Bai Ruobing, Yang Jiawei, Morelle Xavier P, Yang Canhui, Suo Zhigang
John A. Paulson School of Engineering and Applied Sciences, Kavli Institute for Bionano Science and Technology, Harvard University, Cambridge, Massachusetts 02138, United States.
ACS Macro Lett. 2018 Mar 20;7(3):312-317. doi: 10.1021/acsmacrolett.8b00045. Epub 2018 Feb 16.
Hydrogels of superior mechanical behavior are under intense development for many applications. Some of these hydrogels can recover their stress-stretch curves after many loading cycles. These hydrogels are called self-recovery hydrogels or even fatigue-free hydrogels. Such a hydrogel typically contains a covalent polymer network, together with some noncovalent, reversible interactions. Here we show that self-recovery hydrogels are still susceptible to fatigue fracture. We study a hydrogel containing both covalently cross-linked polyacrylamide and un-cross-linked poly(vinyl alcohol). For a sample without precut crack, the stress-stretch curve recovers after thousands of loading cycles. For a sample with a precut crack, however, the crack extends cycle by cycle. The threshold for fatigue fracture depends on the covalent network but negligibly on noncovalent interactions. Above the threshold, the noncovalent interactions slow down the extension of the crack under cyclic loads.
具有优异力学性能的水凝胶正被大力开发用于多种应用。其中一些水凝胶在多次加载循环后能够恢复其应力-拉伸曲线。这些水凝胶被称为自恢复水凝胶,甚至是无疲劳水凝胶。这种水凝胶通常包含一个共价聚合物网络,以及一些非共价的、可逆的相互作用。在这里我们表明,自恢复水凝胶仍然容易发生疲劳断裂。我们研究了一种既含有共价交联聚丙烯酰胺又含有未交联聚乙烯醇的水凝胶。对于一个没有预切裂纹的样品,应力-拉伸曲线在数千次加载循环后恢复。然而,对于一个有预切裂纹的样品,裂纹会逐循环扩展。疲劳断裂的阈值取决于共价网络,但对非共价相互作用的依赖可以忽略不计。高于阈值时,非共价相互作用会减缓循环载荷下裂纹的扩展。