• Luoyang Hypersolid Metal Tech Co., Ltd
    John Wilson
    Hypersolid Metal Tech Co., Ltd is a very responsible company that can effectively solve our problems. I hope there will be opportunities to work together in the future.
  • Luoyang Hypersolid Metal Tech Co., Ltd
    mia
    This company is the best I have ever seen. The company's employees are particularly enthusiastic and able to respond and meet our needs. If there is a need in the future, I will still work with you!
Contact Person : sabrina.chen
Phone Number : +86 15836043611

molybdenum bar price molybdenum rod supplier china supplier

Place of Origin China
Brand Name Hypersolid Metal
Minimum Order Quantity Negotiate
Price Negitionable
Packaging Details Standard export cartons
Delivery Time 30 days after receiving down payment
Payment Terms L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability 10000sets/month

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Product Details
Boiling Point 4639°C Density 10.2 G/cm3
Electrical Conductivity 35% IACS Electrical Resistivity 6.99μΩ.m
Hardness 230 HB Molybdenum Melting Poin 2620 °C
Size Customized Thermal Conductivity 138 W/m·K
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Product Description

1,Description:

 

Material: Molybdenum (Mo) bars are made from the metal molybdenum.

Density: The density of molybdenum bars is approximately 10.2 grams per cubic centimeter (g/cm³).

Melting Point: Molybdenum has a high melting point of about 2,623 degrees Celsius (4,753 degrees Fahrenheit), making molybdenum bars suitable for high-temperature applications.

Thermal Conductivity: Molybdenum exhibits moderate thermal conductivity, allowing it to conduct heat efficiently.

Electrical Conductivity: Molybdenum is a relatively poor conductor of electricity compared to other metals.

 

2,Specifications:

 

Property Description
Material Molybdenum (Mo)
Density (g/cm³) 10.2
Melting Point (°C) 2,623
Thermal Conductivity (W/m·K) 138
Electrical Conductivity Relatively poor electrical conductivity
Strength High tensile strength
Ductility Relatively ductile
Corrosion Resistance Good corrosion and oxidation resistance
Coefficient of Thermal Expansion (CTE) (ppm/°C) 4.8 to 5.2

 

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