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Free Download Roark's Formulas for Stress and Strain, 8th Edition

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Free Download Roark's Formulas for Stress and Strain, 8th Edition

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Roark's Formulas for Stress and Strain, 8th Edition

Roark's Formulas for Stress and Strain, 8th Edition


Roark's Formulas for Stress and Strain, 8th Edition


Free Download Roark's Formulas for Stress and Strain, 8th Edition

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Roark's Formulas for Stress and Strain, 8th Edition

About the Author

Warren Young is professor emeritus of mechanical engineering at the University of Wisconsin, Madison, where he was on the faculty for more than 40 years. Richard G. Budynas is professor emeritus of mechanical engineering at Rochester Institute of Technology. He is the author of Advanced Strength and Applied Stress Analysis, Second Edition (McGraw-Hill, 1998), and coauthor of Shigley’s Mechanical Engineering Design, Ninth Edition (McGraw-Hill, 2010). Ali M. Sadegh is professor of mechanical engineering and the founder and director of the Center for Advanced Engineering Design and Development at the City College of the City University of New York. He is a coauthor of Marks’ Standard Handbook for Mechanical Engineers, 11th Edition (McGraw-Hill, 2007).

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Product details

Hardcover: 1072 pages

Publisher: McGraw-Hill Education; 8 edition (December 19, 2011)

Language: English

ISBN-10: 0071742476

ISBN-13: 978-0071742474

Product Dimensions:

7.7 x 1.7 x 9.5 inches

Shipping Weight: 3.9 pounds (View shipping rates and policies)

Average Customer Review:

4.3 out of 5 stars

38 customer reviews

Amazon Best Sellers Rank:

#35,965 in Books (See Top 100 in Books)

Almost any simple geometry for a mechanical part, in almost any load condition imaginable, is given a parametric analytical model here. If you can't find it in here, you probably can't find it anywhere in the whole world. Just copy the formulas, plug in your numbers, and BAM! A quick, reasonably accurate analysis you can use at least for initial sizing purposes.Whatever you do, though, do not put too much confidence in its answers being all that precise. I'd more or less trust it will in most cases be accurate to within ±25% or so? It should be used for rough initial sizing only, and should really be verified with a more thorough analysis (like FEA), and/or by testing. But nothing can beat it for very rapidly coming up with a design that is in the right ballpark for an application.Still, an absolute classic in machine design, and absolutely invaluable to a mechanical engineer.

When I graduated with my first degree in engineering, I was pathetically broke. Married, children, etc. As a result, I sold every textbook I owned back to the University Bookstore. A mistake I knew I would eventually have to correct. After a few paychecks, I spied the Fourth Edition of this book and bought it. That was approximately 1967. It was my career saver. If I could not remember a formula, as was often the case, I could find it in this book. The Fourth Edition went missing in 2005 and I proceeded to look for it until it became an obsession. I still do not know what happened to it. Last month Amazon suggested, based on other engineering books I have purchased from the Amazon website, that I might be interested in this, the Eighth Edition. Two days later it was on my desk. The whole idea behind this book is simple enough; to have one resource that contains the facts, principles, and formulae pertaining to the strength of materials. The Eighth Edition does that in spades. The choice is yours. Either pack around 30 pounds, or more, in various textbooks and references, or have what you need in one.

