IP Library Granted Patent US 11,415,257
Granted Patent B2
US 11,415,257 · App. 16/210,767 · Granted Aug 16, 2022

Apparatus and method for joining molecularly oriented pipe

Inventors: Bradford G. Corbett, Jr. (Fort Worth, TX); Guido Quesada (San Ana, CR); Keith Steinbruck (Eugene, OR)
Assignee: S & B Technical Products, Inc.
F16L47/22B29C65/48B29C66/73711B29C66/8264F16L47/02F16L47/12B29C65/02B29C65/483B29C65/5057B29C65/665B29C65/72B29C66/02245B29C66/1122B29C66/301B29C66/5221B29C66/612B29L2023/22B29L2031/24
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Quick Facts
Patent No.
US 11,415,257
App. No.
16/210,767
Granted
Aug 16, 2022
Kind
B2
Abstract

A pipe joining system and pipe joint are shown m which two sections of molecularly oriented pipe are joined using heat shrinking techniques. A first section of pipe is provided having a straight, pre-formed socket with an internal diameter and with an end opening having enough clearance to allow a mating spigot section having a given external diameter to be inserted into the socket end opening. After the spigot end is inserted to a given depth, the socket is heated sufficiently so that the internal diameter of the socket end comes into contact with the external diameter of the spigot end, the molecularly oriented pipe being in a rubbery state and exhibiting a low elastic modulus which allows the socket end to conform tightly to the spigot end external diameter without deforming the spigot end.

Claims (7)

1. A method for joining a first longitudinal section of non-corrugated molecularly oriented pipe to a second longitudinal section of non-corrugated molecularly oriented pipe to form a restrained joint between the first and second sections of molecularly oriented pipe, each of the longitudinal sections of molecularly oriented pipe being used in a municipal water or sewer line and having at least one plain, spigot end having a given external diameter and a mating socket end having a given internal diameter which presents an end opening having enough clearance to allow the plain spigot end of the first longitudinal section of molecularly oriented pipe to be inserted into the end opening of the mating socket end of the second longitudinal section of molecularly oriented pipe, the method comprising the steps of:

inserting the plain spigot end of the first section of molecularly oriented pipe into the end opening of the mating socket end of the second longitudinal section of molecularly oriented pipe to a preselected depth;

heating the mating socket end of the second longitudinal section of molecularly oriented pipe to about 80° C. so that the internal diameter of the mating socket end of the second longitudinal section of molecularly oriented pipe comes into contact with the external diameter of the plain spigot end of the first longitudinal section of molecularly oriented pipe, the second longitudinal section of molecularly oriented pipe being in a rubbery state after heating which allows the mating socket end of the second longitudinal section of molecularly oriented pipe to conform tightly to the external diameter of the plain spigot end of the first longitudinal section of molecularly oriented pipe without deforming the plain spigot end of the first longitudinal section of molecularly oriented pipe; and

cooling the mating socket end of the second longitudinal section of molecularly oriented pipe to about 55° C., whereby the mating socket end of the second longitudinal section of molecularly oriented pipe undergoes thermal contraction to produce about an 0.5% interference fit with the plain spigot end of the first longitudinal section of molecularly oriented pipe, the interference fit resulting from the thermal contraction serving as the main source of restraint for the restrained joint.

2. The method of claim 1 , wherein the restrained joint between the plain spigot end of the first longitudinal section of molecularly oriented pipe and mating socket end of the second longitudinal section of molecularly oriented pipe resulting from the thermal contraction and interference fit is enhanced by increasing the coefficient of friction of the plain spigot end of the first longitudinal section of molecularly oriented pipe prior to assembly of the restrained joint.

3. The method of claim 2 , wherein the coefficient of friction of the plain spigot end of the first longitudinal section of molecularly oriented pipe is increased by a technique selected from the group consisting of forming bumps in the external diameter of the plain spigot end of the first longitudinal section of molecularly oriented pipe and machining ridges, providing knurled surfaces and providing sanded surfaces on the plain spigot end of the first longitudinal section of molecularly oriented pipe.

4. The method of claim 1 , wherein the method for joining a first longitudinal section of molecularly oriented pipe to a second longitudinal section of molecularly oriented pipe includes a heat shrinking technology selected from the group consisting of an open flame, an oven, a pressure chamber over a selected area of the pipe joint being formed and a plug run inside a selected area of the joint being formed.

Assignments (2)
SECURITY INTEREST Recorded Mar 31, 2023
From: S & B TECHNICAL PRODUCTS, INC.
To: TWIN BROOK CAPITAL PARTNERS, LLC, AS AGENT
Reel/Frame 063183/0684 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2018
From: CORBETT, BRADFORD G., JR; QUESADA, GUIDO; STEINBRUCK, KEITH
To: S & B TECHNICAL PRODUCTS, INC.
Reel/Frame 047814/0862 →
Continuity (2)
Provisional Application 62609479 · Dec 22, 2017
Related Publication 20190195409A1 · Jun 27, 2019