Udemy - Basic Concepts of Mechanics of Materials for Machine Design

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Udemy - Basic Concepts of Mechanics of Materials for Machine Design (Size: 1.1 GB)
  1. Bonus More resources for learning Mechanical engineering and design.html 512 B
  1. Governing Equation - Torsion.mp4 30 MB
  1. Governing Equation - Torsion.srt 8.3 KB
  1. Importance of Strength.mp4 19.7 MB
  1. Importance of Strength.srt 5.6 KB
  1. Intro to bending.mp4 8.3 MB
  1. Intro to bending.srt 2.5 KB
  1. Introduction.mp4 67.8 MB
  1. Introduction.srt 4.6 KB
  1. Normal stress and strain in Multi Axial Loading.mp4 17.9 MB
  1. Normal stress and strain in Multi Axial Loading.srt 7.9 KB
  1. State of Stress.mp4 5.7 MB
  1. State of Stress.srt 2.1 KB
  1. Stress in Oblique plan of Uniaxial loaded member.mp4 24.2 MB
  1. Stress in Oblique plan of Uniaxial loaded member.srt 7.8 KB
  1. Stress vs Strain diagram - Tensile Test.mp4 12.1 MB
  1. Stress vs Strain diagram - Tensile Test.srt 3.5 KB
  1. Uncertainties.mp4 6 MB
  1. Uncertainties.srt 2.9 KB
  1.1 Discount coupons for all my Udemy courses.html 102.4 B
  1.1 MULTI AXIAL LOADING - RESOURCE.pdf 1.2 MB
  1.1 RESOURCE 1 - BENDING.pdf 1.5 MB
  1.1 RESOURCE 5. ONLY TORSION.pdf 1.1 MB
  1.2 Learning Guide for mechanical design engineers.html 102.4 B
  10. Analysis of Axially Loaded member- Deflection.mp4 6.2 MB
  10. Analysis of Axially Loaded member- Deflection.srt 2.7 KB
  10. Definition of Principal Stresses.mp4 10.7 MB
  10. Definition of Principal Stresses.srt 3.5 KB
  10. Introduction to Analysis of Beams.mp4 9.3 MB
  10. Introduction to Analysis of Beams.srt 3.8 KB
  10. Stress concentration in Shafts.mp4 13.8 MB
  10. Stress concentration in Shafts.srt 4.1 KB
  10. What is Normal Stress.mp4 9.5 MB
  10. What is Normal Stress.srt 4 KB
  11. Normal Strain.mp4 3.4 MB
  11. Normal Strain.srt 1.5 KB
  11. Orientation at which Principal stress occur.mp4 3.9 MB
  11. Orientation at which Principal stress occur.srt 1.6 KB
  11. Real life example of Beams.mp4 20 MB
  11. Real life example of Beams.srt 4.6 KB
  11. Stress Concentration Factor- Axial Tensile.mp4 26.6 MB
  11. Stress Concentration Factor- Axial Tensile.srt 7 KB
  12. Maximum Shear Stress.mp4 6.7 MB
  12. Maximum Shear Stress.srt 2.2 KB
  12. Shear Stress - Single Shear.mp4 8.2 MB
  12. Shear Stress - Single Shear.srt 3.2 KB
  12. Types of Loadings on Beams.mp4 6.7 MB
  12. Types of Loadings on Beams.srt 3.3 KB
  13. Importance of Moment of Inertia.mp4 10.2 MB
  13. Importance of Moment of Inertia.srt 3.7 KB
  13. Orientation at which Max Shear stress occur.mp4 6.1 MB
  13. Orientation at which Max Shear stress occur.srt 2.1 KB
  13. Shear Stress - Double Shear.mp4 6.8 MB
  13. Shear Stress - Double Shear.srt 2.8 KB
  14. Analysis of Centrally loaded Simply supported beam - Intro.mp4 6.9 MB
  14. Analysis of Centrally loaded Simply supported beam - Intro.srt 2.1 KB
  14. Examples of Application of Normal and shear.mp4 9.1 MB
  14. Examples of Application of Normal and shear.srt 3 KB
  14. Orientation of Principal stress v Max shear stress.mp4 7 MB
  14. Orientation of Principal stress v Max shear stress.srt 1.8 KB
  15. Finding Reactions.mp4 10.6 MB
  15. Finding Reactions.srt 3.6 KB
  15. What is Bearing Stress.mp4 12.2 MB
