Mechanical Engineering Department

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Departmental Profile

Mechanical Engineering is a core discipline of Engineering that applies the principles and concepts of a variety of subjects like physics, engineering and materials science that aims to design, analyze, manufacture and maintain mechanical systems. It is one of the oldest and broadest disciplines of engineering that is applied in all sectors of our society.

By choosing Mechanical engineering department, one will join a dynamic community where he will be challenged and supported to achieve one’s goals. Mechanical engineering deals with design and production of tools, machines and all other mechanical equipment used in industries. Project work throughout the degree provides the opportunity to apply one’s design skills to real-world problems. The Department of Mechanical Engineering has been established in 2009 in our college. The Department offers a four years undergraduate course in Mechanical Engineering and a three-year Polytechnic Diploma in Mechanical Engineering. The total intake capacity for the Department is 90 in the undergraduate and 60 in the Polytechnic Diploma course.

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Courses Offered

Career Opportunities

Mechanical Engineering finds application in all fields of technology. It is one of the primitive branches of engineering which have remained always in demand and continue to be in future. This is why Mechanical trade is called as an Evergreen trade (branch). Mechanical engineers have always been needed as essential staff personal in various industries of both public and private sector. Mechanical engineering has a tremendous scope such as:

  • Automobile Industry
  • Cement Industry
  • Power Sector
  • Hydraulics
  • Manufacturing plants
  • Drilling and Mining Industry
  • Oil and Gas Industry
  • Aeronautical Industry
  • Biotechnology
  • Nanotechnology
  • Defense Sector
  • Government Sector
  • Research and Development.

Student Achievement

Infrastructure Details

1. Laboratories: The Mechanical Engineering department provides the latest knowledge to the students. All the laboratories cater to the needs of the students giving hands-on experience and the wide coverage of the subjects. The department has more than ten well-established laboratories. The names of labs are:

  • Work Shop: Machine Shop
  • Work Shop: Moulding Shop
  • Work Shop: Carpentry Shop
  • Work Shop: Black Smithy Shop
  • Work Shop: Fitting Shop
  • Work Shop: Welding
  • Basic Mechanical Engineering Lab
  • Strength of Material Lab
  • Thermal Engineering Lab
  • Theory of Machine Lab
  • Fluid of Mechanics Lab
  • Heat and Mass Transfer Lab
  • IC Engine Lab
  • Vibration Lab
  • RAC Lab

 

 

2. Departmental Library: Department have library other then Central Library. The departmental library having more than 200 reference and text book, which is easily accessible by the staff and students. One faculty member is assigned as Incharge of departmental library to keep library in proper shape.

Course Objective

  • To form graduates that will able to implement the engineering concepts for generating innovative ideas on design, development and analysis using advanced 3D modeling, manufacturing and simulation tools.
  • To form a responsible engineer capable of conducting sustainable, environment-friendly, innovative research and development in advanced domains.
  • To form graduates that will able to design solutions for complex and time consuming conventional mechanical process through multidisciplinary technologies and industrial automation with a focus on futuristic technologies.
  • To form graduates that will able to implement the concepts of automotive technology for troubleshooting, calibrating and testing of various electrical, electronic and fuel supply components of automobiles along with fabrication of SPVs.
  • To pursue career as practicing mechanical engineer in core mechanical or allied industries worldwide.
  • To enhancing the Employability skill by making the students capable of qualifying National Level Competitive examinations.
  • To meet the expectations of modern industries for catering the proliferating demand and rising quality standards.

List of seminars & workshops organized by department since last three years is as under:

  • Training on "CNC Machine" dated from 15 Dec 2019 to 01 Jan 2020 by Er. Vaibhav Soni.
  • Training on "FEM (software based)" dated from 24 Sept to 26 Sept 2019 by Mr Vijay Bagari
  • Training on "CAD" dated from 8th to 12th april 2019 by Mr Vijay Bagari
  • Training on "CNC Machine" dated from 14 Jan 2019 to 19 Jan 2019 by Er. Vaibhav Soni
  • Training on "Auto CAD" dated from 7th Jan to 12th Jan 2019 by Mr Vijay Bagari
  • Training on "Auto CAD" dated from 20 June 2018 by Mr Vijay Bagari
  • Workshop on "RAC Hands" dated from 3rd to 5th Oct 2018 by Mr Vijay Bagari
  • Workshop on "IC Engine Hands" dated from 14th to 16th Nov 2018 by Mr Vijay Bagari
  • Workshop on "Internal Combustion Engine" dated from 22 May 2017 by Mr Vijay Bagari
  • Workshop on "Robotics" dated 8th & 9th Sep 2017 by Globotices Team
  • Seminar on "Soft Skills and Personality Development" dated 28 Aug 2017 by Mr.Sumit Anand

