Rheological characterization of starch-based biodegradable polymer blends

M. Nevoralová, Aleksandra Ujčić, Yadu Nath Vakkipurath Kodakkadan, Z. Starý
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引用次数: 2

Abstract

Starch-based polymer blends are often investigated materials that attract great attention due to their disposition to combine advantageous properties of their components and ability to create materials with controlled biodegradation rate. In this contribution the rheological characterization of plasticized starch blended with biodegradable polyester poly (e-caprolactone) was carried out. For preparation of thermoplastic starch-based blends three different types of starches (wheat, corn and tapioca) were used. Two-step preparation process consisting of solution casting and melt mixing was performed and their rheological and thermomechanical behavior was analyzed. Moreover, morphological study on prepared blends was performed. Since the final properties of polymer blends depend directly on blend composition, the adjusting of the material components concentrations and using distinct processing procedures led to materials with various final morphologies and rheological properties as well. Different rheological behavior in the case of TPS (tapioca)/PCL blends compared to wheat or corn starch blended with PCL was observed. Whereas the latter two blends, as well as their neat starch components, exhibited gel-like behavior over the entire measured temperature range, tapioca starch/PCL blends behave as liquids at processing temperatures. The rheology findings about tapioca starch and its blends with polycaprolactone could be advantageously used for preparation of new starch-based polymer materials with controlled biodegradation and enhanced processability.Starch-based polymer blends are often investigated materials that attract great attention due to their disposition to combine advantageous properties of their components and ability to create materials with controlled biodegradation rate. In this contribution the rheological characterization of plasticized starch blended with biodegradable polyester poly (e-caprolactone) was carried out. For preparation of thermoplastic starch-based blends three different types of starches (wheat, corn and tapioca) were used. Two-step preparation process consisting of solution casting and melt mixing was performed and their rheological and thermomechanical behavior was analyzed. Moreover, morphological study on prepared blends was performed. Since the final properties of polymer blends depend directly on blend composition, the adjusting of the material components concentrations and using distinct processing procedures led to materials with various final morphologies and rheological properties as well. Different rheologica...
淀粉基可生物降解聚合物共混物的流变特性
淀粉基聚合物共混物是一种备受关注的研究材料,因为它可以将其组分的优势特性结合起来,并能够制造出生物降解率可控的材料。在这贡献的增塑化淀粉混和可生物降解聚酯聚(e-己内酯)流变学表征进行了。为了制备热塑性淀粉基共混物,使用了三种不同类型的淀粉(小麦、玉米和木薯淀粉)。采用溶液浇铸和熔体混合两步法制备,并对其流变学和热力学行为进行了分析。并对制备的共混物进行了形态研究。由于聚合物共混物的最终性能直接取决于共混物的组成,因此调整材料组分的浓度和使用不同的加工程序也会导致材料具有不同的最终形态和流变性能。观察了TPS(木薯粉)/PCL共混物与小麦或玉米淀粉与PCL共混物的流变特性。而后两种共混物,以及它们的纯淀粉成分,在整个测量温度范围内表现出凝胶状行为,木薯淀粉/PCL共混物在加工温度下表现为液体。木薯淀粉及其与聚己内酯共混物的流变学研究结果可用于制备生物降解可控、加工性能增强的新型淀粉基高分子材料。淀粉基聚合物共混物是一种备受关注的研究材料,因为它可以将其组分的优势特性结合起来,并能够制造出生物降解率可控的材料。在这贡献的增塑化淀粉混和可生物降解聚酯聚(e-己内酯)流变学表征进行了。为了制备热塑性淀粉基共混物,使用了三种不同类型的淀粉(小麦、玉米和木薯淀粉)。采用溶液浇铸和熔体混合两步法制备,并对其流变学和热力学行为进行了分析。并对制备的共混物进行了形态研究。由于聚合物共混物的最终性能直接取决于共混物的组成,因此调整材料组分的浓度和使用不同的加工程序也会导致材料具有不同的最终形态和流变性能。不同rheologica……
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