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Recursive formulations for dynamic analysis of a smart cracked beam based on the method of reverberation-ray matrix

机译:基于混响射线矩阵方法的智能裂纹梁动力学分析的递推公式

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An accurate electro-mechanical impedance (EMI) model for analytical crack detection of a Timoshenko beam is established based on the improved reverberation-ray matrix method via the recursive formulations. The crack is treated as a massless rotational spring. A pair of PZT patches with free ends symmetrically bonded onto the beam is assumed in a state of pure one-dimensional axial motion under an out-of-phase harmonic electric force and hence a pure bending excitation of the beam is created. A Kelvin-type viscoelastic law is introduced into the EMI model to account for the bonding effect in order to improve the signature sensitivity to cracks. In order to develop the recursive formulations to reduce the size of the final equations in the method of reverberation-ray matrix (MRRM), new scattering relations are established by a matrix reduction technique. Then, an analytical expression of impedance containing crack parameters as well as other physical parameters is derived for crack detection of beams.
机译:基于改进的混响射线矩阵方法,通过递归公式,建立了一个精确的机电阻抗(EMI)模型,用于分析Timoshenko光束的裂纹。裂纹被视为无质量的旋转弹簧。假定一对具有自由端对称结合到梁上的PZT贴片在异相谐波电力下处于纯一维轴向运动的状态,因此产生了梁的纯弯曲激励。将开尔文(Kelvin)型粘弹性定律引入EMI模型,以说明粘合效果,从而提高对裂纹的签名敏感性。为了开发递归公式以减小混响射线矩阵(MRRM)方法中最终方程的大小,通过矩阵约简技术建立了新的散射关系。然后,导出包含裂纹参数以及其他物理参数的阻抗的解析表达式,用于梁的裂纹检测。

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