Strength of Materials (4 cr)
Code: 5R00GQ46-3001
General information
- Enrolment period
- 01.12.2024 - 17.01.2025
- Registration for the implementation has ended.
- Timing
- 01.01.2025 - 04.05.2025
- Implementation has ended.
- Credits
- 4 cr
- Mode of delivery
- Contact learning
- Unit
- Construction Engineering
- Campus
- TAMK Main Campus
- Teaching languages
- Finnish
- Degree programmes
- Degree Programme in Construction Engineering
Objectives (course unit)
After the course, the student can calculate the normal stress, shear stress and bending stress distributions for regularly shaped cross-sections caused by external loads. In addition, the student knows how to calculate the deformations caused by normal force and bending moment for regularly shaped cross-sections.
He/she understands the dependencies between stress, tension and deformation. The student knows the effects of the shape, size and material of the cross-section of the structure on stresses and deformations, as well as being able to calculate the strength theoretical quantities of the reduced cross-section. The student knows how to calculate the stresses and deformations of a straight rod for bending and shear, and to dimension a buckling rod.
Content (course unit)
Basic concepts of strength theory, basics of material theory. Hooke's law, theory of elasticity and plasticity and permissible stresses. Quantities of cross-sectional geometry. Stresses and deformations of stress forms.
Designing for normal force, bending, shear.
General stability management, buckling design, principles of buckling and overturning.
Practice work.
Assessment criteria, satisfactory (1-2) (course unit)
The student can calculate the stresses caused by tension, compression, bending and shear for rectangular cross-sections. He understands the effect of buckling length on buckling capacity. He can calculate the cross-sectional dimensions of a rectangular cross-section.
Assessment criteria, good (3-4) (course unit)
The student knows how to calculate the stresses caused by tension, compression, bending and shear for conventional symmetrical cross-sections. He can calculate the buckling capacity of the rod. He can calculate the cross-sectional dimensions of symmetrical cross-sections. The student can calculate deformations caused by normal force and bending.
Assessment criteria, excellent (5) (course unit)
The student knows how to calculate the stresses caused by tension, compression, bending and shear also for asymmetric cross-sections. He can calculate the buckling capacity of the rod. He can calculate the cross-sectional dimensions of asymmetrical cross-sections. The student can calculate deformations caused by normal force and bending.
Exam schedules
Ensimmäinen välikoe helmi/maaliskuun vaihteessa ja toinen välikoe huhtikuun lopussa. Uusinnat ja korotukset ilmoitetaan erikseen.
Assessment methods and criteria
Toteutus: "Asteikko 0-5"
Opintojaksopalaute on pakollinen osasuoritus
Hyväksytysti suoritetut molemmat välikokeet tai tentti sekä palautettavat harjoitustyöt. Palautettavat harjoitustehtävät on palautettava opettajan ilmoittamaan päivämäärään mennessä. Myöhemmin palautettua ei arvioida. Harjoitustehtävän maksimista tulee saavuttaa vähintää 1/3 oikeellisuus.
Tentti arvioidaan vain siinä tapauksessa, että harjoitustehtävien minimivaatimustaso ylittyy. Läsnäolovaatimus luennoilla 66%. Uusinta ja korotustentissä tentitään aina koko opintojakson sisältö.
Assessment scale
0-5
Teaching methods
lähiopetus
demonstraatiot
opetuskeskustelu
harjoitukset
harjoitustyöt
tentti
ongelmalähtöinen opiskelu
Learning materials
Lujuusopin sähköinen oppimateriaali Moodlessa
Muu kirjallisuus:
Saarineva, Lujuusopin peruskurssi.
Practical training and working life cooperation
Opintojakson sisältö on sellainen, että opiskelija saa juuri rakennesuunnittelijan tarvitsemat lujuusopin perustaitojen edellyttämän opetuksen.