Claims
- 1. A device, said microtube device comprising a microtube which uses surface tension and wettablility in its functioning having a gas or wetting fluid flowable therein, said gas or wetting fluid flowable in at least one channel, said gas or wetting fluid operating upon at least one nonwetting fluid therein, said nonwetting fluid having a predetermined shape within said at least one channel.
- 2. A microtube device as defined in claim 1 wherein said microtube device functions as a: a check valve, a flow-limiter, a flow-restrictor, a flow regulator, a shaft holding device or a microtube digital logic circuit.
- 3. A microtube device as defined in claim 2 wherein said check valve comprises:
- at least one input section, said input section being a small diameter microtube;
- at least one output section, said output section being a small diameter microtube;
- a control section, said control section being a microtube of a larger diameter, ends of said control section being integrally formed with said smaller diameter microtube of said input and output sections;
- at least one by-pass channel, said by-pass channel being a microtube, said by-pass channel having one end connected into said control section about one end, the other end of said by-pass channel being connected into said output section;
- whereby at least one nonwetting droplet is placed inside of said control section and a gas or wetting fluid may flow therethrough, if said gas or wetting fluid flows in the direction of said output section, a flow of said gas or wetting fluid will continue, and if said gas or wetting fluid flows in the direction of said input section, a flow of said gas or wetting fluid will stop.
- 4. A microtube device as defined in claim 2 wherein said flow-limiter comprises:
- a control section, said control section being a microtube;
- an input section, said input section being a microtube of a smaller diameter than said control section, said input section integrally connected to one end of said control section;
- an output section, said output section being a microtube of a smaller diameter than said control section, said output section integrally connected to the other end of said control section than said input section;
- said control section having at least one nonwetting droplet inserted therein when in use, said at least one nonwetting droplet being in close contact with said microtube, a gas or wetting fluid flowing through said flow-limiter, said gas or wetting fluid causing said at least one nonwetting droplet to translate back and forth within said control section; said at least one nonwetting droplet blocking the flow of said gas or wetting fluid when coming in contact with an entrance to said input or said output section, said flow-limiter allowing a predetermined flow of fluid or gas therethrough.
- 5. A microtube device as defined in claim 4 wherein said flow-limiter has at least one nonwetting droplet therein smaller than the inside diameter of said control section but larger in diameter than said input and output section whereby the gas or wetting fluid is able to flow past the nonwetting droplet till the pressure or flow is great enough to move said droplet to block said input or output section.
- 6. A microtube device as defined in claim 2 wherein said flow regulator comprises:
- an input section, said input section being a microtube;
- a conical transition section, said conical transition section integrally attached to said input section, said transition section having a decreasing diameter from said input section, said transition section having an outlet;
- an output section, said output section being a microtube and being integrally connected to said transition section at said outlet;
- at least one bypass flow channel, said at least one bypass flow channel being integrally connected to said transition section and said output section whereby a gas or wetting fluid may flow, said at least one surface of said bypass flow channel being joined to the surface of said conical transition section;
- said conical transition section having positioned therein when in use at least one nonwetting droplet being of a smaller diameter than said input section, a pressure from said gas or wetting fluid determining a quantity of fluid to flow through said transition section.
- 7. A microtube device as defined in claim 2 wherein said shaft holding device comprises:
- a microtube support, said microtube support being a microtube;
- at least one microtube channel integrally formed about said microtube support on an inside wall of said microtube whereby when a nonwetting fluid is placed in said channels a portion of said nonwetting fluid will extend into an inside void of said microtube support; and
- a central rod, said central rod being placed within said microtube support in rotatable and translatable contact with said nonwetting fluid.
- 8. A microtube device as defined in claim 2 wherein said shaft holding device comprises:
- a microtube support, said microtube support being a microtube; and
- a central rod, said central rod being placed within said microtube support, said central rod having at least one channel formed in the outer circumference, a nonwetting fluid being placed in said channel when in use, said fluid further contacting an inside wall of said microtube support, said central rod being rotatable and translatable within said microtube support.
- 9. A microtube device as defined in claim 2 wherein said shaft holding device comprises:
- a microtube support, said microtube support being a microtube, said microtube support have at least one channel formed on an inside wall of said microtube; and
- a central rod, said central rod being placed within said microtube support, said central rod having at least one channel formed in the outer circumference of said central rod, a nonwetting fluid being placed in said channels of said microtube support and said central rod when in use, said central rod being rotatable within said microtube support.
- 10. A microtube device as defined in claim 7 wherein said shaft holding device further comprises:
- a thrust bearing, said thrust bearing comprising:
- a central disk, said central disk formed about said central rod;
- a central disk housing, said central disk housing being formed integrally into said microtube support, said central disk fitting closely within said housing, at least two ring shaped channels integrally formed into opposite inside walls of said housing, a nonwetting fluid being positioned within said ring shaped channels when in use, said nonwetting fluid in further contact with said central disk.
- 11. A microtube device as defined in claim 2 wherein said microtube digital logic circuit comprises at least one AND, NAND, OR, NOR, or NOT gates.
- 12. A microtube device as defined in claim 11 wherein said microtube digital logic circuit NOR gate comprises:
- at least one first logic component, said first logic component having two inputs, each input being a microtube; a control section, said control section having said inputs connected opposite to each other, said control section being essentially two conical sections connected together at a larger end thereof, each input being connected to a smaller end of each conical section; an output, said output connected into said control section between said inputs, said control section having at least one nonwetting droplet therein when in use, a gas or wetting fluid or gas flowing from either one or both of said inputs to said output; and
- at least one second logic component, said second logic component having an input, said input being a microtube, said input being said output of said first logic component; a control section, said control section having said input connected into one end, said control section being a microtube of a larger diameter than said input, said control section having an output, said output being a microtube larger than said input but smaller than said control section, said output being of a short length; and a control input microtube and a control output microtube being connected into said output from said control section whereby when at least one nonwetting droplet in said control section is pressed into said output of said control section, said droplet will block a flow of gas or wetting fluid from said control input to said control output.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation of application Ser. No. 08/472,575, filed 7 Jun. 1995, now abandoned, which is a continuation-in-part of application Ser. No. 08/229,962 filed on 15 Apr. 1994, the disclosure of which is incorporated herein by reference.
STATEMENT OF GOVERNMENT INTEREST
The invention described herein may be manufactured and used by or for the Government for governmental purposes without the payment of any royalty thereon.
US Referenced Citations (14)
Continuations (1)
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472575 |
Jun 1995 |
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Continuation in Parts (1)
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