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Thermal aging influence on the damage mechanisms of fully recycled composite-reinforced polypropylene/polyethylene blend

机译:热老化对全再循环复合材料加强聚丙烯/聚乙烯共混物损伤机理的影响

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摘要

The main aim of this work is to study the effect of thermal aging on damage mechanisms of a totally recycled composite. The studied material was elaborated by injection molding from a mixture of both recycled matrix (polypropylene-polyethylene blend) and reinforcement (short carbon fibers). Damage mechanisms analysis was carried out using scanning electron microscope (in situ three point bending tests performed on specimens taken at different times of oxidation under different temperatures: 120, 130, and 140 degrees C. Damage mechanisms were identified for different material states. It was shown that thermal aging affects the fiber-matrix interfacial zone while good adhesion between the reinforcement and the matrix was observed for the virgin sample. Furthermore, a quantitative analysis was performed at the local scale in a representative zone of the tensile area. Representative local damage indicators were defined. Results display clearly that damage evolutions always begin during the induction period. Thermal aging effect was then analyzed through the comparison of damage thresholds and kinetics for different material states after different times of oxidation. POLYM. COMPOS., 40:3342-3350, 2019. (c) 2019 Society of Plastics Engineers
机译:这项工作的主要目的是研究热老化对完全再循环复合材料的损伤机制的影响。通过从两种再循环基质(聚丙烯 - 聚乙烯共混物)和增强(短碳纤维)的混合物中注射成型来阐述研究的材料。使用扫描电子显微镜进行损伤机制分析(原位三点弯曲试验在不同温度下在不同氧化次数所拍摄的样品中:120,130和140℃。鉴定不同材料状态的损伤机制。它是表明,热老化影响了纤维 - 基质界面区,同时观察到纤维 - 矩阵和基质之间的良好粘合,用于维生醛样品。此外,在拉伸区域代表区的局部规模进行定量分析。代表局部损害定义了指标。结果清楚地显示损坏的进化始终在诱导期间开始。然后通过比较在不同的氧化时不同材料状态的损伤阈值和动力学进行热老化效果。Polym。Compos。,40:3342- 3350,2019。(c)2019塑料工程师协会

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