摘要
制备了聚酰胺(PA)6/马来酸酐(MAH)接枝三元乙丙橡胶(EPDM)(EPDM-g-MAH)/高密度聚乙烯(HDPE)三元共混物,采用扫描电子显微镜观察了三元共混物的相形态,研究了注塑过程的二次剪切流动对该三元共混物相形态的影响,以及三元共混物相形态对其力学性能的影响。结果表明:二次剪切流动有利于PA 6/EPDM-g-MAH/HDPE体系向热力学最稳定的壳核结构发生转变。与PA 6/EPDM-g-MAH二元共混物相比,该三元共混物的力学性能得到较大改善,w(EPDM-g-MAH)为15%时,其Izod缺口冲击强度达85.83 kJ/m2,是纯PA 6的9倍,是同等橡胶含量的PA 6/EPDM-g-MAH二元共混物的2倍。
Polyamide (PA) 6/maleic anhydride (MAH) grafted ethylene-propylene-diene monomer rub- ber (EPDM)/high density polyethylene (HDPE) ternary blends were prepared. The influence of secondary shear on the morphology of PA 6/EPDM-g-MAH/HDPE ternary blends was studied by means of scanning electron microscope (SEM). The results indicate that secondary shear attributes to form core-shell structure which is the steadiest thermodynamic structure. Compared with PA 6/EPDM-g-MAH binary blends, the mechanical proper- ties of the ternary blends were improved obviously. When the mass content of EPDM-g-MAH is 15%, the Izod notched impact strength of PA 6/EPDM-g-MAH/HDPE blends reaches 85.83 kJ/m: which is 9 times of pure PA 6 and 2 times of PA 6/EPDM-g-MAH binary blends under the same rubber content.
出处
《合成树脂及塑料》
CAS
北大核心
2013年第3期1-4,共4页
China Synthetic Resin and Plastics
关键词
聚酰胺6
马来酸酐接枝三元乙丙橡胶
高密度聚乙烯
三元共混物
冲击强度
相形态
polyamide 6
maleie anhydride grafted ethylene-propylene-diene monomer
high density poly- ethylene
ternalT blend
impact strength
morphology