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DYNAMIC MODELING AND EXPERIMENTAL TESTING OF A PIANO ACTION MECHANISM WITH A FLEXIBLE HAMMER SHANK

机译:柔性锤柄钢琴动作机理的动态建模与实验测试

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The piano action is the mechanism that transforms the finger force applied to a key into a motion of a hammer that strikes a piano string. This paper presents a state-of-the-art model of a grand piano action, which is based on the five main components of the action mechanism (key, whippen, jack, repetition lever, and hammer). Even though Askenfelt and Jansson [1] detected some flexibility for the hammer shank in their experiments, all previous piano models have assumed the hammers to be rigid bodies. In this paper, we have accounted for the hammer shank flexibility using a Rayleigh beam model. It turns out that the flexibility of the hammer shank does not significantly affect the rotation of the other parts of the piano mechanism, compared with the case that the hammer shank has been modeled as a rigid part. However, the flexibility of the hammer shank changes the impact velocity of the hammer head, and also causes a greater scuffing motion for the hammer head during the contact with the string. To validate the theoretical results, experimental measurements were taken by two strain gauges mounted on the hammer shank, and by optical encoders at three of the joints.
机译:钢琴的动作是转换应用到一个关键的手指力成击打琴弦锤子的运动机制。本文提出了一种大钢琴的动作,这是根据操作机构的五个主要部件(键,摇动,千斤顶,震奏杆和锤)的状态的最先进的模型。尽管Askenfelt和杨松[1]检测到一些灵活性,在他们的实验锤柄,以前所有的钢琴模型假设的锤子是刚体。在本文中,我们已经占了使用瑞利梁模型锤柄的灵活性。事实证明,槌柄的灵活性并不显著影响钢琴机构的其他部分的旋转,与锤柄已经被模拟为刚性部件的情况相比。但是,槌柄的柔性改变槌头的冲击速度,并且还导致更大的与琴弦接触时的划痕槌头运动。为了验证理论结果,实验测量是由两个应变仪安装在琴槌柄,并且通过光学编码器在三个关节。

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