IP Library Granted Patent US 8,640,780
Granted Patent B2
US 8,640,780 · App. 13/736,101 · Granted Feb 4, 2014

Torque wrench system having multiple torque stations

Inventors: Dale Francis (Luling, LA); Nicholas Francis (Luling, LA); William P. Bernard (Luling, LA); Oswald J. Bernard (Luling, LA); Lan Hiscox (Houston, TX); Brian Compton (Cypress, TX); Arthur Jones (Houston, TX)
Assignee: Francis Services, Inc.
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Quick Facts
Patent No.
US 8,640,780
App. No.
13/736,101
Granted
Feb 4, 2014
Kind
B2
Abstract

An improved multi-bolt and nut torque wrench for installing and removing bolts or nuts from flanged joints or the like which includes a plurality of torque stations having a plurality of high torque wrenches for engaging the heads of the bolts or nuts during a high torque phase of removal or installation; a plurality of low-torque motors operatively engaged with the wrenches for rotating the bolts or nuts during the low torque phase of removal or installation; a source of hydraulic fluid for driving the low-torque motors during the low-torque phase, and driving the high-torque wrenches during the high torque phase; and a mechanism for switching between the two phases depending on the torque needed.

Claims (36)

1. A multi-bolt or nut torque wrench system for installing or removing a plurality of threaded bolt or nut members on a riser, the system comprising:

(a) a plurality of torque stations, each torque station including:

(i) a wrench body that includes first and second end portions, and a drive head on the first end portion of the body;

(ii) a torque wrench operatively connected to the drive head for rotating a threaded bolt or nut member at a rotational speed under a torque condition;

(iii) a horizontal positioning mechanism for moving the drive head in a generally horizontal direction;

(iv) a vertical positioning mechanism for moving the drive head in a generally vertical direction, wherein when the drive head is engaged with the threaded bolt or nut member, the vertical positioning mechanism can vertically position the drive head independent from operation of the torque wrench;

(b) a controller that controls the plurality of torque stations, including the torque wrenches, the horizontal positioning mechanism, and the vertical positioning mechanisms such that the plurality of drive heads simultaneously engage their respective bolt or nut members.

2. The wrench system of claim 1 , wherein six torque stations are radially spaced about a circle and the six stations simultaneously engage their respective bolt or nut members.

3. The wrench of claim 2 , wherein in step “b”, the controller automatically controls the torque stations, torque wrenches, and horizontal and vertical positioning mechanisms.

4. The wrench of claim 1 , wherein each torque station includes an extendable and retractable bolt lifting fork, wherein in the extended condition each bolt lifting fork can vertically move a bolt to which its respective drive head is attached in the event the bolt enters a freely spinning condition.

5. A method of breaking out a riser string, comprising the following steps:

(a) providing a plurality of torque stations, each torque station including:

(i) a wrench body that includes first and second end portions, and a drive head on the first end portion of the body;

(ii) a torque wrench operatively connected to the drive head for rotating a threaded bolt member at a rotational speed;

(iii) a horizontal positioning mechanism for moving the drive head in a generally horizontal direction; and

(iv) a vertical positioning mechanism for moving the drive head in a generally vertical direction, wherein when the drive head is engaged with the threaded bolt or nut member, the vertical positioning mechanism can vertically position the drive head independent from operation of the torque wrench;

(b) providing a controller that controls the plurality of torque stations, including the torque wrenches, the horizontal positioning mechanisms, and the vertical positioning mechanisms;

(c) supporting a riser string on a drilling rig or platform, the riser string including a plurality of joints of riser sections, wherein the riser joint sections are threadably connected together with a plurality of riser threaded bolt members;

(d) the controller causing the plurality of drive heads to each engage one of the plurality of riser threaded bolt members on one of the plurality of riser joint sections;

(e) the controller causing each of the drive heads to break out their respectively engaged riser threaded bolt member;

(f) causing the plurality of drive heads to spin up their respectively engaged riser threaded bolt members, wherein, during the spin up process, the respective torque wrenches turning their respective drive heads;

(g) the controller causing the plurality of drive heads to disengage the plurality of riser threaded bolt members, and providing clearance for another one of the plurality ofriser joint sections to be broken out of the riser string;

(h) removing and retrieving the riser joint section of the riser string; and

(i) raising the riser string a distance so that another one of the plurality of riser joint sections can be broken out, removed, and retrieved.

6. The method of claim 5 , wherein in steps “a” through “i” are repeated until the entire riser string is removed and retrieved.

7. The method of claim 5 , wherein step “f” is performed only after step “e” is completed for each of the plurality of riser threaded bolt members of a particular riser section.

8. The method of claim 5 , wherein in step “a”, six torque stations are provided which are radially spaced apart in about 60 degree increments about a circle.

9. The method of claim 5 , wherein in step “d” each of the plurality of riser threaded bolt members are simultaneously engaged.

10. The method of claim 5 , wherein each torque station includes a reaction member, and each vertical positioning mechanism causes its respective drive head to move in a generally vertical direction relative to its respective reaction member.

11. A multi-bolt or nut torque wrench system for installing or removing a plurality of threaded bolt or nut members on a riser, the system comprising:

(a) a plurality of torque stations, each torque station including:

(i) a wrench body that includes first and second end portions, and a drive head on the first end portion of the body;

(ii) a torque wrench operatively connected to the drive head for rotating a threaded bolt member at a rotational speed under a torque condition, the threaded bolt member including a hexagonal head;

(iii) a horizontal positioning mechanism for moving the drive head in a generally horizontal direction;

(iv) a vertical positioning mechanism for moving the drive head in a generally vertical direction, wherein when the drive head engages the threaded bolt member, the drive head encases the head of the threaded bolt member from a vertical direction generally above the head of the threaded bolt member;

(b) a controller that controls the plurality of torque stations, including the torque wrenches, the horizontal positioning mechanism, and the vertical positioning mechanisms such that the plurality of drive heads simultaneously engage their respective bolt or nut members.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2020
From: FRANCIS, DALE; FRANCIS, NICHOLAS; BERNARD, WILLIAM P.; BERNARD, OSWALD J.; COMPTON, BRIAN; HISCOX, LAN; JONES, ARTHUR
To: FRANCIS TORQUE SERVICES, LLC
Reel/Frame 053028/0474 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2020
From: FRANCIS SERVICES, INC.
To: FRANCIS, DALE
Reel/Frame 053028/0532 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2020
From: FRANCIS, DALE
To: FRANCIS SERVICES, INC.
Reel/Frame 053028/0654 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2020
From: FRANCIS TORQUE SERVICE, LLC
To: FRANCIS, DALE
Reel/Frame 053028/0772 →
CONVERSION OF ENTITY AND CHANGE OF NAME Recorded Jun 24, 2020
From: FRANCIS SERVICES, INC.
To: FRANCIS TORQUE SERVICES, LLC
Reel/Frame 053033/0313 →
Continuity (5)
Continuation 13448536 · Apr 17, 2012
Continuation 13235928 · Sep 19, 2011
Continuation 12434861 · May 4, 2009
Provisional Application 61050067 · May 2, 2008
Related Publication 20130186642A1 · Jul 25, 2013