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Understand the behaviour and selection of materials for mechanical engineering applications.
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Section 1: Introduction and Stress Fundamentals
Section 2: Material Properties
Section 3: Axial Loading Analysis
Section 4: Torsion Mechanics
Section 5: Pure Bending Stresses
Section 6: Transverse Shear in Beams
Section 7: Beam Deflection Methods
Section 8: Stress Transformation
Section 9: Combined Loading Analysis
Section 10: Energy Methods
Section 11: Column Buckling
What you’ll achieve
Understand stress-strain behaviour, elasticity, and plasticity of materials.
Analyse fatigue, fracture mechanics, and material failure.
Explore metals, polymers, composites, and advanced alloys.
Apply material selection principles to mechanical design and manufacturing.
Develop practical problem-solving skills for real-world mechanical engineering challenges.

Course overview
Mechanical Materials focuses on the properties, performance, and applications of materials used in mechanical systems. Students study stress-strain relationships, elasticity, plasticity, fatigue, fracture mechanics, and material testing methods. The course covers metals, polymers, composites, and advanced alloys, emphasising their selection for specific mechanical engineering applications. By combining theory with practical examples, learners develop the skills to evaluate, choose, and optimise materials for machinery, structural components, and manufacturing processes.
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