首页> 外文会议>16th international technical conference on the enhanced safety of vehicles >MODELING OF AN INNOVATIVE FRONTAL CAR STRUCTURE: SIMILAR DECELERATION CURVES AT FULL OVERLAP, 40 PER CENT OFFSET AND 30 DEGREES COLLISIONS
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MODELING OF AN INNOVATIVE FRONTAL CAR STRUCTURE: SIMILAR DECELERATION CURVES AT FULL OVERLAP, 40 PER CENT OFFSET AND 30 DEGREES COLLISIONS

机译:创新的前车结构建模:全重叠,40%偏移和30度碰撞时的类似减速曲线

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The improved frontal crashworthiness of cars necessitates totally new design concepts, which take into account that the majority of collisions occur with partial frontal overlap and under off-axis load directions. Realistic crash tests with partial overlap have shown that conventional longitudinal structures are not capable of absorbing all the energy in the car front without deforming the passenger compartment. The reason for this is that the structure of the longitudinal members is specifically designed for meeting the more relaxed requirements of the compulsory full overlap test, in which both longitudinals are loaded axially.rnIncreased protection for the entire collision spectrum can be obtained by a frontal structure consisting of two special longitudinal members, which combine a higher bending resistance without increasing the axial stiffness. In addition the longitudinal members are supported by a cable connection system for symmetric force distribution. If only one of the longitudinal members is loaded during a partial overlap crash, the cable connection system will force the other longitudinal member to crumple as well. This results in normal programmed energy absorption. With this revolutionary concept a complete frontal car structure is designed with almost the same stiffness for all overlap percentages and impact angles, resulting in one crash pulse which can be optimized for minimal injury of the occupants.rnThe influence of various crash situations on the amount of energy absorbed by this total vehicle model and specified for important structural parts will be demonstrated by means of numerical simulations. Also important construction details, necessary for a well functioning of the designed cable supported frontal car structure, will be mentioned.
机译:为了提高汽车的正面防撞性能,需要全新的设计理念,其中考虑到大多数碰撞都发生在局部正面重叠且轴外负载方向下。具有部分重叠的现实碰撞测试表明,传统的纵向结构不能吸收轿厢前部的所有能量而不会使乘员舱变形。这是因为纵向构件的结构经过专门设计,可以满足强制性完全重叠测试的更宽松要求,即在两个纵向构件均沿轴向加载的情况下。正面结构可以增强对整个碰撞谱的保护由两个特殊的纵向构件组成,它们在不增加轴向刚度的情况下具有较高的抗弯曲性。另外,纵向构件由用于对称力分配的电缆连接系统支撑。如果在部分重叠碰撞期间仅一个纵向构件被加载,则电缆连接系统也会迫使另一个纵向构件也发生皱缩。这导致正常的编程能量吸收。凭借这一革命性的理念,完整的前部轿厢结构设计为在所有重叠百分比和撞击角度下具有几乎相同的刚度,从而产生了一个碰撞脉冲,可以对其进行优化以最大程度地减轻乘员的伤害。整个汽车模型吸收的能量以及指定用于重要结构部件的能量将通过数值模拟进行演示。还将提及重要的构造细节,这对于设计的电缆支撑的正面轿厢结构的良好运行必不可少。

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