IP Library Granted Patent US 11,986,951
Granted Patent B2
US 11,986,951 · App. 18/063,551 · Granted May 21, 2024

Systems and methods for pre-plating structural members

Inventors: Michael Patrick Baker (Meridian, ID); Cole Jay Logemann (Nampa, ID); Anthony Edward Lancaster (Caldwell, ID); Chris Scot Annin (Emmett, ID); Anthony Wayne Foster (Middleton, ID); Jeffrey Michael Hill (Meridian, ID); Shane Christopher Dittrich (Nampa, ID); Kristopher Ryan Okelberry (Nampa, ID)
Assignee: House of Design LLC
B25J15/0616B25J9/1697B25J15/0052B27F7/155B65G47/91B65G61/00G05B2219/40006G05B2219/40053
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Quick Facts
Patent No.
US 11,986,951
App. No.
18/063,551
Granted
May 21, 2024
Kind
B2
Abstract

Pre-plating systems and related methods are disclosed. A pre-plating system includes a press, an infeed robot configured to deliver a structural member to the press, and an outfeed robot configured to remove the structural member from the press. The press is configured to secure a plate to the structural member while the structural member is held in position by at least one of the infeed robot or the outfeed robot. A pre-plating system includes a press, a transfer pedestal, a plate picking robot, and a press loading robot. The plate picking robot is configured to pick a plate from a container and position the plate on the transfer pedestal. The press loading robot is configured to transfer the plate to the press. The press is configured to press the plate into a structural member positioned within the press.

Claims (39)

1. A pre-plating system, comprising:

a transfer pedestal;

a plate picking robot configured to place a plate on the transfer pedestal;

a press to secure the plate to a structural member, wherein the structural member is positioned within the press based on a centroid of the structural member, and wherein the centroid is determined based on a major plane of the structural member; and

a press loading robot configured to transfer the plate from the transfer pedestal to the press to facilitate securing of the plate to the structural member, the press loading robot comprising a gripping mechanism configured to grip the plate.

2. The pre-plating system of claim 1 , wherein the gripping mechanism comprises a set of gripper fingers configured to grip teeth of the plate.

3. The pre-plating system of claim 2 , wherein the set of gripper fingers have a pattern that matches a pattern of the teeth of the plate.

4. The pre-plating system of claim 2 , wherein the set of gripper fingers comprises at least one of oscillating gripper fingers, constant depth gripper fingers, flat gripper fingers, or flat notch gripper fingers.

5. The pre-plating system of claim 1 , wherein the press is an electrically controllable press.

6. The pre-plating system of claim 1 , wherein the centroid is determined based on a known geometry of the structural member.

7. The pre-plating system of claim 6 , wherein the centroid is further determined based on at least one of an edge or a corner of the structural member.

8. The pre-plating system of claim 1 , wherein the centroid is determined based on a center of mass of the structural member.

9. The pre-plating system of claim 1 , further comprising:

an infeed robot configured to position the structural member within the press; and

an outfeed robot configured to remove the structural member from the press.

10. The pre-plating system of claim 9 , further comprising:

an infeed delivery system configured to deliver the structural member to the infeed robot; and

an outfeed delivery system configured to deliver the structural member having the plate secured thereto from the outfeed robot.

11. The pre-plating system of claim 1 , wherein the press comprises a press surface, and wherein the plate is transferred from the transfer pedestal to the press surface.

12. A pre-plating system, comprising:

a transfer pedestal;

a plate picking robot configured to place a plate on the transfer pedestal, the plate picking robot comprising a gripping mechanism configured to grip the plate;

a press to secure the plate to a structural member, wherein the structural member is positioned within the press based on a centroid of the structural member, and wherein the centroid is determined based on a major plane of the structural member; and

a press loading robot configured to transfer the plate from the transfer pedestal to the press to facilitate securing of the plate to the structural member.

13. The pre-plating system of claim 12 , wherein the gripping mechanism comprises a set of gripper fingers configured to grip teeth of the plate.

14. The pre-plating system of claim 13 , wherein the set of gripper fingers have a pattern that matches a pattern of the teeth of the plate.

15. The pre-plating system of claim 13 , wherein the set of gripper fingers comprises at least one of oscillating gripper fingers, constant depth gripper fingers, flat gripper fingers, or flat notch gripper fingers.

16. The pre-plating system of claim 12 , wherein the centroid is determined based on one of (1) a known geometry of the structural member and at least one of an edge or a corner of the structural member; or (2) a center of mass of the structural member.

17. The pre-plating system of claim 12 , further comprising:

an infeed robot configured to position the structural member within the press;

an outfeed robot configured to remove the structural member from the press. an infeed delivery system configured to deliver the structural member to the infeed robot; and

an outfeed delivery system configured to deliver the structural member having the plate secured thereto from the outfeed robot.

18. A pre-plating system comprising:

a transfer pedestal;

a plate picking robot configured to place a plate on the transfer pedestal, the plate picking robot comprising a first gripping mechanism configured to grip the plate;

a press to secure the plate to a structural member, wherein the structural member is positioned within the press based on a centroid of the structural member, and wherein the centroid is determined based on a major plane of the structural member; and

a press loading robot configured to transfer the plate from the transfer pedestal to the press to facilitate securing of the plate to the structural member, the press loading robot comprising a second gripping mechanism configured to grip the plate.

19. The pre-plating system of claim 18 , wherein each of the first gripping mechanism and the second gripping mechanism comprises interchangeable set of gripper fingers configured to grip teeth of the plate, each of the interchangeable set of gripper fingers having a pattern that matches a pattern of the teeth of the plate.

20. The pre-plating system of claim 19 , wherein the interchangeable set of gripper fingers comprises at least one of oscillating gripper fingers, constant depth gripper fingers, flat gripper fingers, or flat notch gripper fingers.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2025
From: HOUSE OF DESIGN LLC
To: BUILDERS FIRSTSOURCE, INC.
Reel/Frame 072696/0134 →
SECURITY INTEREST Recorded Jun 16, 2023
From: HOUSE OF DESIGN LLC
To: BUILDERS FIRSTSOURCE, INC.
Reel/Frame 063976/0354 →
CORRECTIVE ASSIGNMENT TO CORRECT THE FOURTH INVENTOR'S NAME PREVIOUSLY RECORDED AT REEL: 062033 FRAME: 0013. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Jan 11, 2023
From: BAKER, MICHAEL PATRICK; LOGEMANN, COLE JAY; LANCASTER, ANTHONY EDWARD; ANNIN, CHRIS SCOT; FOSTER, ANTHONY WAYNE; HILL, JEFFRE MICHAEL; DITTRICH, SHANE CHRISTOPHER; OKELBERRY, KRISTOPHER RYAN
To: HOUSE OF DESIGN LLC
Reel/Frame 062356/0452 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2022
From: BAKER, MICHAEL PATRICK; LOGEMANN, COLE JAY; LANCASTER, ANTHONY EDWARD; ANNIN, CHRIS SCOTT; FOSTER, ANTHONY WAYNE; HILL, JEFFREY MICHAEL; DITTRICH, SHANE CHRISTOPHER; OKELBERRY, KRISTOPHER RYAN
To: HOUSE OF DESIGN LLC
Reel/Frame 062033/0013 →
Continuity (3)
Continuation 16590044 · Oct 1, 2019
Provisional Application 62855179 · May 31, 2019
Related Publication 20230173690A1 · Jun 8, 2023
Cited By (1)
US 12,709,022