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Advanced Engineering Design – (M.Sc.)

Brunel University

School of Engineering and Design
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Disciplines:
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Application Deadline: as early as possible
Annual Tuition Fee: ≈ € 4,740 - ≈ € 14,334 (non-EEA)
Location: London / United Kingdom / View location on map ▾ Hide location on map ▴
Duration: 12 months Start Date: September
Educational Form:
  • Taught
Education Variants:
  • Parttime
  • Fulltime
Credits (ECTS): 180
Languages: English 
-0.462971,51.540677

Location of Brunel University

The programme is aimed at high calibre and ambitious Mechanical Engineering graduates who wish to gain expertise in systematically developing complex, multidisciplinary engineering design.

You will learn:

* How to design products requiring embedded intelligence and comprehensive engineering analysis
* How to use six CAE software packages

Why a program in Engineering Design ?

Engineering Design is the application of engineering principles, the experience of making, and use of mathematical models and analysis. The design and production of complex engineering products often require the use of embedded intelligence and detailed engineering analysis involving mechanical, electronic and control functions. Advanced theoretical knowledge and a wide range of computer driven tools, methods and methodologies are essential for this process.

Thus there is a need for an integrated course where advanced theory, human factors and creativity tools essential to successful product development are taught, training in software, research and/or applications provided and experience in the application of these knowledge and skill components in an integrating real life group project is given. This course has been developed to fulfil this need.


Contents

Continued design of modern complex products demands advanced knowledge in mechanical, electronic, manufacturing and control engineering disciplines and human factors in design, ability to use advanced engineering software packages, integrating application experience and ability to carry on learning.

The Engineering Design MSc and its course curriculum has been developed to produce design engineers who can meet these demands. It contains six taught modules where advanced multi-disciplinary theory is taught. As part of the course, six engineering software packages are also taught. In order to give an integrating application experience in an industrial setup, 'Design Experience', a group project module with an industry, has been included as part of the curriculum. The dissertation is aimed at providing training in carrying out an in-depth engineering task on a self-learning basis. Thus, at the end of the course you will become a confident design engineer equipped with high quality and advanced knowledge and skills to work on design tasks in an advanced computer assisted environment and ability to gather useful knowledge on an engineering topic on your own when it is necessary as part of the task.

The course is constituted with the following five items:

* Engineering Design in Perspective This module is delivered in a block fashion during the first two weeks and provides * revision in Solid Mechanics, Engineering Mechanics and Matrices;
* training in MATLAB software;
* lectures in Engineering Design Methodology;
* a two week group project on 'Design from Concept to Reality'. This module does not carry any credits.


* Six taught modules (each worth 15 credits) in Advanced Theory
* Advanced Computer Aided Engineering This module is aimed at providing the knowledge needed to understand the creation of Computer Models and their use in Mechanism Synthesis and Analysis and NC machining. It also provides training in the use of appropriate software packages.
* Structural Design and FEA This module provides the knowledge in Structural Design and in Principles of Finite Element Analysis. It also provides training in ANSYS software package.
* Physical Human Factors in Design This module is aimed at educating the students in physical characteristics of humans and qualitative and analytical methods of human centered design.
* Design of Mechatronic SystemsThis module provides the knowledge and skill required to develop an electronically controlled system.
* Microprocessers and Embedded Control This module provides the knowledge and skill required to program a microcontroller for a control application.
* Manufacturing System Design and Economics This module provides the knowledge and skill required to transform the design into manufacturable entity by the choice of the appropriate manufacturing process and manufacturing facilities.
* Engineering Design in PerspectiveReview on topics in the fundamentals of engineering mechanics and mechanics of solids, engineering materials, electronics, control and manufacturing engineering. Overview of engineering design, design methodology; Classical optimisation techniques; Robust engineering design; Research methods; Introduction to MATLAB as a tool for engineering analyses.


* Design Experience (worth 30 credits)A Group Project with the Industry: In this module a design project comprising mechanical, electronic and control functions is taken from the industry and a group of students are assigned to work on it under the supervision of a group of academics and a supervisor from the industry. This module gives the most valuable integrating experience within the constraints of the manufacturing industry.
* Dissertation (worth 60 credits) The dissertation is aimed at providing training in carrying out an in-depth study on a chosen engineering subject.
* Work in a purpose equipped Design Studio with various experiential learning facilities including computers for the exclusive use of the MSc Engineering Design Students.

The award of the MSc requires students to achieve 180 credits.

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Requirements

A UK first or second class Honours degree or equivalent internationally recognised qualification usually in mechanical engineering or a related discipline. Other qualifications and relevant experience will be assessed on an individual basis. English Language requirements : IELTS score 6.0 with a minimum of 5 in each subsection; TOEFL (computer-based) score 213 and 4 in essay rating (TWE); TOEFL (paper-based) score 550 and 4 in essay rating (TWE).

Additional Requirements

Minimal degree required: Bachelor's degree
Minimal amount of work experience Not specified

Language Proficiency

IELTS Band: 6.0
Cambridge English: Advanced (CAE): Grade C (Score: 60)
TOEFL Paper-based: 550
TOEFL Computer-based: 213

Accreditation

This programme is accredited by the IMechE and this will provide a route to Chartered Engineer status in the UK.


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