IP Library Granted Patent US 12663108
Granted Patent B2
US 12663108 · App. 18/094,413 · Granted Jun 23, 2026

Flexible pipe end portion connection structure

Inventors: Dejian Bao (Yantai, CN); Guoling Ju (Yantai, CN); Shulin Zhang (Yantai, CN); Yilong Zhu (Yantai, CN)
Assignee: YANTAI JEREH PETROLEUM EQUIPMENT & TECHNOLOGIES CO., LTD.
F16L33/01F16L23/024F16L33/34
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Quick Facts
Patent No.
US 12663108
App. No.
18/094,413
Filed
Jan 9, 2023
Granted
Jun 23, 2026
Kind
B2
Art Unit
3679
USPC
138/109
Abstract

A flexible pipe end portion connection structure is provided. The flexible pipe end portion connection structure includes a flexible pipe body and a joint. The joint includes a first end and a second end opposite to each other and has a channel extending through the joint in a direction from the first end to the second end. An inner sidewall of the first end of the joint has a plurality of first stepped structures, and an inner diameter of a portion of the channel corresponding to the first stepped structure gradually decreases in the direction from the first end to the second end. At least a part of an end of the flexible pipe body is inserted into the first end of the joint to fit with the first stepped structure.

Claims (31)

1 . A flexible pipe end portion connection structure, comprising a flexible pipe body and a joint,

the joint comprises a first end and a second end opposite to each other, and has a channel extending through the joint in a direction from the first end to the second end, and an inner sidewall of the first end of the joint has a plurality of first stepped structures, an inner diameter of a portion of the channel corresponding to the first stepped structure gradually decreases in the direction from the first end to the second end, and

at least a part of an end of the flexible pipe body is inserted into the first end of the joint to fit with the first stepped structure,

wherein a surface of a portion of the flexible pipe body inserted into the joint has a plurality of second stepped structures, and the plurality of first stepped structures are matched with the second stepped structures so that the portion of the flexible pipe body inserted into the joint fits with the first stepped structure and an inner sidewall of each of the plurality of first stepped structures is in direct contact with a step surface of a corresponding one of the second stepped structures, and

the inner sidewall of the joint with a plurality of first stepped structures is provided with a plurality of zigzag structures, and the plurality of zigzag structures directly contact with the surface of the portion of the flexible pipe body inserted into the joint.

2 . The flexible pipe end portion connection structure according to claim 1 , wherein the joint is a rigid member.

3 . The flexible pipe end portion connection structure according to claim 1 , wherein the channel of the joint comprises a first portion corresponding to the plurality of first stepped structures and a second portion other than the first portion, an inner diameter of the second portion is substantially the same as an inner diameter of the flexible pipe body, and a channel of the flexible pipe body is smoothly connected with the second portion of the channel of the joint.

4 . The flexible pipe end portion connection structure according to claim 3 , wherein a ratio of a length of the second portion in the direction from the first end to the second end to the inner diameter of the flexible pipe body is 5:1 to 1.5:1.

5 . The flexible pipe end portion connection structure according to claim 1 , wherein the flexible pipe body comprises a plurality of layers stacked in sequence from an outer sidewall of the flexible pipe body to an inner sidewall of the flexible pipe body, and the portion of the flexible pipe body inserted into the joint comprises at least two layers close to the inner sidewall of the flexible pipe body, and ends of the at least two layers are staggered from each other to form the plurality of second stepped structures.

6 . The flexible pipe end portion connection structure according to claim 5 , wherein at least one layer of the end portion of the flexible pipe body adjacent to the outer sidewall of the flexible pipe body is located on the outer sidewall of the joint.

7 . The flexible pipe end portion connection structure of claim 5 , wherein each of the plurality of layers stacked in sequence has a substantially uniform thickness.

8 . The flexible pipe end portion connection structure according to claim 1 , wherein a portion of the joint corresponding to the plurality of first stepped structures has a through hole connecting an outer sidewall and an inner sidewall of the joint.

9 . The flexible pipe end portion connection structure according to claim 8 , wherein each step of the plurality of first stepped structures has at least one through hole, and each through hole is filled with adhesive.