  15. What is Bearing Stress.srt 3.2 KB
  16. Shear force and Bending moment diagrams- Part 1.mp4 26.1 MB
  16. Shear force and Bending moment diagrams- Part 1.srt 7.9 KB
  17. Shear force and Bending moment diagrams- Part 2.mp4 12.1 MB
  17. Shear force and Bending moment diagrams- Part 2.srt 3.3 KB
  18. Calculating Moment of Inertia and Stress - Summary.mp4 7.5 MB
  18. Calculating Moment of Inertia and Stress - Summary.srt 4.1 KB
  19. Cantilever Beam with UDL Part 1.mp4 10.8 MB
  19. Cantilever Beam with UDL Part 1.srt 4.1 KB
  2. Analysis for Twist.mp4 8.5 MB
  2. Analysis for Twist.srt 2.3 KB
  2. Dilatation.mp4 8.2 MB
  2. Dilatation.srt 3.3 KB
  2. Generic Procedure for Analysis for Strength.mp4 8.9 MB
  2. Generic Procedure for Analysis for Strength.srt 2.5 KB
  2. Governing equation - Moment.mp4 15.1 MB
  2. Governing equation - Moment.srt 4.7 KB
  2. Plane Stress.mp4 11.9 MB
  2. Plane Stress.srt 4.6 KB
  2. Sources of Uncertainties.mp4 15.8 MB
  2. Sources of Uncertainties.srt 3.8 KB
  2. Stress vs Strain Explanation.mp4 27.5 MB
  2. Stress vs Strain Explanation.srt 6.3 KB
  2. What is Machine Design.mp4 13.7 MB
  2. What is Machine Design.srt 4 KB
  20. Cantilever Beam with UDL Part 2.mp4 25.4 MB
  20. Cantilever Beam with UDL Part 2.srt 8.7 KB
  21. Two plane Bending.mp4 14.4 MB
  21. Two plane Bending.srt 4.8 KB
  22. Stress Concentration in Beams.mp4 7.9 MB
  22. Stress Concentration in Beams.srt 2.7 KB
  3. Bending geometry- deformation and strain Part 1.mp4 20.4 MB
  3. Bending geometry- deformation and strain Part 1.srt 5.3 KB
  3. Bulk Modulus.mp4 7.8 MB
  3. Bulk Modulus.srt 3.1 KB
  3. Elastic vs Plastic Region.mp4 7.6 MB
  3. Elastic vs Plastic Region.srt 3.4 KB
  3. Factor Of Safety.mp4 12.8 MB
  3. Factor Of Safety.srt 4 KB
  3. Finding Equation for Shear Strain.mp4 16.2 MB
  3. Finding Equation for Shear Strain.srt 4.2 KB
  3. Free body Diagram.mp4 6.4 MB
  3. Free body Diagram.srt 2.2 KB
  3. Generic Engineering Design Process.mp4 17.3 MB
  3. Generic Engineering Design Process.srt 6.1 KB
  3. Thin Walled Pressure vessel.mp4 14 MB
  3. Thin Walled Pressure vessel.srt 3.8 KB
  4. Bending geometry- deformation ,strain and stress Part 2.mp4 11.5 MB
  4. Bending geometry- deformation ,strain and stress Part 2.srt 3.9 KB
  4. Finding Equation for Shear Stress.mp4 7.8 MB
  4. Finding Equation for Shear Stress.srt 3.1 KB
  4. Force and Moment Equilibrium.mp4 18.9 MB
  4. Force and Moment Equilibrium.srt 6.9 KB
  4. Hookes laws and Young Modulus.mp4 10.2 MB
  4. Hookes laws and Young Modulus.srt 3.2 KB
  4. Selection of Appropriate FOS.mp4 26 MB
  4. Selection of Appropriate FOS.srt 6.5 KB
  4. Shear Stress and Strain in Multi axial Loading.mp4 14.3 MB
  4. Shear Stress and Strain in Multi axial Loading.srt 5.2 KB
  4. Stress Transformations - Intro.mp4 8.4 MB
  4. Stress Transformations - Intro.srt 2.7 KB
  4. Two Domains of Machine Design.mp4 7.1 MB
  4. Two Domains of Machine Design.srt 2.5 KB
  5. Ductility and Brittle materials.mp4 11.7 MB
  5. Ductility and Brittle materials.srt 3.4 KB
  5. Elastic Torsion Formulae.mp4 7.5 MB
  5. Elastic Torsion Formulae.srt 2.5 KB
  5. Free Body diagram Examples.mp4 15.7 MB
  5. Free Body diagram Examples.srt 4 KB
  5. Relation between Centroid of section and Neutral axis.mp4 10.5 MB
