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The Toughening Mechanism of Polyamide 6/EPDM-M/Nano-CaCO3 Ternary Composites with Sandbag Microstructure

机译:聚酰胺6 / EPDM-M / NANO-CACO3三元复合材料的增韧机理与沙袋微观结构

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Ternary composites of Polyamide 6 (PA6), the mixture of Maleated and Unmaleated Ethylene Propylene Diene terpolymer rubber (named EPDM-M), and nano Calcium Carbonate (nano-CaCO3) were prepared by one-step and two-step compounding routes. The toughness of the composites was tested by impact test. The microstructure morphology of impact surface and etched impact surface was investigated through scanning electron microscope (SEM). The result shows that toughness of the ternary composites with sandbag microstructure was 270 % higher than neat PA6. The SEM morphology shows that strongly elongated microfibrils and deformation are formed in ternary composite with sandbag microstructure, which cause larger shear yielding and crazes in the surrounding matrix to dissipate more impact energy. Additionally, strong ligaments are observed at the crack tip, which could promote plastic deformation and consumption of fracture energy.
机译:聚酰胺6(PA6)的三元复合材料,通过单步和两步复合途径制备马来酸和未分发的乙烯丙烯二烯三元共聚物橡胶(命名为EPDM-M)的混合物和纳米碳酸钙(纳米CACO3)。通过冲击试验测试复合材料的韧性。通过扫描电子显微镜(SEM)研究了冲击表面和蚀刻冲击表面的微观结构形态。结果表明,三元复合材料的韧性与砂袋微结构的韧性高于整齐的PA6。 SEM形态表明,具有砂囊微结构的三元复合材料中形成强烈细长的微纤维和变形,其在周围基质中引起较大的剪切屈服和裂隙以耗散更多的冲击能量。另外,在裂纹尖端观察到强韧带,这可以促进塑性变形和裂缝能量的消耗。

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