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1.
为了解决军用飞机舱室内产生的低频噪声问题,构建了一种新型的Helmholtz型二维声子晶体,该结构采用迷宫型开口通道,并在结构加入了刚性振子.研究发现,该结构在晶格常数为62 mm条件下,将第一低频带隙的下限降至15 Hz左右,且在100 Hz频率左右形成一条宽度为93 Hz的带隙宽带,表现出较好的低频隔声特性.首先,通过振型及声压场分析了其带隙成因,采用“力-声类比”的方法建立了该结构的等效模型,最后利用有限元法和传递矩阵法对第一低频的带隙范围进行了计算,两种方法所得结果基本相符;其次,通过有限元法探究了晶格常数、空气通道长度及振子材料等结构参数对低频带隙的影响.研究表明,增加开口通道长度和晶格常数都会降低第一带隙下限,增加振子材料密度能够有效降低第二带隙的上下限,进一步揭示了该结构带隙形成的实质,验证了等效模型的准确性.该研究为低频噪声控制方面提供了一定的理论支持,为低频声子晶体的设计提供了新的思路.  相似文献   

2.
通过在加筋板结构上附加周期性排列的"弹簧-质量"共振子单元,构造了一种局域共振型加筋板结构.针对这种新型结构,基于有限元法和周期结构Bloch定理,建立了其弹性波传播与振动特性理论计算方法;采用该方法深入研究了局域共振型加筋板的弯曲波带隙特性和减振特性.研究表明,局域共振子能够对加筋板的弯曲波传播特性产生显著影响,一方面使其产生更加低频的带隙,另一方面还能拓宽其中高频带隙.进一步深入分析了共振子的弹簧刚度、共振子的质量对带隙特性和减振特性的影响,发现了有价值的带隙调控现象、规律和减振特性,可为局域共振型加筋板的带隙特性设计与工程减振应用提供理论指导和有益参考.  相似文献   

3.
吴健  白晓春  肖勇  耿明昕  郁殿龙  温激鸿 《物理学报》2016,65(6):64602-064602
设计了一种多频局域共振型声子晶体板结构, 该结构由一薄板上附加周期性排列的多个双悬臂梁式子结构而构成. 由于多个双悬臂梁式子结构的低频振动与薄板振动的相互耦合作用, 这种局域共振型板结构可产生多个低频弯曲波带隙(禁带); 带隙频率范围内的板弯曲波会被禁止传播, 利用带隙可以实现对薄板的多个目标频率处低频减振. 本文针对这种局域共振型板结构进行了简化, 并基于平面波展开法建立了其弯曲波带隙计算理论模型; 基于该模型, 结合具体算例进行了带隙特性理论分析. 设计、制备了一种存在两个低频弯曲波带隙的局域共振型板结构样件, 通过激光扫描测振仪测试证实该结构存在两个低频带隙, 在带隙频率范围的板弯曲振动被显著衰减.  相似文献   

4.
含左手材料异质结构光子晶体的零平均折射率带隙的展宽   总被引:1,自引:0,他引:1  
孙健  郑义  丁春峰  沈建平  任怀远 《光子学报》2009,38(7):1702-1706
运用光学传输矩阵理论,研究了含左手材料一维二元光子晶体的禁带特性.提出了含左手材料的光子晶体异质结构中零平均折射率带隙展宽的方法.根据此方法设计的异质结构的光子晶体形成的零平均折射率带隙,与一维光子晶体零平均折射率带隙相比,零平均折射率带隙的宽度和相对带隙宽度可以得到显著的拓宽.而且它的零平均折射率带隙的边缘与TM波和TE波相关.这种特性在微型谐振腔、天线基片、同轴波导等方面都具有潜在的应用.  相似文献   

