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Verification, validation and optimization of finite element model of bus structure for rollover test.

机译:用于翻车测试的母线结构有限元模型的验证,确认和优化。

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摘要

Paratransit buses consist of a custom body mounted to a GM/Ford cutaway chassis by a secondary manufacturer called body builder. Paratransit buses form a significant segment of the bus market in the US nowadays. They are used as a complementary service for regularly scheduled routes and usually are prepared to transport disabled passengers in their wheelchairs. Their construction method and the lack of applicable national crashworthiness standards result in a wide variance of passenger compartment structural strength amongst manufactures---as reported by the Florida Department of Transportation (FDOT). The primary objective of this dissertation was to develop a testing procedure with the performance rating system for paratransit buses acquired by the state of Florida. Sponsored by FDOT an assessment and improvement methodology was developed using joint computational and empirical approach. It prioritizes the strength of the structure in a rollover type accident utilizing as a basis the European Regulation ECE-R66. New measure of safety margin in rollover tests, a Deformation Index, was proposed. Detailed Finite Element (FE) model of selected paratransit bus was developed and used to perform explicit LS-DYNA simulations of the tilt table rollover test. Experimental tests on the bus subsections were conducted for validation purposes and weak spot identification. Discrete optimization using the Successive Response Surface Methodology in LS-OPT was also utilized to indentify parts of the structure critical to rollover performance. Improvements were suggested that minimize the addition of mass. Early results showed the connections between major structural components (floor/wall/roof) to be particularly weak. Proposed structural modifications increased the remaining safety margin from an initial level of 16% to 29% (In respect to the Deformation Index). The structural modifications resulting from the validation testing were incorporated in the currently produced buses. The proposed testing procedure was accepted by FDOT in August 2007 as the Crash and Safety Assessment Program. It received attention of the state and federal transportation agencies and support from the transit bus industry.
机译:辅助公交车由定制的车身组成,该车身由称为车身制造商的二级制造商安装在GM / Ford剖切式底盘上。如今,辅助公交车已成为美国巴士市场的重要组成部分。它们可作为定期路线的补充服务,通常准备将残疾乘客坐在轮椅上。佛罗里达运输部(FDOT)报告说,它们的构造方法和缺乏适用的国家防撞标准导致制造商之间的客舱结构强度差异很大。本文的主要目的是为佛罗里达州获得的辅助公交车开发一种具有性能评级系统的测试程序。由FDOT赞助的评估和改进方法是使用联合计算和经验方法开发的。它以欧洲法规ECE-R66为基础,优先考虑了翻车事故中的结构强度。提出了在翻滚测试中新的安全裕度度量,即变形指数。开发了选定的辅助公交车的详细有限元(FE)模型,并将其用于执行倾斜工作台翻转测试的显式LS-DYNA仿真。为了验证目的和薄弱点识别,对公交车分段进行了实验测试。在LS-OPT中使用逐次响应曲面方法进行的离散优化还被用来识别对翻转性能至关重要的结构部分。建议进行改进以最大程度地减少质量增加。早期结果表明,主要结构部件(地板/墙/屋顶)之间的连接特别弱。提议的结构修改将剩余的安全裕度从初始水平的16%提高到了29%(相对于变形指数)。验证测试产生的结构修改已合并到当前生产的公共汽车中。提议的测试程序已于2007年8月被FDOT接受为“碰撞和安全评估程序”。它得到了州和联邦运输机构的关注,并获得了公交巴士行业的支持。

著录项

  • 作者

    Bojanowski, Cezary.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Engineering Civil.Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 217 p.
  • 总页数 217
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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