Designed to provide concise and easy-to-use formula and calculations, Mark's Calculations for Machine Design is the bridge between principle and execution 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.…mehr
Designed to provide concise and easy-to-use formula and calculations, Mark's Calculations for Machine Design is the bridge between principle and execution 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.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Thomas Hunter Brown, Jr., PhD, PE, Professor of Mechanical Engineering, North Carolina State Universtiy currently manages both the FE Review Program and the Civil Engineering PE Review Programs at ITRE, among other course development and teaching duties. Dr. Brown also teaches review classes for the Mechanical Engineering PE Review Program offered by the Industrial Extension Service of the College of Engineering at North Carolina State University. His area of specialty is Stress Analysis and Machine Design.
Inhaltsangabe
Foreword Preface Acknowledgments Part 1: Strength of Machines Chapter 1: Fundamental Loadings Chapter 2: Beams: Reactions, Shear Force and Bending Moment Distributions, and Deflections Chapter 3: Advanced Loadings Chapter 4: Combined Loadings Chapter 5: Principal Stresses and Mohr's Circle Chapter 6: Static Design and Column Buckling Chapter 7: Fatigue and Dynamic Design Part 2: Application to Machines Chapter 8: Machine Assembly Chapter 9: Machine Energy Chapter 10: Machine Motion Bibliography Index
Foreword Preface Acknowledgments Part 1: Strength of Machines Chapter 1: Fundamental Loadings Chapter 2: Beams: Reactions, Shear Force and Bending Moment Distributions, and Deflections Chapter 3: Advanced Loadings Chapter 4: Combined Loadings Chapter 5: Principal Stresses and Mohr's Circle Chapter 6: Static Design and Column Buckling Chapter 7: Fatigue and Dynamic Design Part 2: Application to Machines Chapter 8: Machine Assembly Chapter 9: Machine Energy Chapter 10: Machine Motion Bibliography Index
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