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Effects of moisture and degradation time over the mechanical dynamical performance of starch-based biomaterials

机译:水分和降解时间对淀粉基生物材料力学性能的影响

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The viscoelastic behavior of a polymeric system composed from a blend of starch and a copolymer of poly(ethylene-vinyl alcohol)-(SEVA-C)- was studied by dynamic mechanical analysis. Two main relaxation processes, at about 30 and 90 degreesC, were identified, and their kinetic behavior was studied. The studied materials are being considered for a range of orthopedic applications, which demands the characterization of the dependence of its solid rheological properties upon moisture content. Additionally, it is of main importance to study the evolution of its dynamic mechanical properties as a function of immersion time in simulated physiological solutions. A plasticization effect due to moisture was clearly observed on the low-temperature relaxation. The degradation of SEVA-C in 0.154 M NaCl and 0.154 M NaCl+10% v/v bovine serum solutions provided indication that no significant decreasing of stiffness is observed for times up to 60 days. The effects of an enzymatic environment were evident, the degradation processes being much faster in the later solution. (C) 2000 John Wiley & Sons, Inc. [References: 22]
机译:通过动态力学分析研究了由淀粉和聚乙烯醇(SEVA-C)共聚物组成的聚合物体系的粘弹性行为。确定了两个主要的松弛过程,分别在30和90摄氏度下进行了动力学行为研究。所研究的材料正被考虑用于各种矫形应用,这要求表征其固体流变性能对水分含量的依赖性。此外,研究其动态力学性能随模拟生理溶液中浸入时间的变化而具有重要意义。在低温松弛下清楚地观察到由于水分引起的增塑作用。在0.154 M NaCl和0.154 M NaCl + 10%v / v牛血清溶液中SEVA-C的降解表明,在长达60天的时间内观察到的硬度没有明显降低。酶促环境的影响是显而易见的,在随后的溶液中降解过程要快得多。 (C)2000 John Wiley&Sons,Inc. [参考:22]

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