IP Library › Granted Patent US 10,221,959
Granted Patent B1
US 10,221,959 · App. 16/150,904 · Granted Mar 5, 2019

Higher speed lower torque magnetic valve actuator

Inventor: Edward P. Davis (Kihei, HI)
F16K31/105F16K31/08F16K31/504F16K31/535
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Quick Facts
Patent No.
US 10,221,959
App. No.
16/150,904
Granted
Mar 5, 2019
Kind
B1
Abstract

Various devices and techniques related to magnetically-actuated valves are generally described. In some examples, magnetically-actuated valves may include mechanisms to provide mechanical advantage such that the torques or forces applied to the valve member are higher than the torques or forces transmitted across the sealed valve enclosure by the magnetic coupling. In some examples, valves may employ mechanisms coupled to the external actuator with inverse mechanical advantage that better match traditional or convenient actuation rates of other valves.

Claims (50)

1. A valve assembly, comprising:

a valve body defining an enclosure having a first port and a second port;

a movable valve member positioned in the enclosure between the first port and the second port and configured to control fluid flow from the first port to the second port;

an internal mechanism disposed in the enclosure and operatively coupled to the movable valve member;

an internal actuation member having a ferromagnetic portion comprising an impermanent magnet, the internal actuation member operatively coupled to the internal mechanism; and

an external actuator operatively coupled to an exterior of the valve body, the external actuator comprising:

a first magnetic pole section adjacent to the valve body; and

a second magnetic pole section adjacent to the valve body; and

wherein first movement of the internal actuation member is effective to exert a first force on the internal mechanism, and wherein the internal mechanism is effective to transmit a second force to the movable valve member, wherein the second force is greater than the first force.

2. The valve assembly of claim 1 , further comprising:

an external mechanism disposed externally to the valve body and operatively coupled to the external actuator, wherein the external mechanism is effective to receive a third force and to transmit a fourth force to the external actuator, wherein the third force is greater than the fourth force.

3. The valve assembly of claim 2 , wherein a first difference between the first force and the second force is equal to a second difference between the third force and the fourth force to within a 20% tolerance.

4. The valve assembly of claim 1 , wherein the internal actuation member comprises an elongate member having a first end aligned with the first magnetic pole section and a second end aligned with the second magnetic pole section.

5. The valve assembly of claim 1 , wherein the internal mechanism comprises a lead screw.

6. The valve assembly of claim 1 , wherein the internal mechanism comprises a first gear of a first diameter and a second gear of a second diameter, wherein the first diameter is smaller than the second diameter.

7. The valve assembly of claim 6 , wherein the first gear is operatively coupled to the internal actuation member and wherein the second gear is operatively coupled to the movable valve member.

8. The valve assembly of claim 1 , wherein the internal mechanism comprises a worm gear and corresponding worm.

9. The valve assembly of claim 1 , wherein the internal mechanism comprises a traveling nut mechanism or a lever.

10. The valve assembly of claim 1 , wherein:

the first movement of the internal actuation member comprises a first rotation of the internal actuation member caused by a magnetic coupling of the internal actuation member, the first magnetic pole section, and the second magnetic pole section;

the first force comprises a first torque applied to the internal mechanism causing a second rotation of at least a component of the internal mechanism; and

the second force comprises a second torque applied to the movable valve member caused at least in part by the second rotation of the component of the internal mechanism.

11. A valve assembly, comprising:

a valve body defining an enclosure having a first port and a second port;

a movable valve member positioned in the enclosure between the first port and the second port and configured to control fluid flow from the first port to the second port;

an internal actuation member having a ferromagnetic portion comprising an impermanent magnet;

an external actuator operatively coupled to the internal actuation member and disposed on an exterior of the valve body, the external actuator comprising:

a first magnetic pole section adjacent to the valve body; and

a second magnetic pole section adjacent to the valve body; and

an external mechanism disposed externally to the valve body and operatively coupled to the external actuator, wherein the external mechanism is effective to receive a first force and to transmit a second force to the external actuator, wherein the second force is less than the first force.

12. The valve assembly of claim 11 , further comprising:

an internal mechanism disposed in the enclosure and operatively coupled to the internal actuation member and the movable valve member, wherein first movement of the internal actuation member is effective to exert a third force on the internal mechanism, and wherein the internal mechanism is effective to transmit a fourth force to the movable valve member, wherein the fourth force is less than the third force.

13. The valve assembly of claim 12 , wherein a first difference between the first force and the second force is equal to a second difference between the third force and the fourth force to within a 20% tolerance.

14. The valve assembly of claim 12 , wherein the internal mechanism comprises a worm gear and corresponding worm.

15. The valve assembly of claim 12 , wherein the internal mechanism comprises a traveling nut mechanism.

16. The valve assembly of claim 12 , wherein the internal mechanism comprises a lead screw.

17. The valve assembly of claim 11 , wherein the internal actuation member comprises an elongate member having a first end aligned with the first magnetic pole section and a second end aligned with the second magnetic pole section.

18. The valve assembly of claim 11 , wherein the external mechanism comprises a first gear of a first diameter and a second gear of a second diameter, wherein the first diameter is smaller than the second diameter.

19. The valve assembly of claim 18 , wherein the first gear is operatively coupled to the external actuator.

20. The valve assembly of claim 11 , wherein the external mechanism comprises a lever.

21. The valve assembly of claim 11 , wherein at least a portion of the valve body comprises an electrically non-conductive material.

22. A valve assembly, comprising:

a valve body defining an enclosure;

a movable valve member;

an internal actuation member having a ferromagnetic portion comprising an impermanent magnet;

an external actuator operatively coupled to the internal actuation member and disposed on an exterior of the valve body, the external actuator comprising:

a first magnetic pole section adjacent to the valve body; and

a second magnetic pole section adjacent to the valve body;

a valve handle disposed externally to the valve body; and

an external mechanism disposed externally to the valve body and operatively coupled to the external actuator and the valve handle, wherein when the valve handle is actuated at a first speed, the external mechanism is effective to actuate the external actuator at a second speed that is greater than the first speed.

Continuity (1)
Provisional Application 62567592 · Oct 3, 2017
Cited By (4)
US 12,196,336 US 12,372,163 US 12,392,419 US 12,460,738