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Lecture
Mechanics of Transforming Materials
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Related lectures (31)
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Classical Laminate Theory: Analysis & Equilibrium
Covers the Classical Laminate Theory and its analysis of displacements, strains, stresses, and equilibrium in laminated composites.
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Covers eigenstrains, deformations in a body not caused by stress, and their significance in mechanics.
Laminate Analysis: Introduction
Introduces laminate analysis, covering plane stress, rotation in 2D, and special laminates.
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Explores stress concentrations on ellipsoidal void surfaces and the impact of inclusion on stress distribution.
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Explores the Eshelby method for mechanics of inclusions and eigenstrains, focusing on stress and strain fields inside inclusions.
Mechanics of Slender Structures: Elasticity & Buckling
Explores 3D elasticity, beam bending, and buckling phenomena in slender structures.
Classical Laminate Theory
Covers Classical Laminate Theory for solving mechanics problems with multiple material layers, discussing displacements, strains, stresses, and equilibrium.
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Explores the mechanics and failure mechanisms of composite materials, including matrix cracking, fiber breakage, and delamination.
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Introduces mechanics, differential and vector calculus, and historical perspectives from Aristotle to Newton.
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Covers the fundamentals of structural mechanics, including axial loading, stress, strain, and generalized uniaxial loading.