

B-TECH in Mechanical Engineering Manufacturing Engineering at Vellore Institute of Technology


Vellore, Tamil Nadu
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About the Specialization
What is Mechanical Engineering (Manufacturing Engineering) at Vellore Institute of Technology Vellore?
This Mechanical Engineering program at VIT, with a strong focus on Manufacturing Engineering, equips students with the skills to design, analyze, and optimize production processes and systems. It''''s highly relevant in the Indian industry, which is experiencing significant growth in sectors like automotive, aerospace, and consumer goods. The program emphasizes advanced manufacturing techniques and smart factory concepts.
Who Should Apply?
This program is ideal for fresh graduates seeking entry into India''''s booming manufacturing sector, particularly in roles involving production, quality control, and R&D. It also suits working professionals looking to upskill in areas like automation and industrial IoT. Students with a strong aptitude for design, problem-solving, and process optimization will find this specialization particularly rewarding.
Why Choose This Course?
Graduates of this program can expect diverse career paths in India, including Production Engineer, Manufacturing Engineer, Quality Assurance Engineer, CAD/CAM Specialist, and Supply Chain Analyst. Entry-level salaries range from INR 4-7 LPA, growing significantly with experience. This specialization aligns with certifications in Lean Manufacturing, Six Sigma, and Industry 4.0 technologies, enhancing career growth in Indian companies.

Student Success Practices
Foundation Stage
Build Strong Engineering Fundamentals- (Semester 1-2)
Focus on mastering core subjects like Engineering Mechanics, Thermodynamics, and Material Science. Utilize textbooks, online tutorials from platforms like NPTEL, and peer study groups to clarify concepts. Participate in departmental quizzes to solidify understanding.
Tools & Resources
NPTEL courses, MIT OpenCourseWare, VIT''''s internal learning platforms, Study groups
Career Connection
A strong foundation is critical for advanced manufacturing courses and provides the bedrock for problem-solving in industrial settings, ensuring readiness for core engineering roles.
Develop Practical Workshop Skills- (Semester 1-2)
Actively engage in workshop practice sessions (e.g., ME1002). Learn to operate basic machinery safely and understand fundamental manufacturing processes firsthand. Seek additional time in workshops or join relevant clubs for hands-on experience.
Tools & Resources
University Workshops, YouTube tutorials for specific processes, Faculty/Technician guidance
Career Connection
Practical skills are highly valued by Indian manufacturers, enabling easier transition into shop-floor and production roles during internships and placements.
Enhance Programming and CAD Basics- (Semester 1-2)
Supplement initial programming courses (CS1001) with CAD software training. Start learning a professional CAD package (e.g., SolidWorks, AutoCAD, CATIA) through online courses or VIT''''s CAD labs. Practice creating basic mechanical designs.
Tools & Resources
AutoCAD/SolidWorks/CATIA tutorials, Coursera/edX courses, VIT CAD Labs
Career Connection
Proficiency in CAD is essential for product design and manufacturing roles, making you competitive for design engineering positions in various Indian industries.
Intermediate Stage
Specialize in Core Manufacturing Concepts- (Semester 3-5)
Deep dive into subjects like Manufacturing Processes I & II, Metrology and Quality Control, and CAD/CAM. Pay close attention to the mechanisms and applications of various machining, forming, and joining processes. Explore relevant programme electives in manufacturing.
Tools & Resources
NPTEL Advanced Manufacturing courses, Industry journals (e.g., Journal of Manufacturing Processes), VIT''''s specialized labs
Career Connection
Building expertise here directly prepares you for roles in production, process planning, quality assurance, and manufacturing systems engineering within India''''s diverse industrial landscape.
Seek Industry Exposure through Internships- (Semester 4-6)
Actively apply for summer internships in manufacturing companies in India (e.g., automotive, heavy machinery, consumer electronics). Even short-term projects or shadowing experiences can provide invaluable insights into real-world manufacturing challenges.
