Embedded Strain Gauges for Condition Monitoring of Silicone Gaskets

被引:19
|
作者
Schotzko, Timo [1 ]
Lang, Walter [1 ]
机构
[1] Univ Bremen, Inst Microsensors Actuators & Syst IMSAS, D-28359 Bremen, Germany
来源
SENSORS | 2014年 / 14卷 / 07期
关键词
strain gauge foil; smart gasket; embedded sensor; structural health monitoring; silicone O-rings; miniaturized sensor; INTEGRATION;
D O I
10.3390/s140712387
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A miniaturized strain gauge with a thickness of 5 m is molded into a silicone O-ring. This is a first step toward embedding sensors in gaskets for structural health monitoring. The signal of the integrated sensor exhibits a linear correlation with the contact pressure of the O-ring. This affords the opportunity to monitor the gasket condition during installation. Thus, damages caused by faulty assembly can be detected instantly, and early failures, with their associated consequences, can be prevented. Through the embedded strain gauge, the contact pressure applied to the gasket can be directly measured. Excessive pressure and incorrect positioning of the gasket can cause structural damage to the material of the gasket, which can lead to an early outage. A platinum strain gauge is fabricated on a thin polyimide layer and is contacted through gold connections. The measured resistance pressure response exhibits hysteresis for the first few strain cycles, followed by a linear behavior. The short-term impact of the embedded sensor on the stability of the gasket is investigated. Pull-tests with O-rings and test specimens have indicated that the integration of the miniaturized sensors has no negative impact on the stability in the short term.
引用
收藏
页码:12387 / 12398
页数:12
相关论文
共 50 条
  • [1] Condition monitoring of operational overhead line towers using strain gauges
    Frumuselu, D.
    Manolache, A.
    [J]. INSIGHT, 2008, 50 (12) : 695 - 698
  • [3] Comparison of Structural Integrated Piezoceramics, Piezoelectric Patches and Strain Gauges for Condition Monitoring
    Werner, Jonas Maximilian
    Engelmann, Max
    Schmidt, Marek
    Titsch, Christian
    Dix, Martin
    Drossel, Welf-Guntram
    [J]. SENSORS, 2022, 22 (22)
  • [4] Local reinforcement effect of embedded strain gauges
    Ajovalasit, A.
    Fragapane, S.
    Zuccarello, B.
    [J]. ICEM 14: 14TH INTERNATIONAL CONFERENCE ON EXPERIMENTAL MECHANICS, VOL 6, 2010, 6
  • [5] Printed strain gauges embedded in organic coatings
    Enser, Herbert
    Kulha, Pavel
    Sell, Johannes K.
    Jakoby, Bernhard
    Hilber, Wolfgang
    Strauss, Bernhard
    Schatzl-Linder, Michaela
    [J]. PROCEEDINGS OF THE 30TH ANNIVERSARY EUROSENSORS CONFERENCE - EUROSENSORS 2016, 2016, 168 : 822 - 825
  • [6] Strain measurement in composite materials using embedded strain gauges
    Aloisi, S
    Galietti, U
    Pappalettere, C
    [J]. EXPERIMENTAL TECHNIQUES AND DESIGN IN COMPOSITE MATERIALS 3, 1998, 144 : 251 - 260
  • [7] Foil-based Strain Gauges with Nanogranular Platinum Structures for the Integration in Elastomer Gaskets
    Graebner, Daniel
    Meyer, Eva-Maria
    Lang, Walter
    [J]. 2016 IEEE SENSORS, 2016,
  • [8] Embedded strain gauges: Effect of the stress normal to the grid
    Ajovalasit, A
    [J]. STRAIN, 2005, 41 (03): : 95 - 103
  • [9] SILICONE GASKETS - VERSATILITY AND RELIABILITY
    TOUB, MR
    CHRISTIE, G
    [J]. RUBBER CHEMISTRY AND TECHNOLOGY, 1986, 59 (01): : 170 - 170
  • [10] Acoustic strain gauges ease bridge monitoring
    不详
    [J]. CIVIL ENGINEERING, 1997, 67 (09): : 83 - 83