WO2016038769A1 - Appareil à contact électromagnétique - Google Patents

Appareil à contact électromagnétique Download PDF

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Publication number
WO2016038769A1
WO2016038769A1 PCT/JP2015/003171 JP2015003171W WO2016038769A1 WO 2016038769 A1 WO2016038769 A1 WO 2016038769A1 JP 2015003171 W JP2015003171 W JP 2015003171W WO 2016038769 A1 WO2016038769 A1 WO 2016038769A1
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WO
WIPO (PCT)
Prior art keywords
contact
contact mechanism
movable plunger
partition member
movable
Prior art date
Application number
PCT/JP2015/003171
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English (en)
Japanese (ja)
Inventor
中 康弘
幸悦 高谷
鈴木 健司
友樹 田嶋
雄二 柴
Original Assignee
富士電機機器制御株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 富士電機機器制御株式会社 filed Critical 富士電機機器制御株式会社
Priority to JP2016547659A priority Critical patent/JP6237916B2/ja
Priority to CN201580010449.9A priority patent/CN106062913B/zh
Publication of WO2016038769A1 publication Critical patent/WO2016038769A1/fr

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H50/00Details of electromagnetic relays
    • H01H50/16Magnetic circuit arrangements
    • H01H50/18Movable parts of magnetic circuits, e.g. armature
    • H01H50/20Movable parts of magnetic circuits, e.g. armature movable inside coil and substantially lengthwise with respect to axis thereof; movable coaxially with respect to coil
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H50/00Details of electromagnetic relays
    • H01H50/54Contact arrangements

