Teaching GuideTerm
Higher Polytechnic University College
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Grao en Enxeñaría Mecánica
 Subjects
  Strength of Materials
   Contents
Topic Sub-topic
Os bloques ou temas seguintes desenrolan os contidos establecidos na ficha da Memoria de Verificación:
Carga axial; esforzos, tensións e deflexións en vigas; estados planos; tensión.
1. Tension, Compression and Shear Introduction to Mechanics of Materials
Normal Stress and Strain
Mechanical Properties of Materials
Elasticity, Plasticity, and Creep
Linear Elasticity, Hooke’s Law, and Poisson’s Ratio
Shear Stress and Strain
Allowable Stresses and Allowable Loads
Design for Axial Loads and Direct Shear
2. Axially Loaded Members Introduction
Changes in Lengths of Axially Loaded Members
Changes in Lengths Under Nonuniform Conditions
Statically Indeterminate Structures
Thermal Effects, Misfits, and Prestrains
Stresses on Inclined Sections
Strain Energy
3. Torsion. Introduction
Torsional Deformations of a Circular Bar
Circular Bars of Linearly Elastic Materials
Stresses and Strains in Pure Shear
Relationship Between Moduli of Elasticity E and G
Transmission of Power by Circular Shafts
Strain Energy in Torsion and Pure Shear
4. Shear Force and Bending Moment Introduction
Types of Beams, Loads, and Reactions
Shear Forces and Bending Moments
Relationships Between Loads, Shear Forces, and
Bending Moments
Shear-Force and Bending-Moment Diagrams
5. Stresses in Beams I. Introduction
Pure Bending and Nonuniform Bending
Curvature of a Beam
Longitudinal Strains in Beams
Normal Stresses in Beams (Linearly Elastic Materials)
Design of Beams for Bending Stresses
6. Stresses in Beams II. Shear Stresses in Beams of Rectangular Cross Section
Shear Stresses in Beams of Circular Cross Section
Shear Stresses in the Webs of Beams with Flanges
7. Analysis of Stress and Strain Introduction
Plane Stress
Principal Stresses and Maximum Shear Stresses
Mohr’s Circle for Plane Stress
Hooke’s Law for Plane Stress
Triaxial Stress
Plane Strain
8. Deflections of Beams Introduction
Differential Equations of the Deflection Curve
Deflections by Integration of the Bending-Moment
Equation
Deflections by Integration of the Shear-Force and Load
Deflections by the Virtual Force Method
Strain Energy of Bending. Thermal effects.
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