5.
陈鑫  姚宏  赵静波  张帅  贺子厚  蒋娟娜 《物理学报》2019,68(8):84302-084302
为提高Helmholtz型声子晶体低频隔声性能,设计了一种Helmholtz腔与弹性振子的耦合结构,通过声压场及固体振型对其带隙产生机理进行了详细分析,建立了相应的弹簧-振子系统等效模型,并采用理论计算和有限元计算两种方法研究了各结构参数对其带隙的影响情况.研究表明,该结构可等效为双自由度系统振动,在低频范围内具有两个带隙;在6 cm的尺寸下,其第一带隙下限可低至24.5 Hz,而同尺寸无弹性振子结构只能达到42.1 Hz,带隙下限降低了40%,较传统Helmholtz结构具有更为优良的低频隔声特性.另外,在框体尺寸一定的情况下,降低结构间距、增大开口空气通道长度及振子质量、增大左侧腔体体积等方式,是增大带隙宽度、提高低频隔声效果的主要手段.  相似文献   

6.
运用光学传输矩阵和色散关系理论,研究了由正折射率材料和负折射率材料交替组成的一维光子晶体的禁带特性,发现了一种新型带隙—零平均折射率带隙。与传统的Bragg带隙相比,只要两种介质厚度的比例保持不变,这种零平均折射率带隙的边缘频率,与光子晶体的晶格常数无关,并利用一个等效的传输线模型得出了带隙边缘频率的数学表达式,解释了这个性质。  相似文献   

7.
用于汽车低频振动控制的局域共振声子晶体*   总被引:1,自引:1,他引:0       下载免费PDF全文
低频振动的控制是评估汽车舒适性的重要指标。针对汽车板件结构的低频振动控制问题,提出了一种基于局域共振机理的新型准二维声子晶体板。其结构由单侧复合圆柱共振单元周期排布在基板上构成。通过有限元方法得到了该结构的带隙特性,并结合其振型和传输谱分析了低频完全带隙的形成机理。研究表明,不同形式的板振动模式与圆柱共振单元的局域共振模式相互耦合形成面内带隙与面外带隙,两者叠加形成完全带隙。进一步研究发现,通过改变结构的材料和尺寸参数可以将共振带隙调节到满足实际应用要求的极低频范围,可在低于100 Hz的频段形成完全带隙,并可在更宽的频带内抑制z方向振动的弯曲波,为声子晶体在车身板件减振中的实际应用提供了依据。  相似文献   

8.
设计了一种双开口Helmholtz周期结构,该周期结构单元采用双开口内外腔设计,基于多腔耦合局域共振机理,可大大增加局域共振区域,增加能得到较低的低频带隙特性.通过设计调节内腔弧长,可以使带隙移动,达到特定低频频段的隔声效果.在分析低频带隙形成机理和影响因素时,采用声电类比原理建立带隙起始频率和截止频率的计算数学模型并与有限元方法进行对比分析.研究表明:该结构具有良好的低频带隙特性,其最低带隙段为86.9—138.2 Hz.外径一定的条件下,低频带隙受内腔弧长、内外腔间隔以及周期单元结构间隔影响,内腔弧长越长,低频带隙越低;内外腔间距离越大,从而内腔体积变小,带隙向高频移动,其低频效果变差;减小结构间距对低频带隙起始频率无影响,但可以大大增加低频带隙截止频率,从而增加带隙宽度.该研究结论可以为低频降噪领域提供一定的实践和理论支持.  相似文献   

9.
杜春阳  郁殿龙  刘江伟  温激鸿 《物理学报》2017,66(14):140701-140701
以声子晶体理论为基础,设计了一种具有超阻尼特性的X形局域共振结构,分析了周期性附加X形局域共振的梁弯曲振动传播特性.利用拉格朗日方程分析了X形局域共振结构动力学等效特性,揭示了该结构的阻尼放大的机理,分析了几何结构参数对于带隙特性的影响,并利用有限元法验证了X形局域共振结构的超阻尼特性.研究结果表明,周期性附加X形局域结构能够有效地抑制低频弯曲振动在梁中的传播,产生超阻尼特性,实现低频、宽带的减振效果,为结构的低频减振提供了一个新的设计方案.  相似文献   

