ANNA UNIVERSITY | SYLLABUS | UNIVERSITY QUESTION PAPER | NOTES

ME6020 Vibration and Noise Control - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan ME6020 Vibration and Noise Control - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

ME6020                                   VIBRATION AND NOISE CONTROL                                   L  T  P  C

3 0  0 3

OBJECTIVES:

  • The student will be able to understand the sources of vibration and noise in automobiles and make design modifications to reduce the vibration and noise and improve the life of the components

 

UNIT I             BASICS OF VIBRATION                                                                                               9

Introduction, classification of vibration: free and forced vibration, undamped and damped vibration, linear and non linear vibration, response of damped and undamped systems under harmonic force, analysis of single degree and two degree of freedom systems, torsional vibration, determination of natural frequencies.

 

UNIT II            BASICS OF NOISE                                                                                                         9

Introduction, amplitude, frequency, wavelength and sound pressure level, addition, subtraction and averaging decibel levels, noise dose level, legislation, measurement and analysis of noise, measurement environment, equipment, frequency analysis, tracking analysis, sound quality analysis.

 

UNIT III           AUTOMOTIVE NOISE SOURCES                                                                                 9

Noise Characteristics of engines, engine overall noise levels, assessment of combustion noise, assessment of mechanical noise, engine radiated noise, intake and exhaust noise, engine necessary contributed noise, transmission noise, aerodynamic noise, tire noise, brake noise.

 

UNIT IV          CONTROL TECHNIQUES                                                                                             9

Vibration isolation, tuned absorbers, un-tuned viscous  dampers,  damping  treatments, application dynamic forces generated by IC engines, engine isolation, crank shaft damping, modal analysis of the mass elastic model shock absorbers.

 

UNIT V           SOURCE OF NOISE AND CONTROL                                                                          9

Methods  for  control  of  engine  noise,  combustion  noise,  mechanical  noise,  predictive  analysis, palliative treatments and enclosures, automotive noise control principles, sound in enclosures, sound energy absorption, sound transmission through barriers

TOTAL: 45 PERIODS

 

OUTCOMES:

  • Understanding causes, source and types of vibrations in machineries
  • Gaining knowledge in sources and measurement standard of noise
  • Ability to design and develop vibrations and noise control systems.

 

TEXT BOOKS:

  1. Singiresu S.Rao, “Mechanical Vibrations”, 5th Edition, Pearson Education, 2010

 

REFERENCES:

  1. Benson H. Tongue, “Principles of Vibrations”, 2nd Edition, Oxford University, 2007
  2. David Bies and Colin Hansen, “Engineering Noise Control – Theory and Practice”,4th Edition, E and FN Spon, Taylore & Francise e-Library, 2009
  3. William  T.  Thomson,  Marie  Dillon  Dahleh,  Chandramouli  Padmanabhan,  “Theory  of

Vibration with Application”, 5th Edition Pearson Education, 2011

  1. Grover. G.T., “Mechanical Vibrations”, Nem Chand and Bros., 1996
  2. Bernard Challen and Rodica Baranescu - “Diesel Engine Reference Book”, Second Edition, SAE International, 1999.
  3. Julian Happian-Smith - “An Introduction to Modern Vehicle Design”- Butterworth-Heinemann,

2004

  1. Rao,  J.S  and  Gupta,  K.,  “Introductory  course  on  Theory  and  Practice  of  Mechanical

Vibration”, 2nd Edition, New Age International Publications, 2010

  1. Shabana. A.A., “Theory of vibrations – An introduction”, 2nd Edition, Springer, 2010
  2. Balakumar Balachandran and Edward B. Magrab, “Fundamentals of Vibrations”, 1st Editon, Cengage Learning, 2009
  3. John Fenton, “Handbook of Automotive body Construction and Design Analysis – Professional

Engineering Publishing, 1998

 

ME6019 Non Destructive Testing and Materials - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan ME6019 Non Destructive Testing and Materials - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

 

 

ME6019                        NON DESTRUCTIVE TESTING AND MATERIALS                           L  T  P  C

3   0 0  3

OBJECTIVES:

  • To study and understand the various Non Destructive Evaluation and Testing methods, theory and their industrial applications.

 

UNIT I             OVERVIEW OF NDT                                                                                                       7

NDT Versus Mechanical testing, Overview of the Non Destructive Testing Methods for the detection of manufacturing defects as well as material characterisation. Relative merits and limitations, Various physical characteristics of materials and their applications in NDT., Visual inspection – Unaided and aided.

 

UNIT II            SURFACE NDE METHODS                                                                                           8

Liquid  Penetrant  Testing  -  Principles,  types  and  properties  of  liquid  penetrants,  developers, advantages and limitations of various methods, Testing Procedure, Interpretation of results. Magnetic Particle Testing- Theory of magnetism, inspection materials Magnetisation methods, Interpretation

and evaluation of test indications, Principles and methods of demagnetization, Residual magnetism.

 

UNIT III           THERMOGRAPHY AND EDDY CURRENT TESTING (ET)                                         10

Thermography- Principles, Contact and non contact inspection methods, Techniques for applying liquid crystals, Advantages and limitation - infrared radiation and infrared detectors, Instrumentations and methods, applications.Eddy Current Testing-Generation of eddy currents, Properties of eddy currents,   Eddy   current   sensing   elements,   Probes,   Instrumentation,   Types   of   arrangement, Applications, advantages, Limitations, Interpretation/Evaluation.

