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Controlling the Cut in Contour Residual Stress Measurements of Electron Beam Welded Ti-6Al-4V Alloy Plates

机译:电子束焊接Ti-6Al-4V合金板轮廓残余应力测量的控制

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摘要

The multiple cut contour method is applied to map longitudinal and transverse components of residual stress in two nominally identical 50 mm thick electron beam welded Ti-6Al-4V alloy plates, one in the as-welded condition and a second welded plate in a post weld heat treated (PWHT) condition. The accuracy and resolution of the contour method results are directly linked to the quality of the electro-discharge machining cut made. Two symmetric surface contour artefacts associated with cutting titanium, surface bowing and a flared edge, are identified and their influence on residual stresses calculated by the contour method is quantified. The former artefact is controlled by undertaking a series of cutting trials with reduced power settings to find optimal cutting conditions. The latter is mitigated by attaching 5 mm thick sacrificial plates to the wire exit side of the test specimen. The low level of noise in the measured stress profiles for both the as-welded and PWHT plates demonstrates the importance of controlling the quality of a contour cut and the added value of undertaking cutting trials.
机译:应用多重切割轮廓法绘制两个名义上相同的50毫米厚电子束焊接的Ti-6Al-4V合金板的残余应力的纵向和横向分量,其中一个处于焊接状态,另一个处于后焊接状态热处理(PWHT)条件。轮廓法结果的精度和分辨率与所进行的电火花加工切削质量直接相关。确定了与切削钛有关的两个对称的表面轮廓假象,表面弯曲和张开的边缘,并量化了它们对通过轮廓法计算的残余应力的影响。通过进行一系列切割试验以降低功率设置来找到最佳切割条件,从而控制了前人工制品。通过将5 mm厚的牺牲板连接到试样的导线出口侧,可以减轻后者的负担。焊接后的和PWHT板的测量应力分布图中的低噪音表明了控制轮廓切割质量和进行切割试验的附加值的重要性。

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