日本機械学会論文集
Online ISSN : 2187-9761
ISSN-L : 2187-9761

この記事には本公開記事があります。本公開記事を参照してください。
引用する場合も本公開記事を引用してください。

競技用自転車フレーム剛性がペダリング動作に与える影響のシミュレーション解析
伊藤 史斗長谷 和徳内田 和男
著者情報
ジャーナル フリー 早期公開

論文ID: 19-00191

この記事には本公開記事があります。
詳細
抄録

The frame stiffness in a racing bicycle might influence not only toughness as the frame structure but also performance of an athlete. The purpose of this study is to clarify biodynamic relations between the frame stiffness in a racing bicycle and the physical loads of an athlete by using a forward dynamics simulation model. The human body structure was represented by the 13-rigid-links and 23-degrees-of-freedom model. Based on the theory of multibody dynamics, the frame structure was expressed by combination of 12 rigid pipes, and the frame stiffness was modeled by rotational springs at the connecting joint between the rigid pipes. Spring coefficients were changed according to the thickness of the frame pipes. The pedaling load from the crank was computed by the angular velocity and angular acceleration of the crank. Moreover, the driving force in the bicycle was additionally defined to consider the influence of the frame weight on the human joint load. The human body model was driven by the joint toques to minimize the cost function consisting of the joint loads in the human body and the driving force in the bicycle, and also to keep desired angular velocity of the crank. Validity of the simulation was evaluated by comparing the joint angles and torques with the measured ones. As for the result, the larger stiffness of the frame resulted in smaller the joint loads in the human body, and optimal stiffness would be determined by the balance between the joint loads in the human body and the driving force in the bicycle.

著者関連情報
© 2019 一般社団法人日本機械学会
feedback
Top