首页> 外文学位 >RHEOLOGICAL PROPERTIES AND INSTABILITIES IN POLYMER PROCESSING OF POLYETHYLENE TEREPHTHALATES AND POLYETHYLENES (POLYMER MELT, PROCESSING, MOLECULAR STRUCTURE).
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RHEOLOGICAL PROPERTIES AND INSTABILITIES IN POLYMER PROCESSING OF POLYETHYLENE TEREPHTHALATES AND POLYETHYLENES (POLYMER MELT, PROCESSING, MOLECULAR STRUCTURE).

机译:聚对苯二甲酸乙二酯和聚乙烯(聚合物熔体,加工,分子结构)在聚合物加工中的流变性质和不稳定性。

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Molecularly well-characterized polyethylene terephthalates (PET) including linear and branched PETs and polyethylenes (PE) including high density polyethylene (HDPE), low density polyethylene (LDPE) and linear low density polyethylene (LLDPE) are studied in a series of rheological and processing experiments.; The materials were rheologically characterized in steady shear measurements which include steady shear viscosity measurements and the first normal stress difference measurements. The results of steady shear measurements indicate that broadening of molecular weight distribution and introduction of long chain branching enhance the non-Newtonian character.; Uniaxial elongational flow measurements were carried out on the elongational rheometer which was built at the University of Akron. It was found that the deformation rate softening characteristics in elongational flow cannot always be predicted from those in steady shear flow. This was especially observed for LDPEs.; Based on the rheological properties obtained from the steady shear measurements and the elongational flow measurements, a new material parameter was introduced for the expression for the deformation rate dependence of the relaxation time.; Flow instabilities which occur in continuous polymer processing operations such as extrusion, melt spinning and tubular blown film extrusion all of which involves elongational flow or the combination of elongational and shear flow. The experimental results were well interpreted in terms of the rheological properties obtained from the elongational flow measurements and the activation energy of viscous flow.; Mathematical modelling of the nonisothermal tubular blown film extrusion process for non-Newtonian fluids was carried out. The results of computer simulation indicates that both non-Newtonian characteristics and activation energy of viscous flow affect the flow behavior of the tubular film. However, when the cooling is very efficient, the effect of thermal properties dominates.
机译:在一系列流变和加工过程中,研究了分子特性良好的聚对苯二甲酸乙二醇酯(PET),包括线性和支链PET,以及包括高密度聚乙烯(HDPE),低密度聚乙烯(LDPE)和线性低密度聚乙烯(LLDPE)的聚乙烯实验。在稳态剪切测量中对材料进行了流变学表征,其中包括稳态剪切粘度测量和首次法向应力差测量。稳定剪切测量的结果表明,分子量分布的扩大和长链支链的引入增强了非牛顿特性。在阿克伦大学建造的伸长流变仪上进行单轴伸长流量测量。已经发现,不能总是根据稳定剪切流中的那些来预测伸长流中的变形率软化特性。对于LDPE尤其如此。基于从稳态剪切测量和伸长流动测量得到的流变特性,引入了新的材料参数来表示松弛时间对变形率的依赖性。在连续的聚合物加工操作中发生的流动不稳定性,例如挤出,熔体纺丝和管状吹膜挤出,所有这些都涉及伸长流或伸长流与剪切流的组合。从伸长流量测量获得的流变性质和粘性流的活化能方面,对实验结果进行了很好的解释。对非牛顿流体的非等温管状吹膜挤出工艺进行了数学建模。计算机仿真结果表明,非牛顿特性和粘性流的活化能都影响管状薄膜的流动性能。然而,当冷却非常有效时,热性能的影响占主导。

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