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Studies on the Effects of Bentonite (Nanoclay) on the Mechanical Properties of High-Density Polyethylene

机译:膨润土(纳米粘土)对高密度聚乙烯力学性能影响的研究

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In this work, the effect of Bentonite (Nanoclay) on the mechanical and mor-phology properties of HDPE/Nanoclay composite pipe material was investi-gated. This led to the development of a composite material with improved me-chanical properties. The HDPEanoclay composites were produced using an injection moulding machine at 200?C and rotor speed of 50 rpm. The compati-bilizer used in this study was Polyethylene-graft-Maleic Anhydride. Different compositions of nanoclay reinforcements were prepared and added to HDPE resin. A particle size of 425 μm was used in proportions of 0%, 5%, 10%, 15%, and 20% on weight fraction basis. All the composites samples were characterized by Zwick Roell tensile testing machine and Scanning Election Microscopy (SEM). Experimental results obtained showed improvements in the tensile strength, and modulus at the expense of elongation. The maximum tensile strength and modulus was obtained at 10% filler composition. These enhanced properties are due to the homogenous dispersion of nanoclay in HDPE matrix, which is evident from the structure that was evaluated using SEM.
机译:在这项工作中,研究了膨润土(纳米粘土)对HDPE /纳米粘土复合管材的力学和形态学性能的影响。这导致了具有改善的机械性能的复合材料的开发。 HDPE /纳米粘土复合材料是使用注塑机在200°C和50 rpm的转速下生产的。在这项研究中使用的增容剂是聚乙烯接枝的马来酸酐。制备了不同组成的纳米粘土增强材料,并将其添加到HDPE树脂中。以重量分数计,以0%,5%,10%,15%和20%的比例使用425μm的粒度。所有复合材料样品均通过Zwick Roell拉伸试验机和扫描电子显微镜(SEM)表征。获得的实验结果表明抗张强度和模量得到改善,但以伸长率为代价。在10%填料组成下获得最大抗张强度和模量。这些增强的性能归因于纳米粘土在HDPE基质中的均匀分散,这从使用SEM评估的结构中可以明显看出。

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