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Tensile properties, morphology, and biodegradability of blends of starch with various thermoplastics

机译:淀粉与各种热塑性塑料的混合物的拉伸性能,形态和生物降解性

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摘要

In the present study, blends of starch with different thermoplastics were prepared by a melt blending technique. The tensile properties and morphology of the blends were measured. It was found that with increasing starch content in starch/ionomer blends, the tensile strength and modulus increase. But for starch/low-density polyethylene (LDPE) and starch/aliphatic polyester (APES) blends, tensile strength and modulus decrease with increasing the starch loading. Elongation at break values of all the blend systems decrease with increasing starch loading. The scanning electron micrographs (SEM) support the findings of tensile properties. Better homogeneity is observed in starch/ionomer systems compared with that in starch/APES and starch/LDPE systems. Up to 50% starch content, the starch/ionomer blends appear as a single phase. The extent of phase interactions of starch/APES system lies in between the starch/LDPE and starch/ionomer systems. From the biodegradability studies of the blends it was found that, although the pure LDPE and ionomer are not biodegradable, the starch/LDPE and starch/ionomer blends are biodegradable with an appreciable rate. The rate of biodegradation of the starch/APES is very high as both the components are biodegradable. (C) 2002 Wiley Periodicals, Inc. [References: 28]
机译:在本研究中,通过熔融共混技术制备了淀粉与不同热塑性塑料的共混物。测量了共混物的拉伸性能和形态。发现随着淀粉/离聚物共混物中淀粉含量的增加,抗张强度和模量增加。但是,对于淀粉/低密度聚乙烯(LDPE)和淀粉/脂肪族聚酯(APES)混合物,拉伸强度和模量随淀粉含量的增加而降低。所有共混体系的断裂伸长率值都随着淀粉含量的增加而降低。扫描电子显微照片(SEM)支持发现拉伸性能。与淀粉/ APES和淀粉/ LDPE体系相比,在淀粉/离聚物体系中观察到更好的均质性。淀粉含量高达50%时,淀粉/离聚物混合物呈单相状。淀粉/ APES体系的相作用程度在淀粉/ LDPE和淀粉/离聚物体系之间。从共混物的生物降解性研究中发现,尽管纯的LDPE和离聚物不是生物可降解的,但是淀粉/ LDPE和淀粉/离聚物的共混物可以以可观的速率生物降解。淀粉/ APES的生物降解率非常高,因为这两种组分都是可生物降解的。 (C)2002 Wiley Periodicals,Inc. [参考:28]

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