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The effect of heating rate on the softening behaviour of a deformed Al-Mn alloy with strong and weak concurrent precipitation

机译:加热速率对同时强析出和弱析出的变形Al-Mn合金软化行为的影响

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The interaction between recrystallization and concurrent precipitation is strongly dependent on the heating rate during annealing. In this study, the effects of heating rate on the grain structure, recrystallization texture and resulting mechanical properties upon annealing of a cold-rolled Al-Mn alloy under strong and weak concurrent precipitation conditions, resulting from different homogenization procedures, were investigated. It is clearly shown that increasing the heating rate leads to finer grain size, less elongated grain structure and reduced flow stress for both cases. In the case of strong concurrent precipitation, a sharp P-texture component is obtained after reaystallization, with its intensity decreasing with increasing heating rate. On the other hand, Cube is the major texture component when concurrent precipitation is weak, and its strength increases with increasing heating rate. The different effects brought about by the heating rate on the recrystallization texture of the two cases, which has not been addressed in the literature so far, are further discussed in view of the differences in precipitation behaviour. (C) 2015 Elsevier Inc. All rights reserved.
机译:重结晶和同时析出之间的相互作用在很大程度上取决于退火过程中的加热速率。在这项研究中,研究了加热速率对冷轧Al-Mn合金在强和弱同时析出条件下退火的晶粒结构,再结晶织构以及所产生的机械性能的影响,这些条件是由于均质程序不同而引起的。清楚地表明,在两种情况下,提高加热速率均会导致晶粒更细,晶粒结构更不细长以及流动应力降低。在强同时沉淀的情况下,重新复水后会获得尖锐的P纹理成分,其强度随加热速率的增加而降低。另一方面,当同时降水较少时,立方体是主要的纹理成分,并且其强度随着加热速率的增加而增加。鉴于沉淀行为的差异,进一步讨论了加热速率对两种情况的重结晶织构的不同影响,到目前为止,尚未在文献中解决。 (C)2015 Elsevier Inc.保留所有权利。

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