首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >y Microstructures and mechanical properties of HfNbTaTiZrW and HfNbTaTiZrMoW refractory high-entropy alloys
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y Microstructures and mechanical properties of HfNbTaTiZrW and HfNbTaTiZrMoW refractory high-entropy alloys

机译:y HFNBTATIZRW和HFNBTATIZRMOW耐火材料高熵合金的组织和力学性能

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W and Mo are added to the HfNbTaTiZr high entropy alloy to improve its high-temperature performance. Microstructures, and mechanical properties of new refractory high-entropy alloys, HfNbTaTiZrW (H-W) and HfNbTaTiZrMoW (H-MoW), were studied. W and/or Mo additions broaden the two-phases temperature range and introduced two disordered BCC phases in contrast with the single BCC phase in HfNbTaTiZr. Attributing to the dual-phases microstructure and the strong solid solution strengthening effect, H-W and H-MoW exhibit substantially improved yield strengths at 25-1200 degrees C compared with HfNbTaTiZr. Particularly, at 1200 degrees C, H-W and H-MoW show yield strengths of 345 MPa and 703 MPa, which are much higher than 92 MPa of HfNbTaTiZr. No phase change happens during compressive tests at high temperatures, indicating good phase stabilities of H-W and H-MoW alloys. (C) 2019 Elsevier B.V. All rights reserved.
机译:W和Mo加入到HFNBTATIZR高熵合金中以提高其高温性能。 研究了新型耐火材料高熵合金,HFNBTATIZRW(H-W)和HFNBTATIZRMOW(H-MOW)的微观结构和力学性能。 W和/或Mo添加宽度促进两相温度范围,并与HFNBTATIZR中的单个BCC相相反,引入了两种无序的BCC相。 归因于双相微观结构和强固溶体强化效果,与HFNBTATIZR相比,H-W和H型割草具有25-1200℃的基本上提高的屈服强度。 特别地,在1200℃,H-W和H型割草中显示出屈服强度为345MPa和703MPa,其高于HFNBTATIZR的92MPa。 在高温下的压缩测试期间不会发生相变,表明H-W和H-Mow合金的良好相稳定性。 (c)2019 Elsevier B.v.保留所有权利。

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