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1.
许震宇  章敏 《力学季刊》2008,29(1):54-57
光子晶体是由两种或两种以上的透明材料周期排列构成的功能复合材料,它可以完全反射一定频率范围内的电磁波,这个性能称为光带隙.光子晶体将在光通信、数据存储以及光路设计等方面得到广泛的应用.本文设计了一种应变可调的二维光子晶体结构,通过基底产生的正应变改变光子晶体的周期性,从而改变其光带隙性能.利用平面波展开法考察了该结构的应变可调性,即其力致变色效应.结果表明,压应变会显著影响横向电波(Transerse electric waves, TE)的传播特性,打开多条光带隙.并且光带隙的宽度也正比于压应变的大小.利用这样的效应可以制成应变传感器或光学开关等器件.  相似文献   

2.
声光子晶体是一种同时具有光子和声子带隙的周期性结构.声光子晶体为同时控制电磁波和弹性波的传播提供了一个系统的平台,并在光学、声学及声光多功能器件、腔光力学等领域展现了十分广阔的应用前景.论文首先介绍了声光子晶体的基本概念,包括声光子晶体的材料、空间周期分类、能带结构的计算方法等;阐述了不同体系下声光子晶体双重带隙的特性,以及拓扑优化方法在声光子晶体带隙优化方面的应用;然后简要介绍了腔光力学,以及计算声光耦合作用的准静态方法和光力耦合系数方法,并针对当前各种声光子晶体结构中声光耦合作用的研究进行了阐述;还进一步介绍了声光子晶体波导和传感器的相关研究;最后,基于当前声光子晶体的研究进展对未来的研究方向进行了展望,其中涉及到增强声光子晶体谐振腔的声光相互作用、三维声光子晶体的研究、声光超构材料的设计、声光子晶体器件设计与应用等.  相似文献   

3.
光子晶体光纤具有抗辐射、抗弯曲、抗磁场干扰和温度敏感性低等优势,是空间用光纤陀螺的理想选择。针对空间用光纤陀螺,提出了四层孔和双层孔陀螺用光子晶体光纤结构,突破了光子晶体光纤长距离拉制关键技术,批量制备了陀螺用长距离低损耗实芯光子晶体光纤与空芯光子晶体光纤,利用开发的光子晶体光纤周向散射、背向散射、温度、磁等性能测试设备,全面测试与验证了光子晶体光纤性能优势。实现了光子晶体光纤耦合器、敏感环等光学器件,研制的高精度光子晶体光纤陀螺样机于2017年4月随"天舟一号"货运飞船发射成功,实现了光子晶体光纤陀螺的首次空间应用,于2020年12月用于某卫星主控,这是国际首次此类型陀螺用于卫星主闭环控制,验证了其可行性和优势,为将来广泛应用奠定了基础。  相似文献   

4.
光子晶体光纤陀螺技术是解决光纤陀螺空间辐照及热漂移问题的重要技术途径,其中光子晶体光纤环是影响光纤陀螺性能的关键。仿真分析了光子晶体光纤的双折射与结构设计的关系,并计算了光纤的双折射和光纤环绕制过程引入的附加双折射的温度灵敏度,利用白光干涉仪,对光子晶体光纤环和普通的保偏光纤环进行了对比测试分析。试验结果表明,光子晶体光纤环具有较低的偏振特性温度灵敏度,双折射温度系数比普通保偏光纤低接近1个量级,引起的陀螺偏振误差也比普通保偏光纤环小1倍左右。试验结果验证了理论分析的正确性。  相似文献   

5.
针对三轴光纤陀螺共用光源问题,提出了一种新型的多芯液晶光子晶体光纤,该光纤具有三个呈等边三角形几何形状排列的液晶纤芯.利用有限元法对其功率分布、模场、有效折射率和色散特性进行了数值分析,结果表明,这种三芯液晶光子晶体光纤可将传输光完全等分为三束光,且具有平坦色散特性,在波长为1.45μm~1.75μm之间的色散变化小于2 ps·km-1·nm-1.此外,该光纤在大约150 nm的波长范围内显示出超平坦的色散,并且可以通过改变中心空气孔的直径来调整超平坦色散的波长范围.研究成果对液晶光子晶体光纤、三轴光纤陀螺和三相光纤电流互感器的等光分束器、1×3多芯光子晶体耦合器和平坦色散光纤的进一步发展具有重要意义.  相似文献   

