Bimorph cantilevers used as micromechanical linear actuator:
1 - substrate
2 - piezoelectric layer
3 - passive layer
4 - mechanical contact area
5 - track

A bimorph is a cantilever used for actuation or sensing which consists of two active layers. It can also have a passive layer between the two active layers. In contrast, a piezoelectric unimorph has only one active (i.e. piezoelectric) layer and one passive (i.e. non-piezoelectric) layer.

Piezoelectric bimorph

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The term bimorph is most commonly used with piezoelectric bimorphs. In actuator applications, one active layer contracts and the other expands if voltage is applied, thus the bimorph bends. In sensing applications, bending the bimorph produces voltage which can for example be used to measure displacement or acceleration. This mode can also be used for energy harvesting.[1]

Bimetal bimorph

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A bimetal could be regarded as a thermally activated bimorph. The first theory about the bending of thermally activated bimorphs was given by Stoney.[2] Newer developments also enabled electrostatically activated bimorphs for the use in microelectromechanical systems.[3]

See also

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References

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  1. ^ Al-Ashtari, W.; Hunstig, M..; Hemsel, T.; Sextro, W. (July 14, 2013), Characteristics of Piezoelectric Energy Harvesters in Autonomous Systems. Proceedings of 10th International Workshop on Piezoelectric Materials and Applications and 8th Energy Harvesting Workshop (PDF), retrieved January 31, 2016[permanent dead link]
  2. ^ Stoney, G. Gerald (May 6, 1909). "The Tension of Metallic Films Deposited by Electrolysis". Proceedings of the Royal Society of London. 82 (553): 172–175. Bibcode:1909RSPSA..82..172S. doi:10.1098/rspa.1909.0021.
  3. ^ Conrad, Holger (December 11, 2015). "A small-gap electrostatic micro-actuator for large deflections". Nature Communications. 6 10078. Bibcode:2015NatCo...610078C. doi:10.1038/ncomms10078. PMC 4682043. PMID 26655557.

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MEMS electrothermal actuator

to one direction. The third type of MEMS electrothermal actuator is the bimorph actuator. Its motion relies on the varying coefficients of thermal expansion

Morphism

said to be isomorphic or equivalent. While every isomorphism is a bimorphism, a bimorphism is not necessarily an isomorphism. For example, in the category

Piezoelectric motor

similar to the inchworm motor, however, the piezoelectric elements can be bimorph actuators which bend to feed the slider rather than using a separate expanding

Category theory

if g1 ∘ f = g2 ∘ f implies g1 = g2 for all morphisms g1, g2 : b → x. a bimorphism if f is both epic and monic. an isomorphism if there exists a morphism

Optacon

piezoelectric reeds, called bimorphs, to move the pins in a two-dimensional array to produce tactile images. The idea of using vibrating bimorphs was critical for

Actuator

jack Servomechanism Solenoid Stepper motor Shape-memory alloy Thermal bimorph Hydraulic actuators Trim actuator, in aircraft design Rotary motors are

Unimorph

Expanded URL for Paper referenced is located here: https://people.eecs.berkeley.edu/~ronf/PAPERS/sitti-icra01.pdf Bimorph "Robotics Lab" (PDF). v t e

Cantilever

filters and resonators. Types of MEMS cantilevers include unimorphs and bimorphs. Challenges for their practical application lie in the square and cubic