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首页> 外文期刊>The Journal of the Acoustical Society of America >Acoustic dissipation in wooden pipes of different species used in wind instrument making: An experimental study
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Acoustic dissipation in wooden pipes of different species used in wind instrument making: An experimental study

机译:风仪器制造中使用的不同物种木管的声学耗散:实验研究

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摘要

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 degrees 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 degrees 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. (C) 2017 Acoustical Society of America.
机译:在这项研究中,在实验上实验研究了声学耗散,以常用的木质风仪器制造:枫树(Acer Pseudoplatanus),梨木(Pyrus Communis L.),Buckwood(Buxus Sempervirens)和非洲黑玉杉(达伯利亚·梅拉诺克朗)。管道平行于颗粒,除了形成具有纤维方向60度的角度的颗粒。涉及具有多个空气柱的输入阻抗测量的实验方法,以估计在管道中的特征阻抗和衰减因子。它们的比较揭示了所考虑的物种中声学耗散的显着差异。衰减因子以下列排序排名从最大到最小的:枫树,黄杨木,梨木和非洲黑色木木。在抛光孔之前和之后,此订单是相同的,这是风仪器制造过程中的重要步骤。对于枫叶,与其他管道相比,改变60度的管道方向显着增加了衰减因子,平行于晶粒。此外,抛光倾向于降低木管中的声耗,特别是对于最多多孔物种。结果,抛光在制作过程中的影响取决于所选择的木材物种。 (c)2017年声学社会。

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    USR 3224 ECR Musee Mus CRC Cite Mus Philharmonie Paris 221 Ave Jean Jaures F-75019 Paris France;

    USR 3224 ECR Musee Mus CRC Cite Mus Philharmonie Paris 221 Ave Jean Jaures F-75019 Paris France;

    USR 3224 ECR Musee Mus CRC Cite Mus Philharmonie Paris 221 Ave Jean Jaures F-75019 Paris France;

    UPMC Univ Paris 06 Sorbonne Univ CNRS LAM Inst Alembert 4 Pl Jussieu F-75252 Paris 05 France;

    UPMC Univ Paris 06 Sorbonne Univ CNRS LAM Inst Alembert 4 Pl Jussieu F-75252 Paris 05 France;

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  • 正文语种 eng
  • 中图分类 声学;
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