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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.

 

ME6011 Thermal Turbo Machines - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6011 Thermal Turbo Machines - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

ME6011                                       THERMAL TURBO MACHINES                                          L  T  P  C

3   0 0  3

OBJECTIVES:

  • To understand the various systems, principles, operations and applications of different types of turbo machinery components.

 

UNIT I             PRINCIPLES                                                                                                                   9

Energy transfer between fluid and rotor-classification of fluid machinery,-dimensionless parameters- specific speed-applications-stage velocity triangles-work and efficiency.

 

UNIT II            CENTRIFUGAL FANS AND BLOWERS                                                                        9

Types- stage and design parameters-flow analysis in impeller blades-volute and diffusers, losses, characteristic curves and selection, fan drives and fan noise.

 

 

 

UNIT III           CENTRIFUGAL COMPRESSOR                                                                                    9

Construction  details,  impeller  flow  losses,  slip  factor,  diffuser  analysis,  losses  and  performance curves.

 

UNIT IV          AXIAL FLOW COMPRESSOR                                                                                       9

Stage velocity diagrams, enthalpy-entropy diagrams, stage losses and efficiency, work done simple stage design problems and performance characteristics.

 

UNIT V           AXIAL AND RADIAL FLOW TURBINES                                                                       9

Stage velocity diagrams, reaction stages, losses and coefficients, blade design principles, testing and performance characteristics.

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

  • Upon completion  of  this  course,  the  students  can  able  to  explain  the  various  systems, principles and applications and different types of turbo machinery components.

 

 

 

 

 

TEXT BOOKS:

  1. Yahya, S.H., Turbines, Compressor and Fans, Tata McGraw Hill Publishing Company, 1996.

 

REFERENCES:

  1. Bruneck, Fans, Pergamom Press, 1973.
  2. Earl Logan, Jr., Hand book of Turbomachinery, Marcel Dekker Inc., 1992.
  3. Dixon, S.I., "Fluid Mechanics and Thermodynamics of Turbomachinery", Pergamon Press,

1990.

  1. Shepherd, D.G., "Principles of Turbomachinery", Macmillan, 1969.
  2. Ganesan, V., "Gas Turbines", Tata McGraw Hill Pub. Co., 1999.
  3. Gopalakrishnan .G and Prithvi Raj .D, "A Treatise on Turbo machines", Scifech Publications

(India) Pvt. Ltd., 2002.

 

GE6081 Fundamentals of Nanoscience - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan GE6081 Fundamentals of Nanoscience - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

 

GE6081                                   FUNDAMENTALS OF NANOSCIENCE                                   L  T  P  C

3 0  0  3

OBJECTIVES

 

  • To learn about basis of nanomaterial science, preparation method, types and application

 

UNIT I             INTRODUCTION                                                                                                            8

Nanoscale Science and Technology- Implications for Physics, Chemistry, Biology and Engineering- Classifications of nanostructured materials- nano particles- quantum dots, nanowires-ultra-thinfilms- multilayered materials. Length Scales involved and effect on properties:    Mechanical,    Electronic, Optical,    Magnetic    and    Thermal    properties. Introduction to properties and motivation for study (qualitative only).

 

UNIT II           GENERAL METHODS OF PREPARATION                                                                  9

Bottom-up Synthesis-Top-down Approach: Co-Precipitation, Ultrasonication, Mechanical Milling, Colloidal  routes,  Self-assembly,  Vapour  phase  deposition,  MOCVD,  Sputtering,  Evaporation, Molecular Beam Epitaxy, Atomic Layer Epitaxy, MOMBE.

 

UNIT III           NANOMATERIALS                                                                                                       12

Nanoforms of Carbon - Buckminster fullerene- graphene and carbon nanotube, Single wall carbon Nanotubes (SWCNT) and Multi wall carbon nanotubes (MWCNT)- methods of synthesis(arc-growth, laser ablation, CVD routes, Plasma CVD), structure-property Relationships applications- Nanometal oxides-ZnO, TiO2,MgO, ZrO2, NiO, nanoalumina, CaO, AgTiO2, Ferrites,    Nanoclays- functionalization and applications-Quantum wires, Quantum dots-preparation, properties and applications

 

UNIT IV         CHARACTERIZATION TECHNIQUES                                                                            9

X-ray diffraction technique, Scanning Electron Microscopy - environmental techniques, Transmission Electron Microscopy including  high-resolution imaging,  Surface Analysis  techniques-  AFM,  SPM, STM, SNOM, ESCA, SIMS-Nanoindentation

 

UNIT V         APPLICATIONS                                                                                                                7

NanoInfoTech: Information storage- nanocomputer, molecular switch, super chip, nanocrystal, Nanobiotechlogy: nanoprobes in medical diagnostics and biotechnology, Nano medicines,  Targetted drug delivery, Bioimaging - Micro Electro Mechanical Systems (MEMS),   Nano Electro Mechanical Systems (NEMS)- Nanosensors, nano crystalline silver for bacterial inhibition, Nanoparticles for sunbarrier products - In Photostat, printing, solar cell, battery

TOTAL : 45 PERIODS

 

OUTCOMES

  • Will familiarize about the science of nanomaterials
  • Will demonstrate the preparation of nanomaterials
  • Will develop knowledge in characteristic nanomaterial

 

TEXT BOOKS

  1. Edelstein.  A.S.  and  R.C.  Cammearata,  eds.,  “Nanomaterials:  Synthesis,  Properties  and

Applications”, Institute of Physics Publishing, Bristol and Philadelphia, 1996.

