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用于管乐器制作的不同种类木管中的声耗散:一项实验研究。

Acoustic dissipation in wooden pipes of different species used in wind instrument making: An experimental study.

作者信息

Boutin Henri, Le Conte Sandie, Vaiedelich Stéphane, Fabre Benoit, Le Carrou Jean-Loïc

机构信息

CRC, USR 3224-ECR Musée de la Musique, Cité de la Musique, Philharmonie de Paris, 221 avenue Jean Jaurès, F-75019 Paris, France.

Sorbonne Universités, UPMC Univ Paris 06, CNRS, LAM/Institut d'Alembert, 4 place Jussieu, 75252 Paris Cedex 05, France.

出版信息

J Acoust Soc Am. 2017 Apr;141(4):2840. doi: 10.1121/1.4981119.

Abstract

In this study, the acoustic dissipation is investigated experimentally in wooden pipes of different species commonly used in woodwind instrument making: maple (Acer pseudoplatanus), pear wood (Pyrus communis L.), boxwood (Buxus sempervirens), and African Blackwood (Dalbergia melanoxylon). The pipes are parallel to the grain, except one which forms an angle of 60° with the fiber direction. An experimental method, involving input impedance measurements with several lengths of air column, is introduced to estimate the characteristic impedance and the attenuation factor in the pipes. Their comparison reveals significant differences of acoustic dissipation among the species considered. The attenuation factors are ranked in the following order from largest to smallest: maple, boxwood, pear wood, and African Blackwood. This order is the same before and after polishing the bore, which is an essential step in the making process of wind instrument. For maple, changing the pipe direction of 60° considerably increases the attenuation factor, compared to those of the other pipes, parallel to the grain. Further, polishing tends to reduce the acoustic dissipation in the wooden pipes, especially for the most porous species. As a result, the influence of polishing in the making procedure depends on the selected wood species.

摘要

在本研究中,对木管乐器制作中常用的不同树种的木管进行了声耗散实验研究:枫木(挪威枫)、梨木(西洋梨)、黄杨木(小叶黄杨)和乌木(东非黑黄檀)。除了一根与纤维方向成60°角的木管外,其他木管均与木纹平行。引入了一种实验方法,通过测量不同气柱长度下的输入阻抗来估计木管中的特性阻抗和衰减因子。它们的比较揭示了所考虑树种之间声耗散的显著差异。衰减因子从大到小排列如下:枫木、黄杨木、梨木和乌木。在对管膛进行抛光(这是管乐器制作过程中的一个重要步骤)前后,这个顺序是相同的。对于枫木,与其他平行于木纹的木管相比,将木管方向改变60°会显著增加衰减因子。此外,抛光往往会降低木管中的声耗散,尤其是对于孔隙率最高的树种。因此,制作过程中抛光的影响取决于所选的木材种类。

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