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Conceptual design and evaluation of a novel bilateral pretension seatbelt:a computational study

机译:新型双边预留安全带的概念设计与评价:计算研究

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The aim of this study is to design a novel, high-efficiency and low-cost Bilateral Pretensioner (BLP) and evaluate it using a computational approach, i.e. coupling of FEA and multibody dynamics. The BLP system was designed by changing the rotation axle of the conventional retractor. The computational models for BLP, and the other two designs, namely Double Pretension (DP) and Buckle Pretention (BP) were further constructed based on a validated restraint system model to study their pretension characteristics and injury prevention capabilities. Then a range analysis design was conducted on the newly developed BLP system to identify the optimal values of four design parameters and analyze the sensitivity of injury responses to these parameters. The results show that the BLP system would have a higher pretension efficiency and injury prevention capability than the traditional BP system. Although the DP system could retract more webbing, BLP is superior due to its slightly higher injury pretension capability and lower cost of a single pretensioner. The range analysis of BLP system suggests the optimal parametric values and the sensitivity of responses to these parameters.
机译:本研究的目的是设计一种新颖的,高效率和低成本的双侧预紧器(BLP),并使用计算方法评估它,即FEA和多体动力学的耦合。通过改变传统牵开器的旋转轴来设计BLP系统。基于验证的约束系统模型,进一步构建了BLP的计算模型,以及另外两个设计,即双重预留(DP)和QUACHLE PRACENCENT(BP),以研究其预张紧特性和防损伤能力。然后在新开发的BLP系统上进行了一个范围分析设计,以确定四个设计参数的最佳值,并分析对这些参数的损伤响应的灵敏度。结果表明,除传统的BP系统,BLP系统将具有比传统的BP系统更高的预耐受效率和损伤能力。虽然DP系统可以缩回更多的织带,但由于其略高的损伤预紧能力和单个预紧器的较低成本,BLP由于其略高的损伤而优越。 BLP系统的范围分析表明最佳参数值和对这些参数的响应的灵敏度。

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