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Ultrasonic-Assisted Semi-Solid Forming Method and Microstructure Evolution of Aluminum/Copper Brazed Joints

机译:超声波辅助半固体成型方法和铝/铜钎焊接的微观结构演化

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摘要

Aluminum/Copper dissimilar metal connection devices have been widely used in equipment manufacturing. Ultrasonic vibration assisted semi-solid brazing technology is beneficial to improve brazing quality by using the good flow ability and strong deformation resistance of brazing alloy when it is in a semi-solid state. In this study, a new ultrasound-assisted high-frequency induction brazing method was used to braze aluminum and copper dissimilar metals under non-vacuum conditions with non-prefabrication of brazing filler metal. In a short time, uniform semi-solid brazed joint was obtained. Detailed investigations on the effects of aluminum-substrate side (Abbreviated as Al side) heat dissipation rate and ultrasonic vibration duration on the microstructure evolution and mechanical properties of semisolid weld were conducted. The results show that the welding seam obtained by the modification method increases the microstructure uniformity of brazing joint.
机译:铝制/铜不同的金属连接装置已广泛用于设备制造。超声波振动辅助半固体钎焊技术有利于通过使用良好的流动能力和钎焊合金处于半固态时改善钎焊质量。在该研究中,使用新的超声辅助高频感应钎焊法在非真空条件下用非预制填充金属的非真空条件来钎焊铝和铜异种金属。在短时间内,获得均匀的半固体钎焊接头。进行了对铝 - 基板侧(缩写为Al侧)散热速率和超声振动持续时间对半固体焊缝的微观结构演化和机械性能的详细研究。结果表明,通过改性方法获得的焊缝增加了钎焊接头的微观结构均匀性。

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