Definitions

  • the present invention relates to an electromagnetic contactor that opens and closes a current path.
  • the electromagnetic contactor described in Patent Document 1 includes a contact mechanism having a pair of fixed contacts, a movable contact that can be contacted with and separated from the pair of fixed contacts, and an electromagnet unit that drives the contact mechanism.
  • the electromagnet unit includes a movable plunger coupled to a movable contact of a contact mechanism by a coupling shaft, and an exciting coil that generates a magnet by the electromagnet unit by excitation to drive the movable plunger.
  • the contact mechanism is accommodated in the contact mechanism accommodation case joined to the upper surface of the magnetic yoke.
  • the movable plunger of the electromagnet unit is disposed so that the movable plunger through-hole formed in the magnetic yoke can be inserted vertically, and is accommodated in a cap joined to the lower surface of the magnetic yoke.
  • the contact mechanism housing case and the cap form a sealed container communicated via a movable plunger through hole formed in the magnetic yoke.
  • a return spring is provided between the bottom of the movable plunger and the bottom of the cap.
  • the contact mechanism accommodation space for accommodating the contact mechanism and the movable plunger accommodation space for accommodating the movable plunger are partitioned by a partition member inserted through the connecting shaft.
  • the movable contact member is pushed back from the contact mechanism housing space having a high internal pressure to the movable plunger housing space side (downward side) having a low internal pressure, and the movable contact member has a pair of fixed contacts in the middle of release. A phenomenon occurs in which the child comes into contact again and the current supply to the load side fails to be cut off.
  • an object of the present invention is to partition the contact mechanism housing space that houses the contact mechanism and the movable plunger housing space that houses the movable plunger by the partition member. It is an object of the present invention to provide an electromagnetic contactor including a sealed housing chamber configured to stably operate a movable plunger and a movable contact during a releasing operation.
  • an electromagnetic contactor includes a contact mechanism having a pair of fixed contacts and a movable contact that can be moved toward and away from the pair of fixed contacts, and the movable contact.
  • An electromagnet unit that drives the contact mechanism, and a sealed accommodation chamber that accommodates the contact mechanism, the connection shaft, and the movable plunger.
  • the partition member that is inserted through the connecting shaft is configured to partition the contact mechanism housing space that houses the contact mechanism and the movable plunger housing space that houses the movable plunger.
  • the partition member includes the contact mechanism housing space and the movable mechanism.
  • the gist of the present invention is to provide a communication portion for communicating with the plunger accommodating space.
  • the partition member is provided with the communication portion that allows the contact mechanism accommodation space and the movable plunger accommodation space to communicate with each other, so that the gas in the contact mechanism accommodation space can be moved through the communication portion.
  • the internal pressure of the contact mechanism accommodating space and the internal pressure of the movable plunger accommodating space are equal to each other through the communicating portion even during the release operation. For this reason, in the electromagnetic contactor having a sealed housing chamber configured to partition the contact mechanism housing space for housing the contact mechanism by the partition member and the movable plunger housing space for housing the movable plunger, in the release operation
  • FIG. 2 is an exploded perspective view showing a storage chamber, a fixed plunger, a spool, an excitation coil wound around the spool, and a lower magnetic yoke in the electromagnetic contactor shown in FIG. 1.
  • FIG. 2 is an exploded perspective view showing a storage chamber, a fixed plunger, a spool, an excitation coil wound around the spool, and a lower magnetic yoke in the electromagnetic contactor shown in FIG. 1.
  • It is a disassembled perspective view of the electromagnetic contactor shown in FIG. It is the perspective view which looked at the insulation cylinder part which comprises the electromagnetic contactor shown in FIG. 1 from diagonally upward.
  • the permanent magnet which comprises the electromagnetic contactor shown in FIG. 1 from the diagonally downward side.
  • It is a figure for demonstrating the effect
  • the electromagnetic contactor according to the first embodiment of the present invention is shown in FIGS. 1 to 6.
  • the electromagnetic contactor 1 includes a contact mechanism 2, an electromagnet unit 3 that drives the contact mechanism 2, and a contact mechanism 2. And a sealed housing chamber 4 for housing a connecting shaft 37 and a movable plunger 35, which will be described later.
  • the contact mechanism 2 is housed in a contact mechanism housing case 5 that constitutes the housing chamber 4, and the contact mechanism housing case 5 closes a metallic rectangular tube 6 and the upper end of the rectangular tube 6. And a flat ceramic insulating substrate 7.
  • the rectangular tube body 6 has a flange portion 6 a that protrudes outward at the lower end portion, and the flange portion 6 a is sealed and joined to the upper surface of a magnetic yoke 8 (described later) constituting the storage chamber 4.
  • a pair of through holes 7a and 7b are formed in the insulating substrate 7 at a predetermined interval.
  • a metallization process is performed on the periphery of the through holes 7 a and 7 b on the upper surface of the insulating substrate 7 and the position where the rectangular tube 6 contacts on the lower surface of the insulating substrate 7.
  • the contact mechanism 2 includes a pair of fixed contacts 23 and 24 (hereinafter referred to as a first conductor portion 21 and a second conductor portion 22) fixed to the insulating substrate 7 via a pair of conductor portions 21 and 22 (hereinafter referred to as a first conductor portion 21 and a second conductor portion 22). And the first fixed contact 23 and the second fixed contact 24), and the movable contact 25 arranged so as to be able to contact with and separate from the first fixed contact 23 and the second fixed contact 24. I have.
