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首页> 外文期刊>Journal of Materials Research and Technology >Facile preparation and immediate effect of novel flow modifiers for engineering the flowability of high-filled composites
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Facile preparation and immediate effect of novel flow modifiers for engineering the flowability of high-filled composites

机译:用于工程的新型流动改性剂的容易制备和立即影响高填充复合材料的流动性

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摘要

This study revealed that the synthesis of effective flow modifiers using diamine monomers and fatty acid reduces the melt viscosity of polyamide 66 (PA66) composites. Moreover, the study provided insights into the rheological and mechanical properties of these reinforced polymers. In particular, the oligomers hexamethylenediamide, dodecamethylene diamide, 4,40-methylenebis(cyclohexylamide) (i.e., HMDA, DMDA, MCHA) to modify the PA66 were prepared from hexamethylenediamine, dodecamethylene diamine, 4,40-methylenebis( cyclohexylamine). The synthesized modifiers showed thermal stability in the PA66 processing temperature. Further, the chemical similarity increased due to amide bonds in the backbone of the flow modifiers, showing good compatibility with PA66. Additionally, PA66/glass fiber (GF) composites containing the flow modifier showed enhanced rheological and mechanical properties. The flow modifiers significantly improved the tensile strength and flexural modulus of the PA66/GF composites. The proposed synthetic method is straightforward, opening up a new strategy for reducing the melt viscosity of PA66 without degradation of the mechanical properties. The method improves the compatibility of the PA66/GF composites even in high amounts of GF, achieving effective polymer processing for practical applications.
机译:该研究表明,使用二胺单体和脂肪酸合成有效的流动改性剂,降低了聚酰胺66(PA66)复合材料的熔体粘度。此外,该研究提供了对这些增强聚合物的流变和力学性能的见解。特别地,由六亚甲基二胺,十二烷基亚甲基二胺,4,40-亚甲基比(环己胺)制备用于改性PA66的二聚体六亚甲基二胺,十二烷基二甲基二胺,十二烷基二甲基二甲基二胺,4,40-亚甲基胺)(即,HMDA,DMDA,MCHA)。合成改性剂在PA66加工温度下显示出热稳定性。此外,由于流动改性剂的骨干中的酰胺键,化学相似性增加,显示出与PA66的良好相容性。另外,含有流动改性剂的PA66 /玻璃纤维(GF)复合材料显示出增强的流变和机械性能。流动改性剂显着提高了PA66 / GF复合材料的拉伸强度和弯曲模量。所提出的合成方法是简单的,开启了降低PA66熔体粘度的新策略,而不会降低机械性能。该方法即使在大量GF中提高了PA66 / GF复合材料的相容性,实现了实际应用的有效聚合物处理。

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