lecture_iv_9

lecture_iv_9 - 1.033/1.57 Mechanics of Material...

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1.033/1.57: Mechanics of Material Systems Mechanics of Material Systems (Mechanics and Durability of Solids I) Franz-Josef Ulm Lecture: MWF1 // Recitation: F 3:00-4:30 1.033/1.57
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1.033/1.57: Mechanics of Material Systems Part IV: Plasticity and Yield Design 9. Limit Analysis and Yield Design
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1.033/1.57: Mechanics of Material Systems Part I. Deformation and Strain 1 Description of Finite Deformation 2 Infinitesimal Deformation Part II. Momentum Balance and Stresses 3 Momentum Balance 4 Stress States / Failure Criterion Part III. Elasticity and Elasticity Bounds 5 Thermoelasticity, 6 Variational Methods Part IV. Plasticity and Yield Design 7 1D-Plasticity – An Energy Approach 8 Plasticity Models 9 Limit Analysis and Yield Design Content 1.033/1.57
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1.033/1.57: Mechanics of Material Systems H e x e y p ρ g Excavation Pit Q lim · q ( V ) = dD ( V )/ dt Plastic Collapse:
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da V Σ T n n [[ V · σ ]] · n Zone 1 Zone 2 ∂Ω Generalized Divergence Theorem 1.033/1.57: Mechanics of Material Systems
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1.033/1.57: Mechanics of Material Systems p e r e φ e θ r = b r = a Exercise: Hollow Sphere
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1.033/1.57: Mechanics of Material Systems
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This note was uploaded on 11/29/2011 for the course CIVIL 1.018j taught by Professor Markusbuehler during the Fall '08 term at MIT.

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lecture_iv_9 - 1.033/1.57 Mechanics of Material...

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