  1. John Dinardo. N, “Nanoscale charecterisation of surfaces & Interfaces”, 2nd edition, Weinheim

Cambridge, Wiley-VCH, 2000

 

REFERENCES

  1. Timp .G, “Nanotechnology”, AIP press/Springer, 1999.
  2. Akhlesh Lakhtakia  (Editor),“The  Hand  Book  of  Nano  Technology, Nanometer Structure, Theory, Modeling and Simulations”. Prentice-Hall of India (P) Ltd,  New Delhi, 2007.

 

ME6010 Robotics - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6010 Robotics - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

ME6010                                                   ROBOTICS                                                              L  T  P  C

3   0 0  3

OBJECTIVES:

  • To understand the functions of the basic components of a Robot.
  • To study the use of various types of End of Effectors and Sensors
  • To impart knowledge in Robot Kinematics and Programming
  • To learn Robot safety issues and economics.

 

UNIT I             FUNDAMENTALS OF ROBOT                                                                                      6

Robot - Definition - Robot Anatomy - Co ordinate Systems, Work Envelope Types and Classification- Specifications-Pitch, Yaw, Roll, Joint Notations, Speed of Motion, Pay Load- Robot Parts and their Functions-Need for Robots-Different Applications.

 

UNIT II            ROBOT DRIVE SYSTEMS AND END EFFECTORS                                                    9

Pneumatic Drives-Hydraulic Drives-Mechanical Drives-Electrical Drives-D.C. Servo Motors, Stepper Motors, A.C. Servo Motors-Salient Features, Applications and Comparison of all these Drives, End Effectors-Grippers-Mechanical  Grippers,  Pneumatic  and  Hydraulic-  Grippers,  Magnetic  Grippers,

 

Vacuum  Grippers;  Two  Fingered  and  Three  Fingered  Grippers;  Internal  Grippers  and  External

Grippers; Selection and Design Considerations.

 

UNIT III           SENSORS AND MACHINE VISION                                                                             12

Requirements of a sensor, Principles and Applications of the following types of sensors- Position sensors - Piezo Electric Sensor, LVDT, Resolvers, Optical Encoders, pneumatic Position Sensors, Range Sensors Triangulations Principles, Structured, Lighting Approach, Time of Flight, Range Finders, Laser Range Meters, Touch Sensors ,binary Sensors., Analog Sensors, Wrist Sensors, Compliance Sensors, Slip Sensors, Camera, Frame Grabber, Sensing and Digitizing Image Data- Signal Conversion, Image Storage, Lighting Techniques, Image Processing and Analysis-Data Reduction, Segmentation, Feature Extraction, Object Recognition, Other Algorithms, Applications- Inspection, Identification, Visual Serving and Navigation.

 

UNIT IV          ROBOT KINEMATICS AND ROBOT PROGRAMMING                                              13

Forward Kinematics, Inverse Kinematics and Difference; Forward Kinematics and Reverse Kinematics of manipulators with Two, Three Degrees of Freedom (in 2 Dimension), Four Degrees of freedom (in

3 Dimension) Jacobians, Velocity and Forces-Manipulator Dynamics, Trajectory Generator, Manipulator Mechanism Design-Derivations and problems. Lead through Programming, Robot programming Languages-VAL Programming-Motion Commands, Sensor Commands, End Effector

commands and simple Programs.

 

UNIT V           IMPLEMENTATION AND ROBOT ECONOMICS                                                          5

RGV, AGV; Implementation of Robots in Industries-Various Steps; Safety Considerations for Robot

Operations - Economic Analysis of Robots.

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

  • Upon completion  of  this  course,  the  students  can  able  to  apply  the  basic  engineering knowledge for the design of robotics

 

TEXT BOOKS:

  1. Klafter R.D., Chmielewski T.A and Negin M., “Robotic Engineering - An Integrated Approach”, Prentice Hall, 2003.
  2. Groover M.P., “Industrial Robotics -Technology Programming and Applications”, McGraw Hill,

2001.

