Ansel C. Ugural
Mechanical Engineering Design (SI Edition) (eBook, PDF)
141,95 €
141,95 €
inkl. MwSt.
Sofort per Download lieferbar
71 °P sammeln
141,95 €
Als Download kaufen
141,95 €
inkl. MwSt.
Sofort per Download lieferbar
71 °P sammeln
Jetzt verschenken
Alle Infos zum eBook verschenken
141,95 €
inkl. MwSt.
Sofort per Download lieferbar
Alle Infos zum eBook verschenken
71 °P sammeln
Ansel C. Ugural
Mechanical Engineering Design (SI Edition) (eBook, PDF)
- Format: PDF
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei
bücher.de, um das eBook-Abo tolino select nutzen zu können.
Hier können Sie sich einloggen
Hier können Sie sich einloggen
Sie sind bereits eingeloggt. Klicken Sie auf 2. tolino select Abo, um fortzufahren.
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei bücher.de, um das eBook-Abo tolino select nutzen zu können.
Mechanical Engineering Design, Third Edition strikes a balance between theory and application, and prepares students for more advanced study or professional practice. Updated throughout, it outlines basic concepts and provides the necessary theory to gain insight into mechanics with numerical methods in design.
- Geräte: PC
- ohne Kopierschutz
- eBook Hilfe
- Größe: 46.17MB
Andere Kunden interessierten sich auch für
- Handbook of Railway Vehicle Dynamics, Second Edition (eBook, PDF)229,95 €
- Denis A. RomanovSurface Structure Modification and Hardening of Al-Si Alloys (eBook, PDF)65,95 €
- Subodh V. ModakAnalytical and Experimental Modal Analysis (eBook, PDF)52,95 €
- Amir JavidinejadEssentials of Mechanical Stress Analysis (eBook, PDF)97,95 €
- Tony GiampaoloCompressor Handbook: Principles and Practice (eBook, PDF)136,95 €
- Cameron CoatesModern Applied Fracture Mechanics (eBook, PDF)115,95 €
- Farzad EbrahimiMechanics of Auxetic Materials and Structures (eBook, PDF)52,95 €
-
-
-
Mechanical Engineering Design, Third Edition strikes a balance between theory and application, and prepares students for more advanced study or professional practice. Updated throughout, it outlines basic concepts and provides the necessary theory to gain insight into mechanics with numerical methods in design.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 836
- Erscheinungstermin: 17. Mai 2022
- Englisch
- ISBN-13: 9781000529685
- Artikelnr.: 63896945
- Verlag: Taylor & Francis
- Seitenzahl: 836
- Erscheinungstermin: 17. Mai 2022
- Englisch
- ISBN-13: 9781000529685
- Artikelnr.: 63896945
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Ansel C. Ugural, Ph.D., is a visiting professor of mechanical engineering at the New Jersey Institute of Technology, Newark, New Jersey. He was a National Science Foundation fellow and has taught at the University of Wisconsin-Madison, Madison, Wisconsin. Dr. Ugural held positions at Fairleigh Dickinson University, where he served for two decades as a professor and chairman of the mechanical engineering department. He has considerable and diverse industrial experience in both full-time and consulting capacities as a design, development, and research engineer.
Dr. Ugural earned his M.S. in mechanical engineering and Ph.D. in engineering mechanics from the University of Wisconsin-Madison. He has been a member of the American Society of Mechanical Engineers and the American Society of Engineering Education. He is also listed in Who's Who in Engineering.
Professor Ugural is the author of several books, including Mechanical Design: An Integrated Approach (McGraw-Hill, 2004); Mechanical Design of Machine Components (CRC Press, 2nd ed., 2015); Stresses in Plates and Shells (McGraw-Hill, 1999); Plates and Shells: Theory and Analysis (CRC Press, 4th ed., 2016); Mechanics of Materials (McGraw-Hill, 1990); and Mechanics of Materials (Wiley, 2008). Some of these books have been translated into Korean, Chinese, and Portuguese. Dr. Ugural is also the coauthor (with S.K. Fenster) of Advanced Mechanics of Materials and Applied Elasticity (Pearson, 6th ed., 2020). In addition, he has published numerous articles in trade and professional journals.
Dr. Ugural earned his M.S. in mechanical engineering and Ph.D. in engineering mechanics from the University of Wisconsin-Madison. He has been a member of the American Society of Mechanical Engineers and the American Society of Engineering Education. He is also listed in Who's Who in Engineering.
Professor Ugural is the author of several books, including Mechanical Design: An Integrated Approach (McGraw-Hill, 2004); Mechanical Design of Machine Components (CRC Press, 2nd ed., 2015); Stresses in Plates and Shells (McGraw-Hill, 1999); Plates and Shells: Theory and Analysis (CRC Press, 4th ed., 2016); Mechanics of Materials (McGraw-Hill, 1990); and Mechanics of Materials (Wiley, 2008). Some of these books have been translated into Korean, Chinese, and Portuguese. Dr. Ugural is also the coauthor (with S.K. Fenster) of Advanced Mechanics of Materials and Applied Elasticity (Pearson, 6th ed., 2020). In addition, he has published numerous articles in trade and professional journals.
