Piezo flapping fan
10184493 ยท 2019-01-22
Inventors
Cpc classification
F04B43/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A flapping fan for cooling electronic devices includes an elongated piezo actuator, two supporting members, two connecting members, and a thin blade. The supporting members are attached to the piezo actuator at its two ends, while the blade is connected to the piezo actuator through the connecting members. When activated by an AC signal, the piezo actuator oscillates around its neutral position, which causes the blade to oscillate. The blade rotates around its leading edge when its direction of motion changes, keeping its angle of incidence lower than ninety degrees. This helps the flapping fan to generate a significant air flow.
Claims
1. A flapping fan, comprising: an elongated piezo actuator; two supporting members arranged substantially perpendicular to said piezo actuator; two living hinges, each said living hinge mechanically connects each said supporting member to each end of said piezo actuator; a thin blade arranged parallel to said piezo actuator; and at least a connecting member mechanically connecting the leading edge of said blade to the central portion of said piezo actuator; whereby when activated by an AC signal said piezo actuator oscillates around its neutral position, driving said blade to oscillate, aerodynamic drag force and inertial force acting on said blade cause it to rotate around its leading edge when its direction of motion changes, and thus, generating a significant air flow in the same direction in both downstroke and upstroke of an oscillating cycle.
2. The flapping fan of claim 1, wherein said living hinges are made of silicon rubber.
3. The flapping fan of claim 1, wherein said blade is made of silk fabric with a carbon fiber frame.
4. The flapping fan of claim 3, wherein said blade is made using a laminated composite manufacturing technique.
5. A cooling device, comprising: a heat sink having an array of fins; and a flapping fan according to claim 1; whereby when powered by an AC signal said flapping fan generates an air flow across the fins of said heat sink, dissipating heat from said fins to the air.
6. A flapping fan, comprising: an elongated piezo actuator; two supporting members arranged substantially perpendicular to said piezo actuator, each said supporting member is attached to each end of said piezo actuator; a thin blade comprising a lightweight frame and a thin membrane attached to said frame, said thin blade being arranged parallel to said piezo actuator; and at least a connecting member mechanically connecting the leading edge of said blade to the central portion of said piezo actuator; whereby when activated by an AC signal said piezo actuator oscillates around its neutral position, driving said blade to oscillate, aerodynamic drag force and inertial force acting on said blade cause it to rotate around its leading edge when its direction of motion changes, and thus, generating a significant axial air flow in the same direction in both downstroke and upstroke of an oscillating cycle.
7. The flapping fan of claim 6, wherein said supporting members are attached to said piezo actuator using two silicone rubber living hinges.
8. The flapping fan of claim 6, wherein said frame is made of carbon fiber.
9. The flapping fan of claim 6, wherein said membrane is made of silk fabric.
10. The flapping fan of claim 6, wherein said blade is made using a laminated composite manufacturing technique.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A complete understanding of the present invention may be obtained by reference to the accompanying drawings, when considered in conjunction with the subsequent detailed description, in which:
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DETAILED DESCRIPTION
(7) The present invention will now be described in full details with reference to the accompanying drawings in which example embodiments of the claimed invention are shown.
(8) Referring to
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(10) The flapping fan of this invention can be used in conjunction with a heat sink to form a cooling device.
(11) Like rotary fans, more than one flapping fan of this invention can be arranged in parallel to improve the overall performance as shown in
(12) Unlike rotary fans, the flapping fan of this invention includes only a few simple parts, making it lightweight and easy to manufacture. As there is no bearing, no friction, and thus, no friction energy loss, the flapping fan is very reliable and efficient. Furthermore, the simple design enables miniaturization of the flapping fan. As piezo materials such as PZT can have high energy conversion efficiency, the flapping fan can have relatively low power consumption. More importantly, thanks to the flapping mechanism of its blade the fan is able to provide a significant air flow for cooling purpose.
(13) Since other modifications and changes in the material, shape, size, and arrangement of the parts will be apparent to those skilled in the art, it has to be understood that the invention is not considered limited to the above described embodiments of this invention, and covers all changes and modifications which do not constitute departures from the true spirit and scope of this invention.