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Effect of Core-Shell Morphology on the Mechanical Properties and Crystallization Behavior of HDPE/HDPE- g -MA/PA6 Ternary Blends

机译:核-壳形貌对HDPE / HDPE-g -MA / PA6三元共混物力学性能和结晶行为的影响

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In this paper, the high-density polyethylene/maleic anhydride grafted high-density polyethylene/polyamide 6 (HDPE/HDPE- g -MA/PA6) ternary blends were prepared by blend melting. The binary dispersed phase (HDPE- g -MA/PA6) is of a core-shell structure, which is confirmed by the SEM observation and theoretical calculation. The crystallization behavior and mechanical properties of PA6, HDPE- g -MA, HDPE, and their blends were investigated. The crystallization process, crystallization temperature, melting temperature, and crystallinity were studied by differential scanning calorimetry (DSC) testing. The results show that PA6 and HDPE- g -MA interact with each other during crystallizing, and their crystallization behaviors are different when the composition is different. At the same time, the addition of core-shell particles (HDPE- g -MA/PA6) can affect the crystallization behavior of the HDPE matrix. With the addition of the core-shell particles, the comprehensive mechanical properties of HDPE were enhanced, including tensile strength, elastic modulus, and the impact strength. Combined with previous studies, the toughening mechanism of core-shell structure is discussed in detail. The mechanism of the core-shell structure toughening is not only one, but the result of a variety of mechanisms together.
机译:在本文中,通过共混熔融制备了高密度聚乙烯/马来酸酐接枝的高密度聚乙烯/聚酰胺6(HDPE / HDPE-g -MA / PA6)三元共混物。二元分散相(HDPE- g -MA / PA6)具有核-壳结构,这通过SEM观察和理论计算得到了证实。研究了PA6,HDPE- g -MA,HDPE及其混合物的结晶行为和力学性能。通过差示扫描量热法(DSC)测试研究了结晶过程,结晶温度,熔融温度和结晶度。结果表明,PA6和HDPE-g -MA在结晶过程中相互作用,当组成不同时,它们的结晶行为也不同。同时,核-壳颗粒(HDPE-g -MA / PA6)的添加会影响HDPE基质的结晶行为。通过添加核-壳颗粒,HDPE的综合机械性能得以提高,包括拉伸强度,弹性模量和冲击强度。结合以往的研究,详细讨论了核-壳结构的增韧机理。核-壳结构增韧的机理不仅是一种,而且是多种机理共同作用的结果。

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