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The static and dynamic stiffness behaviour of composite golf shafts and their constituent materials

机译:复合高尔夫球杆及其组成材料的静态和动态刚度行为

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摘要

Golf shafts are normally characterised using static or quasi-static tests, yet the golf swing itself is dynamic. The purpose of this research was to determine whether stiffness properties obtained from these tests can be used when modelling the dynamic behaviour of golf shafts made from carbon fibre reinforced polymer (CFRP). Three shafts, matched for all properties except shaft flex, were subjected to human swing testing by 12 skillful players whilst strains were recorded. Peak principal strains as well as strain rates increased as shaft flex decreased (p < 0.001). CFRP flat panels with lay-ups similar to those contained in the shafts were constructed and tested statically and at strain rates between 10?4 and 4 s?1. Some level of strain-rate dependency was found for these panels, but only for strain rates exceeding those seen during a swing, which suggests that static material tests are appropriate for measuring the dynamic stiffness of golf shafts.
机译:通常使用静态或准静态测试来表征高尔夫球杆身,但是高尔夫挥杆本身是动态的。这项研究的目的是确定在对由碳纤维增强聚合物(CFRP)制成的高尔夫球杆的动力学行为进行建模时,是否可以使用从这些测试中获得的刚度特性。记录了应变的同时,由12名熟练的运动员对三个除了所有轴性能以外的所有特性都匹配的轴进行了人体挥杆测试。峰值主应变以及应变率随着轴弯曲的减小而增加(p <0.001)。构造并测试了CFRP平板,其叠层与竖井中的叠层相似,且应变率在10?4 和4 s?1 之间。在这些面板上发现了某种程度的应变率依赖性,但仅对于超过挥杆时所见的应变率而言,这表明静态材料测试适合于测量高尔夫球杆的动态刚度。

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