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Analytical electromechanical solutions to the interfacial stresses in the adhesively bonded composite joints integrated with piezoelectric actuator are presented in this paper within the framework of full layerwise theory.
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Gait machines consist either of an electromechanical solution with two driven foot plates simulating the phases of gait, or of a robot-driven exoskeleton orthotic.
The electromechanical field solutions for a transversely isotropic piezoelectric medium are derived in the context of micromorphic electroelasticity and a generalized characteristic length is introduced to describe the size effect.
Issues such as electrical and fluid connections are addressed, electromechanical behavior in ionic solution is investigated, and two uses of the system are demonstrated.
From this viewpoint, new BNT-solid solution with larger electromechanical coupling factors would be predicted, and a new system of (Bi1−xNax TiO3-based solid solutions was invented in our group Bi1−xNax TiO3-basedd.
BiScO3 PbTiO3 is used as a model system of BiMO3 PbTiO3 perovskite solid solutions with enhanced electromechanical response at ferroelectric morphotropic phase boundaries, and high Curie temperature to demonstrate specific point defect engineering for high power operation.
By taking into account the shape and distribution of the inclusion and by invoking a simple numerical procedure, solutions for the electromechanical properties of a general anisotropic inclusion in an anisotropic matrix are obtained.
For the solution of the electromechanical coupled boundary value problem, a hybrid finite element formulation is used.
More details about the numerical framework used for the solution of the electromechanical model can be found in [ 7, 24].
A hybrid finite element finite volume numerical solution and a operator-split time stepping scheme are formulated for obtaining numerical solutions of the transient electromechanical response.
All the results obtained using the perturbation method have been compared with the exact solutions of the coupled electromechanical problem.
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