SECTION 1 Fundamentals. Chapter 1. Introduction. Chapter 2. Materials.
Chapter 3. Stress and Strain. Chapter 4. Deflection and Impact. Chapter 5.
Energy Methods and Stability. SECTION II Failure Prevention. Chapter 6.
Static Failure Criteria and Liability. Chapter 7. Fatigue Failure Criteria.
Chapter 8. Surface Failure. SECTION III Machine Component Design. Chapter
9. Shafts and Associated Parts. Chapter 10. Bearings and Lubrication.
Chapter 11. Spur Gears. Chapter 12. Helical, Bevel, and Worm Gears. Chapter
13. Belts, Chains, Clutches, and Brakes. Chapter 14. Springs. Chapter 15.
Power Screws, Fasteners, and Connections. Chapter 16. Miscellaneous
Mechanical Components. Chapter 17. Finite Element Analysis in Design*.
Chapter 18. Case Studies in Machine Design. Appendix A: Tables. Appendix B:
Material Properties. Appendix C: Stress-Concentration Factors. Appendix D:
Solution of the Stress Cubic Equation. Appendix E: Introduction to MATLAB®.
Problem answers. References. Index.
Chapter 3. Stress and Strain. Chapter 4. Deflection and Impact. Chapter 5.
Energy Methods and Stability. SECTION II Failure Prevention. Chapter 6.
Static Failure Criteria and Liability. Chapter 7. Fatigue Failure Criteria.
Chapter 8. Surface Failure. SECTION III Machine Component Design. Chapter
9. Shafts and Associated Parts. Chapter 10. Bearings and Lubrication.
Chapter 11. Spur Gears. Chapter 12. Helical, Bevel, and Worm Gears. Chapter
13. Belts, Chains, Clutches, and Brakes. Chapter 14. Springs. Chapter 15.
Power Screws, Fasteners, and Connections. Chapter 16. Miscellaneous
Mechanical Components. Chapter 17. Finite Element Analysis in Design*.
Chapter 18. Case Studies in Machine Design. Appendix A: Tables. Appendix B:
Material Properties. Appendix C: Stress-Concentration Factors. Appendix D:
Solution of the Stress Cubic Equation. Appendix E: Introduction to MATLAB®.
Problem answers. References. Index.
SECTION 1 Fundamentals. Chapter 1. Introduction. Chapter 2. Materials.
Chapter 3. Stress and Strain. Chapter 4. Deflection and Impact. Chapter 5.
Energy Methods and Stability. SECTION II Failure Prevention. Chapter 6.
Static Failure Criteria and Liability. Chapter 7. Fatigue Failure Criteria.
Chapter 8. Surface Failure. SECTION III Machine Component Design. Chapter
9. Shafts and Associated Parts. Chapter 10. Bearings and Lubrication.
Chapter 11. Spur Gears. Chapter 12. Helical, Bevel, and Worm Gears. Chapter
13. Belts, Chains, Clutches, and Brakes. Chapter 14. Springs. Chapter 15.
Power Screws, Fasteners, and Connections. Chapter 16. Miscellaneous
Mechanical Components. Chapter 17. Finite Element Analysis in Design*.
Chapter 18. Case Studies in Machine Design. Appendix A: Tables. Appendix B:
Material Properties. Appendix C: Stress-Concentration Factors. Appendix D:
Solution of the Stress Cubic Equation. Appendix E: Introduction to MATLAB®.
Problem answers. References. Index.
Chapter 3. Stress and Strain. Chapter 4. Deflection and Impact. Chapter 5.
Energy Methods and Stability. SECTION II Failure Prevention. Chapter 6.
Static Failure Criteria and Liability. Chapter 7. Fatigue Failure Criteria.
Chapter 8. Surface Failure. SECTION III Machine Component Design. Chapter
9. Shafts and Associated Parts. Chapter 10. Bearings and Lubrication.
Chapter 11. Spur Gears. Chapter 12. Helical, Bevel, and Worm Gears. Chapter
13. Belts, Chains, Clutches, and Brakes. Chapter 14. Springs. Chapter 15.
Power Screws, Fasteners, and Connections. Chapter 16. Miscellaneous
Mechanical Components. Chapter 17. Finite Element Analysis in Design*.
Chapter 18. Case Studies in Machine Design. Appendix A: Tables. Appendix B:
Material Properties. Appendix C: Stress-Concentration Factors. Appendix D:
Solution of the Stress Cubic Equation. Appendix E: Introduction to MATLAB®.
Problem answers. References. Index.