Course
İNM2110819
STRENGTH of MATERIALS I
Civil Engineering
- LECTURE
- 4
- LAB
- 0
- CREDITS
- 4
- ECTS
- 5
REQUIRES
REQUIRED BY
TAUGHT IN
AIM
1. Teaching fundamental concepts of deformable bodies; stress, strain and failure of materials. 2. Having a knowledge of the mechanical properties of the materials. 3. To give engineering design ability of the rod under the influence of axial load, shear force, torque and pure bending.
CONTENT
This course contains; Principles of Strength of Materials,Uniaxial Stress State,Planar Stress State ,Strain,Constitutive Equations,Assumptions of Bars ,Differantial Equilibrium Equations,Shear Force and Bending Moment Diagrams- Section Method,Shear Force and Bending Moment Diagrams- Integration Method,Normal Force,Shear Force,Torque,Symmetric Bending,Unsymmetric Bending.
LEARNING OUTCOMES
- 1
1. Performs stress analysis and applies transformation equations. Calculates principle stresses and draws Mohr circle,
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
- 2
2. Performs strain analysis. Calculates principle strains and draws Mohr circle.
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
- 3
3. Using constitutive equations, can perform the calculations between stress and strain.
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
- 4
4. Using differential equilibrium equations, calculates the internal reactions of bars
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
- 5
5. Performs stress analysis, sizing and checking safety conditions for the simple stress states (Axial force, shear force, torque, pure bending) .
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
WEEKLY PLAN
- WEEK 1
Principles of Strength of Materials
- WEEK 2
Uniaxial Stress State
- WEEK 3
Planar Stress State
- WEEK 4
Strain
- WEEK 5
Constitutive Equations
- WEEK 6
Assumptions of Bars
- WEEK 7
Differantial Equilibrium Equations
- WEEK 8
Shear Force and Bending Moment Diagrams- Section Method
- WEEK 9
Shear Force and Bending Moment Diagrams- Integration Method
- WEEK 10
Normal Force
- WEEK 11
Shear Force
- WEEK 12
Torque
- WEEK 13
Symmetric Bending
- WEEK 14
Unsymmetric Bending
ASSESSMENT
- Rate of Midterm Exam to Success30%
- Rate of Final Exam to Success70%
WORKLOAD
| ACTIVITY | COUNT | HOURS | TOTAL |
|---|---|---|---|
| Course Hours | 14 | 4 | 56 |
| Guided Problem Solving | 14 | 1 | 14 |
| Resolution of Homework Problems and Submission as a Report | 2 | 12 | 24 |
| Term Project | 0 | 0 | 0 |
| Presentation of Project / Seminar | 0 | 0 | 0 |
| Quiz | 0 | 0 | 0 |
| Midterm Exam | 1 | 26 | 26 |
| General Exam | 1 | 30 | 30 |
| Performance Task, Maintenance Plan | 0 | 0 | 0 |
READING
- Omurtag, M. H., “Mukavemet (cilt 1)”, 6th Edition (2018), Birsen Yayınevi. ISBN: 9755114319
- Hibbeler, R. C., "Mechanics of Materials in SI Units", 10th Edition (2018), Pearson. ISBN: 9781292178202
TEACHING STAFF
- Prof.Dr. Mehmet Hakkı OMURTAGCOORDINATOR
- Prof.Dr. Mehmet Hakkı OMURTAG