 

UNIT IV          ULTRASONIC TESTING (UT) AND ACOUSTIC EMISSION (AE)                               10

Ultrasonic Testing-Principle, Transducers, transmission and pulse-echo method, straight beam and angle beam, instrumentation, data representation, A/Scan, B-scan, C-scan. Phased Array Ultrasound, Time of Flight Diffraction. Acoustic Emission Technique –Principle, AE parameters, Applications

 

UNIT V           RADIOGRAPHY (RT)                                                                                                   10

Principle, interaction of X-Ray with matter, imaging, film and film less techniques, types and use of filters  and  screens,  geometric factors,  Inverse square,  law,  characteristics  of  films  -  graininess, density, speed, contrast, characteristic curves, Penetrameters, Exposure charts, Radiographic equivalence. Fluoroscopy- Xero-Radiography, Computed Radiography, Computed Tomography

TOTAL : 45 PERIODS

OUTCOMES:

  • Upon completion of this course, the students can able to use the various Non Destructive Testing and Testing methods understand for defects and characterization of industrial components

 

TEXT BOOKS:

  1. Baldev  Raj,  T.Jayakumar,  M.Thavasimuthu  “Practical  Non-Destructive  Testing”,  Narosa

Publishing House, 2009.

 

  1. Ravi   Prakash,   “Non-Destructive   Testing   Techniques”,   1st   revised   edition,   New   Age

International Publishers, 2010

 

REFERENCES:

  1. ASM Metals Handbook,”Non-Destructive Evaluation and Quality Control”, American Society of

Metals, Metals Park, Ohio, USA, 200, Volume-17.

  1. Paul E Mix, “Introduction to Non-destructive testing: a training guide”, Wiley, 2nd  Edition New

Jersey, 2005

  1. Charles, J. Hellier,“ Handbook of Nondestructive evaluation”, McGraw Hill, New York 2001.
  2. ASNT, American Society for Non Destructive Testing, Columbus, Ohio, NDT Handbook,Vol. 1, Leak Testing, Vol. 2, Liquid Penetrant Testing, Vol. 3, Infrared and Thermal Testing Vol. 4, Radiographic Testing, Vol. 5, Electromagnetic Testing, Vol. 6, Acoustic Emission Testing, Vol.

7, Ultrasonic Testing

 

 

ME6018 Additive Manufacturing - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan ME6018 Additive Manufacturing - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

 

 

 

ME6018                                           ADDITIVE MANUFACTURING                                        L  T  P  C

3   0 0  3

OBJECTIVES:

  • To know  the  principle  methods,  areas  of  usage,  possibilities  and  limitations  as  well  as environmental effects of the Additive Manufacturing technologies
  • To be familiar with the characteristics of the different materials those are used in Additive

Manufacturing.

 

UNIT I             INTRODUCTION                                                                                                           10

Overview – History - Need-Classification -Additive Manufacturing Technology in product development- Materials for Additive Manufacturing Technology – Tooling - Applications.

 

UNIT II            CAD & REVERSE ENGINEERING                                                                               10

Basic Concept – Digitization techniques – Model Reconstruction – Data Processing for Additive Manufacturing Technology: CAD model preparation – Part Orientation and support generation – Model Slicing –Tool path Generation – Softwares for Additive Manufacturing Technology: MIMICS, MAGICS.

 

UNIT III           LIQUID BASED AND SOLID BASED ADDITIVE MANUFACTURING SYSTEMS     10

Classification – Liquid based system – Stereolithography Apparatus (SLA)- Principle, process, advantages and applications - Solid based system –Fused Deposition Modeling - Principle, process, advantages and applications, Laminated Object Manufacturing

 

UNIT IV          POWDER BASED ADDITIVE MANUFACTURING SYSTEMS                                    10

Selective Laser Sintering – Principles of SLS process - Process, advantages and applications, Three Dimensional  Printing  -  Principle,  process,  advantages  and  applications-  Laser  Engineered  Net Shaping (LENS), Electron Beam Melting.

 

UNIT V           MEDICAL AND BIO-ADDITIVE MANUFACTURING                                                     5

Customized implants and prosthesis: Design and production. Bio-Additive Manufacturing- Computer

Aided Tissue Engineering (CATE) – Case studies

 

 

OUTCOMES:

 

TOTAL : 45 PERIODS

 

  • Upon completion of this course, the students can able to compare different method and discuss the effects of the Additive Manufacturing technologies and analyse the characteristics of the different materials in Additive Manufacturing.

 

TEXT BOOKS:

  1. Chua C.K., Leong K.F., and Lim C.S., “Rapid prototyping: Principles and applications”, Third

Edition, World Scientific Publishers, 2010.

  1. Gebhardt A., “Rapid prototyping”, Hanser Gardener Publications, 2003.

 

REFERENCES:

  1. Liou L.W. and Liou F.W., “Rapid Prototyping and Engineering applications : A tool box for prototype development”, CRC Press, 2007.

 

  1. Kamrani A.K. and Nasr E.A., “Rapid Prototyping: Theory and practice”, Springer, 2006.
  2. Hilton P.D. and Jacobs P.F., “Rapid Tooling: Technologies and Industrial Applications”, CRC

press, 2000.

 

ME6017 Design of Heat Exchangers - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan ME6017 Design of Heat Exchangers - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

 

 

ME6017                                    DESIGN OF HEAT EXCHANGERS                                       L  T  P  C

3   0 0  3

OBJECTIVES:

  • To learn the thermal and stress analysis on various parts of the heat exchangers
  • To analyze the sizing and rating of the heat exchangers for various applications

 

UNIT I             INTRODUCTION                                                                                                            9

Types of heat exchangers, shell and tube heat exchangers – regenerators and recuperators - Temperature distribution and its implications - Parts description, Classification as per Tubular Exchanger Manufacturers Association (TEMA)

 

UNIT II            PROCESS DESIGN OF HEAT EXCHANGERS                                                             9

Heat transfer correlations, Overall heat transfer coefficient, analysis of heat exchangers – LMTD and effectiveness method. Sizing of finned tube heat exchangers, U tube heat exchangers, Design of shell and tube heat exchangers, fouling factors, pressure drop calculations.