Following is the list of some remarkable projects developed by students since last 3 years:

S. No.

Project Title

Group Members

Description of Project

1

Car Seat Shifting Mechanism For Reducing Chances For Injury

 Abhay Singh Parihar

Aniket Patel

Arpit Suman Singh

Mani Singh

Often during head-on collision in car accidents, the front portion of car (Engine) moves back towards the front passengers due to the impact. This causes the breakage in the dashboard and the driver’s legs get stuck, which in most cases have to be cut in order to free the driver from the debris. Also the upper body is severely damaged from the impact with the dashboard and steering wheel. So here, in our project, we aim to create a mechanism that can detect the movement of front body in case of accidents and secure the passengers from lethal harm.

2

Mechanum Wheels With Air Gun In Defense

Piyush Vinodiya             Sukhpreet Singh Matharoo

Mechanum wheels offer a means to implement Omni directional translation motion in a vehicle platform. As the wheel rotates, rollers around its circumference create a force directed at an angle relation to the plane rotation. Various combinations of wheel rotation velocities can provide a net force in any direction. this provide enhanced maneuverability in close quarters but id often limited to smoother surface as the wheels require many moving rollers that can become easily obstructed by debris. Application of this model rum from small hobby kits up to heavy duty industrial vehicles.

3

Design and Fabrication of Small Load Carrying Vehicle (Dukati Jeep)

Sharad Vishkarma, Ritesh Koshta

Pankaj Patel

This project aims at developing a mechanism for transportation of small load for one place to another place. This Project very suitable for small scale industry.

4

Quadcopters

Vidhi Sharma

Prateek Gupta

Unmanned Aerial Vehicles (UAVs) like drones and quadcopters have revolutionized flight. They help humans to take to the air in new, profound ways. The military use of larger size UAVs has grown because of their ability to operate in dangerous locations while keeping their human operators at a safe distance.  It is the unmanned air vehicles and playing a predominant role in different areas like surveillance, military operations, fire sensing, traffic control and commercial and industrial applications.

5

Hovercraft

Ayush Barasaiya

Nikesh Jain

Devish Sonone

Lavnesh Ganvir

A Hovercraft is a vehicle that flies like a plane but can float like a boat, can drive like a car but will traverse ditches and gullies as it is a flat terrain. A Hovercraft also sometimes called an air cushion vehicle because it can hover over or move across land or water surfaces while being held off from the surfaces by a cushion of air. A Hovercraft can travel over all types of surfaces including grass, mud, muskeg, sand, quicksand, water and ice .Hovercraft prefer gentle terrain although they are capable of climbing slopes up to 20%, depending upon surface characteristics.

6

Motorised Hydraulic Jack

Niket Kumar Thakur

Harsh Sahu

Bhupendra Bagri

Akash Patel

A jack is a device which is used to raise part of vehicle in order to facilitate vehicle maintenances or breakdown repairs.In normal jack system a mechanical jack is used for lifting the vehicles. The most common form is a car jack, garage jack, floor jack which lifts vehicles so that maintenance can be performed. Jacks are generally used to increase mechanical advantage (lifting the vehicle).Generally jacks undergo buckling when they reach maximum load conditions (as per the tests conducted by consumer affairs). For this reason, we have to develop the system which can use toggle jack which is automatic in operation using electric motor. Vehicle’s battery can be used as a source of power for this motor. Our research in this regard reveals the facts that mostly some difficult methods were adopted in lifting the vehicles for reconditioning.

7

Magnetic Gear Transmission

Ajay Shivani

Aamir Khan

Hubham Sahu 

The gears, where the power and torque transmissions are performed with no contact and with help of the magnetic forces, are called magnetic gears. With this gears, unlike the mechanical gear transmissions, there are no noise, vibrations and friction, so therefore, there is no need for lubrication and maintenance costs are considerably lower. This paper shows the outline of the magnetic gear development, their classification and characteristics, where the gear ratio and torque density are the most important.

8

Material Shifting Plant

Abhish Pandey

Adarsh Dwivedi

Aditya Gautam

Aditya Raj

Chhatrpal Patel

The purpose of this work is to develop a new methodology for automating the determination of a material handling system by combining knowledge based and optimization approaches. The proposed system extends previous concepts of minimization of operating cost by including the cost for reliability, performance and flexibility into total cost. Mathematical model of the cost for Availability, Reliability, Maintainability and capability of different MHE (Material Handling Equipment) is developed.

