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Mechanical Properties of PP/Clay Nanocomposites Prepared from Masterbatch: Effect of Nanoclay Loadings and Re-Processing

机译:母料制备的PP /粘土纳米复合材料的力学性能:纳米粘土载荷和重新加工的影响

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PP/clay nanocomposites samples of 1st and 2nd cycles (recycle) and different nanoclay loadings (i.e. 0, 5, 10, 15 wt%) samples were made by utilizing twin-screw extruder and injection molding machine. The samples were then characterized using a tensile test machine. The tensile tests results showed that modulus of elasticity and tensile strength of the nanocomposites samples for both 1st and 2nd cycles were all higher than the neat PP, and increased with increasing nanoclay loadings. The enhancements of modulus of elasticity (as compared to the neat PP) for 1st cycle of the nanocomposites were about 38.08%, 49.33%, and 78.65% for NC-5-I, NC-10-I, and NC-15-I, respectively. Whereas, for the 2nd cycle of the nanocomposites were about 44.33%, 59.59%, and 84.69% for NC-5-II, NC-10-11, and NC-15-I, respectively. This indicated that the incorporation of nanoclay in the PP matrix significantly increased mechanical properties, especially modulus of elasticity and tensile strength of the nanocomposites. Additionally, values of modulus of elasticity and tensile strength of 1st cycle and 2nd cycle of PP/clay nanocomposites were compared by plotting them in two graphs. The plots revealed that reprocessing of the nanocomposites did not significantly influence the mechanical properties of the nancomposites.
机译:通过采用双螺杆挤出机和注塑机制备第一和第二循环(再循环)和不同纳米粘土载量(即0,5,10,15wt%)样品的PP /粘土纳米复合材料。然后使用拉伸试验机表征样品。拉伸试验结果表明,第1和第2循环的纳米复合材料样品的弹性模量和抗拉强度均高于整齐的PP,并随着纳米粘土载荷的增加而增加。对于NC-5-I,NC-10-I和NC-15-I的1ST纳米复合材料的第一个纳米复合材料的弹性模量(与纯PP)的增强约为38.08%,49.33%和78.65% , 分别。然而,对于NC-5-II,NC-10-11和NC-15-I的第二循环分别为约44.33%,59.59%和84.69%。这表明在PP基质中掺入纳米粘土显着增加了机械性能,特别是纳米复合材料的弹性模量和抗拉强度。另外,通过在两个图中绘制它们通过在两个图中绘制它们的第一个循环和第2循环和第2循环的抗拉强度和第2循环的拉伸强度的值。绘图显示,纳米复合材料的再处理没有显着影响非复合材料的机械性能。

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