IP Library Granted Patent US 9,145,648
Granted Patent B2
US 9,145,648 · App. 13/420,450 · Granted Sep 29, 2015

Hydraulic spike puller

Inventor: Stephen Crover (Damascus, OR)
Assignee: STANLEY BLACK & DECKER, INC.
E01B29/26B25C11/00B25B7/00B25B9/00B25B33/00Y10T29/49822
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Quick Facts
Patent No.
US 9,145,648
App. No.
13/420,450
Granted
Sep 29, 2015
Kind
B2
Abstract

A pulling tool includes a housing and a tube disposed within the housing, the tube configured to supply hydraulic fluid. The spike puller further includes a piston rod connected to a piston. The piston rod has a hollow axial bore, and the piston and the piston rod are axially moveable relative to the tube. The spike puller has a passage communicating fluid from the tube to the piston. The passage is contained within the housing. The passage is variable between a first configuration in which hydraulic fluid flows at a first restricted flow so as to provide a slower retraction of the piston rod and a second configuration in which hydraulic fluid flows at a second less restricted flow so as to provide a faster retraction of the piston rod.

Claims (46)

1. A pulling tool comprising:

a housing;

a tube disposed within the housing, the tube configured to supply hydraulic fluid;

a piston rod connected to a piston, the piston rod having a hollow axial bore, the piston and the piston rod being axially moveable relative to the tube; and

a passage communicating fluid from the tube to the piston, the passage being contained within the housing, wherein the passage is variable between a first configuration in which hydraulic fluid flows at a first restricted flow so as to provide a slower retraction of the piston rod and a second configuration in which hydraulic fluid flows at a second less restricted flow so as to provide a faster retraction of the piston rod, and wherein the passage is inside a boundary defined by an internal surface of the housing against which the piston is configured to slide.

2. The pulling tool according to claim 1 , wherein the piston rod is moveable relative to the tube from a first position to a second position, wherein in the first position hydraulic fluid flows at the first restricted flow, and in the second position, hydraulic fluid flows at the second less restricted flow.

3. The pulling tool according to claim 1 , further comprising a head portion and a bottom portion capping the housing, wherein the tube is connected to the head portion.

4. The pulling tool according to claim 3 , wherein the tube extends axially from the head portion through the hollow axial bore of the piston rod.

5. The pulling tool according to claim 1 , further comprising a jaw assembly adapted to clamp a spike, wherein the piston rod is further connected to the jaw assembly.

6. The pulling tool according to claim 1 , further comprising a check valve disposed at an end of the hydraulic tube.

7. The pulling tool according to claim 6 , wherein the check valve comprises a sleeve member and a biasing member disposed around a lower portion of the hydraulic tube, the biasing member configured to bias the sleeve member upwardly.

8. The pulling tool according to claim 1 , further comprising a liner disposed inside the hollow axial bore.

9. The pulling tool according to claim 8 , wherein the liner is in contact with an internal surface of the hollow axial bore.

10. The pulling tool according to claim 9 , wherein the liner has lateral ports aligned to allow hydraulic fluid to exit from the axial bore to actuate the piston.

11. The pulling tool according to claim 1 , wherein the piston rod has lateral ports to allow hydraulic fluid to exit from the axial bore to actuate the piston.

12. The pulling tool according to claim 1 , wherein the passage is defined at least partially by a space between an external surface of the tube and an internal surface of the piston rod.

13. The pulling tool according to claim 12 , wherein relative movement between the tube and the piston rod varies the size of the space so as to change the passage from the first configuration to the second configuration.

14. The pulling tool according to claim 1 , further comprising:

a check valve disposed at an end of the tube, the check valve comprising a sleeve member; and

a liner disposed inside the hollow axial bore, wherein an internal dimension of the liner is greater than an external dimension of the sleeve member such that when the sleeve member is concentric with the liner, the sleeve member and the liner define a first annular space that is substantially equal to a difference between the internal dimension of the liner and the external dimension of the sleeve member to allow a first restricted flow of hydraulic fluid therethrough and effect a slower retraction of the piston rod.

15. The pulling tool according to claim 14 , wherein an external dimension of the tube is smaller than an internal dimension of the liner such that when the liner is pulled upward past and away from the sleeve member, the hollow tube and the sleeve member define a second annular space that is substantially equal to a difference between the internal dimension of the liner and the external dimension of the tube to allow a second less restricted flow of hydraulic fluid therethrough to effect a faster retraction of the piston rod.