 

REFERENCES:

  1. Craig J.J., “Introduction to Robotics Mechanics and Control”, Pearson Education, 2008.
  2. Deb S.R., “Robotics Technology and Flexible Automation” Tata McGraw Hill Book Co., 1994.
  3. Koren Y., “Robotics for Engineers", Mc Graw Hill Book Co., 1992.
  4. Fu.K.S.,Gonzalz R.C. and Lee C.S.G., “Robotics Control, Sensing, Vision and Intelligence”, McGraw Hill Book Co., 1987.
  5. Janakiraman P.A., “Robotics and Image Processing”, Tata McGraw Hill, 1995.
  6. Rajput R.K., “Robotics and Industrial Automation”, S.Chand and Company, 2008.
  7. Surender Kumar, “Industrial Robots and Computer Integrated Manufacturing”, Oxford and IBH Publishing Co. Pvt. Ltd., 1991.

 

GE6083 Disaster Management - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan GE6083 Disaster Management - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

GE6083                                 DISASTER MANAGEMENT                                                 L T  P  C

3 0  0 3

OBJECTIVES:

  • To provide students an exposure to disasters, their significance and types.
  • To ensure that students begin to understand the relationship between vulnerability, disasters, disaster prevention and risk reduction
  • To gain a preliminary understanding of approaches of Disaster Risk Reduction (DRR)
  • To enhance awareness of institutional processes in the country and
  • To develop rudimentary ability to respond to their surroundings with potential disaster response in areas where they live, with due sensitivity

 

UNIT I             INTRODUCTION TO DISASTERS                                                                               9

Definition: Disaster, Hazard, Vulnerability, Resilience, Risks – Disasters: Types of disasters – Earthquake, Landslide, Flood, Drought, Fire etc -   Classification, Causes, Impacts including social, economic, political, environmental, health, psychosocial, etc.- Differential impacts- in terms of caste, class, gender,  age,  location,  disability -  Global trends  in  disasters:  urban  disasters,  pandemics, complex emergencies, Climate change- Dos and Don’ts during various types of Disasters.

 

UNIT II            APPROACHES TO DISASTER RISK REDUCTION (DRR)                                          9

Disaster cycle - Phases, Culture of safety, prevention, mitigation and preparedness community based DRR, Structural- nonstructural measures, Roles and responsibilities of- community, Panchayati Raj Institutions/Urban Local Bodies (PRIs/ULBs), States, Centre, and other stake-holders- Institutional Processess   and   Framework   at   State   and   Central   Level-       State   Disaster   Management Authority(SDMA) – Early Warning System – Advisories from Appropriate Agencies.

 

UNIT III           INTER-RELATIONSHIP BETWEEN DISASTERS AND DEVELOPMENT                    9

Factors affecting Vulnerabilities, differential impacts, impact of Development projects such as dams, embankments, changes in Land-use etc.- Climate Change Adaptation- IPCC Scenario and Scenarios in the context of India -   Relevance of indigenous knowledge, appropriate technology and local resources.

 

UNIT IV          DISASTER RISK MANAGEMENT IN INDIA                                                                  9

Hazard and Vulnerability profile of India, Components of Disaster Relief: Water, Food, Sanitation, Shelter,   Health,   Waste   Management,   Institutional   arrangements   (Mitigation,   Response   and

 

Preparedness, Disaster Management Act and Policy -  Other related policies, plans, programmes and legislation  –  Role  of  GIS  and  Information  Technology  Components  in  Preparedness,  Risk Assessment, Response and Recovery Phases of Disaster – Disaster Damage Assessment.

 

UNIT V           DISASTER MANAGEMENT: APPLICATIONS AND CASE STUDIES AND FIELD WORKS                                                                                                                          9

Landslide Hazard Zonation: Case Studies, Earthquake Vulnerability Assessment of Buildings and

Infrastructure: Case Studies, Drought Assessment: Case Studies, Coastal Flooding: Storm Surge Assessment, Floods: Fluvial and Pluvial Flooding: Case Studies; Forest Fire: Case Studies, Man Made disasters: Case Studies, Space Based Inputs for Disaster Mitigation and Management and field works related to disaster management.

 

 

OUTCOMES:

The students will be able to

 

TOTAL: 45 PERIODS

 

  • Differentiate the types of disasters, causes and their impact on environment and society
  • Assess vulnerability and various methods of risk reduction measures as well as mitigation.
  • Draw the hazard and vulnerability profile of India, Scenarious in the Indian context, Disaster damage assessment and management.

 

TEXTBOOK:

  1. Singhal J.P. “Disaster Management”, Laxmi Publications, 2010. ISBN-10: 9380386427 ISBN-

13: 978-9380386423

  1. Tushar Bhattacharya, “Disaster Science and Management”, McGraw Hill India Education Pvt.

Ltd., 2012. ISBN-10: 1259007367, ISBN-13: 978-1259007361]

  1. Gupta Anil K, Sreeja S. Nair.  Environmental Knowledge for Disaster Risk  Management, NIDM, New Delhi, 2011
  2. Kapur Anu Vulnerable India: A Geographical Study of Disasters, IIAS and Sage Publishers, New Delhi, 2010.