 

UNIT III            STRESS ANALYSIS                                                                                                      9

Stress in tubes – header sheets and pressure vessels – thermal stresses, shear stresses - types of failures, buckling of tubes, flow induced vibration.

 

UNIT IV          COMPACT AND PLATE HEAT EXCHANGER                                                              9

Types-  Merits  and  Demerits-  Design  of  compact  heat  exchangers,  plate  heat  exchangers, performance influencing parameters, limitations.

 

UNIT V           CONDENSERS AND COOLING TOWERS                                                                   9

Design of surface and evaporative condensers – cooling tower – performance characteristics.

TOTAL: 45 PERIODS

OUTCOMES:

  • Upon completion of this course, the students can able to apply the mathematical knowledge for thermal and stress analysis on various parts of the heat exchangers components.

 

TEXT BOOKS:

  1. SadikKakac and Hongtan Liu, "Heat Exchangers Selection", Rating and Thermal Design, CRC Press, 2002.
  2. Shah,R. K., Dušan P. Sekulic, "Fundamentals of heat exchanger design", John Wiley & Sons,

2003.

 

REFERENCES:

  1. Robert W.  Serth,  "Process  heat  transfer  principles  and  applications",  Academic  press, Elesevier, 2007.
  2. Sarit Kumar Das, "Process heat transfer", Alpha Science International, 2005
  3. John E.  Hesselgreaves,  "Compact  heat  exchangers:  selection,  design,  and  operation", Elsevier science Ltd, 2001.
  4. Kuppan. T., "Heat exchanger design hand book", New York : Marcel Dekker, 2000.

 

  1. Eric M. Smith, "Advances in thermal design of heat exchangers: a numerical approach: direct- sizing, step-wise rating, and transients", John Wiley & Sons, 1999.

 

ME6016 Advanced I.C. Engines - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan ME6016 Advanced I.C. Engines - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

 

ME6016                                              ADVANCED I.C ENGINES                                           L  T  P  C

3 0  0   3

OBJECTIVES:

  • To understand the underlying principles of operation of different IC Engines and components.
  • To provide knowledge on pollutant formation, control, alternate fuel etc.

 

UNIT I             SPARK IGNITION ENGINES                                                                                          9

Mixture requirements – Fuel injection systems – Monopoint, Multipoint & Direct injection - Stages of combustion – Normal and Abnormal combustion – Knock - Factors affecting knock – Combustion chambers.

 

UNIT II            COMPRESSION IGNITION ENGINES                                                                           9

Diesel Fuel Injection Systems - Stages of combustion – Knocking – Factors affecting knock – Direct and Indirect injection systems – Combustion chambers – Fuel Spray behaviour – Spray structure and spray penetration – Air motion - Introduction to Turbocharging.

 

UNIT III           POLLUTANT FORMATION AND CONTROL                                                                9

Pollutant – Sources – Formation of Carbon Monoxide, Unburnt hydrocarbon, Oxides of Nitrogen, Smoke and Particulate matter – Methods of controlling Emissions – Catalytic converters, Selective Catalytic Reduction and Particulate Traps – Methods of measurement – Emission norms and Driving cycles.

 

UNIT IV          ALTERNATIVE FUELS                                                                                                   9

Alcohol, Hydrogen, Compressed Natural Gas, Liquefied Petroleum Gas and Bio Diesel - Properties, Suitability, Merits and Demerits - Engine Modifications.

 

UNIT V           RECENT TRENDS                                                                                                          9

Air assisted Combustion, Homogeneous charge compression ignition engines – Variable Geometry turbochargers – Common Rail Direct Injection Systems - Hybrid Electric Vehicles – NOx Adsorbers - Onboard Diagnostics.

 

 

OUTCOME:

 

TOTAL : 45 PERIODS

 

  • Upon completion of this course, the students can able to compare the operations of different

IC Engine and components and can evaluate the pollutant formation, control, alternate fuel

 

TEXT BOOKS:

  1. Ramalingam. K.K., "Internal Combustion Engine Fundamentals", Scitech Publications, 2002.
  2. Ganesan, "Internal Combustion Engines", II Edition, TMH, 2002.

 

 

 

REFERENCES:

 

  1. Mathur. R.B. and R.P. Sharma, "Internal Combustion Engines"., Dhanpat Rai & Sons 2007.
  2. Duffy Smith, "Auto Fuel Systems", The Good Heart Willcox Company, Inc., 1987.
  3. Eric Chowenitz, "Automobile Electronics", SAE Publications, 1995

 

GE6084 Human Rights - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan GE6084 Human Rights - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

 

GE6084                                             HUMAN RIGHTS                                                         L  T  P  C

3 0   0  3

OBJECTIVES :

  • To sensitize the Engineering students to various aspects of Human Rights.

 

UNIT I                                                                                                                                                    9

Human Rights – Meaning, origin and Development. Notion and classification of Rights – Natural, Moral and Legal Rights.  Civil and Political Rights, Economic, Social and Cultural Rights; collective / Solidarity Rights.

 

UNIT II                                                                                                                                                   9

Evolution of the concept of Human Rights Magana carta – Geneva convention of 1864.   Universal

Declaration of Human Rights, 1948. Theories of Human Rights.

