Roark’s Formulas for Stress and Strain, 9E 9th Edition by Warren C. Young

Roark’s Formulas for Stress and Strain, 9E 9th Edition by Warren C. Young

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ISBN-13: 978-1260453751

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Description

There are formulas for stress and strain. 9th edition by Warren C. Young

About the Author

Roark’s Formulas for Stress and Strain 8th Edition by Warren C. 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).

The industry-standard resource for stress and strain formulas―fully updated for the latest advances and restructured for ease of useThis newly designed and thoroughly revised guide contains accurate and thorough tabulated formulations that can be applied to the stress analysis of a comprehensive range of structural components. Roark’s Formulas for Stress and Strain, Ninth Edition has been reorganized into a user-friendly format that makes it easy to access and apply the information. The book explains all of the formulas and analyses needed by designers and engineers for mechanical system design. You will get a solid grounding in the theory behind each formula along with real-world applications that cover a wide range of materials.Coverage includes:

    • • The behavior of bodies under stress
    • • Analytical, numerical, and experimental methods
    • • Tension, compression, shear, and combined stress
    • • Beams and curved beams
    • • Torsion, flat plates, and columns
    • • Shells of revolution, pressure vessels, and pipes
    • • Bodies under direct pressure and shear stress
    • • Elastic stability
    • • Dynamic and temperature stresses
    • • Stress concentration
    • • Fatigue and fracture
    • • Stresses in fasteners and joints
    • Composite materials and solid biomechanics

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