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首页> 外文期刊>Journal of Laser Micro/Nanoengineering >Micro-welding of High Thermal Conductive Material Aluminum-Graphite Composite by Pulsed Nd:YAG Laser
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Micro-welding of High Thermal Conductive Material Aluminum-Graphite Composite by Pulsed Nd:YAG Laser

机译:Nd:YAG脉冲激光微焊接高导热材料铝-石墨复合材料

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The development of advanced materials with superior high thermal properties and high specific strength has led to new metal matrix composites (MMCs) as a great attractive material in electrical and electronic industries. In order to manufacture more practical component from MMCs, a tech-nique for joining MMCs to other similar composites or monolithic materials is strongly required. Therefore, the reliable and economic joining technique is investigated to increase the applications of MMCs. In this study, the overlap welding of pure aluminum and super thermal conductive (STC) aluminum-graphite composite was experimentally and numerically investigated by using a pulsed Nd:YAG laser. In order to discuss the welding of dissimilar materials with different thermophysical properties, the temporal change of heat input was controlled by arranging the laser pulse waveform. The porosities and bumps were observed as the remarkable weld defects in the welding process without a pulse control. On the other hand, the weld bead was largely free of defects, and a size of bump was relatively small with the appropriate controlled pulse waveform. It was clarified that the laser welded joint of an aluminum and a STC aluminum-graphite composite could be successfully achieved with the better weld penetration stability by the appropriate controlled pulse waveform.
机译:具有卓越的高热性能和高比强度的先进材料的发展已导致新型金属基复合材料(MMC)在电气和电子行业中成为极具吸引力的材料。为了从MMC制造更实用的组件,强烈需要将MMC连接到其他类似复合材料或整体材料的技术。因此,研究了可靠且经济的连接技术以增加MMC的应用。在这项研究中,使用脉冲Nd:YAG激光器对纯铝和超导热(STC)铝-石墨复合材料的堆焊进行了实验和数值研究。为了讨论具有不同热物理性质的异种材料的焊接,通过布置激光脉冲波形来控制热输入的时间变化。在没有脉冲控制的情况下,观察到气孔和隆起是明显的焊接缺陷。另一方面,在适当的控制脉冲波形下,焊道基本上没有缺陷,并且焊点的尺寸相对较小。阐明了通过适当的控制脉冲波形,可以以更好的焊缝穿透稳定性成功地实现铝和STC铝-石墨复合材料的激光焊接接头。

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