 

UNIT III                                                                                                                                                   9

Theories and perspectives of UN Laws – UN Agencies to monitor and compliance.

 

UNIT IV                                                                                                                                                   9

Human Rights in India – Constitutional Provisions / Guarantees.

 

UNIT V                                                                                                                                                    9

Human  Rights  of  Disadvantaged  People  –  Women,  Children,  Displaced  persons  and  Disabled persons, including Aged and HIV Infected People.  Implementation of Human Rights – National and State Human Rights Commission – Judiciary – Role of NGO’s, Media, Educational Institutions, Social Movements.

TOTAL : 45 PERIODS

 

OUTCOME :

  • Engineering students will acquire the basic knowledge of human rights.

 

REFERENCES:

  1. Kapoor S.K., “Human Rights under International law and Indian Laws”, Central Law Agency, Allahabad, 2014.
  2. Chandra U., “Human Rights”, Allahabad Law Agency, Allahabad, 2014.
  3. Upendra Baxi, The Future of Human Rights, Oxford University Press, New Delhi.

 

ME6015 Operations Research - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan ME6015 Operations Research - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

 

 

 

ME6015                                           OPERATIONS RESEARCH                                             L  T  P  C

3   0 0  3

OBJECTIVES:

  • To provide knowledge and training in using optimization techniques under limited resources for the engineering and business problems.

 

UNIT I             LINEAR MODELS                                                                                                         15

The phase of an operation research study – Linear programming – Graphical method– Simplex algorithm – Duality formulation – Sensitivity analysis.

 

UNIT II            TRANSPORTATION MODELS AND NETWORK MODELS                                         8

Transportation Assignment Models –Traveling Salesman problem-Networks models – Shortest route

– Minimal spanning tree – Maximum flow models –Project network – CPM and PERT networks – Critical path scheduling – Sequencing models.

 

UNIT III           INVENTORY MODELS                                                                                                   6

Inventory  models  –  Economic  order  quantity  models  –  Quantity  discount  models  –  Stochastic inventory models – Multi product models – Inventory control models in practice.

 

UNIT IV           QUEUEING MODELS                                                                                                    6

Queueing models - Queueing systems and structures – Notation parameter – Single server and multi server models – Poisson input – Exponential service – Constant rate service – Infinite population – Simulation.

 

UNIT V           DECISION MODELS                                                                                                     10

Decision models – Game theory – Two person zero sum games – Graphical solution- Algebraic solution– Linear Programming solution – Replacement models – Models based on service life – Economic life– Single / Multi variable search technique – Dynamic Programming – Simple Problem.

TOTAL: 45 PERIODS

OUTCOMES:

  • Upon completion of this course, the students can able to use the optimization techniques for use engineering and Business problems

 

TEXT BOOK:

  1. Taha H.A., “Operations Research”, Sixth Edition, Prentice Hall of India, 2003.

 

REFERENCES:

  1. Shennoy G.V. and Srivastava U.K., “Operation Research for Management”, Wiley Eastern,

1994.

  1. Bazara M.J., Jarvis and Sherali H., “Linear Programming and Network Flows”, John Wiley,

1990.

  1. Philip D.T. and Ravindran A., “Operations Research”, John Wiley, 1992.
  2. Hillier and Libeberman, “Operations Research”, Holden Day, 1986
  3. Budnick F.S., “Principles of Operations Research for Management”, Richard D Irwin, 1990.
  4. Tulsian and Pasdey V., “Quantitative Techniques”, Pearson Asia, 2002.

 

 

 

ME6014 Computational Fluid Dynamics - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan ME6014 Computational Fluid Dynamics - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

 

 

 

 

 

 

ME6014                                 COMPUTATIONAL FLUID DYNAMICS                                    L T  P  C

3 0  0 3

OBJECTIVES:

  • To introduce Governing Equations of viscous fluid flows
  • To introduce numerical modeling and its role in the field of fluid flow and heat transfer
  • To enable the students to understand the various discretization methods, solution procedures and turbulence modeling.
  • To create confidence to solve complex problems in the field of fluid flow and heat transfer by using high speed computers.

 

UNIT I             GOVERNING EQUATIONS AND BOUNDARY CONDITIONS                                     8

Basics of computational fluid dynamics – Governing equations of fluid dynamics – Continuity, Momentum and Energy equations – Chemical species transport – Physical boundary conditions – Time-averaged equations for Turbulent Flow – Turbulent–Kinetic Energy Equations – Mathematical behaviour of PDEs on CFD - Elliptic, Parabolic and Hyperbolic equations.

 

UNIT II            FINITE DIFFERENCE AND FINITE VOLUME METHODS FOR DIFFUSION               9

Derivation of finite difference equations – Simple Methods – General Methods for first and second order  accuracy  –  Finite  volume  formulation for  steady  state  One,  Two  and  Three  -dimensional diffusion problems –Parabolic equations – Explicit and Implicit schemes – Example problems on elliptic and parabolic equations – Use of Finite Difference and Finite Volume methods.

 

UNIT III            FINITE VOLUME METHOD FOR CONVECTION DIFFUSION                                 10

Steady one-dimensional convection and diffusion – Central, upwind differencing schemes properties

of discretization schemes – Conservativeness, Boundedness, Transportiveness, Hybrid, Power-law, QUICK Schemes.

 

UNIT IV          FLOW FIELD ANALYSIS                                                                                              9

Finite volume methods -Representation of the pressure gradient term and continuity equation  – Staggered grid – Momentum equations – Pressure and Velocity corrections – Pressure Correction equation, SIMPLE algorithm and its variants – PISO Algorithms.