10 . The flexible pipe end portion connection structure according to claim 1 , wherein, in a sectional view taken in the direction from the first end to the second end, at least one of the plurality of zigzag structures comprises a long side and a short side, an angle between the long side and the direction from the first end to the second end is 15° to 30°, and an angle between the short side and the direction is 60° to 90°.

11 . The flexible pipe end portion connection structure according to claim 1 , wherein the second end of the joint is configured to be connected with an external component using at least one of connection manners of union, flange, clamp, and thread.

12 . The flexible pipe end portion connection structure according to claim 11 , wherein the second end of the joint comprises a first flange arranged in a circumferential direction of the joint, and the first flange is configured to connect with the external component.

13 . The flexible pipe end portion connection structure according to claim 12 , further comprising a flange structure, wherein one end of the flange structure is provided with a second flange arranged in a circumferential direction of the flange structure, an end surface of the first flange and an end surface of the second flange are opposite to each other, and the first flange and the second flange are clamped by a clamp at an outer side surface of the first flange and an outer side surface of the second flange.

14 . The flexible pipe end portion connection structure according to claim 13 , further comprising a pressure bearing ring, wherein the pressure bearing ring comprises a first pressure bearing portion, a second pressure bearing portion and a support portion, the first pressure bearing portion is located between the clamp and the outer side surfaces of the first flange and the second flange, the second pressure bearing portion is located on an inner side surface of the first flange and an inner side surface of the second flange, and the support portion connects the first pressure bearing portion and the second pressure bearing portion and is located between the end surface of the first flange and the end surface of the second flange.

15 . The flexible pipe end portion connection structure of claim 1 , wherein the flexible pipe body is configured to withstand a pressure above 70 MPa.

16 . The flexible pipe end portion connection structure of claim 1 , wherein an inner sidewall of one of the plurality of first stepped structures closest to an outer sidewall in contact with the inserted flexible pipe body and a direction from the first end to the second end form an included angle of 5° to 10° to form a draft angle.

17 . A flexible pipe end portion connection structure, comprising a flexible pipe body and a joint,

the joint comprises a first end and a second end opposite to each other, and has a channel extending through the joint in a direction from the first end to the second end, and an inner sidewall of the first end of the joint has a plurality of first stepped structures, an inner diameter of a portion of the channel corresponding to the first stepped structure gradually decreases in the direction from the first end to the second end, and

at least a part of an end of the flexible pipe body is inserted into the first end of the joint to fit with the first stepped structure,

wherein a surface of a portion of the flexible pipe body inserted into the joint has a plurality of second stepped structures, and the plurality of first stepped structures are matched with the second stepped structures so that the portion of the flexible pipe body inserted into the joint fits with the first stepped structure and an inner sidewall of each of the plurality of first stepped structures is in direct contact with a step surface of a corresponding one of the second stepped structures, and

an inner sidewall of one of the plurality of first stepped structures closest to an outer sidewall in contact with the inserted flexible pipe body and a direction from the first end to the second end form an included angle of 5° to 10° to form a draft angle.

18 . A flexible pipe end portion connection structure, comprising a flexible pipe body and a joint,

the joint comprises a first end and a second end opposite to each other, and has a channel extending through the joint in a direction from the first end to the second end, and an inner sidewall of the first end of the joint has a plurality of first stepped structures, an inner diameter of a portion of the channel corresponding to the first stepped structure gradually decreases in the direction from the first end to the second end, and

at least a part of an end of the flexible pipe body is inserted into the first end of the joint to fit with the first stepped structure,

wherein a surface of a portion of the flexible pipe body inserted into the joint has a plurality of second stepped structures, and the plurality of first stepped structures are matched with the second stepped structures so that the portion of the flexible pipe body inserted into the joint fits with the first stepped structure and an inner sidewall of each of the plurality of first stepped structures is in direct contact with a step surface of a corresponding one of the second stepped structures,

a portion of the joint corresponding to the plurality of first stepped structures has a through hole connecting an outer sidewall and an inner sidewall of the joint, and

each step of the plurality of first stepped structures has at least one through hole, and each through hole is filled with adhesive.