Pocketable and Smart Electrohydrodynamic Pump for Clothes

Kuwajima, Yu and Yamaguchi, Yuya and Yamada, Yuhei and Morita, Takafumi and Wiranata, Ardi and Minaminosono, Ayato and Hosoya, Naoki and Kakehi, Yasuaki and Maeda, Shingo (2024) Pocketable and Smart Electrohydrodynamic Pump for Clothes. ACS Applied Materials and Interfaces, 16 (1). 1883 – 1891. ISSN 19448244

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Abstract

Seamlessly fusing fashion and functionality can redefine wearable technology and enhance the quality of life. We propose a pocketable and smart electrohydrodynamic pump (PSEP) with self-sensing capability for wearable thermal controls. Overcoming the constraints of traditional liquid-cooled wearables, PSEP with dimensions of 10 × 2 × 1.05 cm and a weight of 10 g is sufficiently compact to fit into a shirt pocket, providing stylish and unobtrusive thermal control. Silent operation coupled with the unique self-sensing ability to monitor the flow rate ensures system reliability without cumbersome additional components. The significant contribution of our study is the formulation and validation of a theoretical model for self-sensing in EHD pumps, thereby introducing an innovative functionality to EHD pump technology. PSEP can deliver temperature changes of up to 3 °C, considerably improving personal comfort. Additionally, the PSEP system features an intuitive, smartphone-compatible interface for seamless wireless control and monitoring, enhancing user interaction and convenience. Furthermore, the ability to detect and notify users of flow blockages, achieved by self-sensing, ensures an efficient and long-term operation. Through its blend of compact design, intelligent functionality, and stylish integration into daily wear, PSEP reshapes the landscape of wearable thermal control technology and offers a promising avenue for enhancing personal comfort in daily life. © 2023 The Authors. Published by American Chemical Society.

Item Type: Article
Additional Information: Cited by: 1; All Open Access, Hybrid Gold Open Access
Uncontrolled Keywords: Pumps; Wearable technology; American Chemical Society; Electrohydrodynamic pump; Liquid cooled; Quality of life; Self-sensing; Sensing abilities; System reliability; Theoretical modeling; Thermal control; Wearable; adult; article; clothing; controlled study; flow rate; human; quality of life; reliability; smartphone; temperature; theoretical model; wearable device; Electrohydrodynamics
Subjects: T Technology > T Technology (General) > Mechanical drawing. Engineering graphics
T Technology > T Technology (General) > Industrial engineering. Management engineering
Divisions: Faculty of Engineering > Mechanical and Industrial Engineering Department
Depositing User: Rita Yulianti Yulianti
Date Deposited: 20 Feb 2025 00:35
Last Modified: 20 Feb 2025 00:35
URI: https://ir.lib.ugm.ac.id/id/eprint/13415

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