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Course Details
KTO KARATAY UNIVERSITY
Mühendislik ve Doğa Bilimleri Fakültesi
Programme of Mechatronics Engineering
Course Details
Course Code Course Name Year Period Semester T+A+L Credit ECTS
05581008 Industrial Fluid Applications 4 Spring 8 3+0+0 5 5
Course Type Elective
Course Cycle Bachelor's (First Cycle) (TQF-HE: Level 6 / QF-EHEA: Level 1 / EQF-LLL: Level 6)
Course Language Turkish
Methods and Techniques -
Mode of Delivery Face to Face
Prerequisites -
Coordinator -
Instructor(s) Asst. Prof. Musa DEMİRCİ
Instructor Assistant(s) -
Course Instructor(s)
Name and Surname Room E-Mail Address Internal Meeting Hours
Asst. Prof. Musa DEMİRCİ - [email protected]
Course Content
Akışkanlar Mekanği Uygulamaları, hidrolik akışkanlar ve özellikleri, hidrolik semboller, hidrolik silindirler ve hesabı, hidrolik pompalar ve hesabı, basınç, yön ve akış kontrol valfleri, hidrolik devre tasarımı. Pnömatiğin temel ilkeleri, pnömatik valfler, pnömatik devreler, kontrol sistemleri.
Objectives of the Course
The aim of the course is to give information about the application area in line with the fundamentals of fluid mechanics, to make hydraulic-pneumatic circuit design, pressure, direction and flow control valve applications.
Contribution of the Course to Field Teaching
Basic Vocational Courses
Specialization / Field Courses X
Support Courses
Transferable Skills Courses
Humanities, Communication and Management Skills Courses
Relationships between Course Learning Outcomes and Program Outcomes
Relationship Levels
Lowest Low Medium High Highest
1 2 3 4 5
# Program Learning Outcomes Level
P2 Ability to identify, formulate and solve complex Mechatronics Engineering problems; ability to select and apply appropriate analysis and modeling methods for this purpose. 1
Course Learning Outcomes
Upon the successful completion of this course, students will be able to:
No Learning Outcomes Outcome Relationship Measurement Method **
O1 Ability to know hydraulic and pneumatic actuators, knows the usage policies of control components, component selection and circuit design P.2.1 1
** Written Exam: 1, Oral Exam: 2, Homework: 3, Lab./Exam: 4, Seminar/Presentation: 5, Term Paper: 6, Application: 7
Weekly Detailed Course Contents
Week Topics
1 Fluids, their properties, hydraulic and pneumatic power transmission
3 Hydraulic pumps
5 Hydraulic motor and actuators
7 Valves
9 Control Systems / Hydraulic Lab
12 Hydraulic System Circuits and Design
14 Pneumatic systems
Textbook or Material
Resources Yunus Çengel and John Cimbala, Fluid Mechanics, Fundamentals and Applications;
Yunus Çengel and John Cimbala, Fluid Mechanics, Fundamentals and Applications;
Evaluation Method and Passing Criteria
In-Term Studies Quantity Percentage
Attendance - -
Laboratory - -
Practice - -
Course Specific Internship (If Any) - -
Homework - -
Presentation - -
Projects - -
Quiz - -
Midterms 1 40 (%)
Final Exam 1 60 (%)
Total 100 (%)
ECTS / Working Load Table
Quantity Duration Total Work Load
Course Week Number and Time 14 3 42
Out-of-Class Study Time (Pre-study, Library, Reinforcement) 14 4 56
Midterms 1 10 10
Quiz 0 0 0
Homework 0 0 0
Practice 6 3 18
Laboratory 0 0 0
Project 0 0 0
Workshop 0 0 0
Presentation/Seminar Preparation 0 0 0
Fieldwork 0 0 0
Final Exam 1 10 10
Other 0 0 0
Total Work Load: 136
Total Work Load / 30 4,53
Course ECTS Credits: 5
Course - Learning Outcomes Matrix
Relationship Levels
Lowest Low Medium High Highest
1 2 3 4 5
# Learning Outcomes P2
O1 Ability to know hydraulic and pneumatic actuators, knows the usage policies of control components, component selection and circuit design -