  • the first conductor portion 21 is inserted and fixed in the through hole 7a of the insulating substrate 7, and the second conductor portion 22 is inserted and fixed in the through hole 7b of the insulating substrate 7.
  • the first fixed contact 23 is a C-shaped conductive plate made of copper or the like in a side view, and extends upward along the lower surface of the insulating substrate 7 and the outer side of the upper plate 23a.
  • An intermediate plate portion 23b extending downward from the end portion and a lower plate portion 23c extending inward from the lower end portion of the intermediate plate portion 23b in parallel with the upper plate portion 23a are provided.
  • the lower plate portion 23c includes a first contact portion 23d that extends below the movable contact 25 and contacts the first contact portion of the movable contact 25 on the upper surface thereof.
  • the second fixed contact 24 is also a C-shaped conductive plate made of copper or the like in a side view, like the first fixed contact 23, and extends upward along the lower surface of the insulating substrate 7. 24a, an intermediate plate portion 24b extending downward from the outer end portion of the upper plate portion 24a, and a lower plate portion 24c extending inward from the lower end portion of the intermediate plate portion 24b in parallel with the upper plate portion 24a. .
  • the lower plate portion 24c includes a second contact portion 24d that extends below the movable contact 25 and contacts the second contact portion of the movable contact 25 on the upper surface thereof.
  • Each of the first fixed contact 23 and the second fixed contact 24 is fixed to the first conductor portion 21 and the second conductor portion 22, respectively. As a fixing method thereof, brazing, screwing, or the like can be given. It is done.
  • a C-shaped magnetic plate 28 is mounted as viewed from above so as to cover the inner surface of the intermediate plate portion 23b of the first fixed contact 23 and the inner surface of the intermediate plate portion 24b of the second fixed contact 24.
  • a synthetic resin insulating cover 26 that restricts the occurrence of arc is attached to the first fixed contact 23
  • an insulating cover 27 made of synthetic resin that restricts the occurrence of arc is also attached to the second fixed contact 24.
  • the movable contact 25 is a conductive plate that is long in the left-right direction in FIG. 1 and made of copper or the like as a material, and both end portions are arranged in the first fixed contact 23 and the second fixed contact 24. It is arranged.
  • the movable contact 25 is supported by a connecting shaft 37 fixed to a movable plunger 35 described later of the electromagnet unit 3.
  • a through hole through which the connecting shaft 37 is inserted is formed at the center of the movable contact 25.
  • a flange portion 37 a is formed to protrude outward at a substantially central portion in the vertical direction of the connecting shaft 37.
  • the movable contact 25 is placed on the flange portion 37 a through the through hole from above the connecting shaft 37.
  • the contact spring 39 is inserted from above the connecting shaft 37, the fixing member 38 is inserted from above the connecting shaft 37 to the connecting shaft 37, and the upper end of the contact spring 39 is adjusted so as to obtain a predetermined urging force by the contact spring 39. It is stopped by the fixing member 38.
  • the movable contact 25 is in a released state, and the first contact portion and the second contact portion at both ends are respectively the first contact portion 23d of the first fixed contact 23 and the second contact portion 24d of the second fixed contact 24. They are in a state of being separated from each other at a predetermined interval.
  • the movable contact 25 is in the closing position, and the first contact portion and the second contact portion at both ends are the first contact portion 23d of the first fixed contact 23 and the second contact portion 24d of the second fixed contact 24, respectively. These are set so as to come into contact with each of them at a predetermined contact pressure by the contact spring 39. Moreover, as shown in FIG.
  • the insulating cylinder part 14 formed in the shape of a bottomed square cylinder is arrange
  • the insulating cylinder portion 14 includes a flat plate portion 14 a having an insertion hole 14 e for the connecting shaft 37 in the center portion, and both end edges in the direction in which the movable contact 25 of the flat plate portion 14 a extends.
  • the insulating cylinder portion 14 is formed by molding an insulating synthetic resin, for example.
  • the insulating cylinder portion 14 has an insulating function to block the influence of the arc on the metal square cylinder body 6.
  • the insulating cylinder portion 14 has a connecting shaft 37 inserted vertically through an insertion hole 14 e formed in the flat plate portion 14 a, and in this state, above and outside the partition member 10 described later. And in the contact mechanism housing case 5 so as to cover the outside of the contact mechanism 2. More specifically, the insulating tube portion 14 covers the upper side of the foreign matter intrusion preventing member 13 constituting the partition member 10 with the flat plate portion 14a, and the pair of downward extending portions 14b has the foreign matter intrusion preventing member 13, the auxiliary yoke 12, and The outer side of the permanent magnet 11 is covered, and the outer side of the contact mechanism 2 is covered with the peripheral wall portion 14d.
  • the electromagnet unit 3 has a U-shaped lower magnetic yoke 31 as viewed from the side, and a fixed plunger 32 is disposed at the center of the bottom plate portion of the lower magnetic yoke 31.
  • a spool 33 is disposed outside the fixed plunger 32.
  • the spool 33 includes a central cylindrical portion 33a through which the fixed plunger 32 is inserted, a lower flange portion 33b projecting radially outward from a lower end portion of the central cylindrical portion 33a, and an upper end portion of the central cylindrical portion 33a. And an upper flange portion 33c protruding outward in the radial direction.