 

UNIT V           TURBULENCE MODELS AND MESH GENERATION                                                  9

Turbulence models, mixing length model, Two equation (k-?) models – High and low Reynolds number models – Structured Grid generation – Unstructured Grid generation – Mesh refinement – Adaptive mesh – Software tools.

TOTAL: 45 PERIODS

 

OUTCOMES:

Upon completion of this course, the students can able

  • To create numerical modeling and its role in the field of fluid flow and heat transfer
  • To use the various discretization methods, solution procedures and turbulence modeling to solve flow and heat transfer problems.

 

TEXT BOOKS:

  1. Versteeg, H.K., and Malalasekera, W., "An Introduction to Computational Fluid Dynamics: The finite volume Method", Pearson Education Ltd.Second Edition, 2007.
  2. Ghoshdastidar,  P.S.,  "Computer  Simulation  of  flow and  heat  transfer", Tata  McGraw Hill

Publishing Company Ltd., 1998.

 

REFERENCES:

  1. Patankar, S.V. "Numerical Heat Transfer and Fluid Flow", Hemisphere Publishing Corporation,

2004.

  1. Chung, T.J. "Computational Fluid Dynamics", Cambridge University, Press, 2002.
  2. Ghoshdastidar P.S., "Heat Transfer", Oxford University Press, 2005
  3. Muralidhar, K., and Sundararajan, T., "Computational Fluid Flow and Heat Transfer", Narosa

Publishing House, New Delhi, 1995.

  1. ProdipNiyogi, Chakrabarty, S.K., Laha, M.K. "Introduction to Computational Fluid Dynamics", Pearson Education, 2005.
  2. Anil W. Date "Introduction to Computational Fluid Dynamics" Cambridge University Press,

2005.

ME6013 Design of Pressure Vessels and Piping - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan ME6013 Design of Pressure Vessels and Piping - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

 

ME6013                       DESIGN OF PRESSURE VESSELS AND PIPING                             L T  P  C

3 0  0 3

OBJECTIVES:

  • To understand the Mathematical knowledge to design pressure vessels and piping
  • To understand the ability to carry of stress analysis in pressure vessels and piping

 

UNIT I             INTRODUCTION                                                                                                            3

Methods for determining stresses – Terminology and Ligament Efficiency – Applications.

 

UNIT II            STRESSES IN PRESSURE VESSELS                                                                        15

Introduction – Stresses in a circular ring, cylinder –Dilation of pressure vessels, Membrane stress Analysis of Vessel – Cylindrical, spherical and, conical heads – Thermal Stresses – Discontinuity stresses in pressure vessels.

 

UNIT III           DESIGN OF VESSELS                                                                                                 15

Design of Tall cylindrical self supporting process columns – Supports for short vertical vessels – Stress concentration at a variable Thickness transition section in a cylindrical vessel, about a circular hole, elliptical openings. Theory of Reinforcement – Pressure Vessel Design.

 

UNIT IV          BUCKLING AND FRACTURE ANALYSIS IN VESSELS                                               8

Buckling phenomenon – Elastic Buckling of circular ring and cylinders under external pressure – collapse of thick walled cylinders or tubes under external pressure – Effect of supports on Elastic Buckling of Cylinders – Buckling under combined External pressure and axial loading.

 

UNIT V           PIPING                                                                                                                           4

Introduction – Flow diagram – piping layout and piping stress Analysis.

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

  • Upon completion of this course, the students can able to apply the mathematical fundamental for the design of pressure vessels and pipes. Further they can able to analyse and design of pressure vessels and piping.

 

TEXT BOOKS:

  1. John   F.   Harvey,   "Theory   and   Design   of   Pressure   Vessels",   CBS   Publishers   and

Distributors,1987.

 

REFERENCES:

 

  1. Henry H. Bedner, “Pressure Vessels, Design Hand Book", CBS publishers and Distributors,

1987.

  1. Stanley, M. Wales, “Chemical process equipment, selection and Design". Buterworths series in Chemical Engineering, 1988.
  2. William. J., Bees, “Approximate Methods in the Design and Analysis of Pressure Vessels and

Piping”, Pre ASME Pressure Vessels and Piping Conference, 1997.

  1. Sam Kannapan, “Introduction to Pipe Stress Analysis”. John Wiley and Sons, 1985.

 

 

MG6071 Entrepreneurship Development - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan MG6071 Entrepreneurship Development - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

MG6071                                  ENTERPRENEURSHIP DEVELOPMENT                               L  T  P  C

3   0 0  3

OBJECTIVES:

  • To develop and strengthen entrepreneurial quality and motivation in students and to impart basic entrepreneurial skills and understanding to run a business efficiently and effectively.

 

UNIT I             ENTREPRENEURSHIP                                                                                                  9

Entrepreneur  –  Types  of  Entrepreneurs  –  Difference  between  Entrepreneur  and  Intrapreneur

Entrepreneurship in Economic Growth, Factors Affecting Entrepreneurial Growth.

 

UNIT II             MOTIVATION                                                                                                                 9

Major Motives Influencing an Entrepreneur – Achievement Motivation Training, Self Rating, Business Games,  Thematic  Apperception  Test   –  Stress  Management,   Entrepreneurship  Development Programs – Need, Objectives.

 

UNIT III           BUSINESS                                                                                                                      9

Small Enterprises – Definition, Classification – Characteristics, Ownership Structures – Project Formulation – Steps involved in setting up a Business – identifying, selecting a Good Business opportunity, Market Survey and Research, Techno Economic Feasibility Assessment – Preparation of Preliminary Project Reports – Project Appraisal – Sources of Information – Classification of Needs and Agencies.

