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Numerical and Experimental Study on the Acoustic Performance of Ni-based Superalloy Open Cell Foam

机译:Ni基超合金开孔泡沫声学性能的数值和实验研究

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Open cell metal foams can be used as efficient sound absorbers. Ni-based Inconel 625 superalloy foam has high temperature and corrosion resistance properties comparing to traditional aluminum foam, thus has potential working as sound absorbers in high temperature and harsh environment for aerospace or marine industry. This work studies the acoustic performance of open-celled Inconel 625 foams manufactured by a newly developed template replication process. The foam porosity and cell size can be controlled by the process, which are important factors to the sound absorption performance. The foam microstructure were analysed using X-ray microtomographic and SEM technology, showing typical open cell structures with a representative tetrakaidecahedron unit cell shape. Analytical formula were developed to predict the foam absorption coefficient based on geometrical parameters obtained from geometrical and microstructural analysis. Using the simple impedance tube setting, good agreement between numerical simulation and experimental results was obtained. TN625 foam with sound absorption coefficient as high as 80% have been successfully fabricated and its sound absorption performance has been successfully simulated in this work. This simulation work propose a simple yet efficient way to bridge the sound absorption performance of metallic foams with their microstructural and geometrical properties, which can be utilized as a design tool to consider the metal foam performance in noise control applications.
机译:开放式电池金属泡沫可用作有效的吸音器。基于NI的Inconel 625高温合金泡沫具有高温和耐腐蚀性,与传统的铝泡沫相比,因此具有高温和苛刻环境的吸音器,用于航空航天或海洋工业的潜在。这项工作研究了通过新开发的模板复制过程制造的开放式Inconel 625泡沫的声学性能。泡沫孔隙率和电池尺寸可以通过该过程控制,这是吸收性能的重要因素。使用X射线微谱和SEM技术分析泡沫微观结构,示出了具有代表四面八型向量单元细胞形状的典型开放电池结构。开发分析公式以预测基于从几何和微结构分析获得的几何参数的泡沫吸收系数。使用简单的阻抗管设置,获得数值模拟与实验结果之间的良好一致性。 TN625具有高达80%的吸音系数的TN625泡沫已成功制造,并且在这项工作中成功模拟了其吸声性能。该仿真工作提出了一种简单且有效的方法来弥合金属泡沫的吸音性能,其微观结构和几何特性可以用作设计工具,以考虑噪声控制应用中的金属泡沫性能。

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