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An experimental study on joining of severe plastic deformed aluminium materials with friction welding method

机译:摩擦焊接法焊接重塑性变形铝材的实验研究

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摘要

In this study, 5083 aluminium alloys, which were exposed to severe plastic deformation, were joined with friction welding method and the variation in mechanical properties of the joints was experimentally investigated. Severe plastic deformation methods can be classified as equal channel angular pressing (ECAP) (in other words, equal cross section lateral extrusion - ECSLE) and cyclic extrusion-compression. Aluminium alloy as test material 5083 and square cross-sectional equal channel angular pressing die for severe plastic deformation were used in the study. Firstly 5083 alloys, as purchased, were joined with friction welding method. The optimum parameters for friction time, upset time, friction pressure and upset pressure, which are necessary for welding, were obtained. Afterwards, 5083 aluminium materials as purchased were prepared as square cross-section and then 1-pass severe plastic deformation was applied to specimen by equal channel angular pressing die. The obtained parts as square form were prepared as cylindrical form by machining and then the parts were joined by continuous drive friction welding equipment that was designed and produced in laboratory conditions before. Later, the tensile strengths of the parts, obtained at optimum conditions, were compared with those of the joined parts as purchased form. Then, hardness variations and microstructures of joints were examined. Finally, the obtained results were commented on.
机译:在这项研究中,将5083铝合金承受了严重的塑性变形,并采用摩擦焊接法进行了连接,并通过实验研究了接头机械性能的变化。严重的塑性变形方法可分类为等通道角挤压(ECAP)(换句话说,等截面横向挤压-ECSLE)和循环挤压-压缩。研究中使用铝合金作为测试材料5083和用于严重塑性变形的方形截面等通道角挤压模具。首先,将购买的5083合金通过摩擦焊接法连接起来。获得了焊接所需的最佳摩擦时间,变形时间,摩擦压力和变形压力参数。之后,将购买的5083种铝材料制成方形截面,然后通过等通道角压模对样品进行1次剧烈塑性变形。通过机械加工将获得的方形零件制成圆柱状,然后通过之前在实验室条件下设计和生产的连续驱动摩擦焊接设备将零件连接起来。随后,将在最佳条件下获得的零件的拉伸强度与以购买形式连接的零件的拉伸强度进行比较。然后,检查接头的硬度变化和微观结构。最后,对获得的结果进行评论。

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