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Effect of glass fiber loading and reprocessing cycles on the mechanical, thermal, and morphological properties of isotactic polypropylene composites

机译:玻璃纤维负载和再加工循环对等规聚丙烯复合材料力学、热学和形貌性能的影响

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摘要

In this study, a preliminary finding is carried out to obtain the optimum E-glass fiber content in polypropylene (PP) plastic products using loadings of 5, 10, 20, 30, and 40 wt. The formulation with the optimum loading of 10 wt glass fiber was reprocessed 10 times via extrusion and compression molding techniques to simulate actual recycling and impacts on service life properties such as mechanical, toughness, chemical, thermal, composition, and morphology. In the result, mechanical properties were lost after each reprocessing without effect on the chemical properties and elemental compositions. The thermal studies showed a decrease in degradation temperatures with the onset degradation temperature (T-Onset) for the one-time reprocessed PP recorded at 336.93?degrees C with a maximum rate of weight loss (T-Max) at 427.68?degrees C which further reduced to 259.90(?)degrees C (T-Max of 388.47?degrees C) after 10 extrusion run showing one-step decomposition patterns. This work provides that glass fiber-reinforced plastics should not be reprocessed beyond 3 times except when refreshed with the addition of virgin PP to make up for the lost property. This will be very useful for manufacturers who want to simultaneously save costs (retain profit margin) and maintain the environment.
机译:在这项研究中,初步发现在5、10、20、30和40 wt%的负载下,聚丙烯(PP)塑料制品中的最佳E-玻璃纤维含量。通过挤出和压缩成型技术对最佳负载量为 10 wt% 玻璃纤维的配方进行了 10 次再加工,以模拟实际回收及其对使用寿命特性(如机械、韧性、化学、热、成分和形态)的影响。结果,每次再加工后机械性能都会下降,而不会影响化学性质和元素组成。热研究表明,一次性再加工PP的降解温度降低,在336.93°C时开始降解温度(T-Onset),最大失重率(T-Max)在427.68°C时进一步降低至259.90(?)10 次挤压运行后 C 度(T-Max 为 388.47?C 摄氏度),显示出一步分解模式。这项工作规定,玻璃纤维增强塑料的再加工不应超过 3 次,除非使用添加原生 PP 进行刷新以弥补损失的财产。这对于希望同时节省成本(保持利润率)和维护环境的制造商非常有用。

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