Tools & Resources
VIT Career Development Centre (CDC), LinkedIn, Internshala, Company websites
Career Connection
Internships convert theoretical knowledge into practical experience, significantly boosting employability and network building for placements in Indian companies.
Participate in Technical Competitions & Projects- (Semester 3-5)
Join student clubs (e.g., SAE India, Robotics Club) and participate in design and manufacturing competitions like Baja SAE, Formula Student, or hackathons focused on smart manufacturing. Undertake mini-projects related to process optimization or product development.
Tools & Resources
SAE India, ASME, ISTE student chapters, Departmental project funds
Career Connection
Showcases initiative, problem-solving abilities, and teamwork – highly valued by recruiters for R&D, design, and manufacturing roles.
Advanced Stage
Master Advanced Manufacturing Technologies- (Semester 6-8)
Focus on elective subjects like Additive Manufacturing, Industrial Automation, Robotics, or Mechatronics. Gain hands-on experience with relevant software (e.g., ANSYS for FEA, specialized CAM software) and hardware. Pursue certifications in Industry 4.0 related tools.
Tools & Resources
Specialized software training (ANSYS, SolidWorks Simulation), Robotics kits, Online courses on IoT/AI in manufacturing
Career Connection
Positions you for cutting-edge roles in smart factories, automation, and advanced R&D within high-tech manufacturing firms in India.
Undertake a Comprehensive Manufacturing Project- (Semester 7-8)
Choose a final year project (ME4099/ME4098) that involves a real-world manufacturing challenge: design and fabrication of a component, optimization of a production line, or development of an automated system. Document thoroughly and present findings professionally.
Tools & Resources
Project funding from VIT/external agencies, Faculty mentorship, Access to advanced lab equipment
Career Connection
A strong project demonstrates your ability to apply engineering principles to complex problems, significantly enhancing your profile for placements and higher studies.
Prepare for Placements and Professional Development- (Semester 6-8)
Attend placement training sessions focusing on aptitude, technical interviews, and group discussions. Network with alumni and industry professionals. Polish your resume and LinkedIn profile to highlight manufacturing-specific skills and projects. Consider learning a foreign language for global opportunities.
Tools & Resources
VIT CDC services, Mock interview platforms, LinkedIn, Alumni network
Career Connection
Systematic preparation ensures you effectively showcase your skills and secure desirable positions in India''''s competitive job market, or gain admission to top graduate programs.
Program Structure and Curriculum
Eligibility:
- Minimum 60% aggregate in Physics, Chemistry, and Mathematics (or Biology/Biotechnology for some courses) in 10+2/Intermediate. Must appear for VITEEE.
Duration: 8 semesters / 4 years
Credits: 160 Credits
Assessment: Internal: 50%, External: 50%
Semester-wise Curriculum Table
Semester 1
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA1001 | Calculus and Matrix Algebra | Core | 4 | Differential Calculus, Integral Calculus, Matrices, Vector Calculus, Eigenvalues and Eigenvectors |
| PH1001 | Engineering Physics | Core | 4 | Quantum Mechanics, Crystal Physics, Semiconductor Physics, Dielectric and Magnetic Materials, Lasers and Fiber Optics |
| BT1011 | Biology for Engineers | Core | 2 | Cell Biology, Genetics and Biotechnology, Bioenergetics, Human Physiology, Environmental Biotechnology |
| CS1001 | Introduction to Problem Solving and Programming | Core | 4 | Problem Solving Techniques, C Programming Basics, Control Structures, Functions and Arrays, Pointers and Structures |
