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This book highlights the mechanics of the elastic elements made of steel alloys with focus on the metal springs for automotive industry. The industry and scientific organizations study intensively the foundations of design of spring elements and permanently improve the mechanical properties of spring materials. The development responsibilities of spring manufacturing company involve the optimal application of the existing material types. Thus, the task entails in the target-oriented evaluation of the mechanical properties and the subsequent design of the springs, which makes full use of the…mehr
This book highlights the mechanics of the elastic elements made of steel alloys with focus on the metal springs for automotive industry. The industry and scientific organizations study intensively the foundations of design of spring elements and permanently improve the mechanical properties of spring materials. The development responsibilities of spring manufacturing company involve the optimal application of the existing material types. Thus, the task entails in the target-oriented evaluation of the mechanical properties and the subsequent design of the springs, which makes full use of the attainable material characteristics. The book stands as a valuable reference for professionals in practice as well as an advanced learning resource for students of structural and automotive engineering
Vladimir Kobelev, PhD, Dr rer nat habil, received the Dipl Physics and PhD degrees from the Department of Aerophysics and Space Research, Moscow Institute of Physics and Technology, Dolgoprudny, Russia. Since 2000, he has been an APL Professor with the Department of Mechanical Engineering, Universität Siegen, Siegen, Germany. He is the author of two books, Durability of Springs and Design and Analysis of Composite Structures for Automotive Applications.
Inhaltsangabe
Principles of Spring Design.- Stress Distributions over Cross-Section of Wires.- Equivalent Columns for Helical Springs.- Disk Springs.- Thin-Walled Rods with Semi-Opened Profiles.- Coiling Process for Helical Springs.- Presetting and residual stresses in helical springs.- Shot peening of Springs.- Fatigue of Spring Materials.- Stress Ratio, Environmental and Temperature Effects on Fatigue of Spring Materials.- Creep and Relaxation of Springs.- Failure Probability of Helical Spring.
Introduction.- Principles of Spring Design.- Stress Distribution over Cross-Section of Wire.- "Equivalent Column" Model for Helical Springs.- Coiling Process for Helical Springs.- Disk Springs.- Creep and Relaxation of Springs.- Generalization of Creep Laws for Spring Materials.- Fatigue of Spring Materials.- Failure Probabilty of Helical Spring.- Thin-Walled Rods with Semi-Opened Profiles.- Semi-Opened Profiles for Twist-Beam Automotive Axles.- Appendices.
Principles of Spring Design.- Stress Distributions over Cross-Section of Wires.- Equivalent Columns for Helical Springs.- Disk Springs.- Thin-Walled Rods with Semi-Opened Profiles.- Coiling Process for Helical Springs.- Presetting and residual stresses in helical springs.- Shot peening of Springs.- Fatigue of Spring Materials.- Stress Ratio, Environmental and Temperature Effects on Fatigue of Spring Materials.- Creep and Relaxation of Springs.- Failure Probability of Helical Spring.
Introduction.- Principles of Spring Design.- Stress Distribution over Cross-Section of Wire.- "Equivalent Column" Model for Helical Springs.- Coiling Process for Helical Springs.- Disk Springs.- Creep and Relaxation of Springs.- Generalization of Creep Laws for Spring Materials.- Fatigue of Spring Materials.- Failure Probabilty of Helical Spring.- Thin-Walled Rods with Semi-Opened Profiles.- Semi-Opened Profiles for Twist-Beam Automotive Axles.- Appendices.
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