IP Library › Granted Patent US 11,988,073
Granted Patent B2
US 11,988,073 · App. 17/390,051 · Granted May 21, 2024

Drill stem greasing device and method

Inventor: John A. Olander (Aurora, IL)
Assignee: TT Technologies, Inc.
E21B41/00E21B7/04E21B19/16
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Quick Facts
Patent No.
US 11,988,073
App. No.
17/390,051
Granted
May 21, 2024
Kind
B2
Abstract

A drill stem grease injector for a directional drill and associated methods are disclosed. Example drill stem grease injectors include a piston within an injection chamber, and a grease port in a side of the injection chamber, wherein grease port is configured to actuate before motion of the piston during an injection operation. Drill stem grease systems shown provide refill capabilities that reduce or eliminate a user's need to touch grease.

Claims (63)

1. A drill stem grease injector, comprising:

an injection chamber;

a piston within the injection chamber, wherein the piston is configured to push an amount of grease from the injection chamber onto a drill stem thread; and

a grease port in a side of the injection chamber, wherein grease port is configured to actuate before motion of the piston during an injection operation.

2. The drill stem grease injector of claim 1 , wherein the piston and the grease port are actuated by a single actuator.

3. The drill stem grease injector of claim 2 , wherein the single actuator is a hydraulic actuator.

4. The drill stem grease injector of claim 1 , wherein the injection chamber includes a first cylinder that includes a first opening in a side, and wherein the grease port includes a second cylinder with a second opening wherein the second cylinder slides to align the second opening with the first opening to open the grease port.

5. The drill stem grease injector of claim 4 , wherein the second cylinder includes a ledge to actuate the piston after actuating the grease port.

6. The drill stem grease injector of claim 5 , wherein the ledge is configured to actuate the piston to dispense grease after the grease port is closed, and wherein the ledge is configured to actuate the piston to a reset position after the grease port is open.

7. A directional drill, comprising:

a drive motor mounted on a sliding carriage, the sliding carriage adapted to move back and forth on a drill frame;

a drill stem vice located at a front end of the drill frame;

a grease reservoir;

a drill stem grease injector, including:

an injection chamber coupled to the grease reservoir;

a piston within the injection chamber, wherein the piston is configured to push an amount of grease from the injection chamber onto a drill stem thread; and

a grease port in a side of the injection chamber, wherein grease port is configured to actuate open or closed before motion of the piston during an injection operation.

8. The directional drill of claim 7 , wherein the drill stem grease injector is located within the grease reservoir.

9. The directional drill of claim 7 , wherein the grease reservoir includes a hopper.

10. The directional drill of claim 7 , wherein the grease reservoir includes a grease cannister housing.

11. The directional drill of claim 7 , further including a refill port coupled to the grease reservoir.

12. The directional drill of claim 7 , wherein the piston and the grease port are actuated by a single actuator.

13. The directional drill of claim 12 , wherein the single actuator is a hydraulic actuator.

14. The directional drill of claim 7 , wherein the injection chamber includes a first opening in a side, and wherein the grease port includes a cylinder with a second opening wherein the cylinder slides to align the second opening with the first opening to open the grease port.

15. The directional drill of claim 14 , wherein the cylinder includes a ledge to actuate the piston after actuating the grease port.

16. The directional drill of claim 15 , wherein the ledge is configured to actuate the piston to dispense grease after the grease port is closed, and wherein the ledge is configured to actuate the piston to a reset position after the grease port is open.

17. A drill stem grease system, comprising:

a grease reservoir;

a drill stem grease injector, including:

an injection chamber coupled to the grease reservoir;

a piston within the injection chamber, wherein the piston is configured to push an amount of grease from the injection chamber onto a drill stem thread;

a grease port in a side of the injection chamber, wherein grease port is configured to actuate open or closed before motion of the piston during an injection operation; and

a refill passage coupled to the grease reservoir.

18. The drill stem grease system of claim 17 , wherein the drill stem grease injector is located within the reservoir.

19. The drill stem grease system of claim 17 , wherein the reservoir includes a grease cannister housing.

20. The drill stem grease system of claim 19 , wherein the grease cannister housing includes a spring loaded piston.

21. The drill stem grease system of claim 19 , wherein the grease cannister housing is coupled to the refill passage, and further including a refill port coupled to the refill passage separate from the grease cannister housing.

22. A method of injecting grease onto threads of a drill stem, comprising:

placing a drill stem thread adjacent to a grease injector;

closing a grease port on a side of an injection chamber using a single actuator;

actuating a piston within the injection chamber with the single actuator after the grease port is closed;

opening the grease port with the single actuator before the piston is in a reset position; and

returning the piston to the reset position with the single actuator after opening the grease port.

23. The method of claim 22 , wherein placing the drill stem thread adjacent to the grease injector includes placing a sub saver thread adjacent to the grease injector.

24. The method of claim 22 , wherein closing the grease port and opening the grease port includes sliding a cylinder back and forth over the injection chamber to align and dis-align corresponding openings in the injection chamber and the cylinder.

25. The method of claim 22 , wherein actuating the piston includes pulling and pushing the piston with a ledge portion of a cylinder.

26. A drill stem grease system, comprising:

a grease reservoir;

a drill stem grease injector, including:

an injection chamber coupled to the grease reservoir;

a piston within the injection chamber, wherein the piston is configured to push an amount of grease from the injection chamber onto a drill stem thread;

a refill passage coupled to the grease reservoir;

a grease refill supplier, including;

a refill reservoir sized to hold multiple refill amounts of grease for the grease reservoir;

a refill pump;

a refill pump actuator coupled to the refill pump;

a refill hose coupled to an outlet of the refill pump; and

a fitting on a distal end of the refill hose configured to connect to the refill passage.

27. The drill stem grease system of claim 26 , further including a grease port in a side of the injection chamber, wherein grease port is configured to actuate open or closed before motion of the piston during an injection operation.

28. The drill stem grease system of claim 27 , wherein the refill reservoir is cylindrical in shape, and the refill pump is located outside the refill reservoir.

29. The drill stem grease system of claim 28 , further including a tube inlet coupled to the refill pump, wherein a distal end of the tube inlet is located adjacent to a bottom of the refill reservoir.

30. The drill stem grease system of claim 29 , further including a follower adapted to move downward within the refill reservoir as grease is pumped out through the refill hose.

31. The drill stem grease system of claim 26 , wherein the fitting includes a threaded fitting.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2021
From: OLANDER, JOHN A.
To: TT TECHNOLOGIES, INC.
Reel/Frame 057358/0300 →
Continuity (2)
Provisional Application 63065661 · Aug 14, 2020
Related Publication 20220049583A1 · Feb 17, 2022
Cited By (1)
US 12,460,511