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Many diverse materials, from man-made plastics to slurry, behave in ways that cannot be predicted using straightforward 'classical' equations. This book provides a guide, with examples, for those who wish to make predictions about the mechanical and thermal behaviour of non-Newtonian materials in engineering and processing technology. There is an emphasis on the practical solution of problems using computer methods, and on the correlation between theory and experimental work.
This book covers fundamental principles and numerical methods
relevant to the modeling of the injection molding process. As
injection molding processing is related to rheology, mechanical and
chemical engineering, polymer science and computational methods,
and is a rapidly growing field, the book provides a
multidisciplinary and comprehensive introduction to the subjects
required for an understanding of the complex process. It addresses
the up-to-date status of fundamental understanding and simulation
technologies, without losing sight of still useful classical
approaches. The main chapters of the book are devoted to the
currently active fields of flow-induced crystallization and
orientation evolution of fiber suspensions, respectively, followed
by detailed discussion of their effects on mechanical property,
shrinkage and warpage of injection-molded products. The level of
the proposed book will be suitable for interested scientists,
R&D engineers, application engineers, and graduate students in
engineering.
This book covers fundamental principles and numerical methods
relevant to the modeling of the injection molding process. As
injection molding processing is related to rheology, mechanical and
chemical engineering, polymer science and computational methods,
and is a rapidly growing field, the book provides a
multidisciplinary and comprehensive introduction to the subjects
required for an understanding of the complex process. It addresses
the up-to-date status of fundamental understanding and simulation
technologies, without losing sight of still useful classical
approaches. The main chapters of the book are devoted to the
currently active fields of flow-induced crystallization and
orientation evolution of fiber suspensions, respectively, followed
by detailed discussion of their effects on mechanical property,
shrinkage and warpage of injection-molded products. The level of
the proposed book will be suitable for interested scientists,
R&D engineers, application engineers, and graduate students in
engineering.
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