  • an exciting coil 34 is wound around a storage space formed by a central cylindrical portion 33a, a lower flange portion 33b, and an upper flange portion 33c of the spool 33.
  • a plate-like magnetic yoke 8 is fixed to the upper end that is the open end of the lower magnetic yoke 31.
  • a movable plunger through hole 8 a is formed at the center of the magnetic yoke 8.
  • a cap 9 formed in a bottomed cylindrical shape is disposed on the upper portion of the fixed plunger 32 disposed in the central cylindrical portion 33 a of the spool 33, and radially outwardly provided on the open end of the cap 9.
  • the protruding flange portion 9 a is sealed and joined to the lower surface of the magnetic yoke 8.
  • a sealed container (accommodating chamber 4) is formed in which the contact mechanism accommodating case 5 and the cap 9 are communicated with each other via the movable plunger through hole 8a of the magnetic yoke 8.
  • a movable plunger 35 having a return spring 36 disposed at the bottom is accommodated so as to be movable in the vertical direction.
  • the movable plunger 35 includes a cylindrical portion that is accommodated in the cap 9 so as to be movable in the vertical direction, and a peripheral flange portion 35a that is provided at the upper end of the cylindrical portion and projects outward in the radial direction.
  • the cylindrical portion of the movable plunger 35 passes through the movable plunger through-hole 8a of the magnetic yoke 8 in the vertical direction, and the peripheral flange portion 35a of the movable plunger 35 has a larger outer diameter than the movable plunger through-hole 8a. It is arranged above.
  • the permanent magnet 11 formed in an annular shape having a square outer shape and a circular central opening is provided on the upper surface of the magnetic yoke 8 with the peripheral flange portion 35 a of the movable plunger 35. It is fixed to surround.
  • the permanent magnet 11 is magnetized in the vertical direction, that is, in the thickness direction so that the upper end side is, for example, the N pole and the lower end side is the S pole.
  • An auxiliary yoke 12 having a through hole 12 a having the same outer shape as the permanent magnet 11 and having an inner diameter smaller than that of the peripheral flange portion 35 a of the movable plunger 35 is fixed to the upper surface of the permanent magnet 11.
  • the connecting shaft 37 is inserted through the through hole 12a in the vertical direction.
  • an elastic plate-like foreign matter intrusion preventing member 13 is fixed to the upper surface of the auxiliary yoke 12.
  • This foreign matter intrusion prevention member 13 has an outer shape that is substantially the same size as the auxiliary yoke 12, and has a through hole 13 a that passes through the connecting shaft 37 in the vertical direction at the center and has an inner diameter that contacts the outer peripheral surface of the connecting shaft 37.
  • the foreign matter intrusion preventing member 13 is made of rubber, for example.
  • This foreign matter intrusion prevention member 13 is configured to prevent foreign matters such as melts and soot generated near the first contact portion 23d of the first fixed contact 23 and the second contact portion 24d of the second fixed contact 24 from It has a function of preventing this foreign matter from entering the movable plunger 35 side when it falls downward through the insertion hole 14e.
  • the foreign matter intrusion preventing member 13 is elastic and has a function of urging the insulating cylinder portion 14 located above the foreign matter intrusion preventing member 13 upward.
  • a plate-like magnetic yoke 8 having a movable plunger through-hole 8a that passes through the movable plunger 35 in the vertical direction, a contact mechanism housing case 5 that is joined to the upper surface of the magnetic yoke 8 and houses the contact mechanism 2 therein,
  • a sealed housing that houses the contact mechanism 2, the connecting shaft 37, and the movable plunger 35 by a cap 9 that is joined to the lower surface of the magnetic yoke 8 and that houses the movable plunger 35 therein.
  • the chamber 4 is configured.
  • a gas such as hydrogen gas, nitrogen gas, a mixed gas of hydrogen and nitrogen, air, or SF 6 is sealed in the sealed storage chamber 4. As shown in FIG.
  • the storage chamber 4 includes a contact mechanism storage space A for storing the contact mechanism 2 and a movable plunger storage space B for storing the movable plunger 35 by the partition member 10 inserted through the connecting shaft 37. It is configured to partition.
  • the partition member 10 is provided with a communication portion 11a that allows the contact mechanism accommodation space A and the movable plunger accommodation space B to communicate with each other.
  • the partition member 10 is fixed to the upper surface of the magnetic yoke 8 and the magnetic yoke 8, and is formed so as to surround the peripheral flange portion 35 a of the movable plunger 35.
  • 11 and the above-described plate-like auxiliary yoke 12 fixed to the upper surface of the permanent magnet 11 and passing through the connecting shaft 37 in the vertical direction, and fixed to the upper surface of the auxiliary yoke 12 and passing through the connecting shaft 37 in the vertical direction. It is comprised with the plate-shaped foreign material penetration
  • the partition member 10 partitions the contact mechanism storage space A formed above and outside the partition member 10 and the movable plunger storage space B formed inside the partition member 10. .
  • the insulating cylinder portion 14 is disposed inside the contact mechanism housing case 5.
  • the insulating cylinder portion 14 has a connecting shaft 37 inserted vertically through an insertion hole 14e formed in the flat plate portion 14a.
  • the contact mechanism housing space A is disposed so as to be covered with the portion 14a and the pair of downward extending portions 14b and to cover the outside of the contact mechanism 2 with the peripheral wall portion 14d.
  • the contact mechanism housing space A on the contact mechanism 2 side and the contact mechanism housing space A on the partition member 10 side communicate with the upper end of the peripheral wall portion 14 d of the insulating cylinder portion 14.
