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Microstructure and Room Temperature Mechanical Properties of Different 3 and 4 Element Medium Entropy Alloys from HfNbTaTiZr System

机译:HFNBTATIZR系统的不同3和4个元素中等熵合金的组织和室温力学性能

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摘要

Refractory high entropy alloys (HEA) are promising materials for high temperature applications. This work presents investigations of the room temperature tensile mechanical properties of selected 3 and 4 elements medium entropy alloys (MEA) derived from the HfNbTaTiZr system. Tensile testing was combined with fractographic and microstructure analysis, using scanning electron microscope (SEM), wavelength dispersive spectroscope (WDS) and X-Ray powder diffraction (XRD). The 5 element HEA alloy HfNbTaTiZr exhibits the best combination of strength and elongation while 4 and 3 element MEAs have lower strength. Some of them are ductile, some of them brittle, depending on microstructure. Simultaneous presence of Ta and Zr in the alloy resulted in a significant reduction of ductility caused by reduction of the BCC phase content. Precipitation of Ta rich particles on grain boundaries reduces further the maximum elongation to failure down to zero values.
机译:耐火材料高熵合金(HEA)是高温应用的有希望的材料。该工作介绍了所选3和4个元素中等熵合金(MEA)的室温拉伸机械性能的调查,该组合源自HFNBTATIZR系统。使用扫描电子显微镜(SEM),波长色散分光镜(WDS)和X射线粉末衍射(XRD)将拉伸试验与式和微观结构分析组合。 5个元素HEA合金HFNBTATIZR表现出强度和伸长率的最佳组合,而4和3个元素测量的强度较低。其中一些是韧性,其中一些是脆性,取决于微观结构。通过降低BCC相含量,合金中Ta和Zr的同时存在导致延展性显着降低。 TA富颗粒对晶界颗粒的沉淀还减少了最大的伸长率,以失效至零值。

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