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# Course List

## Stress Analysis

• Course Code :
MAN 232
• Level :
• Course Hours :
3.00 Hours
• Department :
Department of Mechanical Engineering

## Area of Study :

1. Develop engineering ability and analyze a given mechanical elements under different stresses. 2. Discuss problem in a simple and logical manner and to apply its solution a few fundamental and well-understood principles of stress analysis.

## Stress Analysis

Equilibrium, Continuity, Material mechanical behavior, Normal force, Shearing force, Bending and twisting moment diagrams, Stresses in simply loaded elastic bars: axial loading, bending and torsion, deformation, stiffness, strain Energy, Stresses in elastic and elasto-plastic bars, Residual stresses. Combined loading, Eccentric normal load, Oblique bending: combined bending and torsion, Two-dimensional stresses, Principal stresses, Maximum shear stress, Allowable stresses, Mohr's circle representation, Application to some simple frames, Thinvessels, Springs, Load and displacement measurement.

## a. Knowledge and Understanding:

 1- Define the characteristics of stress analysis related to mechanical production engineering 2- Identify the principles of design including elements stress analysis

## b. Intellectual Skills:

 1- Think in a creative and innovative way in stress and strain problem solving and design 2- Classify numerical data and apply analytical methods for engineering design purposes 3- Analyze and interpret data, and design experiments to obtain primary data

## c. Professional and Practical Skills:

 1- Analyze knowledge of science, information technology, design, and engineering practice to solve stress problems 2- Explain a component or system, and carry out stress analysis problems.

## d. General and Transferable Skills:

 1- Use digital libraries and/or Learning systems 2- Introduce ideas and solutions for many practical and engineering problems efficiently in predetermined time plan.

## Course topics and contents:

Topic No. of hours Lecture Tutorial/Practical
bending moment diagram, Normal stress 12 6 6
Shear stress & Torsional Stress 10 6 4
Combined stress 8 4 4
Principal stresses, , Allowable stresses 4 2 2
Maximum shear stress 4 2 2
Reactions & Normal force diagram, Shear force diagram 8 4 4
Mohr's circle representation 4 2 2
Project follow -up. 4 2 2
Midterm Exams ,Quizzes 6 2 4

## Teaching And Learning Methodologies:

Teaching and learning methods
Interactive Lecturing
Problem solving
Discussion

## Course Assessment :

Methods of assessment Relative weight % Week No. Assess What
Assignments, Participation, & Quizzes 20.00 Reports follow up during tut. /lab work, & written exam
Final Exam 40.00 14 Written Exam
Mid-term Exams 30.00 Written Exam
Project. 10.00 12 Practical

## Books:

Book Author Publisher
Mechanics of Materials Ferdinand P.Beer McGraw Hill

## Course notes :

Lecture notes on the course moodle page, FUE website.