Title of article :
Refined models of elastic beams undergoing large in-plane motions: Theory and experiment
Author/Authors :
Walter Lacarbonara، نويسنده , , Hiroshi Yabuno، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
Accurate mechanical models of elastic beams undergoing large in-plane motions are discussed theoretically and
experimentally. Employing the geometrically exact theory of rods with appropriate kinematic assumptions and asymptotic
arguments, two approximate models are obtained—a relaxed model and its constrained version—that describe
extensional and bending motions and neglect shear deformations. These models are shown to be suitable to predict,
via an asymptotic approach, closed-form nonlinear motions of beams with general boundary conditions and, in particular,
with boundary conditions that longitudinally constrain the motions. On the other hand, for axially unrestrained or
weakly restrained beams, an inextensible and unshearable model is presented that describes bending motions only. The
perturbations about the reference configuration up to third order are consistently derived for all beam models. Closedform
solutions of the responses to primary-resonance excitations are obtained via an asymptotic treatment of the
governing equations of motion for two different beam configurations; namely, hinged–hinged (axially restrained)
and simply supported (axially unrestrained) beams. In particular, considering the present theory and the existing theories,
variations of the frequency–response curves with the beam slenderness or the relative boundary mass are investigated
for the lowest modes. The fidelity of the proposed nonlinear models is ascertained comparing the theoretically
obtained frequency–response curves of the first mode with those experimentally obtained.
Keywords :
Axis stretching nonlinearity , Geometric/inertia nonlinearities , Finite bending curvature , Nonlinear beam , Direct method ofmultiple scales
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures