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Molybdenum Mesh High Temperature Molybdenum Rhenium Alloy Wire Mesh Neodymium Iron Boron Sintered Molybdenum Mesh

Molybdenum Mesh High Temperature Molybdenum Rhenium Alloy Wire Mesh Neodymium Iron Boron Sintered Molybdenum Mesh photo-1
Molybdenum Mesh High Temperature Molybdenum Rhenium Alloy Wire Mesh Neodymium Iron Boron Sintered Molybdenum Mesh photo-2
Molybdenum Mesh High Temperature Molybdenum Rhenium Alloy Wire Mesh Neodymium Iron Boron Sintered Molybdenum Mesh photo-3
Molybdenum Mesh High Temperature Molybdenum Rhenium Alloy Wire Mesh Neodymium Iron Boron Sintered Molybdenum Mesh photo-4
Molybdenum Mesh High Temperature Molybdenum Rhenium Alloy Wire Mesh Neodymium Iron Boron Sintered Molybdenum Mesh photo-5
Negotiable MOQ: 1 Piece (Price negotiable depending on order volume and customization)
Key Specifications
Get Latest Price
Material:
Other, Molybdenum
Type:
High Efficiency
Application:
Liquid Filtration, Screening, Solid-Liquid Separation, Gas-Liquid Separation, Dry Filtration, Dustproof, Gas Filtration
Payment & Shipping
Payment Methods:
Port of Shipment:
Tianjin
Delivery Detail:
3 days
Material Other, Molybdenum
Type High Efficiency
Application Liquid Filtration, Screening, Solid-Liquid Separation, Gas-Liquid Separation, Dry Filtration, Dustproof, Gas Filtration
Style Filter
Hole Shape Square
Transport Package Carton or wooden crate
Specification 4-300Mesh
Trademark ofolan
Origin china

Item

Details

Product Name

OFOALN Molybdenum Wire Mesh

Model

MO1 > 99.95% Molybdenum Rhenium Alloy

Density

10.22 g/cm³

Melting Point

2610 ℃

Mesh Count

4.4-250 Mesh

Characteristic

1. At room temperature, molybdenum mesh is stable in both air and water,   and does not react with hydrochloric acid, hydrofluoric acid, dilute nitric   acid, or alkaline solutions.

2. When used in a vacuum environment, uncoated molybdenum has an   extremely long service life. Molybdenum is completely stable in pure   hydrogen, argon, and helium, and does not undergo a chemical reaction with   hydrogen until it reaches its melting temperature. However, when molybdenum   is heated in hydrogen, it can absorb a portion of the hydrogen to form a   solid solution (e.g., at 1000 ℃, 100 grams of molybdenum metal can dissolve   0.5 cm³ of hydrogen). The application of molybdenum mesh in various electric   furnaces fully demonstrates this characteristic.

3. When the temperature exceeds 1500 ℃, molybdenum mesh reacts   chemically with nitrogen to form nitrides. If the nitrogen pressure is   extremely low (approximately 0.01 mmHg), no obvious reaction occurs even at   2400 ℃.

4. Molybdenum mesh still exhibits excellent performance in carbon   dioxide, ammonia, and nitrogen at temperatures up to approximately 1100 ℃. At   higher temperatures, nitride films may form on the surface of molybdenum mesh   in ammonia and nitrogen environments.

5. When the temperature is above 1100 ℃, molybdenum mesh can be   carbonized by carbon-containing gases such as hydrocarbons and carbon   monoxide.

Application

Molybdenum mesh is widely used in the following fields: support mesh for   sintering neodymium-iron-boron in vacuum high-temperature furnaces,   connecting components in corrosion-resistant production, structural   components operating in high-temperature environments, heating elements,   integrated circuits, gas filtration, aerospace, and military industries.

Place of Origin

China

Trademark

OFOLAN

Warranty Period

3 months

Contact Information

- Company Name: Anping Ofolan Metal Wire Mesh Manufacture Co., Ltd

- Address: High-tech Zone, Anping County, Hengshui, Hebei, China

- Mobile Phone: +86 13315865785

- Email: estrellayue@ofolan.com

- WhatsApp: +86 13315865785

- Website: 

 


Product Tags: molybdenum mesh

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Verified Business License
Business Type
Manufacturer
Year Established
2012
Annual Export Value
US$1.5 Million - US$2.5 Million
Port of Shipment
Tianjin