基于ANSYS的乘用车正面碰撞研究与分析

Ye Sun
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引用次数: 0

摘要

据统计,在交通事故中,乘用车正面碰撞造成的伤害在所有交通事故中所占比例最大,约为40%。因此,提高乘用车的正面碰撞性能就显得尤为重要。因此,本文采用ANSYS/LSDYNA模块对乘用车进行有限元分析建模,对50km/h速度下的正面刚壁碰撞进行分析。根据乘用车正面碰撞过程,研究了碰撞过程中的变形、能量吸收和假人姿态等特性。通过提取的动画和曲线结果,分析了乘用车的碰撞特性。对吸能箱进行优化后,通过对研究结果的分析,得出以下结论:吸能箱的5层吸能层部分给出了最好的效果,吸能箱的吸能能力达到了原结构的两倍。乘用车的抗冲击性大大提高,驾驶舱内的人员更安全,车辆受损的可能性更小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research and Analysis of Frontal Collision of Passenger Cars Based on ANSYS
According to statistics, in traffic accidents, injuries caused by frontal collisions of passenger cars account for the largest proportion of all traffic accidents, about 40%. Therefore, it is particularly important to improve the frontal collision of passenger cars. Therefore, this article uses the ANSYS/LSDYNA module to model the passenger car with finite element analysis and analyze the frontal rigid wall collision at a speed of 50km/h. According to the frontal collision process of the passenger car, the characteristics of deformation, energy absorption, and dummy posture during the collision process are studied. Through the extracted animation and curve results, the collision characteristics of the passenger car are analyzed. After optimizing the energy-absorbing box, through the analysis of the research results, the following conclusions are drawn. 5 layers of the energy-absorbing layer part of the energy-absorbing box give the best results, and the energy absorption capacity of the energy-absorbing box has reached twice the original structure. The impact resistance of the passenger car is greatly improved, the personnel in the cockpit are safer, and the vehicle is less likely to be damaged.
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