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Experimental determination of the mechanical behavior of glass fiber reinforced polypropylene composites

机译:实验测定玻璃纤维增​​强聚丙烯复合材料的力学行为

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Thermoplastic composites have been widely used in structural and engineering applications, due to their high specific strength and stiffness, high strain to failure, better impact strength, shorter processing cycle time, infinite shelf life, and recyclability. This paper discusses the influence of the forming pressure and coupler concentration on the mechanical behavior of glass fiber reinforced polypropylene composite laminates. The Design of Experiments' (DOE) full factorial approach was adopted for conducting the composite laminate fabrication experiments. The thermoplastic composite laminates were fabricated in a hot compression molding machine, using the film stacking technique. This is an innovative approach to develop thermoplastic composite laminates, using the available low cost raw materials, instead of high end prepreg materials. As per the ASTM standard, the tensile and flexural tests were carried out, in order to evaluate the influence of the parameters on the mechanical behavior of the composite laminates. The Tensile and flexural strengths of the thermoplastic composite laminates were the responses measured to identify the most influencing parameter. The experimental results show that the increase in forming pressure and coupler concentration initially increases both the mechanical properties, and then decreases the properties of the composite laminates. Compared to the coupler concentration, the forming pressure greatly improves both the tensile and flexural properties. Using the Scanning Electron Microscope (SEM), a morphological analysis was carried out to observe the bonding between the matrix and reinforcement.
机译:热塑性复合材料已广泛用于结构和工程应用,由于其高比强度和刚度,高应变失效,更好的冲击强度,更短的加工循环时间,无限保质期和可回收性。本文讨论了成形压力和耦合器浓度对玻璃纤维增​​强聚丙烯复合层压板的力学行为的影响。采用实验(DOE)全部造成方法的设计进行了复合层压材料制造实验。使用薄膜堆叠技术,在热压缩成型机中制造热塑性复合层压板。这是一种采用可用的低成本原料开发热塑性复合材料层压板的一种创新方法,而不是高端预浸原料。根据ASTM标准,进行拉伸和弯曲试验,以评估参数对复合层压板的力学行为的影响。热塑性复合层压板的拉伸和弯曲强度是测量的响应,以鉴定最大的影响参数。实验结果表明,成形压力和偶联浓度的增加最初增加了机械性能,然后降低了复合层压板的性质。与偶联剂浓度相比,成形压力大大提高了拉伸和弯曲性能。使用扫描电子显微镜(SEM),进行了形态学分析,以观察基质和增强件之间的键合。

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