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Improvement of Physico-Mechanical, Thermomechanical, Thermal and Degradation Properties of PCL/Gelatin Biocomposites: Effect of Gamma Radiation

机译:改善PCL /明胶生物复合材料的物理机械,热机械,热和降解特性:γ辐射的影响

摘要

This research was to study the effects of gelatin content variation and gamma radiation after the 2-ethylhexyl acrylate (EHA) pre-treatment on the foundamental properties of gelatin film laminated polycaprolactone (PCL) biocomposites. PCL/gelatin film (PCL/GF) composites were fabricated by compression molding and their properties were studied by physico-mechanical, thermomechanical, thermal and degradation properties. The results from mechanical properties such as tensile modulus and impact strength of the composites increased with increasing of gelatin content up to 10 wt% and then decreased while the tensile strength and elongation at break decreased. EHA monomer (2–8 wt%) was added to the gelatin solution and films were prepared by casting and found to increase the mechanical properties of the PCL/EHA blended gelatin film (PCL/EGF) composites. Treatment of the gelatin film with gamma radiation after the EHA pre-treatment showed the best mechanical properties of the resulting composites. Dynamic mechanical thermal analysis results showed that the storage modulus of the PCL/EGF and PCL/EHA blended gelatin film with gamma radiation (PCL/GEGF) composites was increased significantly. The degradation properties in water and soil were determined for the non-irradiated and irradiated composites. It was observed that the non-irradiated composite degrades more than that of the irradiated composites.
机译:本研究旨在研究丙烯酸2-乙基己酯(EHA)预处理后明胶含量变化和γ辐射对明胶薄膜层压聚己内酯(PCL)生物复合材料基本性能的影响。通过压缩成型法制备PCL /明胶薄膜(PCL / GF)复合材料,并通过物理力学,热力学,热学和降解特性研究其性能。复合材料的机械性能(例如拉伸模量和冲击强度)的结果随明胶含量的增加而增加,直至10 wt%,然后降低,而拉伸强度和断裂伸长率降低。将EHA单体(2–8 wt%)添加到明胶溶液中,并通过流延制备薄膜,发现该薄膜可提高PCL / EHA混合明胶薄膜(PCL / EGF)复合材料的机械性能。 EHA预处理后,用γ射线处理明胶薄膜显示出所得复合材料的最佳机械性能。动态力学热分析结果表明,PCL / EGF和PCL / EHA混合明胶膜与γ辐射(PCL / GEGF)复合材料的储能模量显着增加。测定了未辐照和辐照复合材料在水和土壤中的降解性能。观察到未辐照的复合材料比辐照的复合材料降解得更多。

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