Course detail

Selected Chapters of Metal-forming

FSI-HVTAcad. year: 2010/2011

The course provides information from the areas of strength design and dimensioning of metal-forming tools. The second part includes the theory and technology of metal-forming by high strain rates and energies. This specialized instruction with practical demonstrations includes, among other things, combined reforging, impact indentation, bulk renovation of machine parts and tools, high-rate die forging, explosive, electrohydraulic and electromagnetic metal forming. Also dealt with are cavity shooting, application of explosion energy, dynamic compacting of metallic and non-metallic powders. Modelling of high strain-rate processes is demonstrated. In the third part, students are confronted with the latest results of research.

Language of instruction

Czech

Number of ECTS credits

6

Mode of study

Not applicable.

Learning outcomes of the course unit

Students majoring in metal forming will have an overview of the methods and selected calculation models for dimensioning metal-forming tools. They will be made familiar with the theory and technologies of high strain-rate metal-forming methods, as well as with the latest knowledge in the field.

Prerequisites

Successful completion of the course is conditional on the knowledge of applied mathematics and physics, materials science, elasticity, strength, plasticity, and examination of the subject the theory of metal-forming.

Co-requisites

Not applicable.

Planned learning activities and teaching methods

Teaching methods depend on the type of course unit as specified in the article 7 of BUT Rules for Studies and Examinations.

Assesment methods and criteria linked to learning outcomes

The course-unit credit is awarded on condition of having attended all laboratory exercises and worked out partial written programs. The exam has a written and an oral part, based on a set of lot-drawn questions.

Course curriculum

Not applicable.

Work placements

Not applicable.

Aims

The objective of the course is to provide the students with the necessary knowledge and information from the field of metal forming that they could not acquire in the course of studying special subjects so far.

Specification of controlled education, way of implementation and compensation for absences

Absence from laboratory exercises is compensated for via make-up topics of exercises and consultations.

Recommended optional programme components

Not applicable.

Prerequisites and corequisites

Not applicable.

Basic literature

LANGE, Kurt. Handbook of metal forming. New York: McGraw-Hill, c1985, 900 p. ISBN 00-703-6285-8. (EN)
MEYERS, Marc A. Dynamic behavior of materials. New York: John Wiley and Sons., c1994. 668 p. ISBN 0-471-58262-X (EN)
MIELNIK, Edward M. Metalworking science and engineering. New York: McGraw-Hill, c1991, 976 p. McGraw-Hill. ISBN 00-704-1904-3. (EN)

Recommended reading

ASM International. Metals Handbook Ninth Edition: Forming and Forging. 1st ed. Metals Park Ohio: ASM International. 1988. vol. 14. ISBN 0-87170-007-7. (EN)
Forejt, Milan. Proceedings of International Conference FORM´95,´97, ´98, 2000, 2002, 2004, 2006, 2008, 2010. (CS)
FOREJT, Milan; KREJČÍ, Jan a BUCHAR, Jaroslav. Teorie a technologie tváření vysokými deformačními rychlostmi a energiemi: Vybrané statě z tváření. 2. vyd. Brno: VUT FSI. 1994. Sylabus. FRVŠ (CS)

Classification of course in study plans

  • Programme N2301-2 Master's

    branch M-STG , 2 year of study, summer semester, compulsory-optional

Type of course unit

 

Lecture

26 hod., optionally

Teacher / Lecturer

Syllabus

1.Limit states of forming processes, limit diagrams of plastic deformation.
2.Limit states of stress, conditions of free and minimum security.
3.Analysis of damage to metal forming tools, problems of durability, service life and reliability.
4.Analytical procedures in strength design of forming tools.
5.Approximate stress-strain curves in the calculation models.
6.Application of the FEM in analysis of large plastic deformation.
7.Application of the FEM in the analysis of stress and deformation tools.
8.Theory and technology of metal forming in conditions of real strain rates.
9.Significant factors of high-speed deformation, define of relations.
10.Influence of strain-rate to the deformation resistance, the critical impact speed.
11.Evaluation of dynamic mechanical properties under impact –Taylor Anvil Test-TAT.
12.Evaluation of dynamic mechanical properties of materials by the Split Hopkinson Pressure Bar Test-SHPBT.
13.Review of forming methods using high-speed deformation.