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- W4283265691 abstract "Piezoelectric cellular polymers have been improved in the recent decades to compete traditional piezoelectric materials and provide more advantages. These materials have built-in artificial electrical dipoles owing to the polarization of the internal cells by creating a discharge in the gas encapsulated inside the cells. The development of the porosity is carried out by several methods, including a more recent one, which is the three-dimensional (3D) printing that guarantees a fast processing time, high precision, and excellent control of the porosity geometry and dimensions. In this paper, cellular Onyx samples were produced by means of 3D printing with elliptical internal voids homogeneously distributed, and then they were electrically charged by means of corona discharge. The piezoelectric response of the 3D printed samples, defined by the piezoelectric coefficient, has been investigated. The results showed that the piezoelectric coefficient d33 increases as the number of pores increases. Among three printed configurations, the samples with smaller pores had the highest values of the d33 and the harvested energy and showed good stability of electrical charge." @default.
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- W4283265691 date "2022-01-01" @default.
- W4283265691 modified "2023-09-29" @default.
- W4283265691 title "3D printed cellular piezoelectric polymers for smart sensors/autonomous energy harvesters" @default.
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- W4283265691 doi "https://doi.org/10.1016/j.matpr.2022.06.203" @default.
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