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Thermal Stability of MoNbTaVW High Entropy Alloy Thin Films

机译:Monbtavw高熵合金薄膜的热稳定性

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Refractory high entropy alloys are an interesting material class because of their high thermal stability, decent electrical conductivity, and promising mechanical properties at elevated temperature. In the present work, we report on the thermal stability of body-centered cubic MoNbTaVW solid solution thin films that were synthesized by cathodic arc deposition. After vacuum annealing up to 1600 °C, the morphology, chemical composition, crystal structure, and electrical conductivity, as well as the mechanical properties, were analyzed. The observed body-centered cubic MoNbTaVW solid solution phase is stable up to 1500 °C. The evolution of electrical and mechanical properties due to the annealing treatment is discussed based on the observed structural changes of the synthesized thin films.
机译:由于其高热稳定性,不良电导率和高温的机械性能,耐火材料高熵合金是一种有趣的材料类。在本作工作中,我们报告了通过阴极电弧沉积合成的身体中心立方体Monbavw固溶体薄膜的热稳定性。真空退火后,高达1600°C,分析了形态,化学成分,晶体结构和电导率,以及机械性能。观察到的身体中心立方体MonBravw固溶液相稳定至1500℃。基于由合成的薄膜的观察到的结构变化讨论了由于退火处理引起的电气和机械性能的演变。

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