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Effect of Hydrogen Addition on the Diffusion Bonding Behavior of Titanium Alloys

机译:氢添加对钛合金扩散键合行为的影响

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Hydrogen as a temporary alloying element can be used as a powerful tool in optimizing microstructure and mechanical properties of titanium alloys. In this study, the effects of hydrogen addition on the diffusion bonding behaviors of Ti-55 titanium alloy and Ti_2AlNb/TC4 titanium alloys were studied. The DSC/DTA results show hydrogen can escape from titanium alloys under the conditions of high temperature and vacuum. The diffusion bonding ratios and joint strength of Ti-55 titanium alloy are remarkably improved by hydrogenation at relatively low bonded temperature (700 °C). In addition, hydrogen addition can prominently increase the bonding interface strengths of Ti_2AlNb/TC4 titanium alloys through rapid heating. The residual hydrogen content is a key factor for improving the diffusion bonding properties by hydrogenation. Both low-temperature bonding and rapid heating aim to hinder the hydrogen desorption during the diffusion bonding process.
机译:氢作为临时合金元素可用作优化钛合金微观结构和机械性能的强大工具。在本研究中,研究了氢添加对Ti-55钛合金和Ti_2AlNB / TC4钛合金的扩散键合行为的影响。 DSC / DTA结果显示氢气可以在高温和真空条件下从钛合金逸出。通过在相对低的键合温度(700℃)下氢化,Ti-55钛合金的扩散键合比和关节强度显着提高。此外,通过快速加热,氢添加可以突出地增加Ti_2AlNB / TC4钛合金的粘合界面强度。残余氢含量是通过氢化改善扩散粘合性能的关键因素。低温粘合和快速加热的旨在阻碍扩散键合过程中的氢解吸。

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