一种薄膜声学元材料吸收器,具有可调节的声音吸收特性
1Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China.
The Journal of the Acoustical Society of America
|June 28, 2023
概括
这项研究介绍了一种可调节的薄膜声学元材料吸收器 (TFAMA). 应用交替电压可以增强宽带的声音吸收,为低频声学提供灵活的控制.
科学领域:
- 声学 声学 在声学方面
- 材料科学 材料科学 材料科学
- 超材料是什么?超材料是什么?
背景情况:
- 声学超材料提供独特的声音操纵能力.
- 薄膜吸收器对于降低噪声和控制声学至关重要.
- 可调节的声学特性对于多功能应用非常理想.
研究的目的:
- 设计和研究具有可调节声学性能的薄膜声学元材料吸收器 (TFAMA).
- 通过局部共振和电压激发来探索声音吸收增强的机制.
- 为了证明吸收器的宽带可调性,包括低频吸收.
主要方法:
- 声学超材料理论和局部共振的细胞模型.
- 合质块,弹性薄膜和压电材料的振动模态分析.
- 在交替电压激发下进行有限元分析和实验验证.
主要成果:
- TFAMA通过膜腔合共振有效吸收声波.
- 应用交替电压会激发局部共振,显著增强声音吸收.
- 吸声带可以通过调整电压参数,在广泛的范围 (包括低频) 上灵活调整.
结论:
- 设计的TFAMA显示了高效和可调的吸声效率.
- 压电激发为控制声学特性提供了一种实用的方法.
- 这项技术对先进的噪音控制和声学管理解决方案具有前景.
相关概念视频
Characteristics of Practical Op Amps
A difference amplifier, a crucial component in numerous electronic devices, ideally amplifies only the difference-mode signal, which is the difference between two input signals. However, in practical circuits, the output voltage depends on both the differential gain and the common-mode gain.
The ratio of differential gain to the common-mode gain is defined as the common-mode rejection ratio (CMRR). This ratio quantifies the ability of operational amplifiers (op-amps) to reject common-mode...
The ratio of differential gain to the common-mode gain is defined as the common-mode rejection ratio (CMRR). This ratio quantifies the ability of operational amplifiers (op-amps) to reject common-mode...
Op Amp AC Circuits
Within an audio system, the filter circuit plays a pivotal role in processing the amplified audio signal from an amplifier. Its primary function is significantly attenuating signal components with lower frequencies, thereby shaping the audio output. This circuit's operations are examined, focusing on the fundamental filter configuration. This configuration involves an operational amplifier arranged in an inverting setup coupled with resistors (R1 and R2) and a capacitor (C1).
Passive Filters
Passive filters are utilized to shape the frequency spectrum of signals across a diverse array of applications. These filters, using only passive elements like resistors (R), inductors (L), and capacitors (C), are capable of selectively allowing or blocking certain frequency ranges without the need for external power sources.
Low-Pass Filters
Low-pass filters are designed to transmit signals with frequencies lower than the cutoff frequency, ωc, and attenuate those above it. The cutoff frequency...
Low-Pass Filters
Low-pass filters are designed to transmit signals with frequencies lower than the cutoff frequency, ωc, and attenuate those above it. The cutoff frequency...
Active Filters
Active filters are electronic circuits that use operational amplifiers (op-amps), resistors, and capacitors to filter out unwanted frequency components from a signal. A first-order low-pass active filter is designed to pass signals with a frequency lower than a certain cutoff frequency and attenuate frequencies higher than that cutoff frequency. The transfer function for a first-order low-pass active filter is:


