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Influence of the Surface Modification of Calcium Carbonate on Polyamide 12 Composites

机译:碳酸钙的表面改性对聚酰胺12复合材料的影响

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摘要

In previous investigations, it was found that the thermal properties of a polyamide 12 compound can be manipulated, using a designed filler, to improve the melting as well as crystallization behavior, determined for selective laser sintering. A common downside of the introduction of a non-flexing mineral filler is the reduction of the mechanical properties, such as ductility. This paper investigates the influence of content and surface modification of limestone on the mechanical properties. The aim is to understand the effect of an optimized coupling agent on the properties of a compound, containing polyamide 12 filled with 10 wt % of surface modified calcium carbonate. A range of four mineral filler modifications was chosen to investigate their coupling effect, namely 6-amino hexanoic acid, -caprolactam, -arginine or glutamic acid. The in advance surface modified fillers were then each used in combination with the polyamide 12 in a twin-screw extrusion process. With an optimized surface modifying agent, the tensile strength as well as elongation at break can be improved in comparison with uncoated filler implementation, such that up to 60% of the loss of ductility and toughness of a final part when using an untreated filler could be regained using an optimized surface modifier at a correct amount. With the tested filler grade and the specific tested filler amount, the optimized amount of 6-amino hexanoic acid was approx. 2.5 mmol of treatment agent per 100 m of CaCO . These found improvements in a twin-screw extruded polyamide 12 compound show the possible usage of modified calcium carbonate as a functional filler in additive manufacturing and can potentially be transferred in a subsequent investigation in the selective laser sintering process.
机译:在先前的研究中,发现可以使用设计的填料来控制聚酰胺12化合物的热性能,以改善熔融和结晶行为(确定用于选择性激光烧结)。引入非挠性矿物填料的常见缺点是降低了机械性能,例如延展性。本文研究了石灰石的含量和表面改性对力学性能的影响。目的是了解优化的偶联剂对包含填充有10 wt%表面改性碳酸钙的聚酰胺12的化合物的性能的影响。选择了四种矿物填料修饰物以研究它们的偶联作用,即6-氨基己酸,-己内酰胺,-精氨酸或谷氨酸。然后将预先表面改性的填料在双螺杆挤出工艺中分别与聚酰胺12结合使用。与未涂覆的填料相比,使用优化的表面改性剂可以提高抗张强度和断裂伸长率,从而在使用未处理的填料时,最终零件的延展性和韧性损失高达60%。使用优化的表面改性剂以正确的量重新获得。在测试的填料等级和特定的测试填料量的情况下,6-氨基己酸的最适量约为。每100 m CaCO 2.5毫摩尔处理剂。在双螺杆挤出的聚酰胺12化合物中发现的这些改进表明,改性碳酸钙可以用作增材制造中的功能性填料,并且有可能在选择性激光烧结工艺的后续研究中转移。

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