Description: Modeling Steel Deformation in the Semi-Solid State Please note: this item is printed on demand and will take extra time before it can be dispatched to you (up to 20 working days). Author(s): Marcin Hojny Format: Hardback Publisher: Springer International Publishing AG, Switzerland Imprint: Springer International Publishing AG ISBN-13: 9783319679754, 978-3319679754 Synopsis This book offers a unique approach to integrated high-temperature process modelling, intended to serve as a design aid for new metal processing technologies. The second edition has been substantially expanded to include new content such as: a new algorithm and test results of 3D stereoscopic visualization; new programming procedures for modelling; the validation of computer simulation using experimental results; a multiscale model of grain growth; a conceptual methodology developing "high-temperature" CCT (continuous cooling transformation) diagrams, and many more examples validating the numerical simulations. The models presented are applied in comprehensive tests in order to solve problems related to the high-temperature deformation of steel. The testing methods include both physical tests using specialist laboratory instruments, and advanced mathematical modelling: the Finite Element method (FE), Smoothed Particle Hydrodynamics method (SPH) and Mo nte Carlo method (MC).This approach, which integrates the fields of physical and computer-based simulations, forms the basis for the described concept of integrated high-temperature process modelling, presented in detail in this book.
Price: 73.39 GBP
Location: Aldershot
End Time: 2025-01-08T09:06:33.000Z
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Book Title: Modeling Steel Deformation in the Semi-Solid State
Subject Area: Mechanical Engineering
Item Height: 235 mm
Item Width: 155 mm
Series: Advanced Structured Materials
Author: Marcin Hojny
Publication Name: Modeling Steel Deformation in the Semi-Solid State
Format: Hardcover
Language: English
Publisher: Springer International Publishing A&G
Publication Year: 2017
Type: Textbook
Item Weight: 6033 g
Number of Pages: 302 Pages