VOCATIONAL SCHOOL

Department of Alternative Energy Sources Technologies

ENR 118 | Course Introduction and Application Information

Course Name
Pipe Welding
Code
Semester
Theory
(hour/week)
Application/Lab
(hour/week)
Local Credits
ECTS
ENR 118
Spring
0
4
2
4

Prerequisites
None
Course Language
Turkish
Course Type
Required
Course Level
Short Cycle
Mode of Delivery -
Teaching Methods and Techniques of the Course -
Course Coordinator -
Course Lecturer(s)
Assistant(s) -
Course Objectives With this course, students gain proficiency in joining steel pipes using arc welding and oxy-acetylene welding methods.
Learning Outcomes The students who succeeded in this course;
  • Will be able to explain the welding capability
  • Will be able to merge the pipes with oxy-acetylene welding
  • Will be able to merge the pipes with electric arc welding
  • Will be able to merge the pipes with gas metal arc welding
  • Will be able to classify the welding methods
Course Description Welding methods, processes before and after welding.

 



Course Category

Core Courses
X
Major Area Courses
Supportive Courses
Media and Management Skills Courses
Transferable Skill Courses

 

WEEKLY SUBJECTS AND RELATED PREPARATION STUDIES

Week Subjects Related Preparation
1 Physical and metallurgical properties of metals
2 Welding capability
3 Classification of welding methods
4 Heat input during welding
5 Oxy-acetylene welding
6 Making joint with oxy-acetylene welding method
7 Electric arc welding
8 Making joint with electric arc welding mrthod
9 Mid -Term Exam
10 Gas metal arc welding methods
11 Making joint with gas metal arc welding methods
12 Distortions in welding
13 Design of weld groove
14 Heat treatment
15 Inspection of welding quality
16 Final Exam

 

Course Notes/Textbooks
Suggested Readings/Materials

 

EVALUATION SYSTEM

Semester Activities Number Weigthing
Participation
Laboratory / Application
Field Work
Quizzes / Studio Critiques
Portfolio
Homework / Assignments
1
20
Presentation / Jury
Project
Seminar / Workshop
Oral Exams
Midterm
1
40
Final Exam
1
40
Total

Weighting of Semester Activities on the Final Grade
2
60
Weighting of End-of-Semester Activities on the Final Grade
1
40
Total

ECTS / WORKLOAD TABLE

Semester Activities Number Duration (Hours) Workload
Theoretical Course Hours
(Including exam week: 16 x total hours)
16
4
64
Laboratory / Application Hours
(Including exam week: '.16.' x total hours)
16
0
Study Hours Out of Class
16
2
32
Field Work
0
Quizzes / Studio Critiques
0
Portfolio
0
Homework / Assignments
1
20
20
Presentation / Jury
0
Project
0
Seminar / Workshop
0
Oral Exam
0
Midterms
1
3
3
Final Exam
1
3
3
    Total
122

 

COURSE LEARNING OUTCOMES AND PROGRAM QUALIFICATIONS RELATIONSHIP

#
Program Competencies/Outcomes
* Contribution Level
1
2
3
4
5
1 To have enough background in mathematics, science and engineering X
2 To use of theoretical and practical knowledge. X
3

To Identify engineering problems, identify, formulate, and solve for this purpose, selects and applies appropriate analytical methods and modeling techniques

X
4 To analyze a system, component, or processand and design under realistic constraints to meet the desired requirements X
5 To select the modern techniques and tools necessary for engineering applications X
6 To use the experimental design, the experiment will collect data analyze and interpret the results X
7 To work effectively as an individual and multi-disciplinary teams X
8 To access information and research resources for this purpose, which makes use databases and other information resources. X
9 To monitors developments in science and technology and continuous self-renew.
X

*1 Lowest, 2 Low, 3 Average, 4 High, 5 Highest

 


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