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M.Tech. Mechanical Engineering with Specialization in Production Technology

program-details

School of Engineering and Technology, CT University offers 2 years Master of Technology in Mechanical Engineering Programme. In this program, students receive an in-depth education on Production engineering at a professional level. Designing and installation of integrated systems for equipment, human and materials, and processes are an important aspect of this program in order to increase the productivity of goods and students additionally get hands-on experience with latest technology and materials used in this field.This program offers a wide range of job opportunities like Plant engineer, Quality engineer, Industrial Manager, Process engineer, Operation analyst etc.

eligibility criteria

B.E/B.Tech (CSE/IT/ECE) or MCA or M.Sc. (IT/ Computer Science) from a recognized university with atleast 50% marks

Admission criteria

Merit in CT-SET, subject to fulfilling eligibility criteria.

Duration

2 Years

Curriculum

1ST SEMESTER SUBJECTS

Covers the principles of metal cutting and forming processes, including cutting mechanics, tool materials, tool life, machining parameters, and metal forming techniques for efficient manufacturing of engineering components.

Explores advanced engineering materials, including composites, ceramics, polymers, smart materials, and advanced alloys, with emphasis on their properties, processing, selection, and applications in modern engineering systems.

Develops systematic approaches to engineering research, covering research design, literature review, experimental methods, data analysis, technical writing, and research ethics for effective investigation of engineering problems.

Examines advanced welding processes, principles, equipment, weldability, defects, inspection, and process parameters, enabling students to select and apply suitable welding techniques for engineering applications.

Develops practical skills in welding processes through hands-on experimentation, enabling students to understand welding parameters, prepare joints, evaluate weld quality, and identify common welding defects.

Initiates the research process through problem identification, literature review, formulation of objectives, research methodology, and preliminary investigation, establishing a foundation for advanced research work.

2ND SEMESTER SUBJECTS

Covers the principles and advanced practices of metal casting, including pattern design, moulding, melting, solidification, casting defects, and process selection for the production of quality cast components.

Provides practical experience in casting operations, including pattern making, mould preparation, melting, pouring, and inspection, enabling students to understand process parameters and evaluate casting quality.

Examines friction, wear, and lubrication phenomena in industrial systems, with emphasis on tribological mechanisms, lubricant selection, wear prevention, and techniques for improving the reliability and efficiency of machinery.

Advances the research work initiated in the first semester through detailed investigation, experimentation or analysis, interpretation of results, and documentation of findings in preparation for the dissertation.

Enables students to pursue specialized knowledge in a selected area of production technology, allowing them to develop advanced technical expertise aligned with their academic and professional interests.

Offers advanced study in a specialized area of production technology, supporting deeper understanding and application of contemporary manufacturing concepts and technologies.

3RD SEMESTER SUBJECTS

Integrates computer-based techniques for product design and manufacturing, covering CAD modeling, design analysis, process planning, and computer-aided manufacturing for efficient and advanced production systems.

Develops practical proficiency in CAD and CAM through hands-on exercises involving 3D modeling, engineering drawings, design applications, process planning, and computer-aided manufacturing tools.

Examines modern techniques for condition monitoring, fault diagnosis, and predictive maintenance of industrial machinery, enabling students to assess equipment health and improve reliability and operational efficiency.

Focuses on systematic literature review and identification of research gaps related to the selected dissertation topic, establishing the research objectives, scope, methodology, and theoretical foundation for further investigation.

Provides an opportunity to pursue advanced specialized study within mechanical engineering and production technology, enabling students to develop expertise in a selected technical domain.

Offers specialized learning in an advanced area of mechanical engineering, supporting the development of domain-specific knowledge and skills relevant to contemporary industrial and research applications.

4TH SEMESTER SUBJECTS

Enables students to undertake comprehensive independent research involving problem formulation, methodology, experimentation or analysis, interpretation of results, and technical documentation to demonstrate advanced research and problem-solving capabilities.

fees

Details

Amount

Programme Fees (per Semester)

60000

Examination Fees

3000

International Fees (per Year)

$5300

Fee Slab

Slab >=60% - 74.99% >=75% - 89.99% >=90% & Above
Fee ₹55000 ₹50000 ₹45000

Students can avail these slots depending on the marks they have scored. Each slot reflects a different academic range, helping students understand where they stand and what benefits they qualify for.

Programme Outcomes

  • An ability to independently carry out research /investigation and development work to solve practical problems related to Production Engineering
  • Design and validate technological solutions to defined problems and write clearly and effectively for the practical utilization of their work.
  • Acquire fundamental knowledge and understanding of Production and Industrial Engineering.
  • Acquire abilities and capabilities in the areas of advanced manufacturing methods, quality assurance and shop floor management..
  • The ability to apply creativity in designing manufacturing systems, components and processes.
  • Meaningful industrial exposure in the area of Production department.
  • Formulate relevant research problems; conduct experimental and/or analytical work and analyzing results using modern mathematical and scientific methods
  • Environment and sustainability: Apply Mechanical engineering solutions also for sustainable development practices in societal and environmental contexts.
  • Ethics: Apply ethical principles for commitment to professional ethics, responsibilities and norms of the practice also in the field of production engineering.
  • Engineering Knowledge - Apply mathematics, science, engineering fundamentals, and specialized knowledge to solve complex engineering problems.

Programme Specific Outcomes

  • Demonstrate the ability to Formulate and Solve Production Related Problems by applying Fundamental Principles
  • Demonstrate ability to Design and Conduct Experiments, Interpret and Analyzes Data and Report Results.
  • Demonstrate ability to Design and Develop a Process.
  • Capability of building efficient energy conversion systems using basic understanding of Thermodynamics, refrigeration and Fluid Mechanics.
  • Use latest Mechanical engineering related software for simple design, drafting, manufacturing, maintenance and documentation of production engineering components and processes.

Salient Features

  • To impart knowledge to students in the latest technological topics on Production and Industrial Engineering and to provide them with opportunities in taking up advanced topics of the field of study.
  • To create a congenial environment that promotes learning, growth and imparts ability to work with inter-disciplinary groups in professional, industry and research organizations.
  • To broaden and deepen their capabilities in analytical and experimental research methods, analysis of data, and drawing relevant conclusions for scholarly writing and presentation.
  • To broaden and deepen their capabilities in analytical and experimental research methods, analysis of data, and drawing relevant conclusions for scholarly writing and presentation.
  • Create Awareness of Societal Impact and Professional Ethics.

Infrastructure