首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >MgAlSiCrFeNi low-density high entropy alloy processed by mechanical alloying and spark plasma sintering: Effect on phase evolution and thermal stability
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MgAlSiCrFeNi low-density high entropy alloy processed by mechanical alloying and spark plasma sintering: Effect on phase evolution and thermal stability

机译:MGALSICRFENI低密度高熵合金通过机械合金化加工和火花等离子体烧结:对相位演化和热稳定的影响

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摘要

Equiatomic MgAlSiCrFeNi low-density high-entropy alloy (LDHEA) was prepared by mechanical alloying followed by spark plasma sintering (SPS). The phase evolution, chemical composition, and thermal stability of the alloy were analyzed by X-Ray diffraction (XRD), transmission electron microscopy (TEM), scanning electron microscopy (SEM), and differential scanning calorimetry (DSC) techniques. Formation of a BCC phase having a lattice parameter of 0.2876 +/- 0.03 nm and undissolved Si (similar to 3 at%) was observed after milling of 60 h. DSC experiment up to 1200 degrees C (1473 K) shows five exothermic heating events corresponding to various phase transformations, which were matched with the results obtained from XRD experiments. It has been found that the alloy after high temperature annealing led to the evolution of a major B2 phase (a=0.289 nm) and also BCC phase along with small amounts of FCC Al-Mg solid solution phase, FCC 1 (a= 0.4082 nm) and FCC 2 (a= 0.4215 nm), monoclinic Al(13)Fe4 (a= 1.549 nm, b= 0.808 nm, c= 1.248 nm, alpha = beta = 90 degrees), Mg2Si (a= 0.6351 nm), Cr5Si3 (a=b= 0.9165 nm, c= 0.4638 nm). The spark plasma sintered (SPS) sample also exhibited BCC and B2 phases coexisting with minor amounts of other phases observed for 800 degrees C (1073 K) annealed sample. The co-exsistence of minor phases with parent BCC phase in SPSed alloy (having relative density of similar to 99.40%) has led to significantly high hardness and modulus of elasticity of similar to 9.98 +/- 0.3 GPa and 229 +/- 0.3 GPa respectively. Various thermodynamics parameters were calculated in order to correlate with the experimental findings of phase evolution and stability of the annealed powder and spark plasma sintered alloy. (C) 2021 Elsevier B.V. All rights reserved.
机译:通过机械合金化和放电等离子烧结(SPS)制备了等原子MgAlSiCrFeNi低密度高熵合金(LDHEA)。采用X射线衍射(XRD)、透射电子显微镜(TEM)、扫描电子显微镜(SEM)和差示扫描量热仪(DSC)技术分析了合金的相演变、化学成分和热稳定性。球磨60小时后,观察到BCC相的形成,其晶格参数为0.2876+/-0.03 nm,未溶解的Si(类似于3 at%)为未溶解。高达1200°C(1473 K)的DSC实验显示,五个放热加热事件对应于各种相变,这与XRD实验获得的结果相匹配。研究发现,高温退火后的合金会导致主要B2相(a=0.289 nm)和BCC相的演化,以及少量FCC Al-Mg固溶体相、FCC 1(a=0.4082 nm)和FCC 2(a=0.4215 nm)、单斜Al(13)Fe4(a=1.549 nm,b=0.808 nm,c=1.248 nm,α=90度)、Mg2Si(a=0.6351 nm)、Cr5Si3(a=0.9165 nm,c=0.4638 nm)。火花等离子体烧结(SPS)样品也显示出BCC和B2相与少量其他相共存,这些相在800℃(1073 K)退火样品中观察到。在SPSed合金中,少量相与母BCC相(相对密度为99.40%)共存,导致硬度和弹性模量显著提高,分别为9.98+/-0.3 GPa和229+/-0.3 GPa。为了与退火粉末和火花等离子烧结合金的相演变和稳定性的实验结果相关联,计算了各种热力学参数。(c)2021爱思唯尔B.V.保留所有权利。

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