10.
张思文  吴九汇 《物理学报》2013,62(13):134302-134302
本文提出了一种新型局域共振复合单元声子晶体结构, 并结合有限元方法对结构的带隙机理及低频共振带隙特性进行了分析和研究. 共振带隙产生的频率位置由所对应的局域共振模态的固有频率决定, 并且带隙宽度与局域共振模态的品质因子及其与基体之间的耦合作用强度有关. 采用局域共振复合单元结构可以实现声子晶体的多重共振, 在低频范围能打开多条共振带隙, 但受到共振单元排列方式的的影响. 由于纵向和横向局域共振模态的简并, 复合单元结构能在200 Hz以下的低频范围打开超过60%宽度的共振带隙, 最低带隙频率低至18 Hz. 这为声子晶体结构获得低频、超低频带隙提供了一种有效的方法. 关键词: 局域共振 低频带隙 复合单元 声子晶体  相似文献   

11.
In this work, a chiral metacomposite is proposed by integrating two-dimensional periodic chiral lattice with elastic metamaterial inclusions for low-frequency wave applications. The plane harmonic wave propagation in the proposed metacomposite is investigated through the finite element technique and Bloch's theorem. Band diagrams are obtained to illustrate wave properties of the chiral metacomposite. Effective dynamic properties of the chiral metacomposite are numerically calculated to explain low-frequency bandgap behavior in the chiral metacomposite. Interestingly doubly negative effective density and modulus of the chiral metacomposite are found in a specific frequency range, where a pass band with negative group velocity is observed. Tuning of the resulting low-frequency bandgaps is then discussed by adjusting microstructure parameters of the metamaterial inclusion and lattice geometry. Specifically design of a metacomposite beam structure for the broadband low-frequency vibration suppression is demonstrated.  相似文献   

12.
王婷  王辉  盛美萍  秦庆华 《中国物理 B》2016,25(4):46301-046301
A two-dimensional phononic crystal(PC) structure possessing a relatively low frequency range of complete bandgap is presented. The structure is composed of periodic spindle-shaped plumbum inclusions in a rubber matrix which forms a square lattice. The dispersion relation, transmission spectrum and displacement field are studied using the finite element method in conjunction with the Bloch theorem. Numerical results show that the present PC structure can achieve a large complete bandgap in a relatively low frequency range compared with two inclusions of different materials, which is useful in low-frequency noise and vibration control and can be designed as a low frequency acoustic filter and waveguides. Moreover,the transmission spectrum and effective mass are evaluated to validate the obtained band structure. It is interesting to see that within the band gap the effective mass becomes negative, resulting in an imaginary wave speed and wave exponential attenuation. Finally, sensitivity analysis of the effect of geometrical parameters of the presented PC structure on the lowest bandgap is performed to investigate the variations of the bandgap width and frequency.  相似文献   

13.
《Physics letters. A》2020,384(35):126885
Aiming at the problem of low-frequency vibration and noise reduction in the engineering field, a new two-dimensional tapered scatterer phononic crystals slab is designed and the bandgap characteristics and displacement vector field of the model are simulated by means of finite element method. The numerical simulations show that an extremely wide complete bandgap can be achieved at low frequency. Compared with the reference model [Acoust. Phys. 65 (2019) 322], the first complete bandgap of the designed model has a lower starting frequency and a wider bandgap which is expanded by nearly 15 times. Moreover, the mechanism of bandgap generation is analyzed, the influences of geometric parameters and structure symmetry on the band structure are also investigated.  相似文献   

