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Influence of calcium carbonate on polyamide 12 regarding melting, formability and crystallization properties

机译:碳酸钙对聚酰胺12的熔融,可成型性和结晶性能的影响

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Controlling and adjusting the thermal properties of a compound to improve the additive manufacturing process of a polymer matrix through selective laser sintering is of key importance to achieve an optimized final part density as well as hardness. In the past, the purpose of adding mineral fillers to polymers was primarily one of cost reduction. Today, however, fillers are more often used to fulfil a functional role, such as improved thermal or mechanical properties of the polymer composite [1]. In this study, the influence of calcium carbonate as a mineral filler particle on the thermal properties in compression-molded polyamide 12 was investigated. The particle size distribution and the filler amount within the polyamide 12 matrix were varied. The melt viscosity at 190 degrees C, the melting speed, melting and crystallization point as well as crystallization time at 170 and 172 degrees C were analyzed. A relationship between these properties and the implementation of a specific amount of calcium carbonate with a certain particle size distribution was observed. The study concludes, that the thermal and flow properties of a polyamide 12 matrix can potentially be manipulated to improve a laser thermal sintering process insofar as the layer melt can be optimized as well as the crystallization process speeded up.
机译:控制和调节化合物的热性能,以通过选择性激光烧结来改善聚合物基体的增材制造工艺,对于实现优化的最终零件密度和硬度至关重要。过去,向聚合物中添加矿物填​​料的目的主要是降低成本。然而,如今,填料更常用于实现功能性作用,例如改善聚合物复合材料的热或机械性能[1]。在这项研究中,研究了碳酸钙作为矿物填料颗粒对压缩成型聚酰胺12的热性能的影响。改变聚酰胺12基质内的粒度分布和填料量。分析了在190摄氏度下的熔体粘度,在170摄氏度和172摄氏度下的熔融速度,熔融和结晶点以及结晶时间。观察到这些性质与具有一定粒度分布的特定量的碳酸钙的实施之间的关系。该研究得出的结论是,只要可以优化层熔体并加快结晶过程,就可以潜在地控制聚酰胺12基体的热性能和流动性以改善激光热烧结工艺。

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