This paper is published in Volume-11, Issue-5, 2025
Area
Mechanical Engineering
Author
Aradhya Sharma
Org/Univ
Delhi Public School, Ghaziabad, Uttar Pradesh, India
Keywords
Centrifugal Projectile Launcher, Projectile Dynamics, Mechanical Design, Experimental Prototyping, Performance Analysis, Energy Efficiency, Rotational Mechanics, Launch Velocity, Trajectory Analysis, Ballistics, Applied Mechanics, Material Selection, Safety Features, Automation, Scientific Applications, Sports Technology, Industrial Applications.
Citations
IEEE
Aradhya Sharma. From Concept to Creation: Prototyping A Centrifugal Projectile Launcher and Analyzing Its Performance, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.
APA
Aradhya Sharma (2025). From Concept to Creation: Prototyping A Centrifugal Projectile Launcher and Analyzing Its Performance. International Journal of Advance Research, Ideas and Innovations in Technology, 11(5) www.IJARIIT.com.
MLA
Aradhya Sharma. "From Concept to Creation: Prototyping A Centrifugal Projectile Launcher and Analyzing Its Performance." International Journal of Advance Research, Ideas and Innovations in Technology 11.5 (2025). www.IJARIIT.com.
Aradhya Sharma. From Concept to Creation: Prototyping A Centrifugal Projectile Launcher and Analyzing Its Performance, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.
APA
Aradhya Sharma (2025). From Concept to Creation: Prototyping A Centrifugal Projectile Launcher and Analyzing Its Performance. International Journal of Advance Research, Ideas and Innovations in Technology, 11(5) www.IJARIIT.com.
MLA
Aradhya Sharma. "From Concept to Creation: Prototyping A Centrifugal Projectile Launcher and Analyzing Its Performance." International Journal of Advance Research, Ideas and Innovations in Technology 11.5 (2025). www.IJARIIT.com.
Abstract
This study presents the design, prototype, and performance analysis of a centrifugal projectile launcher. The research encompasses the conceptual design, key components, and manufacturing processes involved in creating the launcher. The design considerations include material selection, structural integrity, aerodynamics, and precision. The manufacturing process details the fabrication of the rotating arm, integration of the motor and power source, development of the projectile release mechanism, and implementation of safety features. Extensive testing was conducted to evaluate the launcher's performance, analysing parameters such as rotation speed, projectile shape and other characteristics. The results provide insights into its launch velocity, revolutions per minute, precision, and energy efficiency. The study also explores potential future applications and improvements, including advanced materials, automated systems, and scaling possibilities. This research contributes to the understanding of centrifugal projectile launchers and their potential applications in scientific research, sports, and industry.
