Title :
Rigorous analytical analysis of resonant Euler-Bernoulli beams with constant thickness and polynomial width
Author :
Beigelbeck, R. ; Stifter, Michael ; Schneider, Markus ; Keplinger, F. ; Schmid, Ulrich ; Voglhuber-Brunnmaier, Thomas ; Jakoby, Bernhard
Author_Institution :
Center for Integrated Sensor Syst., Danube Univ. Krems, Wiener Neustadt, Austria
Abstract :
We report a novel exact closed-form solution of the Euler-Bernoulli beam equation expressible in terms of Meijer G-functions. This solution allows for analytically studying the natural frequencies and mode shapes of a very general class of beams characterized by both a polynomially varying flexural beam bending stiffness EI(x) and beam cross section A(x), but a constant EI(x)=A(x)-ratio. Its application is exemplarily demonstrated on cantilevers characterized by a uniform thickness and a spatially narrowing width of either linear form (i. e., trapezoid cantilevers) or describable by a power function of higher order. The analytically deduced results are validated by computer numerical simulations and compared to test measurements carried out on micromachined thin-film cantilevers.
Keywords :
beams (structures); bending; cantilevers; resonance; ultrasonic transducers; Meijer G-functions; beam cross section; bending stiffness; constant thickness; mode shapes; natural frequencies; polynomial width; power function; resonant Euler-Bernoulli beams; Differential equations; Equations; Frequency measurement; Mathematical model; Micromechanical devices; Shape; Vibrations;
Conference_Titel :
Ultrasonics Symposium (IUS), 2014 IEEE International
Conference_Location :
Chicago, IL
DOI :
10.1109/ULTSYM.2014.0522