  • the cylinder communication part 14f to be made is formed. For this reason, the contact mechanism housing space A on the contact mechanism 2 side and the contact mechanism housing space A on the partition member 10 side sandwiching the insulating cylinder portion 14 in the contact mechanism housing space A communicate with each other via the tube portion communication portion 14f.
  • the internal pressure in the contact mechanism accommodation space A on the contact mechanism 2 side and the contact mechanism accommodation space A on the partition member 10 side is uniform.
  • the lower surface of the permanent magnet 11 which comprises the partition member 10 is comprised by the groove
  • a communication portion 11a is formed.
  • a plurality of communication portions 11 a formed on the lower surface of the permanent magnet 11 are provided on the lower surfaces of both end portions in the direction in which the movable contact 25 of the permanent magnet 11 extends (in the first embodiment). Are formed at each end, two in total, four).
  • each communication portion 11 a is formed by a groove that is continuous from the outer end edge toward the inner end edge on the lower surface of each end portion in the direction in which the movable contact 25 of the permanent magnet 11 extends. .
  • the communication part 11a formed in the lower surface of the permanent magnet 11 makes the contact mechanism accommodation space A and the movable plunger accommodation space B on the partition member 10 side communicate with each other as shown in FIG. Thereby, the internal pressure in the contact mechanism accommodation space A on the contact mechanism 2 side and the contact mechanism accommodation space A on the partition member 10 side is equal to the internal pressure in the movable plunger accommodation space B.
  • the insulating cylinder portion 14 is not necessarily provided. When the insulating cylinder portion 14 is not provided, the communication portion 11a formed on the lower surface of the permanent magnet 11 includes the contact mechanism accommodating space A and the movable plunger without the insulating cylinder portion 14. The accommodation space B is communicated.
  • the first conductor portion 21 connected to the first fixed contact 23 is connected to, for example, a power supply source that supplies a large current
  • the second conductor portion 22 connected to the second fixed contact 24 is connected to the load device. It shall be connected.
  • the exciting coil 34 in the electromagnet unit 3 is in a non-excited state and the electromagnet unit 3 is in a released state in which no attractive force is generated to lower the movable plunger 35.
  • the first contact portion and the second contact portion of the movable contact 25 of the contact mechanism 2 connected to the movable plunger 35 via the connecting shaft 37 are the first contact portion 23d of the first fixed contact 23,
  • the second stationary contact 24 is spaced apart from the second contact portion 24d by a predetermined distance. For this reason, the current path between the first stationary contact 23 and the second stationary contact 24 is in a cut-off state, and the contact mechanism 2 is in an open state.
  • the contact mechanism accommodation space A and the movable plunger accommodation space B communicate with each other via the communication portion 11a, and the gas in the contact mechanism accommodation space A and the gas in the movable plunger accommodation space B circulate.
  • the internal pressure of the contact mechanism housing space A and the internal pressure of the movable plunger housing space B are equal.
  • the movable contact 25 connected to the movable plunger 35 via the connection shaft 37 is also lowered, and the first contact portion and the first contact portion of the movable contact 25 of the contact mechanism 2 are lowered.
  • Each of the two contact portions comes into contact with each of the first contact portion 23 d of the first fixed contact 23 and the second contact portion 24 d of the second fixed contact 24 with the contact pressure of the contact spring 39. For this reason, the large current of the power supply source is in a closed state in which it is supplied to the load device through the first fixed contact 23, the movable contact 25, and the second fixed contact 24.
  • the contact mechanism accommodation space A and the movable plunger accommodation space B communicate with each other via the communication portion 11 a, and the internal pressure of the contact mechanism accommodation space A and the movable plunger accommodation space B The internal pressure is equivalent. Then, when the current supply to the load device is interrupted from the closed state of the contact mechanism 2, the energization to the excitation coil 34 of the electromagnet unit 3 is stopped. When the energization to the exciting coil 34 is stopped, the attracting force for moving the movable plunger 35 downward by the electromagnet unit 3 disappears, so that the movable plunger 35 rises by the urging force of the return spring 36, and the peripheral flange portion 35a becomes the auxiliary yoke. As the value approaches 12, the attractive force of the permanent magnet 11 increases.
  • the movable contact 25 connected via the connecting shaft 37 rises. Accordingly, when contact pressure is applied by the contact spring 39, the first contact portion and the second contact portion of the movable contact 25 are respectively connected to the first contact portion 23d and the second contact portion 23 of the first fixed contact 23. Each of the second contact portions 24d of the fixed contact 24 is in contact with each other. After that, when the contact pressure of the contact spring 39 disappears, the movable contact 25 enters a contact opening start state in which the movable contact 25 is separated upward from the first fixed contact 23 and the second fixed contact 24.
  • the first contact portion and the second contact portion of the movable contact 25 are provided.
  • An arc is generated between 24d and the current conduction state is continued by the arc.
  • the contact mechanism housing space A on the contact mechanism 2 side sandwiching the insulating cylinder portion 14 in the contact mechanism housing space A and the contact mechanism housing space A on the partition member 10 side communicate with each other via the tube portion communication portion 14f.
