Nevşehir Hacı Bektaş Veli University Course Catalogue

Information Of Programmes

INSTITUTE OF SCIENCE / KİM 514 - CHEMISTRY (MASTER'S DEGREE)

Code: KİM 514 Course Title: CORROSION Theoretical+Practice: 3+0 ECTS: 6
Year/Semester of Study 1 / Spring Semester
Level of Course 2nd Cycle Degree Programme
Type of Course Optional
Department CHEMISTRY (MASTER'S DEGREE)
Pre-requisities and Co-requisites None
Mode of Delivery Face to Face
Teaching Period 14 Weeks
Name of Lecturer ASLIHAN UZUN (akaratepe@nevsehir.edu.tr)
Name of Lecturer(s)
Language of Instruction Turkish
Work Placement(s) None
Objectives of the Course
Corrosion losses highlight the importance of economic and social aspects of corrosion mechanism put forward by the scientific foundations, corrosion chemistry and other disciplines to associate with the student about their field and bring perspective to develop solutions against corrosion damage.

Learning Outcomes PO MME
The students who succeeded in this course:
LO-1 Can explain the basic principles of corrosion PO-1 Upon successful completion of this programme, graduate students will: Have advance knowledge and skills in the area of specialized.
Examination
PO: Programme Outcomes
MME:Method of measurement & Evaluation

Course Contents
Definition and importance of corrosion, electrochemical fundamentals of corrosion, electrochemical corrosion and chemical thermodynamics, corrosion, electrochemical and chemical reactions with the oxide film in the presence of corrosion potential and corrosion current, corrosion current is applied to the corrosion control, corrosion types, the potential-pH (Pourbaix) diagrams , corrosion rate measurement, Passivity mechanism, film formation mechanism, corrosion prevention, various surface treatments, corrosion inhibitors, the basic principles of cathodic-anodic protection, water and soil corrosion, corrosion in industry
Weekly Course Content
Week Subject Learning Activities and Teaching Methods
1 Corrosion of social life (economic, environmental, and health benefits), the importance and history Lecture method
2 Corrosion in aqueous media for the current theories, principles and applications of electrochemical and chemical Lecture method
3 Thermodynamic approach to corrosion; simple corrosion cell, mixed potential theory Lecture method
4 E / pH diagrams for various metals and the E / pH Diagrams to obtain Lecture method
5 Mixed potential theory, galvanic corrosion Lecture method
6 Intergranular, selective corrosion, corrosion pits and hollows, and electrochemical measurement techniques detailed Lecture method
7 Erosion corrosion, cavitation, stress corrosion Lecture method
8 mid-term exam
9 The basic principles for corrosion control: environmental impact, the effect of different ventilation conditions and preventing the tank and piping systems, and related to corrosion of various examples of current Lecture method
10 Atmospheric and soil corrosion Lecture method
11 Oxide film formation, growth mechanism and the role of the various environments korozyondaki Oral presentation
12 Corrosion protection: inhibitors of various coatings (paint, plastic, concrete and metal, conductive polymer coatings Lecture method
13 Corrosion protection: inhibitors of various coatings (paint, plastic, concrete and metal, conductive polymer coatings Lecture method
14 Corrosion properties of some commercial metals. Cathodic and anodic protection Lecture method
15 Corrosion properties of some commercial metals. Cathodic and anodic protection Lecture method
16 final exam
Recommend Course Book / Supplementary Book/Reading
1 1.J.O 'M. BOCKRİS / A: K: N: Reddy 'Modern Elektrokimya 2. 2 ', Saadet Üneri "Korozyon ve önlenmesi". (1998) Korozyon Derneği 3. J.O 'M. BOCKRİS / A: K: N: Reddy 'Modern Elektrokimya 2',
Required Course instruments and materials
projection

Assessment Methods
Type of Assessment Week Hours Weight(%)
mid-term exam 8 2 40
Other assessment methods
1.Oral Examination
2.Quiz
3.Laboratory exam
4.Presentation
5.Report
6.Workshop
7.Performance Project
8.Term Paper
9.Project
final exam 16 2 60

Student Work Load
Type of Work Weekly Hours Number of Weeks Work Load
Weekly Course Hours (Theoretical+Practice) 3 14 42
Outside Class
       a) Reading 3 14 42
       b) Search in internet/Library 5 14 70
       c) Performance Project 0
       d) Prepare a workshop/Presentation/Report 0
       e) Term paper/Project 0
Oral Examination 0
Quiz 0
Laboratory exam 0
Own study for mid-term exam 12 1 12
mid-term exam 1 1 1
Own study for final exam 12 1 12
final exam 1 1 1
0
0
Total work load; 180