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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Development and crystallization kinetics of novel near-equiatomic high-entropy bulk metallic glasses
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Development and crystallization kinetics of novel near-equiatomic high-entropy bulk metallic glasses

机译:新型近赤熵高熵散装金属眼镜的开发和结晶动力学

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摘要

In this study, alloying method has been adopted to develop novel near-equiatomic high-entropy bulk metallic glasses (HE-BMGs) with high glass-forming ability (GFA). A class of quinary Zr31Ti27Be26Cu10M6 (M = Ag, Al, Ni, V, Cr, and Fe) and senary Zr28Ti24Be23Cu9Ni10N6 (N=V, Cr, Fe, Ag, and Al) alloys were designed. Based on the phase formation rules of high entropy alloys (HEAs), all the developed compositions fall into the zone in which bulk metallic glasses will form. Accordingly, fully glassy rod samples with diameters ranging from 6 to 15 mm have been successfully prepared by copper mould casting. The developed HE-BMGs also possess high specific strength and certain compressive plasticity. Compared with the senary alloys, the quinary alloys possess higher GFA, better plasticity but lower strength. Among these alloys, Zr31Ti27 Be26Cu10Ni6, Zr31Ti27Be26Cu10V6 and Zr31Ti27Be26Cu10Ag6 HE-BMGs have been chosen for further non-isothermal analyses according to their large glass forming ability. The apparent activation energies were calculated using Kissinger, Moynihan, Ozawa and Boswell methods. The local Avrami exponents and kinetic fragility were also studied. Based on the experimental results, we have discussed the high entropy effect on the GFA, mechanical properties and crystallization kinetics of developed HE-BMGs. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本研究中,已采用合金化方法开发具有高玻璃形成能力(GFA)的新型近赤型高熵散装金属玻璃(HE-BMG)。设计了一类Quary Zr31Ti27Be26Cu10M6(M = Ag,A1,Ni,V,Cr和Fe)和老年Zr28Ti24Be23cu9Ni10N6(n = V,Cr,Fe,Ag和Ag)合金。基于高熵合金(HEAS)的相形形成规则,所有开发的组合物落入该区域,其中散装金属玻璃将形成。因此,通过铜模塑铸造成功地成功地制备了直径为6至15mm的完全玻璃杆样品。开发的HE-BMG也具有高比强度和某些压缩可塑性。与老年合金相比,静态合金具有更高的GFA,更好的可塑性,但力量较低。在这些合金中,已选择根据其大的玻璃形成能力进行进一步的非等温分析,选择Zr31Ti27 BE26Cu10Ni6,Zr31Ti27BE26Cu10v6和Zr31Ti27BE26Cu10Ag6。表观激活能量是使用基辛格,Moynihan,Ozawa和Boswell方法计算的。还研究了当地的AVRAMI指数和动力学脆性。基于实验结果,我们已经讨论了发育HE-BMGS的GFA,机械性能和结晶动力学的高熵效应。 (c)2018年elestvier b.v.保留所有权利。

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