IP Library Granted Patent US 10,323,778
Granted Patent B2
US 10,323,778 · App. 15/189,770 · Granted Jun 18, 2019

Full flow pipe connector

Inventor: David Rusch (Springville, CA)
Assignee: NATIONAL DIVERSIFIED SALES, INC.
F16L23/00F16L37/248
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Quick Facts
Patent No.
US 10,323,778
App. No.
15/189,770
Granted
Jun 18, 2019
Kind
B2
Abstract

A pipe connector for use in conjunction with a catch basin, the pipe connector having an annular flange defining a central bore and a major pipe receptor in the form of a tube having a first diameter and being attached to the flange and a minor pipe receptor in the form of a tube has a second diameter smaller than the first diameter, and is attached to the major pipe receptor by a frangible bridge that is configured to cleanly break upon the application of an impact to the minor pipe receptor, whereby the minor pipe receptor is removable from the major pipe receptor.

Claims (19)

1. A pipe connector for use in conjunction with a catch basin, the pipe connector comprising:

an annular flange defining a central bore;

a major pipe receptor defining a tube having a first diameter and being attached to the flange, the major pipe receptor having a first foot and a second foot extending from the annular flange wherein the first foot and the second foot have a thickness greater than a thickness of the major pipe receptor;

a minor pipe receptor defining a tube having a second diameter smaller than the first diameter, the minor pipe receptor having a first foot and a second foot extending from the annular flange wherein the first foot and the second foot have a thickness greater than a thickness of the minor pipe receptor, the minor pipe receptor being attached to the major pipe receptor by a frangible bridge that is configured to cleanly break when an impact load is applied to the minor pipe receptor, whereby the minor pipe receptor is removable from the major pipe receptor.

2. The pipe connector of claim 1 , wherein the frangible bridge defines an annular ring extending continuously around a circumferential surface of the minor pipe receptor.

3. The pipe connector of claim 2 , wherein the annular ring defines a groove.

4. The pipe connector of claim 1 , wherein the frangible bridge has a minimum radial thickness which is between 0.02 inches and 0.04 inches.

5. The pipe connector of claim 4 , wherein the frangible bridge includes at least one buttress which has a radial thickness between 0.04 inches and 0.08 inches.

6. The pipe connector of claim 5 , wherein the at least one buttress has a circumferential dimension that is between 0.08 inches and 0.2 inches.

7. A method of attaching a pipe to a catch basin comprising:

providing a pipe connector defining a major pipe receptor in the form of a tube having a first diameter and further defining a minor pipe receptor in the form of a tube having a second diameter smaller than the first diameter;

increasing the bending moments of the major pipe receptor and the minor pipe receptor by increasing a thickness of a base on each of the major pipe receptor and the minor pipe receptor where the respective bases are attached to a frangible bridge;

removing the minor pipe receptor from the pipe connector;

installing the pipe connector on a wall of a catch basin; and

connecting a pipe onto the major pipe receptor.

8. The method of claim 7 , wherein removing the minor pipe receptor includes applying an impact to the minor pipe receptor.

9. The method of claim 7 , wherein removing the minor pipe receptor includes breaking the frangible bridge that connects the minor pipe receptor to the major pipe receptor.

10. The pipe connector of claim 1 , wherein the frangible bridge is formed from a polymer material.

11. The pipe connector of claim 1 , wherein the frangible bridge includes a V-shaped annual groove to facilitate fracturing around the circumference of the minor pipe receptor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2016
From: RUSCH, DAVID
To: NATIONAL DIVERSIFIED SALES, INC.
Reel/Frame 038988/0200 →
Continuity (1)
Related Publication 20170370506A1 · Dec 28, 2017
Cited By (3)
US 12,247,384 US 12,264,472 US 12,460,403