CN216084766U - Reset structure of switching device operating mechanism and circuit breaker - Google Patents

Reset structure of switching device operating mechanism and circuit breaker Download PDF

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Publication number
CN216084766U
CN216084766U CN202121738654.6U CN202121738654U CN216084766U CN 216084766 U CN216084766 U CN 216084766U CN 202121738654 U CN202121738654 U CN 202121738654U CN 216084766 U CN216084766 U CN 216084766U
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CN
China
Prior art keywords
arc
linkage
handle
operating mechanism
reset
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CN202121738654.6U
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Chinese (zh)
Inventor
高汉林
黄明俊
戴海龙
刘章良
杨述
吴子嘉
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Shanghai Yongji Electrical Holding Co ltd
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Shanghai Yongji Electrical Holding Co ltd
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Priority to CN202121738654.6U priority Critical patent/CN216084766U/en
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Abstract

The utility model provides a reset structure of a switch electric appliance operating mechanism and a breaker, comprising: a housing; operating device, operating device includes the handle, the connecting rod, contact carrier, hasp and linkage piece that resets, be equipped with the handle draw-in groove on the periphery wall of handle body, contact carrier includes the partition arc body that can reset the ground pivot and locate the shell, the hasp includes that the pivot locates the partition arc cover body of partition arc body, be equipped with cover body jack catch on the partition arc cover body, the linkage piece that resets includes the energy storage body and holds and the second linkage end of first linkage and the second that is drawn forth by the energy storage body, handle body or the partition arc cover body are located to the energy storage body, first linkage end is followed handle body and is rotated the direction butt in the handle draw-in groove for the shell that resets, the second linkage end is followed the partition arc cover body and is rotated the direction butt in cover body jack catch for the rotation of resetting of partition arc body. The utility model can simultaneously drive the handle and the lock catch to reset, simplifies the integral structure of the operating mechanism of the switching electric appliance and improves the compactness of the operating mechanism of the switching electric appliance.

Description

Reset structure of switching device operating mechanism and circuit breaker
Technical Field
The utility model relates to the technical field of switching devices, in particular to a reset structure of an operating mechanism of a switching device and a circuit breaker.
Background
The circuit breaker is a switching device capable of closing, carrying, and opening/closing a current under a normal circuit condition and a current under an abnormal circuit condition within a prescribed time. The circuit breakers are divided into high-voltage circuit breakers and low-voltage circuit breakers according to the application range, the high-voltage and low-voltage boundary lines are relatively vague, and the circuit breakers above 3kV are generally called high-voltage electric appliances.
The circuit breaker can be used for distributing electric energy, starting an asynchronous motor infrequently, protecting a power supply circuit, the motor and the like, and automatically cutting off a circuit when faults such as serious overload, short circuit, undervoltage and the like occur, and the function of the circuit breaker is equivalent to the combination of a fuse type switch, an over-under-heat relay and the like. Furthermore, no parts need to be changed after breaking the fault current.
However, the conventional circuit breaker is not small enough in overall size, complicated in internal structure, and not high in mechanism compactness.
SUMMERY OF THE UTILITY MODEL
In view of the above drawbacks of the prior art, the present invention provides a reset structure of an operating mechanism of a switching device and a circuit breaker, which can simultaneously drive a handle and a latch to reset, simplify the overall structure of the operating mechanism of the switching device, and improve the compactness of the operating mechanism of the switching device.
In order to solve the above technical problem, the present invention provides a reset structure of an operating mechanism of a switching device, comprising:
a housing;
an operating mechanism, which comprises a handle and a connecting rod, contact carrier, hasp and linkage piece that resets, the handle includes that the pivot locates the handle body of shell, be equipped with the handle draw-in groove on the periphery wall of handle body, contact carrier includes the partition arc body that the shell was located to the ground pivot that can reset, the hasp includes that the pivot locates the partition arc cover body of partition arc body, be equipped with cover body jack catch on the partition arc cover body, the one end of connecting rod is connected in the handle body and other end locking or slippage between hasp and contact carrier, the linkage piece that resets includes the energy storage body and first linkage end and the second linkage end of drawing forth by the energy storage body, handle body or the partition arc cover body are located to the energy storage body, first linkage end is followed handle body and is held for the rotation direction butt that resets of shell in the handle draw-in groove, the second linkage end is followed the partition arc cover body and is followed the rotation direction butt that resets of partition arc body for the partition arc body and is covered in cover body jack catch.
