Finite Element Analysis in Materials Engineering Material Science 8th Sem Syllabus for BE 2017 Regulation Anna Univ (Professional Elective IV) detail syllabus for Materials Science And Engineering (Material Science), 2017 regulation is collected from the Anna Univ official website and presented for students of Anna University. The details of the course are: course code (ML8010), Category (PE), Contact Periods/week (3), Teaching hours/week (3), Practical Hours/week (0). The total course credits are given in combined syllabus.
For all other material science 8th sem syllabus for be 2017 regulation anna univ you can visit Material Science 8th Sem syllabus for BE 2017 regulation Anna Univ Subjects. For all other Professional Elective IV subjects do refer to Professional Elective IV. The detail syllabus for finite element analysis in materials engineering is as follows.
Course Objective:
- To introduce the concepts of Mathematical Modeling of Engineering Problems.
- To appreciate the use of FEM to a range of Engineering Problems.
Unit I
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Unit II
One-Dimensional Problems
One Dimensional Second Order Equations – Discretization – Element types- Linear and Higher order Elements – Derivation of Shape functions and Stiffness matrices and force vectors. Assembly of Matrices solution of problems from solid mechanics and heat transfer. Fourth Order Beam Equation – Transverse deflections and Natural frequencies of beams.
Unit III
Two Dimensional Scalar Variable Problems
Second Order 2D Equations involving Scalar Variable Functions – Variational formulation – Finite Element formulation – Triangular elements – Shape functions and element matrices and vectors. Application to Field Problems – Thermal problems – Torsion of Non circular shafts – Quadrilateral elements – Higher Order Elements.
Unit IV
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Unit V
Isoparametric Formulation and Miscellaneous Topics
Natural co-ordinate systems – Isoparametric elements – Shape functions for isoparametric elements – One and two dimensions – Serendipity elements – Numerical integration and application to plane stress problems – Matrix solution techniques – Solutions Techniques to Dynamic problems – Introduction to Analysis Software.
Course Outcome:
- Given a Structural engineering problem, ability to conduct structural analysis using FEA
- Use of mathematical techniques to solve Engineering problem using FEA.
Text Books:
- J. N. Reddy, Finite Element Method Tata McGraw Hill, 2003.
- Seshu. P. Textbook of Finite Element Analysis Prentice Hall of India, 2003.
References:
- Chandrupatla and Belegundu, Introduction to Finite Elements in Engineering PHI / Pearson Education, 2003.
- Cook R.D., Malkus. D.S. Plesha, ME., Concepts and Applications of Finite Element Analysis, John – Wiley Sons 2003.
- Logan. D.L. A first course in Finite Element Method, Thomson Asia Pvt. Ltd., 2002.
- S.S. Rao, The Finite Element Method in Engineering Butter worth Heinemann, 2001.
For detail syllabus of all other subjects of BE Material Science, 2017 regulation do visit Material Science 8th Sem syllabus for 2017 Regulation.
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