National Institute of Technology Rourkela

राष्ट्रीय प्रौद्योगिकी संस्थान राउरकेला

ଜାତୀୟ ପ୍ରଯୁକ୍ତି ପ୍ରତିଷ୍ଠାନ ରାଉରକେଲା

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Syllabus

Course Details

Subject {L-T-P / C} : CE2003 : Mechanics of Solids { 3-0-0 / 3}

Subject Nature : Theory

Coordinator : Uttam Kumar Mishra

Syllabus

Module 1 :

Module I: Concept of Stress and Strain [9 hours]
Definition of stress, Normal and Shearing stresses and corresponding strains in axially loaded members, Stress-Strain relationship and its diagram for uniaxial loading for ductile and brittle materials, Stress tensor, Generalised Hooke's Law, Poisson's ratio, relationship between elastic constants, Working stress, Factor of safety. Composite bars in tension and compression, temperature stresses in composite rods, statically indeterminate problems in axial tension and compression.
Module II: Thin Cylinders and Spherical Shells [4 hours]
Bi-axial Stresses in thin cylinders and thin spherical shells under internal pressure, wire winding of thin cylinders.
Module III: Transformation of Plane Stress and Plane Strain [6 hours]
Two dimensional state of stress, principal stresses and principal planes, Mohr's circle of stress, Two dimensional state of strain, principal strains and principal axes of strain, Mohr's circle of strain, measurement of strain by strain gauge and strain rosettes, determination of principal strains from strain measurements, calculation of principal stresses from principal strains.
Module IV: Torsion of Circular Shafts and Helical Springs [5 hours]
Torsion formula, strength of solid and hollow circular shafts, design of circular members in torsion, power transmitted, and close coiled helical springs.
Module V: Analysis of beams [9 hours]
Members subjected to flexural loads, relationships between load, shearing force and bending moment, shear force and bending moment diagrams of cantilever and simply supported beams, elastic curve. Theory of simple and non-uniform bending of initially straight beams, bending stresses in beams, shearing stresses in beams, beams of two materials, carriage springs. Slope and deflection of beams by integration method and moment area method.
Module VI: Theory of Columns [3 hours]
Euler's theory for initially straight columns with various end conditions, eccentric loading of columns, stresses in short struts with eccentric loading, Kern of rectangular and circular sections.

Course Objective

1 .

To understand the fundamental concepts of stress and strain and their relationship, working stress, Factor of safety, temperature stresses, Bi-axial Stresses in thin cylinders and thin spherical shells under internal pressure, wire winding, Transformation of Plane Stress and Plane Strain

2 .

Analysis and design of shafts and close coiled helical springs subject to torsional load.

3 .

Analysis of beams subjected to flexural loads, relationships between load, shearing force and bending moment, shear force and bending moment diagrams of cantilever and simply supported beams, elastic curve. Theory of simple and non-uniform bending of initially straight beams, bending stresses in beams, shearing stresses in beams, beams of two materials. Slope and deflection of beams by integration method and moment area method.

4 .

Understand the concept of buckling, Stability of short and long columns.

Course Outcome

1 .

After the completion of this course, students will be able to:
CO1: Have an idea on the performance of deformable solids of various materials under the action of different kind of loads, Understand the fundamental concepts of stress and strain and the relationship between them through the strain-stress equations, temperature stresses.
CO2: Know the stresses in thin cylinders and thin spherical shells under internal pressure, strengthen thin cylinders and spheres by wire winding, perform transformation of Plane Stress and Plane Strain.
CO3: Analyse and design shafts subject to torsional load and close coiled helical springs subject to axial loads.
CO4: Analyse beams subject to flexure loads.
CO5: Understand the concept of buckling, Stability of short and long columns.

Essential Reading

1 .

S.P.Timoshenko and D.H.Young, Elements of Strength of Materials, Affiliated East West Press Pvt. Ltd.

2 .

E.P.Popov, Engineering Mechanics of Solids, Prentice Hall of India Pvt. Ltd., New Delhi.

Supplementary Reading

1 .

I.H.Shames, Introduction to Solid Mechanics, Prentice Hall of India Pvt. Ltd., New Delhi.

2 .

G.H.Ryder, Strength of Materials, ELBS

Journal and Conferences

1 .