6.
针对三轴光纤陀螺共用光源问题,提出了一种新型的多芯液晶光子晶体光纤,该光纤具有三个呈等边三角形几何形状排列的液晶纤芯。利用有限元法对其功率分布、模场、有效折射率和色散特性进行了数值分析,结果表明,这种三芯液晶光子晶体光纤可将传输光完全等分为三束光,且具有平坦色散特性,在波长为1.45μm~1.75μm之间的色散变化小于2 ps·km~(-1)·nm~(-1)。此外,该光纤在大约150 nm的波长范围内显示出超平坦的色散,并且可以通过改变中心空气孔的直径来调整超平坦色散的波长范围。研究成果对液晶光子晶体光纤、三轴光纤陀螺和三相光纤电流互感器的等光分束器、1×3多芯光子晶体耦合器和平坦色散光纤的进一步发展具有重要意义。  相似文献   

7.
云纹干涉与钻孔法测量残余应力的实验方法与系统   总被引:7,自引:0,他引:7  
戴福隆  亚敏  谢惠民  吕坚 《实验力学》2003,18(3):313-318
应变片钻孔法是工程中应用最广的残余应力测量方法之一,由于应变片只能得到其长度范围内的平均应变,测量误差比较大,本文提出用云纹干涉法测量的位移信息代替应变片测量的应变信息来确定残余应力,用有限元建立位移与残余应力之间的关系,基于以上理论,开发了一种可以进行现场残余应力测量的便携式云纹干涉钻孔系统,并用该仪器进行了铝合金激光焊接接头的残余应力测量,得到了焊缝中心残余应力值。  相似文献   

8.
曹蕾蕾  朱旺  武建华  张传增 《力学学报》2021,53(7):1992-1998
声子晶体是一种人工周期性复合材料, 其带隙特性使其在减振、隔声、滤波和声学功能器件等领域具有潜在的应用价值. 如何准确操纵声波和机械波是声子晶体设计的主要挑战. 现有设计方法是基于对结构几何参数与材料参数的分析调整使其匹配特定的应用特性, 设计效率不高且无法达到最佳性能. 为此, 本文以一维层状声子晶体为例, 提出了一种基于Softmax逻辑回归和多任务学习的人工神经网络声子晶体逆向设计方法, 其中, Softmax逻辑回归实现分层结构各区域材料种类的选择, 通过多任务学习确定各区域材料的分布, 从而, 将声子晶体逆向设计问题转化为对单位胞元拓扑结构多组分材料的分类问题. 首先, 随机生成大量声子晶体拓扑结构样本; 然后, 采用有限元法进行并行计算得到所有样本的带隙分布; 接着, 通过神经网络建立带隙分布和拓扑结构之间的映射关系; 最后, 利用训练好的神经网络设计具有目标带隙特性的声子晶体, 即以目标带隙作为神经网络的输入, 网络将直接输出对应的声子晶体单元胞元拓扑结构. 算例表明本方法可根据应用需求快速高效地得到具有目标带隙的一维声子晶体. 该方法为声子晶体的逆向设计提供了一种新颖思路.   相似文献   

9.
为测量结构内部动应变,我们采用了在结构内部预埋应变片的方法。首先将应变片制成应变元件或应变体以固定应变片的位置,然后按照要求将应变元件或应变体埋入模型中,浇注成整体,进行测试。这里介绍的是我们预埋 ...  相似文献   

10.
本文提出一种应变测量方法,可以在保持分辨力的前提下,扩大应变量程(应变分辨力为0.2μ∈,应变量程为1199μ∈)。方法是对工作应变片和补偿应变片分别用恒流源供电,测量其输出差值。并且,与微机联机,使测量中大量的修正和补偿可以自动完成,直接得到数据处理结果。  相似文献   