  5. Relation between Centroid of section and Neutral axis.srt 3.5 KB
  5. Stress Transformation - Derivation.mp4 43.1 MB
  5. Stress Transformation - Derivation.srt 11.5 KB
  5. Three Paradigms of Machine or Mechanical Design.mp4 7.3 MB
  5. Three Paradigms of Machine or Mechanical Design.srt 2.6 KB
  6. Brittle materials Stress- strain plot.mp4 4.2 MB
  6. Brittle materials Stress- strain plot.srt 1.9 KB
  6. Degrees of Freedom and Joints.mp4 18.5 MB
  6. Degrees of Freedom and Joints.srt 7.8 KB
  6. Polar moment of Inertia.mp4 5.1 MB
  6. Polar moment of Inertia.srt 2.2 KB
  6. Relation between Moment and stress.mp4 15.4 MB
  6. Relation between Moment and stress.srt 5.3 KB
  6. Simplifying Normal stress and Shear stress equations.mp4 12.1 MB
  6. Simplifying Normal stress and Shear stress equations.srt 4.2 KB
  7. Angle of Twist.mp4 4.5 MB
  7. Angle of Twist.srt 1.4 KB
  7. Area Moment of Inertia.mp4 14 MB
  7. Area Moment of Inertia.srt 4.2 KB
  7. Finding y component of stress.mp4 10.2 MB
  7. Finding y component of stress.srt 3.9 KB
  7. Shear Stress in Shafts.mp4 4.7 MB
  7. Shear Stress in Shafts.srt 2.3 KB
  7. Summary of FBD and Method of statics.mp4 5.4 MB
  7. Summary of FBD and Method of statics.srt 2.5 KB
  8. Application - examples.mp4 11.2 MB
  8. Application - examples.srt 3.7 KB
  8. Simplified Form.mp4 14.9 MB
  8. Simplified Form.srt 5.7 KB
  8. The Flexural Formula and Sign convention.mp4 5.9 MB
  8. The Flexural Formula and Sign convention.srt 1.6 KB
  8. Torque - Twist diagram.mp4 14.6 MB
  8. Torque - Twist diagram.srt 4.1 KB
  8. Two Primary type of Loading.mp4 11.7 MB
  8. Two Primary type of Loading.srt 2.8 KB
  9. Curvature Relation.mp4 7.9 MB
  9. Curvature Relation.srt 2.5 KB
  9. Example of Normal and Shear Loading.mp4 9.8 MB
  9. Example of Normal and Shear Loading.srt 3.4 KB
  9. Mohrs Circle of Stress.mp4 11.6 MB
  9. Mohrs Circle of Stress.srt 4.3 KB
  9. Poissons Ratio and relation between Moduli.mp4 6.2 MB
  9. Poissons Ratio and relation between Moduli.srt 3.5 KB
  9. Solid vs Hollow shafts.mp4 12.3 MB
  9. Solid vs Hollow shafts.srt 3.8 KB
  Bonus Resources.txt 409.6 B
  Get Bonus Downloads Here.url 204.8 B
  ▲ 180 total files

Description


Basic Concepts of Mechanics of Materials for Machine Design
https://FreeCourseWeb.com

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + srt | Duration: 87 lectures (4h 31m) | Size: 1.11 GB

Learn the Foundation concepts of Strength of materials with Math derivations and theory for mechanical engineering

What you'll learn
What is machine design , its nature and design process
Different types of stress, loading and their analysis
Tensile Test - Stress - strain diagram and its inferences
What is Stress concentration and its different forms
Source of Uncertainties in Design and Factor of Safety
Deriving governing equations of Bending and Torsion
What is Stress Transformation and derivation of Principal stress
Analysis of Beams and their types , how to develop shear force and Bending moment diagrams
Multi axial loading, Generalized Hookes law and Poisson Ratio

Requirements
A basic understanding of engineering mechanics- statics
Math basics of trigonometry , calculus and algebra

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