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Study on sound insulation performance of the periodic arrangement expansion chambers structure with built-in micro-perforated panel

机译:内置微孔板的周期性布置膨胀室结构的隔声性能研究

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摘要

The periodic arrangement expansion chambers structure with built-in micro-perforated panel (MPP) is proposed. The transmission loss (TL) of expansion chambers before and after the introduction of MPP is analyzed by transfer matrix method and finite element method. In the low frequency range, the TL curves obtained by the transfer matrix method and finite element method are consistent. Both show that the first pass frequency of the structure disappears and the sound insulation bandwidth of the structure widens obviously after the introduction of MPP. The influences of the parameters of the periodic expansion chambers structure on the TL are numerically analyzed. By making hole on the inserted MPP, ventilation cooling function is realized. The result shows that the overall sound insulation effect is still satisfying after making appropriate hole. Additionally, expansion chambers and double MPP with hole insertion structure has been constructed. The result shows that the second pass frequency of expansion chambers structure also disappears. Therefore, the sound insulation performance of the expansion chambers structure is further improved by adding double-layer MPP. The sound insulation performance of the periodic expansion chambers structure with ventilation capability is tested by laboratory experiments. Excellent sound insulation ability is confirmed. (C) 2019 Published by Elsevier Ltd.
机译:提出了一种内置微孔板(MPP)的周期性布置膨胀室结构。采用传递矩阵法和有限元法对MPP引入前后膨胀室的传输损失(TL)进行了分析。在低频范围内,通过传递矩阵法和有限元法得到的TL曲线是一致的。两者都表明,引入MPP后,结构的首过频率消失,结构的隔音带宽明显扩大。数值分析了周期性膨胀室结构参数对TL的影响。通过在插入的MPP上打孔,可以实现通风冷却功能。结果表明,适当打孔后总体隔音效果仍令人满意。另外,已经构造了膨胀室和具有孔插入结构的双重MPP。结果表明,膨胀室结构的第二次通过频率也消失了。因此,通过添加双层MPP,进一步提高了膨胀室结构的隔音性能。通过实验室实验测试了具有通风能力的周期性膨胀室结构的隔音性能。确认了优异的隔音能力。 (C)2019由Elsevier Ltd.发布

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