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Patent · US10355253B2 · B2 · US

Recloser battery assembly with hot stick adaptor and battery tube adaptor

(11) Publication number
US10355253B2
(21) Application number
15/584,932
(22) Filing date
2017-05-02
(30) Priority date
2016-05-02
(43) Publication date
2019-07-16
(45) Date of grant
2019-07-16
(51) IPC
F16B 31/02; H01H 31/00; H01H 75/04; H01M 50/202; H01M 50/204; H01M 50/271; H01M 50/296; H01M 50/574; H01R 11/14; H01R 11/22; H01R 4/22; H02H 7/26; H02J 7/00; H02J 7/24
(52) CPC
  • H01H Electric switches; relays; selectors; emergency protective devices: 31/006, 75/04
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 31/027
  • H01M Processes or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy: 2/022, 2/043, 2/1016, 2/34, 2200/00, 2200/20, 50/107, 50/202, 50/204, 50/271, 50/296, 50/574
  • H01R Electrically-conductive connections; structural associations of a plurality of mutually-insulated electrical connecting elements; coupling devices; current collectors: 11/14, 4/22
  • H02H Emergency protective circuit arrangements: 7/26
  • H02J Electric power networks; circuit arrangements or systems for supplying or distributing electric power; systems for storing electric energy: 7/0026, 7/24, 7/241
  • Y02E Reduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution: 60/10
(73) Assignee
Hubbell Inc
(72) Inventors
Peter M. Agliata
(54) Title
Recloser battery assembly with hot stick adaptor and battery tube adaptor
(57) Abstract

A circuit interrupting device for use with an electrical power distribution system includes a housing containing a circuit interrupting device. A battery tube is positioned in the housing. A battery assembly is configured to be inserted into the battery tube. The battery assembly includes a assembly body having a first end and a second end. A battery is positioned in the assembly body. A cap assembly is connected to the assembly body and configured to connect the battery assembly to the battery tube. The cap assembly includes a torque-limiting device that prevents overtightening of the cap to the battery tube.

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Claims (20)

  1. A circuit interrupting device for use within a power distribution system, comprising: a housing containing a circuit interrupting mechanism and a battery chamber; a battery tube removably connected to the battery chamber; and a battery assembly configured to be coupled to the battery tube, the battery assembly comprising, an assembly body having a first end and a second end, a battery positioned in the assembly body, and a cap connected to the assembly body and configured to connect the battery assembly to the battery tube.
  2. The circuit interrupting device of claim 1, wherein the cap is removably connected to the battery tube.
  3. The circuit interrupting device of claim 1, wherein the battery assembly includes a first keyed portion, and wherein the battery tube includes a second keyed portion configured to mate with the first keyed portion.
  4. The circuit interrupting device of claim 1, further comprising a hot-stick adaptor connected to the cap.
  5. The circuit interrupting device of claim 4, wherein the cap includes a first shoulder and the hot-stick adaptor includes a second shoulder receiving the first shoulder.
  6. The circuit interrupting device of claim 1, wherein the battery tube includes a flange having a plurality of openings.
  7. The circuit interrupting device of claim 1, further comprising an adaptor plate connected to the housing and an adaptor tube connected to the adaptor plate, wherein the battery tube is positioned in and connected to the adaptor tube.
  8. The circuit interrupting device of claim 7, wherein the adaptor plate has a contact portion extending into the battery chamber and the battery tube has a body extending substantially orthogonal to the contact portion.
  9. A circuit interrupting device for use with an electrical power distribution system, comprising: a housing including a circuit interrupting device and a battery chamber; a battery tube releasably connected to the battery chamber and having a first thread; and a battery assembly configured to be inserted into the battery tube, the battery assembly including a cap having second thread configured to mate with the first thread to form a threaded connection, and a hot-stick adaptor having an interior receiving at least a portion of the cap and a connecting portion configured to connect to a hot-stick.
  10. The circuit interrupting device of claim 9, wherein the connecting portion includes a first set of teeth.
  11. The circuit interrupting device of claim 9, wherein the cap includes a protrusion having a notch and hot-stick adaptor includes a channel having an opening aligned with the notch.
  12. The circuit interrupting device of claim 11, further comprising a band engaging the channel and the notch.
  13. The circuit interrupting device of claim 9, wherein the cap includes a first shoulder and the hot-stick adaptor includes a second shoulder receiving the first shoulder.
  14. The circuit interrupting device of claim 11, wherein the hot stick adaptor includes a central conduit extending into the interior, and further comprising a spring pin positioned in the conduit and engaging the battery assembly.
  15. A circuit interrupting device system for use with an electrical power distribution system, comprising: a housing containing a circuit interrupting device and a battery chamber; an adaptor plate configured to be connected to the housing and extend at least partially into the battery chamber; an adaptor tube configured to be connected to the adaptor plate; a battery tube configured to be connected to the battery chamber and configured to be connected to the adaptor tube; and a battery assembly configured to be inserted into the battery tube.
  16. The circuit interrupting device of claim 15, wherein the adaptor plate includes a contact portion having a positive contact and a negative contact.
  17. The circuit interrupting device of claim 16, further comprising a first conductor connected to the positive contact and extending through the adaptor tube and connected to the battery tube and a second conductor connected to the negative contact and extending through the adaptor tube and connected to the battery tube.
  18. The circuit interrupting device of claim 15, wherein the battery chamber has a first longitudinal axis and the adaptor tube has a second longitudinal axis, and wherein the second longitudinal axis is orthogonal to the first longitudinal axis when the adaptor tube is connected to the housing.
  19. The circuit interrupting device of claim 15, wherein the battery tube includes a flange having a series of openings to connect the battery tube to the adaptor tube or to the housing.
  20. The circuit interrupting device of claim 15, wherein the battery assembly is threadably connected to the battery tube and the battery tube is selectively connected to the housing or to the adaptor tube by a fastener.