 

UNIT IV          FINANCING AND ACCOUNTING                                                                                  9

Need – Sources of Finance, Term Loans, Capital Structure, Financial Institution, Management of working Capital, Costing, Break Even Analysis, Taxation – Income Tax, Excise Duty – Sales Tax.

 

UNIT V           SUPPORT TO ENTREPRENEURS                                                                                9

Sickness in small Business – Concept, Magnitude, Causes and Consequences, Corrective Measures

- Business Incubators – Government Policy for Small Scale Enterprises – Growth Strategies in small industry – Expansion, Diversification, Joint Venture, Merger and Sub Contracting.

TOTAL : 45 PERIODS

OUTCOMES :

  • Upon completion of the course, students will be able to gain knowledge and skills needed to run a business successfully.

 

TEXT BOOKS :

  1. Khanka. S.S., “Entrepreneurial Development” S.Chand & Co. Ltd., Ram Nagar, New Delhi,

2013.

 

  1. Donald F Kuratko, “Entreprenuership – Theory, Process and Practice”, 9th  Edition, Cengage

Learning, 2014.

REFERENCES :

  1. Hisrich R D, Peters M P, “Entrepreneurship” 8th Edition, Tata McGraw-Hill, 2013.
  2. Mathew J Manimala, "Enterprenuership theory at cross roads:   paradigms and praxis” 2nd

Edition Dream tech, 2005.

  1. Rajeev Roy, "Entrepreneurship" 2nd Edition, Oxford University Press, 2011.
  2. EDII “Faulty  and  External  Experts  –  A  Hand  Book  for  New  Entrepreneurs  Publishers: Entrepreneurship Development”, Institute of India, Ahmadabad, 1986.

 

 

 

 

IE6605 Production Planning and Control - Syllabus-Semester VIII-Elective-MECH-BE-Anna University

NotesKhan IE6605 Production Planning and Control - Syllabus-Semester VIII-Elective-MECH-BE-Anna University MECH SEM VIII Syllabus, MECH SYLLABUS

 

IE6605                             PRODUCTION  PLANNING AND CONTROL                                L T  P  C

3   0 0  3

OBJECTIVES:

  • To understand the various components and functions of production planning and control such as work study, product planning, process planning, production scheduling, Inventory Control.
  • To know the recent trends like manufacturing requirement Planning (MRP II) and Enterprise

Resource Planning (ERP).

 

UNIT I             INTRODUCTION                                                                                                             9

Objectives and benefits of planning and control-Functions of production control-Types of production- job- batch and continuous-Product development and design-Marketing aspect - Functional aspects- Operational aspect-Durability and dependability aspect aesthetic aspect. Profit consideration- Standardization, Simplification & specialization- Break even analysis-Economics of a new design.

 

UNIT II            WORK STUDY                                                                                                               9

Method study, basic procedure-Selection-Recording of process - Critical analysis, Development - Implementation - Micro motion and memo motion study – work measurement - Techniques of work measurement - Time study - Production study - Work sampling - Synthesis from standard data - Predetermined motion time standards.

 

UNIT III           PRODUCT PLANNING AND PROCESS PLANNING                                                    9

Product  planning-Extending  the  original  product  information-Value  analysis-Problems  in  lack  of product planning-Process planning and routing-Pre requisite information needed for process planning- Steps in process planning-Quantity determination in batch production-Machine capacity, balancing- Analysis of process capabilities in a multi product system.

 

UNIT IV          PRODUCTION SCHEDULING                                                                                        9

Production Control Systems-Loading and scheduling-Master Scheduling-Scheduling rules-Gantt charts-Perpetual loading-Basic scheduling problems - Line of balance – Flow production scheduling- Batch  production  scheduling-Product  sequencing  –  Production  Control  systems-Periodic  batch control-Material requirement planning kanban – Dispatching-Progress reporting and expediting- Manufacturing lead time-Techniques for aligning completion times and due dates.

 

UNIT V           INVENTORY CONTROL AND RECENT TRENDS IN PPC                                           9

Inventory control-Purpose of holding stock-Effect of demand on inventories-Ordering procedures. Two bin system -Ordering cycle system-Determination of Economic order quantity and economic lot size- ABC analysis-Recorder procedure-Introduction to computer integrated production planning systems- elements of JUST IN TIME SYSTEMS-Fundamentals of MRP II and ERP.

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

  • Upon completion of this course, the students can able to prepare production planning and control activities such as work study, product planning, production scheduling, Inventory Control.
  • They can plan manufacturing requirements manufacturing requirement Planning (MRP II) and

Enterprise Resource Planning (ERP).

TEXT BOOKS:

  1. Martand  Telsang,  “Industrial  Engineering  and  Production  Management”,  First  edition,  S.

Chand and Company, 2000.

  1. James.B.Dilworth,”Operations management – Design, Planning and Control for manufacturing and services” Mcgraw Hill International edition 1992.

 

REFERENCES:

  1. Samson Eilon, “Elements of Production Planning and Control”, Universal Book Corpn.1984
  2. Elwood S.Buffa, and Rakesh K.Sarin, “Modern Production / Operations Management”, 8th

Edition, John Wiley and Sons, 2000.

  1. Kanishka Bedi, “ Production and Operations management”,  2nd   Edition,  Oxford  university press, 2007.
  2. Melynk, Denzler, “ Operations management – A value driven approach” Irwin Mcgraw hill.
  3. Norman Gaither, G. Frazier, “Operations Management”, 9th edition, Thomson learning IE,

2007

  1. Jain. K.C & L.N. Aggarwal, “Production Planning Control and Industrial Management”, Khanna

Publishers, 1990.

