MECHANICAL DESIGN II

COURSE OUTLINE

Responsible: Markos Petousis

1. GENERAL

SCHOOL School of Engineering
ACADEMIC UNIT Department of Mechanical Engineering
LEVEL OF STUDIES Undergraduate
COURSE CODE 0813.8.001.0 SEMESTER 2nd
COURSE TITLE Mechanical Design II
INDEPENDENT TEACHING ACTIVITIES
if credits are awarded for separate components of the course
WEEKLY
TEACHING HOURS
CREDITS
0 5
Total 0 5
COURSE TYPE
general background, special background, specialised general knowledge, skills development
PREREQUISITE COURSES 3d CAD Machine Elements Mechanical drawing Mechanical Design I
LANGUAGE OF INSTRUCTION and EXAMINATIONS English
OFFERED TO ERASMUS STUDENTS Yes (in English) — Spring Semester
COURSE WEBSITE (URL)

2. LEARNING OUTCOMES

Learning outcomes

“Mechanical Design II” is a continuation of “Mechanical Design I” course, for the acquisition of an integrated knowledge and the development of the skills of the structural Engineer to the students, which aims at:

- the application of the basic engineering knowledge already acquired by the student, for integrated and autonomous management of a technical problem, related to the design of a Mechanical device

- the student's understanding and application of the advanced imaging and computing tools provided by the CAD / CAE platforms in the design and optimization of products and technology systems

General Competences

The student who has successfully completed the Mechanical Design ΙI class, will have the ability to:

  • Analyze a technical problem related to the design of a mechanical product
  • Seek ideas that lead to the solution of a technical problem
  • Select the optimum solution and covert it to a mechanical setup
  • Implement full design of the mechanical setup
  • Manufacture a prototype model for the mechanical setup

Present the developed solution of the technical problem studied

3. SYLLABUS

The mechanical design process

2. Technical problems formulation and analysis

3. Collection and processing of information

4. Specifications list

5. Conceptual Design

6. Synthesis and evaluation of technical solutions

7. Development and design of a technical solution

- Materials, parts, standardization

- Loads, construction analysis

- Kinematics, mechanisms

- Safety

- Manufacturing and production

- Assembly

- Maintenance, reliability

- Aesthetics, ergonomics

- Billing

- Innovation

- Design optimization

8. Production systems and processes selection

9. Organizing and administration of working groups

10. Mechanical design software tools in the computer

4. TEACHING and LEARNING METHODS - EVALUATION

DELIVERY
Face-to-face, Distance learning, etc.
Project
USE OF INFORMATION AND COMMUNICATIONS TECHNOLOGY
Use of ICT in teaching, laboratory education, communication with students
TEACHING METHODS
The manner and methods of teaching are described in detail.
Activity Semester workload
Course total
STUDENT PERFORMANCE EVALUATION
Description of the evaluation procedure

5. ATTACHED BIBLIOGRAPHY