Machine Component Analysis with MATLAB
Autor: | Dan B. Marghitu, Mihai Dupac |
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EAN: | 9780128042458 |
eBook Format: | ePUB |
Sprache: | Englisch |
Produktart: | eBook |
Veröffentlichungsdatum: | 12.02.2019 |
Kategorie: | |
Schlagworte: | Angular ball bearings Bolt and clamped parts stiffness Bolt preload Deflection Design charts Endurance limit Fatigue diagrams Fatigue life Force analysis Hydrodynamic lubrication Life requirement Load factor Modifying factors Mohr's circ |
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Machine Design Analysis with MATLAB is a highly practical guide to the fundamental principles of machine design which covers the static and dynamic behavior of engineering structures and components. MATLAB has transformed the way calculations are made for engineering problems by computationally generating analytical calculations, as well as providing numerical calculations. Using step-by-step, real world example problems, this book demonstrates how you can use symbolic and numerical MATLAB as a tool to solve problems in machine design. This book provides a thorough, rigorous presentation of machine design, augmented with proven learning techniques which can be used by students and practicing engineers alike. - Comprehensive coverage of the fundamental principles in machine design - Uses symbolical and numerical MATLAB calculations to enhance understanding and reinforce learning - Includes well-designed real-world problems and solutions
Dan B. Marghitu is Professor in the Department of Mechanical Engineering at Auburn University. His specialty areas include impact dynamics, biomechanics, nonlinear dynamics, flexible multibody systems and robotics. He is the author of more than 60 journal papers and six books on dynamics, mechanical impact, mechanisms, robots and biomechanics.
Dan B. Marghitu is Professor in the Department of Mechanical Engineering at Auburn University. His specialty areas include impact dynamics, biomechanics, nonlinear dynamics, flexible multibody systems and robotics. He is the author of more than 60 journal papers and six books on dynamics, mechanical impact, mechanisms, robots and biomechanics.