Description

Various exemplary embodiments relate to a battery tube for a utility line circuit interrupter such as a recloser.

Conventional circuit interrupting devices, such as circuit breakers, and reclosers, provide protection for power distribution systems and the various apparatus on those power distribution systems by isolating a faulted section from the upstream power source in the system. Fault current, or momentary current surges, in the system may occur under various conditions, including lightning, an animal or tree contacting the power lines, or adjacent power lines contacting each other. For example, windy conditions often cause power lines strung between poles to swing, thereby momentarily touching each other or a grounded conductor. These types of transitory events cause momentary power line short circuits that in turn cause fuses to burn or circuit breakers to trip.

Most of the faults occurring on the line are transient faults, as opposed to permanent faults, and do not require permanent protection. Therefore, reclosers are a common solution for clearing these types of transient faults without causing a permanent power outage. Reclosers are typically mounted to support structures in electrical power distribution systems to provide continuous electrical service up to a programmed current threshold. Reclosers detect faults, i.e., overcurrent events past the programmed threshold, and interrupt the load current when the overcurrent event persists for a predetermined amount of time which is determined by the overcurrent value.

Citations (10)

  • US2542132A
  • US4581504A
  • US4956755A
  • US5378549A
  • US20020179571A1
  • US20040144757A1
  • US6794596B2
  • US20040008510A1
  • US20090016050A1
  • US20100177507A1
Record as JSON
{
  "publication_number": "US10355253B2",
  "country": "US",
  "kind": "B2",
  "title": "Recloser battery assembly with hot stick adaptor and battery tube adaptor",
  "abstract": "A circuit interrupting device for use with an electrical power distribution system includes a housing containing a circuit interrupting device. A battery tube is positioned in the housing. A battery assembly is configured to be inserted into the battery tube. The battery assembly includes a assembly body having a first end and a second end. A battery is positioned in the assembly body. A cap assembly is connected to the assembly body and configured to connect the battery assembly to the battery tube. The cap assembly includes a torque-limiting device that prevents overtightening of the cap to the battery tube.",
  "claims": [
    "1. A circuit interrupting device for use within a power distribution system, comprising: a housing containing a circuit interrupting mechanism and a battery chamber; a battery tube removably connected to the battery chamber; and a battery assembly configured to be coupled to the battery tube, the battery assembly comprising, an assembly body having a first end and a second end, a battery positioned in the assembly body, and a cap connected to the assembly body and configured to connect the battery assembly to the battery tube.",
    "2. The circuit interrupting device of claim 1, wherein the cap is removably connected to the battery tube.",
    "3. The circuit interrupting device of claim 1, wherein the battery assembly includes a first keyed portion, and wherein the battery tube includes a second keyed portion configured to mate with the first keyed portion.",
    "4. The circuit interrupting device of claim 1, further comprising a hot-stick adaptor connected to the cap.",
    "5. The circuit interrupting device of claim 4, wherein the cap includes a first shoulder and the hot-stick adaptor includes a second shoulder receiving the first shoulder.",
    "6. The circuit interrupting device of claim 1, wherein the battery tube includes a flange having a plurality of openings.",
    "7. The circuit interrupting device of claim 1, further comprising an adaptor plate connected to the housing and an adaptor tube connected to the adaptor plate, wherein the battery tube is positioned in and connected to the adaptor tube.",
    "8. The circuit interrupting device of claim 7, wherein the adaptor plate has a contact portion extending into the battery chamber and the battery tube has a body extending substantially orthogonal to the contact portion.",
    "9. A circuit interrupting device for use with an electrical power distribution system, comprising: a housing including a circuit interrupting device and a battery chamber; a battery tube releasably connected to the battery chamber and having a first thread; and a battery assembly configured to be inserted into the battery tube, the battery assembly including a cap having second thread configured to mate with the first thread to form a threaded connection, and a hot-stick adaptor having an interior receiving at least a portion of the cap and a connecting portion configured to connect to a hot-stick.",
    "10. The circuit interrupting device of claim 9, wherein the connecting portion includes a first set of teeth.",
    "11. The circuit interrupting device of claim 9, wherein the cap includes a protrusion having a notch and hot-stick adaptor includes a channel having an opening aligned with the notch.",
