爆炸冲击下圆形蜂窝状下肢保护装置的设计与优化

Lingyun Qin, Shuyi Yang, Guibing Li, Guosheng Wang, Zhewu Chen, Hongzhou Li
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引用次数: 0

摘要

为减少车辆腹下爆炸对乘员下肢的损伤,提出了一种圆形蜂窝状下肢保护装置。首先,建立了乘员约束系统的局部等效模型,并通过跌落冲击试验和理论验证了模型的准确性;然后,在相同质量下,比较了采用圆形蜂窝、六角形蜂窝、重入式蜂窝等夹层结构的8种下肢保护装置的防护性能。研究发现,圆形蜂窝夹层的下肢保护装置对下肢的防护效果最好。随后,研究了梯度结构设置和尺寸参数对圆形蜂窝下肢保护装置防护性能的影响。最后,对其进行多目标优化,进一步提高其防护性能。结果表明,合理选择蜂窝夹层的单元排列、梯度类型和梯度间隔,可有效提高下肢保护装置的防护性能。当使用优化后的下肢保护装置时,乘员的左右胫骨峰值力分别降至3.67 kN和3.55 kN。与初始设计相比,优化后的下肢保护装置使左右胫骨下峰力分别降低了21.1%和23.8%,总质量降低了51.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and optimization of circular honeycomb lower limb protection device under blast impact
A circular honeycomb lower limb protection device was proposed to reduce the damage to the occupant’s lower limbs under a vehicle under-belly blast. First, a local equivalent model of the occupant-restraint system was established, and drop impact tests and theory were used to validate the model’s accuracy. Then, under the same mass, the protection performance of eight lower limb protection devices using circular honeycomb, hexagonal honeycomb, reentrant honeycomb, etc., as sandwiches were compared. It was found that the lower limb protection device with a circular honeycomb sandwich provides the best defence for lower limbs. Subsequently, the effect of gradient structure settings and dimensional parameters on the protection performance of circular honeycomb lower limb protection devices was investigated. Finally, multi-objective optimization has been carried out to further improve its protection performance. The results indicated that the protection performance of the lower limb protection device could be effectively improved by reasonably selecting the cell arrangement, gradient type and gradient interval of the honeycomb sandwich. When the optimized lower limb protection device was employed, the occupant's left and right lower tibial peak forces were decreased to 3.67 kN and 3.55 kN, respectively. Compared with the initial design, the optimized lower limb protection device reduced the left and right lower tibial peak forces by 21.1% and 23.8%, respectively, and the total mass decreased by 51.5%.
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