IP Library Granted Patent US 10,718,456
Granted Patent B2
US 10,718,456 · App. 15/849,188 · Granted Jul 21, 2020

Rapid-connect coupler with vent-stop

Inventor: Howard M. Konishi (Redmond, WA)
Assignee: Engineered Controls International, LLC
F16L37/42F16L37/12F16L37/23F16L37/35F16L37/36F16L55/07F17C2205/037Y10T137/0402Y10T137/598Y10T137/87957
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Quick Facts
Patent No.
US 10,718,456
App. No.
15/849,188
Granted
Jul 21, 2020
Kind
B2
Abstract

A rapid-connect coupler includes a coupler body configured to convey a fluid; a coupling head at a first end of and communicating with the coupler body, the coupling head configured to transition between a coupled configuration and a de-coupled configuration. The coupler may further include a stop apparatus configured to allow the coupling head to transition from the de-coupled configuration to the coupled configuration without obstruction, and the stop apparatus may be configured to provide a hard-stop as the coupling head transitions from the coupled configuration to the de-coupled configuration.

Claims (49)

1. A rapid-connect coupler comprising:

a first architecture comprising a probe assembly and a sleeve engaged to the probe assembly;

a second architecture comprising a cage disposed about the probe assembly and slidably disposed within the sleeve such that the sleeve slides over the cage to selectively move the cage between a coupled configuration and a decoupled configuration; and

a spring-loaded vent-stop engaged to the second architecture to catch the probe assembly at a venting configuration as the probe assembly moves relative to the second architecture.

2. The rapid-connect coupler of claim 1 , wherein:

the second architecture further comprises a housing barrel engaged to the cage and disposed about the probe assembly; and

the sleeve is engaged to the probe assembly via one or more drive pins, and the one or more drive pins extend through the housing barrel.

3. The rapid-connect coupler of claim 1 , wherein the sleeve is engaged to the probe assembly via a link bar disposed outside the cage.

4. The rapid-connect coupler of claim 3 , further comprising:

a handle engaged to the cage; and

a trigger engaged to the link bar and rotatably engaged to the handle, wherein the sleeve translates relative to the cage when the trigger rotates relative to the handle.

5. The rapid-connect coupler of claim 1 , wherein the cage defines a plurality of openings and comprises a plurality of balls configured to move radially relative to the cage in the plurality of openings.

6. The rapid-connect coupler of claim 5 , wherein the plurality of openings are tapered holes.

7. The rapid-connect coupler of claim 5 , wherein the sleeve is configured to slide over the cage and to push the plurality of balls radially inwardly when the cage is in the coupled configuration.

8. The rapid-connect coupler of claim 1 , further comprising a handle assembly coupled to the first and second architecture and configured to slidably translate the first and second architecture relative to each other.

9. The rapid-connect coupler of claim 1 , wherein the vent-stop is configured to allow the cage to transition from the decoupled configuration to the coupled configuration without obstruction, and provide a hard-stop at the venting configuration as the cage transitions from the coupled configuration to the decoupled configuration.

10. The rapid-connect coupler of claim 9 , wherein the venting configuration is a semi-coupled position between the coupled configuration and the decoupled configuration.

11. The rapid-connect coupler of claim 9 , wherein the probe assembly comprises a notch, and the vent-stop engages the notch to catch the probe assembly at the venting configuration.

12. A rapid connect coupler comprising:

a probe assembly;

a sleeve engaged to the probe assembly; and

a cage including a latch, the cage being slidably disposed about the probe assembly and slidably disposed within the sleeve such that the sleeve moves the latch between a coupled configuration and a decoupled configuration as the sleeve slides over the latch, wherein the probe assembly is configured to take a venting configuration while the sleeve holds the latch in the coupled configuration; and

a spring-loaded vent-stop engaged to the cage to catch the probe assembly at the venting configuration as the probe assembly moves relative to the cage.

13. The rapid connect coupler of claim 12 , wherein:

the sleeve slides along the cage between a coupled position and a decoupled position; and

the sleeve pushes a hooked end of the latch radially inwardly toward the probe assembly as the sleeve slides from the decoupled position to the coupled position to move the latch to the coupled configuration.

14. A rapid connect coupler comprising:

a probe assembly;

a sleeve engaged to the probe assembly; and

a cage including a latch, the cage being slidably disposed about the probe assembly and slidably disposed within the sleeve such that the sleeve moves the latch between a coupled configuration and a decoupled configuration as the sleeve slides over the latch, wherein:

the sleeve slides along the cage between a coupled position, a venting position, and a decoupled position, and the venting position is between the coupled position and the decoupled position; and

the sleeve pushes a biased end of the latch radially inwardly toward the probe assembly as the sleeve slides from the venting position to the decoupled position to move the latch to the decoupled configuration.

15. A rapid connect coupler comprising:

a probe assembly;

a sleeve engaged to the probe assembly;

a housing disposed about the probe assembly;

a ball cage including a plurality of balls, the ball cage being engaged to the housing and slidably disposed within the sleeve such that the sleeve selectively radially compresses the plurality of balls as the sleeve slides over the ball cage; and

a spring-loaded stop handle rotatably engaged with the housing to catch the probe assembly and the sleeve at a venting position as the probe assembly moves relative to the ball cage.

16. The rapid connect coupler of claim 15 , wherein the probe assembly comprises a notch and the stop handle comprises a stop head, and the stop head engages the notch to catch the probe assembly at the venting position.

17. The rapid connect coupler of claim 15 , wherein:

the probe assembly moves between a coupled position and a decoupled position relative to the ball cage;

the venting position is between the coupled position and the decoupled position;

the stop handle catches the probe assembly at the venting position as the probe assembly moves from the coupled position to the decoupled position; and

the probe assembly moves freely from the decoupled position to the coupled position.

18. The rapid connect coupler of claim 15 , wherein:

the stop handle further comprises a pin and a handle-spring;

the stop handle rotates relative to the housing via the pin; and

the handle-spring engages the housing to axially urge the stop handle toward the ball cage.

19. The rapid connect coupler of claim 15 , wherein the probe assembly is pneumatically actuated to slide the sleeve along the ball cage from a decoupled position to a coupled position, from the coupled position to the venting position, and from the venting position to the decoupled position.

Assignments (3)
SECURITY INTEREST Recorded Nov 5, 2019
From: ENGINEERED CONTROLS INTERNATIONAL, LLC; SUPERIOR PRODUCTS, LLC
To: BAIN CAPITAL CREDIT, LP, AS ADMINISTRATIVE AGENT
Reel/Frame 050915/0514 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2017
From: KONISHI, HOWARD
To: MACRO TECHNOLOGIES, LLC
Reel/Frame 044453/0294 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2017
From: MACRO TECHNOLOGIES, LLC
To: ENGINEERED CONTROLS INTERNATIONAL, LLC
Reel/Frame 044453/0341 →
Cited By (2)
US 12,429,153 US 12,601,435