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Patent · US10770189B2 · B2 · US

Magnetically-actuated isolated rod couplings for use in a nuclear reactor control rod drive

(11) Publication number
US10770189B2
(21) Application number
15/646,117
(22) Filing date
2017-07-11
(30) Priority date
2016-07-13
(43) Publication date
2020-09-08
(45) Date of grant
2020-09-08
(51) IPC
F16B 1/00; G21C 7/12; G21C 7/14
(52) CPC
  • G21C Nuclear reactors: 7/14, 13/02, 15/02, 17/10, 7/12, 9/02
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 2001/0035, 2200/83
  • H01F Magnets; inductances; transformers; selection of materials for their magnetic properties: 7/08
  • H02K Dynamo-electric machines: 41/02, 41/031, 7/116, 9/19
  • Y02E Reduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution: 30/30, 30/39
(73) Assignee
GE HITACHI NUCLEAR ENERGY AMERICAS LLC
(72) Inventors
MORGAN KENNETH A; MAJOR DAVID L; BROWN RANDY M; DEAVER GERALD A
(54) Title
Magnetically-actuated isolated rod couplings for use in a nuclear reactor control rod drive
(57) Abstract

Control rod drives include linearly-moveable control elements inside an isolation barrier. Control rod drives move the control element through a motor and rotor powering a linear screw internal to an isolation barrier. Induction coils may generate magnetic fields and be moveable across a full stroke length of the control element in the reactor. The magnetic fields hold closed a releasable latch to disconnect the control elements from the linear drives. A control rod assembly may join to the control element. The control rod assembly may lock with magnetic overtravel latches inside the isolation barrier to maintain an overtravel position. Overtravel release coils outside the isolation barrier may release the latches to leave the overtravel position. Operation includes moving the magnetic fields and releasable latch together on opposite sides of an isolation barrier to drive the control element to desired insertion points, including full insertion by gravity following de-energization.

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Claims (10)

  1. A control rod drive for positioning a control element in a nuclear reactor, the drive comprising: a control element; a linear drive; a releasable latch between the control element and linear drive, wherein the releasable latch secures the control element with the linear drive when subject to a magnetic field and releases the control element from the linear drive when not subject to the magnetic field; and an induction coil or magnetic material selectively generating the magnetic field, wherein the induction coil or magnetic material is configured to move in unison with the releasable latch across a stroke distance of the control element.
  2. The control rod drive of claim 1, further comprising: an isolation barrier impermeable to gasses and fluids, wherein the releasable latch is inside the isolation barrier and the coil or magnetic material is outside the isolation barrier.
  3. The control rod drive of claim 1, further comprising: a housing containing the linear drive, releasable latch, and the induction coil or magnetic material.
  4. The control rod drive of claim 1, further comprising: a plurality of magnetic overtravel latches inside the isolation barrier configured to hold the control element in an overtravel position; and a plurality of overtravel release coils outside the isolation barrier configured to move the overtravel latches into a release position.
  5. The control rod drive of claim 4, wherein each of the magnetic overtravel latches includes a spring biasing the overtravel latch into a holding position, and wherein the overtravel release coils are configured to bias compress the spring through magnetic force.
  6. A control rod drive for positioning a control element in a nuclear reactor, the drive comprising: a control element; a linear drive; a releasable latch between the control element and linear drive, wherein the releasable latch secures the control element with the linear drive when subject to a magnetic field and releases the control element from the linear drive when not subject to the magnetic field; an induction coil or magnetic material selectively generating the magnetic field; and an outer linear screw, wherein the induction coil or magnetic material is mounted on the outer linear screw so as to vertically move with rotation of the outer linear screw.
  7. The control rod drive of claim 6, wherein the linear drive includes an inner linear screw, wherein the releasable latch is mounted on the inner linear screw so as to vertically move with rotation of the inner linear screw.
  8. The control rod drive of claim 7, wherein the linear drive further includes a motor and inner rotor configured to rotate the inner linear screw, and wherein the motor is further connected with an outer rotor configured to rotate the outer linear screw so as to synchronously move the releasable latch and the induction coil or magnetic material on opposite sides of the isolation barrier.
  9. A control rod drive for positioning a control element in a nuclear reactor, the drive comprising: a control element; a linear drive; a releasable latch between the control element and linear drive, wherein the releasable latch secures the control element with the linear drive when subject to a magnetic field and releases the control element from the linear drive when not subject to the magnetic field, wherein the releasable latch includes, a plurality of magnetized plungers each having a variable diameter, a plurality of springs each coupled to one of the plungers so as to drive the plungers opposite the magnetic field, and a plurality of balls joining the control element and linear drive, wherein each ball is biased against the one of the magnetized plungers such that the variable diameter moves the ball into and out of a joining configuration based on linear movement of the plungers; and an induction coil or magnetic material selectively generating the magnetic field.
  10. The control rod drive of claim 9, wherein the plungers compress the springs when subject to the magnetic field, and wherein the balls maintain a joining configuration when the plungers are subject to the magnetic field.