  1. Chary. S.N. “Theory and Problems in Production & Operations Management”, Tata McGraw

Hill, 1995.

  1. Upendra Kachru, “Production and Operations Management – Text and cases”, 1st Edition, Excel books 2007.

ME6021 Hydraulics and Pneumatics - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6021 Hydraulics and Pneumatics - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

ME6021                                         HYDRAULICS AND PNEUMATICS                                 L  T  P  C

3  0 0  3

 

OBJECTIVES:

  • This course will give an appreciation of the fundamental principles, design and operation of hydraulic and pneumatic machines, components and systems and their application in recent automation revolution.

 

UNIT I       FLUID POWER PRINCIPLES AND FUNDEMENTALS (REVIEW)                                     3

Introduction to Fluid power- Advantages and Applications- Fluid power systems – Types of fluids- Properties of fluids Basics of Hydraulics – Pascal’s Law- Principles of flow – Work, Power and Torque. Properties of air– Perfect Gas Laws.

 

UNIT II       HYDRAULIC SYSTEM AND COMPONENTS                                                                13

Sources of Hydraulic power: Pumping Theory – Pump Classification- Construction, Working, Design, Advantages, Disadvantages, Performance, Selection criterion of Linear, Rotary- Fixed and Variable displacement pumps, Hydraulic Actuators: Cylinders – Types and construction, Hydraulic motors Control Components: Direction control, Flow control and Pressure control valves- Types, Construction and   Operation-   Applications   –   Types   of   actuation.   Accessories:   Reservoirs,   Accumulators, Intensifiers, Pressure Switches- Applications- Fluid Power ANSI Symbol.

 

UNIT III       HYDRAULIC CIRCUITS                                                                                                     9

Industrial hydraulic circuits- Regenerative, Pump Unloading, Double-pump, Pressure Intensifier, Air- over   oil,   Sequence,   Reciprocation,   Synchronization,   Fail-safe,   Speed   control,   Hydrostatic transmission, Accumulators, Electro hydraulic circuits, Mechanical Hydraulic servo systems.

 

UNIT IV          PNEUMATIC SYSTEM                                                                                                  8

Compressors- Filter, Regulator, Lubricator, Muffler, Air control Valves, Quick Exhaust valves, Pneumatic actuators, Servo systems. Introduction to Fluidics, Pneumatic logic circuits.

 

UNIT V           DESIGN OF HYDRALIC AND PNEMATIC CIRCUITS                                                 12

Design of circuits using the components of hydraulic system for Drilling, Planning, Shaping, Punching, Press. – Selection, fault finding and maintenance of hydraulic components- Sequential circuit design for  simple  application  using  cascade  method,  Electro  pneumatic  circuits.  Selection  criteria  of pneumatic components – Installation fault finding and maintenance of pneumatic components. Microprocessor and PLC- Applications in Hydraulic and Pneumatics- Low cost Automation – Hydraulic and Pneumatic power packs.

 

 

OUTCOMES:

  • Identify hydraulic and pneumatics components.
  • Ability to design hydraulic and pneumatic circuits.

 

TOTAL: 45 PERIODS

 

 

TEXT BOOK

  1. Anthony Esposito,” Fluid Power with Applications”, PHI / Pearson Education, 2005.

 

REFRENCES

  1. Shanmugasundaram.K, “Hydraulic and Pneumatic controls”, Chand & Co, 2006.
  2. Majumdar, S.R., “Oil Hydraulics Systems- Principles and Maintenance”, Tata McGraw Hill, 2001
  3. Majumdar, S.R., “Pneumatic Systems – Principles and Maintenance”, Tata McGraw Hill, 2007.
  4. Micheal J, Pinches and Ashby, J.G., “Power Hydraulics”, Prentice Hall, 1989.
  5. Dudelyt, A Pease and John J Pippenger, “Basic Fluid Power”, Prentice Hall, 1987.
  6. Srinivasan. R, "Hydraulic and Pneumatic Control", IInd Edition, Tata McGraw - Hill Education,

2012.

 

EE6007 Micro Electro Mechanical Systems - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan EE6007 Micro Electro Mechanical Systems - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

 

 

EE6007                            MICRO  ELECTRO  MECHANICAL  SYSTEMS                            L  T  P  C

3   0 0  3

OBJECTIVES

  • To provide knowledge of semiconductors and solid mechanics to fabricate MEMS devices.
  • To educate on the rudiments of Micro fabrication techniques.
  • To introduce various sensors and actuators
  • To introduce different materials used for MEMS
  • To educate on the applications of MEMS to disciplines beyond Electrical and Mechanical engineering.

 

 

UNIT I             INTRODUCTION                                                                                                            9

Intrinsic Characteristics of MEMS – Energy Domains and Transducers- Sensors and Actuators – Introduction to Micro fabrication - Silicon based MEMS processes – New Materials – Review of Electrical and Mechanical concepts in MEMS – Semiconductor devices – Stress and strain analysis – Flexural beam bending- Torsional deflection.

 

UNIT II            SENSORS AND ACTUATORS-I                                                                                    9

Electrostatic sensors – Parallel plate capacitors – Applications – Interdigitated Finger capacitor – Comb drive devices – Micro Grippers – Micro Motors - Thermal Sensing and Actuation – Thermal expansion – Thermal couples – Thermal resistors – Thermal Bimorph - Applications – Magnetic Actuators – Micromagnetic components – Case studies of MEMS in magnetic actuators- Actuation using Shape Memory Alloys

 

UNIT III           SENSORS AND ACTUATORS-II                                                                                   9

Piezoresistive sensors – Piezoresistive sensor materials - Stress analysis of mechanical elements – Applications to Inertia, Pressure, Tactile and Flow sensors – Piezoelectric sensors and actuators – piezoelectric effects – piezoelectric materials – Applications to Inertia , Acoustic, Tactile and Flow sensors.