  • the internal pressures in the contact mechanism accommodation space A on the mechanism 2 side and the contact mechanism accommodation space A on the partition member 10 side are equal.
  • the communication part 11a is making the contact mechanism accommodation space A and the movable plunger accommodation space B by the side of the partition member 10 connect. For this reason, the internal pressures of the contact mechanism accommodation space A on the contact mechanism 2 side, the contact mechanism accommodation space A on the partition member 10 side, and the movable plunger accommodation space B are equal. That is, as shown in FIG.
  • the gas in the contact mechanism accommodation space A on the contact mechanism 2 side passes through the contact mechanism accommodation space A on the partition member 10 side and passes through the communication portion 11 a as indicated by the symbol R.
  • the movable plunger accommodating space B Through the movable plunger accommodating space B. Thereby, the internal pressures of the contact mechanism accommodation space A on the contact mechanism 2 side, the contact mechanism accommodation space A on the partition member 10 side, and the movable plunger accommodation space B are equal.
  • the movable contact 25 is not pushed back to the movable plunger accommodating space B side (downward side), and the operations of the movable plunger 35 and the movable contact 25 can be performed stably.
  • the foreign matter D such as a melt or a flaw generated near the first contact portion 23 d of the first fixed contact 23 or the second contact portion 24 d of the second fixed contact 24 is an insulating cylinder. It falls on the portion 14 and does not enter the movable plunger accommodating space B.
  • the foreign matter entry prevention member 13 prevents the foreign matter D from entering the movable plunger housing space B.
  • the foreign matter D hardly enters the contact mechanism accommodating space A on the partition member 10 side from the cylindrical portion communication portion 14f formed at the upper end of the peripheral wall portion 14d of the insulating cylindrical portion 14, but temporarily enters. Even in this case, since the contact mechanism accommodation space A on the partition member 10 side is a narrow passage, the foreign matter D hardly reaches the communication portion 11 a formed on the lower surface of the permanent magnet 11. For this reason, there is no possibility that the foreign matter D enters the movable plunger accommodating space B through the communication portion 11a.
  • auxiliary yoke 12 used in the electromagnetic contactor 1 shown in FIG. 1
  • a plurality of communication portions 11a are formed on the lower surfaces of both end portions in the direction in which the movable contact 25 of the permanent magnet 11 extends (two at each end portion, a total of four).
  • the auxiliary yoke 12 is not formed with a communication portion.
  • the auxiliary yoke 12 shown in FIG. 7 has a plurality of (two in each end, a total of four) at both ends in the direction in which the movable contact 25 extends.
  • a communication portion 12b is formed.
  • Each communicating portion 12b is formed by a notch that is notched inward from both outer end edges in the direction in which the movable contact 25 of the auxiliary yoke 12 extends. And each communication part 12b makes the contact mechanism accommodation space A and the movable plunger accommodation space B by the side of the partition member 10 communicate. Even when the auxiliary yoke 12 shown in FIG. 7 is used, the communication portion 11a may be formed in the permanent magnet 11 as shown in FIG.
  • a modification of the magnetic yoke 8 used in the electromagnetic contactor 1 shown in FIG. 1 will be described with reference to FIG.
  • a plurality of communication portions 11a are formed on the lower surfaces of both end portions in the direction in which the movable contact 25 of the permanent magnet 11 extends (two at each end portion, a total of four).
  • the magnetic yoke 8 has no communication portion.
  • a plurality (two on each side in total) are provided on both sides of the movable plunger through hole 8a of the magnetic yoke 8 in the extending direction. 4) 8b are formed.
  • Each communicating portion 8b is formed with a bottomed groove extending outward from both side edges in the direction in which the movable contact 25 of the movable plunger through hole 8a of the magnetic yoke 8 extends. And each communication part 8b makes the contact mechanism accommodation space A and the movable plunger accommodation space B by the side of the partition member 10 communicate. Even when the magnetic yoke 8 shown in FIG. 8 is used, the communication portion 11a may be formed in the permanent magnet 11 as shown in FIG. 1, or the auxiliary yoke 12 shown in FIG. 7 may be used. Good.
  • the contact mechanism 2 including the pair of fixed contacts 23 and 24 and the movable contact 25 that can contact and separate from the pair of fixed contacts 23 and 24;
  • the accommodating chamber 4 is configured to partition the contact mechanism accommodating space A that accommodates the contact mechanism 2 and the movable plunger accommodating space B that accommodates the movable plunger 35 by the partition member 10 inserted through the connecting shaft 37.
  • the partition member 10 is provided with communication portions 11a, 12b, 8b, and 15 that allow the contact mechanism accommodation space A and the movable plunger accommodation space B to communicate with each other.
  • the partition member 10 is provided with the communication portions 11a, 12b, 8b, and 15 for communicating the contact mechanism housing space A and the movable plunger housing space B, the communication portions 11a, 12b, and 8b are also provided during the release operation. 15, the internal pressure of the contact mechanism accommodation space A and the internal pressure of the movable plunger accommodation space B become equal.
  • the electromagnetic contactor 1 provided with the sealed accommodation chamber 4 configured to partition the contact mechanism accommodation space A for accommodating the contact mechanism 2 and the movable plunger accommodation space B for accommodating the movable plunger 35 by the partition member 10.
  • the movable plunger 35 and the movable contact 25 can be stably operated during the release operation.
