Xue Qiqi, He Yunfeng, Zhang Xiaoyu, Zhang Xin, Cai Minkun, Guo Chuan Fei, Yang Canhui
Shenzhen Key Laboratory of Soft Mechanics and Smart Manufacturing, Department of Mechanics and Aerospace Engineering, Southern University of Science and Technology, Shenzhen, Guangdong 518055, P.R. China.
Structural Dynamic and Impact Lab, Department of Mechanics and Aerospace Engineering, Southern University of Science and Technology, Shenzhen, Guangdong 518055, P.R. China.
ACS Appl Mater Interfaces. 2022 Jul 12. doi: 10.1021/acsami.2c07133.
Many biological hydrogels are mechanically robust to bear quasi-static and impact loads. In contrast, the mechanical properties of synthetic hydrogels against impact loads remain substantially unexplored, albeit their mechanical robustness under quasi-static loads has been extensively developed. Here, we report on the design and synthesis of strong, tough, and impact-resistant hydrogel composites by reinforcing Ca-alginate/polyacrylamide hydrogels with glass fabrics and conferring strong interfaces between the hydrogel matrix and the fibers. The fabric enables high elastic modulus, the hydrogel matrix enables large dissipation, and the strong interfaces enable efficient load transfer for synergistic strengthening and toughening, which is manifested by digital image correlation analyses. Under quasi-static loads, the hydrogel composite exhibits an elastic modulus of 35 MPa and a toughness of 206.7 kJ/m. Under impact loads, a piece of 7.7 g sample bears the impact of energy of 7.4 J and resists more than 100 cycles of consecutive impact of 600 mJ. As a proof-of-concept, a hydrogel composite as a safeguard to protect fragile glasses from impact is demonstrated. Because impact phenomena are universal, it is expected that the study on the impact of hydrogels will draw increasing attention.
许多生物水凝胶在承受准静态和冲击载荷时具有机械稳健性。相比之下,尽管合成水凝胶在准静态载荷下的机械稳健性已得到广泛发展,但其抗冲击载荷的机械性能仍基本未被探索。在此,我们报告了通过用玻璃纤维增强海藻酸钙/聚丙烯酰胺水凝胶并在水凝胶基质与纤维之间赋予强界面来设计和合成强韧且抗冲击的水凝胶复合材料。纤维使弹性模量高,水凝胶基质使耗散量大,强界面使有效载荷传递以实现协同增强和增韧,这通过数字图像相关分析得以体现。在准静态载荷下,水凝胶复合材料的弹性模量为35兆帕,韧性为206.7千焦/平方米。在冲击载荷下,一块7.7克的样品承受7.4焦耳能量的冲击,并能抵抗600毫焦耳的连续冲击达100多次循环。作为概念验证,展示了一种水凝胶复合材料作为保护易碎玻璃免受冲击的防护装置。由于冲击现象普遍存在,预计对水凝胶冲击的研究将受到越来越多的关注。