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Footstep Energy Harvesting with the Magnetostrictive Fiber Integrated Shoes

机译:磁致伸缩纤维一体式鞋的脚步能量收集

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摘要

Wearable energy harvesting devices attract attention as the devices provide electrical power without inhibiting user mobility and independence. While the piezoelectric materials integrated shoes have been considered as wearable energy harvesting devices for a long time, they can lose their energy harvesting performance after being used several times due to their brittleness. In this study, we focused on Fe–Co magnetostrictive materials and fabricated Fe–Co magnetostrictive fiber integrated shoes. We revealed that Fe–Co magnetostrictive fiber integrated shoes are capable of generating 1.2 µJ from 1000 steps of usual walking by the Villari (inverse magnetostrictive) effect. It seems that the output energy is dependent on user habit on ambulation, not on their weight. From both a mechanical and functional point of view, Fe–Co magnetostrictive fiber integrated shoes demonstrated stable energy harvesting performance after being used many times. It is likely that Fe–Co magnetostrictive fiber integrated shoes are available as sustainable and wearable energy harvesting devices.
机译:可穿戴式能量收集设备吸引了人们的注意,因为这些设备可提供电能而不会抑制用户的移动性和独立性。压电材料一体式鞋子长期以来一直被认为是可穿戴的能量收集装置,但由于其脆性,在多次使用后它们可能会失去能量收集性能。在这项研究中,我们重点研究了Fe-Co磁致伸缩材料和Fe-Co磁致伸缩纤维集成鞋。我们发现,Fe-Co磁致伸缩纤维集成式鞋子能够通过Villari(逆磁致伸缩)效应从1000步的平步步行中产生1.2 µJ的能量。看来,输出能量取决于用户的移动习惯,而不是其体重。从机械和功能的角度来看,Fe-Co磁致伸缩纤维集成式鞋子经过多次使用后表现出稳定的能量收集性能。 Fe-Co磁致伸缩纤维集成鞋很可能会用作可持续且可穿戴的能量收集装置。

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