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Correlation between Internal Structure and Time-Temperature Dependence on Bending Properties of PC/ABS Blend Injection Moldings

机译:PC / ABS共混注塑成型件的内部结构与时变性之间的相关性

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This investigation was directed towards the experimental analysis of bending properties of injection molded PC/ABS blend and GFPC/ABS blend. To study the internal structures of injection molded articles, three point bending tests of as-received and shaved skin layer specimens were carried out at various temperatures and strain rates, and time -temperature superposition principle was applied to bending properties. From the results of bending test, two different straight lines of activation energy were obtained when plotting the temperature dependence of time -temperature shift factor. The activation energy varied by the change of specimen thickness in the case of PC/ABS blend. On the other hand, the activation energy exhibited constant value in spite of the change of thickness in the case of GFPC/ABS blend. It can be considered that PC/ABS blend injection molding has heterogeneous internal structure through thickness, whereas GFPC/ABS blend injection molding has uniform internal structure.Furthermore, the morphology of each article was also examined by scanning electron microscopy. It was obvious that PC/ABS blend had heterogeneous phase distribution through thickness direction, whereas GFPC/ABS blend had uniform distribution. Therefore, the activation energy of PC/ABS blend molding varied dramatically by shaving its skin layer.From the above all results, it appears that the internal structures of polymer blend injection moldings can be understood by using the activation energy obtained by time-temperature superposition.
机译:该研究针对注塑PC / ABS共混物和GFPC / ABS共混物的弯曲性能的实验分析。为了研究注塑制品的内部结构,在不同的温度和应变速率下对接收的和剃过的表皮层样品进行了三点弯曲测试,并将时-温叠加原理应用于弯曲性能。从弯曲试验的结果,绘制时间-温度漂移因子的温度依赖性时,获得了两条不同的活化能直线。在PC / ABS混合物的情况下,活化能随样品厚度的变化而变化。另一方面,在GFPC / ABS共混物的情况下,尽管厚度变化,活化能仍显示恒定值。可以认为PC / ABS共混注模在厚度上具有不同的内部结构,而GFPC / ABS共混注模具有均匀的内部结构。此外,还通过扫描电子显微镜检查了每种制品的形貌。显然,PC / ABS共混物沿厚度方向具有不均匀的相分布,而GFPC / ABS共混物具有均匀的分布。因此,PC / ABS共混成型品的活化能通过剃除其表皮层而发生显着变化。从以上所有结果来看,似乎可以通过使用时间-温度叠加获得的活化能来理解聚合物共混成型品的内部结构。 。

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