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Strength of Materials 2 (3 cr)

Code: TKSUJ200-3005

General information


Enrollment
01.08.2022 - 25.08.2022
Registration for the implementation has ended.
Timing
29.08.2022 - 31.12.2022
Implementation has ended.
Number of ECTS credits allocated
3 cr
Local portion
3 cr
Mode of delivery
Face-to-face
Unit
School of Technology
Campus
Main Campus
Teaching languages
English
Finnish
Seats
0 - 30
Degree programmes
Bachelor's Degree Programme in Mechanical Engineering
Teachers
Petri Luosma
Teacher in charge
Petri Luosma
Groups
TKN19SA
Konetekniikka A
TKN22VK
Konetekniikka (AMK), vaihto-opiskelu/Exchange studies
Course
TKSUJ200
No reservations found for realization TKSUJ200-3005!

Evaluation scale

0-5

Objective

The students can calculate stresses affecting beam and plate structures and they are able to estimate their strengths. The students can calculate the effect of impact loads.

EA-KN EUR-ACE Engineering analysis: Students understand principles of strength of materials and how it is based on statics, mathematics and physics.

EA-EN Engineering practice: Students are able to use the principles of strength of materials to solve engineering problems.

TKNPE Basics of mechanical engineering: Students able to apply their knowledge of strength of materials to solve engineering problems with the help of statics, mathematics and physics.

Content

Hyperstatic beam- and framed structure. Obstructed torsion. Buckling . Lateral buckling. Bending of a curved beam. Plate and slab structures. Contact stresses. Impact loads.

Materials

Hand outs.
Valtanen, E. 2019. Tekniikan taulukkokirja. Jyväskylä: Genesis-Kirjat Oy.

Teaching methods

Lectures and calculation examples. Assignments are based by problem-based learning. As help when you do your assignments you can use your notes from lectures, hand outs, examples and literature. You can do assignments individually or in groups, but you must always return the assignments individually. In calculation lectures you can get help for the assignments from the lecturer or other students.. In the middle of the course, you give anonymous feedback.

Exam schedules

Exam and two resits.

Student workload

Lectures and examples 42 h and independent learning work 39 h. Total 81 h learning work.

Assessment criteria, satisfactory (1)

The grade is defined by exam 90% and homework 10%.
Adequate (1): The student is familiar with the basic knowledge and terminology but in dimensioning of basic structures the skills are clearly inadequate. The student can solve simple basic problems in an adequate manner.

Satisfactory (2): The student is familiar with the basic knowledge and terminology of stresses and strains but in dimensioning of basic structures the skills are inadequate. The student can satisfactorily solve simple basic problems.

Assessment criteria, good (3)

Good (3): The student is familiar with the knowledge of dimensioning beam and plate structures and can apply the knowledge acquired to simple structures to solve tensions and strains. The students can apply their knowledge to solve tension and strains from basic structures. The student also understands those situations which require more precise and profound strength inspection

Very good (4): The student masters the essential knowledge of dimensioning beam and plate structures and can apply the knowledge acquired to basic structures to solve tensions and strains. The student also understands those situations which require more precise and profound strength inspection. .

Assessment criteria, excellent (5)

Excellent (5): The student masters the essential knowledge of dimensioning beam and plate structures and can apply the knowledge acquired in an innovative manner to more challenging structures to solve tensions and strains. The student also understands those situations which require more precise and profound strength inspection.

Qualifications

The students have the basic knowledge of the strength of materials and they are able to static sizing of structures with the help of manuals and sizing table cases. The students can form a mechanic model from a structure under inspection and they can solve the stresses, tensions and deformations affecting it. The students can perceive the cases which require more precise and profound strength inspection.

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