Effect of chemical treatment on the properties of coir fiber reinforced polypropylene and polyethylene composites

S Sultana Mir, M Hasan, SMN Hasan… - Polymer …, 2017 - Wiley Online Library
Polymer Composites, 2017Wiley Online Library
Chemical treatment of reinforcement material is one of the main ways of improving the
mechanical properties of natural fiber reinforced polymer composites. In the present study,
coir fiber was used as reinforcement material, while polypropylene (PP) and polyethylene
(PE) polymer were used as matrix material. Before reinforcing with polymer, raw coir fiber
was chemically treated with basic chromium sulfate and sodium bicarbonate in a sieve
shaker. Hot‐pressed method was used for composite manufacturing during which the fiber …
Chemical treatment of reinforcement material is one of the main ways of improving the mechanical properties of natural fiber reinforced polymer composites. In the present study, coir fiber was used as reinforcement material, while polypropylene (PP) and polyethylene (PE) polymer were used as matrix material. Before reinforcing with polymer, raw coir fiber was chemically treated with basic chromium sulfate and sodium bicarbonate in a sieve shaker. Hot‐pressed method was used for composite manufacturing during which the fiber loading was varied at 0, 5, 10, 15, and 20 wt%. Comparison of the properties of raw and chemically treated coir fiber reinforced PP and PE was conducted. Mechanical characteristics of the composites were evaluated using tensile, flexural, impact, and hardness tests. Water absorption test was conducted to know water uptake characteristics. Microstructural analysis using a scanning electron microscope was performed to observe the adhesiveness between the matrix and the fiber. Thermogravimetric analysis was done to observe the physical and chemical changes in fiber and composites. The results showed that chemical treatment improved the physical, mechanical, and thermal properties of the manufactured composites. PP composites had better properties as compared to PE composites, while higher fiber loading resulted in better mechanical properties of the resultant composites. POLYM. COMPOS., 38:1259–1265, 2017. © 2015 Society of Plastics Engineers
Wiley Online Library
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