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Finite Element Analysis on Badminton Racket Design Parameters: SpringerBriefs in Applied Sciences and Technology

Autor Fakhrizal Azmy Nasruddin, Muhamad Noor Harun, Ardiyansyah Syahrom, Mohammed Rafiq Abdul Kadir, Abdul Hafidz Omar, Andreas Öchsner
en Limba Engleză Paperback – 14 sep 2015
This work identifies the characteristics of racket design parameters that influence racket performance.  It presents the finite element analysis of several designs of badminton rackets and compares them to experimental results for validation. Designing a racket requires a comprehensive understanding of racket performance characteristics. Essentially, racket performance is related to the sweet spot, which is the spot on the racket head that produces the most power and control when it strikes a shuttlecock. Determining a coefficient of restitution can help to identify the sweet spot on a racket. By analyzing several head shape designs, it becomes apparent that isometric head shape rackets produce better coefficients of restitution compared to oval and round ones. It is recommended that the racket design consist of low string tension, stiffer racket shafts and bigger head size in order to produce higher shuttlecock speed.
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Specificații

ISBN-13: 9783319217345
ISBN-10: 3319217348
Pagini: 125
Ilustrații: VIII, 47 p. 34 illus., 29 illus. in color.
Dimensiuni: 155 x 235 x 3 mm
Greutate: 0.09 kg
Ediția:1st ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seriile SpringerBriefs in Applied Sciences and Technology, SpringerBriefs in Computational Mechanics

Locul publicării:Cham, Switzerland

Public țintă

Research

Cuprins

Introduction.- Coefficient of Restitution (COR) in Badminton Racket.- Effect of String Tension toward Racket Performance.- Stiffness of Badminton Racket.- Head Shape Design Analysis of Conceptual Badminton Racket.- Conclusion.

Caracteristici

Identifies the characteristics of racket design parameters that influence racket performance Provides clear recommendations on badminton racket design Analyzes computational wear simulations of total ankle replacement for the stance phase of gait cycle Includes supplementary material: sn.pub/extras