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首页> 外文期刊>Surface & Coatings Technology >High temperature electrical properties and oxidation resistance of V-Nb-Mo-Ta-W high entropy alloy thin films
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High temperature electrical properties and oxidation resistance of V-Nb-Mo-Ta-W high entropy alloy thin films

机译:V-NB-MO-TA-TA-TW高熵合金薄膜的高温电性能和抗氧化性

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摘要

High entropy alloys (HEA) show outstanding thermodynamic, mechanical or thermal properties as compared with pure metals or binary alloys. Among several kinds of HEAs, the refractory element containing HEAs exhibit relatively high thermal stability and better mechanical properties at elevated temperature. In this study, the V19.2Nb19.4Mo20.3Ta19.5W21.6 high entropy alloy thin films were deposited on the AISI 304 stainless steel substrates by a magnetron sputtering process. The oxidation behavior and electrical conductivities of HEA thin films at different temperatures were evaluated. The body-centered cubic (BCC) structure of HEA thin film can be kept up to 500 degrees C oxidation, and it transferred to V-Nb-Mo-Ta-W based oxides and then turned to iron contained oxide phases when the oxidation temperature increased to 700 degrees C. The electrical resistivity of thin film increased with oxidation temperature. The electrochemical impedance spectroscope (EIS) analysis showed that the total apparent resistivity values of 304SS substrate coated with V19.2Nb19.4Mo20.3Ta19.5W21.6 high entropy alloy thin film at 600, 700 and 800 degrees C were 5.80, 6.91, and 7.71 Omega.cm, respectively. The electrical resistance of the HEA coated sample was contributed by the oxide resistance and interface polarization. Through the electrical property analysis at high temperatures, the HEA thin film can provide a protection layer to the 304SS substrate and kept the sample's high temperature apparent resistivity to a relatively lower value.
机译:与纯金属或二元合金相比,高熵合金(HEA)显示杰出的热力学,机械或热性质。其中几种HEA与的,含有HEA与耐火元件表现出相对高的热稳定性,并在升高的温度下更好的机械性能。在这项研究中,V19.2Nb19.4Mo20.3Ta19.5W21.6高熵合金薄膜,通过磁控溅射工艺沉积在AISI 304不锈钢基片。氧化行为和在不同温度下HEA薄膜的电导率进行了评价。 HEA薄膜的体心立方(BCC)结构可保持高达500摄氏度的氧化,以及铁所含的氧化物相它转移到铌 - 钼 - 钽 - 钨V系氧化物,然后转向当氧化温度提高至700℃。薄膜的电阻率与氧化温度升高。电化学阻抗谱(EIS)分析表明,304SS基底的涂有V19.2Nb19.4Mo20.3Ta19.5W21.6总视电阻率值在600,700和800摄氏度的高熵合金薄膜是5.80,6.91,和7.71 Omega.cm,分别。的HEA涂覆的样品的电阻被贡献的氧化物电阻和界面极化。通过在高温下的电性能分析,HEA薄膜可以提供保护层的304SS基底并保持在样品的高温视电阻率到相对较低的值。

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