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A Review on Energy Harvesting Using 3D Printed Fabrics for Wearable Electronics
Abstract Embedding of energy harvesting systems into wearable health and environment monitoring systems, like integration of smart piezoelectric fibers into soldier fabric structures opens up avenues in generating electricity from natural mechanical movements for self-powering of wearable electronics. Emergence of multitudinous of materials and manufacturing technologies has enabled realization of various energy harvesting systems from mechanical movements. The materials and manufacturing related to 3D printing of energy harvesting fabrics are reviewed in this paper. State-of-the-art energy harvesting sources are briefly described following which an in-depth analysis on the materials and 3D printing techniques for energy harvesting fabrics are presented. While tremendous motivation and opportunity exists for wider-scale adoption of 3D printing for this niche area, the success depends on efficient design of three critical factors namely materials, process and structure. The present review discusses on the complex issues of materials selection, modelling and processing of 3D printed fabrics. The paper culminates by presenting a discussion on how future advancements in 3D printing technology might be useful for development of wearable electronics.
A Review on Energy Harvesting Using 3D Printed Fabrics for Wearable Electronics
Abstract Embedding of energy harvesting systems into wearable health and environment monitoring systems, like integration of smart piezoelectric fibers into soldier fabric structures opens up avenues in generating electricity from natural mechanical movements for self-powering of wearable electronics. Emergence of multitudinous of materials and manufacturing technologies has enabled realization of various energy harvesting systems from mechanical movements. The materials and manufacturing related to 3D printing of energy harvesting fabrics are reviewed in this paper. State-of-the-art energy harvesting sources are briefly described following which an in-depth analysis on the materials and 3D printing techniques for energy harvesting fabrics are presented. While tremendous motivation and opportunity exists for wider-scale adoption of 3D printing for this niche area, the success depends on efficient design of three critical factors namely materials, process and structure. The present review discusses on the complex issues of materials selection, modelling and processing of 3D printed fabrics. The paper culminates by presenting a discussion on how future advancements in 3D printing technology might be useful for development of wearable electronics.
A Review on Energy Harvesting Using 3D Printed Fabrics for Wearable Electronics
Gowthaman, Swaminathan (Autor:in) / Chidambaram, Gowri Shankar (Autor:in) / Rao, Dilli Babu Govardhana (Autor:in) / Subramya, Hemakumar Vyudhayagiri (Autor:in) / Chandrasekhar, Udhayagiri (Autor:in)
Journal of The Institution of Engineers (India): Series C ; 99 ; 435-447
28.06.2016
13 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
A Review on Energy Harvesting Using 3D Printed Fabrics for Wearable Electronics
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