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Comparison of Cross sectional Profiles for Side Impact Crash Structure in Passenger Vehicle

机译:乘用车侧面碰撞碰撞结构的截面轮廓比较

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摘要

Car's safety is most important structural criteria while designing an automotive chassis. To protect the occupants from a direct impact, the passenger cabin and the structure of the vehicle should have an appropriate stiffness so that the it absorbs any kind of impact and keeps the passenger safe. Design standards are set by various vehicle safety association around the world based on different crash situations i.e. front crash, side impact, roll over etc. Among these standards, side impact crash account for over all 40% crashes all around the world and is one of the most fatal crash scenarios. This research focuses on comparative study based on varying cross-sectional profiles for side impact crash structures such as B-Pillar and Anti Intrusion Beam. A detailed finite element study was performed to analyze static and dynamic behavior of different cross section profiles in side impact crash situation.;With the advent of technology, materials have advanced many folds; one such technical revelation has been Fiber-reinforced Composite Materials. Composite materials have two major advantages, among many others: improved strength and stiffness, especially compared to other materials on a unit weight basis and low density with ease of manufacturing. The study deals with redesigning and replacing existent side impact crash structures with carbon fiber (Cytec Thornell T652/35).;The objective of this study is to predict the behavior of different profiles specifically with composite material. The analogy to a side impact crash was derived from 3-point bend test and drop test to study the static and dynamic response of the geometry and the material. The finite element simulation was carried out in ANSYS 17.2 specifically using ACP, Static Structural and Explicit Dynamic Modules. The geometries and the material were then compared for key structural parameters such as bending stiffness, effective stresses, factor of safety and overall kinetic energy absorption. At the end of the research we were able to compare and select the profiles which will be able to absorb high side impact crash energy.
机译:在设计汽车底盘时,汽车的安全性是最重要的结构标准。为了保护乘员免受直接撞击,乘客舱和车辆结构应具有适当的刚度,以使其吸收任何形式的撞击并保持乘客安全。设计标准是由世界各地的各种汽车安全协会根据不同的碰撞情况(即前部碰撞,侧面碰撞,侧翻等)制定的。在这些标准中,侧面碰撞碰撞占全世界所有40%的碰撞的其中之一。最致命的崩溃情况。这项研究的重点是基于不同横截面轮廓的侧面碰撞碰撞结构(如B柱和防侵入梁)的比较研究。进行了详细的有限元研究,以分析侧面碰撞碰撞情况下不同横截面轮廓的静态和动态行为。;随着技术的发展,材料已经发展了许多倍。这样的技术启示之一是纤维增强复合材料。复合材料具有两个主要优点,其中包括许多优点:提高的强度和刚度,特别是与其他单位重量相比的材料相比,其密度低且易于制造。该研究涉及重新设计并用碳纤维(Cytec Thornell T652 / 35)替换现有的侧面碰撞结构。本研究的目的是预测复合材料特别是不同轮廓的行为。从3点弯曲测试和跌落测试得出了侧面碰撞碰撞的类比,以研究几何形状和材料的静态和动态响应。有限元模拟是在ANSYS 17.2中专门使用ACP,静态结构和显式动态模块进行的。然后比较几何形状和材料的关键结构参数,例如弯曲刚度,有效应力,安全系数和总动能吸收率。在研究结束时,我们能够比较并选择能够吸收高侧撞碰撞能量的轮廓。

著录项

  • 作者

    Sharma, Nitish.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Mechanical engineering.
  • 学位 M.Eng.
  • 年度 2018
  • 页码 49 p.
  • 总页数 49
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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