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汽车碰撞假人皮肤的准静态机械仿生学评估

Quasi-Static Mechanical Biomimetics Evaluation of Car Crash Dummy Skin.

作者信息

Li Yurun, Liu Zhixin, Sun Cuiru, Zheng Xiaoya, Du Guorui, Wang Xiaoshuang, Wang Songchen, Liu Weidong

机构信息

Department of Mechanical Engineering, Tianjin University, No. 135 Yaguan Road, Tianjin 300354, China.

China Automotive Technology and Research Center, Tianjin 300300, China.

出版信息

Biomimetics (Basel). 2024 Dec 15;9(12):762. doi: 10.3390/biomimetics9120762.

Abstract

Accurate replication of soft tissue properties is essential for the development of car crash test dummy skin to ensure the precision of biomechanical injury data. However, the intricacy of multi-layer soft tissue poses challenges in standardizing the development and testing of dummy skin materials to emulate soft tissue properties. This study presents a comprehensive testing and analysis of the compressive mechanical properties of both single and multi-layered soft tissues and car crash dummy skin materials, aiming to enhance the biofidelity of dummy skin. We presented one-term Ogden hyperelastic models and generalized Maxwell viscoelastic models for single-layer and multi-layer soft tissues, as well as dummy skin materials. The comparative analysis results indicate that the existing dummy skin material fails to fully consider the strain-rate-dependent characteristic of soft tissue. Furthermore, dummy skin materials exhibited ~3 times shorter relaxation times and ~2-3 times lower stress decay rates compared to soft tissues, suggesting a less viscous nature. This study provides an accurate representation of the mechanics of soft tissue and dummy skin under quasi-static compressive loading. The findings are instrumental for the development of novel bionic skin materials or structures to more precisely replicate the biomechanical properties of soft tissues, thereby enhancing the accuracy and reliability of car crash test dummies.

摘要

准确复制软组织特性对于汽车碰撞测试假人皮肤的开发至关重要,以确保生物力学损伤数据的精确性。然而,多层软组织的复杂性给标准化假人皮肤材料的开发和测试以模拟软组织特性带来了挑战。本研究对单层和多层软组织以及汽车碰撞假人皮肤材料的压缩力学性能进行了全面测试和分析,旨在提高假人皮肤的生物逼真度。我们提出了单层和多层软组织以及假人皮肤材料的单参数奥格登超弹性模型和广义麦克斯韦粘弹性模型。对比分析结果表明,现有的假人皮肤材料未能充分考虑软组织的应变率依赖性特征。此外,与软组织相比,假人皮肤材料的松弛时间短约3倍,应力衰减率低约2 - 3倍,表明其粘性较小。本研究提供了准静态压缩载荷下软组织和假人皮肤力学的准确表征。这些发现有助于开发新型仿生皮肤材料或结构,以更精确地复制软组织的生物力学特性,从而提高汽车碰撞测试假人的准确性和可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a48/11673420/2c30f30fa307/biomimetics-09-00762-g001.jpg

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