IP Library Granted Patent US 9,638,361
Granted Patent B2
US 9,638,361 · App. 14/836,410 · Granted May 2, 2017

Refrigeration line set fitting and method of using the same to join refrigeration lines to each other

Inventors: Bradley Arment (Shelbyville, MO); Michael Joseph Duggan (St. Louis, MO); Forrest Nixon (Columbia, IL); Michael J. Wilson (Eureka, MO)
Assignee: RLS LLC
F16L13/142B21D39/046F16L17/02F16L21/03Y10T29/49Y10T29/49906Y10T29/49927
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Quick Facts
Patent No.
US 9,638,361
App. No.
14/836,410
Granted
May 2, 2017
Kind
B2
Abstract

A crimp fitting comprises a metal tube wall that forms both a cylindrical tube portion and an adjacent annular O-ring channel portion. The tube wall has a first wall thickness along the cylindrical tube portion and a second wall thickness along at least part of the O-ring channel portion. The second wall thickness is less than the first wall thickness. The cylindrical tube portion and O-ring channel are configured and adapted to encircle a cylindrical end portion of a tube when such end portion of the tube is inserted into the fitting.

Claims (12)

1. A crimp fitting comprising a metal tube wall that forms both a cylindrical tube portion and an adjacent annular O-ring channel portion, the tube wall having a first wall thickness along the cylindrical tube portion and a second wall thickness along at least part of the O-ring channel portion, the second wall thickness being less than the first wall thickness, the cylindrical tube portion and O-ring channel being configured and adapted to encircle a cylindrical end portion of a tube when such end portion of the tube is inserted into the fitting, the tube wall also forming an annular positioning protrusion, the cylindrical tube portion being between the O-ring channel portion and the annular positioning protrusion, the annular positioning protrusion having an exterior surface that protrudes radially outward relative to the cylindrical tube portion, the exterior of the tube wall protruding radially outward at the O-ring channel portion relative to the adiacent cylindrical tube portion, the annular positioning protrusion and the O-ring channel portion of the tube wall forming an exterior locating cradle therebetween that is configured to constrain a crimping tool at the cylindrical tube portion of the fitting.

2. The crimp fitting of claim 1 wherein the tube wall comprises copper.

3. The crimp fitting of claim 2 wherein the tube wall is annealed to a grain size in the range of 0.005 to 0.070 millimeters.

4. The crimp fitting of claim 3 wherein the tube wall is annealed to a grain size in the range of 0.015 to 0.035 millimeters.

5. The crimp fitting of claim 1 wherein the second wall thickness is less than 82% of the first wall thickness.

6. The crimp fitting of claim 1 further comprising an elastic O-ring that is engaged with and encircled by the O-ring channel portion of the tube wall.

7. The crimp fitting of claim 1 further comprising a molded gasket formed in the O-ring channel portion of the tube wall.

8. The crimp fitting of claim 1 wherein the tube wall further forms an insertion stop that protrudes radially inward relative to the cylindrical tube portion, and the O-ring channel portion of the tube wall is spaced from the insertion stop and is between the insertion stop and the cylindrical tube portion.

9. The crimp fitting of claim 1 wherein the tube wall is formed out of copper and is annealed to a grain size in the range of 0.005 to 0.070 millimeters, the second wall thickness is less than 82% of the first wall thickness, the tube wall further forms an insertion stop that protrudes radially inward relative to the cylindrical tube portion, and the O-ring channel portion of the tube wall is spaced from the insertion stop and is between the insertion stop and the cylindrical tube portion.

10. The crimp fitting of claim 1 wherein the cylindrical tube portion, the annular protrusion, and the O-ring channel portion are formed on a first axial half of the fitting and the fitting comprises a second axial half formed by the tube wall that is a mirror image of the first axial half.

11. The crimp fitting of claim 10 wherein the tube wall further forms an insertion stop that protrudes radially inward relative to the cylindrical tube portion and that is positioned centrally between the first and second axial halves of the fitting.

12. The crimp fitting of claim 1 wherein the tube wall comprises copper and has a corrosion resistant coating.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2016
From: CERRO FLOW PRODUCTS LLC
To: RLS LLC
Reel/Frame 037744/0342 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2015
From: ARMENT, BRADLEY; DUGGAN, MICHAEL JOSEPH; NIXON, FORREST; WILSON, MICHAEL J.
To: CERRO FLOW PRODUCTS LLC
Reel/Frame 036428/0809 →
Continuity (4)
Continuation 13714002 · Dec 13, 2012
Provisional Application 61609039 · Mar 9, 2012
Provisional Application 61580993 · Dec 28, 2011
Related Publication 20150362098A1 · Dec 17, 2015