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Microstructure and hemming properties of AA6016 aluminum alloy sheets

机译:AA6016铝合金薄板的组织和包边性能

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The use of Al-Mg-Si-(Cu) heat treatable 6xxx alloys is steadily increasing in the automotive industry. The possibility of weight reduction of the cars in combination with the good formability and high in-service dent resistance of these alloys, make them a favorable material for body panel applications. One of the most common, environment-friendly and easy to perform processes used to join aluminum sheets, is the hemming joining operation. This operation heavily relies on the bendability of the sheets, because they are bent to an angle of 180° over of a radius equal to their thickness. Tearing or cracking of the outer bent surface are often very common. In this study we attempt to understand the relations between the microstructural features of the sheets and their hemming behavior. The hemming experiments are performed in laboratory conditions and the results are discussed together with the data obtained from crystallographic, microstructural and textural investigations. Relations between the hemming appearance, chemical composition, natural aging time and dispersoid's density are found and discussed.
机译:在汽车工业中,Al-Mg-Si-(Cu)热处理的6xxx合金的使用正在稳步增长。降低汽车重量的可能性,再加上这些合金的良好成形性和较高的在役抗凹陷性,使其成为车身面板应用的理想材料。包边连接操作是用于连接铝板的最常见,最环保且易于执行的工艺之一。该操作严重依赖于片材的可弯曲性,因为片材在等于其厚度的半径上被弯曲180°角。外部弯曲表面的撕裂或破裂通常很常见。在本研究中,我们试图了解薄板的微观结构特征与其卷边行为之间的关系。折边实验是在实验室条件下进行的,并讨论了结果以及从晶体学,微观结构和组织学研究中获得的数据。发现并讨论了包边外观,化学组成,自然老化时间和弥散体密度之间的关系。

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