复材机身曲板声学分析及隔音棉优化设计
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陶然,男,硕士,助理工程师。主要研究方向:舱内声学设计。E-mail:taoran@comac.cc

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陶然,E-mail:taoran@comac.cc

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V258

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Acoustic analysis of composite fuselage curved panel and optimizationdesign for thermal and acoustic insulation blanket
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    摘要:

    为研究飞机复材机身曲板的声学特性,用VA One建立的统计能量复材曲板模型计算了在三种不同工况下复材曲板的隔声量,并将仿真结果同试验数据进行比较,以此验证其有效性;随后用该统计能量模型分析了铺设不同厚度、密度的隔音棉对复材曲板隔声量的影响,并以模型中接收室的声压级为对象,将隔音棉厚度、密度两个参数进行优化分析,得到了二者在飞机工程应用中的最佳组合方式;最后研究了铺设不同面积隔音棉对复材曲板隔声性能的影响。结果表明:铺设的隔音棉厚度对复材曲板隔声量影响较大,而在目前可选的航空声学材料范围内,铺设的隔音棉密度对复材曲板隔声量影响较小,且二者在飞机工程应用中的最佳组合为厚度5 in,密度9.6 kg/m3;复材机身曲板上的隔音棉铺设面积建议在80%以上,以在飞机工程应用中达到较好的隔声效果。

    Abstract:

    In order to study the acoustic characteristics of aircraft composite fuselage curved plate, this paper uses the statistical energy composite curved plate model established by VA one to calculate the sound insulation of composite curved plate under three different working conditions, and compares the simulation results with the experimental data to verify its effectiveness. Then, the model was used to analyze the influence of different thickness and density of the thermal and acoustic insulation blanket (TAIB) on transmission loss of composite curved panel and the two parameters were optimized by the sound pressure of model’s receptor cell to obtain the best combination in aircraft engineering application. Finally, the influence of different laying area of TAIB on transmission loss of composite curved panel was discussed and opinions on parameter selection were put forward. The results show that the thickness of TAIB has greater impact on transmission loss than the density of TAIB in the range of currently available aeroacoustic materials, the best combination of thickness and density in aircraft engineering application is the thickness of 5 inches and the den sity of 9.6 kg/m3. It’s suggested that the laying area of TAIB on composite fuselage curved panel should be more than 80% to get a better sound insulation effect in aircraft engineering applications.

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引用本文

陶然,胡莹,冉勍.复材机身曲板声学分析及隔音棉优化设计[J].民用飞机设计与研 究,2022(4):82-87TAO Ran, HU Ying, RAN Qing. Acoustic analysis of composite fuselage curved panel and optimizationdesign for thermal and acoustic insulation blanket[J]. Civil Aircraft Design and Research,2022,(4):82-87. ( in Chinese)

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  • 在线发布日期: 2023-01-14
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