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Strength of Materials for Machine Engineering

Faculty of EngineeringApplied Sciences
CreditsN/A
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Semester offeredSemester 1 (Fall)
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Last updated7 months ago

Description

Learning outcomes and development goals K2 L Have a basic scientific-disciplinary knowledge and understanding in one of the areas based on the chosen specialization I1 L Problem analysis and solving I2 L Designing and/or developing I2 V Assuming a creative and innovative attitude G1 L Acquiring and processing information G3 L Critical reflection Objectives - The student has a deeper knowledge of the topics relevant to mechanical engineering from the theory of strength of materials with an emphasis on its technological application.(K1)(I1) - The student is able to schematize to a mathematical calculation model, to justify the choices made (also in case of irrelevant and/or incomplete data), and to critically evaluate the calculated results on correctness and relevance. (K1,G3) - The student is able to calculate or design constructions, taking into account the boundary conditions (e.g. permissible material properties and deformations, nature and method of loading). (K1, I1, I2, I3) - The student knows the relation between the stresses in a point and can apply fracture criteria for ductile and brittle materials. - The student is able to determine the deformations and stresses of solid or thin-walled cross-sections for (a combination of) the four elementary cutting forces (normal force, bending force, transverse force, torsion). - The student is able to study the complete stress state in a point including thermomechanical stresses. - The student is able to analyse the buckling of a machine part.

Course outline
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Preview the 5 closest equivalencies already indexed in our system

ZA0206 has possible credit equivalents including DME4068 at Hanyang University.

CourseUniversityQwest Score
DME4068
Material and Manufacturing Lab. 2
Hanyang University73
CIVE207
Solid Mechanics
McGill University72
DME4068
Material and Manufacturing Lab. 2
Hanyang University73
CIVE207
Solid Mechanics
McGill University72