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Strength of Materials Part I
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Strength of Materials Part I
Last updated 12/2020
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
Language: English | Size: 11.49 GB | Duration: 9h 58m

Learn basic concepts of Stresses & Strains and SFD & BMD



What you'll learn
Basics of Strength of Materials
History of Unit Systems
Shear Stresses and Strains
Shear Force and Bending Moment
SFD, BMD and AFD

Requirements
Solid Mechanics
Basics of Mathematics

Description
This course is the first part of the lecture series of Strength of Materials subject. It takes you through various topics like Stresses & Strains, Shear Force Diagram(SFD) & Bending Moment Diagram(BMD). Various numerical are solved to explain various concepts and their applications. Basic Mathematics and Solid Mechanics are the requirement for understanding of this subject.We start with introduction to history of Unit Systems wherein we study about Foot-Pound-Second(F.P.S), Meter-Kilogram-Second(M.K.S) and Centimeter-Gram-Second(C.G.S) systems. Their interconversions is also explained along with the importance of unit system in engineering.Further, we move to the concept of Stresses and Strains where topics like types of stresses and strains, derivation for change in length, stress-strain for ductile and brittle materials, elongation of tapered bar, elongation of bar due to self-weight, stress and strain in composite and compound bars, temperature stresses and strains, concept of strain, Poisson's Ratio, uniaxial-biaxial-triaxial loading, elastic constants- and numericals on all these topics.Lastly we study about Shear Force Diagram(SFD) and Bending Moment Diagram(BMD). Topics like types of supports, beams, reactions, Shear Force and Bending Moment sign conventions and numericals are discussed in it.Test is given at the end of course for practice so that expertise can be gained in dealing with day-to-day problems.

Overview

Section 1: Introduction

Lecture 1 History of Unit Systems

Section 2: Simple Stresses & Strains

Lecture 2 Types of stresses and strains

Lecture 3 Change in length of a simple bar subjected to tensile/compressive loading

Lecture 4 Stress-strain diagram for ductile and brittle materials

Lecture 5 Numericals on Stress-strain diagram formulas

Lecture 6 Stress and strain in bars with varying cross-section

Lecture 7 Numerical on Stress and strain in bars with varying cross-section

Lecture 8 Numerical on Stress and strain in bars with varying cross-section

Lecture 9 Numerical on Stress and strain in bars with varying cross-section

Lecture 10 Numerical on Stress and strain in bars with varying cross-section

Lecture 11 Elongation of tapered bar with circular cross-section

Lecture 12 Elongation of tapered bar with rectangular cross-section

Lecture 13 Elongation of bar due to self-weight

Lecture 14 Stress-strain in composite bars rigidly connected in parallel

Lecture 15 Temperature stress-strain in simple and composite bars

Lecture 16 Numerical on Temperature stress-strain in simple and composite bars

Lecture 17 Concept of Strain and Poisson's Ratio

Lecture 18 Uniaxial & Biaxial Loading-Derivation

Lecture 19 Triaxial Loading-Derivation

Lecture 20 Triaxial Loading-Numericals

Lecture 21 Bulk Modulus and Elastic Constants Relationship

Section 3: S.F.D and B.M.D

Lecture 22 Types of Loads, Supports and Beams

Lecture 23 Shear Force and Bending Moment Sign Conventions

Lecture 24 Numerical-I on SFD and BMD

Lecture 25 Numerical-II on SFD and BMD

Lecture 26 Numerical-III on SFD and BMD

Lecture 27 Numerical-IV on SFD and BMD

Lecture 28 Numerical-V on SFD and BMD

Lecture 29 Numerical-VI on SFD and BMD

Lecture 30 Numerical-VII on SFD and BMD

Lecture 31 Numerical-VIII on SFD and BMD

Lecture 32 Numerical-IX on SFD and BMD

Lecture 33 Numerical-X on SFD and BMD

Lecture 34 Numerical-XI on SFD and BMD

Lecture 35 Numerical-XII on SFD and BMD

Lecture 36 Numerical-XIII on SFD and BMD

Section 4: Assignment

Diploma in Mechanical/Civil/Automobile/Production Engineering Students,Competitive Exam students like GATE, IES etc.,Degree students of Mechanical/Automobile/Civil/Production Engineering Students


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