Micro-electromechanical actuator
View Patent ↗A micro-electromechanical actuator includes a pair of elongate layers capable of being heated with an electrical current to thermally expand and to perform work. A pair of spacers separates the elongate layers from each other. The spacers are arranged at respective opposite ends of the elongate layers and are fast with the layers so that the actuator is deflected when one of the layers is heated.
1. A micro-electromechanical actuator that comprises:
a pair of elongate layers capable of being heated with an electrical current to expand thermally and to perform work; and
a pair of spacers which separate the elongate layers from each other and are arranged at opposite ends of the elongate layers, the spacers being fast with the layers so that the actuator is deflected when one of the layers is heated; wherein one of the layers which is heated is composed of a material selected by calculating a dimensionless constant ε for the material in accordance with the formula:
ɛ
=
E
γ
2
T
ρ
C
where E is the Young's modulus of the material; γ is the coefficient of thermal expansion; T is the maximum operating temperature, ρ is the density and C is the specific heat capacity,
wherein each spacer is composed of a thermally non-conductive material.
2. A micro-electromechanical actuator as claimed in claim 1 , wherein each elongate layer is composed of a thermally conductive material.
3. A micro-electromechanical actuator as claimed in claim 1 , wherein each spacer is substantially block shaped.
4. A micro-electromechanical actuator as claimed in claim 1 , wherein the layers are composed of a substantially identical material.
5. A micro-electromechanical actuator as claimed in claim 1 , wherein each elongate layer has a resistivity between 0.1 μΩm and 10.0 μΩm and is chemically inert in air.