16. The pulling tool according to claim 15 , wherein the pulling tool is configured to automatically change a speed of retraction of the piston rod after a certain predetermined amount of piston travel.

17. The pulling tool according to claim 16 , wherein the predetermined amount of piston travel is controlled by a distance between a lower edge of the liner and a port within the liner for communicating fluid to the piston, or controlled by a size of the second annular space, or both.

18. A pulling tool comprising:

a housing;

a tube disposed within the housing, the tube configured to supply hydraulic fluid;

a piston rod connected to a piston, the piston rod having a hollow axial bore, the piston and the piston rod being axially moveable relative to the tube;

a passage communicating fluid from the tube to the piston, the passage being contained within the housing, wherein the passage is variable between a first configuration in which hydraulic fluid flows at a first restricted flow so as to provide a slower retraction of the piston rod and a second configuration in which hydraulic fluid flows at a second less restricted flow so as to provide a faster retraction of the piston rod; and

a head portion and a bottom portion capping the housing, wherein the tube is connected to the head portion.

19. The pulling tool according to claim 18 , wherein the tube extends axially from the head portion through the hollow axial bore of the piston rod.

20. The pulling tool according to claim 18 , wherein the piston rod is moveable relative to the tube from a first position to a second position, wherein in the first position hydraulic fluid flows at the first restricted flow, and in the second position, hydraulic fluid flows at the second less restricted flow.

21. The pulling tool according to claim 18 , further comprising a check valve disposed at an end of the hydraulic tube.

22. The pulling tool according to claim 21 , wherein the check valve comprises a sleeve member and a biasing member disposed around a lower portion of the hydraulic tube, the biasing member configured to bias the sleeve member upwardly.

23. The pulling tool according to claim 18 , further comprising a liner disposed inside the hollow axial bore.

24. The pulling tool according to claim 23 , wherein the liner is in contact with an internal surface of the hollow axial bore.

25. The pulling tool according to claim 24 , wherein the liner has lateral ports aligned to allow hydraulic fluid to exit from the axial bore to actuate the piston.

26. The pulling tool according to claim 18 , wherein the piston rod has lateral ports to allow hydraulic fluid to exit from the axial bore to actuate the piston.

27. The pulling tool according to claim 18 , wherein the passage is defined at least partially by a space between an external surface of the tube an internal surface of the piston rod.

28. The pulling tool according to claim 27 , wherein relative movement between the tube and the piston rod varies the size of the space so as to change the passage from the first configuration to the second configuration.

29. The pulling tool according to claim 18 , further comprising:

a check valve disposed at an end of the tube, the check valve comprising a sleeve member; and

a liner disposed inside the hollow axial bore, wherein an internal dimension of the liner is greater than an external dimension of the sleeve member such that when the sleeve member is concentric with the liner, the sleeve member and the liner define a first annular space that is substantially equal to a difference between the internal dimension of the liner and the external dimension of the sleeve member to allow a first restricted flow of hydraulic fluid therethrough and effect a slower retraction of the piston rod.

30. The pulling tool according to claim 29 , wherein an external dimension of the tube is smaller than an internal dimension of the liner such that when the liner is pulled upward past and away from the sleeve member, the hollow tube and the sleeve member define a second annular space that is substantially equal to a difference between the internal dimension of the liner and the external dimension of the tube to allow a second less restricted flow of hydraulic fluid therethrough to effect a faster retraction of the piston rod.

31. The pulling tool according to claim 30 , wherein the pulling tool is configured to automatically change a speed of retraction of the piston rod after a certain predetermined amount of piston travel.

32. The pulling tool according to claim 31 , wherein the predetermined amount of piston travel is controlled by a distance between a lower edge of the liner and a port within the liner for communicating fluid to the piston, or controlled by a size of the second annular space, or both.

33. The pulling tool according to claim 28 , further comprising a jaw assembly connected to the piston rod, wherein the jaw assembly is configured to clamp a spike.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2025
From: STANLEY BLACK & DECKER, INC.
To: EPIROC INDUSTRIAL TOOLS AND ATTACHMENTS LLC (FORMERLY KNOWN AS STANLEY INFRASTRUCTURE, LLC)
Reel/Frame 070551/0187 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2012
From: CROVER, STEPHEN
To: STANLEY BLACK & DECKER, INC.
Reel/Frame 028473/0490 →
Continuity (1)
Related Publication 20130240806A1 · Sep 19, 2013