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首页> 外文期刊>International Journal of Pressure Vessels and Piping >A full-field residual stress estimation scheme for fitness-for-service assessment of pipe girth welds: Part II - A shell theory based implementation
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A full-field residual stress estimation scheme for fitness-for-service assessment of pipe girth welds: Part II - A shell theory based implementation

机译:用于管环焊缝适应性评估的全场残余应力估计方案:第二部分-基于壳理论的实现

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摘要

With the two key controlling parameters identified and their effectiveness demonstrated in Part I of this study series for constructing a continuous residual stress profile at weld region, a classical shell theory based model is proposed in this paper (Part II) for describing through-thickness residual stress distributions of both axial and hoop components at any axial location beyond weld region. The shell theory based model is analytically constructed through an assembly of two parts: One represents weld region and the other represents the remaining component section away from weld. The final assembly of the two parts leads to a closed form solution to both axial and hoop residual stress components as a function of axial distance from weld toe position. The effectiveness of the full-field residual stress estimation scheme is demonstrated by comparing with a series of finite element modeling results over a broad range of pipe weld geometries and welding conditions. The present development should provide a consistent and effective means for estimating through-thickness residual stress profile as a continuous function of pipe geometry, welding heat input, as well as material characteristics. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本研究系列的第一部分中确定了两个关键控制参数并证明了它们的有效性,以在焊缝区域建立连续残余应力分布,本文(第二部分)提出了一种基于壳理论的经典模型来描述贯穿厚度的残余超出焊接区域的任何轴向位置的轴向和环向组件的应力分布。基于壳理论的模型是通过两部分的组合来分析构建的:一个代表焊接区域,另一个代表远离焊接的剩余零部件截面。这两部分的最终组装导致轴向和环向残余应力分量的封闭形式解决方案,这是距焊趾位置的轴向距离的函数。通过在一系列管道焊接几何形状和焊接条件下与一系列有限元建模结果进行比较,证明了全场残余应力估计方案的有效性。当前的发展应该提供一种一致且有效的手段,以估算贯穿厚度的残余应力曲线,作为管道几何形状,焊接热输入以及材料特性的连续函数。 (C)2015 Elsevier Ltd.保留所有权利。

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