| Literature DB >> 35087611 |
Xiaochao Tian1, Zhicong Wang1, Sida Zhang2, Shenfang Li1, Jinlong Liu1, Jiaying Lin1, Feifei Wang2, Zhigang Yang2, Jinzhi Zhu1.
Abstract
In order to solve the problem of waste heat collection from energy consumption, a thermal energy generation device combining shape memory alloy and piezoelectric materials has been designed. The shape memory alloy is heated and deformed to drive the drive wheel continuously, and the impact wheel is deformed against the piezoelectric cantilever beam during the rotation of the drive wheel to generate electricity. In this paper, the impact force generated by the impact wheel and the output voltage of the piezoelectric cantilever beam during the rotation process are given. Finally, the experimental test shows that the larger the radius of the drive wheel, the lower the impact force of the wheel and the lower the output voltage of the piezoelectric cantilever beam; the larger the diameter of the shape memory alloy wire, the higher the impact force of the wheel and the higher the output voltage of the piezoelectric cantilever beam; the more teeth of the drive wheel, the higher the impact frequency of the piezoelectric cantilever beam and the higher the output voltage. The maximum output voltage of the thermoelectric converter is 14.2 V, when the drive wheel radius is 13 mm, the shape memory alloy wire diameter is 1 mm and the number of impact wheel teeth is 6. The new structural design provides a new structural model for waste heat recovery and thermal energy generation technology. The new structural design provides a new approach and idea for waste heat recovery and thermal energy generation technology.Entities:
Year: 2022 PMID: 35087611 PMCID: PMC8763525 DOI: 10.1155/2022/1236270
Source DB: PubMed Journal: Scanning ISSN: 0161-0457 Impact factor: 1.932
Figure 1Schematic diagram of thermoelectric conversion device.
Figure 2Force analysis diagram of drive components.
Figure 3Relationship between impact force and drive wheel radius and shape memory alloy wire diameter.
Parameters of a double-chip piezoelectric cantilever beam.
| Materials | Piezoelectric constants | Young's modulus | Poisson's ratio | Vacuum dielectric constant | Dimension ( |
|---|---|---|---|---|---|
| PZT-5H | 9.11 | 60.6 | 0.34 | 8.85 | 40 mm∗20 mm∗0.2 mm |
| Cu | / | 115 | 0.31 | / | 60 mm∗20 mm∗0.2 mm |
Figure 4Output voltage versus drive wheel radius and shape memory alloy wire diameter.
Figure 5Experimental test setup diagram.
Figure 6Effect of drive wheel radius on output voltage of piezoelectric cantilever beam.
Figure 7Effect of shape memory alloy wire diameter on output voltage of piezoelectric cantilever beam.
Figure 8Effect of the number of teeth of the impact wheel on the output voltage of the piezoelectric cantilever beam.