OMZ207 Material Technology I

5 ECTS - 3-0 Duration (T+A)- 3. Semester- 3 National Credit

Information

Code OMZ207
Name Material Technology I
Term 2024-2025 Academic Year
Semester 3. Semester
Duration (T+A) 3-0 (T-A) (17 Week)
ECTS 5 ECTS
National Credit 3 National Credit
Teaching Language Türkçe
Level Lisans Dersi
Type Normal
Label C Compulsory
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator Prof. Dr. ALİ KESKİN
Course Instructor Prof. Dr. ABDULKADİR YAŞAR (A Group) (Ins. in Charge)


Course Goal / Objective

To teach the basic concepts of material properties and to introduce destructive and non-destructive tests to be used in determining these properties, and to provide students with the ability to select appropriate materials for different applications.

Course Content

Material properties. Static properties; stress-strain, modulus of elasticity, resilience, ductility and brittleness, toughness. Hardness and hardness measurement methods; Brinell, Rockwell and Vickers tests, microhardness. Dynamic properties; Dynamic toughness and impact testing, metal fatigue and fatigue testing. Creep. Non-destructive material testing; Detection of surface and subsurface defects. Physical properties. Properties, classification and brief notation of engineering materials; cast irons, plain carbon steels, alloy steels. Non-ferrous metals. High temperature resistant metals. Corrosion.

Course Precondition

There are no prerequisites for the course.

Resources

Course presentations and notes of the instructor responsible for the course

Notes

William D. Callister, David D. Rethwisch, Recep Artır and Cuma Bindal (Translator), Materials Science and Engineering, Nobel Academic Publishing, 992p, 2014.


Course Learning Outcomes

Order Course Learning Outcomes
LO01 Defines the mechanical, physical and chemical properties of materials.
LO02 Explains the factors affecting material properties.
LO03 Explains commonly used non-destructive testing methods.
LO04 Understand the causes of corrosion in metallic materials and learn protection methods.
LO05 Learn steels and their heat treatments.
LO06 Explains how to classify and name materials
LO07 Have a general idea about automotive materials.


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level
PLO01 Bilgi - Kuramsal, Olgusal Applies sufficient knowledge of mathematics, science, and discipline-specific topics in automotive engineering, utilizing theoretical and practical knowledge in solving complex engineering problems.
PLO02 Beceriler - Bilişsel, Uygulamalı Identifies, defines, and solves complex engineering problems in automotive engineering applications using scientific methods.
PLO03 Beceriler - Bilişsel, Uygulamalı Designs a complex system, process, device, or product in automotive engineering under realistic constraints and conditions to meet specific requirements and effectively applies modern design methods in this process. 3
PLO04 Beceriler - Bilişsel, Uygulamalı Uses information technologies to select and use modern techniques and tools necessary for the analysis and solution of complex problems encountered in automotive engineering applications.
PLO05 Beceriler - Bilişsel, Uygulamalı Designs and conducts experiments, collects data, analyzes, and interprets the results to examine complex engineering problems or discipline-specific research topics in the field of automotive engineering.
PLO06 Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği Effectively takes responsibility individually and as a team member in intradisciplinary (automotive engineering) and multidisciplinary teams.
PLO07 Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği Gains knowledge of the legislation related to automotive engineering and awareness of professional ethical responsibility.
PLO08 Yetkinlikler - Öğrenme Yetkinliği Being aware of the necessity of lifelong learning and constantly improving and renewing itself in the field of automotive engineering.
PLO09 Yetkinlikler - İletişim ve Sosyal Yetkinlik Gains the ability to communicate verbally and in writing in Turkish/English regarding the field of automotive engineering, write reports, prepare design and production reports, make effective presentations and use communication technologies.
PLO10 Yetkinlikler - Alana Özgü Yetkinlik Using project design and management knowledge, he/she attempts to develop and realize new ideas regarding automotive engineering applications.
PLO11 Yetkinlikler - Alana Özgü Yetkinlik Have awareness of the effects of Automotive Engineering applications on health, environment and safety at universal and social dimensions, and the legal consequences of the problems and solutions of the age reflected in the field of automotive engineering.


Week Plan

Week Topic Preparation Methods
1 The materials used in technical field Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım
2 The basic concepts of atomic structure Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Tartışma
3 Basic concepts of solidification and melting Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Tartışma, Soru-Cevap
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 Öğretim Yöntemleri:
Anlatım
5 nature 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 Öğretim Yöntemleri:
Anlatım, Tartışma
6 Softening annealing, Normalization annealed, Globalization annealed, Stress relief annealing Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Tartışma, Problem Çözme
7 Quenching hardening, martensitic structure, Isothermal transformation, diagrams Tempering Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Tartışma, Soru-Cevap
8 Mid-Term Exam Writing Exam Ölçme Yöntemleri:
Yazılı Sınav
9 Quenching hardening, examples Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım
10 Tensile curve obtained after the strain stress experiment Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Tartışma
11 tensile test Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Soru-Cevap
12 Example problem solutions related to the stress-strain curve obtained after the tensile test Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Tartışma, Problem Çözme
13 Methods of measuring hardness, Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım
14 Fracture energy after the impact test Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Tartışma
15 S-N diagram after fatigue test and fatigue test Read the related topics in the lecture notes and reference books Öğretim Yöntemleri:
Anlatım, Soru-Cevap
16 Term Exams Writing Exam Ölçme Yöntemleri:
Yazılı Sınav
17 Term Exams Writing Exam Ölçme Yöntemleri:
Yazılı Sınav


Student Workload - ECTS

Works Number Time (Hour) Workload (Hour)
Course Related Works
Class Time (Exam weeks are excluded) 14 3 42
Out of Class Study (Preliminary Work, Practice) 14 3 42
Assesment Related Works
Homeworks, Projects, Others 0 0 0
Mid-term Exams (Written, Oral, etc.) 1 12 12
Final Exam 1 18 18
Total Workload (Hour) 114
Total Workload / 25 (h) 4,56
ECTS 5 ECTS

Update Time: 21.02.2025 02:08