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Dissimilar laser welding of NiTi shape memory alloy and copper

机译:NiTi形状记忆合金和铜的异种激光焊接

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This work is the first investigation of joining NiTi and copper. The successful Nd:YAG laser welding of NiTi to copper achieved in this work enables new methods of connecting shape memory alloys to electro-mechanical systems. Joints made with an optimum peak power of 2.2 kW accommodated pseudoelastic deformation of NiTi, proving their use with high strength actuators. Fracture occurred through the cross section of these defect-free joints. A lower peak power of 1.8 kW created weak joints with limited weld penetration of the copper sheet. This lack of bonding resulted in fracture occurring across the small disconnected joint areas. Joints made with a higher peak power of 2.6 kW had significant cracking in the fusion zone. Two regions of distinct Cu composition were found in the fusion zone, and cracking occurred at the interface between these regions because of their different physical properties. Failure initiated at this cracking and propagated through the fusion zone that had been embrittled by mixing with over 20 at.% Cu.
机译:这项工作是结合镍钛和铜的首次调查。这项工作成功完成了将NiTi与铜进行Nd:YAG激光焊接,从而实现了将形状记忆合金连接到机电系统的新方法。最佳峰值功率为2.2 kW制成的接头可承受NiTi的拟弹性变形,证明可与高强度执行器一起使用。这些无缺陷接头的横截面发生断裂。较低的1.8 kW峰值功率会产生弱焊点,从而限制了铜板的焊接熔深。这种粘结的缺乏导致在小的不连续的接合区域上发生断裂。峰值功率为2.6 kW更高的接头在熔合区明显开裂。在熔合区发现了两个铜成分不同的区域,由于这些区域的物理性质不同,在这些区域之间的界面处发生了开裂。破坏在此开裂处开始,并通过与20 at。%的Cu混合而脆化的熔合区扩展。

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