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Application of reanalysis techniques for pattern design of spot welds.

机译:再分析技术在点焊图案设计中的应用。

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摘要

Extensive benchmarking on competitive cars has shown that the durability of vehicles, assembly-induced variations, and assembly cost are directly related to the quality and number of spot welds. On most luxury cars, approximately 4,500 to 5,000 spot welds are found. On less expensive cars, the range is from 3,500 to 4,500. These cars usually inherit more noise, rattles, squeaks, and other quality-related problems. These problems have motivated the search for a new capability to systematically place welds in the most critical areas, with a minimum number of welds for car bodies, while satisfying all performance requirements (e.g., stiffness, stress distribution, load paths, and durability). This research represents an initial attempt to develop this aforementioned capability.;The main thrust of the research is to develop the framework for a numerical approach for optimal pattern design of spot welds and to assess the applicability of the approach in an industrial environment.;The pattern design of spot welds in this study is viewed as a combinatory design optimization problem and is solved by a genetic-algorithm-based search method incorporated with an efficient reanalysis technique. The reanalysis technique models the spot welds as multiple-point constraints and uses the Sherman-Morrison identity to recursively calculate the new solution of the structure subjected to modification on the joint and support conditions. This optimization procedure is verified with several numerical examples. The results show that the proposed optimization procedure is effective and can be extended to realistic applications for pattern design of spot welds.
机译:对赛车的广泛基准测试表明,车辆的耐久性,装配引起的变化和装配成本与点焊的质量和数量直接相关。在大多数豪华车上,发现了大约4,500至5,000个点焊。在较便宜的汽车上,价格范围为3500至4,500。这些汽车通常会承受更多的噪音,嘎嘎声,吱吱声和其他与质量相关的问题。这些问题促使人们寻求一种新的能力,以便在满足所有性能要求(例如刚度,应力分布,载荷路径和耐用性)的同时,以最少的车身焊接数量将系统焊接到最关键的区域。这项研究是开发上述能力的初步尝试。研究的主要目的是为数值方法开发点焊的最佳图案设计框架,并评估该方法在工业环境中的适用性。本研究中点焊的图形设计被视为组合设计优化问题,并通过基于遗传算法的搜索方法与有效的再分析技术相结合得以解决。重新分析技术将点焊建模为多点约束,并使用Sherman-Morrison身份递归计算对接缝和支撑条件进行修改的结构的新解。通过几个数值示例验证了此优化过程。结果表明,所提出的优化程序是有效的,可以推广到点焊图案设计的实际应用。

著录项

  • 作者

    Kim, Young San.;

  • 作者单位

    Old Dominion University.;

  • 授予单位 Old Dominion University.;
  • 学科 Mechanical engineering.;Automotive engineering.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 55 p.
  • 总页数 55
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 古生物学;
  • 关键词

  • 入库时间 2022-08-17 11:49:23

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