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基于LabVIEW的竹地板声学振动特性研究 被引量:5
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作者 王思敏 刘俊 蒋身学 《竹子研究汇刊》 北大核心 2010年第4期42-46,共5页
基于LabVIEW软件采用共振法测试了竹地板的声学振动特性。结果表明:竹地板的声学振动参数与密度关系密切,动态杨氏模量E、声阻抗ω、声辐射品质常数R与密度ρ线性回归显著;炭化板材的动态杨氏模量、声阻抗均小于本色同种类板材,声辐射... 基于LabVIEW软件采用共振法测试了竹地板的声学振动特性。结果表明:竹地板的声学振动参数与密度关系密切,动态杨氏模量E、声阻抗ω、声辐射品质常数R与密度ρ线性回归显著;炭化板材的动态杨氏模量、声阻抗均小于本色同种类板材,声辐射品质常数均大于本色同种类板材;综合认为炭化侧拼地板具有较优的声学振动品质。 展开更多
关键词 竹地板 声学振动特性 动态杨氏模量 LABVIEW
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柴油机增压及转速强化对振动声学特性的影响
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作者 刘佳才 《噪声与振动控制》 CSCD 1996年第3期17-21,共5页
研究了内燃机噪声强度的评价方法。分析了转速强化和增压对柴油机辐射噪声的影响。
关键词 柴油机 增压 振动声学特性 噪声 转速强化
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乐器用木材声学振动性能改良研究的进展 被引量:7
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作者 刘美宏 彭立民 +3 位作者 吕少一 吕建雄 高玉磊 樊正强 《木材工业》 北大核心 2020年第2期29-33,共5页
结合乐器用木材的宏观和微观构造、物理力学性能要求及评价指标,总结乐器用木材声学振动性能的影响因素及参数要求,归纳化学、物理、生物等处理方法在木材声学振动性能改良方面的应用研究及进展,分析各改良方法存在的问题,为木材声学振... 结合乐器用木材的宏观和微观构造、物理力学性能要求及评价指标,总结乐器用木材声学振动性能的影响因素及参数要求,归纳化学、物理、生物等处理方法在木材声学振动性能改良方面的应用研究及进展,分析各改良方法存在的问题,为木材声学振动特性功能改良的进一步研究提供思路。 展开更多
关键词 乐器用材 声学振动特性 评价指标 功能性改良
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木质-碳纤维复合材料的制备工艺 被引量:5
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作者 张元梓 刘乾 +3 位作者 高源 吕晓东 林斌 刘镇波 《东北林业大学学报》 CAS CSCD 北大核心 2019年第10期90-95,共6页
为探究不同工艺参数对木质-碳纤维复合材料声学振动性能的影响,优化制备工艺条件,从而提高木质-碳纤维复合材料用材的声学振动性能。实验采用冷压法制备木质-碳纤维复合材料,分析施胶量、单位压力和冷压时间对复合材料声学振动性能的影... 为探究不同工艺参数对木质-碳纤维复合材料声学振动性能的影响,优化制备工艺条件,从而提高木质-碳纤维复合材料用材的声学振动性能。实验采用冷压法制备木质-碳纤维复合材料,分析施胶量、单位压力和冷压时间对复合材料声学振动性能的影响规律,利用响应面优化法建立工艺因子与响应值间的二次回归方程,优化复合材料的制备工艺参数。结果表明:在单因素试验中,工艺因子对复合材料声学振动性能影响显著,当单位压力0.8~1.1MPa、施胶量180~210g/m^2、冷压时间21~26h时,音板用材声学振动性能显著提升,以比动弹性模量、E/G值、对数衰减率为响应值的响应面回归模型均在0.01水平下显著,优化后工艺参数为:单位压力1MPa、冷压时间22h、施胶量200g/m^2,实际值与预估值间的偏差率均不大于5%。 展开更多
关键词 碳纤维 复合材料 声学振动特性
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Acoustical Properties of Acetylated Wood
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作者 Roger M. Rowell 《Journal of Chemistry and Chemical Engineering》 2013年第9期834-841,共8页
Many of the traditional woods used for musical instruments have been selected not only for their natural beauty but for the high content of waxes and resins that help increase water repellency of the wood but have lit... Many of the traditional woods used for musical instruments have been selected not only for their natural beauty but for the high content of waxes and resins that help increase water repellency of the wood but have little or no effect on stabilizing dimensions or vibrational properties. Moisture changes have a great negative effect on both the musical quality of wooden musical instruments and limit the length of time they can be played without loss of musical quality. It is possible to stabilize both the wood and the vibrational properties by chemically modifying the wood. One technology that can do this is the reaction of wood with acetic anhydride. Acetylation of wood slightly increases density, and slightly (about 5%) reduces both sound velocity and sound absorption when compared to unreactedwood. Acetylation does not change the acoustic converting efficiency. Acetylation reduces the amount of moisture in the cell wall decreasing the effect of moisture on the viscose properties of wood. This allows a wooded musical instrument to be played longer without having to let it dry out. This gives an instrument made from acetylated wood a greater range of moisture conditions it can be played in without losing tone quality. Acetylation also greatly stabilizes the physical dimensions of the wood. The major effect of acetylation of wood, therefore, is to stabilize acoustic properties. The technology can be applied to almost any wood though more easily to permeable types so non-traditional wood species can be used. A violin, a piano soundboard, a guitar, a recorder, a bagpipe chanter, and trumpet and trombone mouthpieces have been made using acetylated wood with very positive results. Several more wooden instruments made from acetylated wood are presently being made for further testing and early market development. 展开更多
关键词 Acoustic properties ACETYLATION VISCOELASTIC ANISOTROPIC hydroscopic VIOLIN piano soundboard.
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Experimental and Numerical Procedures of a Sonar Platform with a Sound Absorption Wedge
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作者 Danzhu Yu Xiongliang Yao Shaoshi Dai 《Journal of Marine Science and Application》 2011年第3期364-370,共7页
Experiments involving a sonar platform with a sound absorption wedge were carried out for the purpose of obtaining the low frequency acoustic characteristics. Acoustic characteristics of a sonar platform model with a ... Experiments involving a sonar platform with a sound absorption wedge were carried out for the purpose of obtaining the low frequency acoustic characteristics. Acoustic characteristics of a sonar platform model with a sound absorption wedge were measured, and the effects of different wedge laid areas on platform acoustic characteristic were tested. Vibration acceleration and self-noise caused by model vibration were measured in four conditions: 0%, 36%, 60%, and 100% of wedge laid area when the sonar platform was under a single frequency excitation force. An experiment was performed to validate a corresponding numerical calculation. The numerical vibration characteristics of platform area were calculated by the finite element method, and self-noise caused by the vibration in it was predicted by an experiential formula. The conclusions prove that the numerical calculation method can partially replace the experimental process for obtaining vibration and sound characteristics. 展开更多
关键词 sound absorption wedge sonar platform area costal experiment of model self-noise numerical calculation
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