 

REFERENCES

  1. Govt. of India: Disaster Management Act , Government of India, New Delhi, 2005
  2. Government of India, National Disaster Management Policy,2009.

 

 

ME6009 Energy Conservation and Management - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6009 Energy Conservation and Management - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

 

ME6009                     ENERGY CONSERVATION AND MANAGEMENT                             L  T  P  C

3 0  0   3

OBJECTIVES:

At the end of the course, the student is expected to

  • understand and analyse the energy data of industries
  • carryout energy accounting and balancing
  • conduct energy audit and suggest methodologies for energy savings and
  • utilise the available resources in optimal ways

 

UNIT I              INTRODUCTION                                                                                                            8

Energy - Power – Past & Present scenario of World; National Energy consumption Data – Environmental   aspects   associated   with   energy   utilization   –Energy   Auditing:   Need,   Types, Methodology and Barriers. Role of Energy Managers. Instruments for energy auditing.

 

UNIT II            ELECTRICAL SYSTEMS                                                                                              12

Components of EB billing – HT and LT supply, Transformers, Cable Sizing, Concept of Capacitors, Power Factor Improvement, Harmonics, Electric Motors - Motor Efficiency Computation, Energy Efficient Motors, Illumination – Lux, Lumens, Types of lighting, Efficacy, LED Lighting and scope of Encon in Illumination.

 

UNIT III           THERMAL SYSTEMS                                                                                                   12

Stoichiometry, Boilers, Furnaces and Thermic Fluid Heaters – Efficiency computation and encon measures.  Steam:  Distribution  &U  sage:  Steam  Traps,  Condensate  Recovery,  Flash  Steam Utilization, Insulators & Refractories

 

UNIT IV          ENERGY CONSERVATION IN MAJOR UTILITIES                                                       8

Pumps, Fans, Blowers, Compressed Air Systems, Refrigeration and Air Conditioning Systems  – Cooling Towers – D.G. sets

 

UNIT V           ECONOMICS                                                                                                                  5

Energy Economics – Discount Rate, Payback Period, Internal Rate of Return, Net Present Value, Life

Cycle Costing –ESCO concept

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

Upon completion of this course, the students can able to analyse the energy data of industries.

  • Can carryout energy accounting and balancing

 

  • Can suggest methodologies for energy savings

 

TEXT BOOKS:

  1. Energy Manager Training Manual (4 Volumes) available at www.energymanager training.com, a website administered by Bureau of Energy Efficiency (BEE), a statutory body under Ministry of Power, Government of India, 2004.

 

REFERENCES:

  1. Witte. L.C.,  P.S.  Schmidt,  D.R.  Brown,  “Industrial  Energy  Management  and  Utilisation” Hemisphere Publ, Washington, 1988.
  2. Callaghn, P.W. “Design and Management for Energy Conservation”, Pergamon Press, Oxford,

1981.

  1. Dryden. I.G.C., “The Efficient Use of Energy” Butterworths, London, 1982
  2. Turner. W.C., “Energy Management Hand book”, Wiley, New York, 1982.
  3. Murphy. W.R.  and G. Mc KAY, “Energy Management”, Butterworths, London 1987.

 

ME6008 Welding Technology - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6008 Welding Technology - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

ME6008                                       WELDING TECHNOLOGY                                                  L  T  P  C

3   0 0  3

OBJECTIVES

  • To understand  the  basics  of  welding  and  to  know  about  the  various  types  of  welding processes

 

UNIT I             GAS AND ARC WELDING PROCESSES:                                                                    9

Fundamental principles – Air Acetylene welding, Oxyacetylene welding, Carbon arc welding, Shielded metal arc welding, Submerged arc welding, TIG & MIG welding, Plasma arc welding and Electroslag welding processes - advantages, limitations and applications.

 

UNIT II            RESISTANCE WELDING PROCESSES:                                                                       9

Spot welding, Seam welding, Projection welding, Resistance Butt welding, Flash Butt welding, Percussion welding and High frequency resistance welding processes - advantages, limitations and applications.

 

UNIT III           SOLID STATE WELDING PROCESSES:                                                                     9

Cold welding, Diffusion bonding, Explosive welding, Ultrasonic welding, Friction welding, Forge welding, Roll welding and Hot pressure welding processes - advantages, limitations and applications.

 

UNIT IV          OTHER WELDING PROCESSES:                                                                                 9

Thermit welding, Atomic hydrogen welding, Electron beam welding, Laser Beam welding, Friction stir welding, Under Water welding, Welding automation in aerospace, nuclear and surface transport vehicles.

