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DEMANDS FOR COMPATIBILITY OF PASSENGER VEHICLES

机译:客车兼容性要求

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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 within manageable 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 to injury 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 an attempt 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 of mass 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 extent possible, and by vehicle crash testing, to the extent necessary.
机译:关于车辆兼容性的任何讨论都代表试图采取一种与与被动车辆安全相关的目标相关的众多冲突有关的综合方法。为了将这种讨论的复杂性保持在可管理的范围内,将精力集中在最相关的碰撞模式上似乎是适当的。在车辆碰撞测试中观察到兼容性特征。还必须在实际事故中对这些事故进行调查,以验证其与减少伤害的相关性。列出了相关的兼容性特征。尽管从理论上讲,刚度应该是一个主要因素,但在实际事故中很难发现这一点。给出“靶头”概念是为了通过限制正面碰撞中打击车辆的力水平来避免较小车辆的过度挤压。对自我保护的要求(由设计车辆的障碍物撞击速度定义)限制了质量比的范围,为此可以建立隔板概念。概述了汽车行业正在进行的兼容性研究。这项研究的目标之一是通过计算机仿真尽可能对车辆的兼容性进行分类,并通过必要时通过车辆碰撞测试对车辆的兼容性进行分类。

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