MSc Finance
Cranfield University's MSc Finance program is designed to equip students with advan...
Cranfield
INTAKE: October
The MSc Advanced Lightweight and Composite Structures program offer a well-rounded curriculum that covers various aspects of lightweight materials and composite structures.
Advanced Materials Science: Students gain an in-depth understanding of advanced materials, including polymers, composites, and nanomaterials, exploring their mechanical, thermal, and electrical properties.
Composite Material Design: The program focuses on composite material design principles, considering factors such as stiffness, strength, and durability.
Finite Element Analysis (FEA): Students learn to use FEA software to analyze the behavior of composite structures under different loading conditions.
Manufacturing Techniques: The program covers various manufacturing techniques for composite structures, including layup, autoclave molding, and filament winding.
Structural Integrity: Students study the structural integrity of composite materials, including failure modes, damage tolerance, and repair techniques.
Lightweight Design and Optimization: The program emphasizes lightweight design principles and optimization techniques to develop efficient and cost-effective structures.
Aerospace Applications: Students explore the use of lightweight materials and composite structures in the aerospace industry, including aircraft and spacecraft applications.
Automotive Applications: The program covers the application of lightweight materials in the automotive sector, focusing on fuel efficiency and performance improvement.
Renewable Energy Structures: Students study the use of lightweight materials in renewable energy structures, such as wind turbine blades and solar panels.
Composite Testing and Characterization: The program includes practical laboratory sessions for testing and characterizing composite materials.
Capstone Projects: Students undertake real-world projects, working with industry partners to apply their knowledge to practical challenges.
Cranfield
IELTS 6.5
£ 26580
Postgraduate Entry Requirements:
Students must provide:
Work experience: Some postgraduate courses may require relevant work experience in the field.
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions
Cranfield University offers a variety of scholarships and bursaries to help students fund their studies. These scholarships are open to both UK and international students and are awarded based on a variety of factors, such as academic merit, financial need, and professional experience.
It is important to note that eligibility criteria, application requirements, and award amounts vary for each scholarship and bursary.
Graduates of the MSc Advanced Lightweight and Composite Structures program have excellent career prospects in industries that require lightweight and high-performance materials.
Composite Materials Engineer: Graduates can work as materials engineers, specializing in the design and development of composite materials.
Structural Analyst: Graduates may become structural analysts, using FEA tools to assess the performance of composite structures.
Aerospace Engineer: Graduates can pursue careers in the aerospace industry, contributing to the design and manufacturing of lightweight aircraft components.
Automotive Engineer: Graduates may work in the automotive sector, focusing on the application of lightweight materials in vehicle design.
Renewable Energy Specialist: Graduates can work as renewable energy specialists, designing lightweight structures for renewable energy systems.
Research and Development (R&D) Engineer: Graduates may work in R&D departments, exploring innovative materials and manufacturing techniques.
Composite Manufacturing Engineer: Graduates can pursue roles in composite manufacturing, optimizing production processes.