Title of article :
Prediction of the Elastic Modulus of Wood FlourlKenaf Fibre/Polypropylene Hybrid Composites.
Author/Authors :
Mirbagheri, Jamal university of tehran - College of Natural Resources - Department of Wood and Paper Science and Technology, تهران, ايران , Tajvidi, Mehdi university of tehran - College of Natural Resources - Department of Wood and Paper Science and Technology, تهران, ايران , Ghasemi, Ismaeil Iran Polymer and Petrochemical Institute - Processing Faculty - Department of Plastic, تهران, ايران , Hermanson, John C. Advance Housing Research Centre, One Gifford Pinchot. - usns Forest Laboratory, USA.
From page :
271
To page :
278
Abstract :
The prediction of the elastic modulus of short natural fibre hybrid composites has been investigated by using the properties of the pure composites through the rule of hybrid mixtures (RoHM) equation. In this equation, a hybrid natural fibre composite assumed as a system consisting of two separate single systems, namely particle/polymer and short-fibre/polymer systems. However, there is no interaction between particles and short fibres. Polypropylene was used as the polymer matrix and 40-80 mesh kenaf fibre and 60-100 mesh wood flour were used as the fibre and the particulate reinforcements, respectively. Hybrid composites were produced by kenaf fibre/wood flour ratios of 40:0, 30:10, 20:20. 10:30, and 0:40. Maleic anhydride and OCP have been also used as the coupling agent and initiator, respectively. Mixmg process carried out in an internal mixer at 180°C and 60 rpm. The rule of hybrid mixtures (RoHM) equation has been employed using the weight and volume fractions of the reinforcements. The relationship between experimental and predicted values was evaluated and the accuracy of the estimation of the model was controlled. The results indicated that RoHM equation is able to predict the elastic modulus of the composites. The comparison between experimental and predicted values showed that they are in good agreement
Keywords :
rule of hybrid mixtures , kenaf fibre , wood flour , polypropylene , hybrid composites , modulus of elasticity.
Journal title :
Iranian Polymer Journal
Journal title :
Iranian Polymer Journal
Record number :
2583223
Link To Document :
بازگشت