首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Residual stress distribution in a Ti-6Al-4V T-joint weld measured using synchrotron X-ray diffraction
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Residual stress distribution in a Ti-6Al-4V T-joint weld measured using synchrotron X-ray diffraction

机译:使用同步加速器X射线衍射测量的Ti-6Al-4V T型接头焊缝中的残余应力分布

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摘要

To improve the manufacturing quality of welded structures, to prevent failures at weld joints and to predict their lifetime, measurements of the residual stresses generated by welding in the structures are extremely useful. The residual stresses may reduce the component life due to phenomena that occur at low applied stresses such as brittle fracture, fatigue and stress corrosion cracking. Welded thin Ti-6Al-4V panel components are commonly found in aero-engine assemblies and the weld integrity and reliability are critical. In this work, the residual stress distributions in a welded thin Ti-6Al-4V T-joint were measured by the newly developed SScanSS program with synchrotron X-ray diffraction technique. The measurement performed in this study, which included a large number of measurement points, has mapped a complete stress field in a thin sheet T-joint weld. It has not only provided improved understanding of residual stress in such a joint but also filled the missing link between the residual stress obtained by numerical modelling and their validation. The results have shown that the longitudinal stresses play the most important role in the residual stress distribution over the flange and high tensile stresses appear in the region near the weld zone. The measured results were compared with the numerically predicted results and these showed good agreement.
机译:为了提高焊接结构的制造质量,防止焊接接头出现故障并预测其使用寿命,测量结构中焊接产生的残余应力非常有用。由于在低外加应力下发生的现象(例如脆性断裂,疲劳和应力腐蚀开裂),残余应力可能会缩短组件寿命。焊接薄的Ti-6Al-4V面板组件通常在航空发动机组件中发现,并且焊接的完整性和可靠性至关重要。在这项工作中,采用同步加速器X射线衍射技术通过新开发的SScanSS程序测量了焊接的薄Ti-6Al-4V T型接头中的残余应力分布。在这项研究中进行的测量(包括大量测量点)已将完整的应力场映射到了薄板T型接头焊缝中。它不仅提供了对这种接头中残余应力的更好理解,而且填补了通过数值模型获得的残余应力与其验证之间的缺失联系。结果表明,纵向应力在法兰上的残余应力分布中起着最重要的作用,在焊接区附近的区域中出现了高拉应力。将测量结果与数值预测结果进行了比较,它们显示出良好的一致性。

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