Course Overview

Creating exceptional Mechanical Engineering talent, preparing graduates for leadership positions through a rigorous and innovative curriculum.

Mechanical Engineering at KIT: Practical Education for Future Innovators

KIT's Mechanical Engineering program delivers a comprehensive education that equips graduates with practical skills, industry-aligned knowledge, and a strong ethical foundation. Through hands-on learning opportunities and robust industry partnerships, our program cultivates well-rounded engineers capable of addressing complex challenges.

The curriculum aims to develop skilled engineers with practical experience, industry readiness, and a strong commitment to innovation.

  • Offers fundamental topics such as fluid mechanics and machinery, thermodynamics, strength of materials, manufacturing processes, as well as computer aided design and computer aided production.
  • Enables students to select from a range of disciplines, including design engineering, manufacturing engineering, and thermal engineering.
  • Offers practical education in fields such as additive manufacturing, automotive engineering, and material analysis.
  • Incorporate classes that focus on improving employability, managing projects, and understanding ethics.

Why study Mechanical Engineering at Kangeyam Institute of Technology?

Industry-Relevant Curriculum

Gain expertise through hands-on projects, workshops, and industry collaborations for real-world application

Exceptional Career Opportunities

Benefit from exemplary placement records and extensive industry tie-ups for lucrative career prospects.

Holistic Development

Experience a nurturing environment fostering leadership, ethics, and values alongside academic excellence.

Future Aspects of Mechanical Engineering

Graduates can anticipate diverse career opportunities in fields such as automotive, aerospace, renewable energy, and robotics. With the rise of automation and sustainable technologies, mechanical engineers will play pivotal roles in designing eco-friendly systems, advancing artificial intelligence integration, and pioneering new manufacturing techniques. Moreover, the interdisciplinary nature of mechanical engineering ensures adaptability to emerging sectors like biotechnology and nanotechnology, offering a promising landscape for innovation and career growth.

Details

Vision: To produce professionaly driven mechanical engineers through innovative research and collaboration, to excel in the ever-demanding industrial sector to make meaningful contribution to society.

Mission:

  • To create Mechanical Engineering professionals with world class knowledge, critical thinking, innovation and research skills.
  • To foster a diverse and inclusive environment that promotes advancement in technology-based engineering.
  • To extend advanced technical solutions to society for upcoming challenges.

  • PEO 1 : Graduates will demonstrate proficiency in applying advanced mechanical engineering knowledge, and skills to innovate, design, and solve complex technical problems in industry.
  • PEO 2 : Graduates will demonstrate effective leadership, teamwork, and commitment to ethical practices and sustainability.
  • PEO 3 : Graduates will pursue lifelong learning, adapt to technological advancements, and contribute to global engineering solutions.

  • Engineering knowledge : Apply knowledge of mathematics, natural science, computing, engineering fundamentals and an engineering specialization to develop to the solution of complex engineering problems.
  • Problem analysis : Identify, formulate, review research literature, and analyze complex engineering problems reaching substantiated conclusions with consideration for sustainable development.
  • Design/development of solutions : Design creative solutions for complex engineering problems and design/develop systems/components/processes to meet identified needs with consideration for the public health and safety, whole-life cost, net zero carbon, culture, society and environment as required.
  • Conduct investigations of complex problems : Conduct investigations of complex engineering problems using research-based knowledge including design of experiments, modelling, analysis & interpretation of data to provide valid conclusions.
  • Engineering Tool Usage : Create, select, and apply appropriate techniques, resources, and modern engineering & IT tools, including prediction and modelling recognizing their limitations to solve complex engineering problems.
  • The Engineer and The World : Analyze and evaluate societal and environmental aspects while solving complex engineering problems for its impact on sustainability with reference to economy, health, safety, legal framework, culture and environment.
  • Ethics : Apply ethical principles and commit to professional ethics, human values, diversity and inclusion to national & international laws.
  • Individual and Collaborative Team work : Function effectively as an individual, and as a member or leader in diverse teams/ multi-disciplinary teams.
  • Communication : Communicate effectively and inclusively within the engineering community and society at large, such as being able to comprehend and write effective reports and design documentation, make effective presentations considering cultural, language, and learning differences.
  • Project Management and Finance : Apply knowledge and understanding of engineering management principles and economic decision-making and apply these to one’s own work, as a member and leader in a team, and to manage projects and in multidisciplinary environments.
  • Life-Long Learning : Recognize the need for, and have the preparation and ability for (i) independent and life-long learning, (ii) adaptability to new and emerging technologies and (iii) critical thinking in the broadest context of tecbological change.

