Pure Molybdenum Woven Mesh 99.95% Mo Wire Mesh

Molybdenum wire mesh, also called pure molybdenum mesh, mo wire mesh, heating element molybdenum mesh screen.  which with high resistance to 2610°C ~ 2640°C( around 4730°F  ~ 4784°F), this allows it to be used as heating elements, insulation materials or structural components in fields such as high-temperature furnaces, aerospace and the nuclear industry.

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Description

1. Material & Composition of pure molybdenum mesh[More than>99.95% Mo].

Category Purity MO Range Typical Grades Description 
Pure Molybdenum ≥99.95% MO-1 Industrial-grade pure molybdenum (impurities ≤0.05%), used in high-temperature furnaces and electronic components.
Pure Molybdenum ≥99.90% MO-2 Slightly lower purity than MO-1, suitable for general high-temperature structural applications.
Electronic-Grade Molybdenum ≥99.99% High-purity molybdenum with strict impurity control, applied in semiconductors and vacuum devices.
Ultra-High Purity Molybdenum ≥99.999% (5N) Used in advanced research or specialized industries (e.g., nuclear technology, aerospace materials).
Molybdenum Alloys Molybdenum 90%-99% TZM, MHT, Mo-Re Common alloy types:
– TZM (Mo-0.5Ti-0.08Zr)
– MHT (Mo-0.5Ti-0.15Hf)
– Mo-Re (rhenium added for ductility).

–Weaving type: Plain/Twill Weave, Cripmed Coarse Mesh sizes.

–Mesh count: 1-300 Mesh

–Wire diameter: 0.035mm – 5mm

–Roll width: 100mm 200mm 500mm 1000mm 1500mm

–Roll Length: 30m/roll  50m/roll or any other cutting size

–Common stock size of Molybdenum Wire Mesh: 20# 24# 30# 40# 50# 60# 80# 100# 150# 200# 250#, More product info, please contact our manager: Info@jiahongmetal.com 

2. Key Properties of Molybdenum Mesh

1. High Melting Point:
– Molybdenum has a high melting point of 2,623°C (4,753°F), making it suitable for high-temperature applications.
2. Strength and Durability:
– Molybdenum is strong and maintains its structural integrity even at elevated temperatures.
3. Thermal Conductivity:
– Good thermal conductivity, making it effective for heat transfer applications.
4. Corrosion Resistance:
– Resistant to many acids and corrosive environments, though it can oxidize at high temperatures in the presence of oxygen.
5. Low Thermal Expansion:
– Exhibits low thermal expansion, which helps maintain dimensional stability under thermal stress.

3. Molybdenum mesh’s excellent properties enable wide applications across multiple sectors:

– **Electronics Industry**:  Molybdenum wire mesh is used to manufacture electrodes, grids and other components of electronic devices such as electron tubes and transistors. Its high melting point, good electrical and thermal conductivity contribute to the stable operation of electronic components.

– **Electric Light Source Industry**: As a material for components such as filament supports and reflectors of lamps,  pure molybdenum mesh can withstand high temperatures and ensure the luminous efficiency and service life of the lamps.

– **Metallurgical Industry**: In the metallurgical process, 99.95% pure mo wire mesh is used as heating elements, heat insulation screens, etc. of high-temperature furnaces. Its high-temperature resistance and oxidation resistance can meet the working requirements in high-temperature environments.

– **Chemical Industry**: Mo mesh can be used as a catalyst carrier. Taking advantage of its large specific surface area and good chemical stability, it can support the active components of the catalyst, improving the efficiency and selectivity of the catalytic reaction. It can also be used for chemical filtration. With its fine mesh structure, it can carry out precise filtration of chemical materials.

– **Mechanical Manufacturing**: Molybdenum woven wire mesh is used to manufacture some high-precision molds. By taking advantage of its high strength and dimensional stability, it can ensure the precision of the molds during complex molding processes.

– **Aerospace Industry**: In the aerospace field, molybdenum mesh can be used to manufacture components of aircraft engines, such as turbine blades, combustion chambers, etc., to withstand extreme high-temperature and high-pressure environments.

 

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