Overview
- A very practice-oriented book
- Gives an overview over the modelling and dynamics in typical fibre formation and fibre processing processes
- Includes supplementary material: sn.pub/extras
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Table of contents (6 chapters)
Keywords
About this book
The book deals with the modelling of steady state and non-steady state basic processes of fibre formation and fibre processing. Focal points are melt spinning processes (polymers and glass, drawing, spunbonded nonwoven), spun yarn spinning processes (drafting, carding) and the description of the dynamics in different process steps during the fibre processing (fibre transport, fibre heating and cooling, false twist texturing). A special chapter deals with dynamics of tensile force (measuring and evaluation possibilities) and its importance for the process stability. All presented examples are based on industrial practice and give the reader a direct imagination of the discussed problems. The results are explained in a userfriendly way and give the practitioner the possibility to optimize his or her own processing. The book will be of special interest to researchers, and engineers, in the man-made fibre and textile industry as well as to teachers and students of the relevant graduated and undergraduated courses in textile engineering and polymer physics including the accessory mechanical engineering.
Authors and Affiliations
Bibliographic Information
Book Title: Dynamics of Fibre Formation and Processing
Book Subtitle: Modelling and Application in Fibre and Textile Industry
Authors: Roland Beyreuther, Harald Brünig
DOI: https://doi.org/10.1007/978-3-540-46223-1
Publisher: Springer Berlin, Heidelberg
eBook Packages: Chemistry and Materials Science, Chemistry and Material Science (R0)
Copyright Information: Springer-Verlag Berlin Heidelberg 2007
Hardcover ISBN: 978-3-540-46221-7Published: 13 November 2006
Softcover ISBN: 978-3-642-07963-4Published: 14 October 2010
eBook ISBN: 978-3-540-46223-1Published: 23 November 2006
Edition Number: 1
Number of Pages: XIII, 365
Topics: Polymer Sciences, Characterization and Evaluation of Materials, Condensed Matter Physics, Industrial Chemistry/Chemical Engineering