IP Library Granted Patent US 12,359,744
Granted Patent B2
US 12,359,744 · App. 18/116,358 · Granted Jul 15, 2025

Hazardous material container plug

Inventors: Jeffrey Crowell (Brooksville, FL); Michael Tomlinson (Spring Hill, FL); Jeff Smigiel (Northridge, CA)
Assignee: Micro Matic USA, Inc.
F16K35/10B65D47/30F16K27/02Y10T137/7062
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Quick Facts
Patent No.
US 12,359,744
App. No.
18/116,358
Granted
Jul 15, 2025
Kind
B2
Abstract

A plug for a valve for a container that may contain hazardous materials is provided. The plug may include an outer wall, and one or more keys disposed on an external surface of the outer wall. The keys may be sized and shaped to respectively fit within one or more corresponding notches and one or more circumferential grooves in the valve to secure the plug to the valve. the plug may be sized and shaped to be inserted into the valve so that the one or more keys of the plug are respectively inserted into the one or more notches, and the one or more keys of the plug are configured to be respectively moved within the one or more circumferential grooves in a first direction as the plug is rotated.

Claims (38)

1. A plug for a valve, the plug comprising:

an outer wall;

one or more keys disposed on an external surface of the outer wall;

an inner wall disposed at a center portion within the outer wall; and

a plurality of coupling members connecting the inner wall to the outer wall, wherein the plurality of coupling members are separated by one or more cavities located between the coupling members;

wherein said keys are sized and shaped to respectively fit within one or more corresponding notches and one or more circumferential grooves in the valve to secure the plug to the valve;

wherein the plug is sized and shaped to be inserted into the valve so that the one or more keys of the plug are respectively inserted into the one or more notches, and the one or more keys of the plug are configured to be respectively moved within the one or more circumferential grooves in a first direction as the plug is rotated until the one or more keys reach respective ends of the one or more circumferential grooves which prevents the plug from rotating further;

wherein the plug further comprises a socket drive disposed within the inner wall and configured to receive a device to rotate the plug within the valve in the first direction;

wherein the socket drive comprises one or more reliefs configured to prevent the device from rotating the plug within the valve in a second direction;

wherein the plug comprises a hole that is configured to be aligned with one of the notches in the valve;

wherein the tamper-evident pin is configured to be inserted into the hole and said one of the notches in the valve; and

wherein the tamper-evident pin is configured to break when pressed against a side wall of said one of the notches by rotating the plug in a second direction.

2. The plug of claim 1 , wherein the tamper-evident pin includes a cap portion and an elongated portion;

wherein the elongated portion is configured to be inserted through the hole in the plug and into said one of the notches in the valve; and

wherein the cap portion is configured to be disposed above a top surface of the plug when the elongated portion is inserted into said one of the notches in the valve.

3. A valve-plug assembly comprising:

a valve comprising a valve body configured to be inserted into a well opening of a container, an upper edge having one or more notches, and one or more circumferential grooves at least partially overlapping with said one or more respective notches; and

a plug comprising an outer wall, one or more keys disposed on an external surface of the outer wall, an inner wall disposed at a center portion within the outer wall, and a plurality of coupling members connecting the inner wall to the outer wall, wherein the plurality of coupling members are separated by one or more cavities located between the coupling members;

wherein said keys are sized and shaped to respectively fit within one or more corresponding notches and one or more circumferential grooves in the valve to secure the plug to the valve;

wherein the plug is sized and shaped to be inserted into the valve so that the one or more keys of the plug are respectively inserted into the one or more notches, and the one or more keys of the plug are configured to be respectively moved within the one or more circumferential grooves in a first direction as the plug is rotated until the one or more keys reach respective ends of the one or more circumferential grooves which prevents the plug from rotating further;

wherein the plug further comprises a socket drive disposed within the inner wall and configured to receive a device to rotate the plug within the valve in the first direction;

wherein the socket drive comprises one or more reliefs configured to prevent the device from rotating the plug within the valve in a second direction;

wherein the plug comprises a hole that is configured to be aligned with one of the notches in the valve;

wherein the pin is configured to be inserted into the hole and said one of the notches in the valve; and

wherein the pin is configured to break when pressed against a side wall of said one of the notches by rotating the plug in a second direction.

4. The valve-plug assembly of claim 3 , wherein the tamper-evident pin includes a cap portion and an elongated portion;

wherein the elongated portion is configured to be inserted through the hole in the plug and into said one of the notches in the valve; and

wherein the cap portion is configured to be disposed above a top surface of the plug when the elongated portion is inserted into said one of the notches in the valve.

5. A valve-plug assembly comprising:

a valve comprising a valve body configured to be inserted into a well opening of a container, an upper edge having one or more notches, and one or more circumferential grooves at least partially overlapping with said one or more respective notches;

a plug comprising an outer wall, one or more keys disposed on an external surface of the outer wall, an inner wall disposed at a center portion within the outer wall, and a plurality of coupling members connecting the inner wall to the outer wall, wherein the plurality of coupling members are separated by one or more cavities located between the coupling members;

a cover having a substantially flat horizontal top surface; and

at least one blade extending substantially perpendicular from the top surface of the cover,

wherein when each of the keys in the plug is inserted into a corresponding notch in the valve, a space exists within each notch above the key and the at least one blade is sized and shaped to fit in the space within each notch above the key,

wherein said keys are sized and shaped to respectively fit within one or more corresponding notches and one or more circumferential grooves in the valve to secure the plug to the valve,

wherein the plug is sized and shaped to be inserted into the valve so that the one or more keys of the plug are respectively inserted into the one or more notches, and the one or more keys of the plug are configured to be respectively moved within the one or more circumferential grooves in a first direction as the plug is rotated until the one or more keys reach respective ends of the one or more circumferential grooves which prevents the plug from rotating further,

wherein the plug further comprises a socket drive disposed within the inner wall and configured to receive a device to rotate the plug within the valve in the first direction, and

wherein the socket drive comprises one or more reliefs configured to prevent the device from rotating the plug within the valve in a second direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2023
From: CROWELL, JEFFREY; TOMLINSON, MICHAEL; SMIGIEL, JEFF
To: MICRO MATIC USA, INC.
Reel/Frame 062854/0183 →
Continuity (3)
Continuation 17409087 · Aug 23, 2021
Provisional Application 63121623 · Dec 4, 2020
Related Publication 20230204127A1 · Jun 29, 2023
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