Geometrical modification of magnetoelastic sensors to enhance sensitivity

被引:7
|
作者
Pacella, Nina [1 ]
DeRouin, Andrew [1 ]
Pereles, Brandon [1 ]
Ong, Keat Ghee [1 ]
机构
[1] Dept Biomed Engn, Houghton, MI 49931 USA
关键词
magnetoelastic sensors; non-uniform coating; sensitivity; resonant frequency; WIRELESS; PRESSURE; STRESS;
D O I
10.1088/0964-1726/24/2/025018
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
The magnetoelastic sensor is a wireless, passive sensor platform typically comprised of a strip of magnetoelastic material that exhibits a mechanical vibration when under the excitation of a magnetic ac field. At the resonant frequency, the vibration of the sensor is most prominent, generating a significant secondary magnetic field that can be detected with a remotely located coil. Biological and chemical sensing can be realized by functionalizing a mass-or elasticitychanging coating on the magnetoelastic sensor, causing a shift in the resonant frequency when exposed to the target analyte. To date, most magnetoelastic sensors are rectangular and are designed to sense a uniform coating over the entire sensor surface. This paper presents a new magnetoelastic sensor design with higher sensitivity, achieved by applying non-uniform coatings and altering the sensor to a triangular shape. In addition, the new design allows the magnetoelastic sensor to form a sensor array that requires only a fraction of sample volume for multi-parameter sensing compared to the current sensor design.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Magnetoelastic sensors as a new tool for laryngeal research
    Moreno, M. C. Iglesias
    Gil-Loyzaga, P.
    Gomez, F. Rodriguez
    Carcedo, C. Franco
    Fernandez, J. Gonzalez
    Martinez, E. Pina
    Grande, A. Hernando
    Broto, J. Poch
    ACTA OTO-LARYNGOLOGICA, 2007, 127 (11) : 1182 - 1187
  • [42] Wireless magnetoelastic resonance sensors: A critical review
    Grimes, CA
    Mungle, CS
    Zeng, ZF
    Jain, MK
    Dreschel, WR
    Paulose, M
    Ong, KG
    SENSORS, 2002, 2 (07): : 294 - 313
  • [43] Magnetoelastic Resonance Sensors: Principles, Applications, and Perspectives
    Saiz, Paula G.
    de Luis, Roberto Fernandez
    Lasheras, Andoni
    Arriortua, Maria Isabel
    Lopes, Ana Catarina
    ACS SENSORS, 2022, 7 (05) : 1248 - 1268
  • [44] Wireless magnetoelastic physical, chemical, and biological sensors
    Zeng, Kefeng
    Grimes, Craig A.
    IEEE TRANSACTIONS ON MAGNETICS, 2007, 43 (06) : 2358 - 2363
  • [45] Using the fringing electric field in microfluidic volume sensors to enhance sensitivity and accuracy
    Riordon, Jason
    M-Catafard, Nicolas
    Godin, Michel
    APPLIED PHYSICS LETTERS, 2012, 101 (15)
  • [46] Industrial Application of Magnetoelastic Force and Torque Sensors
    Bienkowski, A.
    Szewczyk, R.
    Salach, J.
    ACTA PHYSICA POLONICA A, 2010, 118 (05) : 1008 - 1009
  • [47] Magnetoelastic sensors for remote query environmental monitoring
    Grimes, CA
    Ong, KG
    Loiselle, K
    Stoyanov, PG
    Kouzoudis, D
    Liu, Y
    Tong, C
    Tefiku, F
    SMART MATERIALS & STRUCTURES, 1999, 8 (05): : 639 - 646
  • [48] Magnetoelastic sensors and geophones for vector measurements in geoacoustics
    A. S. Belyakov
    Acoustical Physics, 2005, 51 : S43 - S53
  • [49] Microfabricated Magnetoelastic Sensors and Actuators: Opportunities and Challenges
    Green, Scott R.
    Gianchandani, Yogesh B.
    2015 IEEE SENSORS, 2015, : 763 - 766
  • [50] GEOMETRICAL OPTICS OF MAGNETOELASTIC WAVE PROPAGATION IN A NONUNIFORM MAGNETIC FIELD
    AULD, BA
    BELL SYSTEM TECHNICAL JOURNAL, 1965, 44 (03): : 495 - +