Course Code:                               : 5103127

 Course Name                                :  Mechanics of Composite Materials

  Instructor                                      :  Assos. Dr. Murat KISA

  Theoretical /  Practical / Credit : 3 / 0 / 3

 Learning Activity

Estimated Time(Hour)

Evaluation

Theoretical Course (14 Week)0

3 x 14 = 42

Participation to class

Guided Problem Solving

None

 

Individual Study

3 x 14 = 42

 

Weekly homework problems solving

1 x 14 = 14

Individual or teamwork and report preparation for homework’s.

Term project

None

 

Midterm Exam

4 x 2 = 8

Open/ Closed exam

Final Exam

Exam                  : 2

Individual work    : 8

Open/ Closed exam

Quiz (4 piece)

Individual work    : 8

Open/ Closed exam

Research (internet/library)

 

 

Other(………………………. )

 

 

Total Course Load (Hours)

124

 

 

 

 

HARRAN UNÝVERSITY ENGINEERING FACULTY

MECHANICAL ENGI0NEERING DEPARTMENT

           

Course Name

Code

Semester

T+U

Credit

AKTS

 

Mechanics of Composite Materials

5103127

Fall

3+0

3

5

 

Prerequisite Courses

None

Language of Course

Turkish

Course class

Elective

Coordinator of Course

Assos. Dr. Murat KISA

Instructor

Assos. Dr. Murat KISA

Course Assistant

-

Objective of course

Increasing usage of composite materials, today and featured much superior materials. In this course, the the mechanics of composite materials and composite materials composed of structures analysis taught.

Course Learning Output

• About the general concepts of composite materials, constitutive relations of anisotropic media, general Hook's law, orthotropic layer, layered plates, orthotropic plates analysis, general the cylindrical-layered plates, plaque-layered structures, bending, buckling the vibration behavior, post-buckling behavior of laminated composite structures the large amplitude vibrations are expected to know the issues.

• Analysis of the composite structures are expected to come from the market.

• Composite structures, in particular to investigate new methods that can solve the numerical solution methods to obtain information about.

Course Contents

Constitutive relations of anisotropic media. General Hook's law. Orthotropic layer. Layered plates. Analysis of orthotropic plates. General-layer plates. Cylindrical-layer plates. Layered plaque structures, bending, buckling the vibration behavior. Post-buckling behavior of laminated composite structuresthe large amplitude vibrations.

 

Weeks

Plan of Course at Semester

1

Introduction to mechanics of composite materials.

2

Stress and strain components.

3

Constitutive relations of anisotropic media.

4

Orthotropic layer.

5

Analysis of orthotropic plates.

6

General-layer plates.

7

Cylindrical-layer plates.

8

Practice.

9

Flexural behavior of layered structures in plaque

10

Torsional behavior of layered structures in plaque

11

Layered plaque buckling behavior of structures

12

Layered plaque vibration behavior of structures

13

Practice.

14

Computer application

 

General Sufficiency

To know about the general concepts of composite materials, constitutive relations of anisotropic media, general Hook's law, orthotropic layer, layered plates, orthotropic plates analysis, general the cylindrical-layered plates, plaque-layered structures, bending, buckling the vibration behavior, post-buckling behavior of laminated composite structures the large amplitude vibrations of known issues.

 

References

1.   Mechanics of Composite Materials, Scripta Book, Jones, R.M., 1975.

2.   Stress Analysis of Fiber Reinforced Composite Materials, Hyer, M.W., McGraw-Hill.,1998.

3.   Advances in Composite Materials and Sructures, Brebbia, C.A., WIT Press , 2000.

4.   Mechanics of laminated composite plates: Theory and Analysis, Reddy, J.N., CRC Pres, 1997.

Form of Assessment

Mid Exam and Task/Project Average of Arithmetical: %40

Final:%60

Projects:-

Homework: -