Preferably, an annular assembling groove is formed in one side wall of the handle body; the linkage piece that resets is the torsional spring structure, and the linkage piece that resets includes linkage torsional spring body, first linkage stabilizer blade and the second linkage stabilizer blade, and the linkage torsional spring body is located annular assembly inslot, and first linkage stabilizer blade butt is in the handle draw-in groove, and the second linkage stabilizer blade butt is in cover body jack catch.
Preferably, the handle clamping groove penetrates through the annular assembling groove along the radial direction of the handle body.
Preferably, the two ends of the connecting rod are respectively a plugging end and a pushing end, the arc isolating body is provided with a chute in sliding fit with the pushing end, and the chute comprises a locking groove part and a tripping groove part which are communicated; the arc-isolating cover body is provided with a pressure lever arm, the pressure lever arm is in open-close fit with the locking groove part to lock or release the pushing end, and an arc-shaped locking notch matched with the pushing end is formed in one side wall of the pressure lever arm, facing the locking groove part.
Preferably, the sliding groove comprises two sliding groove side walls, and an avoiding opening for avoiding the movement of the pressure lever arm is arranged on one sliding groove side wall close to the pressure lever arm.
Preferably, the arc isolating body is provided with a limiting clamping groove for positioning a moving contact, and the side wall of the clamping groove of the limiting clamping groove is connected with the side wall of a sliding groove far away from the pressure lever arm to form an integral structure.
Preferably, a reinforcing rib is arranged between the side wall of the clamping groove of the limiting clamping groove and the side wall of one sliding groove far away from the pressure lever arm.
Preferably, the cover body claw includes an abutting portion and a disengagement preventing portion, the abutting portion is convexly and integrally formed on the arc isolating cover body and is in abutting fit with the second coupling end, and the disengagement preventing portion is vertically and integrally formed on the abutting portion to prevent the second coupling end from disengaging from the abutting portion.
Preferably, the arc isolation body is provided with a first limit notch and a second limit notch, the first limit notch is matched with the arc isolation cover body along one side of the self rotation direction along the stop, and the second limit notch is matched with the arc isolation cover body along the other side of the self rotation direction along the stop.
The utility model also provides a circuit breaker, which comprises a reset structure of the switch electric appliance operating mechanism.
As described above, the reset structure of the switching apparatus operating mechanism and the circuit breaker according to the present invention have the following advantages: according to the utility model, as the handle clamping groove is formed in the peripheral wall of the handle body, the contact support comprises the arc isolating body which is pivoted on the shell in a resetting manner, the lock catch comprises the arc isolating cover body pivoted on the arc isolating body, the cover body clamping claw is arranged on the arc isolating cover body, one end of the connecting rod is connected to the handle body, and the other end of the connecting rod is locked or slipped between the lock catch and the contact support; when one end of the connecting rod is connected to the handle body and the other end of the connecting rod slides between the lock catch and the contact support, the contact support can be reset relative to the shell, the handle can be reset relative to the shell, and the lock catch can be reset relative to the contact support. More importantly, the linkage piece that resets includes the energy storage body and first linkage end and the second linkage end of being drawn forth by the energy storage body, handle body or the arc isolation cover body are located to the energy storage body, first linkage end is along handle body for the rotation direction butt that resets of shell in the handle draw-in groove, the second linkage end is along the rotation direction butt that resets of the arc isolation cover body for the arc isolation body in cover body jack catch, the linkage piece that resets can order about handle and hasp simultaneously and take place to reset like this, reduce operating device's spare part that has reset function, thereby the overall structure of operating device of switching apparatus has been simplified, the compactness of operating device's of switching apparatus has been improved. Therefore, the reset structure of the operating mechanism of the switching electric appliance can drive the handle and the lock catch to reset simultaneously, simplifies the overall structure of the operating mechanism of the switching electric appliance and improves the compactness of the operating mechanism of the switching electric appliance.
