- Duration: 48 weeks
BEng (Hons) in Mechanical Engineering (Manufacturing)
Entry Qualification:
O/L and A/L with BIET Higher Diploma in Mechanical Engineering, or
O/L and BIET University Foundation Program with BIET Higher Diploma in Mechanical Engineering, or
O/L and A/L with any relevant Higher Diploma
Delivery
Duration: 12 Months – Full Time | Weekdays & Weekends
Curriculum
- 9 Sections
- 0 Lessons
- 48 Weeks
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- Stress AnalysisOne of the key disciplines that underpin mechanical engineering is to analyse the stresses applied due to different static load conditions. This foundation knowledge gained with the module will be used to extend specialist knowledge in future years.0
- DynamicsAn understanding of dynamic behaviour is an essential key element in the makeup of a good Engineer. This module seeks to instil a confident understanding of the discipline to build upon the basics introduced in level one. This module is supported by a laboratory practical exercise.0
- Design and Electromechanical SystemsThe primary aim of this module is to enable the student to understand the multi-disciplinary challenges present in engineering designs that include electromechanical systems in designs and to develop an appreciation of ‘TOTAL DESIGN’ as a design philosophy.0
- Mechanics of MaterialsOn successful completion of this module helps the student to demonstrate a detailed knowledge and understanding of key theoretical principles and results that underpin the design of structural elements Apply research skills to investigate and solve complex problems in the area of mechanics of materials. Model and apply simplifying assumptions to real engineering problems. Select and apply appropriate methods of solution to the design and analysis of structural elements.0
- Individual ProjectManage an extended piece of work with minimum guidance, using a full range of resources including those that are specialised or advanced within the field of study/practice. Produce a sophisticated, detailed and coherent piece of work in a structured, concise, well-presented and effective way.0
- Control EngineeringThis module helps the student to demonstrate knowledge of scientific principles and methods necessary to underpin their education in mechanical and related engineering disciplines, to enable appreciation of its scientific and engineering context and to support them understanding of future developments and technologies. Demonstrate knowledge of mathematical principles necessary to underpin their education in mechanical and related engineering disciplines and to enable them to apply mathematical methods, tools and notations proficiently in the analysis and solution of engineering problems. Apply and integrate knowledge of other engineering disciplines to support the study of mechanical and related engineering disciplines. Use engineering principles and apply them to analyse key engineering processes Identify, classify and describe the performance of systems and components through the use of analytical methods and modelling techniques.0
- Lean Manufacturing TechnologyThe aim of this module is to familiarise students with the principles and tools and techniques for modern smart manufacturing facility design and continued improvement.0
- Materials and Structure for Special ApplicationsThis module provides an opportunity for engineering students to extend their materials science knowledge beyond the introductory (level 1) materials science. Students will encounter the use of advanced materials in variety of engineering applications and related design challenges. The module also Students will also learn about new and future frontiers in materials science and their potential contributions towards sustainability and environmental impact.0
- Reliability Engineering And Asset ManagementThis module will provide a professional-level working knowledge of the advanced techniques of reliability engineering and an ability to apply them to improving the maintenance, the maintainability of existing and proposed manufacturing plant in their workplace.0