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首页> 外文期刊>Polymer engineering and science >Comparison of Superimposed Effects in High-Shear-Rate Capillary Rheology of Polystyrene, Polypropylene, and Linear Low-Density Polyethylene Melts
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Comparison of Superimposed Effects in High-Shear-Rate Capillary Rheology of Polystyrene, Polypropylene, and Linear Low-Density Polyethylene Melts

机译:聚苯乙烯,聚丙烯和线性低密度聚乙烯熔体的高剪切速率毛细管流变学叠加效应的比较

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摘要

Polymer melts exhibit unique rheological behaviors at high shear rate up to 10(6) s(-1), which is a common phenomenon in micro-injection molding. Both online and commercial capillary rheometers, which were modified to allow regulation of back pressure, were used for measuring the melt shear viscosities of polystyrene (PS), polypropylene (PP), and linear low-density polyethylene (LLDPE) under high shear rates. The rheological characteristics of the three melts were compared through the systematical analyses for three significant effects, namely the end pressure loss, pressure dependence, and dissipative heating in capillary flow. Pronounced end effect begins to appear at the shear rates of 1.6 x 10(5), 8.0 x 10(5), and 2.8 x 10(6) s(-1) for the PS, PP, and LLDPE melts, respectively. The significance of the end effect can be ordered as PS > PP > LLDPE. It seems that the polymers with more complex molecular structures exhibit a higher degree of divergence between the comprehensively corrected and uncorrected melt viscosity curves. Moreover, the dissipation effect begins to predominate over the pressure effect under the lowest shear rate of 10(5) s(-1) for the PS melt among the three melts. POLYM. ENG. SCI., 55:506-512, 2015. (c) 2014 Society of Plastics Engineers
机译:聚合物熔体在高达10(6)s(-1)的高剪切速率下表现出独特的流变行为,这是微注射成型中的常见现象。在线和商用毛细管流变仪都经过修改,可以调节背压,用于在高剪切速率下测量聚苯乙烯(PS),聚丙烯(PP)和线性低密度聚乙烯(LLDPE)的熔体剪切粘度。通过系统分析比较了三种熔体的流变特性,发现三种显着影响,即最终压力损失,压力依赖性和毛细流中的耗散热量。对于PS,PP和LLDPE熔体,剪切速率分别为1.6 x 10(5),8.0 x 10(5)和2.8 x 10(6)s(-1)时,开始出现明显的末端效应。可以按PS> PP> LLDPE来排序最终效果的重要性。似乎具有更复杂分子结构的聚合物在全面校正和未校正的熔体粘度曲线之间显示出更高的差异度。此外,在三种熔体中,PS熔体的最低剪切速率为10(5)s(-1)时,耗散效应开始超过压力效应。 POLYM。 ENG。 SCI。,55:506-512,2015.(c)2014年塑料工程师学会

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