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Mo-0.5Ti Titanium Molybdenum Alloy Rod Bar Molybdenum Rod Titanium Zirconium Molybdenum Rod TZM Polished Mo Rod 8mm 10mm

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Mo-0.5Ti Titanium Molybdenum Alloy Rod Bar Molybdenum Rod Titanium Zirconium Molybdenum Rod TZM Polished Mo Rod 8mm 10mm

Country/Region china
City & Province baoji Shaanxi
Categories Lime
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Product Details

Mo-0.5Ti Molybdenum Titanium Alloy Rod

 

1. Description of Mo-0.5Ti Molybdenum Titanium Alloy Rod:

 

What's Molybdenum Titanium alloy?

 

Molybdenum-titanium alloy rod is an alloy composed of molybdenum-based and a small amount of titanium. Mo-0.5Ti alloy is the most well-known molybdenum-titanium alloy. Most molybdenum-titanium alloys are mixed with powder, pressed and sintered into alloy ingots, and then processed into materials. The process is simple and the yield is high.

 

2. Performance of Mo-0.5Ti Molybdenum Titanium Alloy Rod:

 

Measurement data of physical and mechanical properties of molybdenum titanium alloy
Melting
/℃
Density
/g·cm-3
Hardness
Hc
Strength limit
/kg·mm-2
Yield Strength
/kg·mm-2
Elongation
/%
Elastic modulus
/kg·mm-2
Impact toughness
/kg·m·cm-2
1780-35.5825~28-289~92-289~9012~14-212~500-26~8
 
 
 
 
 
 
 
3. Chemical content of Mo-0.5Ti Molybdenum Titanium Alloy Rod:
 
Chemical composition of titanium molybdenum alloy rod%[Main ingredient impurity content(Less than)]
MoTiFeSiCHON
30~34Remain0.30.150.10.0150.0150.015
 
 
 
 
 
4. Make of Mo-0.5Ti Molybdenum Titanium Alloy Rod:
 
The preparation of molybdenum-titanium alloy is divided into billet preparation and plastic deformation forming:
 
1. Billet production
There are two types of powder metallurgy and smelting. Powder metallurgy removal is to mix high-purity molybdenum powder, titanium hydride powder and graphite powder according to the composition requirements, then press or isostatically press into ingots, and then sinter them into ingots by vertical melting or indirect heating under the protection of hydrogen. . The smelting method is to smelt high-purity molybdenum strips, carbon-containing molybdenum strips and alloying element titanium into ingots by vacuum arc smelting or electron beam smelting according to the requirements.
 
2. Plastic deformation
Powder metallurgy ingots are forged, rolled or directly rolled into products. Smelted ingots are extruded, forged and rolled into products. The types of deformed products include forgings, bars, wires, pipes, thick plates and thin plates.
 
 
 
 


 


 

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