Description

FIG. 1 is an illustration of a drive rod-control rod assembly (CRA) connection 10 useable with example embodiment control drives. In most conventional PWR control rod assemblies, drive rod 11 and actuating rod 12 extend in lateral support tube 16 from above a reactor pressure vessel 1 down to a lockable spud or bayonet 13 that joins to CRA 15 via locking plug 14. CRA 15 contains neutron absorbent materials what can be used to control a nuclear chain reaction based on an amount of vertical insertion. Control rods are driven from above by vertical movement of actuating rod 12 and drive rod 13, under force from the control rod drive mechanism. The following documents are incorporated herein by reference in their entireties: U.S. Pat Pub 2015/0255178 to Tsuchiya et al; U.S. Pat. No. 4,423,002 to Wiart et al.; U.S. Pat. No. 4,369,161 to Martin; U.S. Pat. No. 4,338,159 to Martin et al.; U.S. Pat. No. 4,044,622 to Matthews; U.S. Pat. No. 9,305,669 to Hyde et al.; U.S. Pat. No. 3,933,581 to McKeehan et al.; U.S. Pat. No. 4,048,010 to Eschenfelder et al.; U.S. Pat. No. 4,092,213 to Nishimura; U.S. Pat. No. 4,147,589 to Roman et al.; U.S. Pat. No. 4,288,898 to Adcock; U.S. Pat. No. 4,484,093 to Smith; U.S. Pat. No. 5,276,719 to Batheja; U.S. Pat. No. 8,915,161 to Akatsuka et al.; U.S. Pat. No. 4,518,559 to Fischer et al.; U.S. Pat. No. 5,517,536 to Goldberg et al.; U.S. Pat. No. 5,428,873 to Hitchcock et al.; U.S. Pat. No. 8,571,162 to Maruyama et al.; U.S. Pat. No. 8,757,065 to Fjerstad et al.; U.S. Pat. No. 5,778,034 to Tani; U.S. Pat. No. 9,336,910 to Shargots et al.; U.S. Pat. No. 3,941,653 to Thorp, II; U.S. Pat. No.

Citations (31)