  • PSO 1 : Design and develop mechanical systems and components through advanced engineering principles and tools for diverse applications.
  • PSO 2 : Implement the acquired knowledge in manufacturing process, automation and quality assurance.
  • PSO 3 : Design and develop thermal systems using principles of thermodynamics, heat transfer, and fluid mechanics.

60

Intake

4

Years of Study

Newsletter - Jan 23

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Newsletter - Jan 24

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S.No. Name Category Email ID Position Address

S.No. Name of the Staff Designation Profile
1
Dr. Manoj Kumar P Dr. Manoj Kumar P
Head of the Department View Profile
2
Dr. Somasundaram P Dr. Somasundaram P
Professor View Profile
3
Dr. Ramesh Kumar.R Dr. Ramesh Kumar.R
Professor View Profile
4
Dr. Saji Raveendran P Dr. Saji Raveendran P
Associate Professor View Profile
5
Dr. Prabhu L Dr. Prabhu L
Associate Professor View Profile
6
Dr. Prakash C Dr. Prakash C
Associate Professor View Profile
7
Mr. Sivaraj C Mr. Sivaraj C
Assistant Professor (Sl.Gr.) View Profile
8
Mr. Suresh M Mr. Suresh M
Assistant Professor (Sl.Gr.) View Profile
9
Mr. Thirumalaikumaran A Mr. Thirumalaikumaran A
Assistant Professor (Sl.Gr.) View Profile
10
Dr. Suresh Kannan V Dr. Suresh Kannan V
Associate Professor View Profile
11
Mr. Boopathy M Mr. Boopathy M
Assistant Professor (Sl.Gr.) View Profile
12
Dr. Satheeshkumar P Dr. Satheeshkumar P
Assistant Professor (Sr.Gr.) View Profile
13
Dr. Prem Kumar M Dr. Prem Kumar M
Assistant Professor (Sr.Gr.) View Profile
14
Mr. Muruganandhan P Mr. Muruganandhan P
Assistant Professor (Sr.Gr.) View Profile
15
Dr. Sabari K Dr. Sabari K
Assistant Professor (Sr.Gr.) View Profile

Partnerships for Progress: Bridging Academia and Industry

Kangeyam Institute of Technology has established MoUs with renowned organizations and industry leaders, facilitating exclusive access to internships, projects, and cutting-edge technologies for our students. These partnerships enhance educational outcomes and career prospects, embedding practical industry insights directly into our curriculum.

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Mechanical Engineering Association (MEA)

The Mechanical Engineering Association (MEA) at KIT nurtures student’s aspirations by providing diverse opportunities to participate in design competitions, workshops, technical talks, project showcases and seminar. These activities are designed to bolster their practical skills and deepen their engineering knowledge. The MEA initiatives not only bridge the gap between academic learning and industry practices but also inspire students to innovate and excel in the field of Mechanical Engineering, preparing them for successful careers and fostering a strong foundation for their future endeavours.

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Enriching Expertise: Value-Added Courses in Mechanical Engineering

Kangeyam Institute of Technology's B.E. in Mechanical Engineering focuses on building dreams through a blend of theoretical knowledge and hands-on experience in designing and manufacturing mechanical systems, equipping students for diverse engineering careers.

Expanding Horizons: Connecting Students with Professional Bodies

To ensure our students stay at the forefront of industry and research developments, we actively encourage them to join highly reputed professional bodies. This engagement provides invaluable exposure to the latest advancements and networking opportunities in their fields.

SAE (Society of Automotive Engineers)
ISTE (Indian Society for Technical Education)
ISME (Indian Society of Mechanical Engineers)
SESI (Solar Energy Society of India)
IE(I) (Institution of Engineers, India)
IAENG (International Association of Engineers)

Laboratory

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CAM Lab

Computer-Aided Manufacturing (CAM) lab is a specialized facility...

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Thermal Engineering Laboratory

The laboratory conducts a range of experiments focused on underst...

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Special Machines Laboratory

The laboratory specializes in practical exercises that enhance ma...

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Metrology and Measurements Laboratory

Calibration and Use of Linear Measuring Instruments involves the...

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Dynamics Laboratory

Dynamics Laboratory is equipped with various equipments such as g...

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CAD Laboratory

Computer-Aided Design (CAD) lab is a specialized facility equippe...

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Engineering Practice Laboratory

Engineering Practice Lab is an essential component that has been...

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Heat and Mass Transfer Laboratory

Heat and Mass Transfer Lab is a place where the fundamentals of t...

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Lathe Shop

In the realm of machining, Lathe Shop is recognised as a place wh...

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Mechatronics Laboratory

The laboratory focuses on a variety of experiments that delve int...