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Evaluation of the Performance and Testing Techniques of Vehicle Frontal Protection Systems

机译:车辆正面保护系统性能和测试技术评估

摘要

Frontal Protection Systems (FPS) have become a popular accessory for passenger vehicles. They are used to protect the front of a vehicle during minor impacts, and to attenuate the impact energy during major impacts. With the increased safety of modern passenger vehicles, the fitment of a FPS to a vehicle requires careful consideration to the design and installation of the FPS as they may modify vehicle crush characteristics. This is particularly important in vehicles fitted with air bags. These community and industry concerns triggered the research discussed in this thesis, which is the first comprehensive project undertaken in this particular area. This project generated comprehensive research knowledge on the impact response and energy absorption of FPS in order to evaluate performance. This involved a range of experimental testing supplemented by finite element analysis. Experimental testing was conducted using quasi-static and dynamic techniques to assess the overall performance of current FPS available. Finite element models were then generated and analysed using both implicit and explicit techniques, and calibrated against the experimental testing results. These models were used throughout the project to assess the FPS response, in particular the energy absorbed, to changes in impact characteristics. FPS assessment guidelines were developed from the knowledge generated from the numerous FPS tests and analyses carried out in this research project. These guidelines have been used in the design and evaluation of a number of FPS for airbag compatibility. The real life performance of vehicles fitted with these FPS, have given confidence to the assessment criteria developed in this research project. This project has demonstrated that FPS can be designed to complement the safety systems of modern passenger vehicles, and thus passenger safety. This would not have been possible without the comprehensive research carried out in this project.
机译:正面保护系统(FPS)已成为乘用车的流行配件。它们用于在轻微撞击时保护车辆的前部,并在严重撞击时减弱撞击能量。随着现代乘用车安全性的提高,将FPS装配到车辆上需要仔细考虑FPS的设计和安装,因为它们可能会改变车辆的碰撞特性。这在装有安全气囊的车辆中尤为重要。这些社区和行业的关注引发了本文所讨论的研究,这是该领域中进行的第一个综合项目。该项目产生了有关FPS的冲击响应和能量吸收的综合研究知识,以便评估性能。这涉及一系列的实验测试,并辅以有限元分析。使用准静态和动态技术进行了实验测试,以评估当前可用FPS的总体性能。然后使用隐式和显式技术生成并分析有限元模型,并根据实验测试结果进行校准。在整个项目中都使用这些模型来评估FPS对冲击特性变化的响应,尤其是吸收的能量。 FPS评估指南是根据在此研究项目中进行的大量FPS测试和分析所产生的知识制定的。这些准则已用于安全气囊兼容性的许多FPS的设计和评估中。装有这些FPS的车辆的实际生活性能,使人们对该研究项目制定的评估标准充满信心。该项目表明,FPS可以设计为补充现代乘用车的安全系统,从而补充乘员的安全。没有这个项目中进行的全面研究,这是不可能的。

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    Bignell Paul;

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  • 年度 2004
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