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WM4859 Tungsten Molybdenum Alloy Plate

Catalog No. WM4859
Material Tungsten, Molybdenum
Shape Plate

Tungsten Molybdenum Alloy Plate has good high-temperature strength, and similar properties to tungsten but smaller specific gravity than tungsten. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality Tungsten Molybdenum Alloy Plate.

Related products: Tungsten-Copper (W-Cu) Electrodes, Tungsten Copper Composite, Molybdenum Tungsten Alloy, Molybdenum Tungsten Crucible

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Tungsten Molybdenum Alloy Plate
Tungsten Molybdenum Alloy Plate
Tungsten Molybdenum Alloy Plate
Tungsten Molybdenum Alloy Plate
Description
Specification

Tungsten Molybdenum Alloy Plate Description

Tungsten Molybdenum Alloy Plate has good high-temperature strength, and similar properties to tungsten but smaller specific gravity than tungsten. It can be used as high-temperature components in rockets, missiles, filaments, parts of electronic tubes, and other high-temperature materials under corresponding high-temperature conditions.

Tungsten Molybdenum Alloy Plate Specifications

Chemical Composition & Mechanical Properties

Hardness of Molybdenum Tungsten Alloy

The Content of Alloys /%

Vickers hardness/MPa

20℃

427℃

871℃

1316℃

1649℃

100%Mo

1764 MPa

637 MPa

568 MPa

206 MPa

176 MPa

Mo18.6%W

1891 MPa

990 MPa

813 MPa

441 MPa

216 MPa

Mo28.9%W

1940 MPa

1019 MPa

853 MPa

490 MPa

265 MPa

Mo40.1%W

2009 MPa

1068 MPa

951 MPa

568 MPa

294 MPa

Mo49.1%W

2186 MPa

1137 MPa

980 MPa

686 MPa

372 MPa

Mo49.7%W

2273 MPa

-

-

-

-

Mo59.8%W

2372 MPa

1235 MPa

1039 MPa

784 MPa

412 MPa

Mo70.8%W

2587 MPa

-

-

-

-

Mo72.2%W

2685 MPa

1343 MPa

1117 MPa

892 MPa

510 MPa

Mo84.4%W

3185 MPa

1176 MPa

902 MPa

853 MPa

500 MPa

Mo89.9%W

3499 MPa

-

-

-

-

Mo90.4%W

3538 MPa

1156 MPa

902 MPa

843 MPa

472 MPa

Mo97.3%W

3587 MPa

902 MPa

833 MPa

764 MPa

402 MPa

Mo99.9%W

3861 MPa

-

-

-

-

 

Tungsten Molybdenum Alloy Plate Applications

Tungsten Molybdenum Alloy Plate is used as high-temperature components in rockets, missiles, filaments, parts of electronic tubes, and other high-temperature materials under corresponding high-temperature conditions. It is widely used In the national defense industry, medical equipment, nuclear industry, and other fields.

Tungsten Molybdenum Alloy Plate Packaging

Our Tungsten Molybdenum Alloy Plate is carefully handled during storage and transportation to preserve the quality of our product in its original condition.

FAQs

Q1 Why is Tungsten Molybdenum Alloy Plate used in high-temperature applications?
Tungsten Molybdenum alloy plates are ideal for high-temperature applications because both tungsten and molybdenum have extremely high melting points. Tungsten melts at around 3,422°C (6,192°F), and molybdenum has a melting point of about 2,623°C (4,753°F). This makes the alloy exceptionally resistant to thermal expansion and thermal shock, allowing it to perform well in extreme temperatures, which is why it's commonly used in aerospace and industrial environments where heat is a significant concern.

Q2 What is the cost of Tungsten Molybdenum Alloy Plate?
The cost of Tungsten Molybdenum alloy plates depends on several factors:

  • Size and thickness: Larger or thicker plates may incur higher costs.
  • Molybdenum-to-tungsten ratio: A higher ratio of molybdenum or tungsten may affect pricing.
  • Custom specifications: Plates that require specific machining or performance characteristics can be more expensive.
  • Quantity: Bulk orders typically result in reduced costs per unit. To get accurate pricing, it is recommended to request a quote from suppliers based on your exact requirements.

Q3 How does Tungsten Molybdenum Alloy Plate compare to other high-temperature alloys?
Tungsten Molybdenum alloy plates are among the strongest and most heat-resistant materials available, making them superior to other high-temperature alloys, such as titanium or nickel-based alloys, in applications where extreme heat resistance and strength are required. The combination of tungsten and molybdenum gives it an edge over materials that are less heat resistant and have lower mechanical strength under high temperatures.

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