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Effect of heat treatment on fracture during bending in AA6016 aluminium alloy sheets

机译:热处理对AA6016铝合金薄板弯曲时断裂的影响

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The bending properties of high strength precipitation-hardening AA6016-type Al alloy thin sheets in pre-aged T4P temper state were studied in this work. Microstructural features like grain boundary particles distribution and volume fraction of the matrix strengthening phases were considered as factors controlling the mechanical properties and the fracture of this grade. Remarkable decrease in ductility, accompanied by severe deterioration of bendability occurred when coarse precipitates were found into the grain boundaries. The in-situ fracture sequence investigations as well as the post-failure surfaces observations indicated that grain boundary ductile fracture mechanisms were involved in the propagation of the cracks during bending. Heat treatment simulations were carried out and the results showed that the precise control of the technological parameters during production of these sheets is the key factor responsible for obtaining an appropriate combination of strength and bendability. Only by providing both, homogeneous distribution of the matrix strengthening phases and a favourable grain boundary structure, the severe and often contradictory requirements for the functional properties of these alloys can be successfully satisfied.
机译:本文研究了高强度沉淀硬化AA6016-型铝合金薄板在时效T4P回火状态下的弯曲性能。诸如晶界颗粒分布和基体强化相的体积分数的微观结构特征被认为是控制该等级的机械性能和断裂的因素。当在晶界发现粗大的沉淀物时,延展性显着降低,并伴随着弯曲性的严重恶化。现场断裂序列研究以及断裂后的表面观察表明,晶界延性断裂机制参与了弯曲过程中裂纹的扩展。进行了热处理模拟,结果表明,在生产这些板材时对工艺参数的精确控制是获得强度和可弯曲性适当组合的关键因素。仅通过提供基体强化相的均匀分布和良好的晶界结构,才能成功满足这些合金功能特性的严格要求,而且常常是相互矛盾的。

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