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Texture evolution in an Al-Cu alloy during equal channel angular pressing: The effect of starting microstructure

机译:等通道角挤压过程中Al-Cu合金的织构演变:初始显微组织的影响

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摘要

In this article, the effect of initial microstructure on the texture evolution in 2014 Al alloy during equal channel angular pressing (ECAP) through route A has been reported. Three heat treatment conditions were chosen to generate the initial microstructures, namely (i) the recrystallization anneal (as-received), (ii) solution treatment at 768 K for 1 h, and (iii) solution treatment (768 K for 1 h) plus aging at 468 K for 5 h. Texture analyses were performed using orientation distribution function (ODF) method. The texture strength after ECAP processing was different for the three samples in the order, solutionised>solutionised plus aged condition>as-received. The prominent texture components were A_E/ā_E and B _E/B?_E in addition to several weaker components for the three materials. The strong texture evolution in solutionised condition has been attributed to higher strain hardening of the matrix due to higher amount of solute. In case of the as-received as well as solutionised plus aged alloy, the weaker texture could be due to the strain scattering from extensive precipitate fragmentation and dissolution during ECAP.
机译:在本文中,已报道了在通过通道A等通道角挤压(ECAP)期间,初始显微组织对2014铝合金组织演变的影响。选择了三种热处理条件以产生初始的微观结构,即(i)重结晶退火(按原样),(ii)在768 K下固溶处理1 h和(iii)固溶处理(768 K固溶1 h)加上在468 K下老化5小时。使用取向分布函数(ODF)方法进行纹理分析。对于三个样品,ECAP处理后的织构强度依次不同,即固溶>固溶加老化条件>接收。除了这三种材料的一些较弱的成分外,主要的纹理成分是A_E /ā_E和B _E / B?_E。在固溶条件下,强烈的织构演变归因于由于溶质含量较高而导致的基体较高的应变硬化。对于原样以及固溶和时效合金,较弱的织构可能是由于ECAP期间大量沉淀物碎裂和溶解引起的应变散射。

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