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Titlebook: Rheology; Volume 3: Applicatio Giovanni Astarita (President),Giuseppe Marrucci,Lu Book 1980 Springer Science+Business Media New York 1980 D

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楼主: microbe
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Quantitative Investigations of Orientation Development in Vitryfying Deforming Polymer Melts with Apimmediately prior to solidification. The authors and their coworkers have carried out extensive investigations of vitrification and crystallization of deforming polymer melts during the past several years. Here we discuss investigations of vitrifying polymers.
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Characterization of Extrusion Dies by the Stress Distribution at the Die Exit and the Free Recovery pstream in the processing equipment. The analysis of these effects is quite involved since the flow in the extrusion die is inhomogeneous, i.e. the strain and temperature history is different for a polymer element of a layer near the wall and a polymer element flowing more in the middle of the flow channel (Fig. 1).
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https://doi.org/10.1007/978-1-4684-3746-1Dissipation; Profil; Rheometer; efficiency; elasticity; multiphase flow; organization; plastics; polymer; rhe
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Quantitative Investigations of Crystallization Kinetics and Crystalline Morphology Development in SoWe have investigated i, the crystallization kinetics and ii, development of crystalline morphology occurring in deforming polymer melts during solidification with special reference to polymer processing.
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Influence of Wall Slip in ExtrusionIt is known that some polymer melts like rigid PVC. show wall slipping properties. Although it may be immediately concluded that it leads to different velocity profiles, there is little information available on the influence of wall slip on processing in extrusion and quality of the end product.
发表于 2025-3-28 01:21:21 | 显示全部楼层
Broken Section Method for Analyzing Molten Flow in Extrusion die of Plastic NetThis paper describes the analytical results of the molten flow in the extrusion die of the plastic net by the broken section method.
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Process Rheology in the Polymer Manufacturing for Synthetic FibresThe object of this paper is to develop a background for optimum design and operation of the polycondensation reactor based on real time measuring the flow behaviour of molten polymers.
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978-1-4684-3748-5Springer Science+Business Media New York 1980
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