首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Compensation of welding shrinkage in ship production by integrating computer-aided design and computer-aided engineering in a design for assembly technique
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Compensation of welding shrinkage in ship production by integrating computer-aided design and computer-aided engineering in a design for assembly technique

机译:通过将计算机辅助设计和计算机辅助工程集成到装配技术的设计中来补偿船舶生产中的焊接收缩

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Welding is the primary joining process in ship production and inherently causes shrinkage and angular distortion that degrade the dimensional quality (adherence to tolerance specifications) of ship blocks during assembly. Considering that intermediate products of low quality are not scrapped but must be reworked, the productivity of each workstation greatly depends on the dimensional quality of these intermediate products. One of the major design for assembly methodologies to control welding shrinkage in shipbuilding is a shrinkage compensation design. This allows the artificial redesign of nominally shaped pieces of plate, to include optimal expansion values that accommodate welding shrinkage. This minimizes the amount of reworking caused by degraded dimensional quality. This research presents a new shrinkage compensation design methodology and technique combining computer-aided design with computer-aided engineering, which overcomes the shortcomings of the empirical approach used until now. An optimization procedure is proposed, by which to find the best shrinkage compensation design shape on the basis of the object function, which would minimize total rework cost (due to shrinkage) predicted for the next block-to-block assembly. The proposed design scheme was successfully applied to shipyard production design and was found to enhance the dimensional quality, as well as the productivity, of shipbuilding.
机译:焊接是船舶生产中的主要连接过程,并固有地导致收缩和角度变形,从而降低了组装过程中船体的尺寸质量(符合公差规格)。考虑到低质量的中间产品不会报废,而必须进行返工,因此每个工作站的生产率在很大程度上取决于这些中间产品的尺寸质量。用于控制造船中焊接收缩的组装方法的主要设计之一是收缩补偿设计。这允许对名义上形状的板进行人工重新设计,以包括适应焊接收缩的最佳膨胀值。这样可以最大程度地减少因尺寸质量下降而造成的返工。这项研究提出了一种新的收缩补偿设计方法和技术,将计算机辅助设计与计算机辅助工程相结合,克服了迄今为止使用的经验方法的缺点。提出了一种优化程序,通过该程序可以根据目标函数找到最佳的收缩补偿设计形状,这将使为下一个块对块装配预测的总返工成本(由于收缩)最小化。所提出的设计方案已成功地应用于船厂的生产设计中,并被发现可以提高造船的尺寸质量和生产率。

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