Research on side pole impact test method of accelerating sled based on multi-point intrusion

Haiming Gu, Peng Zhou, Y. He, L. Lou
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Abstract

Side pole impact is a common form of road traffic accident. Due to the narrow side energy absorption space, the development of the vehicle side restraint system has put forward strict requirements. However, the reappearance accuracy of side pole impact sled in the industry is always at a low level, and enterprises can only choose expensive real vehicle tests or CAE methods for development. In this paper, a multi-cylinder intrusive side pole sled impact test method is proposed. Through the coupling and decoupling of the pulses between the main sled and the side impact sled, the interaction process between the door and the dummy in the real vehicle impact test is well simulated, and the V-type intrusion is realized. The data after the test is analyzed in detail. The chest ribs and abdominal ribs of the dummy show good consistency, and the deviation can be controlled within 15%, which greatly reduces the development cost of the side pole impact. At the same time, there are also deviations in the compression amount of the upper rib and the force of the pubic symphysis force, which can be continuously optimized in the follow-up work. This research provides a new idea and solution for the development of the side restraint system.
基于多点侵入的加速滑橇侧极冲击试验方法研究
侧杆碰撞是一种常见的道路交通事故。由于车辆侧面能量吸收空间狭窄,对车辆侧面约束系统的发展提出了严格的要求。然而,侧杆冲击台车再现精度在行业中始终处于较低水平,企业只能选择昂贵的实车试验或CAE方法进行开发。提出了一种多缸侵入式侧杆台车冲击试验方法。通过主碰撞台架与侧碰撞台架之间脉冲的耦合解耦,很好地模拟了实车碰撞试验中门与假人的相互作用过程,实现了v型碰撞。对试验后的数据进行了详细的分析。假人的胸肋和腹肋一致性好,偏差可控制在15%以内,大大降低了侧杆冲击的开发成本。同时,上肋受压量和耻骨联合受力也存在偏差,可在后续工作中不断优化。该研究为侧约束系统的开发提供了新的思路和解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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