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Production Method of Molybdenum-based Alloy (TZM)

In order to make up for the poor high temperature strength and low oxidation resistance of pure molybdenum alloy, producers often dope appropriate amount of additives such as zirconium hydride, yttrium oxide and cerium oxide in their production process

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07/ 23 / 2022
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Introduction of TZC Alloy--Molybdenum Titanium Zirconium Carbon Alloy

Like TZM alloy (molybdenum-titanium-zirconium alloy) and MHC alloy (molybdenum-titanium-zirconium-carbon alloy), TZC alloy (molybdenum-titanium-zirconium-carbon alloy) is also a high-temperature-resistant molybdenum-based alloy, which is widely used in places with harsh working environments.

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07/ 21 / 2021
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Recrystallization TZM Alloy Thermal Deformation Characteristics Research

Because recrystallization TZM alloy at room temperature is fragile and it is hard to deform. So before cool and warm rolling should avoid annealing at perfect recrystallization.

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07/ 28 / 2020
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TZM Alloy Oxidation Resistance Property

TZM alloy has good high temperature mechanical property, but at a high temperature oxidation resistance property is poor. Under high temperature, it unable to form a protective oxide layer, so it must be used at high temperatures in non-oxidizing atmosphere. When the temperature is below 400 ℃

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07/ 20 / 2020
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Strengthening Mechanism of TZM Alloy

The strengthening mechanism of TZM alloy is divided into: solid solution strengthening, second phase strengthening and deformation strengthening.

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07/ 10 / 2020
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Effect of Deformation Degree on Mechanical Properties of TZM Alloy at Room Temperature

The degree of deformation is one of the main factors affecting the densification process of the TZM alloy slab, and it also ultimately affects the mechanical properties of the TZM alloy slab. When the TZM alloy plate is rolled,the degree of deformation of the material is expressed by the compression

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07/ 02 / 2020
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