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覆盖层与基底极化方向相反时压电层状半空间中的B-G波
引用本文:金峰,王子昆,王铁军.覆盖层与基底极化方向相反时压电层状半空间中的B-G波[J].固体力学学报,2000,21(2):95-101.
作者姓名:金峰  王子昆  王铁军
作者单位:西安交通大学工程力学系,西安,710049
基金项目:国家自然科学基金,中国博士后科学基金资助项目
摘    要:对于覆盖层与基底介质极化方向相反的压电状半空间,在自由表面电学开路和短路两种情况下,分析用解析的方法以了Bleustein-Gulyaev波传播的相速度方程或相速度的表达式;以工程技术中应用的压电材料为例考察了波速随覆盖厚度h的变化规律,为了分析表面金属薄膜对波的传播速度的影响,计算了机电耦合系数k^2与h的关系,结果表明:层状结构B-G波传播时具有很小的穿透深度,同时在h取适当值时依然可使k^2

关 键 词:压电层状半空间  B-G波  极化  压电材料

THE B-G WAVE IN THE PIEZOELECTRIC LAYERED HALF-SPACE FOR THE LAYER AND THE SUBSTRATE IN OPPOSITE POLARIZATION
Jin Feng,Wang Zikun,Wang Tiejun.THE B-G WAVE IN THE PIEZOELECTRIC LAYERED HALF-SPACE FOR THE LAYER AND THE SUBSTRATE IN OPPOSITE POLARIZATION[J].Acta Mechnica Solida Sinica,2000,21(2):95-101.
Authors:Jin Feng  Wang Zikun  Wang Tiejun
Abstract:For the piezoelectric layered half space with the layer and the substrate in opposite polarization, the expressions for the phase velocity equations of the Bleustein Gulyaev wave are obtained by the analytical technique. Two kinds of electric boundary conditions at free surface are considered. The variation patterns of the wave propagation velocity along with the thickness of the layer are studied for the piezoelectric material which can be utilized in engineering technology. The following fact is found by numerical examples that the penetration depth of the B G wave is in the same order as the wavelength for layered structures. In order to study the influence of the metal film at surface on the wave propagation velocity, the relationship between the electromechanical coupling coefficient k 2 and the thickness of the layer h is computed, the numerical results indicate that for appropriate thickness of the layer, k 2 can still maintain quite high value.
Keywords:piezoelectric layered half  space  B  G wave  surface acoustic wave device  electromechanical coupling coefficient  penetration depth
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