 

UNIT V           DESIGN OF WELD JOINTS, WELDABILITY AND TESTING OF  WELDMENTS     9

Various weld joint designs – Weldability of Aluminium, Copper, and Stainless steels. Destructive and non destructive testing of weldments.

 

 

OUTCOMES:

 

TOTAL : 45 HOURS

 

  • Upon completion of this course, the students can able to compare different types of Welding process for effective Welding of Structural components.

 

TEXT BOOKS:

  1. Parmer R.S., “Welding Engineering and Technology”, 1st  edition, Khanna Publishers, New

Delhi, 2008.

  1. Parmer R.S., “Welding Processes and Technology”, Khanna Publishers, New Delhi, 1992.

 

  1. Little R.L., “Welding and welding Technology”, Tata McGraw Hill Publishing Co., Ltd., New

Delhi, 34th reprint, 2008.

 

REFERENCES:

  1. Schwartz M.M. “Metals Joining Manual”. McGraw Hill Books, 1979.
  2. Tylecote R.F. “The Solid Phase Welding of Metals”. Edward Arnold Publishers Ltd. London,

1968.

  1. AWS- Welding Hand Book. 8th Edition. Vol- 2. “Welding Process”
  2. Nadkarni S.V. “Modern Arc Welding Technology”, 1st edition, Oxford IBH Publishers, 2005.
  3. Christopher Davis. “Laser Welding- Practical Guide”. Jaico Publishing House, 1994.
  4. Davis A.C., “The Science and Practice of Welding”, Cambridge University Press, Cambridge,

1993

 

ME6007 Composite Materials and Mechanics - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6007 Composite Materials and Mechanics - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

ME6007                          COMPOSITE MATERIALS  AND MECHANICS                               L  T  P  C

3   0 0  3

OBJECTIVES:

  • To understand the fundamentals of composite material strength and its mechanical behavior

Understanding the analysis of fiber reinforced Laminate design for different

  • combinations of plies with different orientations of the fiber.
  • Thermo-mechanical behavior and study of residual stresses in Laminates during processing.

Implementation of Classical Laminate Theory (CLT) to study and analysis for residual stresses in an isotropic layered structure such as electronic chips.

 

UNIT I             INTRODUCTION, LAMINA CONSTITUTIVE EQUATIONS & MANUFACTURING     12

Definition  –Need  –  General  Characteristics,  Applications.  Fibers  –  Glass,  Carbon,  Ceramic  and Aramid fibers. Matrices – Polymer, Graphite, Ceramic and Metal Matrices – Characteristics of fibers and matrices. Lamina Constitutive Equations: Lamina Assumptions – Macroscopic Viewpoint. Generalized Hooke’s Law. Reduction to Homogeneous Orthotropic Lamina – Isotropic limit case, Orthotropic Stiffness matrix (Qij), Typical Commercial material properties, Rule of Mixtures. Generally Orthotropic Lamina  –Transformation Matrix, Transformed  Stiffness.  Manufacturing:  Bag  Moulding Compression Moulding – Pultrusion – Filament Winding – Other Manufacturing Processes

 

UNIT II            FLAT PLATE LAMINATE CONSTITUTE EQUATIONS                                             10

Definition of stress and Moment Resultants. Strain Displacement relations. Basic Assumptions of Laminated anisotropic plates. Laminate Constitutive Equations – Coupling Interactions, Balanced Laminates, Symmetric Laminates, Angle Ply Laminates,   Cross Ply Laminates. Laminate Structural Moduli. Evaluation of Lamina Properties from Laminate Tests. Quasi-Isotropic Laminates. Determination of Lamina stresses within Laminates.

 

UNIT III           LAMINA STRENGTH ANALYSIS                                                                                  5

Introduction - Maximum Stress and Strain Criteria. Von-Misses Yield criterion for Isotropic Materials. Generalized  Hill’s Criterion for  Anisotropic materials. Tsai-Hill’s  Failure  Criterion for  Composites. Tensor Polynomial (Tsai-Wu) Failure criterion.  Prediction of laminate Failure

 

UNIT IV          THERMAL ANALYSIS                                                                                                    8

Assumption of Constant C.T.E’s. Modification of Hooke’s Law. Modification of Laminate Constitutive Equations. Orthotropic Lamina C.T.E’s. C.T.E’s for special Laminate Configurations – Unidirectional, Off-axis, Symmetric Balanced Laminates, Zero C.T.E laminates, Thermally Quasi-Isotropic Laminates

 

UNIT V           ANALYSIS OF LAMINATED FLAT PLATES                                                              10

Equilibrium Equations of Motion. Energy Formulations. Static Bending Analysis. Buckling Analysis. Free Vibrations – Natural Frequencies

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

  • Upon completion of this course, the students can able to analyse the fiber reinforced Laminate for optimum design
  • Apply classical laminate theory to study and analyse the residual stresses in Laminate.

