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Biju Patnaik University of Technology, Odisha
Civil Engineering
Mechanics of Solid
Biju Patnaik University of Technology, Odisha, Civil Engineering Semester 3, Mechanics of Solid Syllabus
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Unit - 1 Concept Of Stress
Unit – 1
Concept of Stress
1.1 Concept of Stress Load
1.2 Stress
1.3 Principle of St. Venant
1.4 Principle of Superposition
1.5 Strain
1.6 Hooke’s law
1.7 Modulus of Elasticity
1.8 Stress and Strain Diagram
1.9 Working Stress
1.10 Factor of Safety
1.11 Strain energy in tension and compression
1.12 Resilience Impact loads
1.13 Analysis of Axially Loaded Members Composite bars in tension and compression
1.14 Temperature stresses in composite rods
1.15 Concept of Statically indeterminate problems
1.16 Shear stress
1.17 Complimentary shear stress
1.18 Shear strain
1.19 Modulus of rigidity
1.20 Poisson’s Ratio
1.21 Bulk Modulus
1.22 Relationship between elastic constants
Unit - 2 Biaxial State Of Stress And Strain
Unit – 2
Biaxial State of Stress and Strain
2.1 Biaxial State of Stress and Strain Analysis of Biaxial Stress
2.2 Plane stress
2.3 Principal plane and Principal stress
2.4 Mohrs Circle for Biaxial Stress
2.5 Two dimensional state of strain
2.6 Principal strains
2.7 Mohrs circle for strain
2.8 Calculation of principal stresses from principal strains
2.9 Strain Rosette
2.10 Thin Cylinder Stresses in thin cylinders and thin spherical shells under internal pressure
2.11 Wire winding of thin cylinders
Unit - 3 Shear Force And Bending Moment Diagrams
Unit – 3
Shear force and bending moment diagrams
3.1 Shear force and bending moment
3.2 Types of load
3.3 Types of support
3.4 Support reactions
3.5 Relationship between bending moment and shear force
3.6 Point of inflection
3.7 Point of contraflexure
3.8 Shear Force and Bending Moment diagrams
3.9 Bending of Beams Theory of simple bending of initially straight beams
3.10 Bending stresses
3.11 Shear stresses in bending
3.12 Distribution of normal and shear stress
3.13 Composite beams
Unit - 4 Deflection Of Beams
Unit – 4
Deflection of Beams and Theory of Columns
4.1 Deflection of Beams Differential equation of the elastic line
4.2 Slope and deflection of beams by integration method and area moment method
4.3 Theory of Columns Long columns
4.4 Eulers column formula
4.5 Lateral buckling
4.6 Critical Load
4.7 Slenderness ratio
4.8 Eccentric loading of short column
Unit - 5 Torsion
Unit – 5
Torsion
5.1 Torsion in solid and hollow circular shafts
5.2 Twisting moment
5.3 Strain energy in shear and torsion
5.4 Strength of solid and hollow circular shafts
5.5 Strength of shafts in combined bending and twisting
5.6 Close Coiled helical springs
5.7 Testing of materials with UTM
5.8 Testing of hardness and impact strength
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Other Subjects of Semester-1
Mathematics - iii
Engineering economics
Fluid mechanics and hydraulic machines
Object oriented programming using java
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