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Length scale of secondary stresses in fracture and fatigue

机译:断裂和疲劳中二次应力的长度尺度

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摘要

In an attempt to provide a consistent framework for the analysis and treatment of secondary stresses associated with welding and thermal loading in the context of fracture mechanics, this paper starts with an effective stress characterization procedure by introducing a length-scale concept. With it, a traction-based stress separation procedure is then presented to provide a consistent characterization of stresses from various sources based on their length scale. Their relative contributions to fracture driving force are then quantified in terms of their characteristic length scales. Special attention is given to the implications of the length-scale argument on both analysis and treatment of welding residual stresses in fracture assessment. A series of examples is provided to demonstrate how the present developments can be applied for treating not only secondary stresses but also externally applied stresses, as well as their combined effects on the structural integrity of engineering components.
机译:为了在断裂力学的背景下为分析和处理与焊接和热负荷相关的二次应力提供一致的框架,本文通过引入长度尺度概念,从有效的应力表征过程入手。有了它,便提出了基于牵引力的应力分离程序,以根据其长度尺度对来自各种来源的应力进行一致的表征。然后根据其特征长度尺度量化它们对断裂驱动力的相对贡献。特别要注意长度比例论点对断裂评估中焊接残余应力的分析和处理的影响。提供了一系列示例,以演示如何将本发明不仅应用于处理二次应力,而且还用于处理外部施加的应力,以及它们对工程部件结构完整性的综合影响。

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