Add:A-4F, Vantone Center, Chaowai St., Chaoyang Dist., Beijing, China.
Tel: +86 10 8599 9168
Cel.: +86 159 0035 7871
E-mail: jackywinn@foxmail.com

In the fiery purgatory above 1600℃, traditional metal materials often succumb to the fate of high-temperature creep and grain boundary embrittlement, while TZM molybdenum furnace elements redefine the limits of high-temperature industry with subversive performance. As the pinnacle of molybdenum-based alloys, it achieves a revolutionary balance between high-temperature strength, creep resistance and corrosion resistance through the synergistic effect of microalloying of titanium (Ti), zirconium (Zr) and carbon (C), becoming the core of thermal field in cutting-edge fields such as vacuum sintering, single crystal growth, and nuclear energy equipment.
High-temperature mission and material breakthrough
The birth of TZM alloy stems from a deep response to extreme working conditions. The solid solution strengthening effect of titanium and zirconium significantly increases the recrystallization temperature, and the carbide network formed by carbon elements effectively pins the grain boundaries, allowing the material to still resist deformation and oxidation corrosion at 1800℃. This "high-temperature corundum"-like property allows TZM heating elements to achieve ultra-clean thermal field control in semiconductor wafer furnaces, ensure micron-level precision in aerospace engine blade sintering furnaces, and face trillions of plasma impacts in nuclear fusion experimental devices.
The ultimate challenge of micron-level technology
From nano-level doping of high-purity molybdenum powder to densification control of isostatic pressing, the preparation of TZM is a precise carving of the microscopic universe. The multi-stage hot rolling process requires precise control of grain orientation to avoid anisotropy at high temperatures; the vacuum annealing process releases internal stress through gradient temperature control to reshape the intrinsic toughness of the material. The innovative application of surface siliconization or aluminide coating increases the life of the component to more than 3 times that of traditional molybdenum materials. The breakthrough of each process is a game between material engineers and the laws of high-temperature physics.
PETROL STEEL CO., LTD Brand Commitment
Forge quality with craftsmanship and drive the future with technology.
Technical guarantee
Jointly established a materials laboratory with the Institute of Metal Research, Chinese Academy of Sciences, specializing in TZM alloy grain boundary engineering and long-life coating technology.
Case witness
The trusted choice of global high-temperature equipment leaders, serving customers including top companies such as China National Nuclear Corporation, BYD Semiconductor, and Siemens Industry.
Worry-free after-sales
Provide full-cycle thermal field design support and component life prediction services, and technical escort throughout the cooperation.
Take action now
sales@petrolsteel.com, WhatsApp: +86 159 0035 7871
For more useful information on TZM molybdenum furnace elements, please click the link.
http://www.moly-tungsten.com/molybdenum/tzm-moly-sheet-tape-plate-for-vaccum-furnace.html
http://www.moly-tungsten.com/info/tzm-molybdenum-furnace-elements-an-overview-101678074.html
http://www.moly-tungsten.com/info/the-advantages-of-tzm-molybdenum-furnace-compo-95778897.html
Add:A-4F, Vantone Center, Chaowai St., Chaoyang Dist., Beijing, China.
Tel: +86 10 8599 9168
Cel.: +86 159 0035 7871
E-mail: jackywinn@foxmail.com