Faculdade de Ciências e Tecnologia

Metallic Materials Shaping Technologies

Code

10197

Academic unit

Faculdade de Ciências e Tecnologia

Department

Departamento de Ciências dos Materiais

Credits

6.0

Teacher in charge

Alexandre José da Costa Velhinho

Weekly hours

5

Total hours

84

Teaching language

Português

Objectives

The curricular unit’s main objective is to confer to the student a solid knowledge about the metallic materials shaping technologies and processes, as well as their positioning in the general scheme of processing technologies.

Taking into account the structure-properties relationships governing material’s behaviour, the student should be able to identify the relative advantages and limitations of the processes, to understand the functioning of the machinery used to implement those processes, and to understand the influence of the various process parameters. Thus, he/she should be in a position to adequately select the best technologies to be used to produce a given part, planning the sequence of processing steps of the material as a function of its properties as well as of the intended application; also, the student should be able, when presented with a defective processing result, to evaluate the possible causes for error and to correct them.

Prerequisites

No mandatory requirements are defined.

However, mastering of Physical Metallurgy concepts, as well as Mechanical Behaviour of Materials, is strongly advised.

Subject matter

  • Processing technologies and production systems.
  • Dimensions, tolerances and surface finishes.
  • Solidification technologies: casting processes.
  • Powder technologies: powder metallurgy.
  • Plastic deformation technologies: rolling, extrusion, forging and stamping.
  • Material removal technologies:
    • conventional machining;
    • abrasive machining;
    • non-conventional machining (mechanical, electrical, thermal and chemical material removal processes).
  • Finishing and assembling operations.

Bibliography

  • Mikell P. Groover, “Fundamentals of Modern Manufacturing – Materials, Processes and Systems", 3rd edition, ed. John Wiley & Sons, Inc., (2006), 1022 pp. [ISBN-13 978-0-471-74485-6 / ISBN-10 0-471-74485-9]
  • J.T. Black, Ronald A. Kohser, “DeGarmo’s Materials & Processes in Manufacturing”, 10th edition, ed. John Wiley & Sons, Inc., (2008), 1036 pp. [ISBN 978-0470-05512-0]
  • J. Rodrigues, P. Martins, “Tecnologia Mecânica: Tecnologia da Deformação Plástica – Aplicações Industriais” Vol. II, 1ª edição, ed. Escolar Editora (2005) [ISBN 972-592-185-2]
  • J.M.G. Ferreira, “Tecnologia da Fundição”, 2ª edição, ed. Fundação Calouste Gulbenkian (2007) [ISBN 972-1-0837-2]
  • J.M.G. Ferreira, “Tecnologia da Pulverometalurgia”, 1ª edição, ed. Fundação Calouste Gulbenkian (2002) [ISBN 972-31-0974-3]

Teaching method

Two types of lessons will be considered: Lectures and laboratory. Lectures will be given using PowerPoint slides, students having access to copies on the course page in the Moodle platform. The laboratory work will be performed by the students under the guidance of the teacher and focus on the different topics of the syllabus.

A series of visits to industrial plants dedicated to metallic materials processing may complement the unit.

Teaching has theoretical and experimental components that will allow students to acquire and apply knowledge to determine the possible processing routes to produce a metallic part. In lectures, the subjects will be presented and explained, which will allow the consolidation of knowledge that will later be put into practice in labs. Thus, lectures and laboratory classes complement each other in order to provide an integrated learning. Lab works assume an important role in the evaluation of the curricular unit as it is through these that students acquire skills that will allow them to master the different technological routes for metal shaping, as well as the effects of processing on the final part’s structure and performance. Study visits are designed to facilitate the transposition of acquired knowledge to an industrial environment.

Throughout the semester, a constant demand will be placed on knowledge previously acquired (Physical Metallurgy and Metallography, Mechanics of Materials I), and special care will be taken in order to establish firm bridges to subsequent curricular units (Thermal Treatments and Mechanical Treatments, Composites – Materials and Applications, Materials Selection).

Evaluation method

Evaluation consists of two written tests, complemented by the execution and analysis of a colective assignment and an indivudual assignment.

Courses