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A comparative analysis of sound absorption performance of ZL 104/aluminum fiber composite foam

机译:ZL 104 /铝纤维复合泡沫的吸声性能对比分析

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摘要

ZL104 alloy foam and ZL104 alloy/aluminum fiber composite foams with a porosity of 71-90% were prepared by an infiltration casting method. The pore structure and the sound absorption properties of these two kinds of foams were studied. The results show that fibers partially embedded in the porous pore walls and partially extending out of the pore in the composite foams. The sound absorption coefficient of the foams has a sound absorption peak and a sound absorption trough with increasing frequency. The fiber composite foam possesses better sound absorption properties compared with the alloy foam. As porosity, fiber diameter, and fiber content increases, the average sound absorption coefficient of the composite foam first increases and then decreases. The average sound absorption coefficient (0.88) of the composite foam with a fiber content of 5 vol%, a fiber diameter of 0.1 mm, and a porosity of 82% increased 10% compared with that of the alloy foam. The surface roughness and specific surface area of the foam increase after fiber compounding, and the sound wave drives the fibers to vibrate to enlarge the consumption of sound energy.
机译:通过浸铸法制备孔隙率为71-90%的ZL104合金泡沫和ZL104合金/铝纤维复合泡沫。研究了这两种泡沫的孔结构和吸声性能。结果表明,纤维部分地嵌入多孔孔壁中,并且部分地延伸出复合泡沫中的孔。泡沫的吸声系数具有吸声峰和随频率增加的吸声槽。与合金泡沫相比,纤维复合泡沫具有更好的吸声性能。随着孔隙率,纤维直径和纤维含量的增加,复合泡沫的平均吸声系数首先增加,然后降低。与合金泡沫相比,纤维含量为5vol%,纤维直径为0.1mm,孔隙率为82%的复合泡沫的平均吸声系数(0.88)增加了10%。复合纤维后,泡沫的表面粗糙度和比表面积增加,并且声波驱动纤维振动,从而增加了声能的消耗。

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