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- W1964426137 abstract "Finite element techniques are often applied to the design and development of golf clubs. While distance and accuracy are the primary design characteristics, the acoustics of the ball/club impact play an important role in player perception. Previous work has applied finite element techniques to predict the sound of a golf ball/club impact. This research helps to lay the foundations for implementing finite element techniques into the process of developing golf clubs which produce a perceived 'desirable' sound upon impact. This study investigates the application of Ansys/LS-Dyna to predict the frequency response of a golf ballimpacting three cylindrical titanium plates of varying thickness. A golf ball was fired against each plate at 41 m/s and the sound was recorded using a microphone. Fast Fourier transformations were applied to the sound recordings to obtain the frequency modes. A finite element model was developed for each plate and acoustic simulations for ball/plate impacts were run using the Rayleigh method. Averaged across all three plates, the mean frequencies obtained from the impact simulations for the first twomodes were within 3% of those measured experimentally. Further research could work towards applying the techniquespresented here to a golf ball/club impact." @default.
- W1964426137 created "2016-06-24" @default.
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- W1964426137 date "2014-01-01" @default.
- W1964426137 modified "2023-09-23" @default.
- W1964426137 title "Modelling the Acoustics of a Golf Ball Impacting a Titanium Plate" @default.
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- W1964426137 doi "https://doi.org/10.1016/j.proeng.2014.06.101" @default.
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