A dynamic thermal sensing mechanism with reconfigurable expanded-plane structures

Fuente: arXiv
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Hauptverfasser: Tan, Haohan, Cai, Haoyang, Jin, Peng, Huang, Jiping
Format: Preprint
Veröffentlicht: 2024
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author Tan, Haohan
Cai, Haoyang
Jin, Peng
Huang, Jiping
author_facet Tan, Haohan
Cai, Haoyang
Jin, Peng
Huang, Jiping
contents The precise measurement of temperature is crucial in various fields such as biology, medicine, industrial automation, energy management, and daily life applications. While in most scenarios, sensors with a fixed thermal conductivity inevitably mismatch the analogous parameter of the medium being measured, thus causing the distortion and inaccurate detection of original temperature fields. Despite recent efforts on addressing the parameter-mismatch issue, all current solutions are constrained to a fixed working medium whereas a more universal sensor should function in a variety of scenes. Here, we report a dynamic thermal sensor capable of highly accurate measurements in diverse working environments. Remarkably, thanks to the highly tunable thermal conductivity of the expanded-plane structure, this sensor works effect on background mediums with a wide range of conductivity. Such a development greatly enhances the robustness and adaptability of thermal sensors, setting a solid foundation for applications in multi-physical sensing scenarios.
format Preprint
id arxiv_https___arxiv_org_abs_2401_03364
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A dynamic thermal sensing mechanism with reconfigurable expanded-plane structures
Tan, Haohan
Cai, Haoyang
Jin, Peng
Huang, Jiping
Applied Physics
The precise measurement of temperature is crucial in various fields such as biology, medicine, industrial automation, energy management, and daily life applications. While in most scenarios, sensors with a fixed thermal conductivity inevitably mismatch the analogous parameter of the medium being measured, thus causing the distortion and inaccurate detection of original temperature fields. Despite recent efforts on addressing the parameter-mismatch issue, all current solutions are constrained to a fixed working medium whereas a more universal sensor should function in a variety of scenes. Here, we report a dynamic thermal sensor capable of highly accurate measurements in diverse working environments. Remarkably, thanks to the highly tunable thermal conductivity of the expanded-plane structure, this sensor works effect on background mediums with a wide range of conductivity. Such a development greatly enhances the robustness and adaptability of thermal sensors, setting a solid foundation for applications in multi-physical sensing scenarios.
title A dynamic thermal sensing mechanism with reconfigurable expanded-plane structures
topic Applied Physics
url https://arxiv.org/abs/2401.03364