Department of Mechanical Engineering

Department of Mechanical Engineering


Eligibility

Candidates should have completed 10+2 with Physics, Chemistry, and Mathematics from a recognized board.

Overview

The B.E. Mechanical Engineering course focuses on the design, development, and maintenance of mechanical systems. It combines theoretical knowledge with practical skills to prepare students for diverse industries, including automotive, aerospace, manufacturing, and energy.

Program Description

The course encompasses thermodynamics, fluid mechanics, material science, machine design, and robotics. Students are trained to analyze, design, and innovate mechanical systems, with an emphasis on sustainability and modern technology.

Awards and Accreditations

Upon successful completion, students receive a B.E. degree in Mechanical Engineering, accredited by CHRIST IMPERIAL INSTITUTE OF MANAGEMENT AND SCIENCE.

Program code: 090
Course code : 4190
Course Commencement : Sep 2024

Admissions Office

CHRIST IMPERIAL INSTITUTE OF MANAGEMENT AND SCIENCE
Ramasandra Main Rd, Kengri Hobli, Sulikere
Post - Ramasandra
Bengaluru, Karnataka, India - 560056
P : +91 9845632009 || P : +91 9845006824

Curriculum Structure
  • Engineering Mathematics I
  • Engineering Physics
  • Basic Mechanical Engineering
  • Environmental Studies
  • Workshop Practice
  • Engineering Mathematics II
  • Engineering Chemistry
  • Fluid Mechanics
  • Engineering Thermodynamics
  • Machine Drawing
  • Mechanics of Materials
  • Manufacturing Processes
  • Kinematics of Machinery
  • Heat Transfer
  • Engineering Materials
  • Dynamics of Machinery
  • Machine Design
  • Fluid Power Engineering
  • Advanced Manufacturing
  • Open Elective
  • CAD/CAM
  • Mechatronics
  • Internal Combustion Engines
  • Internship/Industry Project
  • Capstone Project
  • Renewable Energy Systems
  • Professional Practices in Mechanical Engineering
Course Highlights
  • Hands-on experience with software like SolidWorks, ANSYS, and MATLAB.
  • Collaboration with industries for real-world projects.
  • Focus on emerging areas such as robotics, automation, and additive manufacturing.
  • Industrial visits and workshops.
Career Enhancement Programs
  • Training in automation and robotics.
  • Certification in CAD/CAM and finite element analysis.
  • Seminars on energy-efficient systems and smart manufacturing.
Career Outcomes

Graduates can pursue the following roles:

  • Mechanical Engineer
  • Design Engineer
  • Manufacturing Engineer
  • Automation Specialist
  • Quality Control Engineer
  • Energy Consultant