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Dynamic and static softening behaviors of aluminum alloys during multistage hot deformation

机译:铝合金在多阶段热变形过程中的动态和静态软化行为

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The dynamic and static softening behaviors during multistage hot deformation of aluminum alloys (1050, 5182 and 7075 alloys) have been studied by isothermal interrupted hot compression tests in 300 and 400℃ at a strain rate of 0.5 s{sup}(-1) on Gleeble 1500. The interrupted deformations were conducted with delay times varying between 30 and 120 s after achieving a strain of approximately 0.4 in the first stage. It was indicated that the considerable dynamic softening and exceptional softening associated with a structure softening exist in both 1050 and 7075 alloy deformation at 400℃, leading to an initial flow stress value at the second deformation lower than that at the first deformation. For all alloys studied, the static softening increases with increasing deformation temperature and holding temperature and delay times, but the increment for 5182 alloy is much higher than that for both 1050 and 7075 alloys in the same hot deformation conditions.
机译:通过等温间断热压缩试验,研究了铝合金(1050、5182和7075合金)在300和400℃,应变速率为0.5 s {sup}(-1)时的动态和静态软化行为。 Gleeble1500。在第一阶段达到约0.4的应变后,以30到120 s之间的延迟时间进行中断变形。结果表明,在400℃下1050和7075合金变形中都存在相当大的动态软化和与组织软化有关的异常软化,导致第二变形的初始流动应力值低于第一变形。对于所有研究的合金,静态软化都随变形温度,保持温度和延迟时间的增加而增加,但是在相同的热变形条件下5182合金的增量远高于1050和7075合金。

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