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Patent · US10307784B2 · B2 · US

Method and applicator for applying sealant to fasteners

(11) Publication number
US10307784B2
(21) Application number
15/243,891
(22) Filing date
2016-08-22
(30) Priority date
2016-08-22
(43) Publication date
2019-06-04
(45) Date of grant
2019-06-04
(51) IPC
B05C 1/02; B05C 17/005; B05C 17/015; B05C 5/00; B05C 5/02; F16B 39/02
(52) CPC
  • B05C Apparatus for applying fluent materials to surfaces, in general: 5/0212, 1/027, 17/00503, 17/00513, 17/00516, 17/00593, 17/015, 5/002
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 39/021
(73) Assignee
Boeing Co
(72) Inventors
Diana Dujunco Dan Larrabee; Richard Lynn Hopkins; Jonathan Christopher Heath; John-Isaac Suttles; Robert J. Schumann
(54) Title
Method and applicator for applying sealant to fasteners
(57) Abstract

A liquid sealant applicator system that may include a liquid sealant applicator having a coupling to reversibly connect to a source of liquid sealant, a sidewall extending from the coupling and defining a sealant flow path, a flow restrictor that restricts the sealant flow path to an annular pattern of apertures in the flow restrictor, a porous matrix that fills at least a portion of the sealant flow path downstream of the flow restrictor, a matrix retainer configured to retain the porous matrix within the sealant flow path, and a fastener socket connected to the sidewall and having a distal end configured to be placed over and at least substantially enclose the head of a preselected fastener. The applicator is configured to provide a uniform application of sealant from the source of the liquid sealant to the head of the fastener enclosed by the fastener socket.

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Claims (13)

  1. An applicator for applying a liquid sealant to a fastener, comprising: a coupling that is configured to reversibly connect to a source of liquid sealant; a sidewall extending from the coupling, the sidewall including a threaded portion and defining a sealant flow path; a flow restrictor disposed in the sealant flow path, the flow restrictor restricting the sealant flow path to a plurality of apertures disposed in an annular pattern in the flow restrictor; a porous matrix that fills at least a portion of the sealant flow path downstream of the flow restrictor; a matrix retainer configured to retain the porous matrix within the sealant flow path, where the matrix retainer is a locking washer that includes a plurality of inwardly-directed teeth, and the porous matrix is secured within the locking washer by the inwardly-directed teeth; and a fastener socket connected to the sidewall extending from the coupling, the fastener socket including a threaded portion and having a distal end configured to be placed over a head of a preselected fastener and to enclose the fastener head; wherein the sidewall and fastener socket are secured to each other by a threaded connection between the threaded portions, such that the flow restrictor and matrix retainer are secured between the sidewall and fastener socket by the threaded connection; and the applicator is configured to provide a uniform application of the sealant from the source of the liquid sealant to the head of the fastener enclosed by the fastener socket.
  2. The applicator of claim 1, wherein the coupling is configured to connect to the source of liquid sealant via a threaded connector, a quick-connect connector, or a bayonet-type connector.
  3. The applicator of claim 1, wherein the porous matrix abuts the flow restrictor in the sealant flow path.
  4. The applicator of claim 1, wherein the flow restrictor is circular, and the annular pattern of the plurality of apertures is concentric with the flow restrictor.
  5. The applicator of claim 1, wherein the porous matrix includes a polyurethane open cell foam.
  6. The applicator of claim 1, wherein the porous matrix extends to a lip of the fastener socket, excepting for a cavity defined by the porous matrix, the cavity being centered in the fastener socket and configured to accept the fastener head.
  7. The applicator of claim 1, wherein the source of liquid sealant is a standard sealant cartridge disposed in a pneumatic sealant gun.
  8. The applicator of claim 1, wherein the source of liquid sealant is a syringe.
  9. The applicator of claim 1, wherein the flow restrictor and porous matrix are configured so that when the source of liquid sealant is pressurized to between 90-100 psi, a sealant flow rate is established that infuses sealant uniformly throughout the porous matrix.
  10. A liquid sealant application system, comprising: a pressurizable source of liquid sealant; and a liquid sealant applicator; wherein the liquid sealant applicator includes a proximal coupling that is configured to reversibly connect to the pressurizable source of liquid sealant; a sidewall extending from the proximal coupling; a distal fastener socket connected to the sidewall and configured to be placed over a head of a preselected fastener; a sealant flow path from the proximal coupling to the distal fastener socket; a flow restrictor disposed in the sealant flow path, the flow restrictor having a plurality of apertures disposed in an annular pattern that is centered in the sealant flow path; a porous matrix that fills at least a segment of the sealant flow path downstream of the flow restrictor; and a matrix retainer configured to retain the porous matrix within the sealant flow path, where the matrix retainer is a locking washer that includes a plurality of inwardly-directed teeth, and the porous matrix is secured within the locking washer by the inwardly-directed teeth; wherein the proximal coupling and distal fastener socket are connected to each other by a threaded connection that permits the distal fastener socket to be disconnected; the flow restrictor and matrix retainer are secured between the proximal coupling and the distal fastener socket by the threaded connection; and the liquid sealant application system is configured to provide a uniform application of the sealant from the source of the liquid sealant to the head of the fastener enclosed by the distal fastener socket.
  11. The liquid sealant application system of claim 10, wherein the flow restrictor, porous matrix, matrix retainer, and distal fastener socket are configured to be interchangeable with an alternative flow restrictor, porous matrix, matrix retainer, and distal fastener socket configured for a different preselected fastener head.
  12. The liquid sealant application system of claim 10, wherein the pressurizable source of liquid sealant includes a syringe or a pneumatic sealant gun.
  13. The liquid sealant application system of claim 10, wherein the pressurizable source of liquid sealant is pressurized manually, pressurized using a portable source of compressed gas, or pressurized using a plumbed source of compressed gas.

