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Demands for compatibility of passenger vehicles

机译:乘用车兼容性的需求

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摘要

Any discussion of vehicle compatibility represents an attempt to take an integrated approach pertaining to the numerous conflicts associated with goals related to passive vehicle safety. In order to keep the complexity of such a discussion withinmanageable limits, it would appear appropriate to concentrate on the most relevant collision modes. Compatibility characteristics are observed in vehicle crash testing. These must also be investigated in real-world accidents to verify their relevance toinjury reduction. A list of relevant compatibility characteristics is given. Although, from a theoretical point of view, stiffness should be a dominating factor, it is difficult to find this in real-world accidents. A "bulkhead" concept is given as anattempt to avoid excessive crush of smaller vehicles by limiting the force level of the striking vehicle in frontal collisions. The demand for self-protection, as defined by the barrier impact speed for which the vehicle is designed, limits the range ofmass ratios, for which the bulkhead concept can be established. An over-view of ongoing compatibility research by automotive industry is given. One of the goals of this research is to classify vehicles compatibility by computer simulation, to the extentpossible, and by vehicle crash testing, to the extent necessary.
机译:任何对车辆兼容性的讨论都代表了一种尝试采取与与被动车辆安全相关的目标相关的众多冲突相关的综合方法。为了保持这种讨论的复杂性在管理范围内,它看起来适当地专注于最相关的碰撞模式。在车辆碰撞测试中观察到的兼容性特征。这些也必须在现实主义事故中调查,以验证他们的相关性与减少的相关性。给出了相关的兼容性特征列表。虽然从理论的角度来看,僵硬应该是一个主导因素,但很难在真实的事故中找到这一点。 “舱壁”概念作为分支,以避免通过限制前部碰撞中击打车辆的力水平来过度粉碎较小的车辆。由车辆被设计的屏障冲击速度所定义的自我保护的需求限制了可以建立舱壁概念的摩托比率的范围。给出了汽车行业的持续兼容性研究。本研究的目标之一是将计算机模拟的车辆兼容,以在必要的情况下通过计算机模拟和车辆碰撞测试进行分类。

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