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Effect of processing method on the properties of multifunctional exfoliated graphite nanoplatelets/ polyamide 12 composites

机译:加工方法对多功能片状石墨纳米片/聚酰胺12复合材料性能的影响

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摘要

The focus of this study is to determine the effect of the processing method on the mechanical, thermo-mechanical and electrical properties of graphite nanoplatelets (GNP) reinforced polyamide 12 (PA12) composites. The two processing methods studied are injection molding (IM) and selective laser sintering (SLS). The composites made by SLS exhibited higher tensile modulus, comparable or better flexural properties and lower impact strength than those made by IM. This enhancement is supported by the higher degree of crystallinity and more effective interfacial interactions observed in the SLS composites compared to those made by IM. At higher GNP content the property enhancement is compromised due to the presence of GNP agglomerates. Furthermore, it was found that the SLS composites filled with 5 wt% of GNP exhibited four orders of magnitude higher electrical conductivity compared to their counterpart made by IM which exhibited electrical properties similar to the neat PA12. The understanding of the processing-structure-property relationship investigated here can lead to composites engineered for targeted applications.
机译:这项研究的重点是确定加工方法对石墨纳米片(GNP)增强聚酰胺12(PA12)复合材料的机械,热机械和电性能的影响。研究的两种加工方法是注塑(IM)和选择性激光烧结(SLS)。与IM制造的复合材料相比,SLS制造的复合材料表现出更高的拉伸模量,相当或更好的弯曲性能以及更低的冲击强度。与IM相比,在SLS复合材料中观察到的更高的结晶度和更有效的界面相互作用为这种增强提供了支持。在GNP含量较高的情况下,由于存在GNP团聚体,因此性能增强受到损害。此外,发现填充有5wt%的GNP的SLS复合材料与由IM制备的对应物相比,其显示出与纯PA12相似的电性能,其表现出高四个数量级。对此处研究的加工-结构-性能关系的理解可以导致针对目标应用而设计的复合材料。

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