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Mechanical Properties of Nylon Harp Strings

机译:尼龙竖琴的力学性能

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摘要

Monofilament nylon strings with a range of diameters, commercially marketed as harp strings, have been tested to establish their long-term mechanical properties. Once a string had settled into a desired stress state, the Young’s modulus was measured by a variety of methods that probe different time-scales. The modulus was found to be a strong function of testing frequency and also a strong function of stress. Strings were also subjected to cyclical variations of temperature, allowing various thermal properties to be measured: the coefficient of linear thermal expansion and the thermal sensitivities of tuning, Young’s modulus and density. The results revealed that the particular strings tested are divided into two groups with very different properties: stress-strain behaviour differing by a factor of two and some parametric sensitivities even having the opposite sign. Within each group, correlation studies allowed simple functional fits to be found to the key properties, which have the potential to be used in automated tuning systems for harp strings.
机译:商业上以竖琴弦销售的直径范围的单丝尼龙弦已经过测试,可以确定其长期的机械性能。琴弦稳定到所需的应力状态后,可通过多种探测不同时间尺度的方法来测量杨氏模量。发现模量是测试频率的强函数,也是应力的强函数。琴弦还受到温度的周期性变化,从而可以测量各种热特性:线性热膨胀系数和调音的热灵敏度,杨氏模量和密度。结果表明,测试的特定琴弦分为两组,它们具有非常不同的属性:应力-应变行为相差两个因数,某些参数敏感性甚至具有相反的符号。在每个组中,相关性研究允许对关键属性进行简单的功能拟合,从而有可能在竖琴弦的自动调音系统中使用。

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