4th Sem, Civil

Introduction To Solid Mechanics Civil 4th Sem Syllabus for AKTU B.Tech 2019-20 Scheme

Introduction To Solid Mechanics detail syllabus for Civil Engineering (Civil), 2019-20 scheme is taken from AKTU official website and presented for AKTU students. The course code (KCE402), and for exam duration, Teaching Hr/Week, Practical Hr/Week, Total Marks, internal marks, theory marks, duration, and credits do visit complete sem subjects post given below.

For all other civil 4th sem syllabus for b.tech 2019-20 scheme aktu you can visit Civil 4th Sem syllabus for B.Tech 2019-20 Scheme AKTU Subjects. The detail syllabus for introduction to solid mechanics is as follows.

Course Outcomes:

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Unit I

Simple stress and strains: Concept of stress and strain, types of stresses and strains, Hook’s law, stress and strain diagram for ductile and brittle metal. Lateral strain, Poission ratio, volumetric strain, elastic moduli and relation between them. Bar of varying cross section, composite bar and temperature stress. Strain energy for gradual, sudden and impact loading.
Compound stress and strains: Normal stress and strain, shear stress and strain, stresses on inclines sections, principal stress and strain, maximum shear stress, Mohr’s stress circle, three dimensional state of stress & strain, equilibrium equations, generalized Hook’s law-3D, Theories of failure and factor of safety.

Unit II

Shear force and bending moment diagrams: Shear force (SF) and Bending moment (BM) diagrams for simply supported, cantilevers, overhanging and fixed beams. Calculation of maximum BM and SF and the point of contra flexure under concentrated loads, uniformly distributed loads over the whole span or part of span, combination of concentrated loads (two or three) and uniformly distributed loads, uniformly varying loads.

Unit III

For the complete syllabus, results, class timetable and more kindly download iStudy. It’s a lightweight, easy to use, no images, no pdfs platform to make student’s life easier.

Unit IV

Deflection of Beams: Slope and deflection- Relationship between moment, slope and deflection, Moment area method, Macaulay’s method. Use of these methods to calculate slope and deflection for determinant beams.
Short Columns and Struts: Buckling and stability, slenderness ratio, combined bending and direct stress, middle third and middle quarter rules.

Unit V

Helical and Leaf Springs: Deflection of springs by energy method, helical springs under axial load and under axial twist (respectively for circular and square cross sections) axial load and twisting moment acting simultaneously both for open and closed coiled springs.
Thin cylinders, Thick cylinders & Spheres: Introduction, difference between thin walled and thick walled pressure vessels, thin walled spheres and cylinders, hoop and axial stresses and strain, volumetric strain. Radial, axial and circumferential stresses in thick cylinders subjected to internal or external pressures, compound cylinders.

Books and References:

  1. Mechanics of Materials by Hibbeler, Pearson.
  2. Mechanics of material by Gere, Cengage Learning
  3. Mechanics of Materials by Beer, Jhonston, DEwolf and Mazurek, MCGRAW HILL INDIA
  4. Strength of Materials by Pytel and Singer, Harper Collins
  5. Strength of Materials by Ryder, Macmillan.
  6. Strength of Materials by Timoshenko and Youngs, East West Press.
  7. Introduction to Solid Mechanics by Shames, Pearson
  8. Mechanics of material by Pytel, Cengage Learning
  9. An Introduction to Mechanics of Solids by Crandall, MCGRAW HILL INDIA
  10. Strength of Materials by Jindal, Pearson Education
  11. Strength of Materials by R. Subramanian, Oxford University Press, New Delhi.
  12. Kazmi, S. M. A., Solid Mechanics TMH, Delhi, India.

For detail syllabus of all other subjects of B.Tech Civil, 2019-20 scheme do visit Civil 4th Sem syllabus for 2019-20 scheme.

Don’t forget to download iStudy for the latest syllabus, results, class timetable and more.

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