 

TEXT BOOKS:

  1. Gibson, R.F., "Principles of Composite Material Mechanics", Second Edition, McGraw-Hill, CRC press in progress, 1994, -.
  2. Hyer, M.W., “Stress Analysis of Fiber – Reinforced Composite Materials”, McGraw Hill, 1998

 

REFERENCES:

  1. Issac  M.  Daniel  and  Ori  Ishai,  “Engineering  Mechanics  of  Composite  Materials”,  Oxford

University Press-2006, First Indian Edition - 2007

  1. Mallick, P.K., Fiber, ”Reinforced Composites: Materials, Manufacturing and Design”, Maneel

Dekker Inc, 1993.

  1. Halpin, J.C., “Primer on Composite Materials, Analysis”, Technomic Publishing Co., 1984.
  2. Agarwal, B.D., and Broutman L.J., “Analysis and Performance of Fiber Composites”, John

Wiley and Sons, New York, 1990.

  1. Mallick, P.K. and Newman, S., (edition), “Composite Materials Technology: Processes and

Properties”, Hansen Publisher, Munish, 1990.

 

 

 

 

ME6006 Design of Jigs, Fixtures and Press Tools - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6006 Design of Jigs, Fixtures and Press Tools - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

 

ME6006                           DESIGN OF JIGS, FIXTURES AND PRESS TOOLS                     L  T  P  C

3   0 0  3

OBJECTIVES:

  • To understand the functions and design principles of Jigs, fixtures and press tools
  • To gain proficiency in the development of required views of the final design.

 

UNIT I             LOCATING AND CLAMPING PRINCIPLES:                                                                 8

Objectives of tool design- Function and advantages of Jigs and fixtures – Basic elements – principles of location – Locating methods and devices – Redundant Location – Principles of clamping – Mechanical actuation – pneumatic and hydraulic actuation Standard parts – Drill bushes and Jig buttons – Tolerances and materials used.

 

UNIT II            JIGS AND FIXTURES                                                                                                   10

Design and development of jigs and fixtures for given component- Types of Jigs – Post, Turnover, Channel, latch, box, pot, angular post jigs – Indexing jigs – General principles of milling, Lathe, boring, broaching and grinding fixtures – Assembly, Inspection and Welding fixtures – Modular fixturing systems- Quick change fixtures.

 

UNIT III            PRESS WORKING TERMINOLOGIES AND ELEMENTS OF CUTTING DIES          10

Press Working Terminologies - operations – Types of presses – press accessories – Computation of press capacity – Strip layout – Material Utilization – Shearing action – Clearances – Press Work Materials – Center of pressure- Design of various elements of dies – Die Block – Punch holder, Die set, guide plates – Stops – Strippers – Pilots – Selection of Standard parts – Design and preparation of four standard views of simple blanking, piercing, compound and progressive dies.

 

UNIT IV          BENDING AND DRAWING DIES                                                                                 10

Difference between bending and drawing – Blank development for above operations – Types of Bending dies – Press capacity – Spring back – knockouts – direct and indirect – pressure pads – Ejectors – Variables affecting Metal flow in drawing operations – draw die inserts – draw beads- ironing – Design and development of bending, forming, drawing, reverse redrawing and combination dies – Blank development for axisymmetric, rectangular and elliptic parts – Single and double action dies.

 

UNIT V           OTHER FORMING TECHNIQUES                                                                                 7

Bulging, Swaging, Embossing, coining, curling, hole flanging, shaving and sizing, assembly, fine Blanking dies – recent trends in tool design- computer Aids for sheet metal forming Analysis – basic introduction - tooling for numerically controlled machines- setup reduction for work holding – Single minute exchange of dies – Poka Yoke.

TOTAL: 45 PERIODS Note: (Use of P S G Design Data Book is permitted in the University examination)

OUTCOMES:

  • Upon completion of this course, the students can able to design jigs, fixtures and press tools.

 

TEXT BOOKS:

  1. Joshi, P.H. “Jigs and Fixtures”, Second Edition, Tata McGraw Hill Publishing Co., Ltd., New

Delhi, 2004.

  1. Joshi P.H “Press tools - Design and Construction”, wheels publishing, 1996

 

REFERENCES:

  1. Venkataraman. K., “Design of Jigs Fixtures & Press Tools”, Tata McGraw Hill, New Delhi,

2005.

  1. Donaldson, Lecain and Goold “Tool Design”, 3rd   Edition, Tata McGraw Hill, 2000.
  2. Kempster, “Jigs and Fixture Design”, Third Edition, Hoddes and Stoughton, 1974.
  3. Hoffman “Jigs and Fixture Design”, Thomson Delmar Learning, Singapore, 2004.
  4. ASTME Fundamentals of Tool Design Prentice Hall of India.
  5. Design Data Hand Book, PSG College of Technology, Coimbatore.

