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Small open balconies provide a transitional zone between the host structure and para-site.
The effects of the stiffness of the adhesive bond between the host structure and piezoelectric element, the dielectric loss in a piezoelectric element, and the internal resistance of an inductor are considered in the theoretical analysis.
The analytical derivation of continuum based shear lag model covered in this paper aims to provide an improved and more accurate model for shear force interaction between the host structure and the PZT patch (assumed square for simplicity) through the adhesive bond layer, taking care of all the piezo, structural and adhesive effects rigorously and simultaneously.
These factors are: the bending stiffness ratio between the host structure and the constraining layer, the offset distance of the constraining layer from the host structure, the strain distribution in the host structure, the active control gain, the characteristic length of the EACL, the Viscoelastic Material (VEM) loss factor, and the stiffness distribution of the edge elements.
In order to verify the mechanical experimental setup of the assembling between the host structure and the piezo-film patches in term of constraint, transient and modal analyses are first performed in order to compare the experimental responses to those obtained by from the numerical analyses performed with the commercial code COMSOL Multiphysics®.
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The beneficial interaction between the lining and the host structure is taken into account.
Hence, the amount of harvested energy depends upon the dynamic interaction between the harvester and the host structure.
The dynamic behaviour of piezoelectric sensors depends on the bonding condition along the interface between the sensors and the host structure.
In the electro-mechanical impedance (EMI) technique, which is based on induced strain actuation through piezoelectric ceramic (PZT) patch, the knowledge of shear stress distribution in the adhesive bond layer between the patch and the host structure is very pertinent for reliable health monitoring of structures.
More general results about the coupling mechanisms between the piezoelectric patches and the host structure are also raised.
This transformation coincides with the removal of the iodine fluoride species from the host structure.
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