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Titlebook: Controlling the Morphology of Polymers; Multiple Scales of S Geoffrey R. Mitchell,Ana Tojeira Book 2016 Springer International Publishing S

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obtaining reliable polymer morphology.Summarizes the genera.This book focuses on controlling morphology of different scales for polymers. The authors explain the need for successful control of morphology to yield target macroscopic physical properties in the application of polymers to diverse areas
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Berechnung und Auslegung von Baugruppen,ed in polymer-based materials. We consider the mechanisms for the transformation of polymer melts by these ordering processes. Finally, we consider ‘top-down’ manufacturing processes which lead to ‘ordering’ on a scale larger than that intrinsic to the polymer material.
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https://doi.org/10.1007/978-3-8348-9137-2ld lattice statistical theory of crystallizable polymer solutions. On kinetics, we introduced crystal nucleation, crystal growth and crystal annealing, mainly on the basis of the classical nucleation theory and the related kinetic equations.
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Book 2016eld target macroscopic physical properties in the application of polymers to diverse areas such as engineering materials, nanodielectrics and photonic crystals. The book combines specialized chapters with an introduction to the morphology of polymers and the range of experimental techniques availabl
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Wolfgang M. Willems,Kai Schild,Simone Dinter additive process can affect bulk, surface and layer properties and to present case studies regarding variations of morphology in filaments produced by Fused Deposition modelling simply by varying processing parameters.
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Controlling Morphology in 3D Printing, additive process can affect bulk, surface and layer properties and to present case studies regarding variations of morphology in filaments produced by Fused Deposition modelling simply by varying processing parameters.
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Electrically Conductive Polymer Nanocomposites,ons (high aspect ratio) like metal nanowires, graphene and carbon nanotubes (CNTs) have been introduced leading to a revolution in polymer nanocomposites. The potential of these fillers to achieve high conductivity due to their unique geometry at low or very low concentrations has attracted enormous scientific and commercial attention.
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Berechnung und Auslegung von Bauteilen,the matrix behaviour. We then consider the situation in polydisperse melts where extended objects can be formed from the high molecular weight fraction in the melt, and then finally we review work reported in this field in the context of nanoscale fillers.
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