首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >High-strength cellulose-polyacrylamide hydrogels: Mechanical behavior and structure depending on the type of cellulose
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High-strength cellulose-polyacrylamide hydrogels: Mechanical behavior and structure depending on the type of cellulose

机译:高强度纤维素 - 聚丙烯酰胺水凝胶:根据纤维素类型的机械行为和结构

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Two types of stiff and high-strength composite hydrogels possessing the structure of interpenetrating polymer networks were synthesized via free-radical polymerization of acrylamide carried out straight within the previously formed physical network of regenerated plant cellulose or bacterial cellulose (PC and BC respectively) that was swollen in the reactive solution. The mechanical behavior of synthesized hydrogels subjected to the action of compressive deformations with different amplitude values was studied. The analysis of the stress-strain curves of compression tests of the hydrogels of both types obtained in different test conditions demonstrates the substantial difference in their mechanical behavior. Both the PC- and BC-based hydrogels withstand successfully the one-shot compression with the amplitude up to 80%, but in the conditions of the multiple compression tests (cyclic compressions) during the subsequent compression acts the dramatic increase in the stiffness of the BC-based hydrogels was observed at the deformation region beyond 60%. This effect can be explained by the deep reorganization of the intermolecular structure of the material with the stress-induced reorientation of BC micro-fibrils. Submicron- and micron-scale specific features of structures of composite hydrogels of both types were studied by cryo-scanning electron microscopy to explain the peculiarities of the mechanical effects observed.
机译:通过直接在预生成的植物纤维素或细菌纤维素(PC和BC)的预先形成的物理网络内,通过直接进行的丙烯酰胺的自由基聚合来合成具有互穿聚合物网络结构的两种类型的硬度和高强度复合水凝胶。在反应溶液中肿胀。研究了对具有不同幅度值的压缩变形作用的合成水凝胶的力学行为。在不同测试条件下获得的两种类型的水凝胶的压缩试验的应力 - 应变曲线分析证明了它们的机械行为的显着差异。基于PC和BC和BC的水凝胶能够成功地将单次压缩成功,幅度高达80%,但在随后的压缩期间的多个压缩测试(循环按压)的条件下起到刚度的巨大增加在超过60%的变形区域观察到基于Bc的水凝胶。这种效果可以通过对BC微纤维的应力诱导的重构来解释材料的分子间结构的深层重组。通过冷冻扫描电子显微镜研究两种类型的复合水凝胶结构的亚微米和微米级特征,以解释观察到的机械效应的特性。

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