| GE1001 | Engineering Graphics | Core | 2 | Orthographic Projections, Sectional Views, Isometric Views, AutoCAD Basics, Geometric Dimensioning and Tolerancing |
| EN1001 | English for Engineers | Core | 2 | Technical Communication, Report Writing, Presentation Skills, Grammar and Vocabulary, Reading Comprehension |
| CH1001 | Engineering Chemistry | Core | 4 | Water Technology, Electrochemistry, Corrosion, Fuel Chemistry, Polymer Chemistry |
| SSLL01 | Soft Skills I | Soft Skill | 1 | Self-awareness, Goal Setting, Time Management, Emotional Intelligence, Interpersonal Skills |
Semester 2
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA1002 | Differential Equations and Transforms | Core | 4 | Ordinary Differential Equations, Partial Differential Equations, Laplace Transforms, Fourier Series, Z-Transforms |
| ME1001 | Elements of Mechanical Engineering | Core | 3 | Thermodynamics Basics, Fluid Mechanics Principles, Power Plants, Refrigeration and Air Conditioning, Manufacturing Processes Overview |
| EE1001 | Basic Electrical and Electronics Engineering | Core | 4 | DC Circuits, AC Circuits, Transformers, Semiconductor Devices, Digital Electronics |
| CS1002 | Data Structures and Algorithms | Core | 4 | Arrays and Linked Lists, Stacks and Queues, Trees and Graphs, Sorting Algorithms, Searching Algorithms |
| GE1002 | Environmental Sciences | Core | 2 | Ecosystems, Biodiversity, Pollution Control, Sustainable Development, Environmental Management |
| ME1002 | Workshop Practice | Lab | 2 | Fitting and Carpentry, Welding Techniques, Sheet Metal Operations, Foundry Practices, Machining Operations |
| SSLL02 | Soft Skills II | Soft Skill | 1 | Critical Thinking, Problem Solving, Decision Making, Teamwork, Communication Strategies |
Semester 3
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME2001 | Engineering Mechanics | Core | 4 | Statics of Particles and Rigid Bodies, Equilibrium, Friction, Dynamics of Particles, Work and Energy |
| ME2002 | Solid Mechanics | Core | 4 | Stress and Strain, Elastic Constants, Bending Moments and Shear Forces, Torsion, Deflection of Beams |
| ME2003 | Engineering Thermodynamics | Core | 4 | Laws of Thermodynamics, Entropy, Availability, Properties of Pure Substances, Power Cycles (Carnot, Rankine) |
| ME2004 | Material Science and Engineering | Core | 3 | Atomic Structure and Bonding, Crystal Structures, Mechanical Properties of Materials, Heat Treatment of Metals, Non-metallic Materials |
| ME2005 | Manufacturing Processes I | Core | 3 | Casting Processes, Forming Processes, Welding Technologies, Powder Metallurgy, Additive Manufacturing Introduction |
| ME2006 | Machine Drawing | Core | 2 | Limits, Fits and Tolerances, Surface Finish Symbols, Assembly Drawings, Sectional Views of Machine Parts, Detailing of Machine Components |
| SSLL03 | Soft Skills III | Soft Skill | 1 | Professional Etiquette, Resume Building, Interview Skills, Public Speaking, Conflict Resolution |
Semester 4
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME2007 | Fluid Mechanics and Machinery | Core | 4 | Fluid Properties, Fluid Statics, Fluid Dynamics, Turbines and Pumps, Dimensional Analysis |
| ME2008 | Theory of Machines | Core | 4 | Kinematics of Mechanisms, Dynamics of Machines, Cams and Followers, Gears and Gear Trains, Balancing of Rotating Masses |
| ME2009 | Heat Transfer | Core | 4 | Conduction Heat Transfer, Convection Heat Transfer, Radiation Heat Transfer, Heat Exchangers, Phase Change Heat Transfer |
| ME2010 | Manufacturing Processes II | Core | 3 | Machining Principles, Lathe, Milling, Drilling Operations, Grinding and Finishing, CNC Machining, Non-traditional Machining |
| ME2011 | Measurements and Instrumentation | Core | 3 | Metrology Principles, Linear and Angular Measurements, Temperature and Pressure Measurement, Strain Gauges, Transducers |
| SSLL04 | Soft Skills IV | Soft Skill | 1 | Corporate Communication, Emotional Intelligence, Presentation Excellence, Leadership Skills, Negotiation Skills |
