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Development of Shock-Absorbing Grip-Handle Structures on the Headliner

机译:顶棚内减震握柄结构的开发

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Occupant protection during interior head impact is should be consider while designing the headliner. There is a Federal Motor Vehicle Safety Standard, FMVSS201 to ensure the occupant's safety during an interior head impact. Energy absorbing components are used to protect the occupant in the event of impact with components of upper passenger compartment. Automobile manufacturers have been developing suitable designs without Energy absorbing components because of cost issues. The objective of this study is to develop the design method without Energy absorbing components on the grip-handle areas. Grip-handles are located on upper roof in the vehicle where is impact zone that must meet the occupant safety requirement during interior head impact such as FMVSS201U. The head acceleration must be reduced to lower the Head Injury Criterion (HIC) to 1,000. To reduce the head acceleration without energy absorbing components, Grip-handles and related components should absorb the impact by themselves. Grip-handles are connected to brackets. The bracket is used to assemble the headliner with grip-handles. Grip-handles and the brackets should endure the downward force. On the other hand, when FMH impact Roof trim, the bracket is deflecting upward and it will absorb the impact energy The bracket needs to meet two demands. In order to meet these demands, Experiment of design will be carried out with the help of CAE and DOE.
机译:设计顶棚时,应考虑内部头部撞击时的乘员保护。有一项联邦机动车安全标准FMVSS201,可确保在内部头部撞击时乘员的安全。吸能组件用于在与上乘客舱组件碰撞的情况下保护乘员。由于成本问题,汽车制造商一直在开发没有能量吸收组件的合适设计。这项研究的目的是开发一种在握柄区域不使用能量吸收组件的设计方法。握柄位于车辆的上部车顶上,该区域是在内部头部撞击时必须满足乘员安全要求的撞击区域,例如FMVSS201U。必须降低头部加速度,以将头部受伤标准(HIC)降低至1,000。为了在没有能量吸收组件的情况下降低头部加速度,握柄和相关组件应自行吸收冲击力。握柄连接到支架。支架用于将顶棚内衬与把手一起组装。握柄和支架应承受向下的力。另一方面,当FMH冲击车顶饰板时,支架会向上偏转,并吸收冲击能量。支架需要满足两个要求。为了满足这些需求,将在CAE和DOE的帮助下进行设计实验。

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