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Effect of the Compounding Conditions of Polyamide 6 Carbon Fiber and Al2O3 on the Mechanical and Thermal Properties of the Composite Polymer

机译:聚酰胺6碳纤维和Al2O3的混合条件对复合聚合物力学性能和热性能的影响

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摘要

Among the composite manufacturing methods, injection molding has higher time efficiency and improved processability. The production of composites via injection molding requires a pre-process to mix and pelletize the matrix polymer and reinforcement material. Herein, we studied the effect of extrusion process conditions for making pellets on the mechanical and thermal properties provided by injection molding. Polyamide 6 (PA6) was used as the base, and composites were produced by blending carbon fibers and Al2O3 as the filler. To determine the optimum blending ratio, the mechanical properties, thermal conductivity, and melt flow index (MI) were measured at various blending ratios. With this optimum blending ratio, pellets were produced by changing the temperature and RPM conditions, which are major process variables during compounding. Samples were fabricated by applying the same injection conditions, and the mechanical strength, MI values, and thermal properties were measured. The mechanical strength increased slightly as the temperature and RPM increased, and the MI and thermal conductivity also increased. The results of this study can be used as a basis for specifying the conditions of the mixing and compounding process such that the desired mechanical and thermal properties are obtained.
机译:在复合材料制造方法中,注射成型具有更高的时间效率和改进的可加工性。通过注射成型生产复合材料需要进行预处理以将基质聚合物和增强材料混合并造粒。在本文中,我们研究了制粒工艺的挤压工艺条件对注塑成型所提供的机械和热性能的影响。以聚酰胺6(PA6)为基础,并通过混合碳纤维和Al2O3作为填料生产复合材料。为了确定最佳的混合比例,在各种混合比例下测量了机械性能,导热系数和熔体流动指数(MI)。在这种最佳混合比例下,可通过改变温度和RPM条件来生产粒料,这是混合过程中的主要工艺变量。通过应用相同的注射条件制备样品,并测量机械强度,MI值和热性能。机械强度随温度和RPM的增加而略有增加,MI和热导率也增加。这项研究的结果可以用作指定混合和混合过程的条件的基础,从而获得所需的机械和热性能。

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