Anna University, Subject code – CE3402 deals with the B.E civil Engineering Semester – IV Strength Of Materials syllabus regulation 2021 relating to affiliated institutions. From here, Students can get assistance in preparing notes to excel in academic performance.
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If you want to know more about the syllabus of B.E Civil Engineering connected to an affiliated institution’s under four-year undergraduate degree programme. We provide you with a detailed Year-wise, semester-wise, and Subject-wise syllabus in the following link B.E Civil Engineering Syllabus Anna University, Regulation 2021.
Aim Of Concept:
- To learn the fundamental concepts of Stress in simple and complex states and to know the mechanism of load transfer in beams and the induced stresses due to simple bending and unsymmetrical bending and to determine the deformation in determinate beams and to know the basic concepts of analysis of indeterminate beams.
CE3402-Strength Of Materials Syllabus
Unit I: Simple And Compound Stresses
Stresses in simple and compound bars – Thermal stresses – Elastic constants – Thin cylindrical and spherical shells – Biaxial state of stress – Principal stresses and principal planes – Mohr’s circle of stresses – Torsion on circular shafts.
Unit II: Bending Of Beams
Types of beams and transverse loadings– Shear force and bending moment for simply supported, cantilever and over-hanging beams – Theory of simple bending – Bending stress distribution – Shear stress distribution.
Unit III: Deflection Of Beams
Double Integration method – Macaulay’s method – Area moment method – Conjugate beam method – Strain energy method for determinate beams.
Unit IV: Indeterminate Beams
Propped Cantilever and Fixed Beams – Fixed end moments reactions, slope and deflection for standard cases of loading –– Continuous beams – support reactions and moments – Theorem of three moments – Shear Force and Bending Moment Diagrams.
Unit V: Advanced Topics
Unsymmetrical bending of beams – shear center applied – Thick cylinders – Theories of failure – Principal stress, principal strain, shear stress, strain energy and distortion energy theories – application problems.
Textbooks:
- Rajput R.K. “Strength of Materials (Mechanics of Solids)”, S.Chand & Company Ltd., New Delhi, 2018.
- Rattan. S.S., “Strength of Materials”, Tata McGraw Hill Education Pvt. Ltd., New Delhi, 2017.
- Punmia B.C., Ashok Kumar Jain and Arun Kumar Jain, “Theory of Structures” (SMTS) Vol -II, Laxmi Publishing Pvt Ltd, New Delhi 2017.
- Basavarajiah and Mahadevapa, Strength of Materials, University Press, Hyderabad, 2016
- Vazirani. V.N, Ratwani. M.M., Duggal. S.K Analysis of Structures: Analysis, Design, and Detailing of Structures-Vol.1, Khanna Publishers, New Delhi 2014.
References:
- Kazimi S.M.A, “Solid Mechanics”, Tata McGraw-Hill Publishing Co., New Delhi, 2017
- William A . Nash, “Theory and Problems of Strength of Materials”, Schaum’s Outline Series, Tata McGraw Hill Publishing company, 2017.
- Singh. D.K., “ Strength of Materials”, Ane Books Pvt. Ltd., New Delhi, 2021
- Egor P Popov, “Engineering Mechanics of Solids”, 2nd edition, PHI Learning Pvt. Ltd., NewDelhi, 2015
- Irwing H.Shames, James M.Pitarresi, Introduction to Solid Mechanics, Prentice Hall of India, New Delhi, 2002
- Beer. F.P. &Johnston. E.R.“Mechanics of Materials”, Tata McGraw Hill, Sixth Edition, New Delhi 2010.
- James M. Gere., Mechanics of Materials, Thomas Canada Ltd., Canada, 2006.
- Egor. P.Popov, Engineering Mechanics of Solids, Prentice Hall of India, Second Edition New Delhi 2015.
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