11.
刘荣梅 《实验力学》2008,23(1):59-64
提出基于同一倍增器上双疲劳计的桥梁载荷谱检测方法,将疲劳传感器上两个疲劳计以不同方向粘贴得到不同放大系数,由恒幅标定数据和等效原理用插值方法得到复杂加载下疲劳响应计算方法,并根据桥梁载荷谱的瑞利分布特点,得到该分布下的疲劳响应计算方法.采用倍增器的双疲劳计结构设计,利用疲劳计响应的非线性特性,得到疲劳传感器电阻变化与桥梁瑞利载荷谱的对应关系.本文疲劳试验表明,试验载荷谱与预测载荷谱相当吻合,所设计的疲劳传感器性能良好,能够满足桥梁疲劳载荷检测要求.该传感器的检测原理提供了一种新的工程疲劳检测方法,它较目前采用的其它方法效率高、精度好,适用于长期疲劳监测.  相似文献   

12.
张明  胡明敏  李训涛 《力学季刊》2007,28(4):647-652
设计了一种结构独特的应变增幅器,使疲劳计的响应灵敏度大大提高,从而使疲劳计较高响应门槛值能与结构高周疲劳情况相匹配,扩展了疲劳计的应用范围,满足了桥梁工程结构疲劳检测要求.由恒幅标定数据和等效原理用插值方法得到复杂加载下疲劳响应计算方法,并根据桥梁载荷谱的瑞利分布特点,得到该分布下的疲劳响应计算方法.采用增幅器的双疲劳计结构设计,利用疲劳计响应的非线性特性,得到疲劳传感器电阻变化与桥梁瑞利载荷谱的对应关系.该传感器的检测原理提供了一种新的工程疲劳检测方法,它较目前采用的其它方法效率高、精度好,适用于长期疲劳监测.疲劳实验表明,实验载荷谱与预测载荷谱相当吻合,所设计的疲劳传感器性能良好、满足桥梁疲劳载荷检测要求.  相似文献   

13.
We report on a first-principles study of a novel band modulation in zigzag double-walled boron nitride nanotubes (DBNNTs) by applying radial strain and coupled external electric field. We show that the band alignment between the inner and outer walls of the DBNNTs can be tuned from type I to type II with increasing radial strain, accompanied with a direct to indirect band gap transition and a substantial gap reduction. The band gap can be further significantly reduced by applying a transverse electric field. The coupling of electric field with the radial strain makes the field-induced gap reduction being anisotropic and more remarkable than that in undeformed DBNNTs. In particular, the gap variation induced by electric field perpendicular to the radial strain is the most remarkable among all the modulations. These tunable properties by electromechanical coupling in DBNNTs will greatly enrich their versatile applications in future nanoelectronics.  相似文献   

14.
Strain gauges are used together with the corresponding gauge factor to relate the relative electrical resistance change of the strain gauge with the strain of the underlying material. The gauge factor is found from a calibration on a stiff material - steel. Nevertheless, the gauge factor depends on the stiffness of the calibration material and ideally the calibration should be done on a similar material as tested. In practice, the gauge factor found by the strain gauge manufacturer is often used. The paper documents that even for moderately stiff materials such as glass-fibre composites a significant error is found on the strain measurements obtained by the strain gauges. This is documented both experimentally and numerically. A stiffness, also test sample and strain gauge geometry dependent correction coefficient of the gauge factor is proposed. A correction coefficient covers material stiffnesses ranging from 1 GPa to 200 GPa.  相似文献   

15.
Lacking a band gap largely limits the application of graphene in electronic devices. Previous study shows that grain boundaries (GBs) in polycrystalline graphene can dramatically alter the electrical properties of graphene. Here, we investigate the band structure of polycrystalline graphene tuned by externally imposed strains and intrinsic mismatch strains at the GB by density functional theory (DFT) calculations. We found that graphene with symmetrical GBs typically has zero band gap even with large uniaxial and biaxial strain. However, some particular asymmetrical GBs can open a band gap in graphene and their band structures can be substantially tuned by external strains. A maximum band gap about 0.19 eV was observed in matched-armchair GB (5, 5) | (3, 7) with a misorientation of θ = 13° when the applied uniaxial strain increases to 9%. Although mismatch strain is inevitable in asymmetrical GBs, it has a small influence on the band gap of polycrystalline graphene.  相似文献   

