Development Of Dissimilar Micro Friction Stir Welding Copper With Alumniumum Plate

None Hakam Muzakki, None Teguh Prasetyo, None Ahmadi, None Ayub Brahma Kurnianto
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Abstract

Friction welding as joining method has a good joining condition. The results of FSW welding have the advantage that the surface is smoother and flatter than the results of arc welding. Friction rotary welding includes several stages, namely material welding and microstructural analysis. In this study the material welding was used copper and aluminum alloy 1100 with sizes 60mm, 50mm, 0.5mm and macro structural analysis using a digital microscope. Experiments were carried out using lap joints with dimensions of 100mm, 50mm, 0.5mm with variations in loading parameters of 30kgf, 40kgf, 50kgf and variations in shoulder diameters of 4mm, 6mm, 8mm. In the experiment, the larger the diameter of the shoulder, the greater the loading required to connect the two materials, but if the loading is too large, it can cause defects in the welding results. The welding results at the welding pressure parameter of 40kgf with a shoulder diameter of 8mm show that welding with these parameters is capable of performing welding because the areas of the welding results are evenly connected and there are no holes (hooks) in the welding results. The results of welding at a welding pressure parameter of 50kgf with a shoulder diameter of 8mm show that the results of joining the copper and aluminum are mixed evenly but damage the surface of the copper. The macro structural results show that the welding pressure affects the shoulder diameter, if the welding pressure is too large and the shoulder diameter is too small it will only damage the copper and aluminum material because it only has a thickness of 0.5 mm, and vice versa if the welding pressure is too small and the shoulder diameter is too large, the two materials cannot be connected. In this study, the best results were obtained with a shoulder diameter of 4mm and a pressure of 40kgf because there were no defects or holes in the welding results.
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不同微摩擦搅拌焊铜与铝板的研制
摩擦焊作为连接方式具有良好的连接条件。与电弧焊相比,FSW焊接的结果具有表面光滑、平整的优点。摩擦旋转焊包括材料焊接和显微组织分析两个阶段。本研究材料焊接采用铜铝合金1100,尺寸分别为60mm、50mm、0.5mm,采用数码显微镜进行宏观结构分析。实验采用尺寸为100mm、50mm、0.5mm的搭接接头,加载参数分别为30kgf、40kgf、50kgf,肩径分别为4mm、6mm、8mm。在实验中,肩部直径越大,连接两种材料所需的载荷越大,但如果载荷过大,则会导致焊接结果出现缺陷。焊接压力参数为40kgf,焊肩直径为8mm的焊接结果表明,由于焊接结果区域连接均匀,焊接结果中没有孔(钩),因此使用这些参数进行焊接是能够进行焊接的。焊接压力参数为50kgf、焊肩直径为8mm时的焊接结果表明,铜铝混合均匀,但铜表面有损伤。宏观结构结果表明,焊接压力影响肩直径,如果焊接压力太大,肩直径太小,只会损坏铜铝材料,因为它只有0.5 mm的厚度,反之,如果焊接压力太小,肩直径太大,两种材料无法连接。在本研究中,由于焊接结果中没有缺陷和孔洞,所以在肩部直径为4mm,压力为40kgf时,焊接效果最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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