The low temperature liquid metal pressure sensors

被引:3
|
作者
Zhou, Xiao-Ping [1 ,2 ]
Chen, Ping [1 ,2 ]
机构
[1] Wuhan Univ, Sch Civil Engn, Wuhan 430072, Peoples R China
[2] Chongqing Univ, Sch Civil Engn, Chongqing, Peoples R China
基金
中国国家自然科学基金;
关键词
liquid metal; pressure sensor; low temperature environment; GALLIUM-INDIUM EGAIN;
D O I
10.1088/1402-4896/acfa31
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Pressure measurement of geotechnical constructions subjected to low temperature plays significant roles in the safety and stability of geotechnical engineering activities. However, the research of pressure sensors in low temperature environment is lacked. In this work, a Galinstan liquid metal pressure sensor under low temperature condition is developed to detect pressure in geotechnical engineering. The elastomer PDMS (polydimethylsiloxane) is employed as the base material. Micro-channels are carved using microfluidic soft lithography technology. The liquid metal is filled as a conductor, and a spring steel case is used for encapsulation. The theoretical relationship between the resistance and pressure is derived, and the theoretical resistance values are compared with experimental resistance values to verify the accuracy of theoretical derivations. The key performance indexes of the designed sensor, such as the compliance, repeatability and hysteresis, are experimentally investigated. The numerical results show that the applied pressure can be uniformly transmitted to the internal PDMS chip with the help of the liquid buffer layer. The experimental results imply that this developed sensor with liquid buffer layer has high curve compliance, good repeatability and low hysteresis in low temperature environment, which provides effective tools for the pressure monitoring of geotechnical constructions subjected to low temperature.
引用
收藏
页数:20
相关论文
共 50 条
  • [41] 3D-printed liquid metal-based stretchable conductors and pressure sensors
    Pinto, Thassyo
    Chen, Claudia
    Pinger, Cody
    Tan, Xiaobo
    SMART MATERIALS AND STRUCTURES, 2021, 30 (09)
  • [42] The effect of pressure on the electrical resistance of single metal crystals at low temperature
    Bridgman, PW
    PROCEEDINGS OF THE AMERICAN ACADEMY OF ARTS AND SCIENCES, 1933, 68 (1/13): : 95 - 123
  • [43] Pressure promoted low-temperature melting of metal–organic frameworks
    Remo N. Widmer
    Giulio I. Lampronti
    Simone Anzellini
    Romain Gaillac
    Stefan Farsang
    Chao Zhou
    Ana M. Belenguer
    Craig W. Wilson
    Hannah Palmer
    Annette K. Kleppe
    Michael T. Wharmby
    Xiao Yu
    Seth M. Cohen
    Shane G. Telfer
    Simon A. T. Redfern
    François-Xavier Coudert
    Simon G. MacLeod
    Thomas D. Bennett
    Nature Materials, 2019, 18 : 370 - 376
  • [44] ANALYSIS OF 2 HIGH-TEMPERATURE LIQUID METAL PRESSURE MEASURING SYSTEMS
    CASSANO, AJ
    IEEE TRANSACTIONS ON AEROSPACE, 1965, AS 3 (02): : 96 - &
  • [45] Low Power Operation of Temperature-Modulated Metal Oxide Semiconductor Gas Sensors
    Burgues, Javier
    Marco, Santiago
    SENSORS, 2018, 18 (02)
  • [46] Liquid-State Environment Sensors Using Liquid Metal
    Ota, Hiroki
    WEARABLE SENSORS AND SYSTEMS 1 -AND - MICROFABRICATED AND NANOFABRICATED SYSTEMS FOR MEMS/NEMS 14, 2018, 86 (16): : 31 - 38
  • [47] Optical Polymer Liquid Crystal Pressure Sensors
    Zharkova, G. M.
    Petrov, A. P.
    Kovrizhina, V. N.
    Pen, E. F.
    PROCEEDINGS OF THE XXV CONFERENCE ON HIGH-ENERGY PROCESSES IN CONDENSED MATTER (HEPCM 2017), 2017, 1893
  • [48] Low-temperature & high-pressure polymorphism in a room-temperature ionic liquid
    Saouane, Sofiane
    Norman, Sarah E.
    Youngs, Tristan G. A.
    Hardacre, Christopher
    Fabbiani, Francesca P. A.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2012, 68 : S219 - S219
  • [49] AN APPARATUS FOR THE INVESTIGATION OF LOW-TEMPERATURE, HIGH-PRESSURE, VAPOR LIQUID AND VAPOR LIQUID LIQUID EQUILIBRIA
    DORAU, W
    KREMER, HW
    KNAPP, H
    FLUID PHASE EQUILIBRIA, 1983, 11 (01) : 83 - 89
  • [50] In-Situ Sensors for Liquid Metal Quality
    Guthrie, Roderick
    Isac, Mihaiela
    HIGH TEMPERATURE MATERIALS AND PROCESSES, 2012, 31 (4-5) : 633 - 643