  • FR3016075A1
  • GB927522A
  • US2015255178A1
  • US2841026A
  • US3096111A
  • US3158766A
  • US3853699A
  • US3933581A
  • US3941653A
  • US3992255A
  • US4044622A
  • US4048010A
  • US4092213A
  • US4147589A
  • US4288898A
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  • US4369161A
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  • US9305669B2
  • US9336910B2
Record as JSON
{
  "publication_number": "US10770189B2",
  "country": "US",
  "kind": "B2",
  "title": "Magnetically-actuated isolated rod couplings for use in a nuclear reactor control rod drive",
  "abstract": "Control rod drives include linearly-moveable control elements inside an isolation barrier. Control rod drives move the control element through a motor and rotor powering a linear screw internal to an isolation barrier. Induction coils may generate magnetic fields and be moveable across a full stroke length of the control element in the reactor. The magnetic fields hold closed a releasable latch to disconnect the control elements from the linear drives. A control rod assembly may join to the control element. The control rod assembly may lock with magnetic overtravel latches inside the isolation barrier to maintain an overtravel position. Overtravel release coils outside the isolation barrier may release the latches to leave the overtravel position. Operation includes moving the magnetic fields and releasable latch together on opposite sides of an isolation barrier to drive the control element to desired insertion points, including full insertion by gravity following de-energization.",
  "claims": [
    "1. A control rod drive for positioning a control element in a nuclear reactor, the drive comprising: a control element; a linear drive; a releasable latch between the control element and linear drive, wherein the releasable latch secures the control element with the linear drive when subject to a magnetic field and releases the control element from the linear drive when not subject to the magnetic field; and an induction coil or magnetic material selectively generating the magnetic field, wherein the induction coil or magnetic material is configured to move in unison with the releasable latch across a stroke distance of the control element.",
    "2. The control rod drive of claim 1, further comprising: an isolation barrier impermeable to gasses and fluids, wherein the releasable latch is inside the isolation barrier and the coil or magnetic material is outside the isolation barrier.",
    "3. The control rod drive of claim 1, further comprising: a housing containing the linear drive, releasable latch, and the induction coil or magnetic material.",
    "4. The control rod drive of claim 1, further comprising: a plurality of magnetic overtravel latches inside the isolation barrier configured to hold the control element in an overtravel position; and a plurality of overtravel release coils outside the isolation barrier configured to move the overtravel latches into a release position.",
    "5. The control rod drive of claim 4, wherein each of the magnetic overtravel latches includes a spring biasing the overtravel latch into a holding position, and wherein the overtravel release coils are configured to bias compress the spring through magnetic force.",
    "6. A control rod drive for positioning a control element in a nuclear reactor, the drive comprising: a control element; a linear drive; a releasable latch between the control element and linear drive, wherein the releasable latch secures the control element with the linear drive when subject to a magnetic field and releases the control element from the linear drive when not subject to the magnetic field; an induction coil or magnetic material selectively generating the magnetic field; and an outer linear screw, wherein the induction coil or magnetic material is mounted on the outer linear screw so as to vertically move with rotation of the outer linear screw.",
    "7. The control rod drive of claim 6, wherein the linear drive includes an inner linear screw, wherein the releasable latch is mounted on the inner linear screw so as to vertically move with rotation of the inner linear screw.",
    "8. The control rod drive of claim 7, wherein the linear drive further includes a motor and inner rotor configured to rotate the inner linear screw, and wherein the motor is further connected with an outer rotor configured to rotate the outer linear screw so as to synchronously move the releasable latch and the induction coil or magnetic material on opposite sides of the isolation barrier.",
