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用于承重应用的坚韧水凝胶。

Tough Hydrogels for Load-Bearing Applications.

作者信息

Petelinšek Nika, Mommer Stefan

机构信息

Macromolecular Engineering Laboratory, Department of Mechanical and Process Engineering, ETH Zurich, Sonneggstrasse 3, Zurich, 8092, Switzerland.

出版信息

Adv Sci (Weinh). 2024 Mar;11(12):e2307404. doi: 10.1002/advs.202307404. Epub 2024 Jan 15.

Abstract

Tough hydrogels have emerged as a promising class of materials to target load-bearing applications, where the material has to resist multiple cycles of extreme mechanical impact. A variety of chemical interactions and network architectures are used to enhance the mechanical properties and fracture mechanics of hydrogels making them stiffer and tougher. In recent years, the mechanical properties of tough, high-performance hydrogels have been benchmarked, however, this is often incomplete as important variables like water content are largely ignored. In this review, the aim is to clarify the reported mechanical properties of state-of-the-art tough hydrogels by providing a comprehensive library of fracture and mechanical property data. First, common methods for mechanical characterization of such high-performance hydrogels are introduced. Then, various modes of energy dissipation to obtain tough hydrogels are discussed and used to categorize the individual datasets helping to asses the material's (fracture) mechanical properties. Finally, current applications are considered, tough high-performance hydrogels are compared with existing materials, and promising future opportunities are discussed.

摘要

坚韧水凝胶已成为一类很有前景的材料,适用于承重应用,在这类应用中材料必须承受多次极端机械冲击循环。人们利用各种化学相互作用和网络结构来增强水凝胶的机械性能和断裂力学性能,使其更坚硬、更坚韧。近年来,坚韧的高性能水凝胶的机械性能已得到基准测试,然而,这往往并不完整,因为诸如含水量等重要变量在很大程度上被忽视了。在这篇综述中,目的是通过提供一个全面的断裂和机械性能数据库,来阐明最新的坚韧水凝胶的报道机械性能。首先,介绍了此类高性能水凝胶机械表征的常用方法。然后,讨论了获得坚韧水凝胶的各种能量耗散模式,并用于对各个数据集进行分类,有助于评估材料的(断裂)机械性能。最后,考虑了当前的应用,将坚韧的高性能水凝胶与现有材料进行了比较,并讨论了未来有前景的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c44/10966577/aa43937387a9/ADVS-11-2307404-g003.jpg

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