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用于高效冲击缓解的混合离子有机凝胶的开发与性能评估

Development and Performance Evaluation of Hybrid Iono-organogels for Efficient Impact Mitigation.

作者信息

Varanges Vincent, Rana Vijay Kumar, Phillippe Valentin, Bourban Pierre-Etienne, Pioletti Dominique P

机构信息

Laboratory of Biomechanical Orthopedics, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, Switzerland.

Laboratory for Processing of Advanced Composites, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, Switzerland.

出版信息

ACS Appl Eng Mater. 2024 Sep 27;2(10):2369-2378. doi: 10.1021/acsaenm.4c00402. eCollection 2024 Oct 25.

Abstract

Dissipative materials are essential for mitigating impact in various automotive, aerospace, and sports equipment applications. This study investigates the efficiency of a novel hybrid iono-organogel in dissipating and absorbing impact energies. The gel consists of a covalently cross-linked poly(acrylic acid)--poly(zwitterionic (DMAPS)) in a hybrid solvent system composed of the ionic liquid [COHMIM][BF] and the oligomer PEG200. The optimal solvent hybridization ratio for achieving the lowest deceleration during impact testing is 40 vol % of the ionic liquid and 60 vol % of PEG200. The gel exhibits efficient mechanical dissipative properties with a loss factor exceeding 0.5 when solicited under various dynamic conditions with this optimized ratio. Moreover, the gel demonstrates high strength and toughness, enabling it to withstand impacts without experiencing catastrophic failure. The developed gel presents stable mechanical properties over broad temperature (0-100 °C) and frequency (0.01-2000 Hz) ranges. It maintains its performance during successive impacts, thanks to its self-recovery abilities. The remarkable mechanical properties of the gel are attributed to the abundance of combined functional groups within the gel polymeric network. Indeed, reversible H-bonds, ion-dipole, and dipole-dipole interactions were observed in different studies to enhance mechanical performance. Their unique synergy effect in the developed hybrid gels held promise for better control of impact properties and durability in numerous dynamic applications.

摘要

耗散材料对于减轻各种汽车、航空航天和体育器材应用中的冲击至关重要。本研究调查了一种新型混合离子有机凝胶耗散和吸收冲击能量的效率。该凝胶由共价交联的聚(丙烯酸)-聚(两性离子(DMAPS))组成,处于由离子液体[COHMIM][BF]和低聚物PEG200组成的混合溶剂体系中。在冲击测试中实现最低减速的最佳溶剂混合比为40体积%的离子液体和60体积%的PEG200。当以这种优化比例在各种动态条件下受力时,该凝胶表现出高效的机械耗散性能,损耗因子超过0.5。此外,该凝胶具有高强度和韧性,能够承受冲击而不发生灾难性失效。所开发的凝胶在较宽的温度(0-100°C)和频率(0.01-2000Hz)范围内呈现出稳定的机械性能。由于其自我恢复能力,它在连续冲击过程中保持其性能。该凝胶卓越的机械性能归因于凝胶聚合物网络中丰富的组合官能团。事实上,在不同研究中观察到可逆氢键、离子偶极和偶极-偶极相互作用可增强机械性能。它们在开发的混合凝胶中的独特协同效应有望在众多动态应用中更好地控制冲击性能和耐久性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42e2/11519838/f08030fefc28/em4c00402_0001.jpg

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