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THREE DIMENSIONAL FINITE ELEMENT ANALYSES OF WELDING RESIDUAL STRESSES OF A REPAIRED WELD

机译:修复焊缝焊接残余应力的三维有限元分析

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The objective of this study is to correct installation non-conformance of a surge line using the excavation and re-weld method which is widely used in nuclear power plants. The surge line with a backslope was not at the required design level after initial installation. In order to solve the problem, a repairing technology is shown as follows: the weld was successively excavated and welded again while the surge line slope was corrected with the help of jacks. Because many of the degradation mechanisms relevant to power plant components can be accelerated by the presence of welding residual stresses (WRS), the WRS caused by the repairing process need to be studied. In this paper, the WRS simulation technique employed in this project is sophisticated. It utilizes a 3-D finite element (FE) model, and simulates the weld sequencing and excavation. Moreover, the WRS simulation performed in this project not only uses the un-axisymmetric model, but also considers the deformation caused by the external jacking loads. The results show that the repairing process is effective, and strain damage induced by the welding repair is also acceptable.
机译:本研究的目的是利用广泛应用于核电站的挖掘和重新焊接方法来校正抗静管的安装不一致。初始安装后,带有后瓣的喘振线在所需的设计水平上不是在所需的设计水平。为了解决该问题,修复技术如下所示:焊接借助于千斤顶纠正浪涌线坡度,同时再次挖掘和焊接。因为可以通过焊接残余应力(WRS)的存在,加速与发电厂组件相关的许多劣化机制,所以需要研究修复过程的WRS。本文采用该项目采用的WRS仿真技术复杂。它利用3-D有限元(FE)模型,并模拟焊接测序和挖掘。此外,在该项目中执行的WRS仿真不仅使用未轴对称模型,而且还考虑了由外部顶层负载引起的变形。结果表明,修复过程是有效的,焊接修复诱导的应变损伤也是可接受的。

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