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Abstract- Cleaning floors is an essential activity in homes, offices, hospitals, and industries. Traditional floor cleaning requires manual effort, which can be time-consuming and tiring.The Automatic Floor Cleaner Machine project focuses on designing and developing a simple and cost‑effective machine that can assist in cleaning floors efficiently with minimal human effort. This report explains the design, construction, working principle, advantages, limitations, and future improvements of the automatic floor cleaner machine. The system uses a mechanical frame, wheels, a motor-driven cleaning brush, and a simple mechanism that allows the machine to move and clean simultaneously. The aim of this project is to demonstrate automation in the cleaning systems. This paper presents the design and development of an automatic floor cleaner machine using mechanical transmission systems. It integrates components such as DC motor, belt drive, bevel gear, and cleaning mechanism for efficient operation. Cleaning is an essential activity in daily life, but conventional methods require significant human effort and time. This paper presents the design and development of an automatic floor cleaner machine using a mechanical and electromechanical system. The proposed system integrates components such as frame structure, wheels, DC motor, cleaning brush, battery, shaft and belt mechanism, bevel gear, chain sprocket, fiber sheet, pipes, and water tank. The machine is designed to perform both dry and wet cleaning efficiently with minimal human intervention. The mechanism ensures effective motion transmission and uniform cleaning performance. The developed prototype is cost-effective, energy-efficient, and suitable for household and small industrial applications. Keyword- Frame structure, Wheels, DC Motor, Cleaning brush, Mop, Battery, Shaft and belt mechanism, Bevel gear, Chain sprocket, Fiber sheet, Pipes, Water tank.
Published in: INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT
Volume 10, Issue 03, pp. 1-9
DOI: 10.55041/ijsrem58589