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不同承载角度下三重周期极小曲面(TPMS)结构的能量吸收性能研究

Study on the Energy Absorption Performance of Triply Periodic Minimal Surface (TPMS) Structures at Different Load-Bearing Angles.

作者信息

Lyu Yongtao, Gong Tingxiang, He Tao, Wang Hao, Zhuravkov Michael, Xia Yang

机构信息

Department of Engineering Mechanics, Dalian University of Technology, Dalian 116024, China.

DUT-BSU Joint Institute, Dalian University of Technology, Dalian 116024, China.

出版信息

Biomimetics (Basel). 2024 Jun 27;9(7):392. doi: 10.3390/biomimetics9070392.

Abstract

As engineering demands for structural energy absorption intensify, triply periodic minimal surface (TPMS) structures, known for their light weight and exceptional energy absorption, are increasingly valued in aerospace, automotive, and shipping engineering. In this study, the energy absorption performance of three typical TPMS structures was evaluated (i.e., Gyroid, Diamond, and IWP) using quasi-static compression tests at various load-bearing angles. The results showed that while there is little influence of load-bearing angles on the energy absorption performance of Gyroid structures, its energy absorption is the least of the three structures. In contrast, Diamond structures have notable fluctuation in energy absorption at certain angles. Moreover, IWP (I-graph and Wrapped Package-graph) structures, though highly angle-sensitive, achieve the highest energy absorption. Further analysis of deformation behaviors revealed that structures dominated by bending deformation are stable under multi-directional loads but less efficient in energy absorption. Conversely, structures exhibiting mainly tensile deformation, despite their load direction sensitivity, perform best in energy absorption. By integrating bending and tensile deformations, energy absorption was enhanced through a multi-stage platform response. The data and conclusions revealed in the present study can provide valuable insights for future applications of TPMS structures.

摘要

随着工程领域对结构能量吸收的需求不断增加,以其轻质和卓越能量吸收能力而闻名的三重周期极小曲面(TPMS)结构在航空航天、汽车和船舶工程中越来越受到重视。在本研究中,通过在不同承载角度下进行准静态压缩试验,评估了三种典型TPMS结构(即Gyroid、Diamond和IWP)的能量吸收性能。结果表明,虽然承载角度对Gyroid结构的能量吸收性能影响不大,但其能量吸收是三种结构中最少的。相比之下,Diamond结构在某些角度下能量吸收有显著波动。此外,IWP(I型图和包裹型图)结构虽然对角度高度敏感,但实现了最高的能量吸收。对变形行为的进一步分析表明,以弯曲变形为主的结构在多向载荷下是稳定的,但能量吸收效率较低。相反,主要表现为拉伸变形的结构尽管对载荷方向敏感,但在能量吸收方面表现最佳。通过整合弯曲和拉伸变形,通过多级平台响应提高了能量吸收。本研究揭示的数据和结论可为TPMS结构的未来应用提供有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fb6/11284632/15a2f324fc7a/biomimetics-09-00392-g001.jpg

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