The Effect of Rotational Tool Speed on Dissimilar Joint Aluminum-Copper Plate Friction Stir Welded Joint

Aris Widyo Nugroho, Khukuh Aulia Rahman, Muhammad Budi Nur Rahman
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Abstract

The study investigates the impact of rotational tool speed on the mechanical properties and microstructure of aluminum-cooper friction stir-welded joints. It found that higher rotational speed leads to increased grain size, possibly due to increased heat production. Higher hardness values in the stir zone result from uniform dispersion of smaller copper particles. The study found that 540 rpm yields the maximum hardness value in the stir zone, measuring 67 VHN. However, higher speed results in defects like voids, cracks, and intermetallic compounds (IMCs), which are linked to the formation of IMCs at elevated temperatures. The optimal welding conditions at 550 rpm balance grain refinement, hardness enhancement, and defect mitigation, contributing to the understanding of welding process parameters.
旋转工具速度对铝铜板摩擦焊异种接头的影响
该研究调查了旋转工具速度对铝-铜合金摩擦搅拌焊接接头的机械性能和微观结构的影响。研究发现,转速越高,晶粒尺寸越大,这可能是由于发热量增加所致。由于较小的铜颗粒均匀分散,搅拌区的硬度值较高。研究发现,540 转/分钟的转速可在搅拌区产生最大硬度值,达到 67 VHN。然而,更高的转速会导致空洞、裂缝和金属间化合物(IMC)等缺陷,而这些缺陷与高温下 IMC 的形成有关。550 rpm 转速下的最佳焊接条件兼顾了晶粒细化、硬度提高和缺陷减少,有助于了解焊接工艺参数。
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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