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Titlebook: Integration of Fundamental Polymer Science and Technology—3; P. J. Lemstra,L. A. Kleintjens Book 1989 Elsevier Science Publishers Ltd 1989

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书目名称Integration of Fundamental Polymer Science and Technology—3
编辑P. J. Lemstra,L. A. Kleintjens
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图书封面Titlebook: Integration of Fundamental Polymer Science and Technology—3;  P. J. Lemstra,L. A. Kleintjens Book 1989 Elsevier Science Publishers Ltd 1989
描述The Rolduc Polymer Meetings, of which the contents of this volume represent the third, are already on their way to occupying a unique place in the crowded calendar of symposia on every aspect of polymer science and engineering. They combine manageable meeting size with a theme, ‘Integration of Fundamental Polymer Science and Technology‘, which is often discussed but seldom realized in practice. The technological, or applied, areas of polymers have perhaps received more emphasis historically than those of other allied disciplines. Indeed, various plastic and rubber materials were successful items of commerce long before the macromolecular concept itself was firmly established. The more fundamental aspects of the field were also largely developed in industrial laboratories. The early work of Mark and Meyer at IG Farben, and that of Carrothers and Flory at Du Pont, are good examples of this. The present situation, in which polymers are being applied to more and more demanding end uses, from high performance materials on the one hand to the biomedical and electronics fields on the other, caIls for an ever greater understanding of the basic scientific principles governing their behavior
出版日期Book 1989
关键词Compound; Dyneema; Polycarbonat; Polyethylen; Polyimide; Polymer; Reaction Injection Moulding; crystal; elas
版次1
doihttps://doi.org/10.1007/978-94-009-1115-4
isbn_softcover978-94-010-6993-9
isbn_ebook978-94-009-1115-4
copyrightElsevier Science Publishers Ltd 1989
The information of publication is updating

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Book 1989wded calendar of symposia on every aspect of polymer science and engineering. They combine manageable meeting size with a theme, ‘Integration of Fundamental Polymer Science and Technology‘, which is often discussed but seldom realized in practice. The technological, or applied, areas of polymers hav
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Polymers for Electronics and Photonicsl fundamental aspects of these materials are the subject of intensive research. In this paper we will review the present state of the art in these new fields of polymers for electronics and photonics. Special emphasis will be laid on recent results from our laboratories.
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Engineering Plasticstrating a greatly improved mechanical behaviour over a wide range of temperatures, load and time. Especially the long term applicability at temperatures over 90°C up to at least 150°C is considered an important criteria. As such all the “high temperature resistant” plastics are being regarded as engineering plastics.
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Application of Critical Conditions in the Mean-Field Lattice Gas Modeld. The use of critical conditions in the adaption of parameters for binary mixtures to experimental data is discussed here, taking as an example the vapour-liquid critical behaviour of the system ethylene-naphtalene.
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Tough Interpenetrating Polymer Networksorphologies were revealed by SEM and microstructure by TEM. They vary enormously in fracture toughness, with G. ranging from < 1 to > 10 kJm.. Factors leading to high fracture toughness will be discussed.
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Purification of Polymers by Supercritical Fluid Extraction in Processing Machinesamorphous polymeric materials. Some results for acrylonitrile containing (co-) polymers/blends and thermoplastic polymers like ethylene-propylene-diene terpolymers are reported..First extruder experiments show that this technique can be successfully applied to polymers in processing machines.
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Integration of Polymer Science and Technology?ailable from material science, physics, etc. or even from certain branches of polymer science is not effectively used in (other branches of) the polymer field. As a consequence, research projects are sometimes ineffective, too expensive, based on wrong or questionable assumptions, unworkable or even unneeded.
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Influence of Molar Mass Distribution on Thermodynamics of Polymer Systemssystems, the theory hasn’t been evaluated yet In great detail. In this contribution the influence of composition, temperature and molar mass distribution of the polymer is studied for the system polystyrene/cyclohexane.
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