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Course Information
Course Unit Title : Advanced Strength of Materials
Course Unit Code : 01INS6132
Type of Course Unit : Optional
Level of Course Unit : Second Cycle
Year of Study : Preb
Semester : 255.Semester
Number of ECTS Credits Allocated : 6,00
Name of Lecturer(s) : ---
Course Assistants :
Learning Outcomes of The Course Unit : Advanced strength of materials view point will be gained
Complicated engineering problems can be analyzed and will be solved
Mode of Delivery : Face-To-Face
Prerequisities and Co-requisities Courses : Unavailable
Recommended Optional Programme Components : Unavailable
Course Contents : Defination of stress, two and three Dimensional stress, two and three dimensional strain, constitutive relations of isotropic and anisotropic materials, torsion, membrane analogy; the work of internal and external forces, time dependent behaviour and fatigue, stress concentration, non-linear behaviour and plasticity, compound stress, energy theories, variation principles and energy methods
Languages of Instruction : Turkish
Course Goals : Examining the subjects of mechanics of deformable bodies, which are briefly considered or completely not considered in bachelor's degree, in detail
Bringing graduate students the ability for solving the problems of related issues
Course Aims : By examining the subjects of mechanics of deformable bodies, which are briefly considered or completely not considered in bachelor's degree, in detail, bringing graduate students the ability for solving the problems of related issues
WorkPlacement  
Recommended or Required Reading
Textbook : Lecture Notes of Advanced Strength of Materials
Additional Resources : Den Hartog J.P., (1987) Advanced Strength of Materials. Dover Publications.
Inan M, (1988). Strength of materials. ITÜ Publishing (in Turkish).
Cook, R, Young W, (1998) Advanced Mechanics of Materials (2nd Edition) Prentice Hal.
Hibbeler, R. C., (2000)Mechanics of Materials, Prentice Hall International, Inc. Upper Saddle River, NJ.
Beer, F.P., Johnston, E.R., and Dewolf, J. T.,(2002). Mechanics of Materials , 3rd ed., McGraw-Hill.
Bakioğlu M. (2009). Strength of Materials Volume 1, Beta Publishing(in Turkish).
Bakioğlu M. (2009). Strength of Materials Volume 2, Beta Publishing(in Turkish).
Omurtag, M.H. (2012). Strength of Materials Volume 1, Birsen Publishing (in Turkish).
Omurtag, M.H. (2012). Strength of Materials Volume 2, Birsen Publishing (in Turkish).
Material Sharing
Documents :
Assignments :
Exams :
Additional Material :
Planned Learning Activities and Teaching Methods
Lectures, Practical Courses, Presentation, Seminar, Project, Laboratory Applications (if necessary)
ECTS / Table Of Workload (Number of ECTS credits allocated)
Student workload surveys utilized to determine ECTS credits.
Activity :
Number Duration Total  
Course Duration (Excluding Exam Week) :
14 3 42  
Time Of Studying Out Of Class :
14 3 42  
Homeworks :
1 26 26  
Presentation :
0 0 0  
Project :
0 0 0  
Lab Study :
0 0 0  
Field Study :
0 0 0  
Visas :
1 30 30  
Finals :
1 40 40  
Workload Hour (30) :
30  
Total Work Charge / Hour :
180  
Course's ECTS Credit :
6      
Assessment Methods and Criteria
Studies During Halfterm :
Number Co-Effient
Visa :
1 100
Quiz :
0 0
Homework :
0 0
Attendance :
0 0
Application :
0 0
Lab :
0 0
Project :
0 0
Workshop :
0 0
Seminary :
0 0
Field study :
0 0
   
TOTAL :
100
The ratio of the term to success :
50
The ratio of final to success :
50
TOTAL :
100
Weekly Detailed Course Content
Week Topics  
1 Introduction
 
2 Definition of Stress, Two dimensional stress
 
3 Three dimensional stress
 
4 Two and three dimensional strain
 
5 Constitutive relations of isotropic and anisotropic materials
 
6 Torsion, Membrane analogy
 
7 The work of internal and external forces
 
8 Time dependent behaviour and fatigue
 
9 Stress concentration
 
10 Non-linear behaviour and plasticity
 
11 Compound stress
 
12 Energy theories
 
13 Variation principles and energy methods
 
14 General assessment
 
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0
 
0
 
0
 
0
 
0
 
0
 
0
 
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0
 
0
 
0
 
0
 
0
 
0
 
0
 
0
 
0
 
0
 
0
 
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