IP Library Granted Patent US 11,453,150
Granted Patent B2
US 11,453,150 · App. 17/294,773 · Granted Sep 27, 2022

Method for manufacturing resin pipe

Inventor: Nobuaki Kuribayashi (Hiratsuka, JP)
Assignee: The Yokohama Rubber Co., Ltd.
B29C45/1459B29C45/37B29K2705/00B29L2023/22
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Quick Facts
Patent No.
US 11,453,150
App. No.
17/294,773
Granted
Sep 27, 2022
Kind
B2
Abstract

A holding portion having a diameter larger than that of a cavity is formed in communication with the cavity, in an area of a two-part type mold, the area including a portion corresponding to an annular groove. Subsequently, an insert member formed in a cylindrical shape and provided with, on an outer circumferential surface, the annular groove having no step in a groove surface is fitted to the holding portion, and then the mold is closed. On an inner circumferential surface of the insert member, a surface treatment layer having a surface roughness rougher than those of other portions of the insert member is formed. Molten resin is injected into the cavity; thereafter, an assist material is injected into the cavity to mold the resin into a desired pipe body. Then, the insert member and the pipe body are integrated along with curing of the resin.

Claims (27)

1. A method of manufacturing a resin pipe, the resin pipe being manufactured by injecting resin that is molten into a cavity formed in a mold of a two-part type, and by subsequently injecting an assist material into the cavity and curing the resin that is injected, the method comprising steps of:

machining an annular groove in an external surface of a hollow cylindrical insert member, the annular groove having no step in a groove surface thereof,

placing the machined insert member into a holding portion in an area of the mold cavity, the area comprising a portion corresponding to the annular groove, wherein the holding portion has a diameter larger than that of other parts of the cavity and is in communication with the other parts of the cavity;

closing the mold; and

injecting the resin that is molten into the cavity and into an interior portion of the insert member to form a pipe body and to integrate the resin that is cured and the insert member, wherein a portion of the pipe body is disposed inside of the insert member, and wherein the insert member is joined to the pipe body and becomes an integral part of the resin pipe.

2. The method of manufacturing a resin pipe according to claim 1 , wherein on an inner circumferential surface of the insert member, a surface treatment layer is formed, the surface treatment layer having a surface roughness rougher than those of other portions of the insert member.

3. The method of manufacturing a resin pipe according to claim 1 , wherein the insert member is made of resin.

4. The method of manufacturing a resin pipe according to claim 3 , wherein the insert member is formed of an identical type of resin to the resin injected into the cavity.

5. The method of manufacturing a resin pipe according to claim 1 , wherein the insert member is made of metal.

6. The method of manufacturing a resin pipe according to claim 2 , wherein the insert member is made of resin.

7. The method of manufacturing a resin pipe according to claim 6 , wherein the insert member is formed of an identical type of resin to the resin injected into the cavity.

8. The method of manufacturing a resin pipe according to claim 2 , wherein the insert member is made of metal.

9. A resin pipe which is a product of the method of claim 1 .

10. The method of manufacturing a resin pipe according to claim 1 , wherein the pipe body is formed with two open end portions.

11. A method of manufacturing a composite pipe, the method comprising steps of:

forming a hollow cylindrical insert member having an inner surface;

machining an outer surface of the insert member to form an annular groove therein, in a manner such that no step is formed in the annular groove;

optionally, polishing the outer surface of the insert member;

providing a split mold having a mold cavity formed therein, the mold cavity including a first cavity section having a first diameter, and an insert-receiving section configured to receive the insert therein, wherein the insert-receiving section is in communication with the first cavity section, and has a diameter larger than that the first diameter;

placing the insert member into the insert-receiving section of the mold,

closing the mold; and

injecting a molten resin into the cavity and into the inner surface of the insert member to form an uncured pipe body;

injecting an assist material into the cavity; and

curing the resin, thereby integrating the pipe body and the insert member, wherein a portion of the pipe body is disposed inside of the insert member, and wherein the insert member is joined to the pipe body and becomes an integral part of the composite pipe.

12. The method of manufacturing a composite pipe according to claim 11 , wherein the pipe body is formed with two open end portions.

13. The method of manufacturing a composite pipe according to claim 11 , wherein the insert is made of metal.

14. A composite pipe which is a product of the method of claim 11 .

Assignments (2)
CHANGE OF ADDRESS FOR ASSIGNEE Recorded Nov 18, 2023
From: THE YOKOHAMA RUBBER CO., LTD.
To: THE YOKOHAMA RUBBER CO., LTD.
Reel/Frame 065626/0740 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2021
From: KURIBAYASHI, NOBUAKI
To: THE YOKOHAMA RUBBER CO., LTD.
Reel/Frame 056273/0003 →