Drawings
Figure 1 shows a schematic diagram of a circuit breaker of the present invention;
FIG. 2 shows a schematic view of a base of the housing;
FIG. 3 is a schematic view of a cover plate of the housing;
FIG. 4 is a schematic view of a middle partition of the housing;
FIG. 5 is a schematic view of the assembly of the base and the intermediate partition;
FIG. 6 is a schematic view showing an internal structure of an L-pole mounting chamber;
FIG. 7 is a schematic view showing the internal structure of an N-pole assembling chamber;
fig. 8 shows a schematic view of the assembly of the operating mechanism and the movable contact;
fig. 9 is a schematic view showing the assembly of the contact support, the latch and the movable contact;
FIG. 10 is a schematic view of a contact mount;
FIG. 11 is a schematic view of the latch;
FIG. 12 is a schematic view of the handle;
figure 13 shows a schematic view of a movable contact;
fig. 14 shows an assembly schematic of the yoke and the short circuit release;
FIG. 15 is a schematic view of an N-pole integrated plate;
FIG. 16 is a schematic view of an L-pole arc spacer;
fig. 17 is a schematic view of an N-pole arc barrier.
Description of the element reference numerals
1 outer cover
11 base
12 middle partition board
13 cover plate
2 Assembly Chamber
21L pole assembly cavity
211L pole arc striking chamber
212L pole arc extinguishing chamber
213L pole flash barrier
213a L pole arc-striking long slot
22N pole assembling cavity
221N pole arc striking chamber
222N pole arc extinguishing chamber
223N pole flash barrier
223a N pole arc starting long groove
23L pole arc chute assembly
24 arc-extinguishing long rib
3 operating mechanism
31 contact support
311 arc insulation body
311a first limit notch
311b second limit notch
312 limiting clamping groove
312a card slot side wall
313 sliding chute
313a locking groove portion
313b trip slot part
313c chute side wall
313d avoidance port
314 reinforcing rib
315 rotation stop rib
316C type wear-resistant rib
32 lock catch
321 arc-isolating cover body
322 auxiliary flash barrier
323C type ring
323a assembly notch
324 rotation limiting strip
325 cover body claw
325a abutting portion
325b coming-off preventing part
326 compression bar arm
326a arc-shaped locking notch
33 hinge structure
331 first hinge shaft
332 first hinge hole
333 second articulated shaft
334 second hinge hole
335 assembling clamp
34 buffer reset piece
341 buffer torsion spring body
342 first buffer leg
343 second buffer leg
35 handle
351 handle body
352 handle clamping groove
353 annular assembling groove
36 connecting rod
361 connecting end
362 Top end
37 linkage reset piece
371 linkage torsion spring body
372 first linkage leg
373 second linkage leg
4 short-circuit release
5 contact mechanism
51 moving contact
511 swinging restriction hole
512 moving contact body
513 limiting bulge
514 contact part
515 first card interface
516 second card interface
52 static contact
521L pole static contact
522N pole static contact
6 magnetic yoke
61 magnetic gathering frame part
611 first supporting board part
611a hold the notch
612 aerial plate part
613 second support plate part
613a clamping through hole
62 transitional joint
63L pole static contact mounting part
64 first L-pole arc striking part
65 second L-pole arc striking part
66L arc-extinguishing plate part
7N pole integrated plate
71 terminal board part
72 inclined joint part
73 conductive plate part
74N pole static contact mounting part
75 first N-pole arc striking part
76 second N-pole arc striking part
Detailed Description
The following description of the embodiments of the present invention is provided for illustrative purposes, and other advantages and effects of the present invention will become apparent to those skilled in the art from the present disclosure.
It should be understood that the structures, ratios, sizes, and the like shown in the drawings are only used for matching the disclosure of the present disclosure, and are not used for limiting the conditions that the present disclosure can be implemented, so that the present disclosure is not limited to the technical essence, and any structural modifications, ratio changes, or size adjustments should still fall within the scope of the present disclosure without affecting the efficacy and the achievable purpose of the present disclosure. In addition, the terms "upper", "lower", "left", "right", "middle" and "one" used in the present specification are for clarity of description, and are not intended to limit the scope of the present invention, and the relative relationship between the terms and the terms is not to be construed as a scope of the present invention.
