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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Modal analysis of composite prosthetic energy-storing-and-returning feet: an initial investigation
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Modal analysis of composite prosthetic energy-storing-and-returning feet: an initial investigation

机译:复合假体储能与回位脚的模态分析:初步研究

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The desire of individuals with a lower-limb amputation to participate in sports, coupled with the high demands of athletics, has resulted in the development of energy-storing-and-returning feet, capable of storing energy during stance and returning it to the individual in late stance to assist in forward propulsion. However, little attention has been paid to date to advance the understanding of their dynamic characteristics (natural frequencies, mode shapes and damping) during running. The evaluation of such parameters is now urgently required, as the use of energy-storing-and-returning feet is now being investigated through legal and justice systems to determine participation of amputee athletes using them at the Olympic Games. This paper presents a study of the dynamic characteristics of two commercially available Elite Blade composite feet (solid and split foot). A full modal analysis of the feet was conducted with varying masses attached to them, representing different body masses. The study showed that natural frequencies close to typical running step frequency can be achieved with simple control of the mass or stiffness. It was concluded that further study of the dynamic characteristics could result in a significant change in the design, development and the attitude towards the use of composite prosthetic feet. This initial study has highlighted the key questions that need to be answered to fully understand the dynamic characteristics and inform designers on how to tune a foot to match an amputee's gait and body condition.
机译:下肢截肢的个人对参加运动的渴望,加上对运动的高要求,导致了能量储存和返回脚的发展,这种脚能够在站立时存储能量并将其返回给个人在后期立场上协助向前推进。但是,迄今为止,人们对跑步过程中的动态特性(固有频率,振型和阻尼)的了解很少。现在迫切需要对这些参数进行评估,因为目前正在通过法律和司法系统调查使用蓄能和回程脚的使用情况,以确定使用截肢和截肢脚的截肢运动员参加奥运会的情况。本文介绍了对两种市售Elite Blade复合脚(实心脚和分叉脚)的动态特性的研究。对脚进行各种附加的质量分析,以代表不同的体重。研究表明,可以通过简单控制质量或刚度来实现接近典型运行步频的固有频率。结论是,对动态特性的进一步研究可能会导致设计,开发和对使用复合假脚的态度发生重大变化。这项初步研究突出了需要回答的关键问题,以充分理解动态特性,并告知设计人员如何调整脚以适应截肢者的步态和身体状况。

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