IP Library Granted Patent US 9,388,924
Granted Patent B2
US 9,388,924 · App. 13/966,159 · Granted Jul 12, 2016

Alky-one gasket

Inventors: Alan Stubblefield (Placentia, CA); David Walter Reeves (Orinda, CA)
Assignee: Advanced Sealing, Inc.
F16L19/025F16J15/061F16J15/122F16J15/127F16L23/18Y10T29/49297Y10T29/49298
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Quick Facts
Patent No.
US 9,388,924
App. No.
13/966,159
Granted
Jul 12, 2016
Kind
B2
Abstract

A method is provided for forming a gasket for sealing opposing flange surfaces of a pipe having corrosive fluid flowing therethrough. The method comprises defining a gasket profile incorporating a serrated profile core having a flange extending radially inward therefrom. A deformable pillow extends radially inward from the serrated profile core, to define a gasket intermediate portion about the flange, and a gasket inner portion radially inward from the flange. The deformable pillow material and thickness are selected such that upon compression to a thickness no less than the core thickness, the gasket inner portion exhibits a stress level sufficient to preclude corrosive liquid flowing through the pipe from passing radially outward beyond the gasket inner portion, and the gasket intermediate portion exhibits a stress level sufficient to preclude gas and liquid flowing through the pipe from passing radially outward beyond the gasket intermediate portion.

Claims (22)

1. A method of forming a gasket for sealing opposing flange surfaces of a pipe having corrosive fluid flowing therethrough, the gasket comprising:

defining a gasket profile including a serrated profile core, the serrated profile core defining a core thickness and a core inner surface;

forming a flange extending radially inward from the core inner surface, the flange defining a flange length, a flange thickness and a flange inner surface;

forming a deformable pillow about the flange, extending radially inward from the core inner surface, inward beyond the flange, to define a gasket inner surface wherein the deformable pillow defines a pillow thickness and a pillow material;

selecting the pillow material and the pillow thickness to provide a desired minimum inner zone stress level when the deformable pillow material in the inner zone is compressed to a thickness to no less than the core thickness; and

the gasket defining an outer, high stress, fire resistant sealing zone about the serrated profile core, an intermediate stress gas/liquid sealing zone between the core inner surface and the flange inner surface, and an inner, low stress liquid sealing zone between the flange inner surface and the gasket inner surface.

2. A method of forming a gasket for sealing between opposing flange surfaces of a pipe having a corrosive fluid flowing therethrough, the method comprising:

defining a gasket profile incorporating a serrated profile core, the serrated profile core defining a core thickness;

forming a flange extending radially inward from the serrated profile core;

forming a deformable pillow extending radially inward from the serrated profile core, about the flange, to define a gasket intermediate portion, the deformable pillow further extending radially inward from the flange to a gasket inner surface, to define a gasket inner portion;

selecting a deformable pillow material and a deformable pillow thickness such upon compression of the gasket to a thickness no less than the core thickness, the gasket inner portion exhibits a stress level sufficient to preclude corrosive liquid flowing through the pipe from passing radially outward beyond the gasket inner portion, and the gasket intermediate portion exhibits a stress level sufficient to preclude gas and liquid flowing through the pipe from passing radially outward beyond the gasket intermediate portion.

3. The method as recited in claim 2 further comprising the step of regulating the radial length of the flange and the deformable pillow thickness such that upon application of a designated bolt load to the gasket, the serrated profile core exhibits a stress level that is equal to or greater than a minimum gasket stress level.

4. A method of forming a gasket for sealing opposing flange surfaces of a pipe having corrosive fluid flowing therethrough, the gasket comprising:

defining a gasket profile including a serrated profile core, the serrated profile core defining a core thickness and a core inner surface;

forming a flange extending radially inward from the core inner surface, the flange defining a flange length, a flange thickness and a flange inner surface;

forming a deformable pillow about the flange, extending radially inward from the core inner surface, inward beyond the flange, to define a gasket inner surface;

the gasket defining an outer, high stress, fire resistant sealing zone about the serrated profile core, an intermediate stress gas/liquid sealing zone between the core inner surface and the flange inner surface, and an inner, low stress liquid sealing zone between the flange inner surface and the gasket inner surface;

wherein each sealing zone is formed to have a characteristic sealing stress level that is progressively higher from the inner sealing zone to the outer sealing zone;

wherein when a defined bolt load is applied to the gasket the deformable pillow in the inner sealing zone is compressible to a minimum inner zone stress level to prevent corrosive liquid flowing the pipe from reaching the intermediate sealing zone;

wherein when the defined bolt load is applied to the gasket the deformable pillow in the intermediate sealing zone is compressible to a minimum intermediate zone stress level to prevent corrosive liquid and gas flowing through the pipe from reaching the outer sealing zone; and

further comprising the step of selecting the flange thickness to provide a desired minimum intermediate zone stress level when the intermediate zone is compressed to a thickness to no less than the core thickness.

5. The method as recited in claim 4 furthering comprising the step of regulating the flange thickness such that the minimum intermediate zone minimum stress level is no more than 21% of the gasket stress level.

Assignments (6)
SECURITY INTEREST Recorded Nov 14, 2023
From: ERIKS INDUSTRIAL SERVICES LIMITED; ERIKS NORTH AMERICA, INC.
To: FIDUS INVESTMENT CORPORATION
Reel/Frame 065549/0472 →
SECURITY INTEREST Recorded Nov 8, 2022
From: 301 EDISON HOLDINGS, INC.; ERIKS CORPORATION; ERIKS CNC FLOW CONTROL LTD.; ERIKS RUBBER AND GASKETS, INC.; 0923508 B.C. UNLIMITED LIABILITY COMPANY; ERICKS INDUSTRIAL SERVICES ULC; ERIKS INDUSTRIAL SERVICES LP; LEADER GASKET TECHNOLOGIES, INC.; LGC GROUP HOLDINGS, INC.; ERIKS NORTH AMERICA, INC.; ERIKS SEALS AND PLASTICS, INC.; C&C INDUSTRIES, INC.
To: REGIONS BANK
Reel/Frame 061697/0572 →
SECURITY INTEREST Recorded Nov 8, 2022
From: 301 EDISON HOLDINGS, INC.; ERIKS CORPORATION; ERIKS CNC FLOW CONTROL LTD.; ERIKS RUBBER AND GASKETS, INC.; 0923508 B.C. UNLIMITED LIABILITY COMPANY; ERIKS INDUSTRIAL SERVICES ULC; ERIKS INDUSTRIAL SERVICES LP; LEADER GASKET TECHNOLOGIES, INC.; LGC GROUP HOLDINGS, INC.; ERIKS NORTH AMERICA, INC.; ERIKS SEALS AND PLASTICS, INC.; C&C INDUSTRIES, INC.
To: REGIONS BANK
Reel/Frame 061698/0272 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2022
From: ERIKS N.V.
To: ERIKS NORTH AMERICA, INC.
Reel/Frame 059986/0193 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2016
From: ADVANCED SEALING, INC.
To: ERIKS N.V.
Reel/Frame 038855/0314 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2013
From: STUBBLEFIELD, ALAN; REEVES, DAVID WALTER
To: ADVANCED SEALING, INC.
Reel/Frame 031013/0295 →
Continuity (2)
Continuation In Part 13051188 · Mar 18, 2011
Related Publication 20130328270A1 · Dec 12, 2013