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Shigley’s Mechanical Engineering Design 2024 Release By Keith Nisbett, Richard Budynas

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39.66 MB
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About this ebook
The Shigley's Mechanical Engineering Design (2024 Release), authored by J. Keith Nisbett and Richard G. Budynas (representing the 12th edition of this classic text), breaks down its core machine design curriculum into four distinct operational parts: [1, 2, 3]
Part 1: Basics
  • Introduction to Mechanical Engineering Design: Core mechanics of the design process, safety factors, evaluation of uncertainty, and engineering standards.
  • Materials: Analysis of material properties, static strength, cold working, and criteria for material selection.
  • Load and Stress Analysis: Critical examination of shear, bending, torsion, stress concentration, and contact stresses.
  • Deflection and Stiffness: Beam deflection calculations, strain energy, and the application of Castigliano's theorem. [1, 2, 3]
Part 2: Failure Prevention
  • Failures Resulting from Static Loading: Static failure theories for ductile and brittle materials (e.g., von Mises, maximum shear stress).
  • Fatigue Failure Resulting from Variable Loading: Stress-life approach, endurance limit modifications, and damage accumulation under fluctuating loads. [1]
Part 3: Design of Mechanical Elements
  • Shafts and Shaft Components: Analysis of shaft layout, critical speeds, and stress tolerances.
  • Screws, Fasteners, and Nonpermanent Joints: Structural dynamics of power screws, threaded fasteners, and gasketed joints.
  • Welding, Bonding, and Permanent Joints: Mechanics of welded connections, brazing, and structural adhesives.
  • Mechanical Springs: Helical compression, extension, and torsion spring configurations.
  • Rolling-Contact Bearings: Load-life calculations, bearing selection, and mounting configurations.
  • Lubrication and Journal Bearings: Hydrodynamic lubrication theory and design of journal bearings.
  • Gears (General, Spur, Helical, Bevel, and Worm): Kinematics, tooth geometry, stress analysis, and avoiding undercut defects.
  • Clutches, Brakes, Couplings, and Flywheels: Energy storage and dissipation analysis in standard transmission components.
  • Flexible Mechanical Elements: Belts, roller chains, wire ropes, and flexible shafts.
  • Power Transmission Case Study: A comprehensive engineering layout exercise applying interconnected component design principles. [1, 2, 3, 4, 5, 6, 7]
Part 4: Special Topics
  • Finite-Element Analysis: Fundamental concepts and introduction to FEA modeling within mechanical component design.
  • Geometric Dimensioning and Tolerancing (GD&T): Interpretation of engineering drawings, standard symbol languages, and production limits. [1, 2]

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