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首页> 外文期刊>High temperature materials and processes >Effect of Plate Thickness on Tensile Property of Ti–6Al–4V Alloy Joint Friction Stir Welded Below β-Transus Temperature
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Effect of Plate Thickness on Tensile Property of Ti–6Al–4V Alloy Joint Friction Stir Welded Below β-Transus Temperature

机译:β-转变温度以下平板厚度对Ti-6Al-4V合金接头摩擦搅拌搅拌拉伸性能的影响

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摘要

Defect-free joint of Ti–6Al–4V alloy was successfully friction stir welded below β-transus temperature and then tensile tests were performed. Microstructure, macrostructure, tensile properties and fracture position are mainly discussed in order to investigate how surface indentation and plate thickness influence the tensile property. Weld zone (WZ) attained below β-transus temperature that owns better tensile strength limit than base metal (BM). During the tensile test, the elongation is decided by whether BM yields. Compared with friction stir welding joint using 2.5?mm thick plate, it is very difficult for joint using 2?mm thick plates to get bigger elongation due to surface indentation. Due to the higher tensile property of the WZ, the joint without surface indentation fractures at BM, reaching the 58.46?% elongation of BM.
机译:Ti–6Al–4V合金的无缺陷接头在β-转变温度以下成功进行了摩擦搅拌焊接,然后进行了拉伸试验。为了研究表面压痕和板厚如何影响拉伸性能,主要讨论了微观结构,宏观结构,拉伸性能和断裂位置。达到的β-转变温度以下的焊接区(WZ)具有比母材(BM)更好的拉伸强度极限。在拉伸试验期间,伸长率由BM是否屈服来决定。与使用2.5?mm厚板的摩擦搅拌焊接接头相比,使用2?mm厚板的接头由于表面压痕很难获得更大的伸长率。由于WZ的较高拉伸性能,在BM处无表面凹痕的接头断裂,达到BM的58.46%伸长率。

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