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Reduction of environmentally induced cracking of laser-welded shape memory NiTi wires via post-weld heat-treatment

机译:通过焊后热处理减少环境焊接引起的形状记忆镍钛合金丝开裂

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摘要

In this study, the environmentally induced cracking behavior of the NiTi weldment with and without post-weld heat-treatment (PWHT) in Hanks' solution at 37.5 ℃ at OCP was studied by tensile and cyclic slow-strain-rate tests (SSRT), and compared with those tested in oil (an inert environment). Our previous results in the tensile and cyclic SSRT showed that the weldment without PWHT showed high susceptibility to the hydrogen cracking, as evidenced by the degradation of tensile and super-elastic properties when testing in Hanks' solution. The weldment after PWHT was much less susceptible to hydrogen attack in Hanks' solution as no obvious degradation in the tensile and super-elastic properties was observed, and only a very small amount of micro-cracks were found in the fracture surface. The susceptibility to hydrogen cracking of the NiTi weldment could be alleviated by applying PWHT at the optimized temperature of 350 ℃ after laser welding.
机译:在这项研究中,通过拉伸和循环慢应变速率测试(SSRT)研究了在37.5℃的Hanks溶液中有无焊后热处理(PWHT)和无焊后热处理的NiTi焊件的环境诱导开裂行为,并与在油(惰性环境)中测试的油进行比较。我们先前在拉伸和循环SSRT中的结果表明,没有PWHT的焊件对氢裂纹表现出很高的敏感性,当在Hanks溶液中测试时,拉伸性能和超弹性性能下降证明了这一点。 PWHT后的焊件在Hanks溶液中不易受到氢的侵蚀,因为未观察到拉伸和超弹性性能的明显降低,并且在断裂表面仅发现了非常少量的微裂纹。通过在激光焊接后的最佳温度350℃下施加PWHT,可以减轻NiTi焊件对氢裂纹的敏感性。

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