Internal Strain Distribution of Laser Lap Joints in Steel under Loading Studied by High-Energy Synchrotron Radiation X-rays

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION Quantum Beam Science Pub Date : 2021-06-02 DOI:10.3390/QUBS5020017
T. Shobu, A. Shiro, Fumiaki Kono, T. Muramatsu, Tomonori Yamada, M. Naganuma, T. Ozawa
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引用次数: 1

Abstract

The automotive industries employ laser beam welding because it realizes a high energy density without generating irradiation marks on the opposite side of the irradiated surface. Typical measurement techniques such as strain gauges and tube X-rays cannot assess the localized strain at a joint weld. Herein high-energy synchrotron radiation X-ray diffraction was used to study the internal strain distribution of laser lap joint PNC-FMS steels (2- and 5-mm thick) under loading at a high temperature. As the tensile load increased, the local tensile and compressive strains increased near the interface. These changes agreed well with the finite element analysis results. However, it is essential to complementarily utilize internal defect observations by X-ray transmission imaging because the results depend on the defects generated by laser processing.
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高能同步辐射X射线研究激光搭接接头在载荷作用下的内部应变分布
汽车工业采用激光束焊接,因为它实现了高能量密度,而不会在被照射表面的相对侧产生照射痕迹。应变仪和射线管等典型测量技术无法评估接头焊缝处的局部应变。本文采用高能同步辐射X射线衍射方法研究了PNC-FMS钢(2和5 mm厚)激光搭接接头在高温载荷作用下的内部应变分布。随着拉伸载荷的增加,界面附近的局部拉伸应变和压缩应变增加。这些变化与有限元分析结果一致。然而,通过X射线透射成像互补地利用内部缺陷观测是至关重要的,因为结果取决于激光加工产生的缺陷。
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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