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Mechanical Engineering Design (McGraw-Hill Mechanical Engineering), by Jospeh E. Shigley, Joseph E. Shigley, Charles R. Mischke
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The text is intended for undergraduate courses in mechanical engineering design. It teaches students to apply the background they have developed in mathematics, physics, the thermal-fluid sciences, and computers to questions unique to engineering design. This edition features emphasis on reader involvement in programming; a unique arrangement of the material on gearing to provide maximum flexibility in scheduling topics; complete revisions of almost every chapter; completely new home problems, and an optional reliability method of design, both of which are used throughout the book; and additional emphasis on designing to achieve quality-control objectives.
- Sales Rank: #245106 in Books
- Published on: 1988-11-01
- Original language: English
- Number of items: 1
- Dimensions: 1.42" h x 8.55" w x 9.58" l,
- Binding: Hardcover
- 779 pages
About the Author
Charles Mischke (Ames, IA) is a Professor of Mechanical Engineering at Iowa State University.
Most helpful customer reviews
4 of 4 people found the following review helpful.
Michigan's Dr. Shigley Rules !!!
By Edmund P. Leigh
One of the Best Machining Reference Books you will ever have. I am 56 and have been in the engineering profession for 32 years now. When I took this course in machine design at Vanderbilt in the spring of 1981 (it was Shigley's 3rd edition textbook) it was very fast paced by lecture and all theoretical. It would have been much better had the professor showed us examples of fasteners, types of metals, pinions, bull gears, drive shafts, planetary gear systems, fatigue damage, corrosion damage, bearing types etc. but this wasn't the case. No, it was all theoretical and we had lots of problems to solve in an effort to absorb some of the theories and applications of machine design. We raced through the chapters and I am convinced the pace was too fast to really retain much. Looking back it was like running a race and not much went into the long-term memory except Dr. Shigley laid it all out in a wonderful format.
If I was teaching this course I would have a couple of tables of parts, different types of materials and examples of corrosion, spalling and fatigue that students could review at their leisure after class to get acquainted with the conditions, configurations and concepts. Using only the textbook as your guide is limiting; it is too abstract. There is a better way to understand the whole gamut of mechanical concepts and go beyond the abstract notions and theories. Seeing examples first hand reinforces the actual concepts into the mind so much better. Nothing beats getting the hands to touch, grasp and see first-hand actual examples of what is described in the machining design textbook.
If you work in a machine shop or even better an aerospace transmission plant on the production floor or as an engineering designer you will need this book to understand many concepts such as tolerance stack-ups, clearance fits, interference fits, dimensioning, tolerancing and failure prevention. It is extremely well written. This book is also a great example of technical writing. It is all business and to the point and you would expect from world renown authors such as Drs' Shigley and Mischke.
Also there is good information on heat treatment and what materials are the best choice for what application. Do you need high strength, light weight and resistance to corrosion ? - you choice would probably be Ti 6Al-4V titanium. Do you need extremely high strength and impact resistance ? then you might choose Carburized 9310 or X53 Alloy Steel. You need an aluminum that is also weldable ? Then you might choose 5000 series aluminum. Do you need high strength aluminum and you don't need it to be weldable then go with 7075 or 7050 solution heat treated aluminum. There are many many choices and they all involve trade-offs. A good designer should know what are the best applications of materials for design goals. In the back of the book in the later chapters you will be shown the various gear type systems such as spur, helical, spiral bevel, worm and hypoid. Design is always compromise in the effort to satisfy the customer wants and the design requirements while building a cost effective and safe part. It is an art as well as a science.
Don't let the high price of this textbook dissuade you and for gosh sakes don't sell this book after you graduate from engineering school. You will need this for your technical library that you will expand on. Good luck on your engineering career !
1 of 1 people found the following review helpful.
Several steps down from previous editions
By Chad Webb
This book has some good information in it for designers, but it makes things more complicated than they really are. The sections that focus on review of statics and strenghts is good, but when it comes to analyzing failure theories, the book complicates the matter unnecessarily. The failure theories presented are for raw, rough estimation purposes only, but shigley tries to put band-aids on them and doctor them up to make them more precise, and in the process completely confuses the matter. I'm taking a mechanical component design class and my teacher was an avid promoter of this book up until this edition (sixth edition) -- now he recommends we don't even use the book because it's too confusing even for him. Unfortunately, this will be one of the few books I will rid myself of after the class is over. I think I may try to get an earlier edition instead.
10 of 11 people found the following review helpful.
Unsuitable for undergraduates
By Stephen Ross
The original Mechanical Engineering Design book written by Joseph Shigley, and later, with Larry Mitchell, was an excellent undergraduate text; it was readable at the introductory level, and it contained enough information and methodology for use as a good reference book after graduation. Unfortunately, this revised text, which was rewritten by Charles Mischke, is thoroughly unreadable, obfuscating, and is totally unsuitable as a text for undergraduate mechanical engineering students. The book is full of nuances, subtleties and informative data that do make it useful as a reference book on the shelf of an experienced design engineer, but not as a text for students learning the subject. For those who plan to teach a course for mechanical engineering majors on this topic, I recommend other texts such a Jack Collins' Mechanical Design of Machine Elements and Machines, Wiley, 2003.
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