材料科学
润滑
承重
自愈水凝胶
复合材料
抗压强度
双层
关节软骨
方位(导航)
多孔性
机械强度
摩擦学
膜
计算机科学
病理
人工智能
生物
医学
高分子化学
遗传学
替代医学
骨关节炎
作者
Lin Peng,Danni Fu,Tingting Zhang,Shuanhong Ma,Feng Zhou
出处
期刊:ACS Macro Letters
[American Chemical Society]
日期:2023-10-16
卷期号:12 (11): 1450-1456
被引量:11
标识
DOI:10.1021/acsmacrolett.3c00398
摘要
Hydrogel-based articular cartilage replacement materials are promising candidates for their potential to provide both high load-bearing capacity and low friction performance, similar to natural cartilage. Nevertheless, the design of these materials presents a significant challenge in reconciling the conflicting demands of the load-bearing capacity and lubrication. Despite extensive research in this area, there is still room for improvement in the creation of hydrogel-based materials that effectively meet these demands. Herein, a facile strategy is provided to realize simultaneously high load-bearing and low friction properties on the proposed hydrogel by modifying the surface of mechanically strong annealled PVA-PAAc hydrogel with a high hydration potential PAAm-co-PAMPS microgel. Consequently, a bilayer hydrogel with a porous surface and a compact substrate has been obtained. Compressive experiments confirmed that the bilayer hydrogel exhibited excellent mechanical strength with a compressive strength of 32.23 MPa at 90% strain. A high load-bearing (applied load up to 30 N), extremely low friction coefficiency (0.01-0.05) and excellent wear resistance (COF low to 0.03 after a 4 h test at 10 N using a steel ball as the contact pair) are successfully achieved. These findings provide new perspectives for the design of articular cartilage materials.
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