    "12. The circuit interrupting device of claim 11, further comprising a band engaging the channel and the notch.",
    "13. The circuit interrupting device of claim 9, wherein the cap includes a first shoulder and the hot-stick adaptor includes a second shoulder receiving the first shoulder.",
    "14. The circuit interrupting device of claim 11, wherein the hot stick adaptor includes a central conduit extending into the interior, and further comprising a spring pin positioned in the conduit and engaging the battery assembly.",
    "15. A circuit interrupting device system for use with an electrical power distribution system, comprising: a housing containing a circuit interrupting device and a battery chamber; an adaptor plate configured to be connected to the housing and extend at least partially into the battery chamber; an adaptor tube configured to be connected to the adaptor plate; a battery tube configured to be connected to the battery chamber and configured to be connected to the adaptor tube; and a battery assembly configured to be inserted into the battery tube.",
    "16. The circuit interrupting device of claim 15, wherein the adaptor plate includes a contact portion having a positive contact and a negative contact.",
    "17. The circuit interrupting device of claim 16, further comprising a first conductor connected to the positive contact and extending through the adaptor tube and connected to the battery tube and a second conductor connected to the negative contact and extending through the adaptor tube and connected to the battery tube.",
    "18. The circuit interrupting device of claim 15, wherein the battery chamber has a first longitudinal axis and the adaptor tube has a second longitudinal axis, and wherein the second longitudinal axis is orthogonal to the first longitudinal axis when the adaptor tube is connected to the housing.",
    "19. The circuit interrupting device of claim 15, wherein the battery tube includes a flange having a series of openings to connect the battery tube to the adaptor tube or to the housing.",
    "20. The circuit interrupting device of claim 15, wherein the battery assembly is threadably connected to the battery tube and the battery tube is selectively connected to the housing or to the adaptor tube by a fastener."
  ],
  "description_excerpt": "Various exemplary embodiments relate to a battery tube for a utility line circuit interrupter such as a recloser.\n\nConventional circuit interrupting devices, such as circuit breakers, and reclosers, provide protection for power distribution systems and the various apparatus on those power distribution systems by isolating a faulted section from the upstream power source in the system. Fault current, or momentary current surges, in the system may occur under various conditions, including lightning, an animal or tree contacting the power lines, or adjacent power lines contacting each other. For example, windy conditions often cause power lines strung between poles to swing, thereby momentarily touching each other or a grounded conductor. These types of transitory events cause momentary power line short circuits that in turn cause fuses to burn or circuit breakers to trip.\n\nMost of the faults occurring on the line are transient faults, as opposed to permanent faults, and do not require permanent protection. Therefore, reclosers are a common solution for clearing these types of transient faults without causing a permanent power outage. Reclosers are typically mounted to support structures in electrical power distribution systems to provide continuous electrical service up to a programmed current threshold. Reclosers detect faults, i.e., overcurrent events past the programmed threshold, and interrupt the load current when the overcurrent event persists for a predetermined amount of time which is determined by the overcurrent value.",
  "cpc": [
    "H01H 31/006",
    "F16B 31/027",
    "H01H 75/04",
    "H01M 2/022",
    "H01M 2/043",
    "H01M 2/1016",
    "H01M 2/34",
    "H01M 2200/00",
    "H01M 2200/20",
    "H01M 50/107",
    "H01M 50/202",
    "H01M 50/204",
    "H01M 50/271",
    "H01M 50/296",
    "H01M 50/574",
    "H01R 11/14",
    "H01R 4/22",
    "H02H 7/26",
    "H02J 7/0026",
    "H02J 7/24",
    "H02J 7/241",
    "Y02E 60/10"
  ],
  "ipc": [
    "F16B 31/02",
    "H01H 31/00",
    "H01H 75/04",
    "H01M 50/202",
    "H01M 50/204",
    "H01M 50/271",
    "H01M 50/296",
    "H01M 50/574",
    "H01R 11/14",
    "H01R 11/22",
    "H01R 4/22",
    "H02H 7/26",
    "H02J 7/00",
    "H02J 7/24"
  ],
  "assignees": [
    "Hubbell Inc"
  ],
  "inventors": [
    "Peter M. Agliata"
  ],
  "filing_date": "2017-05-02",
  "publication_date": "2019-07-16",
  "grant_date": "2019-07-16",
  "priority_date": "2016-05-02",
  "application_number": "US-201715584932-A",
  "family_id": "60156973",
  "cited_by_count": 0,
  "citations": [
    "US2542132A",
    "US4581504A",
    "US4956755A",
    "US5378549A",
    "US20020179571A1",
    "US20040144757A1",
    "US6794596B2",
    "US20040008510A1",
    "US20090016050A1",
    "US20100177507A1"
  ]
}

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