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Towards a footwear design tool: influence of shoe midsole properties and ground stiffness on the impact force during running.

机译:迈向鞋类设计工具:鞋中底特性和地面硬度对跑步过程中冲击力的影响。

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Several spring-damper-mass models of the human body have been developed in order to reproduce the measured ground vertical reaction forces during human running (McMahon and Cheng, 1990; Ferris et al., 1999; Liu and Nigg, 2000). In particular, Liu and Nigg introduced at the lower level of their model, i.e. at the interface between the human body and the ground, a nonlinear element representing simultaneously the shoe midsoles and the ground flexibility. The ground reaction force is modelled as the force supported by this nonlinear element, whose parameters are identified from several sets of experimental data. This approach proved to be robust and quite accurate. However, it does not explicitly take into account the shoe and the ground properties. It turns out to be impossible to study the influence of shoe materials on the impact force, for instance for footwear design purposes. In this paper, a modification of the Liu and Nigg's model is suggested, where the original nonlinear element is replaced with a bi-layered spring-damper-mass model: the first layer represents the shoe midsole and the second layer is associated with the ground. Ground is modelled as an infinite elastic half-space. We have assumed a viscoelastic behaviour of the shoe material, so the damping of shoe material is taken into account. A methodology for the shoe-soles characterization is proposed and used together with the proposed model. A parametric study is then conducted and the influence of the shoe properties on the impact force is quantified. Moreover, it is shown that impact forces are strongly affected by the ground stiffness, which should therefore be considered as an essential parameter in the footwear design.
机译:为了重现在人体跑步过程中测得的地面垂直反作用力,已经开发了几种人体的弹簧-阻尼器质量模型(McMahon和Cheng,1990; Ferris等,1999; Liu和Nigg,2000)。尤其是,Liu和Nigg在其模型的较低级别(即人体与地面之间的界面)引入了一种非线性元素,该元素同时代表了鞋中底和地面的柔韧性。地面反作用力被建模为该非线性单元所支持的力,其参数可从几组实验数据中识别出来。事实证明,这种方法是可靠且准确的。但是,它没有明确考虑鞋子和地面特性。事实证明,例如出于鞋类设计目的,研究鞋材料对冲击力的影响是不可能的。在本文中,我们建议对Liu和Nigg模型进行修改,将原来的非线性元素替换为双层弹簧-阻尼器-质量模型:第一层代表鞋底夹层,第二层代表地面。 。地面被建模为无限的弹性半空间。我们假设鞋材料具有粘弹性,因此要考虑鞋材料的阻尼。提出了鞋底表征的方法,并与提出的模型一起使用。然后进行参数研究,并量化鞋子性能对冲击力的影响。此外,已经表明,冲击力受地面刚度的强烈影响,因此,地面刚度在鞋类设计中应被视为基本参数。

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