首页> 外文期刊>Applied Ergonomics >Effect of work boot shaft stiffness and sole flexibility on lower limb muscle activity and ankle alignment at initial foot-ground contact when walking on simulated coal mining surfaces: Implications for reducing slip risk
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Effect of work boot shaft stiffness and sole flexibility on lower limb muscle activity and ankle alignment at initial foot-ground contact when walking on simulated coal mining surfaces: Implications for reducing slip risk

机译:在模拟煤矿表面行走时,工作引导轴刚度和唯一灵活性在初始脚踏接触时对下肢肌肉活动和踝关节的影响:降低滑动风险的影响

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摘要

Design features of safety work boots have the potential to influence how underground coal miners' feet interact with the challenging surfaces they walk on and, in turn, their risk of slipping. Despite the importance of work boot design in reducing the risk of miners slipping, limited research has investigated how boot design features, such as shaft stiffness and sole flexibility, affect the way miners walk. Therefore, this study aimed to investigate the effects of systematic variations to boot shaft stiffness and sole flexibility on lower limb muscle activity and ankle motion in preparation for initial foot-ground contact when 20 males walked across two simulated coal mining surfaces under four mining boot conditions. It was concluded that a boot which has different flexibility and stiffness between the shaft and sole is a better design option to reduce underground coal miners' slip risk than a boot that has a stiff shaft and stiff sole or flexible shaft and flexible sole.
机译:安全工作靴的设计特点有可能影响地下煤矿矿工的脚如何与他们走路的具有挑战性的表面相互作用,而且反过来,他们的滑倒风险。 尽管工作靴设计的重要性降低了矿工滑倒的风险,但有限的研究已经调查了如何启动设计特征,例如轴僵硬和唯一的灵活性,影响迈尔斯走路的方式。 因此,本研究旨在调查系统变化对突起刚度和鞋底肌肉活动和脚踝运动的唯一柔韧性的影响,以便在四个采矿靴条件下走过两个模拟煤矿表面时初始脚踏接触的初始脚踏接触 。 得出结论是,在轴和鞋底之间具有不同的灵活性和刚度的靴子是更好的设计选择,可以减少地下煤矿的滑动风险而不是具有稳定轴和较硬的鞋底或柔性轴和柔性鞋底的靴子。

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