IP Library › Granted Patent US 12,422,080
Granted Patent B2
US 12,422,080 · App. 18/509,792 · Granted Sep 23, 2025

Elbow pipe joint

Inventors: Kenta Kuwayama (Aichi-ken, JP); Masayuki Miyamura (Aichi-ken, JP)
Assignee: TOYODA GOSEI CO., LTD.
F16L37/40F16L37/144
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Quick Facts
Patent No.
US 12,422,080
App. No.
18/509,792
Granted
Sep 23, 2025
Kind
B2
Abstract

An elbow pipe joint includes a tubular first pipe connecting portion which allows another joint to be connected, a tubular second pipe connecting portion which has a second central axis intersecting a first central axis of the first pipe connecting portion, a hollow valve accommodating portion which is connected to the first pipe connecting portion and the second pipe connecting portion and which has a valve accommodating space communicating with a first inner hole of the first pipe connecting portion and a second inner hole of the second pipe connecting portion, and a flap valve device accommodated in the valve accommodating portion. The flap valve device is configured to pivot to switch between a valve open state where the first and second inner holes communicate with each other and a valve closed state where the first and second inner holes are blocked from each other.

Claims (40)

1. An elbow pipe joint, comprising:

a first pipe connecting portion having a tubular shape, and configured to allow another joint to be connected;

a second pipe connecting portion having a tubular shape, and having a second central axis intersecting a first central axis of the first pipe connecting portion;

a valve accommodating portion having a hollow shape, connected to the first pipe connecting portion and the second pipe connecting portion, and having a valve accommodating space that communicates with a first inner hole of the first pipe connecting portion and a second inner hole of the second pipe connecting portion; and

a flap valve device accommodated in the valve accommodating portion, and configured to pivot to switch between a valve open state in which the first inner hole and the second inner hole communicate with each other and a valve closed state in which the first inner hole and the second inner hole are blocked from each other,

wherein the flap valve device includes:

a valve seat member having a bottomed tubular shape, including a bottom portion in which an opening is formed, and having a central axis parallel to the first central axis, the bottom portion being disposed to be in contact with the valve accommodating space;

a valve body configured to pivot about a rotation axis orthogonal to both the first central axis and the second central axis, the valve body implementing the valve closed state by sealing the opening, and implementing the valve open state by opening the opening; and

an elastic member configured to urge the valve body to seal the opening,

wherein the valve body includes a pressing portion exposed to an inner space of the valve seat member, which communicates with the first inner hole in the valve closed state, the pressing portion being pressed in a direction parallel to the first central axis by the another joint inserted into the first inner hole and connected to the first pipe connecting portion,

wherein the pressing portion is provided on the valve body at a side closer to the rotation axis in a direction parallel to the second central axis, and

wherein the opening is formed in the bottom portion such that a third central axis of the opening is parallel to the first central axis, and is positioned farther from the rotation axis along the direction parallel to the second central axis than the first central axis.

2. An elbow pipe joint, comprising:

a first pipe connecting portion having a tubular shape, and configured to allow another joint to be connected;

a second pipe connecting portion having a tubular shape, and having a second central axis intersecting a first central axis of the first pipe connecting portion;

a valve accommodating portion having a hollow shape, connected to the first pipe connecting portion and the second pipe connecting portion, and having a valve accommodating space that communicates with a first inner hole of the first pipe connecting portion and a second inner hole of the second pipe connecting portion; and

a flap valve device accommodated in the valve accommodating portion, and configured to pivot to switch between a valve open state in which the first inner hole and the second inner hole communicate with each other and a valve closed state in which the first inner hole and the second inner hole are blocked from each other,

wherein the flap valve device includes:

a valve seat member having a bottomed tubular shape, including a bottom portion in which an opening is formed, and having a central axis parallel to the first central axis, the bottom portion being disposed to be in contact with the valve accommodating space;

a valve body configured to pivot about a rotation axis orthogonal to both the first central axis and the second central axis, the valve body implementing the valve closed state by sealing the opening, and implementing the valve open state by opening the opening; and

an elastic member configured to urge the valve body to seal the opening,

wherein the valve body includes a pressing portion exposed to an inner space of the valve seat member, which communicates with the first inner hole in the valve closed state, the pressing portion being pressed in a direction parallel to the first central axis by the another joint inserted into the first inner hole and connected to the first pipe connecting portion,

wherein the pressing portion is provided on the valve body at a side closer to the rotation axis in a direction parallel to the second central axis, and

wherein the valve body further includes:

a main body portion including an exposed surface exposed to the inner space in the valve closed state, and a seal portion being continuous with the exposed surface and configured to seal the opening in the valve closed state; and

a protruding portion having a rod shape, protruding from the exposed surface, and being continuous with the pressing portion at a tip end of the protruding portion.

3. The elbow pipe joint according to claim 2 ,

wherein the protruding portion is disposed parallel to the first central axis in the valve open state.

4. An elbow pipe joint, comprising:

a first pipe connecting portion having a tubular shape, and configured to allow another joint to be connected;

a second pipe connecting portion having a tubular shape, and having a second central axis intersecting a first central axis of the first pipe connecting portion;

a valve accommodating portion having a hollow shape, connected to the first pipe connecting portion and the second pipe connecting portion, and having a valve accommodating space that communicates with a first inner hole of the first pipe connecting portion and a second inner hole of the second pipe connecting portion; and

a flap valve device accommodated in the valve accommodating portion, and configured to pivot to switch between a valve open state in which the first inner hole and the second inner hole communicate with each other and a valve closed state in which the first inner hole and the second inner hole are blocked from each other,

wherein the flap valve device includes:

a valve seat member having a bottomed tubular shape, including a bottom portion in which an opening is formed, and having a central axis parallel to the first central axis, the bottom portion being disposed to be in contact with the valve accommodating space;

a valve body configured to pivot about a rotation axis orthogonal to both the first central axis and the second central axis, the valve body implementing the valve closed state by sealing the opening, and implementing the valve open state by opening the opening; and

an elastic member configured to urge the valve body to seal the opening,

wherein the valve body includes a pressing portion exposed to an inner space of the valve seat member, which communicates with the first inner hole in the valve closed state, the pressing portion being pressed in a direction parallel to the first central axis by the another joint inserted into the first inner hole and connected to the first pipe connecting portion,

wherein the pressing portion is provided on the valve body at a side closer to the rotation axis in a direction parallel to the second central axis, and

wherein a contact surface, which is configured to come into contact with the another joint, of the pressing portion has a curve which is a set of involute curves.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2023
From: KUWAYAMA, KENTA; MIYAMURA, MASAYUKI
To: TOYODA GOSEI CO., LTD.
Reel/Frame 065571/0421 →
Priority Claims (1)
JP 2022-184532 · Nov 18, 2022 · national
Continuity (1)
Related Publication 20240167603A1 · May 23, 2024
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