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Mechanical Properties of Double Network Poly (Acrylic Acid) Based Hydrogels for Potential Use as a Biomaterial*

机译:双网络聚(丙烯酸)基水凝胶的机械性质潜在用作生物材料 *

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摘要

Load-bearing applications of hydrogels include soft robots, tissue engineering, and stretchable electronics. This paper presents an extensive study of double network poly (acrylic acid) based hydrogel on stress relaxation, compression fatigue, shear stress, and shock absorption properties as a potential load-bearing soft tissue replacement biomaterial. Double network poly (acrylic acid) hydrogel was selected due to simple processing and availability. The optimized formulation of poly (acrylic acid) hydrogel was used for samples preparation. The compression modulus varied with hydrogel formulation, crosshead speed and swelled amount of the hydrogel. Stress relaxation and shock absorption properties of hydrogel were compared with polyurethane gel used in soft insoles (Shore 5A). Developed hydrogel displayed good fatigue properties up to 10,000 loading cycle at maximum stress of 390±30 kPa and at 84±4% strain. Further, maximum average shear stress and shear modulus of 80 kPa and 140 kPa respectively were observed at 84% strain before fracture.
机译:水凝胶的承重应用包括软机器人,组织工程和可拉伸电子设备。本文对基于双网状聚丙烯酸的水凝胶作为应力松弛软组织替代生物材料的应力松弛,压缩疲劳,剪切应力和冲击吸收特性进行了广泛的研究。选择双网状聚(丙烯酸)水凝胶是因为其工艺简单且易于获得。聚丙烯酸水凝胶的优化配方用于样品制备。压缩模量随水凝胶配方,十字头速度和水凝胶溶胀量而变化。将水凝胶的应力松弛和减震性能与软鞋垫(邵尔5A)中使用的聚氨酯凝胶进行了比较。所开发的水凝胶在390±30 kPa的最大应力和84±4%的应变下,在10,000次加载循环下表现出良好的疲劳性能。此外,在断裂前的84%应变下观察到最大平均剪切应力和剪切模量分别为80kPa和140kPa。

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