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Combined Mechanical and Electrical Study of Polymers of Biological Origin

机译:生物源聚合物的组合机电研究

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Thermally Simulated Depolarization Current measurement is an excellent but not widely used method for identifying relaxation processes in polymers. The DMA method is used here to analyze the mechanical changes depend on temperature in biopolymers. The two techniques take advantage of the energy changes involved in the various phase transitions of certain polymer molecules. This allows for several properties of the material to be ascertained; melting points, enthalpies of melting, crystallization temperatures, glass transition temperatures and degradation temperatures. The examined biopolymer films are made from biological materials such as proteins and polysaccharides. These materials have gained wide usage in pharmaceutical, medical and food areas. The uses of biopolymer films depend on their structure and mechanical properties. This work is based on pectin and gelatin films. The films were prepared by casting. The casting technique used aqueous solutions in each case of sample preparation. The manufacturing process of the pectin and gelatin films was a single stage solving process.
机译:热模拟的去极化电流测量是一种优异但不广泛使用的方法,用于识别聚合物中的弛豫过程。这里使用DMA方法来分析机械变化取决于生物聚合物中的温度。这两种技术利用某些聚合物分子的各种相转变中涉及的能量变化。这允许确定材料的几种性质;熔点,熔化焓,结晶温度,玻璃化转变温度和降解温度。所检查的生物聚合物薄膜由诸如蛋白质和多糖的生物材料制成。这些材料在制药,医疗和食品中获得了广泛的用途。生物聚合物膜的用途取决于它们的结构和机械性能。这项工作是基于果胶和明胶薄膜。薄膜通过铸造制备。铸造技术在每种样品制备中使用水溶液。果胶和明胶薄膜的制造过程是单阶段求解方法。

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