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Mechanics of Materials and Timber Structures (5 ECTS)

Code: TM00BS31-3030

General information


Enrollment
02.05.2022 - 27.08.2023
Registration for the implementation has ended.
Timing
23.10.2023 - 17.12.2023
Implementation has ended.
Number of ECTS credits allocated
5 ECTS
Mode of delivery
On-campus
Campus
Myllypurontie 1
Teaching languages
Finnish
Degree programmes
Degree Programme in Construction Site Management

Implementation has 32 reservations. Total duration of reservations is 81 h 0 min.

Time Topic Location
Mon 23.10.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Tue 24.10.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 ETÄNÄ!
Tue 24.10.2023 time 13:00 - 15:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 ETÄNÄ!
Thu 26.10.2023 time 08:00 - 12:00
(4 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
Online
Thu 26.10.2023 time 13:00 - 17:00
(4 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
Online
Fri 27.10.2023 time 13:00 - 17:00
(4 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
Mon 30.10.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 ETÄNÄ
Tue 31.10.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Tue 31.10.2023 time 13:00 - 16:00
(3 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Wed 01.11.2023 time 13:00 - 17:00
(4 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
Thu 02.11.2023 time 08:00 - 12:00
(4 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
Online
Thu 02.11.2023 time 13:00 - 17:00
(4 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
Online
Mon 06.11.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 HYBRIDINÄ!
MPA0011 Fysiikan laboratorio
Tue 07.11.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Tue 07.11.2023 time 13:00 - 15:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Wed 08.11.2023 time 16:30 - 19:00
(2 h 30 min)
Lujuusoppi ja puurakenteet TM00BS31-3030, Lujuusoppi ja puurakenteet TM00BS31-3031
MPA1010 Metropolia-sali
Mon 13.11.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Tue 14.11.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Tue 14.11.2023 time 13:00 - 15:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Mon 20.11.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Tue 21.11.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 ETÄNÄ
Tue 21.11.2023 time 13:00 - 15:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 ETÄNÄ
Wed 22.11.2023 time 16:30 - 19:00
(2 h 30 min)
Lujuusoppi ja puurakenteet TM00BS31-3030, Lujuusoppi ja puurakenteet TM00BS31-3031
MPA1010 Metropolia-sali
Mon 27.11.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030
MPA0011 Fysiikan laboratorio
Tue 28.11.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 ETÄNÄ
Tue 28.11.2023 time 13:00 - 15:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 ETÄNÄ
Mon 04.12.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 etänä
Tue 05.12.2023 time 10:00 - 12:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 etänä
Tue 05.12.2023 time 13:00 - 15:00
(2 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 etänä
Tue 12.12.2023 time 16:30 - 19:30
(3 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 KOE MPA1010
Tue 12.12.2023 time 16:30 - 19:30
(3 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 KOE MPA1010
Tue 12.12.2023 time 16:30 - 19:30
(3 h 0 min)
Lujuusoppi ja puurakenteet TM00BS31-3030 KOE!
MPA1010 Metropolia-sali
Changes to reservations may be possible.

Learning outcomes

On completion of the course, the student can:
• identify axial stress
• identify shear stress
• identify bending stress
• describe deformations
• repeat displacement
• repeat dimensioning of beams and columns
• explain the buckling of a compressed member
• explain the design of a compressed member.
On completion of the course the student is expected to at least be able to assess the time and moisture dependent functioning of a timber structure, explain the fire technical design of a timber structure, list main uses and applications of timber structures, determine the ULS load combinations for a structure and based on it design a simple timber member subjected to bending and/or axial force and design a nailed joint.

Content

Basic assumptions of the theory and mechanical properties of materials
Elastic and plastic behaviour
Hooke's law
Stress and strain distribution under axial loading
Stress and deformations under bending
Dimensioning of beams and columns
Euler's formulas for slender columns
Deformations: axial, shear, bending, temperature
Basics of torsion
Timber as a construction material
Time dependent properties of timber
Moisture technical functioning of timber
Design of a timber beam when subjected to bending and/or axial force
Design of a nailed joint
Principles of fire technical design of timber

Prerequisites

Basici of Statics

Evaluation scale

0-5

Assessment criteria, satisfactory (1)

The student can
- identify axial stress
- identify shear stress
- identify bending stress and describe deformations
- repeat displacement
- explain dimensioning of beams and columns
- describe the buckling of a compressed member
- explain the dimensioning of a compressed member
- list most common uses of timber structures as well as timber products and structural solutions
- estimate the time and moisture related behaviour of timber
- explain the anisotropic properties of timber and the way they influence dimensioning
- describe the fire technical behaviour of timber structures.

Assessment criteria, good (3)

In addition to the previous criteria the student is able to
- determine axial stress
- determine shear stress
- determine bending stress and deformations
- explain deformations
- define displacement
- calculate the buckling of a compressed member
- design a compressed member
- define the load combination in ultimate limit state
- design a timber beam subjected to bending and/or axial force.

Assessment criteria, excellent (5)

In addition to the previous criteria the student can
- apply axial stress
- apply shear stress
- determine bending stress and deformations
- explain deformations
- define displacement
- solve and apply trusses
- discuss displacement
- implement dimensioning of beams and columns
- design a simple nailed joint
- assess the fire resistance of a timber member by using calculations in simple cases.

Assessment criteria, approved/failed

The student can
- identify axial stress
- identify shear stress
- identify bending stress and describe deformations
- repeat displacement
- explain dimensioning of beams and columns
- describe the buckling of a compressed member
- explain the dimensioning of a compressed member
- list most common uses of timber structures as well as timber products and structural solutions
- estimate the time and moisture related behaviour of timber
- explain the anisotropic properties of timber and the way they influence dimensioning
- describe the fire technical behaviour of timber structures.

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