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Thermo-electro-mechanical bending behavior of a sandwich nanoplate is studied in this paper.
Bending behavior of a miniature actuator utilizing Pd Ni hydrogen storage alloy (HSA) has been investigated on hydriding and dehydriding process.
Moreover, the role of the residual contact forces due to the stranding process, on the bending behavior of a typical multi-layer strand is assessed.
This paper investigates the nonlinear bending behavior of a bilayer rectangular graphene sheet subjected to a transverse uniform load in thermal environments.
The bi-directional plate bending behavior of a pultruded GFRP bridge deck system with orthotropic material and system properties was investigated by means of two full-scale experiments and numerical modeling.
This paper studies the nonlinear bending behavior of a novel class of multi-layer polymer nanocomposite beams reinforced with graphene platelets (GPLs) that are non-uniformly distributed along the thickness direction.
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The bending behavior of an innovative fiber reinforced polymer (FRP) sandwich panel was investigated for application in a multistory building.
This study focused on the bending behavior of an innovative sandwich panels with GFRP face sheets and a foam-web core (GFFW panels), manufactured by vacuum assisted resin infusion process.
A novel beam model is derived to investigate the nonlinearized bending behaviors of a two-dimensionally functionally graded (FG) beam based on the Euler Bernoulli beam kinematic theory.
We investigate the nonlinear bending behavior of piezoelectric laminated actuators as a function of the amplitude and frequency of large electric fields both analytically and experimentally.
In order to demonstrate sensitivity of geometric parameters on the bending behavior of the truss core sandwich beams, a uniform and two kinds of graded corrugated truss core sandwich panels were fabricated and tested to probe different failure modes.
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