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10th International Conference on Mechanical Engineering, ICME 2013 Effect of chemical treatment on the mechanical and physical properties of wood saw dust particles reinforced polymer matrix composites

机译:第十次国际机械工程会议,ICME 2013效果化学处理对木锯粉尘颗粒增强聚合物基复合材料的机械和物理性质的影响

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Wood saw dust is being considerably used in reinforcing polymer both from a scientific and a commercial point of view over the last decades. In this study, three different types of wood saw dusts were treated with 10% NaOH solution separately. Both chemically treated and untreated wood saw dust particles reinforced polymer matrix composites were prepared and their tensile strengths and water absorption behaviour were studied. In order to know the water absorption behaviour, both chemically treated and untreated wood saw dust reinforced polymer matrix composites were weathered in water at ambient temperature for different time periods. Experimental results showed that the tensile strength of the composites substantially increases due to chemical treatment of the wood particles. After calculation of water uptake, plot of percentage of water absorption versus weathering period was obtained. It has been revealed that chemical treatment of the reinforcing wood particles increases the water absorption of the composites. Results also indicated that water absorption of the composites increases with increasing percentage of wood particles and weathering period. SEM micrograph of the composites exhibited large cavity and air bubble on the tensile fracture surfaces of the composites. The underlying reasons related to the experimentally observed tensile and water absorption behaviour of the developed composites have been discussed in this paper.
机译:木材锯尘在过去几十年中,在从科学和商业角度来看,加强聚合物。在这项研究中,分别用10%NaOH溶液处理了三种不同类型的木锯粉尘。制备化学处理和未处理的木锯粉尘颗粒增强聚合物基质复合材料,研究了它们的拉伸强度和吸水性。为了了解吸水性行为,在不同时间段的环境温度下,化学处理和未处理的木锯粉末粉尘增强聚合物基质复合材料在水中被风化。实验结果表明,复合材料的拉伸强度由于木材颗粒的化学处理而显着增加。在计算水吸收后,获得了吸水性百分比与耐候性时期的曲线图。据揭示了增强木颗粒的化学处理增加了复合材料的吸水性。结果还表明,复合材料的吸水率随着木材颗粒和耐候性的百分比增加而增加。复合材料的SEM显微照片在复合材料的拉伸裂缝表面上表现出大的腔体和气泡。本文讨论了与实验观察到的显式观察到的拉伸和吸水行为有关的潜在原因。

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