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Effect of cogon grass fibre on the thermal, mechanical and biodegradation properties of thermoplastic cassava starch biocomposite

机译:Cogon草纤维对热塑性塑料木薯淀粉生物复合材料热,机械和生物降解性能的影响

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摘要

Thermoplastic cassava starch (TPCS) is a promising alternative material to replace the non-biodegradable petroleum based polymer due to its good environmental-friendly aspect i.e. abundant, sustainable, recyclable and biodegradable in nature. However, TPCS have some limitation such as poor mechanical properties. Therefore, in the present study, cogon grass fibre (CGF) were incorporated into TPCS using compression molding. Then the fundamental properties of CFG/TPCS biopolymer composites were carried out in order to evaluate their potential as a biodegradable reinforcement. From the study it was found that, the incorporation of CFG has improved the tensile and flexural properties of the TPCS composites, while the impact strength and elongation were reduced. The thermal properties of the biocomposite were reduced as the cogon grass fibres increase from 0 to 5%. In term of morphological, SEM shows good fibre adhesion between CGF and TPCS. Soil burial test shows that incorporation of CGF into TPCS has slow down the biodegradation process of the composites. Thus, CGF/TPCS biopolymer composites can be classified as composites with great potential as environmental-friendly material that biodegradable and renewable. (C) 2019 Elsevier B.V. All rights reserved.
机译:热塑性木薯淀粉(TPC)是一种有前途的替代材料,以取代由于其良好的环保方面而取代了非生物降解的石油基础聚合物,其性质上丰富,可持续,可回收和可生物降解。然而,TPC具有一些限制,例如机械性能差。因此,在本研究中,使用压缩成型将冠状草纤维(CGF)掺入TPC中。然后进行CFG / TPCS生物聚合物复合材料的基本特性,以评估它们作为可生物降解的增强的潜力。从研究中发现,CFG的掺入具有改善TPCS复合材料的拉伸和弯曲性能,而冲击强度和伸长率降低。随着辅助草纤维从0〜5%的增加,生物复合材料的热性能降低。在形态学期间,SEM在CGF和TPC之间显示出良好的纤维粘附。土壤埋葬试验表明,CGF掺入TPC的速度降低了复合材料的生物降解过程。因此,CGF / TPCS生物聚合物复合材料可以被分类为复合材料,其具有可生物降解和可再生的环保材料的潜力。 (c)2019 Elsevier B.v.保留所有权利。

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