IP Library Granted Patent US 12,560,237
Granted Patent B2
US 12,560,237 · App. 19/055,424 · Granted Feb 24, 2026

Gasket with electrical isolating coatings

Inventors: Ian Brown (Denver, CO); Ryan Buttimer (Golden, CO); T. Scott Tanner (Rochester, NY); Christopher Remley (Wheat Ridge, CO)
Assignee: GPT INDUSTRIES, LLC
F16J15/064F16L23/18F16L25/026F16J2015/0856F16J15/122
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Quick Facts
Patent No.
US 12,560,237
App. No.
19/055,424
Granted
Feb 24, 2026
Kind
B2
Abstract

An electrically isolating gasket is disclosed wherein a coating layer is disposed on at least one conductive surface, and in some embodiments, on all surfaces or at least all of the conductive surfaces. The electrically isolating gasket includes a core gasket component, a ring seal component, and a non-conductive inner seal component. The coating layer can be, for example, polyimide, polyamide, ceramic, and aluminum oxide.

Claims (26)

1 . An electrically isolating gasket comprising:

a metallic gasket core, the metallic gasket core having a disc shape and including radially extending opposed faces separated by an axial height and an inner core surface extending along the axial height between the opposed faces having a first, non-linear shape; and

a non-laminated coating bonded to the radially extending opposed faces, wherein the non-laminated coating comprises a dielectric material formed on the opposed surfaces of the metallic gasket core by being applied to the metallic gasket core in a liquid form and then cured to form a solidified coating, and

wherein the metallic gasket core comprises at least one groove in each of the opposed surfaces and where the non-laminated coating is bonded to at least one surface of the at least one groove in each of the opposed surfaces.

2 . The electrically isolating gasket of claim 1 , wherein the metallic gasket core component is made from stainless steel.

3 . The electrically isolating gasket of claim 1 , wherein the dielectric material is selected from the group consisting of polyimide and polyamide.

4 . The electrically isolating gasket of claim 3 , wherein the dielectric material is polyimide.

5 . The electrically isolating gasket of claim 1 , wherein the non-laminated coating is bonded to the inner core surface.

6 . The electrically isolating gasket of claim 5 , wherein the dielectric material is a continuous material having a substantially uniform thickness on the opposed surfaces.

7 . The electrically isolating gasket of claim 6 , wherein the thickness is less than 6 mm.

8 . The electrically isolating gasket of claim 7 , wherein the thickness is less than 0.381 mm.

9 . The electrically isolating gasket of claim 7 , wherein the thickness is less than 0.127 mm.

10 . The electrically isolating gasket of claim 1 , wherein the non-laminated coating is formed on all surfaces of the at least one groove in each of the opposed surfaces.

11 . The electrically isolating gasket of claim 1 , wherein a sealing mechanism is disposed in each of the at least one groove in each of the opposed surfaces.

12 . The electrically isolating gasket of claim 11 , wherein the at least one groove comprises a first groove in one of the opposed surfaces and a second groove in the other of the opposed surfaces and wherein the sealing mechanism is a lip seal disposed in each of the first groove and the second groove.

13 . The electrically isolating gasket of claim 10 , wherein a thickness of the coating on the surfaces of the grooves is less than a thickness of the coating on the other surfaces of the core gasket component.

14 . The electrically isolating gasket of claim 1 , wherein the electrically isolating gasket is free of glass reinforced epoxy.

15 . A method of manufacturing an electrically isolating gasket comprising:

providing a retainer wherein the metallic gasket core is formed from a conductive material, the metallic gasket core having opposed axial faces and a concave shaped inner core surface;

coating every surface of the retainer, including the concave shaped inner retainer surface, with a liquid coating comprising a dielectric material;

and continuously curing the liquid coating to harden the liquid coating and bond the coating to the retainer without lamination, and

wherein the metallic gasket core comprises at least one groove in each of the opposed surfaces and where the non-laminated coating is bonded to at least one surface of the at least one groove in each of the opposed surfaces.

16 . The method of manufacturing the electrically isolating gasket of claim 15 , wherein continuously curing the liquid coating comprises continuously exposing the liquid coating to infrared radiation.

17 . The method of manufacturing the electrically isolating gasket of claim 15 , wherein the liquid is selected from the group consisting of: polyimide and polyamide, ceramic, and aluminum oxide.

18 . The method of manufacturing electrically isolating gasket of claim 17 , wherein the liquid is polyimide.

19 . The method of manufacturing the electrically isolating gasket of claim 15 , wherein the coating and curing the liquid coating provides a substantially uniform layer on the opposed axial faces of the metallic gasket core and wherein the substantially uniform layer is no more than 6 mm thick.

Assignments (3)
SECURITY INTEREST Recorded Oct 21, 2025
From: GPT INDUSTRIES, LLC
To: OLD SECOND NATIONAL BANK
Reel/Frame 072623/0708 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2025
From: BROWN, IAN; BUTTIMER, RYAN; TANNER, T. SCOTT; REMLEY, CHRISTOPHER
To: GARLOCK PIPELINE TECHNOLOGIES, INC.
Reel/Frame 071198/0700 →
CHANGE OF NAME Recorded May 22, 2025
From: GARLOCK PIPELINE TECHNOLOGIES, INC.
To: GPT INDUSTRIES, LLC
Reel/Frame 071351/0282 →
Continuity (8)
Continuation 18436442 · Feb 8, 2024
Continuation 18091644 · Dec 30, 2022
Continuation 17234013 · Apr 19, 2021
Continuation 15996975 · Jun 4, 2018
Continuation In Part 29640610 · Mar 15, 2018
Continuation In Part 15726080 · Oct 5, 2017
Provisional Application 62404673 · Oct 5, 2016
Related Publication 20250271062A1 · Aug 28, 2025
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