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Investigating foot-sock friction : a comparison of two different methodologies

机译:调查脚袜子摩擦:两种不同方法的比较

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摘要

Two different methodologies for assessing the friction between plantar skin and sock textiles are compared in this study. The first approach uses a custom-built friction plate rig. The rig consists of sock material mounted on a test plate attached to two load cells that measure normal and shear loads at the skin-sock textile interface. With this methodology, participants are required to slide their foot over the test plate whilst maintaining a targeted normal load and a relatively consistent sliding speed. The second approach uses a pneumatically-driven foot probe loading device. The device includes an instrumented probe with sock material on its contact surface. Participants are instructed to stand on a platform whilst the probe is applied to, and then driven across, the plantar aspect of foot. The cyclic motion of the probe is displacement-controlled and normal and shear loads are measured using load cells. Both approaches allow friction coefficients to be calculated fromload data collected during the sliding phase of movement. Data from both approaches was examined, collected from friction tests using the same six participants and sliding contact between the first metatarsal head (1MTH) region and textiles from two commercially available running socks. Both approachesudwere capable of measuring the friction between 1MTH skin and sock materials and good agreement was found between them. In the dry conditions tested, the cotton-rich sock was found to provide lower friction that the anti-blister sock material.
机译:在这项研究中,比较了两种不同的方法来评估足底皮肤和袜子纺织品之间的摩擦。第一种方法是使用定制的摩擦板钻机。该装置由安装在测试板上的袜子材料组成,该测试板上连接有两个测力传感器,这些测力计可测量皮肤-袜子纺织品界面处的法向载荷和剪切载荷。使用这种方法时,要求参与者在保持目标正常负荷和相对一致的滑动速度的同时,将脚在测试板上滑动。第二种方法是使用气动脚探针加载装置。该设备包括在其接触表面上带有袜子材料的仪器探针。指示参与者站立在平台上,同时将探针应用于脚的脚底部分,然后将其驱动横过脚的足底部分。探头的循环运动受位移控制,并且使用称重传感器测量法向载荷和剪切载荷。两种方法都可以从运动的滑动阶段收集的载荷数据中计算出摩擦系数。检查了这两种方法的数据,使用了相同的六个参与者从摩擦测试中收集了数据,并在第一meta骨头(1MTH)区域与来自两只市售跑步袜子的纺织品之间进行滑动接触。两种方法都能够测量1MTH皮肤与袜子材料之间的摩擦,并且发现它们之间具有良好的一致性。在测试的干燥条件下,发现富含棉花的袜子提供的摩擦力要小于抗泡袜子材料的摩擦力。

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