Javascript must be enabled to continue!
Modeling of a Symmetric Five-Bar Displacement Amplification Compliant Mechanism for Energy Harvesting
View through CrossRef
This paper presents an analytical model to determine a closed form mathematical representation for the output displacement of a displacement amplification compliant mechanism used for energy harvesting. A symmetric five-bar compliant mechanism with right-circular and corner-filleted flexure hinges was mathematically modeled and its displacement was determined using the Castigliano energy theorem. The stresses within the flexure joints, the weakest points in the mechanism body, were calculated. The mathematical model expresses both the displacement amplification and the stresses as functions of the design parameters and the load caused by the harvester. The developed model can be used to optimize the mechanism dimensions for maximum harvested power, while minimizing its structural stresses. The mechanism was also modeled numerically using finite element methods; both the analytical and numerical models were verified experimentally. The mathematical model of the mechanism was integrated with a model representing a piezoelectric energy harvester to calculate the open-circuit voltage. As a proof of concept, experiments were performed using an unimorph piezoelectric cantilever at low-frequency (less than 1 Hz) harmonic excitation inputs. The measured open-circuit voltage was found to be in agreement with that calculated using the proposed model, when integrated with the model representing the piezoelectric beam. The power generated by the piezoelectric harvester, equipped with the proposed displacement amplification mechanism, was more than a hundred times that without amplification.
Title: Modeling of a Symmetric Five-Bar Displacement Amplification Compliant Mechanism for Energy Harvesting
Description:
This paper presents an analytical model to determine a closed form mathematical representation for the output displacement of a displacement amplification compliant mechanism used for energy harvesting.
A symmetric five-bar compliant mechanism with right-circular and corner-filleted flexure hinges was mathematically modeled and its displacement was determined using the Castigliano energy theorem.
The stresses within the flexure joints, the weakest points in the mechanism body, were calculated.
The mathematical model expresses both the displacement amplification and the stresses as functions of the design parameters and the load caused by the harvester.
The developed model can be used to optimize the mechanism dimensions for maximum harvested power, while minimizing its structural stresses.
The mechanism was also modeled numerically using finite element methods; both the analytical and numerical models were verified experimentally.
The mathematical model of the mechanism was integrated with a model representing a piezoelectric energy harvester to calculate the open-circuit voltage.
As a proof of concept, experiments were performed using an unimorph piezoelectric cantilever at low-frequency (less than 1 Hz) harmonic excitation inputs.
The measured open-circuit voltage was found to be in agreement with that calculated using the proposed model, when integrated with the model representing the piezoelectric beam.
The power generated by the piezoelectric harvester, equipped with the proposed displacement amplification mechanism, was more than a hundred times that without amplification.
Related Results
Constraint-Force-Based (CFB) Modeling of Compliant Mechanisms
Constraint-Force-Based (CFB) Modeling of Compliant Mechanisms
Numerous works have been done on modeling compliant modules or joints, and the closed-form models of many widely-used compliant modules have been developed. However, the modeling o...
Investigating full-heavy tetraquarks composed of $$cc{\bar{c}}{\bar{b}}$$ and $$bb{\bar{b}}{\bar{c}}$$
Investigating full-heavy tetraquarks composed of $$cc{\bar{c}}{\bar{b}}$$ and $$bb{\bar{b}}{\bar{c}}$$
AbstractThe full-heavy tetraquarks $$cc{\bar{c}}{\bar{b}}$$
c
c
...
EESTIMATES OF BEST APPROXIMATIONS OF FUNCTIONS WITH LOGARITHMIC SMOOTHNESS IN THE LORENTZ SPACE WITH ANISOTROPIC NORM
EESTIMATES OF BEST APPROXIMATIONS OF FUNCTIONS WITH LOGARITHMIC SMOOTHNESS IN THE LORENTZ SPACE WITH ANISOTROPIC NORM
In this paper, we consider the anisotropic Lorentz space \(L_{\bar{p}, \bar\theta}^{*}(\mathbb{I}^{m})\) of periodic functions of \(m\) variables. The Besov space \(B_{\bar{p}, \ba...
The Centennial Book of Samsun Bar Association - Kitap: Samsun Barosu 100 Yaşinda
The Centennial Book of Samsun Bar Association - Kitap: Samsun Barosu 100 Yaşinda
In 2023 Samsun Bar Association is celebrating its centennial. Anniversaries are important for institutions as well as individuals. These dates are major reference points for rememb...
Modeling of a Symmetric Five-Bar Displacement Amplification Compliant Mechanism Using Energy Methods
Modeling of a Symmetric Five-Bar Displacement Amplification Compliant Mechanism Using Energy Methods
We present a symmetric five-bar compliant mechanism for the displacement amplification of mechanical vibration. When the proposed mechanism is connected to an energy harvester, amp...
Paddy Harvesting Based on Acreage or Paddy Harvesting Based on Weight: A Comparative Study on Combine Harvesting Loss
Paddy Harvesting Based on Acreage or Paddy Harvesting Based on Weight: A Comparative Study on Combine Harvesting Loss
Losses during paddy harvesting have been a common issue in Malaysia. Currently, there are two methods of harvesting charges, either based on acreage or based on weight. There is a ...
Lattice Evidence for Bound Heavy Tetraquarks
Lattice Evidence for Bound Heavy Tetraquarks
We investigate the possibility of qq'$ \bar {Q}\bar {Q}' $ tetraquark bound states using nf = 2 + 1 lattice QCD with pion masses ≃ 164, 299 and 415 MeV. Two types of lattice interp...
Molecular states from $$D^{(*)}{\bar{D}}^{(*)}/B^{(*)}{\bar{B}}^{(*)}$$ and $$D^{(*)}D^{(*)}/{\bar{B}}^{(*)}{\bar{B}}^{(*)}$$ interactions
Molecular states from $$D^{(*)}{\bar{D}}^{(*)}/B^{(*)}{\bar{B}}^{(*)}$$ and $$D^{(*)}D^{(*)}/{\bar{B}}^{(*)}{\bar{B}}^{(*)}$$ interactions
AbstractIn this work, we preform a systematic investigation about hidden heavy and doubly heavy molecular states from the $$D^{(*)}{\bar{D}}^{(*)}/B^{(*)}{\bar{B}}^{(*)}$$
...

