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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 >Operation of solute-drag creep in an AlCoCrFeMnNi high-entropy alloy and enhanced hot workability
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Operation of solute-drag creep in an AlCoCrFeMnNi high-entropy alloy and enhanced hot workability

机译:在AlcocroChnni高熵合金中的溶质蠕变的操作,增强了热的可加工性

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Strong evidence for creep controlled by solute-drag processes, such as the yield-drop phenomenon, a stress exponent of 3 and a sluggish tendency to form subgrains, was found during hot compressive deformation of a cast BCC AlCoCrFeMnNi high-entropy alloy with coarse grains; these characteristics are typically observed in conventional metals that exhibit solute-drag creep. These three features were not observed in the FCC CoCrFeMnNi alloy with coarse grains, indicating that the addition of aluminum causes solute-drag creep to arise as the rate-controlling deformation mechanism. Compared with the FCC Al0.5CoCrFeMnNi matrix (with a small amount of BCC phase), the AlCoCrFeMnNi exhibited more distinct characteristics of solute-drag creep. This is likely because the Al concentration in the matrix of AlCoCrFeMnNi is notably higher than that in the matrix of Al0.5CoCrFeMnNi (17.8 vs. 6.5 at.%). Also, the solute-drag creep extended to an increased strain rate and a decreased temperature in AlCoCrFeMnNi because the critical stress for dislocations to break away from the solute atmospheres increases as the Al solute concentration in the matrix increases. This outcome improves hot workability of AlCoCrFeMnNi according to the processing maps because the power dissipation efficiency increases and the flow instability regime shrinks at high strain rates and low temperatures. (C) 2020 Elsevier B.V. All rights reserved.
机译:在铸造BCC Alcocrocropni高熵合金的热压缩变形期间,发现了由溶质 - 拖曳过程(如屈服降),如屈服下降现象,如屈服降低现象,3且形成亚察参的倾向的倾向倾向)。 ;通常在表现出溶质蠕变蠕变的常规金属中观察这些特征。在FCC CoCrfemnni合金中没有观察到具有粗晶的FCC Cocrfemnni合金,表明添加铝使溶质 - 蠕变蠕变产生作为速率控制变形机制。与FCC AL0.5 COCRFEMNI矩阵相比(具有少量的BCC阶段),AlcoCroChni表现出更明显的溶质 - 拖曳蠕变特征。这可能是因为AlcoCroChni矩阵中的Al浓度显着高于Al0.5CoCrfemnni的基质(17.8 vs.6.5)中的群体。而且,溶质 - 阻力蠕变扩展到增加的应变速率和AlcoCrfemnni中的降低,因为除溶质氛围的致密应力随着基质中的Al溶质浓度增加而增加。这一结果提高了AlcocroChni的热可加工性,因为根据处理贴图,因为功率耗散效率增加,并且在高应变率和低温下流动不稳定的制度缩小。 (c)2020 Elsevier B.v.保留所有权利。

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