 

ME6005 Process Planning and Cost Estimation - Syllabus-Semester VII-Elective-MECH-BE-Anna University

NotesKhan ME6005 Process Planning and Cost Estimation - Syllabus-Semester VII-Elective-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

ME6005                          PROCESS PLANNING AND COST ESTIMATION                          L  T  P  C

3   0 0  3

OBJECTIVES:

  • To introduce the process planning concepts to make cost estimation for various products after process planning

 

UNIT I             INTRODUCTION TO PROCESS PLANNING                                                              10

Introduction- methods of process planning-Drawing interpretation-Material evaluation – steps in process selection-.Production equipment and tooling selection

 

UNIT II            PROCESS PLANNING ACTIVITIES                                                                            10

Process parameters calculation for various production processes-Selection jigs and fixtures  election of  quality  assurance  methods  -  Set  of  documents  for  process  planning-Economics  of  process planning- case studies

 

UNIT III           INTRODUCTION TO COST ESTIMATION                                                                     8

Importance of costing and estimation –methods of costing-elements of cost estimation –Types of estimates  –  Estimating  procedure-  Estimation labor  cost,  material  cost-  allocation  of  over  head charges- Calculation of depreciation cost

 

UNIT IV          PRODUCTION COST ESTIMATION                                                                              8

Estimation of Different Types of Jobs - Estimation of Forging Shop, Estimation of Welding Shop, Estimation of Foundry Shop

 

UNIT V           MACHINING TIME CALCULATION                                                                               9

Estimation of Machining Time - Importance of Machine Time Calculation- Calculation of Machining Time for Different Lathe Operations ,Drilling and Boring - Machining Time Calculation for Milling, Shaping and Planning -Machining Time Calculation for Grinding

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

  • Upon completion of this course, the students can able to use the concepts of process planning and cost estimation for various products.

 

TEXT BOOKS:

  1. Peter scalon, “Process planning, Design/Manufacture Interface”, Elsevier science technology

Books, Dec 2002.

 

REFERENCES:

  1. Ostwalal P.F. and Munez J., “Manufacturing Processes and systems”, 9th Edition, John Wiley,

1998.

  1. Russell R.S and Tailor B.W, “Operations Management”, 4th Edition, PHI, 2003.
  2. Chitale A.V. and Gupta R.C., “Product Design and Manufacturing”, 2nd Edition, PHI, 2002.

 

 

ME6713 Comprehension - Syllabus-Semester VII-MECH-BE-Anna University

NotesKhan ME6713 Comprehension - Syllabus-Semester VII-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

 

OBJECTIVES:

 

0  0  2 1

 

  • To encourage the students to comprehend the knowledge acquired from the first Semester to

Sixth Semester of B.E Degree Course through periodic exercise.

 

METHOD OF EVALUATION:

The students will be assessed 100% internally through weekly test with objective type questions on all the subject related topics

 

 

OUTCOMES:

 

TOTAL : 30 PERIODS

 

  • ability to understand and comprehend any given problem related to mechanical engineering field.

 

 

ME6712 Mechatronics Laboratory - Syllabus-Semester VII-MECH-BE-Anna University

NotesKhan ME6712 Mechatronics Laboratory - Syllabus-Semester VII-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

ME6712                                 MECHATRONICS LABORATORY                                           L  T  P  C

0 0  3 2

OBJECTIVES:

  • To know the method of programming the microprocessor and also the design, modeling & analysis of basic electrical, hydraulic & pneumatic Systems which enable the students to understand the concept of mechatronics.

 

LIST OF EXPERIMENTS:

  1. Assembly language programming of 8085 – Addition – Subtraction – Multiplication – Division – Sorting – Code Conversion.
  2. Stepper motor interface.
  3. Traffic light interface.
  4. Speed control of DC motor.
  5. Study of various types of transducers.
  6. Study of hydraulic, pneumatic and electro-pneumatic circuits.
  7. Modelling and analysis of basic hydraulic, pneumatic and electrical circuits using Software.
  8. Study of PLC and its applications.
  9. Study of image processing technique.

 

 

OUTCOMES:

 

TOTAL : 45 PERIODS

 

  • Upon completion of this course, the students can able to design mechatronics system with the help of Microprocessor, PLC and other electrical and Electronics Circuits.

 

LIST OF EQUIPMENT FOR A BATCH OF 30 STUDENTS

 

Sl. No.

 

NAME OF THE EQUIPMENT

 

Qty.

