Burden-Reducing Shoes with Elastomer-Embedded Flexible Joint

Taiki Oshimoto, Isao Abe, T. Kikuchi, Naoki Chijiwa, Tomohisa Yabuta, Kenichiro Tanaka, Yasue Asaumi
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Abstract

A new type of shoe with elastomer-embedded flexible joint (EEFJ) comprising a C-shaped spring and an embedded elastomer was proposed herein. The EEFJ was designed to support the plantar flexion muscle moments and to move freely in the other direction. Theoretical analysis and strength test were conducted for the EEFJ. According to the results of the strength test, the minimum moment at 10° in the plantar flexion was 8.9 Nm. This moment achieved the requirement moment (3.6 Nm). The maximum moment at 45° in the dorsiflexion was 0.022 Nm. The moments in the plantar flexion were significantly stronger than those in the dorsiflexion. We prototyped burden-reducing shoes by installing the EEFJ on the outside of the ankle joint. The total weight of a cuff, an aluminum plate, and the EEFJ for one leg was 183 g.
嵌入弹性关节的减负鞋
提出了一种由c形弹簧和嵌入式弹性体组成的新型嵌入式弹性体柔性关节鞋。EEFJ的设计是为了支持足底屈曲肌的时刻,并在另一个方向自由移动。对EEFJ进行了理论分析和强度试验。根据强度测试结果,足底屈曲10°处的最小弯矩为8.9 Nm。该力矩达到了要求力矩(3.6 Nm)。背屈45°处最大力矩为0.022 Nm。足底屈曲力矩明显强于背屈力矩。我们通过在踝关节外侧安装EEFJ来制作减负鞋的原型。一条腿上的袖带、铝板和EEFJ的总重量为183克。
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