16.
提出一种基于材料相变的穿孔型带隙可调声子晶体结构.其结构形式为含缝隙的形状记忆合金和环氧树脂的组合体,通过温度变化诱发相变引起的形状记忆合金材料性质的变化,实现声子晶体的带隙变化;通过合理布置缝隙与形状记忆合金相变材料的位置,实现声子晶体带隙性质的可调设计.基于有限元方法,建立了可调声子晶体的分析模型,分析了形状记忆合金的填充分数以及相变等对带隙性能的影响规律.分析结果表明,通过合理设计微结构形式,材料相变可实现带隙位置和宽度的调节,同时可实现特定频段内带隙的有无.  相似文献   

17.
作为防弹玻璃夹层材料,PU的动态力学性能一直受到学者们的关注。为准确表征其动态力学性能,本文采用ABAQUS有限元软件对不同摩擦系数下的单轴压缩试验进行数值仿真,分析试样加载端面的摩擦效应和几何尺寸对单轴压缩试验结果的影响;结合高速摄影技术(HSP)与数字图像相关技术(DIC)观测到试样在拉伸试验中的动态变形场和应变场,探讨标距段的应力均衡性;同时对PU材料在不同应变率下的单轴压缩、拉伸力学性能进行测试。结果表明:压缩试样的端面摩擦效应限制横向变形,影响了试样内部的受力分布,使得测量得到的应力值偏大;试样长径比越小,端面摩擦效应的影响越大;在单轴动态拉伸试验中,板状拉伸试样的标距段选取应当考虑两端倒角尺寸。通过测试PU的拉、压力学性能,发现材料具有显著的应变率敏感性。  相似文献   

18.
The photonic band structure and optical transmittance of two-dimensional periodic elastomeric photonic crystals are studied computationally to understand the effects of large strains on optical properties of the structures. The large compressive deformation patterns of the two-dimensional periodic structure studied by Mullin and coworkers [Mullin, T., Deschanel, S., Bertoldi, K., Boyce, M.C., 2007. Pattern transformation triggered by deformation. Physical Review Letters 99(8), 084301] are first reproduced using hyperelastic material models for the elastomer SU-8. Finite element analysis is then used to solve Maxwell's equations to obtain light transmittance through both the undeformed and deformed structures; simultaneously the wave equation resulting from the appropriate two-dimensional form of Maxwell's equations is solved as an eigenvalue problem to obtain the band structure. The deformation-induced shift in transmission spectrum valleys for different bands is calculated, and the changes in the width of these reflectance peaks are also obtained. The band structure calculation shows that there are no complete photonic band gaps as expected for the low dielectric contrast system. However, the effect of the observed reversible, symmetry-breaking deformation pattern is to uncouple many of the photonic bands in all three high symmetry directions, i.e. Γ–X, X–M, and Γ–M. New non-degenerate deformation-induced optical modes appear in both the real space transmittance spectra and the band structure with lower reflectance values. Analyses of the deformation pattern, the optical mode shapes, and the photonic band structure reveal that localized regions of large rotation are responsible for the significant changes in optical transmittance. The results have practical importance for the design of strain-tunable optomechanical materials for sensing and actuation.  相似文献   

19.
许震宇  吴寅 《力学季刊》2005,26(4):692-695
本文将光子晶体的概念应用于土层结构设计,并利用传输矩阵法计算了p波在土层结构中的传播特性。结果表明,这种土层结构可以全部反射特定频率范围内入射的p波,从而可以减少p波对地上建筑的破坏。此外,还考察了土层的物理特性对反射频带的影响。  相似文献   

20.
A numerical model in the Cosserat continuum for strain localization phenomena in granular materials is developed and proposed in this paper. The model assumes a constant internal length scale that is used to describe the shear band thickness. However, it is observed that the internal length scales need to change to accommodate the possible change in the contact surface between the particles, damage of the particles or/and any change in the local void ratio within the domain, which will change the shear band thickness. The mathematical formulations used in the present numerical model were equipped with evolution equations for the length scales through the Micropolar theory, those formulations are proposed and discussed in this paper. The evolution equations of the internal length scales describe any possible change in the contact surface between the particles, damage of the particles if exists and/or any change in the local void ratio within the domain. Hence, the strain localization described by the enhanced model with evolving internal length scales is more accurate and closer to the real solution. The solution for the shear bands thickness shows more accurate correlation with the experimental results and less dependency on the mesh size when such evolution equations are used. Moreover, the shear band thickness and inclination evolve during the deformation process.  相似文献   

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