Skip to main content

Finite Element Methods FEM (4 cr)

Code: TKSUE310-3003

General information


Enrollment
18.11.2024 - 09.01.2025
Registration for the implementation has ended.
Timing
13.01.2025 - 30.04.2025
Implementation is running.
Number of ECTS credits allocated
4 cr
Local portion
4 cr
Mode of delivery
Face-to-face
Unit
School of Technology
Campus
Main Campus
Teaching languages
English
Seats
20 - 23
Degree programmes
Bachelor's Degree Programme in Mechanical Engineering
Teachers
Tomi Nieminen
Groups
TKN22SA
Konetekniikka (AMK)
TKN24VSDD
Konetekniikka (AMK), DD
TKN25VKDD
Konetekniikka (AMK), DD
TKN25VK
Konetekniikka (AMK), vaihto-opiskelu/Exchange studies
TKN24VS
Konetekniikka (AMK), vaihto-opiskelu/Exchange studies
Course
TKSUE310

Realization has 15 reservations. Total duration of reservations is 22 h 0 min.

Time Topic Location
Mon 13.01.2025 time 16:00 - 17:00
(1 h 0 min)
Finite Element Methods FEM TKSUE310-3003
Starting webinar
Tue 14.01.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 21.01.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F133 IT-laboratorio
Tue 28.01.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 04.02.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 11.02.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 18.02.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F133 IT-laboratorio
Tue 04.03.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 11.03.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 18.03.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F133 IT-laboratorio
Tue 25.03.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 01.04.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 08.04.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 15.04.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Tue 22.04.2025 time 11:30 - 13:00
(1 h 30 min)
Finite Element Methods FEM TKSUE310-3003
R35F211 CAE-laboratorio
Changes to reservations may be possible.

Evaluation scale

0-5

Objective

Computer aided structural analysis is an important skill for a structure designer in the modern digitalized world. On this course you will learn to analyze and simulate structures with the numerical finite element method. You will know how to determine the stress, deflection and safety factor of a given structure. You learn to analyze the stability and buckling behavior, and you also know how to calculate the natural vibration frequencies of the structure. Moreover, you understand how to apply this information in your designs.

Knowledge and understanding:
You understand the theoretical concepts in the finite element method.

Investigations and information retrieval:
You master the information retrieval skills in problem solving and are able to apply the retrieved information.

Engineering Practice:
You know how to carry out a FEM analysis for a given structure, and you are able to interpret the results.

Content

Theoretical basis of the finite element method. Element types: solid elements, beam element and shell elements. Contact elements and assemblies. Buckling analysis. Non-linear static analysis. Modal analysis. Interpretation of the results and practical applications.

Materials

Nieminen: FEM theory and exercises

Teaching methods

Virtual study

Completion alternatives

Evaluated exercises

Assessment criteria, satisfactory (1)

The assessment is based on exams.

Sufficient (1): You know the basic concepts of the course but you have difficulties in applying these concepts in practice.

Satisfactory (2): You know the basic concepts of the course and you are able to apply this knowledge in simple applications.

Assessment criteria, good (3)

Good (3): You know the basic concepts of the course and you are able to apply this knowledge in most applications.

Very good (4): You know the concepts of the course and you are able to apply the skills in applications.

Assessment criteria, excellent (5)

Excellent (5): You master the theoretical concepts of the course and you are able to creatively apply this knowledge even in applications.

Qualifications

Basic concepts in structural mechanics: normal stress, shear stress, equivalent stress (Von Mises), strain, displacement, loads and support types. Statics: force and torque balance in frame structures, and calculation of truss forces. Euler’s beam theory.

Go back to top of page