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91.
92.
93.
A novel design method for high Q piezoelectric resonators was presented and proposed using the 3-D equations of linear piezoelectricity with quasi-electrostatic
approximation which include losses attributed to mechanical damping in solid and resistance in current conduction. There is
currently no finite element sofware for estimating the Q of a resonator without apriori assumptions of the resonator impedance or damping. There is a necessity for better and more
realistic modeling of resonators and filters due to miniaturization and the rapid advances in frequency ranges in telecommunication.
We presented new three-dimensional finite element models of quartz and barium titanate resonators with mechanical damping
and resistance in current conduction. Lee, Liu and Ballato’s 3-D equations of linear piezoelectricity with quasi-electrostatic
approximation which include losses attributed to mechanical damping in solid and resistance in current conduction were formulated
in a weak form and implemented in COMSOL. The resulting finite element model could predict the Q and other electrical parameters for any piezoelectric resonator without apriori assumptions of damping or resistance. Forced
and free vibration analyses were performed and the results for the Q and other electrical parameters were obtained. Comparisons of the Q and other electrical parameters obtained from the free vibration analysis with their corresponding values from the forced
vibration analysis were found to be in excellent agreement. Hence, the frequency spectra obtained from the free vibration
analysis could be used for designing high Q resonators. Results for quartz thickness shear AT-cut and SC-cut resonators and thickness stretch poled barium titanate resonators
were presented. An unexpected benefit of the model was the prediction of resonator Q with energy losses via the mounting supports. 相似文献
94.
IntroductionItiswell_knownthatpiezoelectricmaterialsproduceanelectricfieldwhendeformedandundergodeformationwhensubjectedtoanelectricfield .Thecouplingnatureofpiezoelectricmaterialshasattractedwideapplicationsinelectro_mechanicalandelectricdevices,suchaselectro_mechanicalactuators,sensorsandstructures.Whensubjectedtomechanicalandelectricalloadsinservice,thesepiezoelectricmaterialscanfailprematurelyduetodefects,e .g .,cracks,holds,etc.arisingduringtheirmanufactureprocess.Therefore,itisofgreatimp… 相似文献
95.
96.
采用柠檬酸凝胶法两步热处理工艺制备了单相Ba2Ti9O20。干凝胶在750 ℃热处理得到了物相为BaTi5O11和Ba4Ti13O30、尺寸为30~50 nm的前驱体粉体。纳米前驱体具有高表面活性,促使单相Ba2Ti9O20在1 200 ℃热处理温度下形成。两步热处理所得的粉体比一步热处理所得的粉体具有更好的烧结和介电特性,两步热处理所得的粉体,在1 250 ℃烧结4 h,可获得理论密度为97%的Ba2Ti9O20微波介质陶瓷,其介电性能:εr=38.5,Qf=19 320 GHz,τf=8.7×10-6 ℃-1。 相似文献
97.
Sr位Nd掺杂对SrBi$lt;sub$gt;2$lt;/sub$gt;Nb$lt;sub$gt;2$lt;/sub$gt;O$lt;sub$gt;9$lt;/sub$gt;性能的影响及机理研究 下载免费PDF全文
采用传统固相法制备了(Sr1-3x/2Ax/2Ndx)Bi2Nb2O9(x=0,0.05,0.1和0.2)陶瓷,并系统研究了Nd离子取代Sr离子对SrBi2Nb2O9性能的影响及其作用机理.研究结果表明:Sr1-3x/2Ax/2NdxBi2Nb2O9的介电常数和介电损耗随温度变化的行为具有明显的离子松弛极化特征.Nd3+对Sr2+的部分取代,导致Sr1-3x/2Ax/2NdxBi2Nb2O9剩余极化强度Pr稍有下降,但其压电系数d33却有所增加,根据铁电热力学理论,这是Nd3+对Sr2+取代导致材料介电常数增大所致.Sr1-3x/2Ax/2NdxBi2Nb2O9的居里温度(TC)没有随Nd含量的增加而变化,拉曼光谱技术分析表明这是其NbO6八面体畸变程度没有发生变化所致.Nd3+取代Sr2+提高了材料的介电常数εr、压电系数d33、机电耦合系数Kp,同时降低了机械品质因数Qm,但是谐振频率温度系数C值没有改变.
关键词:
压电陶瓷
介电性能
压电性能
拉曼光谱 相似文献
98.
As to an ideally layered structure with a functionally graded piezoelectric substrate (material parameters change continuously along the thickness direction) and a hard dielectric layer, the existence and propagation behavior of transverse surface waves is studied by analytical technique. The dispersion equations for the existence of the transverse surface waves with respect to phase velocity are obtained for electrically open and short circuit conditions, respectively. A detailed investigation of the effect of gradient coefficient on dispersion relation, electromechanical coupling factor and penetration depth is carried out. It is found by numerical examples that adjusting gradient coefficient makes the electromechanical coupling factor of the transverse surface waves achieve quite high values at some appropriate ratio values of the layer thickness to the wavelength, and at the same time, the penetration depth can be reduced to the same order as the wavelength. 相似文献
99.
利用传统的固相反应法制备了BiFe1-xMnxO3 (x= 0-0.20)陶瓷样品, 研究了不同Mn4+掺杂量对BiFeO3陶瓷密度、物相结构、显微形貌、 介电性能和铁电性能的影响.实验结果表明:所制备的BiFe1-xMnxO3 陶瓷样品的钙钛矿主相均已形成,具有良好的晶体结构, 且在掺杂量x=0.05附近开始出现结构相变.随着Mn4+添加量的增加, 体系的相结构有从菱方钙钛矿向斜方转变的趋势,且样品电容率大幅度增大, 而介电损耗也略有增加;在测试频率为104 Hz条件下, BiFe0.85Mn0.15O3 (εr=1065)的 εr是纯BiFeO3 (εr=50.6)的22倍; 掺杂后样品的铁电极化性能均有不同程度的提高,可能是由于Mn4+稳定性优于 Fe3+,高价位Mn4+进行B位替代改性BiFeO3陶瓷, 能减少Bi3+挥发,抑制Fe3+价态波动,从而降低氧空位浓度,减小样品的电导和漏电流. 相似文献
100.
Thermally activated dislocation emission in high-temperature ferroelectric ceramics is investigated through an assumption of thermal stability and a novel analytical method. The stress intensity factor (SIF) arising from domain switching is evaluated by using a Green's function method, and the critical applied electric field intensity factor (CAEFIF) for brittle fracture at room temperature is obtained. Besides, the lowest temperature for single dislocation emission before brittle fracture is also obtained by constructing an energy balance. The multi-scale analysis of facture toughness of the ferroelectric ceramics at high temperature is carried out. Through the analysis, the CAEFIF for crack extension is recalculated. The results show that the competition and interaction effects between dislocation emission and brittle fracture are very obvious. Besides, the higher critical activation temperature, the more columns of obstacles will be overcome. Additionally, the shielding effect arising from thermally activated dislocations is remarkable, thus, the brittle-ductile transition can promote the fracture toughness of high-temperature ferroelectric ceramics. 相似文献