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Stress relaxation due to ultrasonic impact treatment on multi-pass welds

机译:由于对多道次焊缝进行超声波冲击处理,应力松弛

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摘要

Ultrasonic impact treatment (UIT) is a relatively novel technique applied to the toe of welded joints to improve the fatigue life by changing the weld geometry and the residual stress state. In this study, the stress relaxation due to ultrasonic impact treatment is investigated on a six pass welded high strength quenched and tempered steel section. Stress measurements in two orthogonal directions were conducted by energy dispersive synchrotron X-ray diffraction. Results show that the application of only ultrasound to a welded component re-distributes the residual stresses more uniformly, while mechanical impacts in combination with ultrasound is an effective way to release the residual stresses. After welding, diffraction peak broadening due to the lattice distortion, characterised by the full width at half maximum (FWHM), is observed in the region of the weld toes. Ultrasonic impact treatment reduces the FWHM at these locations.
机译:超声波冲击处理(UIT)是一种相对新颖的技术,应用于焊接接头的趾部,可通过更改焊接几何形状和残余应力状态来延长疲劳寿命。在这项研究中,对六道次焊接的高强度调质钢截面进行了超声冲击处理引起的应力松弛研究。通过能量色散同步加速器X射线衍射在两个正交方向上进行应力测量。结果表明,仅在焊接部件上施加超声波,可以更均匀地重新分布残余应力,而机械冲击与超声相结合是释放残余应力的有效方法。焊接后,在焊趾区域观察到由于晶格畸变导致的衍射峰展宽,其特征在于半峰全宽(FWHM)。超声波冲击处理可降低这些位置的FWHM。

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