The Influence of a Golf Club's Inertia on Shaft Movement During the Golfer's Swing
Kenta MATSUMOTO, Nobutaka TSUJIUCHI, Takayuki KOIZUMI, Akihiko Ito, M. Ueda, Kosuke Okazaki
Abstract
Open-access reader
Kenta MATSUMOTO, Nobutaka TSUJIUCHI, Takayuki KOIZUMI, Akihiko Ito, M. Ueda, Kosuke Okazaki
Abstract
Open-access reader
To study the influence of a golf club's inertia we demonstrated the shaft movement with inertia divided into components. We formulated a simulation model using the finite element method (FEM). We then computed the inertia force using measured data. We further divided the inertia force into shaft and grip inertia components and the club head's acceleration, angle rate, and angular acceleration components. We input each inertia into the simulation model to demonstrate the shaft movement for each inertia. The objective of this research is to simulate shaft movement while taking into account the inertia for each component in order to study the influence of golf club inertia.
OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
To study the influence of a golf club's inertia we demonstrated the shaft movement with inertia divided into components. We formulated a simulation model using the finite element method (FEM). We then computed the inertia force using measured data. We further divided the inertia force into shaft and grip inertia components and the club head's acceleration, angle rate, and angular acceleration components. We input each inertia into the simulation model to demonstrate the shaft movement for each inertia. The objective of this research is to simulate shaft movement while taking into account the inertia for each component in order to study the influence of golf club inertia.
Key concepts: Inertia, Rotary inertia, Acceleration, Swing, Mechanics, Finite element method, Angular acceleration, Moment of inertia