Design and fabrication of Self–Ironing machines for clothes

Author:

Sharath Chandra Prasad Chavali Sai,Saini Ojasv,Rana Parteek,Singh Srijan Kumar,Vijay Tijare Tejas,Cambow Rameshwar

Abstract

The Self-Ironing Machine is an innovative solution designed to revolutionize fabric ironing on a small scale, catering to the increasing demand for portable and user-friendly ironing devices. It integrates intelligent features to enhance versatility, including a compact design housing essential elements such as a heating plate, a heating roller, and a temperature identification sensor, alongside specialized buttons for different fabric types. The project's objective was to develop a portable self-ironing machine that simplifies the ironing process while maintaining effectiveness.The machine utilizes a heating plate for precise heating and a weighted roller for consistent pressure application, ensuring optimal results. A standout feature is the integration of a temperature identification sensor, enabling customized ironing treatments tailored to specific fabric requirements. This streamlines the process and reduces the risk of damage to delicate fabrics. User interaction is intuitive with dedicated buttons catering to various fabric needs.Rigorous testing has demonstrated the machine's outstanding performance across different fabric types, highlighting its accuracy and adaptability. In conclusion, the Portable Self-Ironing Machine represents a significant advancement in fabric ironing technology. Its compact and efficient design, coupled with intelligent features, offers an enhanced user experience. With its ability to deliver precise and tailored ironing treatments, this machine stands as a game-changer in the realm of portable fabric care, addressing the needs of modern lifestyles and paving the way for future innovations in the field.

Publisher

EDP Sciences

Reference10 articles.

1. Lu Ning; Div. of Energy Sci. & Technol., Pacific Northern Lab., Richland, WA, USA ; Katipamula, S.: Control strategies of thermostatically controlled appliances in a competitive electricity market: Power Engineering Society General Meeting, 2005. IEEE

2. Aranjo B. ; Electron. & Electr. Eng., Heriot Watt Univ., Dubai, United Arab Emirates ; Soori, P.K. ; Talukder, P.: Stepper motor drives for robotic applications Power Engineering and Optimization Conference (PEDCO) Melaka, Malaysia, 2012 IEEE International

3. Benhua Zhang ; Coll. of Eng., Shenyang Agric. Univ., Shenyang, China ; Li Chenghua ; Sun Shiming ; Gan Lu: Design on a unipolar and unidirectional stepper motor circuit Electronic and Mechanical Engineering and Information Technology (EMEIT)

4. Francisco Aguilar-Acevedo, and Alejo Vignaud Granados. Using open-source platform for trajectory control of DC motors. IEEE International Autumn Meeting on Power Electronics and Computing (ROPEC), 2013: 1–5.

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