As the all-around handy concise reference to stress analysis, Roark's remains King. The differences in the table of contents are listed below. The price is also quite reasonable for a 1072 pg book. Roark's strength remains in the extensive tables of many common and uncommon loading conditions and restraints. The chapters provide brief overviews of the theoretical concepts behind the tables but cannot be regarded as a teaching medium for these deep topics. For example, the chapters on fatigue & joints do not provide the education necessary to become a proficient stress analyst in these areas. Any serious stress analyst also has proficiency in an FEA package as well. Roark's formulas serve to provide terrific verification calculations to confirm FEA results are in the ballpark. Overall, there is no reason to be without this iconic textbook. Here is a short list of books which will greatly complement the concepts therein:Theory of Elastic Stability - TimoshenkoDesign of Welded Structures - BlodgettDesign of Weldments - BlodgettMechanical Engineering Design - ShigleyMaterials Selection in Mechanical Design - AshbyDeformation and Fracture Mechanics of Engineering Materials - HertzbergMechanical Behavior of Materials - DowlingAn Introduction to the Design and Behavior of Bolted Joints - BickfordHarris Shock & Vibration Handbook - PiersolPeterson's Stress Concentration Factors - PilkeyNew topics in chapters 18-21:-Fatigue and fracture mechanics-Stresses in fasteners and joints-Composite materials-BiomechanicsTopics covered in the previous 7TH edition (851 pgs):Chapter 1 - IntroductionChapter 2 - Stress and Strain: Important RelationshipsChapter 3 - The Behavior of Bodies Under StressChapter 4 - Principles and Analytical MethodsChapter 5 - Numerical MethodsChapter 6 - Experimental MethodsChapter 7 - Tension, Compression, Shear, and Combined StressChapter 8 - Beams; Flexure of Straight BarsChapter 9 - Bending of Curved BeamsChapter 10 - TorsionChapter 11 - Flat PlatesChapter 12 - Columns and Other Compression MembersChapter 13 - Shells of Revolution; Pressure Vessels; PipesChapter 14 - Bodies in Contact Undergoing Direct Bearing and Shear StressChapter 15 - Elastic StabilityChapter 16 - Dynamic and Temperature StressesChapter 17 - Stress Concentration Factorsversus the new 8th edition (1072 pgs):Chapter 1. IntroductionChapter 2. Stress and Strain: Important RelationshipsChapter 3. The Behavior of Bodies Under StressChapter 4. Principles and Analytical MethodsChapter 5. Numerical MethodsChapter 6. Experimental MethodsChapter 7. Tension, Compression, Shear, and Combined StressChapter 8. Beams; Flexure of Straight BarsChapter 9. Curved BeamsChapter 10. TorsionChapter 11. Flat PlatesChapter 12. Columns and Other Compression MembersChapter 13. Shells of Revolution; Pressure Vessels; PipesChapter 14. Bodies under Direct Bearing and Shear StressChapter 15. Elastic StabilityChapter 16. Dynamic and Temperature StressesChapter 17. Stress ConcentrationChapter 18. Fatigue and FractureChapter 19. Stresses in Fasteners and JointsChapter 20. Composite MaterialsChapter 21. Solid BiomechanicsThis book is still no excuse for laziness. Be sure to follow up any stress analysis with journal/texbook research which may provide vital experimental vs. theoretical analysis. There are still manufacturing imperfections and departure from ideal conditions to consider. The experienced analyst knows that a little research goes a long way to prevent a lot of regret.

I bought this book to help determine membrane and bending stresses in a pressure vessel I am designing. The book has a staggering number of load cases with applicable equations and tons of tabulated data for quick calculations. The problem is, despite how thorough the book is, you will always run into at least one loading or geometry that is not listed in the book. I have used the index several times to look for different load cases and have it be very good. Information is easy to find despite how dense the pages are with numbers and figures. Minus one star because I have found some of the layouts a little confusing. Some of the instructions on how to apply certain cases are ambiguous as well. Despite these minor shortcomings I think this book is essential to anyone doing stress or deformation analysis by hand.

I am a mechanical engineer with 40+ years on the job. I had the fifth edition of this book for perhaps 35 years or more and used it a lot in my design work. I decided to buy this eighth edition after seeing an ad for it. I believe it was worthwhile. I very much like the first six chapters as they are a wonderful explanation of the methods used in determining stress and strain. Some was review for me, and some new. The rest of the book is extremely useful in checking your FEA work to see if your answers are reasonable, especially when first learning and applying FEA. I use SolidWorks on the job, but I believe that reading,using, and understanding this book is critical for a Mech Eng who is designing mechanical products.

Came in excellent condition without any scratches or anything. I will be curious as to when I will actually apply this book in my career, I am certain from how much is presented in here that there are lots of opportunities.

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