Description

This disclosure relates to sealant applicators, and methods of applying sealant compositions to fasteners. More specifically, the disclosure relates to applicators and methods for the application of liquid sealants to the selected fasteners.

In many types of industrial manufacture, where a fastener is installed into an assembly a sealant may be applied to the fastener. In aerospace, for example, primers and sealants may be used as protection for the rivet-skin interface in riveted structures such as aircraft wings and aircraft fuselages. The application of sealant may help prevent corrosive materials in the atmosphere from being drawn into and degrading the rivet or skin material adjacent the rivet.

However, such fasteners may exhibit a wide variety of sizes and shapes, for example differing in width, height, and/or overall contour. It has therefore typically been required to apply the desired sealant manually to each fastener individually, using a brush or a syringe applicator. The application of sealant therefore becomes a time-consuming, tedious, and messy task.

Manual application also introduces the human factor into the process of applying sealant, requiring a steady hand and substantially increasing the costs associated with this aspect of the manufacturing process. The person applying the sealant needs to be careful and make sure that sealant is applied in accordance with the specifications, which do not allow bubbles, voids or inclusions.

Citations (22)

  • US3388958A
  • US4201491A
  • US4474195A
  • US4762433A
  • US5018894A
  • US5196117A
  • US5597255A
  • US5823206A
  • US7390533B2
  • US6547471B1
  • US6457893B1
  • US7125189B2
  • US6682246B2
  • US20040074927A1
  • US7416358B2
  • US7232273B2
  • US8585309B2
  • US9061313B1
  • US20140060973A1
  • US9180480B1
  • WO2016066871A1
  • US20170036233A1
Record as JSON
{
  "publication_number": "US10307784B2",
  "country": "US",
  "kind": "B2",
  "title": "Method and applicator for applying sealant to fasteners",
  "abstract": "A liquid sealant applicator system that may include a liquid sealant applicator having a coupling to reversibly connect to a source of liquid sealant, a sidewall extending from the coupling and defining a sealant flow path, a flow restrictor that restricts the sealant flow path to an annular pattern of apertures in the flow restrictor, a porous matrix that fills at least a portion of the sealant flow path downstream of the flow restrictor, a matrix retainer configured to retain the porous matrix within the sealant flow path, and a fastener socket connected to the sidewall and having a distal end configured to be placed over and at least substantially enclose the head of a preselected fastener. The applicator is configured to provide a uniform application of sealant from the source of the liquid sealant to the head of the fastener enclosed by the fastener socket.",
  "claims": [
    "1. An applicator for applying a liquid sealant to a fastener, comprising: a coupling that is configured to reversibly connect to a source of liquid sealant; a sidewall extending from the coupling, the sidewall including a threaded portion and defining a sealant flow path; a flow restrictor disposed in the sealant flow path, the flow restrictor restricting the sealant flow path to a plurality of apertures disposed in an annular pattern in the flow restrictor; a porous matrix that fills at least a portion of the sealant flow path downstream of the flow restrictor; a matrix retainer configured to retain the porous matrix within the sealant flow path, where the matrix retainer is a locking washer that includes a plurality of inwardly-directed teeth, and the porous matrix is secured within the locking washer by the inwardly-directed teeth; and a fastener socket connected to the sidewall extending from the coupling, the fastener socket including a threaded portion and having a distal end configured to be placed over a head of a preselected fastener and to enclose the fastener head; wherein the sidewall and fastener socket are secured to each other by a threaded connection between the threaded portions, such that the flow restrictor and matrix retainer are secured between the sidewall and fastener socket by the threaded connection; and the applicator is configured to provide a uniform application of the sealant from the source of the liquid sealant to the head of the fastener enclosed by the fastener socket.",
    "2. The applicator of claim 1, wherein the coupling is configured to connect to the source of liquid sealant via a threaded connector, a quick-connect connector, or a bayonet-type connector.",
    "3. The applicator of claim 1, wherein the porous matrix abuts the flow restrictor in the sealant flow path.",
    "4. The applicator of claim 1, wherein the flow restrictor is circular, and the annular pattern of the plurality of apertures is concentric with the flow restrictor.",
    "5. The applicator of claim 1, wherein the porous matrix includes a polyurethane open cell foam.",
    "6. The applicator of claim 1, wherein the porous matrix extends to a lip of the fastener socket, excepting for a cavity defined by the porous matrix, the cavity being centered in the fastener socket and configured to accept the fastener head.",
    "7. The applicator of claim 1, wherein the source of liquid sealant is a standard sealant cartridge disposed in a pneumatic sealant gun.",
