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Neutron diffraction analysis of residual strain/stress distribution in the vicinity of high strength welds

机译:高强度焊缝附近残余应变/应力分布的中子衍射分析

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Residual stresses resulting from non homogeneous heat distribution during welding process belong to most significant factor influencing behavior of welded structures. These stresses are responsible for defect occurrence during welding and they are also responsible for crack initiation and propagation at the either static or dynamic load. The significant effect of weld metal chemical composition as well as the effect of fatigue load and local plastic deformation on residual stress distribution and fatigue life have been recognized for high strength steels welds. The changes in residual stress distribution have then positive effect on cold cracking behavior and also on fatigue properties of the welds [1-3]. Several experimental methods, both destructive and non-destructive, such as hole drilling method, X-ray diffraction, neutron diffraction and others, have been used to examine residual stress distribution in all three significant orientations in the vicinity of the welds. The present contribution summarizes the results of neutron diffraction measurements of residual stress distribution in the vicinity of single-pass high-strength-steel welds having different chemical composition as well as the influence of fatigue load and local plastic deformation. It has been observed that the chemical composition of the weld metal has a significant influence on the stress distribution around the weld. Similarly, by aplying both cyclic load or pre-stress load on the specimens, stress relaxation was observed even in the region of approximately 40 mm far from the weld toe.
机译:焊接过程中由于热量分布不均匀而产生的残余应力是影响焊接结构行为的最重要因素。这些应力是导致焊接过程中出现缺陷的原因,也是导致静态或动态载荷下裂纹萌生和扩展的原因。对于高强度钢焊缝,已经认识到焊接金属化学成分的显着影响以及疲劳载荷和局部塑性变形对残余应力分布和疲劳寿命的影响。残余应力分布的变化对冷裂纹行为以及焊缝的疲劳性能都有积极影响[1-3]。几种破坏性和非破坏性的实验方法(例如打孔方法,X射线衍射,中子衍射等)已用于检查焊缝附近所有三个重要方向的残余应力分布。本贡献总结了中子衍射测量具有不同化学成分以及疲劳载荷和局部塑性变形影响的单道次高强度钢焊缝附近残余应力分布的结果。已经观察到,焊接金属的化学成分对焊缝周围的应力分布具有显着影响。同样,通过在试件上同时施加周期性载荷或预应力载荷,即使在距焊趾约40 mm的区域中也观察到应力松弛。

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