The Green Composites: Millet Husk Fiber (MHF) Filled Poly Lactic Acid (PLA) and Degradability Effects on Environment

A. A. Hammajam, A. M. El-jummah, Z. Ismarrubie
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引用次数: 10

Abstract

This study provides an overview on green composites degradability. Practically, the main drawbacks of using natural fibers are their poor dimensional stability, degradability and high degree of moisture absorption. While, end use of product from natural fiber filled or reinforced composites has become subject of concern to material engineers and scientist. The major properties of natural fiber reinforced polymer composites are greatly dependent on the hydrophilic tendency and dimensional stability of the fibers used, morphology aspect ratio for long fiber, while voids for powder fibers. The effects of chemical treatments on cellulosic fibers that are used as reinforcements for thermoplastics were studied. The chemical source for the treatments is alkalization. The significance of chemically-treated natural fibers is seen through the improvement of mechanical properties. The untreated fiber composites degrade faster in municipal soil compared to treated fiber composites.
小米壳纤维(MHF)填充聚乳酸(PLA)的绿色复合材料及其对环境的降解作用
本研究综述了绿色复合材料的降解性。实际上,使用天然纤维的主要缺点是其尺寸稳定性差、可降解性差和吸湿性高。然而,天然纤维填充或增强复合材料产品的最终用途已成为材料工程师和科学家关注的主题。天然纤维增强聚合物复合材料的主要性能在很大程度上取决于所用纤维的亲水性和尺寸稳定性、长纤维的形态纵横比以及粉末纤维的空隙率。研究了化学处理对用作热塑性塑料增强材料的纤维素纤维的影响。处理的化学来源是碱化。化学处理的天然纤维的重要性可以从机械性能的改善中看出。与处理过的纤维复合材料相比,未处理过的光纤复合材料在城市土壤中降解更快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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