A Subwavelength Broadband Metamaterial Absorber for Low-Frequency Noise Control
A technology of low-frequency noise and metamaterials, applied in the direction of sound-generating devices and instruments, to achieve good suppression and broadband absorption efficiency
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0026] Use 3D printing technology to print and process a metamaterial resonator integrating 6 Helmholtz resonators. The parameters are shown in Table 1. The height of the metamaterial resonator is 40 mm, and a cylindrical ring with a thickness of 4 mm is cut with a sponge cutting tool. The metamaterial resonator is embedded in the sponge, so far a complete absorber cell is processed, and the integrated metamaterial resonator can provide 6 resonances with wavelengths much larger than its size. Such as image 3 As shown, the cells are arranged according to the period d=160mm and placed at s=15mm in front of the hard boundary 5. The hard boundary 5 only requires that the impedance of the boundary is far greater than the acoustic impedance of the air. In practical applications, it can be realized by building walls . The absorption curve obtained in this way is as follows Figure 5 As shown, the frequency range of the sound absorption coefficient greater than 98% is 231Hz to 326H...
Embodiment 2
[0028] In order to further reduce the frequency of the sound wave without changing the external dimensions of the metamaterial resonator, this embodiment uses 3D printing technology to print and process a metamaterial resonator integrating four Helmholtz resonators. The parameters are shown in Table 1 , the height of the metamaterial resonator is 40mm, use a sponge cutting tool to cut a cylindrical ring with a thickness of 4mm, and embed the metamaterial resonator into the sponge, so far a complete absorber unit is processed and formed. Similarly, the cells are arranged in a period d=150mm and placed at s=13mm in front of the hard border 5 . The absorption curve obtained under this installation method is as follows Figure 6 As shown, the sound absorption coefficient is greater than 98%, the frequency range is 188Hz to 238Hz, and the corresponding wavelength is 28.5R o to 22.5R o .
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com