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Softening behaviour of cold rolled continuous cast and ingot cast aluminum alloy AA5754

机译:冷轧连续铸造和铸锭铝合金AA5754的软化行为

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摘要

The recovery and recrystallization behaviour of ingot cast (IC) and continuous cast (CC) AA5754 cold rolled material has been compared. Included in the comparison was the effect of a homogenization treatment as well as hot rolling prior to cold rolling for the CC material. Without the homogenization process, the softening kinetics between the CC and IC material were significantly different with the CC material exhibiting considerably slower softening kinetics. However, when the CC material was homogenized prior to cold rolling, the softening kinetics were similar to that of ingot cast (IC) material. The differences in the softening behaviour between the CC material without a homogenization treatment and IC material can be related to solute drag and concurrent precipitation which occurred during annealing of the CC material resulting in the retarded growth of recrystallized grains. This was supported by measuring the evolution in the resistivity and microstructure during the annealing heat treatment. Differences in the recrystallized texture between the CC and IC material were also made during this investigation and the results indicated that although overall the textures were weak, the IC material consistently had a higher cube texture volume fraction.
机译:比较了铸锭(IC)和连铸(CC)AA5754冷轧材料的恢复和再结晶行为。比较中包括CC材料均质化处理以及冷轧前的热轧的效果。如果不进行均质化处理,CC和IC材料之间的软化动力学会显着不同,而CC材料的软化动力学会大大降低。但是,当CC材料在冷轧之前均质化时,其软化动力学与铸锭(IC)材料相似。未经均化处理的CC材料与IC材料之间的软化行为差异可能与CC材料退火期间发生的溶质阻力和同时发生的析出有关,从而导致重结晶晶粒的生长受阻。这是通过测量退火热处理过程中电阻率和微观结构的变化来支持的。在此研究期间,CC和IC材料之间的重结晶织构也有所不同,结果表明,尽管总体上织构较弱,但IC材料始终具有较高的立方织构体积分数。

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