
Mark's Calculations For Machine Design
Author(s): BROWN (Author)
- Publisher: McGraw Hill
- Publication Date: 3 Feb. 2005
- Edition: Illustrated
- Language: English
- Print length: 464 pages
- ISBN-10: 0071436898
- ISBN-13: 9780071436892
Book Description
Featuring both U.S. and SI measurements, this step-by-step resource will enable you to: Calculate forces in space; Resolve forces into components; Determine moments, couples, and equivalent systems of force for a rigid body; and Analyse equilibrium into two and three dimensions for a rigid body as well as many other important calculations without the use of a conversion chart.
Mark’s Calculations For Machine Design Analyses problems in a simple and logical manner.
Editorial Reviews
From the Back Cover
This information-packed reference is the perfect bridge between the principles outlined in textbooks and the challenges of engineering practice. Engineer and educator Thomas H. Brown, Jr.’s new book offers problem-solving techniques, formulas, and tabular data in a convenient, quick lookup format. Developed and expanded out of material in McGraw-Hill’s best-selling Marks’ Standard Handbook for Mechanical Engineers, this unique resource provides complete step-by-step help with:
- Basic to advanced calculation procedures
- Examples of solved problems in both U.S. customary and SI/metric units
- Calculations for fundamental, advanced, and combined loadings on machine elements
- Problem-solving techniques and calculations for static and dynamic design, including fatigue and column buckling
- Advanced problems for bolted and welded connections, springs, flywheels, gear trains, and more
- Easy-to-use tables, charts, listings, and formulas
JOB-SIMPLIFYING CONTENT
Axial Loading * Torsion * Bending * Beams: Shear Force and Bending Moment Diagrams with Deflection Formulas * Pressure Loading: Thin- and Thick-Walled Vessels, Press-Shrink Fit * Contact Loading: Spherical and Cylindrical Geometries * High-Speed Rotational Loading * Combined Loadings * Principal Stresses and Mohr’s Circle * Static Design Criteria: Ductile to Brittle Materials * Fatigue and Dynamic Design Criteria: Finite and Infinite Life * Bolted Connections * Welded Connections * Springs * Flywheels * Linkages * Gear Trains: Spur and Planetary Arrangements * Wheels and Flywheels
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