Robust topology optimization of piezoelectric actuators under uncertainties in material properties
- Authors
- Latifi Rostami, Seyyed Ali; Kolahdooz, Amin; Lim, Hyoung Jun; Chung, Hayoung
- Issue Date
- May-2025
- Publisher
- Institute of Physics Publishing
- Keywords
- piezoelectric actuators; robust topology optimization; material uncertainties; sparse grid; collocation method
- Citation
- Smart Materials and Structures, v.34, no.5
- Indexed
- SCIE
SCOPUS
- Journal Title
- Smart Materials and Structures
- Volume
- 34
- Number
- 5
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/78783
- DOI
- 10.1088/1361-665X/addb15
- ISSN
- 0964-1726
1361-665X
- Abstract
- Actuators designed using piezoelectric materials are widely used in micro-robotic systems. Although topology optimization (TO) is a systematic design approach with the potential to conceive a novel piezoelectric actuator, the optimality of the design cannot be guaranteed unless the material uncertainties resulting from complex fabrication are considered. Therefore, this study presents the optimal design of a piezoelectric actuator and investigates the impact of uncertainties on the designed layout. Specifically, this study introduces material uncertainties through Young's modulus and the piezoelectric coefficient individually and concurrently, thus facilitating a comprehensive exploration of design robustness. The density-based TO method used in this study incorporates the spatial distribution of material densities and polarities within the domain. To evaluate the robustness of the results of the proposed method, a thorough comparison with the Monte Carlo method results was conducted, revealing not only the robustness of the designed layouts but also enhanced computational efficiency.
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