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Recent research on welding distortion prediction in thin plate fabrication by means of elastic FE computation

机译:弹性有限元计算在薄板制造中焊接变形预测的最新研究

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Elastic FE simulation with inherent deformation and interface element is an ideal and practical computational approach for predicting welding distortion in production of thin plate structures. In this study, recent researches on inherent deformation theory and welding induced buckling investigation of ship panel were sequentially introduced. Taking bead-on-plate welding as research objective (plate with 2.28 mm in thickness), integration approach with inherent strain was proposed to accurately and conveniently evaluate magnitude of inherent deformation. Also, average temperature to clarify the mechanism of influential effect of plate width on magnitude of inherent deformation was presented and examined. With the mechanism investigation of welding induced buckling by elastic FE analysis using inherent deformation, an application for predicting and mitigating the welding induced buckling in fabrication of ship panel with thin plates by employing different welding procedure patterns was carried out. Examined intermittent zigzag welding procedure is effective to reduce the magnitude of in-plane inherent shrinkages and control the possible welding induced buckling. (C) 2016 Elsevier Ltd. All rights reserved.
机译:具有固有变形和界面元素的弹性有限元模拟是预测薄板结构生产中焊接变形的理想且实用的计算方法。在这项研究中,相继介绍了固有变形理论的最新研究和船面板焊接引起的屈曲研究。以板对板焊接(厚度为2.28mm的板)为研究目标,提出了一种具有固有应变的积分方法,以准确,方便地评估固有变形的大小。此外,提出并研究了平均温度,以阐明板宽对固有变形量的影响机理。通过利用固有变形的弹性有限元分析对焊接引起的屈曲进行机理研究,提出了一种通过采用不同的焊接工艺模式来预测和减轻薄板船板制造中焊接引起的屈曲的应用。检查间歇曲折焊接程序可有效降低平面内固有收缩的幅度,并控制可能的焊接引起的屈曲。 (C)2016 Elsevier Ltd.保留所有权利。

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