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Patent · US10111351B2 · B2 · US

Infrared scanning port

(11) Publication number
US10111351B2
(21) Application number
14/692,160
(22) Filing date
2015-04-21
(30) Priority date
2011-11-11
(43) Publication date
2018-10-23
(45) Date of grant
2018-10-23
(51) IPC
B23P 11/00; F16B 17/00; F16B 33/00; G01J 5/08; G02B 7/00; H01H 1/00; H02B 1/30; H02B 3/00; H05K 5/02
(52) CPC
  • H05K Printed circuits; casings or constructional details of electric apparatus; manufacture of assemblages of electrical components: 5/0239, 5/03
  • B23P Metal-working not otherwise provided for; combined operations; universal machine tools: 11/00
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 17/00, 33/00
  • G01J Measurement of intensity, velocity, spectral content, polarisation, phase or pulse characteristics of infrared, visible or ultraviolet light; colorimetry; radiation pyrometry: 5/042, 5/046, 5/048, 5/0875
  • H01H Electric switches; relays; selectors; emergency protective devices: 2001/0021
  • H02B Boards, substations or switching arrangements for the supply or distribution of electric power: 1/306, 3/00
  • Y10T Technical subjects covered by former us classification: 29/49895, 403/70, 403/7075
(73) Assignee
THOMAS & BETTS INT LLC
(72) Inventors
SULLIVAN BRIAN RALEIGH; VANSTAVERN MICHAEL DAVID; REDINGER KRISTOFOR LYNN; HACKMAN CHRISTOPHER WILLIAM; RICZINGER RICHARD F
(54) Title
Infrared scanning port
(57) Abstract

We disclose a method for securing an infrared transmissive polymer to integrated panels, deadfronts, or transition plates, thus providing a reinforced polymer window through which the thermographer can scan an energized unit without being directly exposed to contact with internal components or having to remove said panels, deadfronts, or transition plates. We also disclose a device for securing the polymer consisting of a retention frame with half shear retainers that keep the polymer locked in place.

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Claims (14)

  1. A method for securing an infrared transmissive polymer to a panel of an electrical enclosure, the method comprising: a. aligning half shear retainers on a retention frame with holes in the infrared transmissive polymer and holes in a first side of the panel, the half shear retainers comprising raised protrusions on the retention frame; b. placing the infrared transmissive polymer against the retention frame and over a first side of an opening in the panel; c. inserting the half shear retainers through the holes in the infrared transmissive polymer and into the holes of the panel, the inserted half shear retainers protruding a distance into the panel that is less than the width of the panel; d. coupling the retention frame to the panel; and e. selectively covering a second side of the opening in the panel with a cover to conceal, from the second side of the opening, the infrared transmissive polymer.
  2. The method of claim 1, further comprising securing the retention frame to the panel with hardware.
  3. The method of claim 2, wherein the hardware are bolts.
  4. The method of claim 1, wherein the half shear retainers protrude beyond the plane of the retention frame by a distance of half the width of the retention frame.
  5. The method of claim 1, wherein the step of coupling the retention frame to the panel further comprises (1) aligning bolt holes of the infrared transmissive polymer with bolt holes of the panel and bolt holes of the retention frame; and (2) passing a bolt through the aligned bolt holes of the retention frame, infrared transmissive polymer, and panel.
  6. The method of claim 1, wherein the step of covering the second side of the opening in the panel with the cover comprises pivotally displacing the cover about a pivot point coupled to the panel from an unclosed position to a closed position.
  7. The method of claim 1, further including the step of securing the cover in a covered position over the second side of the opening.
  8. The method of claim 7, wherein the step of securing the cover comprises hooking the cover to a bolt that is coupled to the panel.
  9. A method for securing an infrared transmissive polymer to a panel of an electrical enclosure, the method comprising: a. positioning the infrared transmissive polymer over a first side of an opening in the panel; b. inserting half shear retainers of a retention frame through corresponding holes in the infrared transmissive polymer; c. inserting the half shear retainers into holes in the panel, the inserted half shear retainers protruding a distance into the panel that is less than the width of the panel; and d. selectively covering a second side of the opening in the panel with a cover.
  10. The method of claim 9, wherein the step of covering the second side of the opening comprises displacing the cover from an uncovered position to a covered position, at least a portion of the infrared transmissive polymer being viewable through the second side of the opening when the cover is in the uncovered position and concealed from view through the second side of the opening when the cover is in the covered position.
  11. The method of claim 9, further including the step of securing the retention frame against the panel comprising: (1) placing a bolt through a hole in the retention frame; (2) placing the bolt through a hole in the infrared transmissive polymer; (3) placing the bolt through a hole in the panel; and (4) fastening a nut on an opposite side of the panel to the bolt.
  12. The method of claim 9, wherein the step of covering the second side of the opening in the panel with the cover comprises pivotally displacing the cover about a pivot point coupled to the panel from an unclosed position to a closed position.
  13. The method of claim 9, further including the step of securing the cover in a covered position over the second side of the opening.
  14. The method of claim 13, wherein the step of securing the cover comprises hooking the cover to a bolt that is coupled to the panel.

