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Department of Mechanical Engineering

 
M.E / M.Tech Courses - CAD / CAM
Objective

Will prepare graduates with knowledge, problem solving ability, and hands on skills to enter careers in drafting and basic design of mechanical components and systems. Graduates of associate degree programmes shall have competency in drafting, including at least one commercial CAD software package appropriate to the programme objectives.

With the knowledge, skills, and abilities to enter careers in applied mechanical design.

knowledge and technical competency appropriate to the objectives of the programme in:

 

Engineering materials, applied mechanics, and manufacturing methods.

 

applied drafting practice emphasizing mechanical components and systems, as well as fundamentals of descriptive geometry, orthographic projection, sectioning, tolerance and dimensioning, and basic computer aided drafting and design with technical depth in at least one of these areas.

 

The application of physics and engineering materials having an emphasis in applied mechanics, or in-depth application of physics having emphasis in mechanical components and design.

Competency in the application of manuals, handbooks, material and/or

Equipment specifications and related software in advanced drafting/design. Competency in the application of current codes and standards must be demonstrated with open-ended design experiences that integrate materials, manufacturing, design analysis, or graphics. Understanding of concepts relating to the environmental and economic impacts of design must also be demonstrated.

 
Outcomes

Competency in:

 

Design of machine elements, advanced drafting including current three dimensional computer representations as related to mechanical design, and manufacturing methods. Advanced proficiency must be demonstrated in at least three drafting / design related areas, consistent with the technical orientation of the programme.

 

The in-depth application of physics and engineering materials having emphasis in drafting, manufacturing, and design of mechanical components.

Prospects

After the emergence of information technology, the demand for this conventional course reduced over the last decade. Again with manifold innovations in manufacturing technology, the demand for multi skilled and knowledgeable mechanical engineers has once again increased. The industry is facing acute shortage of this class.

 
List Of Courses:
Advanced Automotive Engines Advanced Finite Element and Boundary Element Methods
Advanced Fluid Dynamics Advanced Heat Transfer
Advanced Joining Technology Advanced Manufacturing Processes
Advanced Refrigeration Advanced Strength of Materials
Advanced Thermodynamics & Combustion Advanced Tool Design
Airconditioning System Design Analysis and Control in Flexible Manufacturing Systems
Analytical Mechanics Applied Engineering Mechanics
Applied Hydraulics and Pneumatics Applied Random Vibrations
Applied Tribology Applied Vibration Engineering
Appropriate Technology Automatic Control
Automobile Engineering Basic Thermodynamics
Casting and Moulding Technology Collaborative Engineering
Composite Materials Compression Ignition Engines
Computational Fluid Dynamics and Heat Transfer Computational Methods in Engineering
Computational Methods in Thermal & Fluid Engg Computer Aided Design of Machines
Computer Aided Machine Drawing Practice Computer Aided Simulation of Machines
Computer Aided Solutions Computer Applications in Stress & Vibration Analysis
Computer Graphics and Product Modeling Computer Integrated Manufacturing
Computer Numerical Control and Programming. Conduction and Radiation Heat Transfer
Convective Heat and Mass Transfer Cryogenic Engineering
Design and Fabrication Project Design for Fatigue and Fracture
Design for Manufacturing Design Methodology
Design of Heat-Exchange Equipment Design of Jigs, Fixtures and Press Tools
Design of Machine Elements Design of Material Handling Equipment
Design of Transmission Systems Dynamics of Machines
Electrical Drives and Controls Electronic Packaging, a Mechanical Engineering Approach
Electronics and Microprocessors Energy Analysis of Refrigeration Systems
Energy Conversion Engineering Design
Engineering Economics and Cost Analysis Engineering Graphics & Drawing
Engineering Materials and Metallurgy Engineering Metrology and Measurements
Engineering Thermodynamics Entrepreneurship Development
Essentials of Turbulence Experimental Engineering
Experimental Methods in Stress Analysis Experimental Methods in Thermal and Fluids Engg
Fatigue, Fracture and Failure Analysis Finite Element Analysis
Finite Element and Boundary Element Methods Fluid Dynamics
Fluid Mechanics and Machinery Fracture Mechanics
Fuels and Combustion Fundamentals of Gas Dynamics
Gas Dynamics and Jet Propulsion Heat and Mass Transfer
Hydraulic, Pneumatic and Fluidic Controls I.C. Engines
Industrial Engineering and Operations Research I Industrial Noise Control
Intelligent Product Design and Manufacturing Interactive Computer Graphics for CAD-CAM Applicat
Introduction of Thermal Machines Introduction to CAD/CAM
Introduction to Mech.Engg. Introduction to Optimization
Kinematics and Dynamics of Machinery Kinematics of Machinery
Knowledge Based systems in Manufacturing Linear Systems Theory
Machine Design Machine Drawing
Machine Tool Design Machinery Vibration and Diagnostics
Maintenance Engineering Management Principles and Practice
Manufacturing Automation Manufacturing Planning and Control
Manufacturing Processes Manufacturing Technology
Marketing Management Material Removal Processes
Mathematical Methods for Mechanics and Dynamics Mathematics – III
Measurements Mechanization
Mechatronics MEMS - Design, Fabrication, and Characterisation
Metal Casting Technology Metal Forming Processes and Tools
Methods Engineering and Work Measurement Microfluidics
Modern concepts of Engineering Design Nonlinear Dynamics and Chaos
Non-Linear System Analysis and Control Non-Newtonian Fluid Mechanics & Industrial Applicatio
Nuclear Engineering Numerical Methods
Numerical Methods in Fluid Flow Problems Numerical Modelling of Manufacturing Processes
Operations Research Optimization Methods in Engineering Design
Power Plant Engineering Pressure Vessel Design
Principles and Applications of Tribology Principles of Management
Probability and Statistics Process Planning and Cost Estimation
Product Design and Costing Production Management
Production Planning and Control Professional Ethics and Human Values
Quality Control and Reliability Engineering Rapid Product Development
Refrigerated Storage and Transport Refrigeration and Airconditioning
Renewable Sources of Energy Robotics
Rotor Dynamics Selected Applications of Operations Research & Artificial Intelligence in Manufacturing Systems
Sheet Metal Engineering

Solar Energy Utilization

Solid Mechanics

Spark Ignition Engines

Steam and Gas Turbines

Steam Generators

Steam Turbines

Strength of Materials

Stress Analysis

Synthesis of Mechanisms

Textile Machines Design & Automation

Theory and Design of Fluid Machinery

Theory of Casting and Welding Processes

Theory of Machines and Machine Design

Thermal Engineering

Thermal Environmental Engg

Thermal Turbo Machines

Thermodynamics

Total Quality Management Transport Phenomenon in Porous Media

Two Phase flow and Heat Transfer

Ultra-Precision Machining

Unconventional Machining Processes

Vehicle Engineering

Vibration and Noise Control in Engineering

 
 
Laboratories :

Electrical Engineering Lab

Fluid Mechanics And Machinery Lab

Manufacturing Technology Lab

Strength Of Materials Lab

Electronics And Microprocessors Lab

Thermal Engineering Lab –I

Dynamics Lab

Metrology And Measurement Lab
Computer Aided Machine Drawing Practice

Thermal Engineering Lab II

Cad/Cam Lab

Design And Fabrication Project Computer Aided Simulation And Analysis Lab

Mechatronics Lab

 
 
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