论文标题
手动调谐通风超材料吸收器
Manually Tunable Ventilated Metamaterial Absorbers
论文作者
论文摘要
对于大多数声学超材料,一旦制造出来,它们的操作频率和功能就无法调整,这是用于实际应用开发的内在障碍。克服这一限制的研究已成为声学超材料工程的重大问题。尽管在过去的二十年中,随着超材料的发展,已经提出了一系列的电动或磁控制方法,但其中大多数只能在没有流体通道的情况下起作用。已经提出了一些超大型传输损失的超材料,但是声音基本上反映了而不是吸收。在这里,为了克服这种内在的困难,我们提出了一种通风的吸收器,可以在制造后可以在大型范围内手动调整。在通过精心设计的滑块实现的调整过程中,都可以确保高性能的吸收和通风。可以通过实验证明可调通风的吸收器,并可以使用耦合有损耗的振荡器的有效模型来了解其机制。手动可调的通风超材料具有各种复杂的管道系统中的潜在应用值,这需要频率调整,并且为未来开发的活跃可调通风的声学材料材料树立了基础。
For most acoustic metamaterials, once they have been fabricated, their operating frequencies and functions cannot be adjusted, which is an intrinsic barrier for development of realistic applications. The study to overcome this limit has become a significant issue in acoustic metamaterial engineering. Although with the advance of metamaterials in the past two decades, a series of methods such as electric or magnetic control have been proposed, most of them can only work in the condition of no fluid passage. Some metamaterials with large transmission losses have been proposed, but the sounds are essentially reflected rather than absorbed. Here, to overcome this intrinsic difficulty, we propose a ventilated sound absorber that can be manually tuned in a large range after being manufactured. During the tuning which is achieved through an intricately designed slider, high-performance absorption and ventilation are both ensured. The tunable ventilated sound absorber is demonstrated experimentally and the effective model of coupled lossy oscillators can be employed to understand its mechanism. The manually tunable ventilated metamaterial has the potential application values in various complicated pipe systems that require frequency adjustment and it also establishes the foundation for future development of active tunable ventilated acoustic metamaterials.