Mechanics and Materials II
Lecture Notes
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 SES #  | 
 TOPICS  | 
 LECTURE NOTES  | 
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 Elasticity and Solid Mechanics  | 
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 1  | 
 Course Outline  | 
 
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 2  | 
 Applications: Beam Bending, Buckling and Vibration  | 
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 3  | 
 Mechanisms of Elasticity and Viscoelasticity  | 
 
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 4  | 
 Lab 1: Beam Bending, Buckling and Vibration  | 
 
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 5  | 
 3-D Linear Thermo-elasticity: Strain-displacement, Stress-strain-temperature, and Stress-equilibrium  | 
 (PDF)  | 
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 6  | 
 Simple States of Elastic Stress, Strain, and Displacement  | 
 
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 7  | 
 Lab 2: Engineering Polymers: Viscoelasticity, Strength, and Ductility  | 
 
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 8  | 
 Limits to Elasticity: Strength and Multi-axial Yield Condition  | 
 
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 9  | 
 Elasticity of Composite Materials  | 
 (PDF)  | 
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 10  | 
 Lab 3: Stress Concentration  | 
 
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 Plasticity and Creep  | 
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 11  | 
 Uniaxial Elastic-plastic Behavior  | 
 (PDF)  | 
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 12  | 
 Ideal Shear Strength  | 
 
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 13  | 
 Lab 4: Sheet Bending  | 
 
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 14  | 
 Strengthening Mechanisms  | 
 (PDF)  | 
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 15  | 
 Limit Analysis  | 
 (PDF)  | 
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 16  | 
 Lab 5: Heat Treatment  | 
 
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 17  | 
 Applications of Limit Analysis  | 
 
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 18  | 
 Quiz I  | 
 
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 19  | 
 High-temperature Deformation: Creep and Stress Relaxation  | 
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 20  | 
 High-temperature Deformation Mechanisms  | 
 (PDF)  | 
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 21  | 
 Lab 6: Project 1  | 
 
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 Fracture  | 
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 22  | 
 Ideal Cleavage Strength  | 
 
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 23  | 
 Crack-tip Stress Intensity Factors  | 
 (PDF)  | 
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 24  | 
 Lab 7: Fracture Toughness  | 
 
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 25  | 
 Linear Elastic Fracture Mechanics (LEFM)  | 
 (PDF)  | 
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 26  | 
 Applications of LEFM  | 
 (PDF)  | 
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 27  | 
 Lab 8: Project 2  | 
 
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 Fatigue  | 
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 28  | 
 Fatigue Crack Propagation  | 
 (PDF)  | 
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 29  | 
 Defect-free Fatigue Design: High-cycle Fatigue  | 
 (PDF)  | 
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 30  | 
 Defect-free Fatigue Design: Low-cycle Fatigue  | 
 (PDF)  | 
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 31  | 
 Lab 9: Project 3  | 
 
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 32  | 
 Applications: Strain-amplitude/Fatigue-life Behavior  | 
 Supporting Files  | 
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 33  | 
 Quiz II  | 
 
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 34  | 
 Lab 10: Project Presentations  | 
 
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 Material Selection for Design  | 
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 35  | 
 Principles for Material Selection: Performance, Properties, and Constraints  | 
 
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 36  | 
 Optimization  | 
 
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 37  | 
 Lab 11: Course Review (Optional)  | 
 
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 38  | 
 Final Exam  | 
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Labs
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 SES #  | 
 TOPICS  | 
| 
 4  | 
 Lab 1: Elastic Behavior in Tension, Bending, Buckling, and Vibration  | 
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 7  | 
 Lab 2: Rate- and Time-dependent Deformation of Polymers  | 
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 10  | 
 Lab 3: Sheet Metal Forming: Elastic-plastic Beam Bending  | 
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 13  | 
 Lab 4: Isotropic Linear Elastic Stress Concentration  | 
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 16  | 
 Lab 5: Effect of Heat Treatment on Mechanical Properties of Steels  | 
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 21  | 
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 24  | 
 Lab 7: Fracture Toughness and Residual Load-carrying Capacity of a Structure  | 
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 27  | 
 Lab 8: Project 2  | 
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 31  | 
 Lab 9: Project 3  | 
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 34  | 
 Lab 10: Project Presentations  | 
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 37  | 
 Lab 11: Course Review (Optional)  | 
Assignments
| 
 SES #  | 
 ASSIGNMENTS  | 
 SOLUTIONS  | 
| 
 6  | 
 Homework 1 (PDF)  | 
 (PDF)  | 
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 9  | 
 Homework 2 (PDF)  | 
 (PDF)  | 
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 15  | 
 Homework 3 (PDF)  | 
 (PDF)  | 
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 23  | 
 Homework 4 (PDF)  | 
 (PDF)  | 
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 26  | 
 Homework 5 (PDF)  | 
 (PDF)  | 
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 28  | 
 Homework 6 (PDF)  | 
 (PDF)  | 
Exams
Practice Exam I (PDF)
Solution for Practice Exam I (PDF)
Practice Exam II (PDF)
Quiz I Solution (PDF)
Quiz II Solution (PDF)
