首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Comparison of the static and dynamic behaviour of carbon fibre composite golf club shafts
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Comparison of the static and dynamic behaviour of carbon fibre composite golf club shafts

机译:碳纤维复合高尔夫球杆身的静态和动态行为比较

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摘要

Golf shafts are characterized and sold by manufacturers on the basis of their static properties; however, their performance is controlled by their dynamic properties. This paper discusses the relationship between dynamic and static stiffness for a range of carbon fibre composite (CFC) shafts. In particular, the influence of 'seams' (specific orientations of the shaft with differing mechanical properties) on static and dynamic stiffness is considered. Vibrational frequency analysis (quasi-static testing) was used to locate the seams, and bend testing was used to determine the static stiffness of the low (seam) stiffness and high (90° to seam) stiffness positions. Dynamic stiffness values were determined by firing a golf ball from a gas cannon at a target attached to the end of the shaft and measuring the resulting deflection for different golf ball speeds. It was found that the dynamic stiffness values over a range of strain rates were similar to the static values for the sheet-laminated shafts indicating that there is no strain rate dependency for these shafts over the strain rates tested. However, for the filament wound shaft, a significant increase in dynamic stiffness, compared with the static value, was seen. This was related to the different CFC microstructure of this shaft. It was also found that the presence of seams resulted in statistically significant differences in static stiffness with respect to shaft orientation for a number of sheet-laminated shafts, whereas there was no difference in dynamic stiffness values.
机译:高尔夫球杆的特征是制造商根据其静态特性进行销售。但是,它们的性能由其动态属性控制。本文讨论了一系列碳纤维复合材料(CFC)轴的动态刚度和静态刚度之间的关系。尤其要考虑“接缝”(具有不同机械性能的轴的特定方向)对静态和动态刚度的影响。振动频率分析(准静态测试)用于定位接缝,弯曲测试用于确定低(接缝)刚度和高(接缝90°)位置的静态刚度。动态刚度值是通过以下方式确定的:通过从气炮发射高尔夫球到附着在杆身末端的目标上,并测量不同高尔夫球速度产生的挠度。已发现,在一系列应变速率下的动态刚度值与层压薄板轴的静态值相似,这表明这些轴在测试的应变速率上没有应变率依赖性。但是,对于细丝缠绕轴,与静态值相比,动态刚度显着增加。这与该轴的不同的CFC微观结构有关。还发现,对于许多层压板轴,接缝的存在导致静态刚度相对于轴方向的统计显着差异,而动态刚度值没有差异。

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