 

UNIT IV          MICROMACHINING                                                                                                        9

Silicon Anisotropic Etching – Anisotrophic Wet Etching – Dry Etching of Silicon – Plasma Etching – Deep Reaction Ion Etching (DRIE) – Isotropic Wet Etching – Gas Phase Etchants – Case studies - Basic surface micro machining processes – Structural and Sacrificial Materials – Acceleration of sacrificial Etch – Striction and Antistriction methods – LIGA Process - Assembly of 3D MEMS – Foundry process.

 

UNIT V           POLYMER AND OPTICAL MEMS                                                                                 9

Polymers in MEMS– Polimide - SU-8 - Liquid Crystal Polymer (LCP) – PDMS – PMMA – Parylene – Fluorocarbon - Application to Acceleration, Pressure, Flow and Tactile sensors- Optical MEMS – Lenses and Mirrors – Actuators for Active Optical MEMS.

 

 

OUTCOMES

 

TOTAL : 45 PERIODS

 

  • Ability to understand and apply basic science, circuit theory, Electro-magnetic field theory control theory and apply them to electrical engineering problems.
  • Ability to understand and analyse, linear and digital electronic  circuits.

 

TEXT BOOKS:

  1. Chang Liu, "Foundations of MEMS", Pearson Education Inc., 2006.
  2. Stephen D Senturia, "Microsystem Design", Springer Publication, 2000.
  3. Tai Ran Hsu, “MEMS & Micro systems Design and Manufacture” Tata McGraw Hill, New

Delhi, 2002.

 

REFERENCES:

  1. Nadim Maluf,“ An Introduction to Micro Electro Mechanical System Design”, Artech House,

2000.

  1. Mohamed Gad-el-Hak, editor, “ The MEMS Handbook”, CRC press Baco Raton, 2000
  2. Julian w. Gardner, Vijay K. Varadan, Osama O. Awadelkarim, "Micro Sensors MEMS and

Smart Devices", John Wiley & Son LTD,2002

  1. James J.Allen, "Micro Electro Mechanical System Design", CRC Press Publisher, 2010
  2. Thomas M.Adams and Richard A.Layton, “Introduction MEMS, Fabrication and Application,” Springer 2012.

 

ME6012 Maintenance Engineering - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6012 Maintenance Engineering - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

ME6012                                   MAINTENANCE ENGINEERING                                            L  T  P  C

3 0  0 3

OBJECTIVES:

  • To enable the student to understand the principles, functions and practices adapted in industry for the successful management of maintenance activities.
  • To explain the different maintenance categories like Preventive maintenance, condition monitoring and repair of machine elements.
  • To illustrate some of the simple instruments used for condition monitoring in industry.

 

UNIT I             PRINCIPLES AND PRACTICES OF MAINTENANCE PLANNING                               9

Basic Principles of maintenance planning – Objectives and principles of planned maintenance activity

– Importance and benefits of sound Maintenance systems – Reliability and machine availability – MTBF,  MTTR  and  MWT  –  Factors  of  availability  –  Maintenance  organization  –  Maintenance

economics.

 

UNIT II            MAINTENANCE POLICIES – PREVENTIVE MAINTENANCE                                      9

Maintenance categories – Comparative merits of each category – Preventive maintenance, maintenance schedules, repair cycle - Principles and methods of lubrication – TPM.

 

UNIT III           CONDITION MONITORING                                                                                            9

Condition Monitoring – Cost comparison with and without CM – On-load testing and offload testing – Methods and instruments for CM – Temperature sensitive tapes – Pistol thermometers – wear-debris analysis

 

UNIT IV          REPAIR METHODS FOR BASIC MACHINE ELEMENTS                                           10

Repair methods for beds, slide ways, spindles, gears, lead screws and bearings – Failure analysis – Failures and their development – Logical fault location methods – Sequential fault location.

 

UNIT V           REPAIR METHODS FOR MATERIAL HANDLING EQUIPMENT                                 8

Repair methods for Material handling equipment - Equipment records –Job order systems -Use of computers in maintenance.

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

  • Upon completion of the programme, the students can able to implement the maintenance function and different practices in industries for the successful management of maintenance activities
  • To identify  the  different  maintenance  categories  like  Preventive  maintenance,  condition monitoring and repair of machine elements.

 

TEXT BOOKS:

  1. Srivastava S.K., “Industrial Maintenance Management”, S. Chand and Co., 1981
  2. Venkataraman .K “Maintancence Engineering   and Management”, PHI Learning, Pvt. Ltd.,

2007

 

REFERENCES:

  1. Bhattacharya S.N., “Installation, Servicing and Maintenance”, S. Chand and Co., 1995
  2. White E.N., “Maintenance Planning”, I Documentation, Gower Press, 1979.
  3. Garg M.R., “Industrial Maintenance”, S. Chand & Co., 1986.
  4. Higgins L.R., “Maintenance Engineering Hand book”, 5th Edition, McGraw Hill, 1988.
  5. Armstrong, “Condition Monitoring”, BSIRSA, 1988.
  6. Davies, “Handbook of Condition Monitoring”, Chapman & Hall, 1996.
  7. “Advances in Plant Engineering and Management”, Seminar Proceedings - IIPE, 1996.