Products Description
In vacuum furnaces, thermal and high temperature components, pure molybdenum strips often affect the service life of equipment due to creep deformation or insufficient strength. By adding titanium, zirconium and trace carbon, TZM molybdenum alloy strips significantly improve high-temperature strength and creep resistance, and become a reliable upgrade material for high-temperature structure and heating applications.
Outstanding high temperature strength and creep resistance
It still has excellent tensile strength above 1000 °C, stable size after heating, and risk of deformation.
Higher recrystallization temperature
Better toughness after hot working, brittle fracture probability, easy welding and molding.
Strong processing adaptability
It can be made into heaters, heat insulation screens or structural parts. The surface supports rolling state or further treatment. The thickness and width cover mainstream industrial specifications, and the tolerance is stable and reliable.

These advantages stem from the grain pinning of titanium and zirconium and the dispersion strengthening of carbon, which have been verified by actual hot processing, rather than theoretical data.
In vacuum or protective high-temperature furnaces
In vacuum or protective high-temperature furnaces, TZM molybdenum alloy strips are widely used as heating elements, heat shields and support structures to support longer continuous operation.
n the field of hot working
In the field of hot working, it is used to make molds, forged backing plates and high-temperature fixtures, and its wear-resistant and deformation-resistant performance is better than that of pure molybdenum.
In the energy industry
In the energy industry, it is used in high-temperature structural parts and nozzle-related components. Thin gauges are also commonly used for thermal shielding and conductive connections in precision equipment.

Why TZM Molybdenum Alloy Strip
Many customers finally choose TZM molybdenum alloy strips, mainly based on three practical considerations.
First, the performance upgrade is clear: it significantly improves the high temperature strength and creep resistance compared with pure molybdenum, and the equipment has a longer life in the hot zone, and it can be replaced when it is shut down.
The second is that the cost is more controllable: it can solve the pain points of most high-temperature working conditions without directly jumping to more expensive special alloys, and the comprehensive input-output ratio is better.
The third is mature supply and processing: complete specifications, stable tolerances, convenient welding and forming, can quickly match existing designs, and shorten the project cycle. After the switch, users generally report that the operational stability has improved and the maintenance cost has decreased.
product parameters
|
Alloy Type |
High Temp Strength |
Common Use |
Main Benefit |
|
Pure Moly |
Moderate |
Basic heating |
Easy availability |
|
TZM Alloy |
Excellent |
Furnace components |
Superior creep |
|
Mo-La Alloy |
Very good |
Structural parts |
Better ductility |
|
Mo-Re Alloy |
Outstanding |
Extreme aerospace |
Highest toughness |
Our products
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The specific effect depends on the working temperature and load, and it is recommended to confirm the specifications according to the actual working conditions. If you are in the process of retrofitting a high-temperature furnace, upgrading a mold, or selecting a new project, please provide operating temperature, size, and surface requirements.
We will match the TZM molybdenum alloy strip scheme and provide sample support according to the inventory and customization capabilities. Choose the right material, and the high temperature scene will be more stable and efficient.
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Ava
18291778622

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