Budynas / Nisbett | Shigley's Mechanical Engineering Design (in SI Units) | Buch | 978-981-4595-28-5 | sack.de

Buch, Englisch, 0 Seiten, Format (B × H): 192 mm x 256 mm, Gewicht: 1950 g

Reihe: Asia Higher Education Engineering/Computer Science Mechanical Engineering

Budynas / Nisbett

Shigley's Mechanical Engineering Design (in SI Units)


10 ed
ISBN: 978-981-4595-28-5
Verlag: McGraw-Hill Education (Asia)

Buch, Englisch, 0 Seiten, Format (B × H): 192 mm x 256 mm, Gewicht: 1950 g

Reihe: Asia Higher Education Engineering/Computer Science Mechanical Engineering

ISBN: 978-981-4595-28-5
Verlag: McGraw-Hill Education (Asia)


Shigley’s Mechanical Engineering Design is intended for students beginning the study of mechanical engineering design. Students will find that the text inherently directs them into familiarity with both the basics of design decisions and the standards of industrial components. It combines the straightforward focus on fundamentals that instructors have come to expect, with a modern emphasis on design and new applications. The tenth edition maintains the well-designed approach that has made this book the standard in machine design for nearly 50 years. Specific statistical material pertinent to the 10th edition was retained and integrated within the sections that utilize statistics. A few examples are: - The mathematical relationship between the design factor and reliability is covered in the first chapter of Introduction to Mechanical Design where the design factor and reliability are defined and discussed.
- In Sec. 2-2, The Statistical Significance of Material Properties, is totally self-contained.
- The statistical Weibull distribution is necessary in the chapter on Rolling-Contact Bearings and is completely contained within this chapter.

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Weitere Infos & Material


PART 1 BASICS
1 Introduction to Mechanical Engineering Design
2 Materials
3 Load and Stress Analysis
4 Deflection and Stiffness
PART 2 FAILURE PREVENTION
5 Failure Resulting from Static Loading
6 Fatigue Failure Resulting from Variable Loading
PART 3 DESIGN OF MECHANICAL ELEMENTS
7 Shafts and Shaft Components
8 Screws, Fasteners, and the Design of Nonpermanent Joints
9 Welding, Bonding, and the Design of Permanent Joints
10 Mechanical Springs
11 Rolling-Contact Bearings
12 Lubrication and Journal Bearings
13 Gears—General
14 Spur and Helical Gears
15 Bevel and Worm Gears
16 Clutches, Brakes, Couplings, and Flywheels
17 Flexible Mechanical Elements
18 Power Transmission Case Study
PART 4 SPECIAL TOPICS
19 Finite-Element Analysis
20 Geometric Dimensioning and Tolerancing


Nisbett, Keith
J. Keith Nisbett is an Associate Professor and Associate Chair of Mechanical Engineering at the Missouri University of Science and Technology. He has over 25 years of experience with using and teaching from this classic textbook. As demonstrated by a steady stream of teaching awards, including the Governors Award for Teaching Excellence, he is devoted to finding ways of communicating concepts to the students. He was awarded the BS, MS, and Ph.D. of the University of Texas at Arlington.

Budynas, Richard
Richard G. Budynas is Professor Emeritus of the Kate Gleason College of Engineering at Rochester Institute of Technology. He has over 40 years experience in teaching and practicing mechanical engineering design. He is the author of a McGraw-Hill textbook, Advanced Strength and Applied Stress Analysis, Second Edition; and co-author of a McGraw-Hill reference book, Roark's Formulas for Stress and Strain, Seventh Edition. He was awarded the BME of Union College, MSME of the University of Rochester, and the Ph.D. of the University of Massachusetts. He is a licensed Professional Engineer in the state of New York.

RICHARD G. BUDYNAS is Professor Emeritus of the Kate Gleason College of Engineering at Rochester Institute of Technology. He has more than 50 years experience in teaching and practicing mechanical engineering design. He is the author of a McGraw-Hill textbook, Advanced Strength and Applied Stress Analysis, Second Edition; and coauthor of a McGraw-Hill reference book, Roark’s Formulas for Stress and Strain, Eighth Edition. He was awarded the BME of Union College, MSME of the University of Rochester, and the PhD of the University of Massachusetts. He is a licensed Professional Engineer in the state of New York.
J. KEITH NISBETT is an Associate Professor and Associate Chair of Mechanical Engineering at the Missouri University of Science and Technology. He has more than 30 years of experience with using and teaching from this classic textbook. As demonstrated by a steady stream of teaching awards, including the Governor’s Award for Teaching Excellence, he is devoted to finding ways of communicating concepts to the students. He was awarded the BS, MS, and PhD of the University of Texas at Arlington.



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