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MSc Mechanical Engineering
University of Wolverhampton

Student rating
(4.4)

Find out more about studying MSc Mechanical Engineering at University of Wolverhampton? We've gathered all the key details, entry requirements, modules, fees, and more. Take the next step by booking an open day to explore it for yourself.

Different course options

DATA SOURCE:
UNISTATS, UCAS
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Qualification

MSc - Master of Science

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Location

Springfield Campus

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Study mode

Part Time

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Start date

Sep 2026

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Duration

2 Year

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Course info

This innovative MSc course provides an advanced understanding of mechanical engineering, with the aim of producing postgraduates who can overcome the new and exciting challenges of the subject, and encourage imaginative and creative innovation. Balancing academic theory with practical considerations, this course covers key areas of the mechanical sciences such as stress analysis, CFD and heat transfer, along with product design, advanced materials, research methods and computer-aided engineering. A principal component of the course is the dissertation project, which is usually associated with current research activity or industrial consultancy in the School of Engineering, allowing students to gain substantial expertise in one specific area.You will pay attention to the development of investigative modelling and computational strategies. This will allow you acquire advanced knowledge and a systematic understanding of contemporary finite element modelling techniques, to analyse the behaviour of complex engineering systems and components. You will gain a comprehensive understanding of advanced solid mechanics, fluid mechanics, and other analytical techniques used in product development and sustainability, and to apply these techniques to synthesise novel designs for a range of engineering applications.Full-time (12 months)

Key stats
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Complete University Guide ranking
101st
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Complete University Guide Mechanical Engineering ranking
61st

Modules

Modules (Year 1)
Advanced Materials and Manufacturing Processes (20 credits) - Core

To to evaluate current and emerging advanced engineering materials and manufacturing processes such as the ones used in polymer products and in rapid manufacturing and prototyping technologies. The aim is to develop a critical understanding as to how these materials and associated manufacturing processes can be exploited. The module will offer an opportunity to design, develop, manufacture and evaluate a sustainable engineering solution for a bespoke application. The module will allow the students to undertake a group based design, make and test investigation project based around open ended case study data. The work is expected to exploit the available advanced manufacturing processes of metal based ALM and 5 axis CNC manufacturing.

Applied Stress Analysis (20 credits) - Core

Besides Fluid Mechanics, Thermodynamics and Heat Transfer, the topic of Solid Mechanics is one of the fundamental pillars of Mechanical Engineering. Within this area, there is the field of Stress Analysis which is a vital topic with which the mechanical engineer and any aspiring manager in the field of engineering should be familiar. This topic is known to be a traditional topic, the theoretical foundations of which have been well established in the past but, regarding applications, this area is constantly evolving. This module will allow the student to recall and be fully conversant with the underpinning theoretical principles and build student?s knowledge further to apply these analytical foundations to current industrial issues to model, analyse and contribute to the design of novel components, structures and products. The module will also allow the student to get acquainted with modern, recent developed, techniques to deal with thin-walled structures currently used in the automotive, aerospace and power industries. The module will also address the latest principles governing modern design issues.

CAD and Product Definition (20 credits) - Core

This module provides you with a broadening knowledge of Computer Aided Design tools and the Product Structuring and Definition strategies being used by today?s most successful product developers and manufacturers. By undertaking the module, you will also develop the ability to analyse and evaluate how modern product design orientated organisations could strategically exploit these technologies to achieve higher quality products at the optimum cost and delivered to market in a timely manner. =

Computational Fluid Dynamics (CFD) and Heat Transfer (20 credits) - Core

You will attain proficiency in the application of analytic techniques used in computational solutions of fluid mechanics and heat transfer problems. Additionally, computational fluid dynamics tools will be presented, with particular emphasis on problem-solving in rapid prototyping, rapid manufacturing and product design.

Design Optimization and Simulation (20 credits) - Core

Computational methods are evolving to help automate the optimisation process when using simulation using numerical techniques, identifying options that manual methods may miss through enabling large number of permutations to satisfy multiple objectives. Through parametric integration between geometry (CAD) and simulation, numerical codes can be developed to derive optimum solution. Consequently, this module aims to achieve the said objective through the use of Finite Element Method (FEM) of complex engineering systems and components. The module will further enable a comprehensive understanding of advanced solid mechanics and analytical techniques pertinent to product development and sustainability, and to apply these advanced techniques to synthesise novel designs of a range of engineering systems. Development of custom numerical codes to identify optimum solution to structural problems will be a chosen endeavour in this module.

Dissertation (60 credits) - Core

The MSc Dissertation enables you to undertake an in-depth individual research project in an area directly linked to your subject area and interests. This will ensure that you undertake scholarly work that further develops an aspect of the taught material and thereby contributes to your personal development and training towards professional practice. This module evidences your transformation from undergraduate to master?s level achievement through the process and production of a recognised research output in your subject area.

Research Methods and Professional Skills (20 credits) - Core

By studying this module you will develop the personal and professional skills required to design and undertake research in your chosen subject area at post graduate level.

DATA SOURCE:
UCAS/IDP Connect
Tuition fees
Student living
£5,508 per year
Students from Domestic

DATA SOURCE:
UCAS / IDP Connect

Uni info

The University of Wolverhampton is a fantastic place for postgraduate study, putting students firmly first, and encourag...

Student rating
(4.4)
View reviews
CUG ranking 101st
University of Wolverhampton
Grimstone StreetWolverhamptonWest MidlandsWV10 0JRUnited Kingdom