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Teräsrakenteet (4 cr)

Code: TR00BU59-3001

General information


Enrollment
04.08.2025 - 21.08.2025
Registration for introductions has not started yet.
Timing
25.08.2025 - 19.12.2025
The implementation has not yet started.
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
Finnish
Seats
20 - 30
Degree programmes
Bachelor's Degree Programme in Construction Management
Teachers
Joakim Joona
Pekka Lähdesmäki
Groups
TRM23KMM
Rakennusmestari (AMK)
Course
TR00BU59
No reservations found for realization TR00BU59-3001!

Evaluation scale

0-5

Content scheduling

One credit point means an average of 27 hours of work. The load is distributed in different ways depending on the way the course is implemented.
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In this study period, time use and workload is distributed as follows:
Total load: 108 h
Preliminary task: 0 h
Contact lectures: 32 h
Interactive video lectures: 0 h
Homework that supports learning: 0 h
Exercise/project work to be done during the course:75 h
Assessment of own competence/peer assessment: 1 h

Objective

Occupational and environmental safety in construction
Students are competent in managing the safe construction of steel structures. They know how to organise the installation of steel components and the construction of temporary support structures, also attending to occupational safety issues.

Competence in structural engineering
Students know the various types of steel and their uses, and know how to determine the design strengths of steel. They know the more common steel profiles (rolled and welded), and cross section classifications and how they are determined. Students know how to design simple beams and columns in case of flexural buckling. Students understand stability cases (buckling, lateral buckling of beams and buckling of plates) and take them into consideration in structural design. They also know thin-walled profiles and their uses.

Competence in the construction process
Students are familiar with common steel frame structures, structural members and their joint and support mechanisms. Students understand the principles of bracing steel frames, their behaviour and the importance of temporary support and stability during construction.

Content

- Steel as a construction material, types of steel and design strengths
- Steel profiles, cross section classification
- Thin-walled profiles and their uses
- Stability phenomena and how to take them into consideration in structural design
- Steel frame systems, bracing of steel frames
- Design of simple beams, design of columns in case of flexural buckling
- Installation and transport of steel structures
- Fire protection
- Excursions to sites/steel factory

Location and time

Contact lessons according to Time Table on the Main Campus.

Materials

Mechanics.
Basic of construction
Loads and building types

Teaching methods

On this course will be used following teaching methods:
- Lectures face-to-face,
Presentations
- Assignments

Employer connections

Excursions if possible,
Company visits at School if possible

Exam schedules

Timing of Exams and re-Exams will be agreed on the first contact lesson of the course.

Completion alternatives

Certification or accreditation is possible as described in the Jamkin Peppi guidelines.

Assessment criteria, satisfactory (1)

The student is able to manage and organize a safe implementation of work with steel structures. The student knows the different steel profiles and their targets of use and is able to make quantity lists based on technical drawings.

Assessment criteria, good (3)

The student is able to dimension a simple beam and a support in the case of flexural buckling.The student is able to recognize the key components of steel systems and the principles of the bracing of a steel frame.

Assessment criteria, excellent (5)

The student masters well and is able to apply what they have learned. They can also analyze the connections between different things. The student can make diversified analyses and draw conclusions based on what they have learned.

Qualifications

Eurocodes/regulations on steel structures (partly).

RunkoRYL 2010 General quality criteria for frame structures in house building.

Lecturer's own material.

Further information

Grading methods
- Test,
- Assignments,
- Presentations

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