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Topology optimization of smart structures with embedded piezoelectric stack actuators using a composite geometry projection method

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Author(s):
de Almeida, Breno Vincenzo ; Pavanello, Renato ; Langelaar, Matthijs
Total Authors: 3
Document type: Journal article
Source: COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING; v. 429, p. 32-pg., 2024-06-15.
Abstract

The design of smart structures is challenging because of the integrated electromechanical modelling and optimization of actuators, sensors and load -bearing structures. To simplify the design process, it is common to decouple some of the components and physics and develop each part separately, which could lead to suboptimal systems. To improve the overall design of active structures, we propose an integrated and fully coupled design methodology for a certain class of smart structures. Specifically, this paper presents a numerical framework for the simultaneous application of density -based topology optimization of multi -material conductive compliant mechanisms and a composite multi -layered geometry -projection method for the optimization of the size, position and orientation of embedded piezoelectric stack actuators. Their electromechanical properties are represented in a continuum -based setting by an orientation- and geometry -dependent equivalent material model and their activation depends on the distribution of conductive material in the structure. Furthermore, a novel constraint on the polarization of the actuators is proposed to avoid unwanted designs that could cause their mechanical degradation. A set of numerical examples is analysed and discussed. The proposed framework exhibits promising results, with significant improvements in comparison to a benchmark problem. (AU)

FAPESP's process: 13/08293-7 - CCES - Center for Computational Engineering and Sciences
Grantee:Munir Salomao Skaf
Support Opportunities: Research Grants - Research, Innovation and Dissemination Centers - RIDC
FAPESP's process: 22/06811-0 - Topology optimization of active piezocomposite metamaterials considering manufacturable feature sizes and impedance matching
Grantee:Breno Vincenzo de Almeida
Support Opportunities: Scholarships abroad - Research Internship - Doctorate
FAPESP's process: 20/07391-9 - Topology optimization of piezoelectric devices using piezocomposite metamaterials
Grantee:Breno Vincenzo de Almeida
Support Opportunities: Scholarships in Brazil - Doctorate