Description

The present invention is generally directed toward a method of and device for affixing an infrared transmissive polymer window to a panel of an electrical enclosure.

Thermal infrared scans of switchgear and other electrical enclosures allow technicians to monitor and possibly identify faulty or failing components within the device. However, to get an accurate scan, the thermal imaging must be performed while the device is energized and, either with the enclosure panels removed to provide a clear view of the electrical components, or through a viewing window. The windows are typically made of an extremely thin infrared transmissive polymer. However, this thin polymer window must be reinforced with hard material to give it structural integrity so that it does not break or become damaged due to heat or pressure from within the panel. This material is typically perforated with an array of holes such that it forms a protective grill. However, the protective grill adds a layer that may obscure the imaging infrared scanner's view of the electrical components and could interfere with the accuracy of the imaging process.

We disclose a method of securing an infrared transmissive polymer to integrated panels, deadfronts, or transition plates, thus providing a polymer window through which the thermographer can scan an energized unit without being directly exposed to harm.

Further advantages of the invention will become apparent by reference to the detailed description of preferred embodiments when considered in conjunction with the drawings: FIG.

Citations (6)

  • US2004227987A1
  • US3387080A
  • US5735168A
  • US5986211A
  • US6635892B2
  • WO0165046A1
Record as JSON
{
  "publication_number": "US10111351B2",
  "country": "US",
  "kind": "B2",
  "title": "Infrared scanning port",
  "abstract": "We disclose a method for securing an infrared transmissive polymer to integrated panels, deadfronts, or transition plates, thus providing a reinforced polymer window through which the thermographer can scan an energized unit without being directly exposed to contact with internal components or having to remove said panels, deadfronts, or transition plates. We also disclose a device for securing the polymer consisting of a retention frame with half shear retainers that keep the polymer locked in place.",
  "claims": [
    "1. A method for securing an infrared transmissive polymer to a panel of an electrical enclosure, the method comprising: a. aligning half shear retainers on a retention frame with holes in the infrared transmissive polymer and holes in a first side of the panel, the half shear retainers comprising raised protrusions on the retention frame; b. placing the infrared transmissive polymer against the retention frame and over a first side of an opening in the panel; c. inserting the half shear retainers through the holes in the infrared transmissive polymer and into the holes of the panel, the inserted half shear retainers protruding a distance into the panel that is less than the width of the panel; d. coupling the retention frame to the panel; and e. selectively covering a second side of the opening in the panel with a cover to conceal, from the second side of the opening, the infrared transmissive polymer.",
    "2. The method of claim 1, further comprising securing the retention frame to the panel with hardware.",
    "3. The method of claim 2, wherein the hardware are bolts.",
    "4. The method of claim 1, wherein the half shear retainers protrude beyond the plane of the retention frame by a distance of half the width of the retention frame.",
    "5. The method of claim 1, wherein the step of coupling the retention frame to the panel further comprises (1) aligning bolt holes of the infrared transmissive polymer with bolt holes of the panel and bolt holes of the retention frame; and (2) passing a bolt through the aligned bolt holes of the retention frame, infrared transmissive polymer, and panel.",
    "6. The method of claim 1, wherein the step of covering the second side of the opening in the panel with the cover comprises pivotally displacing the cover about a pivot point coupled to the panel from an unclosed position to a closed position.",
    "7. The method of claim 1, further including the step of securing the cover in a covered position over the second side of the opening.",
    "8. The method of claim 7, wherein the step of securing the cover comprises hooking the cover to a bolt that is coupled to the panel.",