  • the storage chamber 4 includes the plate-like magnetic yoke 8 having the movable plunger through-hole 8a that constitutes the electromagnet unit 3 and that vertically inserts the movable plunger 35;
  • the contact mechanism housing case 5 is joined to the upper surface of the magnetic yoke 8 and houses the contact mechanism 2 therein, and the cap 9 is joined to the lower surface of the magnetic yoke 8 and houses the movable plunger 35 inside.
  • the storage chamber 4 can be comprised by the simple structure using the magnetic yoke 8 which comprises the electromagnet unit 3.
  • the partition member 10 is fixed to the magnetic yoke 8 and the upper surface of the magnetic yoke 8, and surrounds the peripheral flange portion 35 a of the movable plunger 35 that constitutes the electromagnet unit 3.
  • the permanent magnet 11 formed as described above
  • the plate-like auxiliary yoke 12 that is fixed to the upper surface of the permanent magnet 11 and constitutes the electromagnet unit 3 and that passes through the connecting shaft 37 in the vertical direction, and is fixed to the upper surface of the auxiliary yoke 12
  • a plate-shaped foreign matter intrusion prevention member 13 having elasticity that is inserted through the connecting shaft 37 in the vertical direction and contacts the outer peripheral surface of the connecting shaft 37, and is formed above and outside the partition member 10.
  • the mechanism housing space A and the movable plunger housing space B formed inside the partition member 10 are partitioned.
  • the partition member 10 can be configured with a simple configuration using the permanent magnet 11 and the auxiliary yoke 12 constituting the electromagnet unit 3 and the foreign matter intrusion preventing member 13, and the foreign matter intrusion preventing member 13 can be used as a pair. It is possible to prevent foreign matters such as melts and soot generated near the contact portion of the fixed contact from entering the movable plunger housing space B from the contact mechanism housing space A.
  • the contact mechanism housing case 5 covers the outside of the partition member 10 and the outside of the contact mechanism 2 with the connecting shaft 37 inserted in the vertical direction.
  • positioned in the contact mechanism accommodation space A is provided.
  • the contact mechanism housing case 5 is made of metal, the insulating cylinder portion 14 can block the influence of the arc on the metal contact mechanism housing case 5.
  • the cylinder part communication part which makes the insulation cylinder part 14 connect the contact mechanism accommodation space A by the side of the contact mechanism 2 and the contact mechanism accommodation space A by the side of the partition member 10 is communicated. 14f is formed. Thereby, the contact mechanism housing space A on the contact mechanism 2 side sandwiching the insulating cylinder portion 14 in the contact mechanism housing space A and the contact mechanism housing space A on the partition member 10 side communicate with each other via the tube portion communication portion 14f.
  • the internal pressure in the contact mechanism accommodation space A on the contact mechanism 2 side and the contact mechanism accommodation space A on the partition member 10 side can be made uniform.
  • the communication part 11a has the contact mechanism accommodation space A and the movable plunger accommodation space B by the side of the partition member 10 which were formed in the permanent magnet 11 which comprises the partition member 10.
  • FIG. A groove for communication and a communication portion 12b are formed in the auxiliary yoke 12, and a notch for connecting the contact mechanism housing space A on the partition member 10 side and the movable plunger housing space B to each other, and the communication portion 8b is a contact mechanism on the partition member 10 side. It is formed by a groove formed in the magnetic yoke 8 that allows the accommodation space A and the movable plunger accommodation space B to communicate with each other.
  • the storage chamber 4 has a sealed structure capable of storing the contact mechanism 2 having the pair of fixed contacts 23 and 24 and the movable contact 25, the connecting shaft 37, and the movable plunger 35, the magnetic yoke 8 and the contact It is not always necessary to configure the mechanism housing case 5 and the cap 9.
  • the partition member 10 is configured to partition the storage chamber 4 from the contact mechanism storage space A and the movable plunger storage space B, the permanent magnet 11, the auxiliary yoke 12, and the foreign matter intrusion prevention member 13 are used. It is not always necessary to configure with. Moreover, the insulating cylinder part 14 does not necessarily need to be provided. Further, the communication part may be formed in the partition member 10 so as to communicate the contact mechanism housing space A and the movable plunger housing space B.
  • the partition member 10 is composed of the permanent magnet 11, the auxiliary yoke 12, and the foreign matter intrusion prevention member 13. In this case, the formation location may be any of the permanent magnet 11, the auxiliary yoke 12, and the foreign matter intrusion prevention member 13. Further, the communication portion may be formed in any combination of the permanent magnet 11, the auxiliary yoke 12, and the foreign matter intrusion prevention member 13.
  • the communication portion 11a shown in FIGS. 1 to 6 is a hole or notch other than the groove, as shown in FIG.
  • the communication part 12b may be constituted by a groove or hole other than the notch
  • the communication part 8b shown in FIG. 8 may be constituted by a notch or hole other than the groove.
  • the number of communication parts is arbitrary, and is not limited to four, such as the communication part 11a shown in FIGS. 1 to 6, the communication part 12b shown in FIG. 7, and the communication part 8b shown in FIG. .
  • Electromagnetic contactor 1
  • Contact mechanism 2
  • Electromagnet unit 4
  • Storage chamber 8
  • Partition member 11 Permanent magnet 11a, 12b, 8b Communication part
  • Auxiliary yoke 13
  • Foreign material intrusion prevention member 14
  • Insulating cylinder part 14f
  • Cylinder Part communication part 23
  • First fixed contact (fixed contact) 24
  • Movable contact 35
  • Connecting shaft A Contact mechanism accommodation space
  • B Movable plunger accommodation space

