Educational Journey
Jawaharlal Nehru Technological University Hyderabad College of Engineering
Ph.D in Mechanical Engineering • Mechanical Engineering
2022Experience
Assistant Professor(Sr)
2024 - Present • Mechanical EngineeringAssistant Professor
2017 - 2023 • Faculty of Science and TechnologyICFAI tech schools
0 - 0Affiliations
International Association of Engineers
Life Member
Member since 0Institution of Engineers (India)
Life Member
Member since 0Indian Society for Technical Education
Life Member
Member since 0Grants and Awards
National level Go-Kart Championship
Indian Society of New Era Engineers
Research
Manufacturing and Testing of Braking Material-AMC 3
Braking system is an integral part of automobile mechanism. for certain unique automobiles like go-kart systems, the braking system must be designed with accurate and material importance. this is done to keep in accordance with various parameters such as economy and weight of the automobiles etc. the braking systems have to provide enough force in order to decelerate by completely locking the wheels. the report concentrates on explaining the engineering aspects of designing a braking system and its material for go-kart. this report explains objectiveness, assumptions and calculations made in designing a go-kart braking system. A comparative study for the braking system made of grey cast iron (i.e; conventional material), Ti-alloy, 7.5 wt% WC and 7.5wt% TiC reinforced Ti-composite and 20% SiC reinforced Al-Cu alloy (AMC1) and 30% SiC reinforced Al-Cu alloy (AMC2) was done. The purpose of this project was to analyze the test results and implement a better perspective for the installation of braking system in a Go-Kart automobile mechanism. The test parameters considered are compressive strength, coefficient of friction, wear rate, specific heat, specific gravity etc. which are believed to be the most important parameters for the operation of a braking system.
Design and Analysis of Light Weight Agriculture Robot
Agriculture is the main source of food for human beings living on earth. The farmer who works in field facing lots of problems due to lack of machinery equipment and human labour. Agriculture robot which is light in weight, having high payload capacity with high speed and stability all these can be controlled in field using programming techniques fully. The body frame of Agriculture robot is made of glass fiber, which is lighter in weight and strength to weight ratio is high compared to the conventional materials like steel or aluminum. A dynamic model for a multipurpose Agriculture robot which is made of flexible parts will be developed. Drone acts as the main body controlling all works in fields providing the tasks which are controllable. Agriculture robot main task is to perform seed sowing of any agricultural crop mainly we have done work on maize crop. Agriculture robot may be further developed accordingly for the applications of other crops like cotton, mango, onions, and groundnut and also developed for Can performing tasks like plants spraying, cutting, pitting holes, harvesting, security causes, and inspecting crop. In air Agriculture robot works with all necessary operations of Pitch, Yaw and Roll and covers the future applications in different Missions.
