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Sub-structure vehicle test and analysis to predict the frontal crash performances of full-scale vehicle

机译:子结构车辆测试和分析预测全尺寸车辆的正面碰撞性能

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An investigation has been performed to predict full vehicle frontal crash behaviors in collapse zone of the front side rail through the front sub-structure vehicle impact test. Attaching the front structure of a vehicle to the rear crash (FMVSS 301) moving barrier makes the front sub-structure vehicle. The test condition is set-up to represent full vehicle crash mode in the collapse zone of the front side rail, a sub-structure FE model is built from full vehicle FE model. Mass and initial velocity of the model are changed so that the model has the same kinetic energy on the US-NCAP frontal crash condition. A preferable model in point of a test set-up is suggested and the analysis result is compared with the other results. The model has 1950Kg of the mass and 20Kph of the impact velocity. Even though the model has 17% of the US-NCAP kinetic energy the result of the sub-structure model look similar to that of full vehicle FE analysis in point of deformation and transmitted section force. Finally, for the sub- structure vehicle the crash test is done and the test result is compared with the analysis result. Two results show good correlation with each other. It is shown that the sub-structure vehicle crash test can be a useful tool to develop the front side rail in early design stage with saving development time and cost.
机译:已经进行了通过前端结构车辆冲击试验预测前侧轨道坍塌区的全车正面碰撞行为。将车辆的前部结构连接到后碰撞(FMVS 301)移动屏障使前端结构车辆成为移动屏障。在前侧轨道的折叠区域中建立测试条件以表示全车辆碰撞模式,由全车FE模型构建子结构FE模型。模型的质量和初始速度改变,使得该模型对US-NCAP正面碰撞条件具有相同的动能。建议测试设置点中的优选模型,并将分析结果与其他结果进行比较。该模型具有1950kg的质量和20kph的冲击速度。尽管该模型具有17%的US-NCAP动能,但子结构模型的结果看起来类似于变形和透射截面力点的全车Fe分析。最后,对于子结构车辆,完成碰撞试验并将测试结果与分析结果进行比较。两个结果显示彼此的良好相关性。结果表明,子结构车辆碰撞试验可以是在早期设计阶段开发前侧导轨的有用工具,以节省开发时间和成本。

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