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Course Information
Course Unit Title : Plastic Deformation Tecgnology
Course Unit Code : 01MAE5130
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 : Principles of Plastic Deformation Forming (PŞV) methods. To comprehend the principles of forgings of hot, cold, warm.
Dislocations and shear teories
The theory and calculations of forging method. Forging dies.
The theory and calculations of extrusion, rolling.
Theory and calculations of wire tension.
The changed properties of machine parts produced by PŞV
Work hardening and normalizaton.
Mode of Delivery : Face-To-Face
Prerequisities and Co-requisities Courses : Unavailable
Recommended Optional Programme Components : Unavailable
Course Contents : Methods of PŞV, Parameters affecting to PŞV, Investigation to forging, rolling, wire tension and extrusion methods, Dislocation theory and characteristics of dislocation, dislocation density, work hardening and normalizaton.
Languages of Instruction : Turkish
Course Goals : To comprehend mass forming principles
To understand hot, cold and warm forming methods
To comprehend dislocations and shear teories
To understand properties of machine parts produced by plastic deformation technologies
Course Aims :
WorkPlacement   Not Available
Recommended or Required Reading
Textbook : Hertzberg, W.R., 1989. Deformation and Fracture Mechanics of Engineering Materials, Third edition, Wiley, Canada.
Additional Resources : Hertzberg, W.R., 1989. Deformation and Fracture Mechanics of Engineering Materials, Third edition, Wiley, Canada.
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 4 56  
Time Of Studying Out Of Class :
14 6 84  
Homeworks :
0 0 0  
Presentation :
0 0 0  
Project :
0 0 0  
Lab Study :
14 1 14  
Field Study :
0 0 0  
Visas :
1 7 7  
Finals :
1 7 7  
Workload Hour (30) :
30  
Total Work Charge / Hour :
168  
Course's ECTS Credit :
6      
Assessment Methods and Criteria
Studies During Halfterm :
Number Co-Effient
Visa :
1 40
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 :
40
The ratio of the term to success :
40
The ratio of final to success :
60
TOTAL :
100
Weekly Detailed Course Content
Week Topics  
1 The basic principles of plastic deformation forming (PŞV).
  Study Materials: Investigation of this subject.
2 Definition of stress and strain.
  Study Materials: Investigation of this subject.
3 Mechanical properties changed with PŞV.
  Study Materials: Investigation of this subject.
4 Dislocation theory and types, twinning, work hardening.
  Study Materials: Investigation of this subject.
5 Elastic and plastic properties.
  Study Materials: Investigation of this subject.
6 Work hardening of engineering materials by PŞV method.
  Study Materials: Investigation of this subject.
7 Theory and calculations of forging load and energy.
  Study Materials: Investigation of this subject.
8 Theory and calculations of rolling load and energy.
  Study Materials: Investigation of this subject.
9 Theory and calculations of extrusion load and energy.
  Study Materials: Investigation of this subject.
10 Theory and calculations of wire tension.
  Study Materials: Investigation of this subject.
11 Die selection for the PŞV method.
  Study Materials: Investigation of this subject.
12 Temperature in plastic deformation technology.
  Study Materials: Investigation of this subject.
13 Industrial machine part produced by PŞV methods.
  Study Materials: Investigation of this subject.
14 Normalization treatments after plastic forming.
  Study Materials: Investigation of this subject.