Course detail
Experimental Methods
FSI-HE1Acad. year: 2020/2021
The course deals with the basic methods of measuring and evaluating the side-effects of machining and metal-forming. They include mechanical testing, qualitative and quantitative evaluation of wear, measuring of cutting forces and resistance, metal-forming and ejecting forces, resistance to plastic strain, strain rates, temperature & heat, and oscillation. The evaluation is dealt with the viewpoint of individual methods of machining and metal-forming and the operating conditions of the tool. Applications of the methods of light and electron microscopy when evaluating the morphology of the surface of tools and workpieces are discussed too.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
The attendance to the seminar is regularly checked and the participation in the lesson is recorded.
Recommended optional programme components
Prerequisites and corequisites
Basic literature
FOREJT, Milan a Miroslav PÍŠKA. Teorie obrábění, tváření a nástroje. Brno: Akademické nakladatelství CERM, 2006. ISBN 80-214-2374-9. ( dotisk 2008, 2012, 2015, 2018) (CS)
FOREJT, Milan, HUMÁR, Anton, PÍŠKA, Miroslav a Libor JANÍČEK. Experimentální metody. [online]. Studijní opory pro magisterský studijní program 23-01-T Strojní inženýrství, obor strojírenská technologie - obrábění - tváření, svařování - management, VUT v Brně, Fakulta strojního inženýrství, 2003 -doplněna 2019. Dostupné z: http://ust.fme.vutbr.cz/tváření/opory-save/Experimentální_metody_he1.pdf. (CS)
MEYERS, Marc A. Dynamic behavior of materials. New York: Wiley, c1994. ISBN 0-471-58262-x. (EN)
Recommended reading
MELOUN, M., MILITKÝ, J. Statistické zpracování experimentálních dat. PLUS s.r.o. Praha, 1994. 839 s. ISBN 80-85297-56-6. (CS)
MEYERS, Marc A. Dynamic behavior of materials. New York: John Wiley and Sons., c1994. 668 p. ISBN 0-471-58262-X. (EN)
SMITH, G.-T. Cutting Tool Technology - Industrial Handbook. Springer-Verlag London Limited. United Kingdom. 2008. 597 pp. ISBN 978-1-84800-204-3. (EN)
STAHL, J.-E. Metal Cutting Theories and Models. GB Seco Tools AB. 02858870 ST20126371. 2012. 580 pp. ISBN 978-91-673-1336-1. (EN)
Elearning
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2.Heat and temperature (measuring methods, detection devices, processing)
3.Cutting forces and resistances (dynamometers, detection and evaluation of quantities)
4.Vibration (principles, experimental devices, detectors, instruments)
5.Microscopy methods (analysis of the morphology of the surface of tools and workpieces on scanning electron microscope)
6.Evaluation of properties of cutting tool materials
7.Complete evaluation of cutting tools properties
8.Experimental technological testing of bulk formability
9.Testing aimed at establishing the wear coefficient and the effect of lubricants in metal forming
10.Experimental testing of non-uniform distribution of deformation
11.Measuring the forming and ejecting forces, determining the state of stress
12.Establishing the resistance to deformation at higher strain speeds
13.Establishing the dynamic and mechanical properties of materials
Laboratory exercise
Teacher / Lecturer
Syllabus
2.Establishing the tool life/cutting speed dependence from the wear values
3.Analysis of cutting properties of drills
4.Analysis of cutting properties of milling cutters
5.Establishing the torque when cutting the thread with a nut tap
6.Analysis of energetic and thermal phenomena in grinding
7.Analysis of properties of processing liquids
8.Complex upsetting test, evaluation of the resistance to deformation, deformation work, and rate of deformation
9.Establishing the wear coefficient during the metal-forming process
10.Evaluation of strain by the macro-network method
11.Establishing the impact forces and stress in the Taylor test
12.Conducting the Taylor test on an air gun and evaluating the test
13.Establishing the dynamic-mechanical properties of materials by the method of Hopkinson bar test
Elearning