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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >A STRUCTURAL DESIGN APPROACH FOR CONTROLLING WELDING DISTORTION ATTHE UPPER DECK OF A HULL STRUCTURE IN THE ERECTION STAGE
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A STRUCTURAL DESIGN APPROACH FOR CONTROLLING WELDING DISTORTION ATTHE UPPER DECK OF A HULL STRUCTURE IN THE ERECTION STAGE

机译:在竖起阶段控制船体结构上部甲板焊接变形的结构设计方法

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摘要

An effective design method for controlling the transitional welding distortion at the aft upper deck occurring in the erection stage of the hull structure has been established using FEA and measured distortion database. Variation of distortion at the aft upper deck was measured according to the progress of the manufacturing process. This was done in order to clarify the 2nd distortion of the upper deck, defined as the increment of welding distortion developed after the assembly stage. The amount and distribution of the 2nd load causing the 2nd distortion were identified with a non-linear buckling FEA. The distribution of the welding distortion and the residual stress were assumed to be initial imperfections, which were identified with STEM (simplified thermoelastic method) based on inherent strain. Based on these results, the modification of structural design parameters such as plate thickness and the attachment of carling were made, in order to prevent the excessive 2nd distortion which requires costly flame correction work in the erection stage.
机译:利用有限元分析和实测变形数据库,建立了一种有效的设计方法,用于控制在船体结构安装阶段发生的后上甲板的过渡焊接变形。根据制造过程的进展来测量后上甲板的变形变化。这样做是为了弄清上层甲板的第二变形,定义为在组装阶段之后产生的焊接变形的增量。用非线性屈曲FEA确定引起第二变形的第二载荷的量和分布。焊接变形和残余应力的分布被认为是最初的缺陷,这些缺陷是通过基于固有应变的STEM(简化热弹性法)确定的。根据这些结果,对结构设计参数(例如板厚和连接的硬脂合金)进行了修改,以防止过度的第二变形,这在安装阶段需要昂贵的火焰校正工作。

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