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Energy absorption of sine wave beams subjected to axial impact loading.

机译:正弦波光束在轴向冲击载荷下的能量吸收。

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摘要

Structural impact is an area of research that has become very important in today's society, specifically in transportation systems. Use of energy absorbers as devices to absorb impact energy has been, and continues to be the focus of extensive research. The goal of energy absorber design is to create an absorber that will remove kinetic energy from the system in an efficient and reliable way while not imposing high force magnitudes on the moving body. Until now, the structural response of energy absorbers under an impact loading has concentrated on thin-walled prismatic structures, such as square and cylindrical tubes, as well as thin-walled tapered tubes. The sine wave beam has been previously investigated as an energy absorber under lateral impacting situations, however had yet to be studied under the axial impact loading condition. The aim of this thesis was to investigate the structural response and resulting energy absorbing performance of the sine wave beam subjected to axial impact and to compare this performance to that of previously considered thin-walled prismatic designs. Detailed finite element models were created and subsequently validated using existing theoretical and numerical models. These FE models were used to simulate the response of the sign wave beam and prismatic structures undergoing an axial impact. A parametric analysis was performed using the thickness of the upper and lower flange plates and the web, the amplitude of the sine wave web, and the number of sine wave periods along the length of the beam. The results show that the energy absorbing performance of the sine wave beam is affected greatly by the thickness of the structural components. Additionally, the web amplitude and period number play a vital role in the structural response and resulting energy absorption exhibited by the structure. Comparing the sine wave beam to typical prismatic tubes, advantages can be observed. The force felt by the impacting body is less for all of the sine wave beams than for any of the prismatic structures, when absorbing the same amount of kinetic energy. The sine wave beam also has greater stroke efficiency than the typical prismatic structures. The results indicate that larger number of design parameters in the sine wave beam therefore allows effective control over the crush deformation and resulting energy absorption compared to the prismatic absorber designs.
机译:结构影响是研究领域,在当今社会,尤其是在运输系统中,已变得非常重要。使用能量吸收器作为吸收冲击能量的装置一直是并且继续是广泛研究的焦点。能量吸收器设计的目标是创建一种吸收器,该吸收器将以有效而可靠的方式从系统中除去动能,同时又不会在移动体上施加较大的作用力。迄今为止,能量吸收器在冲击载荷下的结构响应一直集中在薄壁棱柱形结构上,例如方形和圆柱形管以及薄壁锥形管。正弦波光束先前已作为横向冲击情况下的能量吸收器进行了研究,但尚未在轴向冲击载荷条件下进行研究。本文的目的是研究正弦波在轴向冲击下的结构响应和所产生的能量吸收性能,并将该性能与先前考虑的薄壁棱柱形设计进行比较。创建了详细的有限元模型,然后使用现有的理论和数值模型进行了验证。这些有限元模型用于模拟符号波和棱镜结构受到轴向冲击的响应。使用上,下翼缘板和腹板的厚度,正弦波腹板的振幅以及沿梁长度的正弦波周期数进行参数分析。结果表明,正弦波的能量吸收性能受结构构件厚度的影响很大。另外,腹板幅值和周期数在结构响应以及结构所表现出的能量吸收中起着至关重要的作用。将正弦光束与典型的棱镜管进行比较,可以看到优点。当吸收相同量的动能时,对于所有正弦波,冲击体所感受到的力都比对任何棱柱形结构要小。正弦波光束也比典型的棱柱结构具有更高的冲程效率。结果表明,与棱柱形吸收器设计相比,正弦波光束中更多的设计参数可以有效地控制挤压变形和吸收的能量。

著录项

  • 作者

    Smith, Robert Harvin, Jr.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2007
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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