IP Library Granted Patent US 7,789,153
Granted Patent B2
US 7,789,153 · App. 11/876,841 · Granted Sep 7, 2010

Methods and apparatuses for electronic time delay and systems including same

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Quick Facts
Patent No.
US 7,789,153
App. No.
11/876,841
Granted
Sep 7, 2010
Kind
B2
Abstract

Electronic time delay apparatuses and methods of use are disclosed. An explosive or propellant system, which may be configured as a well perforating system includes an electronic time delay assembly comprising an input subassembly, an electronic time delay circuit, and an output subassembly. The input subassembly is activated by an external stimulus, wherein an element is displaced to activate an electronic time delay circuit. The electronic time delay circuit comprises a time delay device coupled with a voltage firing circuit. The electronic time delay circuit counts a time delay, and, upon completion, raises a voltage until a threshold firing voltage is exceeded. Upon exceeding the threshold firing voltage, a voltage trigger switch will break down to transfer energy to an electric initiator to initiate an explosive booster within the output subassembly. The explosive booster provides the detonation output to initiate the next element explosive or propellant element, such as an array of shaped charges in the well perforating system.

Claims (44)

1. A time delay apparatus, comprising:

an input assembly including an element configured to be displaced to enable a power source connection; and

an electronic time delay circuit including an isolation element configured to electrically isolate a power source from the electronic time delay circuit upon contact of a component thereof by a liquid, the electronic time delay circuit operably coupled to the input assembly and configured to provide a time delay responsive to an enabled, non-isolated power source connection and initiate a fire command upon completion of the time delay.

2. The time delay apparatus of claim 1 , wherein the isolation element comprises:

a conductive input operably coupled to the power source and configured to receive an electrical signal;

a conductive output operably coupled to the electronic time delay circuit and configured to output the electrical signal;

an expandable pellet located at least partially between the conductive input and the conductive output and configured to expand upon contacting a liquid; and

at least one conductive wire operably coupled between the conductive input and the conductive output and adjacent to and extending across the expandable pellet.

3. The time delay apparatus of claim 2 , wherein the expandable pellet comprises a compressed sponge.

4. The time delay apparatus of claim 3 , wherein the expandable pellet has a diameter of substantially 5 (five) millimeters.

5. The time delay apparatus of claim 3 , wherein the expandable pellet in a compressed state has a thickness in the range of substantially 0.8 to 1.0 millimeter.

6. The time delay apparatus of claim 2 , wherein the at least one conductive wire comprises an aluminum wire having a 37-micron diameter.

7. The time delay apparatus of claim 2 , further comprising a housing at least partially surrounding the isolation element.

8. The time delay apparatus of claim 7 , wherein the housing comprises a plastic material rated to withstand temperatures up to 180 degrees Celsius.

9. The time delay apparatus of claim 2 , wherein the expandable pellet is configured to come into contact with and break the at least one conductive wire as a result of expansion.

10. The time delay apparatus of claim 1 , wherein the electronic time delay circuit comprises a quartz crystal oscillator operably coupled to at least one counter device.

11. The time delay apparatus of claim 10 , wherein the quartz crystal oscillator comprises at least one of a 75 KHz quartz crystal oscillator, a 36 KHz quartz crystal oscillator, and a 26.5 KHz quartz crystal oscillator.

12. The time delay apparatus of claim 1 , wherein the electronic time delay circuit comprises a voltage firing circuit including at least one of a voltage doubler and a voltage quadrupler configured to increase a voltage provided by a power source.

13. A well perforation system, comprising:

a conveyance device;

a perforating gun suspended from the conveyance device;

a firing head suspended from the conveyance device and operably coupled to the perforating gun;

a power source; and

a time delay apparatus within the firing head, comprising:

an input assembly including an element configured to be displaced to enable a power source connection; and

an electronic time delay circuit including an isolation element configured to electrically isolate the power source from the electronic time delay circuit upon contact of a component thereof by a liquid, the electronic time delay circuit operably coupled to the input assembly and configured to provide a time delay responsive to an enabled, non-isolated power source connection and initiate a fire command upon completion of the time delay.

14. The well perforation system of claim 13 , wherein the isolation element comprises:

a conductive input operably coupled to the power source and configured to receive an electrical signal;

a conductive output operably coupled to the electronic time delay circuit and configured to output an electrical signal;

an expandable pellet located at least partially between the conductive input and the conductive output and configured to expand upon contacting a liquid; and

at least one conductive wire operably coupled between the conductive input and the conductive output and adjacent to and extending across the expandable pellet.