    "9. A method for securing an infrared transmissive polymer to a panel of an electrical enclosure, the method comprising: a. positioning the infrared transmissive polymer over a first side of an opening in the panel; b. inserting half shear retainers of a retention frame through corresponding holes in the infrared transmissive polymer; c. inserting the half shear retainers into holes in the panel, the inserted half shear retainers protruding a distance into the panel that is less than the width of the panel; and d. selectively covering a second side of the opening in the panel with a cover.",
    "10. The method of claim 9, wherein the step of covering the second side of the opening comprises displacing the cover from an uncovered position to a covered position, at least a portion of the infrared transmissive polymer being viewable through the second side of the opening when the cover is in the uncovered position and concealed from view through the second side of the opening when the cover is in the covered position.",
    "11. The method of claim 9, further including the step of securing the retention frame against the panel comprising: (1) placing a bolt through a hole in the retention frame; (2) placing the bolt through a hole in the infrared transmissive polymer; (3) placing the bolt through a hole in the panel; and (4) fastening a nut on an opposite side of the panel to the bolt.",
    "12. The method of claim 9, wherein the step of covering the second side of the opening in the panel with the cover comprises pivotally displacing the cover about a pivot point coupled to the panel from an unclosed position to a closed position.",
    "13. The method of claim 9, further including the step of securing the cover in a covered position over the second side of the opening.",
    "14. The method of claim 13, wherein the step of securing the cover comprises hooking the cover to a bolt that is coupled to the panel."
  ],
  "description_excerpt": "The present invention is generally directed toward a method of and device for affixing an infrared transmissive polymer window to a panel of an electrical enclosure.\n\nThermal infrared scans of switchgear and other electrical enclosures allow technicians to monitor and possibly identify faulty or failing components within the device. However, to get an accurate scan, the thermal imaging must be performed while the device is energized and, either with the enclosure panels removed to provide a clear view of the electrical components, or through a viewing window. The windows are typically made of an extremely thin infrared transmissive polymer. However, this thin polymer window must be reinforced with hard material to give it structural integrity so that it does not break or become damaged due to heat or pressure from within the panel. This material is typically perforated with an array of holes such that it forms a protective grill. However, the protective grill adds a layer that may obscure the imaging infrared scanner's view of the electrical components and could interfere with the accuracy of the imaging process.\n\nWe disclose a method of securing an infrared transmissive polymer to integrated panels, deadfronts, or transition plates, thus providing a polymer window through which the thermographer can scan an energized unit without being directly exposed to harm.\n\nFurther advantages of the invention will become apparent by reference to the detailed description of preferred embodiments when considered in conjunction with the drawings: FIG.",
  "cpc": [
    "H05K 5/0239",
    "B23P 11/00",
    "F16B 17/00",
    "F16B 33/00",
    "G01J 5/042",
    "G01J 5/046",
    "G01J 5/048",
    "G01J 5/0875",
    "H01H 2001/0021",
    "H02B 1/306",
    "H02B 3/00",
    "H05K 5/03",
    "Y10T 29/49895",
    "Y10T 403/70",
    "Y10T 403/7075"
  ],
  "ipc": [
    "B23P 11/00",
    "F16B 17/00",
    "F16B 33/00",
    "G01J 5/08",
    "G02B 7/00",
    "H01H 1/00",
    "H02B 1/30",
    "H02B 3/00",
    "H05K 5/02"
  ],
  "assignees": [
    "THOMAS & BETTS INT LLC"
  ],
  "inventors": [
    "SULLIVAN BRIAN RALEIGH",
    "VANSTAVERN MICHAEL DAVID",
    "REDINGER KRISTOFOR LYNN",
    "HACKMAN CHRISTOPHER WILLIAM",
    "RICZINGER RICHARD F"
  ],
  "filing_date": "2015-04-21",
  "publication_date": "2018-10-23",
  "grant_date": "2018-10-23",
  "priority_date": "2011-11-11",
  "application_number": "US-201514692160-A",
  "family_id": "47678453",
  "citations": [
    "US2004227987A1",
    "US3387080A",
    "US5735168A",
    "US5986211A",
    "US6635892B2",
    "WO0165046A1"
  ]
}

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