Neutron diffraction studies of laser welding residual stresses

P. Petrov, G. Bokuchava, I. Papushkin, G. Genchev, N. Doynov, V. Michailov, M. Ormanova
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引用次数: 1

Abstract

The residual stress and microstrain distribution induced by laser beam welding of the low-alloyed C45 steel plate was investigated using high-resolution time-of-flight (TOF) neutron diffraction. The neutron diffraction experiments were performed on FSD diffractometer at the IBR-2 pulsed reactor in FLNP JINR (Dubna, Russia). The experiments have shown that the residual stress distribution across weld seam exhibit typical alternating sign character as it was observed in our previous studies. The residual stress level is varying in the range from -60 MPa to 450 MPa. At the same time, the microstrain level exhibits sharp maxima at weld seam position with maximal level of ∼4.8·10-3. The obtained experimental results are in good agreement with FEM calculations according to the STAAZ model. The provided numerical model validated with measured data enables to study the influence of different conditions and process parameters on the development of residual welding stresses.
激光焊接残余应力的中子衍射研究
采用高分辨率飞行时间(TOF)中子衍射研究了低合金C45钢板激光焊接后的残余应力和微应变分布。中子衍射实验在俄罗斯杜布纳FLNP JINR的IBR-2脉冲堆上用FSD衍射仪进行。实验结果表明,焊缝残余应力分布呈现出典型的交替符号特征。残余应力水平在- 60mpa ~ 450mpa之间变化。同时,焊缝位置的微应变水平达到最大值,最大值为~ 4.8·10-3。实验结果与STAAZ模型的有限元计算结果吻合较好。所提供的数值模型经过实测数据的验证,能够研究不同条件和工艺参数对焊接残余应力发展的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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