    "8. The applicator of claim 1, wherein the source of liquid sealant is a syringe.",
    "9. The applicator of claim 1, wherein the flow restrictor and porous matrix are configured so that when the source of liquid sealant is pressurized to between 90-100 psi, a sealant flow rate is established that infuses sealant uniformly throughout the porous matrix.",
    "10. A liquid sealant application system, comprising: a pressurizable source of liquid sealant; and a liquid sealant applicator; wherein the liquid sealant applicator includes a proximal coupling that is configured to reversibly connect to the pressurizable source of liquid sealant; a sidewall extending from the proximal coupling; a distal fastener socket connected to the sidewall and configured to be placed over a head of a preselected fastener; a sealant flow path from the proximal coupling to the distal fastener socket; a flow restrictor disposed in the sealant flow path, the flow restrictor having a plurality of apertures disposed in an annular pattern that is centered in the sealant flow path; a porous matrix that fills at least a segment of the sealant flow path downstream of the flow restrictor; and a matrix retainer configured to retain the porous matrix within the sealant flow path, where the matrix retainer is a locking washer that includes a plurality of inwardly-directed teeth, and the porous matrix is secured within the locking washer by the inwardly-directed teeth; wherein the proximal coupling and distal fastener socket are connected to each other by a threaded connection that permits the distal fastener socket to be disconnected; the flow restrictor and matrix retainer are secured between the proximal coupling and the distal fastener socket by the threaded connection; and the liquid sealant application system is configured to provide a uniform application of the sealant from the source of the liquid sealant to the head of the fastener enclosed by the distal fastener socket.",
    "11. The liquid sealant application system of claim 10, wherein the flow restrictor, porous matrix, matrix retainer, and distal fastener socket are configured to be interchangeable with an alternative flow restrictor, porous matrix, matrix retainer, and distal fastener socket configured for a different preselected fastener head.",
    "12. The liquid sealant application system of claim 10, wherein the pressurizable source of liquid sealant includes a syringe or a pneumatic sealant gun.",
    "13. The liquid sealant application system of claim 10, wherein the pressurizable source of liquid sealant is pressurized manually, pressurized using a portable source of compressed gas, or pressurized using a plumbed source of compressed gas."
  ],
  "description_excerpt": "This disclosure relates to sealant applicators, and methods of applying sealant compositions to fasteners. More specifically, the disclosure relates to applicators and methods for the application of liquid sealants to the selected fasteners.\n\nIn many types of industrial manufacture, where a fastener is installed into an assembly a sealant may be applied to the fastener. In aerospace, for example, primers and sealants may be used as protection for the rivet-skin interface in riveted structures such as aircraft wings and aircraft fuselages. The application of sealant may help prevent corrosive materials in the atmosphere from being drawn into and degrading the rivet or skin material adjacent the rivet.\n\nHowever, such fasteners may exhibit a wide variety of sizes and shapes, for example differing in width, height, and/or overall contour. It has therefore typically been required to apply the desired sealant manually to each fastener individually, using a brush or a syringe applicator. The application of sealant therefore becomes a time-consuming, tedious, and messy task.\n\nManual application also introduces the human factor into the process of applying sealant, requiring a steady hand and substantially increasing the costs associated with this aspect of the manufacturing process. The person applying the sealant needs to be careful and make sure that sealant is applied in accordance with the specifications, which do not allow bubbles, voids or inclusions.",
  "cpc": [
    "B05C 5/0212",
    "B05C 1/027",
    "B05C 17/00503",
    "B05C 17/00513",
    "B05C 17/00516",
    "B05C 17/00593",
    "B05C 17/015",
    "B05C 5/002",
    "F16B 39/021"
  ],
  "ipc": [
    "B05C 1/02",
    "B05C 17/005",
    "B05C 17/015",
    "B05C 5/00",
    "B05C 5/02",
    "F16B 39/02"
  ],
  "assignees": [
    "Boeing Co"
  ],
  "inventors": [
    "Diana Dujunco Dan Larrabee",
    "Richard Lynn Hopkins",
    "Jonathan Christopher Heath",
    "John-Isaac Suttles",
    "Robert J. Schumann"
  ],
  "filing_date": "2016-08-22",
  "publication_date": "2019-06-04",
  "grant_date": "2019-06-04",
  "priority_date": "2016-08-22",
  "application_number": "US-201615243891-A",
  "family_id": "59699517",
  "cited_by_count": 2,
  "citations": [
    "US3388958A",
    "US4201491A",
    "US4474195A",
    "US4762433A",
    "US5018894A",
    "US5196117A",
    "US5597255A",
    "US5823206A",
    "US7390533B2",
    "US6547471B1",
    "US6457893B1",
    "US7125189B2",
    "US6682246B2",
    "US20040074927A1",
    "US7416358B2",
    "US7232273B2",
    "US8585309B2",
    "US9061313B1",
    "US20140060973A1",
    "US9180480B1",
    "WO2016066871A1",
    "US20170036233A1"
  ]
}

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