1

Basic Pneumatic Trainer Kit with manual and electrical controls/ PLC   Control   each

1 No.

2

Basic Hydraulic Trainer Kit

1 No

3

Hydraulics and Pneumatics Systems Simulation Software

10 No

4

8051  -  Microcontroller  kit  with  stepper  motor  and  drive circuit sets

2 No

 

Image processing system with hardware & software

1 No.

ME6711 Simulation and Analysis Laboratory - Syllabus-Semester VII-MECH-BE-Anna University

NotesKhan ME6711 Simulation and Analysis Laboratory - Syllabus-Semester VII-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

ME6711                          SIMULATION AND ANALYSIS LABORATORY                              L  T  P  C

0 0  3   2

OBJECTIVES:

  • To give exposure to software tools needed to analyze engineering problems.
  • To expose the students to different applications of simulation and analysis tools.

LIST OF EXPERIMENTS A. SIMULATION

  1. MATLAB basics, Dealing with matrices, Graphing-Functions of one variable and two variables
  2. Use of Matlab to solve simple problems in vibration
  3. Mechanism Simulation using Multibody Dynamic software

 

  1. B. ANALYSIS
  2. Force and Stress analysis using link elements in Trusses, cables etc.
  3. Stress and deflection analysis in beams with different support conditions.
  4. Stress analysis of flat plates and simple shells.
  5. Stress analysis of axi – symmetric components.
  6. Thermal stress and heat transfer analysis of plates.
  7. Thermal stress analysis of cylindrical shells.
  8. Vibration analysis of spring-mass systems.
  9. Model analysis of Beams.
  10. Harmonic, transient and spectrum analysis of simple systems.

 

 

 

 

 

 

 

 

 

 

 

 

 

TOTAL: 45 PERIODS

 

 

OUTCOMES:

 

  • Upon completion of this course, the Students can model, analyse and simulate experiments to meet real world system and evaluate the performance.

 

LIST OF EQUIPMENT FOR A BATCH OF 30 STUDENTS

 

S. NO.

NAME OF THE EQUIPMENT

Qty.

1

Computer Work Station

15

2

Color Desk Jet Printer

01

3

Multibody Dynamic Software Suitable for Mechanism simulation and analysis

15 licenses

4

C / MATLAB

5 licenses

 

 

GE6757 Total Quality Management - Syllabus-Semester VII-MECH-BE-Anna University

NotesKhan GE6757 Total Quality Management - Syllabus-Semester VII-MECH-BE-Anna University MECH SEM VII Syllabus, MECH SYLLABUS

 

 

 

GE6757

TOTAL QUALITY MANAGEMENT

L

T P  C

 

 

3

0  0  3

OBJECTIVES:

  • To facilitate the understanding of Quality Management principles and process.

 

UNIT I             INTRODUCTION                                                                                                             9

Introduction - Need for quality -  Evolution of quality - Definitions of quality - Dimensions of product and service quality - Basic concepts of TQM - TQM Framework - Contributions of Deming, Juran and Crosby - Barriers to TQM - Quality statements - Customer focus - Customer orientation, Customer satisfaction, Customer complaints, Customer retention - Costs of quality.

 

UNIT II            TQM PRINCIPLES                                                                                                          9

Leadership - Strategic quality planning, Quality Councils - Employee involvement - Motivation, Empowerment, Team and Teamwork, Quality circles Recognition and Reward, Performance appraisal

-   Continuous process improvement - PDCA cycle, 5S, Kaizen - Supplier partnership - Partnering, Supplier selection, Supplier Rating.

 

UNIT III           TQM TOOLS AND TECHNIQUES I                                                                               9

The seven traditional tools of quality - New management tools - Six sigma: Concepts, Methodology, applications to manufacturing, service sector including IT - Bench marking - Reason to bench mark, Bench marking process - FMEA - Stages, Types.

UNIT IV          TQM TOOLS AND TECHNIQUES II                                                                              9

 

Control Charts - Process Capability - Concepts of Six Sigma - Quality Function Development (QFD) - Taguchi quality loss function - TPM - Concepts, improvement needs - Performance measures.

 

UNIT V            QUALITY SYSTEMS                                                                                                    9

Need for ISO 9000 - ISO 9001-2008 Quality System - Elements, Documentation, Quality Auditing - QS  9000  -  ISO  14000  -  Concepts,  Requirements  and  Benefits  -  TQM  Implementation  in manufacturing and service sectors..

 

 

OUTCOMES:

 

TOTAL: 45 PERIODS

 

  • The student would be able to apply the tools and techniques of quality management to manufacturing and services processes.

 

TEXT BOOK:

  1. Dale H. Besterfiled, et at., "Total quality Management", Third Edition, Pearson Education Asia, Indian Reprint, 2006.

 

REFERENCES:

  1. James R. Evans and William M. Lindsay, "The Management and Control of Quality", 8th

Edition, First Indian Edition, Cengage Learning, 2012.

  1. Suganthi.L and Anand Samuel, "Total Quality Management", Prentice Hall (India) Pvt. Ltd.,

2006.

  1. Janakiraman. B and Gopal .R.K., "Total Quality Management - Text and Cases", Prentice Hall

(India) Pvt. Ltd., 2006.