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Low frequency acoustic properties of bilayer membrane acoustic metamaterial with magnetic oscillator 被引量:2
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作者 Nansha Gao Hong Hou Yihao Mu 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2017年第4期252-257,共6页
A bilayer membrane acoustic metamaterial was proposed to overcome the influence of the mass law on traditional acoustic materials and obtain a lightweight thin-layer structure that can effectively isolate low frequenc... A bilayer membrane acoustic metamaterial was proposed to overcome the influence of the mass law on traditional acoustic materials and obtain a lightweight thin-layer structure that can effectively isolate low frequency noise. The finite element analysis(FEA) results agree well with the experimental results.It is proved that the sound transmission losses(STLs) of the proposed structures are higher than those of same surface density acoustic materials. The introduction of the magnetic mass block is different from the traditional design method, in which only a passive mass block is fixed on the membrane. The magnetic force will cause tension in the membrane, increase membrane prestress, and improve overall structural stiffness. The effects of the geometry size on the STLs are discussed in detail. The kind of method presented in this paper can provide a new means for engineering noise control. 展开更多
关键词 Bilayer membrane acoustic metamaterial Low frequency sound insulation sound transmission loss Magnet oscillator
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Sound absorption characteristic of micro-helix metamaterial by 3D printing 被引量:1
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作者 Nansha Gao Hong Hou 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2018年第2期63-67,共5页
We present the design of micro-helix metamaterial supporting high sound absorption characteristic by 3D printing. The sample structure which is fabricated out of polylactide (PLA) material, many micro-helix are arra... We present the design of micro-helix metamaterial supporting high sound absorption characteristic by 3D printing. The sample structure which is fabricated out of polylactide (PLA) material, many micro-helix are arranged by periodic arrays on XY plane. Experiment measurement results show that different geometrical dimensions of helix vestibule and cavity depth have a great effect on sound absorption coefficient. Physical mechanism depends on the friction and viscosity between the air and the helix vestibule. This work shows great potential of micro-structure metamaterial in noise control applications require light weight and large rigid of sound absorption. 展开更多
关键词 Low frequency sound absorption Micro-helix metamaterial 3D printing Helix vestibule Cavity depth
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Neurodynamics analysis of cochlear hair cell activity 被引量:1
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作者 Weifeng Rong Rubin Wang +1 位作者 Jianhai Zhang Wanzeng Konga 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2020年第1期8-15,共8页
There have been many studies on the effect of cochlea basal membrane movement on the resolution of different frequencies and intensities.However,these studies did not take into account the influence of power and energ... There have been many studies on the effect of cochlea basal membrane movement on the resolution of different frequencies and intensities.However,these studies did not take into account the influence of power and energy consumption of the hair cells in the process of the electromotility movement,as well as the neurodynamic mechanism that produced this effect.This makes previous studies unable to fully clarify the function of outer hair cells(OHCs)and the mechanism of sound amplification.To this end,we introduce the gate conductance characteristics of the hair cells in the mechanical process of increasing frequency selectivity.The research finds that the low attenuation of OHCs membrane potential and the high gain in OHC power and energy consumption caused that OHC amplification is driven by electromotility.The research results show that the amplification of the OHCs is driven by low attenuation of membrane potential and high gain of power and energy consumption.This conclusion profoundly reveals the physiological mechanism of the electromotility movement. 展开更多
关键词 Hair cells sound frequencies Membrane potential POWER Outer hair cell amplification
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Cochlear and Vestibular Functional Study in Patients with Sudden Deafness and Lyme Disease 被引量:1
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作者 Ziane Selmani Ilmari Pyykko 《International Journal of Otolaryngology and Head & Neck Surgery》 2014年第1期46-50,共5页
Lyme disease (LD) and idiopathic sudden deafness (ISD) are supposed to be different diseases with different aetiologies. In an attempt to confirm this assumption, 10 patients with confirmed LD and 12 patients with ISD... Lyme disease (LD) and idiopathic sudden deafness (ISD) are supposed to be different diseases with different aetiologies. In an attempt to confirm this assumption, 10 patients with confirmed LD and 12 patients with ISD were consecutively included into the study. Further to the laboratory and audio logical investigation, a low frequency sound (LFS) stimulation on posturography was performed and evaluated. Patients with ISD had higher pure tone average (PTA) than patients with LD (PTA ISD/LD was 72 decibel (dB)/23 dB). There was no difference of vertigo between LD and ISD patients. Patients with ISD have more body sway velocity during the first stimulation than patients with LD. We conclude that the cochlear organ is more affected in ISD patients than in patients with LD. However, the vestibular organ seems to be affected in both diseases. ISD and LD are two different disease entities with different aetiologies but with common otological clinical signs. 展开更多
关键词 Idiopathic Sudden Deafness Lyme Disease Low frequency sound Stimulation
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Acoustic transfer function of cavity and its application to rapid evaluation of sound field at low frequency band
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作者 YIN Gang,CHEN Hualing,HU Xuanli,HUANG Xieqing (Xi’an Jiaotong University Xi’an 710049) 《Chinese Journal of Acoustics》 2001年第1期73-80,共8页
A new method to obtain numerical solution of Acoustic Transfer Function (ATF) by BEM is presented. For a simply supported panel backed by a rectangular cavity at low frequency band (0-200 Hz), the frequency property o... A new method to obtain numerical solution of Acoustic Transfer Function (ATF) by BEM is presented. For a simply supported panel backed by a rectangular cavity at low frequency band (0-200 Hz), the frequency property of ATF is analyzed. The relation between the accuracy of the rapid evaluation of sound field and the discretization schemes of the vibrational panel is discussed. The result shows that the method to obtain ATF and the rapid evaluation of sound field using the ATF is suitable to low frequency band. If an appropriate discretization scheme is choosed based on the frequency involved and the effort to obtain ATF, the accuracy of the rapid evaluation of sound field is acceptable. 展开更多
关键词 Acoustic transfer function of cavity and its application to rapid evaluation of sound field at low frequency band
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DISCREPANCY IN SOUND POWER DETERMINATION AT LOW FREQUENCIES
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作者 MAA Dah-You( Institute of Acoustics , Academia Sinica ) 《Chinese Journal of Acoustics》 1989年第2期97-110,共14页
The determination of the sound power of a source is simple in a reverberation chamber , but usually lower valves are obtained at low frequencies than the free - space value . It is shown that the sound power determine... The determination of the sound power of a source is simple in a reverberation chamber , but usually lower valves are obtained at low frequencies than the free - space value . It is shown that the sound power determined in a reverberation chamber depends not only on its free - space power , but also on the positions of the source and the reveiver , as well as the way the measurements are made and averaged . Exact and statistical formulas are derived to account for these factors . The results explain the discrepancy and agree well with earlier experiments . Based on the theory ,parcticable techniques of sound power determination are proposed and correct power formulas presented . 展开更多
关键词 DISCREPANCY IN sound POWER DETERMINATION AT LOW FREQUENCIES
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