3. 강의목표
In this course, students will develop a comprehensive understanding of the mechanics of soft materials and learn about their fracture. In addition to theoretical concepts, students will be introduced to various experimental methods used to measure the mechanical and fracture properties of soft materials.
4. 강의선수/수강필수사항
Undergraduate-level physics
5. 성적평가
Quiz: 60%
Final report: 40%
6. 강의교재
도서명 |
저자명 |
출판사 |
출판년도 |
ISBN |
Fracture Mechanics by Zhigang Suo
|
|
|
0000
|
|
Advanced Elasticity by Zhigang Suo
|
|
|
0000
|
|
Mechanics of soft matter by Ken Shull
|
|
|
0000
|
|
7. 참고문헌 및 자료
Thermodynamics by Zhigang Suo
Polymer Physics by M. Rubinstein, Ralph H. Colby
Fracture Behaviour of Polymers by Robert J. Young A. J. Kinloch, Anthony J. Kinloch
Fracture of Brittle Solids by Lawn
Fracture Mechanics: Fundamentals and Applications by Ted L. Anderson
8. 강의진도계획
- Polymers
- Entropy
- Thermal system
- Free energy
- Neo-Hookean model
- Freely jointed chain model
- Inglis (1913) Griffith (1921)
- Irwin-Orowan (1948)
- Energy release rate
- Toughness
- Crack-tip singularity
- J integral
- Fatigue
- Lake-Thomas (1967)
- Recent research review
11. 장애학생에 대한 학습지원 사항
- 수강 관련: 문자 통역(청각), 교과목 보조(발달), 노트필기(전 유형) 등
- 시험 관련: 시험시간 연장(필요시 전 유형), 시험지 확대 복사(시각) 등
- 기타 추가 요청사항 발생 시 장애학생지원센터(279-2434)로 요청