| LEC # | TOPICS | READINGS |
|---|---|---|
| 1 | Introduction, overview of polymers | |
| 2 | Chemical composition | Ward, pp. 1-4. |
| 3 | Structure |
Ward, pp. 4-17. IUD paper: Roylance, David. "Assessment of Olefin-Based IUD Tail Strings." Journal of Applied Biomaterials 4 (1993): 289-301. Spherulite paper: Starkweather, Howard W. Jr., and Richard E. Brooks. "Effect of Spherulites on the Mechanical Properties of Nylon 66." Journal of Applied Polymer Science 1 (1959): 236-239. |
| 4 | Elastic response | Module 1, pp. 1-8. |
| 5 | Strain |
Ward, pp. 20-22 and 25-26. Module 8, pp. 1-7. |
| 6 | Stress |
Ward, pp. 18-20. Module 9, pp. 1-5. |
| 7 | Transformations of stress and strain |
Module 10, pp. 1-4 and 8-10. Ballistic fibres Cunniff article: Cunniff, Philip M., Margaret A. Auerbach, Eugene Vetter, and Doetze J. Sikkema. "High Performance 'M5' Fiber for Ballistics / Structural Composites." Paper AO-04 at the 23rd Army Science Conference. |
| 8 | Hookean elasticity |
Ward, pp. 23-24. Module 11, pp. 1-6. |
| 9 | Gaussian chain statistics | Ward, pp. 32-36. |
| 10 | Rubber elasticity |
Ward, pp. 36-40. Module 2, pp. 7-15. |
| 11 | Elastomer mechanics | Module 6. |
| 12 | Introduction to linear viscoelasticity |
Ward, pp. 45-47. Module 19, pp. 1-3. |
| 13 | Creep and stress relaxation |
Ward, pp. 48-50. Module 19, pp. 4-6. |
| 14 | Quiz 1 | |
| 15 | Dynamic response |
Ward, pp. 62-65. Module 19, pp. 6-8. Boyer article: Boyer, R. F. "Dependence of Mechanical Properties on Molecular Motion in Polymers." Polymer Engineering and Science 8 (1968): 161-185. |
| 16 | The Maxwell spring-dashpot model |
Ward, pp. 55-58. Module 19, pp. 8-11. |
| 17 | Standard linear solid |
Ward, pp. 58-60. Module 19, pp. 11-16. |
| 18 | Wiechert solid, Boltzman superposition |
Ward, pp. 51-55. Module 19, pp. 17-19. |
| 19 | Effect of temperature | Module 19, pp. 19-23. |
| 20 | Effect of temperature (cont.) |
Ward, pp. 84-93 and 97-102. Struik article: Struik, L. C. E. "Physical Aging in Plastics and Other Glassy Materials." Polymer Engineering and Science 17 (1977): 165-173. |
| 21 | Multiaxial stresses |
Module 19, pp. 23-26. Ultrasonic heating study (PDF) |
| 22 | Stress analysis: Superposition | Module 19, pp. 26-28. |
| 23 | Stress analysis: Correspondence principle |
Module 19, pp. 28-31. Fiber impact study |
| 24 | Composite materials, rule of mixtures |
Ward, pp. 141-149. Module 3, pp. 1-4. |
| 25 | Mechanics of composites |
Ward, pp. 149-154, Module 3, pp. 4-5. Composites degradation article: Kumar, Bhavesh G., Raman P. Singh, and Toshio Nakamura. "Degradation of Carbon Fiber-reinforced Epoxy Composites by Ultraviolet Radiation and Condensation." Journal of Composite Materials 36 (2002): 2713-2733. |
| 26 | Quiz 2 | |
| 27 | Composite laminates: Anisotropy and transformations |
Module 15, pp. 1-6. Gillham article: Gillham, John K. "Formation and Properties of Thermosetting and High Tg Polymeric Materials." Polymer Engineering and Science 26 (1986): 1429-1433. Epoxy cure study (PDF) |
| 28 | Laminates: Plate bending |
Module 15, pp. 6-13. |
| 29 | Laminates: Temperature and viscoelastic effects |
Module 15, pp. 11-16. Tuttle-Brinson article: Tuttle, M. E., and H. F. Brinson. "Prediction of the Long-Term Creep Compliance of General Composite Laminates." Experimental Mechanics 26 (1986): 89-102. |
| 30 | Yield |
Ward, pp. 211-221. Module 4, (all). |
| 31 | Yield: Multiaxial stresses |
Ward, pp. 222-224. Module 20, pp. 1-5. |
| 32 | Yield: Effect of hydrostatic stress, crazing |
Ward, pp. 224-229 Module 20, pp. 5-8. Sternstein-Ongchin article: Sternstein, S. S., and L. Ongchin. "Yield Criteria for Plastic Deformation of Glassy High Polymers in General Stress Fields." Polymer Preprints 10 (1969): 1117-1124. |
| 33 | Yield: Effect of rate and temperature |
Ward, pp. 237-241. Module 20, pp. 8-10. |
| 34 | Fracture: The Zhurkov model |
Ward, pp. 269-271. Zhurkov article: Zhurkov, S. N. "Kinetic Concept of the Strength of Solids." International Journal of Fracture Mechanics 1 (1965): 311-322. Roylance article: |
| 35 | Fracture: The Griffith model |
Ward, pp. 246-253. Module 23, pp. 1-7. Williams article: Williams, M. L. "Fracture in Viscoelastic Media." Fundamental Phenomena in the Materials Sciences 4 (1967): 23-32. |
| 36 | Fracture: Crack-tip stresses, stress intensity factor | Module 23, pp. 7-9. |
| 37 | Quiz 3 | |
| 38 | Fracture: Effect of specimen geometry | Module 23, pp. 10-13. |
| 39 | Fracture: J-integral and viscoelasticity | ABS article: Lu, Ming-Luen, Chang-Bing Lee, and Feng-Chih Chang. "Fracture Toughness of Acrylonitrile-Butdiene-Styrene by J-Integral Methods." Polymer Engineering and Science 35 (1995): 1433-1439. |









