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Development of a New Embedded Dynamometer for the Measurement of Forces and Torques at the Ski-Binding Interface

机译:新型嵌入式测功机的开发用于在滑雪装订界面测量力和扭矩

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摘要

In alpine skiing, understanding the interaction between skiers and snow is of primary importance for both injury prevention as well as performance analysis. Risk of injuries is directly linked to constraints undergone by the skier. A force platform placed as an interface between the ski and the skier should allow a better understanding of these constraints to be obtained to thereby develop a more reliable release system of binding. It should also provide useful information to allow for better physical condition training of athletes and non-professional skiers to reduce the risk of injury. Force and torque measurements also allow for a better understanding of the skiers’ technique (i.e., load evolution during turns, force distribution between left and right leg…). Therefore, the aim of this project was to develop a new embedded force platform that could be placed between the ski boot and the binding. First, the physical specifications of the dynamometer are listed as well as the measurement scope. Then, several iterations were performed on parametric 3D modeling and finite element analysis to obtain an optimal design. Two platforms were then machined and equipped with strain gauges. Finally, the calibration was performed on a dedicated test bench. The accuracy of the system was between 1.3 and 12.8% of the applied load. These results show a very good linearity of the system, which indicate a great outcome of the design. Field tests also highlighted the ease of use and reliability. This new dynamometer will allow skiers to wear their own equipment while measuring force and torque in real skiing conditions.
机译:在高山滑雪中,了解滑雪者与雪之间的相互作用对于预防伤害和进行性能分析至关重要。受伤的风险与滑雪者所受到的限制直接相关。放置在滑雪板和滑雪者之间的接口的受力平台应允许更好地理解这些约束条件,从而开发出更可靠的捆绑释放系统。它还应提供有用的信息,以更好地训练运动员和非专业滑雪者的身体状况,以减少受伤的风险。力和扭矩的测量还可以更好地了解滑雪者的技术(例如,转弯时的载荷变化,左右腿之间的力分布……)。因此,该项目的目的是开发一种新的嵌入式推力平台,该平台可以放置在滑雪靴和固定装置之间。首先,列出了测功机的物理规格以及测量范围。然后,对参数3D建模和有限元分析进行了多次迭代以获得最佳设计。然后对两个平台进行机械加工并配备了应变仪。最后,在专用测试台上进行校准。系统的精度在所施加负载的1.3%至12.8%之间。这些结果表明系统具有很好的线性,这表明了设计的出色结果。现场测试还强调了易用性和可靠性。这款新型测功机将允许滑雪者在实际滑雪条件下测量力和扭矩时佩戴自己的设备。

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