Aeroadda

STRENGTH OF MATERIALS

50 hours

About Course

Gain a solid understanding of the fundamental principles that determine the strength and behavior of materials under various loading conditions. This course explores the mechanical properties of materials, stress and strain analysis, and the application of these concepts in engineering design

What Will You Learn?

  • Fundamental concepts of stress and strain
  • Mechanical properties of materials, including elasticity and plasticity
  • Analysis of axial, torsional, and bending loads
  • Shear stress and strain analysis
  • Theories of failure and safety design
  • Application of principles in designing beams, shafts, and other structural elements
  • Use of stress-strain diagrams and material testing methods

Material Includes

  • GATE AE 15 PYQs solution with chapter wise quizzes

Requirements

  • Basic knowledge of physics
  • Understanding of calculus and differential equations
  • Familiarity with statics and dynamics
  • Prior coursework in engineering mechanics (recommended)

Course Content

STRENGTH OF MATERIALS
Strength of Materials, also known as Mechanics of Materials, is a crucial area of study in engineering that focuses on how different materials respond to external forces and loads. This course provides a comprehensive introduction to the mechanical properties of materials, examining concepts such as stress, strain, elasticity, plasticity, and failure theories. The course begins with the basics of material properties and progresses to more advanced topics, including torsion, bending, shear, and axial loads. You will learn to analyze the stress and strain in structural elements and understand how these elements deform and fail under various loading conditions. The course also covers methods for designing materials and structures to withstand these forces, ensuring safety and reliability in engineering applications. Through theoretical lectures, practical problem-solving sessions, and real-world case studies, you will develop the skills necessary to apply the principles of strength of materials in engineering design and analysis.

  • STRESS AND STRAIN
  • STRESS TENSOR
  • MOHR’S CIRCLE
  • PRINCIPAL STRESSES
  • HOOKE’S LAW
  • PLANE STRESS AND STRAIN
  • THEORIES OF FAILURE
  • CASTIGLIANO’S THEOREM
  • TRUSSES AND BEAMS
  • BUCKLING OF COLUMN
  • STREANGTH OF MATERIALS Q&A

Instructors

Aeroadda

Aeroadda

4.4
186 Students
45 Courses