a comprehensive range of mesh counts, spanning from 4 to 325MESH. This wide array caters to various filtration needs and structural requirements across different industries.
  • Width and Length Options
    The standard widths for our Nichrome wire mesh are between 1 meter and 1.5 meters. For length, the typical measurement is 30 meters, but we also specialize in customizing dimensions to align with specific project needs.
  • Weaving Patterns
    To enhance the mesh’s strength and application suitability, we provide two weaving options: Plain weave and Twill weave. These choices allow for greater flexibility and adaptability in different usage scenarios.
  • High-Temperature Resistance
    A notable feature of our Nichrome wire mesh is its high thermal resistance, withstanding temperatures up to 1400°C (2550°F). This quality makes it an excellent choice for high-temperature industrial environments.

Chemical Composition

Grade%NiCrFeAlMnSiCPS
Cr20Ni80MinBal200.60.750.080.020.08
Max2310.21.6
Cr15Ni60Min5515Bal0.750.080.020.15
Max61180.50.61.6
Cr20Ni35Min3418Bal110.10.030.025
Max37210.53

Size

Mesh (Wires/ in.)Wire diameter (in.)Width of opening (in.)Open area (%)
4 × 40.0630.18756
8 × 80.0470.07838.9
8 × 80.0250.164
10 × 100.0350.06542.3
16 × 160.020.04346.2
20 × 200.020.0336
20 × 200.0130.03754.8
20 × 200.0160.03443.2
26 × 260.0130.02644
40 × 400.010.01536
40 × 400.0070.01851.8
80 × 800.00550.00731.4
200 × 2000.00210.002933.6
325 × 3250.00140.001729.7

Nichrome Wire Mesh Features

  • Ductility and Strength:
    Nichrome mesh combines high ductility, allowing easy shaping, with robust tensile strength for enduring stress without damage.
  • Resistances:
    It exhibits excellent oxidation and sulfur resistance, ensuring longevity in harsh environments. Its permeability resistance makes it ideal for filtration.
  • Flexibility and Non-Magnetic:
    The mesh’s superior elongation offers flexibility, while its non-magnetic nature suits applications sensitive to magnetic interference.
  • Heat Tolerance:
    Notably, it withstands high temperatures, making it suitable for extreme heat applications.

Nichrome Wire Mesh Applications

  • Aerospace: Utilized for its resilience to extreme conditions, ideal for aircraft components exposed to high temperatures and oxidative environments.
  • Shipbuilding and Marine: Employed for its corrosion resistance to saltwater, enhancing longevity and reliability in marine settings.
  • Defense and Military: Valued for its robustness in extreme conditions, crucial for military equipment and infrastructure.
  • Chemical Machinery: Used in environments with chemical exposure due to its corrosion and heat resistance, essential for chemical processing equipment.
  • Electric Power Systems: Ideal for components in high-thermal stress environments, thanks to its high-temperature resistance and electrical properties.
  • Desalination Plants: Suitable for saltwater processing, resistant to saltwater corrosion, critical in desalination plant operations.
  • Medical Equipment: Non-magnetic and corrosion-resistant, making it safe and reliable for various medical devices and instruments.

Product Photo Showcase and Alias

nichrome mesh
nichrome wire mesh

Nichrome Wire Mesh
Nichrome Wire Mesh, known for its high heat resistance and durability, is commonly used in industries requiring materials that can withstand high temperatures and corrosive environments.

Nickel-Chromium Mesh
Nickel-Chromium Mesh, emphasizing its composition of nickel and chromium, is ideal for applications in aerospace and defense due to its robustness and resilience under extreme conditions.

NiCr Wire Mesh
NiCr Wire Mesh, highlighting its chemical shorthand, is preferred in the chemical and electric power sectors for its excellent corrosion resistance and ability to handle electrical and thermal stresses.

Resistohm Wire Mesh
Resistohm Wire Mesh, underscoring its high electrical resistance, is an optimal choice for manufacturing electrical resistors, especially in high-temperature operating conditions.