• DocumentCode
    1115338
  • Title

    Experimental Measurements of the Strain Energy Release Rate for Stiction-Failed Microcantilevers Using a Single-Cantilever Beam Peel Test

  • Author

    Leseman, Zayd C. ; Carlson, Steven P. ; Mackin, Thomas J.

  • Author_Institution
    Dept. of Mech. & Ind. Eng., Illinois Univ., Urbana, IL
  • Volume
    16
  • Issue
    1
  • fYear
    2007
  • Firstpage
    38
  • Lastpage
    43
  • Abstract
    In this paper, we present experimental measurements of the strain energy release rate for stiction-failed polysilicon microcantilevers using a newly developed single cantilever beam peel test. Our experiments show that dry-contacting microcantilevers adhere exclusively as tip-stuck, "arc-shaped" stiction failures, while adhesion under "wet" conditions generate exclusively "s-shaped" stiction failures. Microcantilevers were "peeled" from the substrate under displacement control using a piezoelectric actuator attached to one end of an array of microcantilever beams. The crack length was monitored using interferometric imaging, and related to the applied displacement using established equations from linear elastic fracture mechanics. The pull-off forces associated with "arc-shaped" stiction failures were an average value of 89.7 nN, for 1000 mum long beams, and an average value of 123 nN for 1500 mum long beams. Adhesion energies for s-shaped failures were measured as 13.7 mJ/m2 for IPA released beams and 15.4 mJ/m2 for deionized water released beams. These values are in good agreement with previous measurements. The proposed experimental method enables application of a simple fracture mechanics model using a standard specimen geometry. These experiments, using both wet and dry adhesion failure conditions, show that the quality of the adhesive failure depends upon the magnitude of the forces pulling the microcantilever into contact with the underlying substrate
  • Keywords
    beams (structures); cantilevers; fracture mechanics; micromechanical devices; piezoelectric actuators; stiction; dry-contacting microcantilevers; failure conditions; fracture mechanics; interferometric imaging; piezoelectric actuator; single-cantilever beam peel test; stiction-failed microcantilevers; strain energy release rate; Adhesives; Condition monitoring; Displacement control; Energy measurement; Equations; Piezoelectric actuators; Solid modeling; Strain measurement; Structural beams; Testing; Cantilever; peel test; stiction; strain energy;
  • fLanguage
    English
  • Journal_Title
    Microelectromechanical Systems, Journal of
  • Publisher
    ieee
  • ISSN
    1057-7157
  • Type

    jour

  • DOI
    10.1109/JMEMS.2006.883570
  • Filename
    4099369