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A cochlea bio-inspired tunable piezoelectric cantilever array MEMS microphone: comprehensive study. [PDF]

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Cantilever beam equilibrium configurations

International Journal of Solids and Structures, 2005
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Batista, M., Kosel, F.
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Material damping of cantilever beams

Journal of Sound and Vibration, 1982
Abstract In this paper, a method for estimating material damping in a cantilever beam is reported. This method shows that the damping can be calculated in terms of the stress distribution functions for each mode of vibration and the damping-stress function.
Y. Kume, F. Hashimoto, S. Maeda
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Cantilever Beam Resonators

2002
Micromachined resonant sensors have been investigated in recent years for various sensor applications [52]. In a mechanical resonant sensor the measurand affects a characteristic of the oscillation of a solid structure. In most resonant sensors a change of the resonance frequency is detected, but also vibration amplitude, phase and quality factor are ...
D. Lange, O. Brand, H. Baltes
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Shear Beam Loads and Cantilever Beam-Columns

2018
A basic problem with external beam shear Q load at a given position has close similarities to the case of external moments in this chapter, but the involved Berry functions (now with bar notation) are more complicated. In addition to rotational spring supports at the beam-column ends, translational spring support is included at the right beam end ...
Wiggers, Sine Leergaard, Pedersen, Pauli
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LARGE DEFLECTIONS OF CANTILEVER BEAMS

Transactions of the Canadian Society for Mechanical Engineering, 1991
In this research a method is presented to study the alternate equilibrium configurations of a cantilever beam subjected to a uniform gravitational distributed load. The prismatic cantilever beam is assumed to be initially straight in addition to its material being homogeneous, elastic, and isotropic.
S. Navaee, R.E. Elling
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Auxetic cantilever beam energy harvester

Smart Structures and NDE for Industry 4.0, Smart Cities, and Energy Systems, 2020
This paper develops an auxetic cantilever beam energy harvester (ACBEH) to enhance the harvesting power from ambient vibration sources. A finite element analysis was performed to verify the power increase mechanism of the ACBEH. The simulation model of the ACBEH comprises of three main components: support, tip mass, and cantilever beam with a re ...
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