Mechanisms and Machines Kinematics Dynamics and Synthesis SI Edition 1st Edition Stanisic Solutions Manual
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Mechanisms and Machines Kinematics Dynamics and Synthesis SI Edition 1st Edition Stanisic Solutions Manual.
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Product details:
- ISBN-10 : 1285057562
- ISBN-13 : 978-1285057569
- Author: Michael M. Stanisic
Table of contents:
Preface. Acknowledgments
. 1. Introduction. Joints. Skeleton Diagrams. Examples of Skeleton Diagrams. Mechanisms and Machines. Gruebler’s Criterion and Degrees of Freedom. Mobility. Grashof’s Criterion. Exercises.
PART I: VECTOR LOOP METHOD.
2. Kinematic Analysis. Closed-Form Solutions the Position Equations. Numerical Solutions to Position Equations via Newton’s Method. The Motion of Points of Interest. Exercises. Programming Problems.
Appendix I: Derivation of the Double Angle Formulas.
Appendix II: Derivation of the Tangent of the Half Angle Formulas.
Appendix III: Matlab Code Used in Example 2.10 Demonstrating Newtons’ Method.
PART II: ROLLING CONTACTS.
3. Kinematic Analysis. Externally Contacting Rolling Bodies. Internally Contacting Rolling Bodies. One Body with a Flat Surface. Assembly Configuration. Geartrains. Exercises.
Appendix I: The Involute Tooth Profile.
PART III: KINEMATIC COEFFICIENTS.
4. Kinematic Analysis.
PART I: THE INVERSE DYNAMICS PROBLEM.
5. Machine Dynamics. Review of Planar Kinetics. Three-Dimensional Aspects in the Force Analysis of Planar Machines. Static Force Analysis and Inertia Force Analysis. Force Analysis of Rolling Contacts. Exercises.
Appendix I: Kinematic Analysis for Examples in Section 5.1 (Example 5.2) and Section.
Appendix II: Computing the accelerations of the mass centers of the composite shapes in the example of Section 5.2.6.1.
PART II: JOINT FRICTION.
6. Machine Dynamics. Friction in a Pin Joint. Friction in a Pin in a Slot Joint. Friction in a Straight Sliding Joint. Exercises.
PART III: THE POWER EQUATION.
7. Machine Dynamics. Development of the Power Equation. Power Equation and the Inverse Dynamics Problem. Power Equation and the Forward Dynamics Problem. Mechanical Advantage. Efficiency and Mechanical Advantage. Exercises. Programming Problems. Programming Problems – Designing the Drive System of an Air Compressor. Designing the Drive System of a Fail-Safe Quick Valve Shut Off System. Design Problems.
PART I: FREUDENSTEIN’S EQUATION.
8. Mechanism Synthesis. Freudenstein’s Equation for the Four Bar Mechanism. Freudenstein’s Equation for the Crank-Slider Mechanism. Design Problems.
PART II: RIGID BODY GUIDANCE.
9. Mechanism Synthesis. Mathematical Model of a Planar Rigid Body Displacement. The Three-Position Problem. The Four-Position and Five-Position Problems. Design Problems.
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