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Evaluation of the occupant response and structural damage according to the newly proposed pole test under Federal Motor Vehicle Safety Standard side impact regulation.

机译:根据联邦汽车安全标准侧面碰撞法规下新提议的极点试验,评估乘员的反应和结构损坏。

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摘要

Every year around the world various types of automobile accidents occur, out of which side impact vehicular collisions are the most severe. Of these, side crashes into fixed narrow objects like trees, poles account for quarter percent of total deaths and serious injuries. Moreover these side impacts present a difficult problem for improving automotive crashworthiness because of the limited crushable zone between the vehicle occupant and the intruding door structure. To improve the automotive safety in side impacts a new pole test has been proposed under Federal Motor Vehicle Safety Standard (FMVSS) 214 to make the existing regulation more comprehensive in addressing the critical head and neck injuries in addition to thoracic and pelvis injuries.;In this thesis, a finite element model of the Ford Taurus and Moving Deformable Barrier (MDB) as developed by National Crash Analysis Center (NCAC) has been used for the impact analysis. The US DOT-SID side impact dummy taken from MADYMO dummy database has been used as the vehicle occupant and the rigid pole modeled in MSC.Patran software as the narrow object.;Computer Simulations have been analyzed according to the new proposed pole test and (FMVSS) 214 regulation. The critical injury values, the occupant kinematics and the structural damage have been compared justifying the need for the new pole test for improving the occupant safety.
机译:全世界每年都会发生各种类型的汽车事故,其中侧面碰撞车辆碰撞最为严重。其中,侧面撞车撞到固定的狭窄物体(例如树木)中,杆子占死亡和严重伤害总数的四分之一。此外,由于车辆乘员与侵入的门结构之间的可压碎区域有限,这些侧面碰撞带来了改善汽车防撞性的难题。为了提高汽车在侧面碰撞时的安全性,根据联邦汽车安全标准(FMVSS)214,已经提出了一项新的极点测试,以使现有法规更加全面,以解决除胸部和骨盆受伤之外的严重头部和颈部受伤。本文采用了国家事故分析中心(NCAC)开发的福特金牛座和移动变形壁垒(MDB)的有限元模型进行影响分析。从MADYMO虚拟数据库中获取的美国DOT-SID侧面碰撞虚拟模型用作车辆乘员,并在MSC.Patran软件中将刚性杆建模为狭窄对象。;根据新提出的杆测试和( FMVSS)214规定。比较了关键伤害值,乘员运动学和结构损伤,证明有必要进行新的杆测试以提高乘员安全性。

著录项

  • 作者

    Siruvole, Sandeep Kumar.;

  • 作者单位

    Wichita State University.;

  • 授予单位 Wichita State University.;
  • 学科 Engineering Automotive.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2007
  • 页码 80 p.
  • 总页数 80
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:30

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