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Effect of Electrodes on the Acceleration Sensitivity of Crystal Resonators.

机译:电极对晶体谐振器加速灵敏度的影响。

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When an electroded, crystal plate is subjected to a steady acceleration and a steady, uniform temperature change, stresses are induced by the body forces exerted on the plate and electrodes and by the differences in thermal expansions between the plate and electrodes. Based on Mindlin's first-order equations of plated, crystal plates, a set of six coupled equations is derived in which the effect of mass of electrodes, the extensional elastic stiffnesses of the electrodes, and the thermal expansions of the plate and electrodes are taken into account. The principle of virtual displacements corresponding to these equations is obtained. Strains and displacement gradients in an electroded crystal disk subject to a steady acceleration are obtained from the finite element solutions of the presently derived equations. By inserting these strains and displacements gradients in the frequency equation of the fundamental thickness vibrations of the disk and solving the frequency equation by a perturbation method, acceleration sensitivities of crystal resonators with various electrode arrangements are obtained. It is founded that for small plate backs, say R < or = 0.5%, the percent increase of acceleration sensitivity of an electroded plate as compared with that of an unelectroded plate is essentially proportional to the ratio of the total mass of attached electrodes to the total mass of the plate. Reprints. (AW)

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