| MA3001 | Probability and Statistics | Core | 4 | Probability Distributions, Sampling Distributions, Hypothesis Testing, Regression Analysis, Design of Experiments |
Semester 5
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME3001 | Design of Machine Elements | Core | 4 | Stress Concentration, Failure Theories, Design of Shafts and Couplings, Design of Bearings, Design of Springs and Fasteners |
| ME3002 | Automobile Engineering | Core | 3 | Engine Systems, Transmission Systems, Braking Systems, Steering and Suspension, Electric and Hybrid Vehicles |
| ME3003 | Metrology and Quality Control | Core | 3 | Limits, Fits and Tolerances, Geometric Dimensioning and Tolerancing, Statistical Process Control, Control Charts, Quality Management Systems (TQM, ISO) |
| ME3004 | Computer Aided Design (CAD) | Core | 3 | Geometric Modeling, Transformations, Surface and Solid Modeling, Assembly Modeling, CAD Software Applications |
| ME3XXX | Programme Elective I (Manufacturing Focus) | Elective | 3 | Advanced Manufacturing Processes, Additive Manufacturing, Flexible Manufacturing Systems, Micro and Nano Manufacturing, Green Manufacturing |
| HMXXXX | University Elective I | Elective | 3 | Generic Elective |
| SSLL05 | Soft Skills V | Soft Skill | 1 | Group Discussion Skills, Advanced Interview Techniques, Professional Networking, Stress Management, Entrepreneurial Thinking |
Semester 6
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME3005 | Dynamics of Machinery | Core | 4 | Vibrations, Balancing of Reciprocating Engines, Gyroscopic Effects, Governors and Flywheels, Dynamic Force Analysis |
| ME3006 | Operations Research | Core | 3 | Linear Programming, Transportation and Assignment Problems, Network Models, Queuing Theory, Simulation |
| ME3007 | Computer Aided Manufacturing (CAM) | Core | 3 | NC/CNC Programming, Tool Path Generation, Computer Integrated Manufacturing (CIM), Process Planning, Robotics in Manufacturing |
| ME3XXX | Programme Elective II (Manufacturing Focus) | Elective | 3 | Tool Design, Jigs and Fixtures, Precision Manufacturing, Supply Chain Management, Industrial Automation and Control |
| ME3XXX | Programme Elective III (Manufacturing Focus) | Elective | 3 | Robotics and Automation, Mechatronics, Design for Manufacturability (DFM), Rapid Prototyping, Sensors and Actuators |
| HMXXXX | University Elective II | Elective | 3 | Generic Elective |
| ME3099 | Summer Industrial Internship | Project | 2 | Industrial Exposure, Practical Application, Report Writing, Problem Solving in Industry, Professional Communication |
Semester 7
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME4001 | Finite Element Analysis | Core | 3 | Variational Principles, FEM Formulation, 1D and 2D Elements, Applications in Stress Analysis, Heat Transfer Applications |
| ME4XXX | Programme Elective IV (Manufacturing Focus) | Elective | 3 | Industrial Management, Production Planning and Control, Logistics and Supply Chain Management, Total Quality Management, Ergonomics and Work Study |
| ME4XXX | Programme Elective V (Manufacturing Focus) | Elective | 3 | Advanced Robotics, Machine Vision, Internet of Things in Manufacturing, Big Data Analytics in Manufacturing, Cyber-Physical Systems for Industry 4.0 |
| ME4099 | Project Work I | Project | 6 | Problem Identification, Literature Review, Methodology Development, Experimental Setup, Data Analysis and Reporting |
| HMXXXX | University Elective III | Elective | 3 | Generic Elective |
Semester 8
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME4098 | Project Work II (Manufacturing Focus) | Project | 10 | Advanced Research Methodology, Prototype Development, Performance Evaluation, Design Optimization, Technical Report and Presentation |
| HMXXXX | University Elective IV | Elective | 3 | Generic Elective |




