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Study on Influence of Co-Injection Molding Process on Self-Reinforcing Characteristics of Self-Reinforced Polypropylene Composite via Visualization

机译:共注塑过程对通过可视化自增强聚丙烯复合材料自增强特性的影响

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摘要

Self-reinforced polymer composites (SRCs), which are fabricated by combining the same type of polymer with different properties into one body, have high specific strength, no interfacial heterogeneity, and ease of recycling. To better understand the relationship between the molding process and mechanical properties of SRCs, the co-injection molding process was used in this study to process SRCs samples. Further, a self-developed visualized experimental device was used to observe the flow of the polymer melt directly during co-injection molding. From the visualization results, it was found that the tensile properties of SRCs are positively correlated with the absolute value of the slopes of the velocity change at lower melt temperature. When the melt temperature increases to a certain degree, the tensile properties of SRCs are much lower than that of lower melt temperature. The shear rate inside the melt flow and the shear rate between the melt and the matrix wall play a major role in the self-reinforcing characteristics of the SRC.
机译:通过将相同类型的聚合物与不同性质组合成一个体的相同类型的聚合物来制造的自增强聚合物复合材料(SRC)具有高比强度,无界面异质性,并且易于再循环。为了更好地理解Srcs的模塑过程和机械性能之间的关系,在该研究中使用共注注塑过程以处理SRCS样品。此外,使用自发的可视化实验装置在共注塑期间观察聚合物熔体的流动。从可视化结果,发现Srcs的拉伸性能与较低熔体温度下速度变化的斜坡的绝对值呈正相关。当熔体温度升高到一定程度时,Srcs的拉伸性质远低于较低熔体温度的抗拉性特性。熔体流动内的剪切速率和熔体和基质壁之间的剪切速率在SRC的自增强特性中起主要作用。

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