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Static and dynamic roof crush simulation using LS-DYNA3D

机译:使用LS-DYNA3D进行静态和动态屋顶压溃模拟

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Quasi-static roof crush simulations based on FMVSS 216 have been carried out successfully on a small European car, and different loading conditions have been tested. Results show that bonded windscreens contribute at least 30% of roof strength based on FMVSS 216. This confirms experimental test results carried out by other researchers. Furthermore, results show that the roll and pitch angles are a function of roof strength and greatly influence the overall behaviour. For instance, with the same pitch angle, the roof strength greatly drops as the roll angle goes up from 15° to 45°; but the magnitude of roof strength drop is minimal as the pitch angle increases. While for the same roll angle, the roof strength is seen to decrease as the pitch angle increases from 0° to 10°; but it does not mean that the bigger the pitch angle, the weaker the roof strength becomes. In fact in the case of a 10° pitch angle, the roof strength exhibits worst results. The recommendations on the updated FMVSS 216 are a roll angle of 45° (not 25°) and a pitch angle of 10° (not 5°). These constitute more realistic test angles that replicate real world accident data. In addition to quasi-static virtual testing, some dynamic simulations are also carried out based on two dynamic test methodologies, namely the inverted car drop in a cylindrical ditch and on a flat ground. Results show severe roof damage to occur in the former test scenario despite both having same initial conditions. The paper has also defined corridors for the best design of a car roof.
机译:在小型欧洲汽车上成功进行了基于FMVSS 216的准静态车顶破碎模拟,并测试了不同的负载条件。结果表明,基于FMVSS 216,粘合的挡风玻璃至少占屋顶强度的30%。这证实了其他研究人员进行的实验测试结果。此外,结果表明,侧倾角和俯仰角是车顶强度的函数,并且极大地影响了整体性能。例如,在相同的俯仰角下,随着侧倾角从15°上升到45°,屋顶强度会大大降低;但是随着俯仰角的增加,屋顶强度下降的幅度最小。对于相同的侧倾角,随着俯仰角从0°增加到10°,屋顶强度会降低;但这并不意味着俯仰角越大,屋顶强度就越弱。实际上,在俯仰角为10°的情况下,车顶强度表现最差。关于更新的FMVSS 216的建议是45°(不是25°)的侧倾角和10°(不是5°)的俯仰角。这些构成了更真实的测试角度,可复制真实世界的事故数据。除了准静态虚拟测试外,还基于两种动态测试方法进行了一些动态仿真,即圆柱沟和平坦地面上的倒车。结果表明,尽管初始条件相同,但在前一个测试方案中仍会发生严重的屋顶损坏。该文件还定义了最佳车顶设计走廊。

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