8 research outputs found
Efect of maleated anhydride on mechanical properties of rice husk filler reinforced PLA Matrix Polymer Composite
Polylactic acid (PLA) formulated from corn starch has a bright potential to replace the non-renewable petroleum-based
plastics. The combination of PLA and natural fbre has gained interest due to its unique performance, as reported in many
researches and industries. Meanwhile, rice husk produced as the by-product of rice milling can be utilised, unless it is
turned completely into waste. Therefore, in the present study, the rice husk powder (RHP) was used as a fller in the PLA,
so to determine the infuence of the fller loading on the mechanical properties of the PLA composite. A coupling agent was
selected for treatment from two options, i.e., maleic anhydride polypropylene (MAPP) and maleic anhydride polyethylene
(MAPE), by applying the agents with various loading contents, such as 2, 4 and 6 wt%. The composite was fabricated by
using the hot compression machine. Both the treated and untreated RHP–PLA composites were characterised via the tensile,
fexural and impact strength tests. The increase in the RHP loading content led to the decrease in the tensile and fexural
strengths. The applications of the coupling agents (MAPE and MAPP) did not improve the tensile and impact strengths, but
the fexural strength was enhanced
Effect of compatibilizing agents on the mechanical properties of high-density polyethylene/olive husk flour composites
International audienceThe main objective of this research was to investigate the effect on the thermal and mechanical properties of the addition of two different compatibilizing agents, malefic anhydride-grafted polyethylene (PE) [synthesized in a solution state (MAPE) and commercial (XA255)], to olive husk flour, high-density polyethylene (HDPE) composites. The composites contain 30 wt % of olive husk flour and a variable proportion of compatibilizer (3, 5, and 7 wt %). The grafting reaction was followed by Fourier transform infrared, and the grafting degree was evaluated by means of titration. The effect of grafting on the thermal properties of MAPE was observed by ATG/DTG. The mechanical and thermal properties of the composite were investigated. A morphological study of the composite reveals that there is a positive effect of compatibilizing agent on interfacial bonding
