IP Library Granted Patent US 10,406,613
Granted Patent B2
US 10,406,613 · App. 13/860,727 · Granted Sep 10, 2019

Lumber edger and method of edge cutting lumber

Inventors: Bill Wilkins (Hood River, OR); Chris Raybon (Hot Springs, AR); Russell R. Kennedy (Hot Springs, AR); Pat Conry (Hot Springs, AR)
Assignee: BAXLEY EQUIPMENT CO.
B23D47/04B27B5/04B27B5/228B27B31/06Y10T29/49716
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Quick Facts
Patent No.
US 10,406,613
App. No.
13/860,727
Granted
Sep 10, 2019
Kind
B2
Abstract

Provided is an improved lumber edger having a cross cut saw to cross cut lumber into two or more separate pieces to increase the available amount or value of boards, and a method of using the improved lumber edger.

Claims (33)

1. A method of edge cutting a flitch comprising:

conveying a flitch on a conveyor;

scanning dimensions of the flitch using a scanner and sending the dimensions to a computer system;

using the computer system and the dimensions to determine at least one theoretical cross-cut position on the flitch and theoretical edge cut positions on the flitch, wherein the theoretical edge cut positions are calculated for each piece of the flitch separated by the theoretical edge cut position;

cross cutting the flitch at the at least one theoretical cross-cut position using at least one cross-cut saw downstream of the scanner to provide at least two pieces of flitch comprising a first piece of filtch and a second piece of filtch;

using a positioning system connected to the computer system to independently translate and skew each of the pieces of flitch in relation to an edger so that the edge saws cut each of the pieces of flitch at the theoretical edge cut positions, wherein the computer system directs the positioning system and the positioning system is constructed to independently translate and skew each of the pieces of flitch; and

cutting the pieces of flitch using the edger saws at the theoretical edge cut positions to provide boards comprising a first board formed from the first piece of flitch and a second board formed from the second flitch, the first board having a first width and the second board having a second width, the first width being different from the second width.

2. The method according to claim 1 , wherein the computer determines the theoretical cross-cut position and theoretical edge cut positions to provide the largest size of boards that can be cut from the flitch, taking into account that the flitch can be cross cut into smaller pieces of flitch.

3. The method according to claim 1 , further comprising using the positioning system to simultaneously and independently translate and skew the pieces of flitch in relation to edger saws so that the edge saws cut the pieces of flitch at the theoretical edge cut positions.

4. A method of improving a flitch edger comprising:

a conveyor for conveying a flitch;

a scanner for scanning dimensions of the flitch;

a computer in communication with the scanner;

edger saws constructed to edge the flitch; and

a positioning system constructed to independently translate and skew each of pieces of cross-cut flitch in relation to the edger saws, the method comprising:

adding a cross cut saw constructed to cross cut the flitch downstream of the scanner; and

modifying the computer system to calculate at least one theoretical cross cut position of the flitch and calculate theoretical edge positions for each piece of flitch separated by the theoretical cross cut position so that at least two boards comprising a first board and a second can be produced from the flitch, wherein the first board has a different width from the second board.

5. In a method of edging flitch comprising:

conveying the flitch on a conveyor;

scanning dimensions of the flitch by a scanner and sending the dimensions to a computer system;

determining edge cut positions on the flitch by the computer system;

laterally positioning and skewing the flitch by a skew structure to position the flitch in relation to edger saws; and

edge cutting the flitch at the edge cut positions by the edger saws to form a board, wherein the improvement comprises:

determining by the computer system a cross-cut position on the flitch;

determining by the computer system first edge cut positions for a first piece of the flitch separated from a second piece of flitch by the cross cut position;

determining by the computer system second edge cut positions for the second piece of flitch;

cross cutting the flitch at the cross-cut position by a cross-cut saw to provide a first cross cut piece of flitch and a second cross cut piece of flitch;

laterally positioning and skewing the first cross cut piece of flitch by the skew structure to position the first cross cut piece of flitch in relation to the edger saws;

edge cutting the first cross cut piece of flitch at the first edge cut positions by the edger saws to provide a first board having a first width;

laterally positioning and skewing the second cross cut piece of flitch by the skew structure to position the second cross cut piece of flitch in relation to the edger saws; and

edge cutting the second cross cut piece of flitch at the second edge cut positions by the edger saws to provide a second board having a second width, wherein the first width is different from the second width.

6. The method according to claim 5 , further comprising determining by the computer system a largest size of board that can be cut from the flitch, taking into account that the flitch can be cross cut into smaller pieces of flitch.

7. The method according to claim 5 , further comprising determining by the computer at least one additional cross cut position on the flitch, determining by the computer system edge cut positions for each additional piece of flitch separated by the at least one additional cross cut position, cross cutting the flitch by the cross cut saw at the at least one additional cross cut position to provide at least one additional cross cut piece of flitch, and edge cutting the at least one additional cross cut piece of flitch by the edger saws at the edge cut positions determined by the computer system.

Assignments (6)
SECURITY AGREEMENT Recorded Nov 30, 2022
From: TIMBER AUTOMATION, LLC
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 062024/0945 →
CHANGE OF NAME Recorded Nov 22, 2022
From: BAXLEY EQUIPMENT COMPANY
To: BAXLEY EQUIPMENT COMPANY, LLC
Reel/Frame 061987/0248 →
CONFIRMATORY ASSIGNMENT Recorded Sep 29, 2022
From: BAXLEY EQUIPMENT COMPANY, LLC
To: TIMBER AUTOMATION, LLC
Reel/Frame 061570/0878 →
RELEASE OF SECURITY INTEREST Recorded Jul 12, 2022
From: COMERICA BANK
To: TIMBER AUTOMATION, LLC; BAXLEY-LOGPRO INTERNATIONAL, INC.; PRICE LOGPRO, LLC; BAXLEY EQUIPMENT COMPANY, LLC
Reel/Frame 060481/0723 →
SECURITY INTEREST Recorded Sep 2, 2015
From: TIMBER AUTOMATION, LLC; BAXLEY-LOGPRO INTERNATIONAL, INC.; PRICE LOGPRO, LLC; BAXLEY EQUIPMENT COMPANY, LLC
To: COMERICA BANK
Reel/Frame 036481/0523 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2013
From: WILKINS, BILL; RAYBON, CHRIS; KENNEDY, RUSSELL R; CONRY, PAT
To: BAXLEY EQUIPMENT CO.
Reel/Frame 030207/0245 →
Continuity (2)
Provisional Application 61624151 · Apr 13, 2012
Related Publication 20130269836A1 · Oct 17, 2013
Cited By (4)
US 12,350,747 US 12,427,591 US 12,454,019 US 12,599,979