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Formability of Ultrafine-grained AA6016 Sheets processed by Accumulative Roll Bonding

机译:通过累积辊粘合处理超细颗粒AA6016纸张的可成形性

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Aluminium alloy AA6016 was accumulative roll bonded up to eight cycles in order to produce an ultrafine-grained microstructure. The formability of these sheets was investigated by means of bending tests. Furthermore the influence of a local laser heat treatment at the bending edge is observed. The strength of the UFG samples is increased by a factor of around two compared to the conventionally grained T4 condition which also results in up to 50 % higher punch forces needed for bending of ARB processed samples. An anisotropic bending behaviour is observed. By applying a tailored laser heat treatment along the bending edge prior to the bending tests a local recrystallization and recovery at the deformation zone of the samples is achieved. Thus, ductility is increased locally whereby bending to an angle of 80° is possible with lower forming forces compared to the non-heat treated specimens. The results are compared to previous studies on mechanical properties and formability investigations of ARB processed AA6016.
机译:铝合金AA6016累积辊粘合至八个循环,以产生超细颗粒的微观结构。通过弯曲试验研究了这些片材的可成形性。此外,观察到在弯曲边缘处的局部激光热处理的影响。与常规粒度的T4条件相比,UFG样品的强度增加了约两个倍数,这也导致弯曲ARB加工样品的弯曲所需的高达50%的冲击力。观察到各向异性弯曲行为。通过在弯曲试验之前沿弯曲边缘施加定制的激光热处理,实现了样品的变形区的局部重结晶和恢复。因此,与非热处理的样品相比,局部局部局部增加,由此弯曲成80°的角度,与较低的成形力相比。将结果与先前的机械性能研究进行比较,以及ARB加工AA6016的成型性研究。

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