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Hydraulics (3 cr)

Code: 8C00CC37-3008

General information


Enrollment
01.10.2024 - 13.11.2024
Registration for the implementation has ended.
Timing
04.11.2024 - 02.02.2025
Implementation has ended.
Number of ECTS credits allocated
3 cr
Local portion
3 cr
Mode of delivery
Contact learning
Unit
SeAMK Mechanical Engineering
Campus
SeAMK Seinäjoki, Frami
Teaching languages
Finnish
Degree programmes
Bachelor of Engineering, Mechanical Engineering
Teachers
Janne Perälä
Kimmo Kitinoja
Scheduling groups
Avoin AMK (Ei koske tutkinto-opiskelijaa) (Size: 50 . Open UAS : 50.)
Groups
MKONE23
Bachelor of Engineering, Mechanical Engineering
Small groups
Open UAS (Doesn't apply to degree student)
Course
8C00CC37

Evaluation scale

1-5

Objective

Upon completion of the course, students will,
- understand the basics of hydraulics.
- understand how the common components functions
- know the basics of system planning and calculation.
- be able to choose suitable hydraulic systems to use.

Content

- Basic theory of hydraulics
- Pressure generators, controllers and regulating devices
- Structure and function of components
- System planning, choosing and dimensioning components

Materials

Lecture material and information
Lecture book:
Hydraulitekniikka
Kauranne, Heikki ; Kajaste, Jyrki ; Vilenius, Matti
ISBN 978-952-63-0707-7

Teaching methods

Lectures and laboratory study
Self study theory and calculation exercises

Student workload

Lectures and laboratory 50%
Self-study and calcuation 50%

Assessment criteria, satisfactory (1)

Level 1-2: A satisfactory grade will be reached by mastering the fundamental issues mentioned in the contents. This also means that the student is able to solve simple problems.

Assessment criteria, good (3)

Level 3-4: For a good grade the requirements increase so that the student has a more comprehensive understanding of the topic and is also able to solve more complicated problems. The student can choose a system suitable to the conditions

Assessment criteria, excellent (5)

Level 5: An excellent grade can only be reached by fulfilling the previous demands and in addition to that the student must be able to solve a very challenging problem correctly. The student can design and can dimension the system

Qualifications

No previous studies are required.

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