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The goal of the optimization is to maximize the damping force of the damper.
The optimum tuning-length of the injector to maximize the damping capacity corresponds to half of a full wavelength of the first longitudinal overtone mode traveling in the injector with the acoustic frequency intended for damping in the chamber.
We developed the optimizing method of the damping material distribution to maximize the damping capability while simultaneously fulfilling requirements regarding the static stiffness and the first resonant frequency of the entire structure.
The topology optimization model of material microstructure is built, where the design variable is constructed based on the SIMP interpolation scheme and the objective function is to maximize the damping dissipation velocity of the piezoelectric composite structure based on the independent modal control strategy, while the constraints are applied on the volume fractions of the phase materials.
Finally, by combining the finite element method and the optimization algorithms based on the genetic algorithm and sequential quadratic programming technique, a design optimization methodology has been formulated to maximize the damping characteristics using the optimal number and location of cuts and partial treatments with optimal thicknesses of top and core layers.
In this research, a new control law is developed to maximize the damping effect of ER dampers for structural vibration suppression under actuator constraints and viscous-frictional-combined damping.
Similar(54)
A design based on Taguchi methodology is developed with the objective of maximizing the damping force of the damper.
A multi-objective optimization approach based on evolutionary algorithms is used to find the Pareto surface that minimizes the mass and maximizes the damping.
The tuning procedure is modeled as an optimization problem which aims at maximizing the damping ratio coefficients in closed-loop operation.
The main contribution of this paper is to establish the approach of optimization of the MR damper geometry with the sole objective of maximizing the damping force using DoE technique and finite element analysis.
A multi-layer coating beam model is proposed to find, at the modelling stage, optimal coating architectures to be applied to mechanical components, in order to maximize the vibration damping in industrial operating conditions.
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