COURSE INFORMATON
Course Title Code Semester L+P Hour Credits ECTS
Meterial Technology 1 (Ferrous Materials) AEN   257 3 3 3 5

Prerequisites and co-requisites Yok
Recommended Optional Programme Components None

Language of Instruction English
Course Level First Cycle Programmes (Bachelor's Degree)
Course Type
Course Coordinator Prof. Dr. Kadir AYDIN
Instructors
Prof. Dr.ABDULKADİR YAŞAR1. Öğretim Grup:A
 
Assistants
Goals
This course mainly deals with the basic principles involved in materials selection based on the properties of materials and how the tests are conducted to obtain information about the mechanical properties of engineering materials.
Content
Properties of materials. Static properties. Stress and strain. Modulus of elasticity. Resilience. Ductility and brittleness. Toughness. Hardness. Brinell hardness test. Rockwell hardness test. Vickers hardness test. Microhardness tests. Dynamic properties. Impact test. Metal fatigue. Creep of metals. Non-destructive testing. The detection of surface cracks. The detection of internal defects. Physical properties of engineering materials. Engineering materials. Types of cast irons and their designations. Steels. Plain carbon steels. Alloy steels. Effects of the alloying elements. Classification of alloy steels. Designation of steels. Nonferrous metals. Refractory metals. Corrosion.

Learning Outcomes
1) Describes mechanical, pyhsical and chemical properties of engineering materials
2) Knows the effect of various factors on the properties of materials
3) Learns and make choices on the most common undestructive test methıds
4) Understands the cause of the corrosion in metallic materials and learns about the precautions
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Course's Contribution To Program
NoProgram Learning OutcomesContribution
12345
1
Utilizes computer systems and softwares
X
2
Is equipped with a variety of skills and techniques in engineering.
X
3
Generates solutions for the problems in other disciplines by using statistical techniques
X
4
Designs a system, component or process so as to meet various engineering needs within technical, economic, environmental, manufacturability, sustainability limitations.
X
5
Comprehends visual, database and web programming techniques and has the ability of writing objective program
6
Examines and learns applications in an enterprise independently, makes critical assesments of problems, formulates problems and selects suitable techniques for solutions.
X
7
Leads the identification, development and usage of a product or production method.
X
8
Is aware of the need for lifelong learning and self-renew
X
9
Has effective oral and written English for technical or non-technical use
X
10
Uses computers very effectively, makes computer-aided drafting, designs, analysis, and presentations.
X
11
Improves constantly itself , as well as professional development scientific, social, cultural and artistic fields according to his/her interests and abilities identifying needs of learning.
X
12
Is aware of the technical and ethical responsibilities, has inquisitive and innovative quality
X

Course Content
WeekTopicsStudy Materials _ocw_rs_drs_yontem
1 The materials used in technical field The basic concepts of atomic structure Basic concepts of solidification and melting Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
2 The materials used in technical field The basic concepts of atomic structure Basic concepts of solidification and melting Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
3 The materials used in technical field The basic concepts of atomic structure Basic concepts of solidification and melting Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
4 Liquid soluble in all proportions in the other case, partially soluble in the other case, and liquid and solid insoluble in alloys to Solid-state transformations Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
5 Liquid soluble in all proportions in the other case, partially soluble in the other case, and liquid and solid insoluble in alloys to Solid-state transformations Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
6 Softening annealing Normalization annealed Globalization annealed Stress relief annealing Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
7 Quenching hardening martensitic structure Isothermal transformation diagrams Tempering Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
8 Midterm Exam Writing Exam Testing
9 Quenching hardening martensitic structure Isothermal transformation diagrams tempering Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
10 Tensile curve obtained after the strain stress experiment Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
11 Tensile curve obtained after the strain stress experiment Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
12 Tensile curve obtained after the strain stress experiment Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
13 Methods of measuring hardness Fracture energy after the impact test Fatigue test after the S-N diagram Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
14 Methods of measuring hardness Fracture energy after the impact test Fatigue test after the S-N diagram Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
15 Methods of measuring hardness Fracture energy after the impact test Fatigue test after the S-N diagram Read the related topics in the lecture notes and reference books Lecture
Discussion
Problem Solving
16-17 Final Exam Writing Exam Testing

Recommended or Required Reading
Textbook
Additional Resources
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