    "9. A control rod drive for positioning a control element in a nuclear reactor, the drive comprising: a control element; a linear drive; a releasable latch between the control element and linear drive, wherein the releasable latch secures the control element with the linear drive when subject to a magnetic field and releases the control element from the linear drive when not subject to the magnetic field, wherein the releasable latch includes, a plurality of magnetized plungers each having a variable diameter, a plurality of springs each coupled to one of the plungers so as to drive the plungers opposite the magnetic field, and a plurality of balls joining the control element and linear drive, wherein each ball is biased against the one of the magnetized plungers such that the variable diameter moves the ball into and out of a joining configuration based on linear movement of the plungers; and an induction coil or magnetic material selectively generating the magnetic field.",
    "10. The control rod drive of claim 9, wherein the plungers compress the springs when subject to the magnetic field, and wherein the balls maintain a joining configuration when the plungers are subject to the magnetic field."
  ],
  "description_excerpt": "FIG. 1 is an illustration of a drive rod-control rod assembly (CRA) connection 10 useable with example embodiment control drives. In most conventional PWR control rod assemblies, drive rod 11 and actuating rod 12 extend in lateral support tube 16 from above a reactor pressure vessel 1 down to a lockable spud or bayonet 13 that joins to CRA 15 via locking plug 14. CRA 15 contains neutron absorbent materials what can be used to control a nuclear chain reaction based on an amount of vertical insertion. Control rods are driven from above by vertical movement of actuating rod 12 and drive rod 13, under force from the control rod drive mechanism. The following documents are incorporated herein by reference in their entireties: U.S. Pat Pub 2015/0255178 to Tsuchiya et al; U.S. Pat. No. 4,423,002 to Wiart et al.; U.S. Pat. No. 4,369,161 to Martin; U.S. Pat. No. 4,338,159 to Martin et al.; U.S. Pat. No. 4,044,622 to Matthews; U.S. Pat. No. 9,305,669 to Hyde et al.; U.S. Pat. No. 3,933,581 to McKeehan et al.; U.S. Pat. No. 4,048,010 to Eschenfelder et al.; U.S. Pat. No. 4,092,213 to Nishimura; U.S. Pat. No. 4,147,589 to Roman et al.; U.S. Pat. No. 4,288,898 to Adcock; U.S. Pat. No. 4,484,093 to Smith; U.S. Pat. No. 5,276,719 to Batheja; U.S. Pat. No. 8,915,161 to Akatsuka et al.; U.S. Pat. No. 4,518,559 to Fischer et al.; U.S. Pat. No. 5,517,536 to Goldberg et al.; U.S. Pat. No. 5,428,873 to Hitchcock et al.; U.S. Pat. No. 8,571,162 to Maruyama et al.; U.S. Pat. No. 8,757,065 to Fjerstad et al.; U.S. Pat. No. 5,778,034 to Tani; U.S. Pat. No. 9,336,910 to Shargots et al.; U.S. Pat. No. 3,941,653 to Thorp, II; U.S. Pat. No.",
  "cpc": [
    "G21C 7/14",
    "F16B 2001/0035",
    "F16B 2200/83",
    "G21C 13/02",
    "G21C 15/02",
    "G21C 17/10",
    "G21C 7/12",
    "G21C 9/02",
    "H01F 7/08",
    "H02K 41/02",
    "H02K 41/031",
    "H02K 7/116",
    "H02K 9/19",
    "Y02E 30/30",
    "Y02E 30/39"
  ],
  "ipc": [
    "F16B 1/00",
    "G21C 7/12",
    "G21C 7/14"
  ],
  "assignees": [
    "GE HITACHI NUCLEAR ENERGY AMERICAS LLC"
  ],
  "inventors": [
    "MORGAN KENNETH A",
    "MAJOR DAVID L",
    "BROWN RANDY M",
    "DEAVER GERALD A"
  ],
  "filing_date": "2017-07-11",
  "publication_date": "2020-09-08",
  "grant_date": "2020-09-08",
  "priority_date": "2016-07-13",
  "application_number": "US-201715646117-A",
  "family_id": "60941238",
  "citations": [
    "FR3016075A1",
    "GB927522A",
    "US2015255178A1",
    "US2841026A",
    "US3096111A",
    "US3158766A",
    "US3853699A",
    "US3933581A",
    "US3941653A",
    "US3992255A",
    "US4044622A",
    "US4048010A",
    "US4092213A",
    "US4147589A",
    "US4288898A",
    "US4338159A",
    "US4369161A",
    "US4423002A",
    "US4472348A",
    "US4484093A",
    "US4518559A",
    "US5276719A",
    "US5428873A",
    "US5517536A",
    "US5778034A",
    "US8571162B2",
    "US8757065B2",
    "US8811562B2",
    "US8915161B2",
    "US9305669B2",
    "US9336910B2"
  ]
}

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