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Rheological behavior of polyamide-6/linear low density polyethylene grafted maleic anhydride/monmorillonite nanocomposites and statistical model

机译:聚酰胺-6 /线性低密度聚乙烯接枝马来酸酐/蒙脱土纳米复合材料的流变行为和统计模型

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摘要

Polyamide 6 (PA6) with different linear low density polyethylene grafted maleic anhydride (LDPE-g-MAH) and montmorillonite (MMT) loadings were produced by melt compounding using single screw extruder. In this study a mixture design of experiment covered three ingredients which contribute to the rheological properties, PA6, LLDPE-g-MAH and MMT multiple level setting were studied on their rheological properties. The rheological test conducted via capillary rheometer to obtain apparent rheological properties which were been converted to real rheological properties through Bagley correction. The additional of LLDPE-g-MAH has increased the viscosity of the system at low shear rate contributed by the interfacial reaction between PA6 with functional group of LLDPE-g-MAH. The bonding between PA6 and LLDPE-g-MAH was sensitive to shear thus no significant different in viscosity observed at high shear rate with different level of LLDPE-g-MAH. However, the incorporation of MMT has shown to lower the overall viscosity due to good dispersion of MMT results in higher interaction induced between polymer chain which was stronger than the adhesion forces between the polymer chain and the die surface wall. The rheological data used to predict the fluid consistency coefficient (m) and flow behavior index (n) within the design space. where m = 28.07PA6 + 448.67LLDPE -840.73MMT n = 0.00560PA6 - 0.01099LLDPE + 0.02946MMT PA6 is PA6 content in wt % from 85% to 100% LLDPE is LLDPE-g-MAH content in wt % from 0% to 10% MMT is MMT content in wt % from 0% to 5%
机译:通过使用单螺杆挤出机熔融混炼生产具有不同线性低密度聚乙烯接枝马来酸酐(LDPE-g-MAH)和蒙脱土(MMT)的聚酰胺6(PA6)。在这项研究中,混合实验设计涵盖了三种有助于流变性能的成分,研究了PA6,LLDPE-g-MAH和MMT多级设定的流变性能。通过毛细管流变仪进行的流变测试获得了明显的流变特性,并通过Bagley校正将其转换为实际的流变特性。 PA6与LLDPE-g-MAH官能团之间的界面反应有助于在低剪切速率下添加LLDPE-g-MAH,从而增加了系统的粘度。 PA6和LLDPE-g-MAH之间的键合对剪切敏感,因此在高剪切速率下,不同水平的LLDPE-g-MAH的粘度没有显着差异。然而,由于MMT的良好分散性,MMT的掺入已显示出降低了总粘度,导致聚合物链之间引起更高的相互作用,该相互作用强于聚合物链与模具表面壁之间的粘附力。用于预测设计空间内流体稠度系数(m)和流动行为指数(n)的流变数据。其中m = 28.07PA6 + 448.67LLDPE -840.73MMT n = 0.00560PA6-0.01099LLDPE + 0.02946MMT PA6是PA6含量,以重量%计从85%到100%LLDPE是LLDPE-g-MAH含量,以重量%计从0%到10 MMT%是MMT含量,以重量%计为0%至5%

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    Koay Yee Farn;

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  • 年度 2013
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