9

Design Of Hydraulic
Scissor Lifting Platform

Rohit Patel

Rohit Patel
Sachin Haldkar
Shantanu Verma
Sourabh Haldkar
Vineet Prajapati
Satish Chandra Jayaswal

The goal of this study was to apply the knowledge obtained from studying in the university and solve the substantial task of creating a design of the hydraulic scissors lifting platform. For this purpose a research of literature and articles was made, that contains missing information of the theoretical part of the problem.
The data was mainly taken from the internet, particularly from articles, digital copies of books and scientific works in a related field. The results of this research are presented in the first theoretical part of the thesis. Then to verify the validity of the theory the practice work was accomplished. The type of the platform and the design of the structure were selected. The selection of the material and calculations of the loads were performed and explained.

10

Vibration Feeder

Anuj Urmaiya

Ashish Shrivastava Ashish Patel

Akash Ravi

Abhishek Patel

The success of Automated Assembly in Mass Production hinges on the effective performance of automated high speed part positioned. One such part presenter is the conventional Vibratory Bowl Feeder (VBF). This project attempts to make progress in the development of a VBF.As earlier we use cross-pad assembly drive but it was not convenient as the error was more. So to overcome this problem we use small spring plate in the assembly drive.

11

Solar Air Conditioning System

Abhilash Kumar Chandrawanshi
Anand Singh Kushwaha
Arun Mishra
Arpit Rai

It is an innovative three-in-one technology that provides hot water, cooling and heating. It works by using heat from the sun and employs both desiccant and evaporative cooling technologies. Solar heat is first collected and stored as hot water, which can be used directly in the house. A portion of the hot water is diverted into the solar air-conditioning unit, which is used to either heat or cool the air coming into the building. Our solar air-conditioning system uses only a fraction of the electricity of current air-conditioning systems and halves greenhouse gas emission.

12

Spherical Wheel Drive

Sakshi Patel

Prashant Rai

Rohit Banswasi

Piyush Vinodiya

Jay Madavani

The spherical drive system idea is unlike any other vehicle that can be seen on the road today. Despite having seen spherically driven vehicles in futuristic movies such as I Robot, there has not been a huge push into the realm of the sphere. We believe that the versatility of the sphere drive can give us a whole new degree of freedom and safety that we have yet to discover.

13

Automatic Floor Cleaner

Ritu Sharma

Yashwant Rathore

Yoshita Koshik

Shubham Parhoa

Shresh Yadav

The project is used for domestic and industrial purpose to clean the surface automatically. When it is turned ON, it sucks in the dust by moving all around the surface (floor or any other area) as it passes over it. The controller is used to drive the motors and the suction units also a couple of sensors are used to avoid the obstacles. This can be useful in improving the lifestyle of mankind

14

Abrasive Jet Machinine

Sabrata Patel Swatanrata Bain

Ritik Sahu

 Aman Kumar Shukla

Abrasive jet machinine is the one of the modern machining process in various industries for difficult to machine materials. AJM is a non conventional machining process in which removal of material takes place by impact of high speed stream of abrasive particles carried in gas or air medium from a nozzle. the AJM is e1tensively used to cut shapes in hard and brittle materials.

15

Dual Clutch Transmission System

Vneesh Kachhi

Shivendra Phatak

Ravi Patel

Rajendra Phatak

A semi-automatic transmission (also known as clutch-less manual transmission, dual-clutch transmission, automated manual transmission, e-gear, shift-tronic, flappy paddle gearbox, or direct shift gearbox) is a system which uses electronic sensors, processors and actuators to do gear shifts on the command of the driver. This removes the need for a clutch pedal which the driver otherwise needs to depress before making a gear change, since the clutch itself is actuated by electronic equipment which can synchronize the timing and torque required to make gear shifts quick and smooth.

  • To form graduates that will able to implement the engineering concepts for generating innovative ideas on design, development and analysis using advanced 3D modeling, manufacturing and simulation tools.
  • To form a responsible engineer capable of conducting sustainable, environment-friendly, innovative research and development in advanced domains.
  • To form graduates that will able to design solutions for complex and time consuming conventional mechanical process through multidisciplinary technologies and industrial automation with a focus on futuristic technologies.
  • To form graduates that will able to implement the concepts of automotive technology for troubleshooting, calibrating and testing of various electrical, electronic and fuel supply components of automobiles along with fabrication of SPVs.
  • To pursue career as practicing mechanical engineer in core mechanical or allied industries worldwide.
  • To enhancing the Employability skill by making the students capable of qualifying National Level Competitive examinations.
  • To meet the expectations of modern industries for catering the proliferating demand and rising quality standards.

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