Landscapes

  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Contacts (AREA)
  • Electromagnets (AREA)

Abstract

La présente invention concerne un appareil à contact électromagnétique permettant, pendant une opération de libération, d'actionner de façon stable un plongeur mobile et un contacteur mobile. Cet appareil à contact électromagnétique (1) comprend : un mécanisme de point de contact (2) ayant une paire de contacteurs fixes (23, 24) et un contacteur mobile (25) capable d'établir un contact avec la paire de contacteurs fixes (23, 24) et de se séparer de celle-ci ; une unité d'électroaimant (3) permettant d'entraîner le mécanisme de point de contact (2), ayant un plongeur mobile (35) couplé au contacteur mobile (25) par l'intermédiaire d'un arbre de couplage (37) ; et une chambre de logement (4) hermétiquement scellée logeant le mécanisme de point de contact (2), l'arbre de couplage (37), et le plongeur mobile (35). La chambre de logement (4) est constituée de telle sorte qu'un espace de logement (A) de mécanisme de point de contact, qui loge le mécanisme de point de contact (2), et un espace de logement (B) de plongeur mobile, qui loge le plongeur mobile (35), sont séparés par un élément de séparation (10), traversé par l'arbre de couplage (37). L'élément de séparation (10) est pourvu d'une partie de communication (11a) à travers laquelle l'espace de logement (A) de mécanisme de point de contact et l'espace de logement (B) de plongeur mobile communiquent.
PCT/JP2015/003171 2014-09-10 2015-06-24 Appareil à contact électromagnétique WO2016038769A1 (fr)

Priority Applications (2)

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JP2016547659A JP6237916B2 (ja) 2014-09-10 2015-06-24 電磁接触器
CN201580010449.9A CN106062913B (zh) 2014-09-10 2015-06-24 电磁接触器

Applications Claiming Priority (2)

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JP2014184454 2014-09-10
JP2014-184454 2014-09-10

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WO2016038769A1 true WO2016038769A1 (fr) 2016-03-17

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WO2019031229A1 (fr) * 2017-08-10 2019-02-14 オムロン株式会社 Relais électromagnétique
JP2020031034A (ja) * 2018-08-24 2020-02-27 オムロン株式会社 電磁継電器
JP2021096986A (ja) * 2019-12-18 2021-06-24 富士電機機器制御株式会社 電磁接触器
WO2021182520A1 (fr) * 2020-03-11 2021-09-16 株式会社デンソー Relais électromagnétique
JP2022112328A (ja) * 2021-01-21 2022-08-02 富士電機機器制御株式会社 電磁接触器

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DE102017107441A1 (de) * 2017-04-06 2018-10-11 Schaltbau Gmbh Schaltgerät mit Kontaktabdeckung
JP7363565B2 (ja) * 2020-02-21 2023-10-18 富士電機機器制御株式会社 電磁接触器

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JP2014063674A (ja) * 2012-09-21 2014-04-10 Fujitsu Component Ltd 電磁継電器

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JP5711044B2 (ja) * 2010-12-02 2015-04-30 富士電機株式会社 電磁接触器、電磁接触器のガス封止方法及び電磁接触器の製造方法
JP5767508B2 (ja) * 2011-05-19 2015-08-19 富士電機株式会社 電磁接触器

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JPH03105060A (ja) * 1989-09-19 1991-05-01 Nippondenso Co Ltd スタータ
JP2013246872A (ja) * 2012-05-23 2013-12-09 Panasonic Corp 接点装置
JP2014063674A (ja) * 2012-09-21 2014-04-10 Fujitsu Component Ltd 電磁継電器

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2019031229A1 (fr) * 2017-08-10 2019-02-14 オムロン株式会社 Relais électromagnétique
JP2019036432A (ja) * 2017-08-10 2019-03-07 オムロン株式会社 電磁継電器
JP2020031034A (ja) * 2018-08-24 2020-02-27 オムロン株式会社 電磁継電器
WO2020039617A1 (fr) * 2018-08-24 2020-02-27 オムロン株式会社 Relais électromagnétique
JP7095487B2 (ja) 2018-08-24 2022-07-05 オムロン株式会社 電磁継電器
JP2021096986A (ja) * 2019-12-18 2021-06-24 富士電機機器制御株式会社 電磁接触器
JP7294111B2 (ja) 2019-12-18 2023-06-20 富士電機機器制御株式会社 電磁接触器
WO2021182520A1 (fr) * 2020-03-11 2021-09-16 株式会社デンソー Relais électromagnétique
JP2021144841A (ja) * 2020-03-11 2021-09-24 株式会社デンソー 電磁継電器
JP7253511B2 (ja) 2020-03-11 2023-04-06 株式会社デンソー 電磁継電器
JP2022112328A (ja) * 2021-01-21 2022-08-02 富士電機機器制御株式会社 電磁接触器
JP7414024B2 (ja) 2021-01-21 2024-01-16 富士電機機器制御株式会社 電磁接触器

Also Published As

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CN106062913B (zh) 2017-12-15
JP6237916B2 (ja) 2017-11-29
CN106062913A (zh) 2016-10-26
JPWO2016038769A1 (ja) 2017-04-27

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