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Flexural behavior of ski boots under realistic loads-The concept of an improved test method

机译:现实载荷下滑雪靴的弯曲行为 - 改进试验方法的概念

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The design of ski and ski touring boots should consider three key elements: performance, safety and comfort. For all three aspects, the boot's (shaft) flexural behavior is one of the crucial characteristics. Knowing the importance of this design parameter it is surprising that up to now no generally accepted standardized method exists to test and quantify the stiffness of the boot. First test methods, developed in the late eighties, used a leg prosthesis loaded with a horizontal force at the top of the shank in order to apply a bending moment to the boot hinge. Since then the basic principle has not been changed and it is widely used to quantify the dorsal and plantar flexion under slope conditions as well as the effect of buckle closure, temperature and fit of the boot. This common approach however neglects some of the important boundary conditions such as the realistic plantar pressure distribution underneath the artificial foot or the correct location and shift of the point of force application during the flexion movement. The aim of this study was to design a new test bench which overcomes some of the previous limitations thus being able to improve validity of the load simulation. The major addition to the current state is that the new test bench simulates ground reaction forces by using a pneumatic driven active leg-prosthesis generating an internal extension moment in knee and ankle. Further a linear bearing allows simultaneous displacement of the foot in the sagittal plane, simulating forward or backward shift of the center of pressure, which is typical for skiing maneuvers. The presentation will illustrate the theory behind this new concept and describe the details of its design.
机译:Ski和Ski Touring Boots的设计应考虑三个关键要素:性能,安全和舒适。对于所有三个方面,靴子的(轴)弯曲行为是关键特征之一。了解这种设计参数的重要性,令人惊讶的是,现在没有人们没有公认的标准化方法来测试和量化靴子的刚度。第一个测试方法,在八十年代后期开发,使用腿部顶部装有水平力的腿假体,以将弯矩施加到靴子铰链上。从那时起,基本原理尚未发生变化,并且广泛用于量化斜坡条件下的背部和跖屈,以及扣闭,温度和靴子的效果。然而,这种常见方法忽略了一些重要的边界条件,例如人工脚下的现实跖骨压力分布或在屈曲运动期间力施加点的正确位置和转移。本研究的目的是设计一种新的测试台,其克服了一些先前的限制,从而能够改善负载模拟的有效性。目前状态的主要补充是,新的测试台通过使用气动驱动的活性腿 - 假体来模拟地面反作用力,从而产生膝盖和脚踝的内部延伸力矩。此外,线性轴承允许在矢状平面中同时位移脚,模拟压力中心的向前或向后偏移,这对于滑动操纵是典型的。演示文稿将说明这种新概念背后的理论,并描述了其设计的细节。

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