14.
《Physics letters. A》2020,384(35):126892
The artificially periodic structures with the bandgap (BG) features provide a fantastic way for elastic wave manipulation. However, omnidirectional control of elastic waves at low-frequency remains a challenge, especially in the engineering application, due to the great different material parameters of the structure's components. In this work, we present the design of a three-dimensional syndiotactic metastructure (STM) and isotactic metastructure (ITM) composed of a single material with the same density and stiffness. A low-frequency broad bandgap occurs in the global band structure of STM. Meanwhile, it also retains the same high-frequency ultra-wide BG as that of ITM. The formation of the low-frequency BG of STM is attributed to the simultaneous activation of rotation and translation modes. The static deformation analysis indicates that STM has a unique translational and rotational coupling mechanism. The frequency response results reveal that the coupling mechanism can also enhance the attenuation of high-frequency BG.  相似文献   

15.
This paper presents a negative refractive index tunable metamaterial based on F-Shape structure which is capable of achieving dual-band negative permeability and permittivity, thus dual-band negative refractive index. An electromagnetic simulation was performed and effective media parameters were retrieved. Numerical investigations show clear existence of two frequency bands in which permeability and permittivity both are negative. The two negative refractive index bandwidths are from 23.8 GHz to 24.1 GHz and from 28.3 GHz to 34.9 GHz, respectively. The geometry of the structure is simple so it can easily be fabricated. The proposed structure can be used in multiband and broad band devices, as the band range in second negative refractive index region is 7 GHz, for potential applications instead of using complex geometric structures and easily tuned by varying the separation between the horizontal wires.  相似文献   

16.
The local resonant band gap and the negative bulk modulus of the acoustic metamaterial with Helmholtz resonators are strongly affected by the temperature of water. In this paper, the acoustic transmission line method (ATLM) is introduced to investigate the influences of the temperature of water on the local resonant band gap and the negative bulk modulus of the acoustic metamaterial. Results show that the relative variations of the local resonant band gap and the negative effective bulk modulus suffering from the change of the temperature of water are approximately equivalent and are up to about 11%. The reason is that the local resonant frequency is proportional to the sound speed of fluid which is strongly effects by the temperature of water. By achieving the unambiguous relationships between these unusual properties of the acoustic metamaterial and the temperature of water, we find that the temperature-controlled acoustic metamaterial with the active band gap and the active negative bulk modulus can be realized in theory. This idea opens a new avenue for the design of the tunable acoustic metamaterial that can modulate the acoustic wave propagation.  相似文献   

17.
In this paper, the elastic band structures of two-dimensional solid phononic crystals (PCs) with both negative and positive Poisson's ratios are investigated based on the finite difference domain method. Systems with different combinations of mass density ratio and shear modulus ratio, filling fractions and lattices are considered. The numerical results show that for the PCs with both large mass density ratio and shear modulus ratio, the first bandgap becomes narrower with its upper edge becoming lower as Poisson's ratio of the scatterers decreases from −0.1 to −0.9. Generally, introducing the material with a negative Poisson's ratio for scatterers will make this bandgap lower and narrower. For the PCs with large mass density ratio and small shear modulus ratio, the first bandgap becomes wider with Poisson's ratio of the scatterers decreasing and that of the host increasing. It is easy to obtain a wide low-frequency bandgap by embedding scatterers with a negative Poisson's ratio into the host with a positive Poisson's ratio. The PCs with large filling fractions are more sensitive to the variations of Poisson's ratios. Use of negative Poisson's ratio provides us a way of tuning bandgaps.  相似文献   

18.
翟世龙  王元博  赵晓鹏 《物理学报》2019,68(3):34301-034301
在当今社会,噪声污染已经成为人类健康的一大威胁,如何有效地控制和消除噪声污染一直是科研领域的一个重要话题.本文以开口环嵌套结构为模型,设计并制备了一种声学超材料.通过理论分析、数值模拟和实验测试,发现由于模型内部空腔的强烈耦合共振效应,该超材料可以在低频区域实现接近完美的吸声效应.此外,通过简单地绕轴旋转其内腔开口方向,即可改变该超材料的相对阻抗值,进而在较宽的频带范围内实现对吸收峰位置的可调控制.由于该超材料具有深亚波长的尺寸,因此非常有利于低频吸声器件的小型化和集成化,同时该模型也为宽带吸收器的设计奠定了基础.  相似文献   

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