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Residual stresses in welded structures

机译:焊接结构中的残余应力

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摘要

The nature of residual stresses in welded structures is discussed in terms of their magnitude, directionality, spatial distribution, range and variability. The effects of the following factors on the residual stresses are considered: material properties, material manufacture, structural geometry, fabrication procedure, welding procedure, post-weld treatments and service conditions. Examples are given of residual stress distributions in plate butt welds, circumferential butt welds and weld cladding. These illustrate the different magnitudes and distributions of residual stress that can be found in different joint geometries, and demonstrate the effects of the mechanical, thermal and metallurgical properties of the constituent materials and the sensitivity of residual stresses to pass sequence and to the restraints applied during welding. Further examples for the common case of circumferential butt welds in pipes and pressure vessels are used to illustrate the extent of residual stresses as a function of distance from the weld and the effects of post-weld heat treatment. Measurements or analytical predictions of residual stresses are often subject to significant scatter or variability. This scatter may be due to systematic factors such as variability in measurement location or material properties, or to experimental error in measured data, erroneous assumptions in analytical modelling or unknown factors such as pre-existing residual stresses, inadequately documented welding or fabrication procedures or unrecorded local repairs. Improved prediction and reduction of uncertainty of residual stresses will require better recording of the whole manufacturing and service history of the welded structure and its component materials and better understanding and analysis of the many processes that may affect the residual stresses.
机译:焊接结构中残余应力的性质在其幅度,方向性,空间分布,范围和变异方面讨论。以下因素对残留应力的影响被认为:材料性能,材料制造,结构几何形状,制造程序,焊接程序,焊接后处理和服务条件。给出了板对接焊缝,圆周对接焊缝和焊接包层中的残余应力分布。这些说明了可以在不同的关节几何形状中发现的不同幅度和分布,并证明了组成材料的机械,热和冶金特性的影响以及残余应力通过序列的敏感性和施加的敏感性焊接。用于管道和压力容器中的圆周对接焊缝的常见情况的进一步示例用于说明与焊缝后焊缝的距离的残余应力的程度和焊接后热处理的效果。残留应力的测量或分析预测通常受到显着的散射或可变性。这种散射可能是由于系统因素,例如测量位置或材料特性的可变性,或测量数据中的实验误差,分析建模或未知因素中的错误假设,例如预先存在的残余应力,焊接或制造程序不足或不记录或未记录局部维修。改进的预测和降低残余应力的不确定度将需要更好地记录焊接结构的整个制造和服务历史及其成分材料,以及更好地理解和分析可能影响残余应力的许多过程。

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