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Mechanization and equipment (5 cr)

Code: TX00BV03-3009

General information


Enrollment
05.05.2025 - 31.05.2025
Registration for implementation has not started yet.
Timing
25.08.2025 - 21.12.2025
The implementation has not yet started.
Number of ECTS credits allocated
5 cr
Mode of delivery
On-campus
Unit
(2019-2024) School of Automotive and Mechanical Engineering
Campus
Leiritie 1
Teaching languages
Finnish
Degree programmes
Mechanical Engineering
Teachers
Antti Liljaniemi
Teacher in charge
Antti Liljaniemi
Groups
KA22
Konetekniikka, koneautomaation suuntautuminen, aloittaneet opiskelun s.2022
Course
TX00BV03
No reservations found for implementation TX00BV03-3009!

Objective

The student will be able to reduce force, torque and moment of inertia over various mechanisms.
The student will be familiar with and able to design and size different drives.
The student will be familiar with various mechanisms and able to analyse them with simulations.
The student will be able to specify the equipment necessary for the proper function of a machine, and take the requirements of the equipment into account.

Content

1. Reducing the force, torque and moment of inertia over various mechanisms
2. Design and sizing of drives
3. Components for mechanizing, and their choice and dimensioning.
4. Various mechanisms and their simulations.
5. Equipment necessary for proper function, and the placing of the equipment.

Evaluation scale

0-5

Assessment criteria, satisfactory (1)

The student knows the differences between reducing force, torque and moment of inertia.
The student is able to design drives according to given requirements.
The student knows the principles of simple mechanisms and is able to model them using 3D CAD.
The student is able to define equipment, cabling and piping needed for a given machine.

Assessment criteria, good (3)

The student is able to reduce force, torque and moment of inertia in usual mechanisms.
The student can choose and size the drive needed in a given application.
The student knows the common mechanizing components.
The student is able to design a mechanized object.
The student is able to take the space needed for equipment into account.

Assessment criteria, excellent (5)

The student can reduce forces, torques and moments of inertia in mechanisms.
The student can choose and optimize drives necessary for a given application.
The student is able to apply mechanisms to various applications, and analyse and simulate them.
The student is able to design a mechanized object and take the equipment arrangements and routing for cables and pipes into account.

Assessment criteria, approved/failed

The student knows the differences between reducing force, torque and moment of inertia.
The student is able to design drives according to given requirements.
The student knows the principles of simple mechanisms and is able to model them using 3D CAD.
The student is able to define equipment, cabling and piping needed for a given machine.

Qualifications

Dynamics and its applications
3D modeling and CAE

Objective

The student will be able to reduce force, torque and moment of inertia over various mechanisms.
The student will be familiar with and able to design and size different drives.
The student will be familiar with various mechanisms and able to analyse them with simulations.
The student will be able to specify the equipment necessary for the proper function of a machine, and take the requirements of the equipment into account.

Content

1. Reducing the force, torque and moment of inertia over various mechanisms
2. Design and sizing of drives
3. Components for mechanizing, and their choice and dimensioning.
4. Various mechanisms and their simulations.
5. Equipment necessary for proper function, and the placing of the equipment.

Qualifications

Dynamics and its applications
3D modeling and CAE

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