15. The well perforation system of claim 14 , wherein the expandable pellet comprises a compressed sponge.

16. The well perforation system of claim 15 , wherein the expandable pellet has a diameter of substantially 5 (five) millimeters.

17. The well perforation system of claim 15 , wherein the expandable pellet has a thickness in a compressed state in the range of substantially 0.8 to 1.0 millimeter.

18. The well perforation system of claim 14 , wherein the at least one conductive wire comprises an aluminum wire having a 37-micron diameter.

19. The well perforation system of claim 14 , further comprising a housing at least partially surrounding the isolation element.

20. The well perforation system of claim 14 , wherein the expandable pellet is configured to come into contact with and break the at least one conductive wire as a result of expansion.

21. The well perforation system of claim 13 , wherein the electronic time delay circuit comprises a quartz crystal oscillator operably coupled to at least one counter device.

22. The well perforation system of claim 21 , wherein the quartz crystal oscillator comprises at least one of a 75 KHz quartz crystal oscillator, a 36 KHz quartz crystal oscillator, and a 26.5 KHz quartz crystal oscillator.

23. The well perforation system of claim 13 , wherein the electronic time delay circuit comprises a voltage firing circuit including at least one of a voltage doubler and a voltage quadrupler configured to increase a voltage provided by a power source.

24. A method of disabling an electronic time delay circuit, comprising:

providing an isolation element connected between a power source and the electronic time delay circuit; and

isolating the power source from the electronic time delay circuit responsive to a component of the isolation element contacting a liquid.

25. The method of claim 24 , wherein isolating the power source from the electronic time delay circuit comprises expanding the component to break at least one wire.

Assignments (10)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2021
From: NORTHROP GRUMMAN INNOVATION SYSTEMS LLC
To: NORTHROP GRUMMAN SYSTEMS CORPORATION
Reel/Frame 055256/0892 →
CHANGE OF NAME Recorded Feb 4, 2021
From: NORTHROP GRUMMAN INNOVATION SYSTEMS, INC.
To: NORTHROP GRUMMAN INNOVATION SYSTEMS LLC
Reel/Frame 055223/0425 →
CHANGE OF NAME Recorded Nov 1, 2018
From: ORBITAL ATK, INC.
To: NORTHROP GRUMMAN INNOVATION SYSTEMS, INC.
Reel/Frame 047400/0381 →
RELEASE OF SECURITY INTEREST Recorded Jun 6, 2018
From: BANK OF AMERICA, N.A.
To: ALLIANT TECHSYSTEMS INC.; ATK/PHYSICAL SCIENCES, INC.; ORBITAL SCIENCES CORPORATION; ORBITAL ATK, INC.
Reel/Frame 045998/0801 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jun 6, 2018
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
To: ORBITAL ATK, INC.
Reel/Frame 046477/0874 →
SECURITY AGREEMENT Recorded Sep 30, 2015
From: ORBITAL ATK, INC.; ORBITAL SCIENCES CORPORATION
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 036732/0170 →
CHANGE OF NAME Recorded May 22, 2015
From: ALLIANT TECHSYSTEMS INC.
To: ORBITAL ATK, INC.
Reel/Frame 035753/0373 →
SECURITY AGREEMENT Recorded Nov 26, 2013
From: ALLIANT TECHSYSTEMS INC.; CALIBER COMPANY; EAGLE INDUSTRIES UNLIMITED, INC.; FEDERAL CARTRIDGE COMPANY; SAVAGE ARMS, INC.; SAVAGE RANGE SYSTEMS, INC.; SAVAGE SPORTS CORPORATION
To: BANK OF AMERICA, N.A.
Reel/Frame 031731/0281 →
SECURITY AGREEMENT Recorded Nov 4, 2010
From: ALLIANT TECHSYSTEMS INC.; AMMUNITION ACCESSORIES INC.; ATK COMMERCIAL AMMUNITION COMPANY INC.; ATK COMMERCIAL AMMUNITION HOLDINGS COMPANY; ATK LAUNCH SYSTEMS INC.; ATK SPACE SYSTEMS INC.; FEDERAL CARTRIDGE COMPANY; EAGLE INDUSTRIES UNLIMITED, INC.; EAGLE MAYAGUEZ, LLC; EAGLE NEW BEDFORD, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 025321/0291 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2008
From: PRINZ, FRANCOIS X.; ARRELL, JOHN A., JR.; BORJA, RONALD S.; SLADE, WILLIAM J.
To: ALLIANT TECHSYSTEMS INC.
Reel/Frame 020439/0620 →