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Surface Smoothing of A5083 Aluminum Alloy Plate by Friction Stir Forming

机译:A5083铝合金板摩擦搅拌成型表面平滑

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This paper provides a framework for the transcription of the surface of a mirror-finished die onto a metal plate by friction stir forming (FSF). In FSF, a material is put on a die, then friction stirring was conducted on its back surface for the transcription of the profile of the die onto the material. In this paper, a mirror-polished die of JIS SUS304 stainless steel with surface roughness Sz 0.014 mm and a probe-less friction-stirring tool in 18 mm shoulder diameter were employed for the experiment. A5083P-O aluminum plates, 3 mm thick, were utilized as base metals for the transcription. The authors varied tool spindle speed and tool feed rate to evaluate the forming results. Consequently, a mirror-finished surface under the friction-stirring tool was successfully transferred from the die to the aluminum alloy plate. The roughness of the base metal before processing was Sz 0.022 mm and that of the processed metal was Sz 0.012-0.016 mm. Higher spindle speed and faster feed rate resulted in a smoother surface;;it is thought that high spindle speed and faster feed rate should be effective for higher contact pressure between a die and a material.
机译:本文通过摩擦搅拌成型(FSF)提供了一种用于通过摩擦搅拌(FSF)的金属板上的镜面表面转录的框架。在FSF中,将材料放在模具上,然后在其后表面上进行摩擦搅拌,以将模头的轮廓转录到材料上。本文采用了具有表面粗糙度SZ 0.014mm的JIS SUS304不锈钢的镜面抛光模具,并采用了18mm肩部直径的探针较小的摩擦搅拌工具。 A5083P-O铝板3mm厚,用作转录的碱金属。作者改变了工具主轴速度和刀具进料速率,以评估成形结果。因此,在摩擦搅拌工具下的镜面成品表面从模具成功转移到铝合金板上。在加工前的基础金属的粗糙度为SZ 0.022mm,加工金属的SZ 0.012-0.016mm。较高的主轴速度和更快的进料速率导致更平滑的表面;;有人认为高主轴速度和更快的进料速率应该有效地对模具和材料之间的接触压力有效。

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