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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Properties and morphology of polyamide 6 hybrid composites containing potassium titanate whisker and liquid crystalline copolyester
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Properties and morphology of polyamide 6 hybrid composites containing potassium titanate whisker and liquid crystalline copolyester

机译:含钛酸钾晶须和液晶共聚酯的聚酰胺6杂化复合材料的性能和形貌

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Polyamide 6 (PA6) hybrid composites reinforced with potassium titanate whiskers (K_2Ti_6O_(13)) and liquid crystalline polymer (LCP) were prepared in a twin-screw extruder followed by injection moulding. The whiskers were surface treated with tetrabutyl orthotitanate prior to blending. Static tensile measurements showed that the tensile strength and modulus of the composites tend to increase with increasing whisker content. However, Izod impact tests indicated that the hybrid composites show little variation in the impact strength with the addition of whisker content up to 10 wt%, thereafter the impact energy shows an obvious decrease with increasing whisker content. Scanning electron microscopic observations revealed that the oriented LCP fibrils were formed in the skin section of hybrid composites containing whisker content < 10 wt%, whilst spherical droplets were dispersed in the skin section of hybrids containing whisker content >= 15 wt%. Torque measurements showed that the LCP is very effective in reducing the melt viscosities of PA6/K_2Ti_6O_(13) composites. Finally, thermogavimetric analysis showed that the hybrid composites with higher whisker content exhibit good heat resistance properties. The hybrid effects of the two reinforcements on the mechanical properties and compatibility of these hybrid composites are discussed.
机译:在双螺杆挤出机中制备用钛酸钾晶须(K_2Ti_6O_(13))和液晶聚合物(LCP)增强的聚酰胺6(PA6)杂化复合材料。在共混之前,将晶须用原钛酸四丁酯进行表面处理。静态拉伸测量结果表明,随着晶须含量的增加,复合材料的拉伸强度和模量趋于增加。但是,艾佐德冲击试验表明,当晶须含量增加到10 wt%时,杂化复合材料的冲击强度几乎没有变化,此后冲击能量随晶须含量的增加而明显降低。扫描电子显微镜观察显示取向的LCP原纤维在晶须含量<10wt%的杂化复合物的表皮部分中形成,而球形液滴分散在晶须含量> = 15wt%的杂化物的表皮部分中。扭矩测量结果表明,LCP在降低PA6 / K_2Ti_6O_(13)复合材料的熔体粘度方面非常有效。最后,热重分析表明,晶须含量较高的杂化复合材料具有良好的耐热性能。讨论了两种增强材料对这些杂化复合材料的机械性能和相容性的杂化作用。

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