首页> 外文期刊>Journal of Sound and Vibration >Vibroacoustics of the piano soundboard: Reduced models, mobility synthesis, and acoustical radiation regime
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Vibroacoustics of the piano soundboard: Reduced models, mobility synthesis, and acoustical radiation regime

机译:钢琴音板的振动声学:简化的模型,迁移率合成和声辐射状态

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摘要

In string musical instruments, the sound is radiated by the soundboard, subject to the strings excitation. This vibration of this rather complex structure is described here with models which need only a small number of parameters. Predictions of the models are compared with the results of experiments that have been presented in Ege et al. [Vibroacoustics of the piano soundboard: (non)linearity and modal properties in the low- and mid-frequency ranges, Journal of Sound and Vibration 332 (5) (2013) 1288-1305]. The apparent modal density of the soundboard of an upright piano in playing condition, as seen from various points of the structure, exhibits two well-separated regimes, below and above a frequency ~(flim) that is determined by the wood characteristics and by the distance between ribs. Above ~(flim), most modes appear to be localised, presumably due to the irregularity of the spacing and height of the ribs. The low-frequency regime is predicted by a model which consists of coupled sub-structures: the two ribbed areas split by the main bridge and, in most cases, one or two so-called cut-off corners. In order to assess the dynamical properties of each of the subplates (considered here as homogeneous plates), we propose a derivation of the (low-frequency) modal density of an orthotropic homogeneous plate which accounts for the boundary conditions on an arbitrary geometry. Above ~(flim), the soundboard, as seen from a given excitation point, is modelled as a set of three structural wave-guides, namely the three inter-rib spacings surrounding the excitation point. Based on these low- and high-frequency models, computations of the point-mobility and of the apparent modal densities seen at several excitation points match published measurements. The dispersion curve of the wave-guide model displays an acoustical radiation scheme which differs significantly from that of a thin homogeneous plate. It appears that piano dimensioning is such that the subsonic regime of acoustical radiation extends over a much wider frequency range than it would be for a homogeneous plate with the same low-frequency vibration. One problem in piano manufacturing is examined in relationship with the possible radiation schemes induced by the models.
机译:在弦乐器中,声音会受到共鸣板的激励而从音板发出。这种复杂结构的振动在这里用仅需少量参数的模型进行描述。将模型的预测与Ege等人提出的实验结果进行比较。 [钢琴共鸣板的振动声学:低频和中频范围内的(非线性)线性和模态特性,声音与振动学报332(5)(2013)1288-1305]。从结构的各个角度看,处于演奏状态的立式钢琴的共鸣板的表观模态密度显示出两种完全分开的状态,低于和高于由木材特性和频率决定的频率。肋骨之间的距离。在〜(flim)以上,大多数模式似乎是局部的,大概是由于肋骨的间距和高度的不规则性。低频状态是由一个模型预测的,该模型由耦合的子结构组成:两个带肋的区域被主桥分开,在大多数情况下,一个或两个所谓的截止角。为了评估每个子板(在这里被视为均质板)的动力学特性,我们提出了正交各向异性均质板的(低频)模态密度的推导,其考虑了任意几何形状的边界条件。在〜(flim)上方,从给定的激励点看,共鸣板被建模为一组三个结构波导,即围绕激励点的三个肋间间距。基于这些低频和高频模型,在几个激励点上看到的点迁移率和表观模态密度的计算与已发布的测量结果相匹配。波导模型的色散曲线显示的声辐射方案与均匀薄板的声辐射方案明显不同。看来钢琴的尺寸确定是这样的,即与具有相同低频振动的均质板相比,声辐射的亚音速状态在更大的频率范围内扩展。考察钢琴制造中的一个问题,并与模型引起的可能的辐射方案相关联。

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