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Modeling and Characterization of a Potential Bladder Based Orthotic Device to Mitigate Shoe Slip

机译:潜在膀胱基矫形器件的建模与表征减轻鞋滑动

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The exploration of an "intelligent" orthotic shoe sole to negate, or minimize, longitudinal slip by momentarily increasing friction force is presented. The conceptual device takes the form of a rubberized shoe sole containing pockets of air that can be released via valves controlled by a micro-processor. During a slip event, the valves would be opened and the bladders would be collapsed by the weight of the user, which modulates contact and friction forces. The goal is to increase friction forces in this process, by creating an impact force between the user and ground surface, with the potential to increase friction and mitigate slip. Simulations of bladder walls, air flow through valves, contact forces, and friction forces are modeled and combined into a lumped parameter model to predict device behavior. Prototypes of the device are created and evaluated to validate models and slip-mitigating potential.
机译:展示了“智能”矫正鞋鞋底以延长或最小化,通过瞬间增加摩擦力探讨或最小化纵向滑动。概念装置采用含有覆盖空气袋的橡胶鞋鞋底的形式,其可以通过微处理器控制的阀门释放。在滑动事件期间,阀门将被打开,并且膀胱将被使用者的重量塌陷,该用户的重量调制接触和摩擦力。目标是通过在使用者和地面之间产生冲击力,增加这种过程中的摩擦力,有可能增加摩擦和减轻滑动。膀胱壁的模拟,通过阀,接触力和摩擦力的气流进行建模并将其组合成一块集合参数模型以预测设备行为。创建和评估设备的原型以验证模型和防滑潜力。

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