First, as shown in fig. 1 to 11, the present invention provides a double-contact operating mechanism for a switching device, including:
the device comprises a shell 1, wherein the inner cavity of the shell 1 is divided into two assembly cavities 2 which are arranged side by side;
the operating mechanism 3, the operating mechanism 3 includes the contact holder 31 (refer to fig. 10) and the lock catch 32 (refer to fig. 11), the contact holder 31 is resettably pivoted to the housing 1 through a hinge structure 33 and is located at the communication position of the two assembly cavities 2, the contact holder 31 includes a flat-plate-shaped arc isolating body 311, two limit slots 312 are symmetrically arranged at two opposite sides of the arc isolating body 311, the lock catch 32 includes an arc isolating cover 321 in an arc plate shape, the arc isolating cover 321 is resettably pivoted to the arc isolating body 311 and is located at the edge of the arc isolating body 311 close to a short-circuit release 4, one side of the arc isolating cover 321 in the circumferential direction is provided with an auxiliary arc isolating plate 322, and the auxiliary arc isolating plate 322 is used for shielding an arc leak generated between the arc isolating cover 321 and the arc isolating body 311 when the arc isolating cover 321 rotates relative to the arc isolating body 311;
the contact mechanism 5 (see fig. 6 and 7), the contact mechanism 5 includes two movable contacts 51 (see fig. 13), and the two movable contacts 51 are correspondingly disposed in the two assembly cavities 2 and correspondingly positioned in the two limit card slots 312.
In the present invention, the contact holder 31 includes the arc isolating body 311 in a flat plate shape, so that the arc generated in one of the assembly cavities 2 can be effectively prevented from flowing into the other assembly cavity 2; more importantly, the latch 32 includes an arc-shaped arc-isolating cover 321, the arc-isolating cover 321 is pivotally disposed on the arc-isolating body 311 in a resettable manner, and an auxiliary arc-isolating plate 322 is disposed on one side of the arc-isolating cover 321 in the circumferential direction, so that an arc leakage seam between the arc-isolating cover 321 and the arc-isolating body 311 when the arc-isolating cover 321 rotates relative to the arc-isolating body 311 can be shielded, and thus, an arc generated by one of the assembly cavities 2 is further prevented from flowing into the other assembly cavity 2. Meanwhile, the arc blocking cover 321 is located at the edge of the arc blocking body 311 close to a short-circuit release 4, so as to prevent an arc from being generated between the movable contact 51 and the short-circuit release 4. In addition, the relative bilateral symmetry of separating arc body 311 is equipped with two spacing draw-in grooves 312, and two moving contacts 51 correspond arrange in two assembly chamber 2 and correspond and be located two spacing draw-in grooves 312, can be convenient for assemble every moving contact 51 to the relative both sides of separating arc body 311 like this, make the assembly between contact support 31 and the moving contact 51 more convenient. Therefore, the double-contact action mechanism of the switch electric appliance can effectively avoid the phenomenon of electric arc cross between the two assembly cavities 2, greatly improve the assembly convenience between the contact support 31 and the moving contact 51, improve the compactness of parts of the switch electric appliance and reduce the overall size of the switch electric appliance.
As shown in fig. 9 and 13, in order to make the movable contact 51 flexibly contact with the corresponding fixed contact 52, the movable contact 51 is provided with a swing constraining hole 511, the hinge structure 33 is slidably inserted into the swing constraining hole 511 along the length direction of the swing constraining hole 511, and a buffer reset member 34 for driving the movable contact 51 to swing towards the corresponding fixed contact 52 is arranged between the hinge structure 33 and the movable contact 51; when the hinge structure 33 abuts against one end of the swing restriction hole 511, the movable contact 51 swings to a first swing limit position relative to the arc insulation body 311, and when the hinge structure 33 abuts against the other end of the swing restriction hole 511, the movable contact 51 swings to a second swing limit position relative to the arc insulation body 311. The swing restricting hole 511 may be a waist-shaped hole structure or an arc-shaped hole structure. When the contact device is used, the contact support 31 rotates under the action of a driving force to drive the movable contact 51 to swing towards the corresponding fixed contact 52 until the movable contact 51 abuts against the corresponding fixed contact 52, and at this time, the contact support 31 can further rotate relative to the shell 1 by a preset angle (the preset angle is generally smaller). If the contact support 31 continues to rotate relative to the housing 1, the movable contact 51 swings around the position of the limiting clamping groove 312 as a swing center and under the constraint of the swing constraint hole 511, and the elastic potential energy of the buffering reset piece 34 is increased, so that the movable contact 51 is more tightly abutted to the corresponding fixed contact 52. If the contact support 31 rotates reversely relative to the housing 1, the movable contact 51 swings reversely under the constraint of the swing constraint hole 511 with the position of the limit clamping groove 312 as a swing center, the elastic potential energy of the buffer reset piece 34 becomes small until the hinge structure 33 abuts against one end of the swing constraint hole 511, and at this time, the movable contact 51 is in a reset state relative to the contact support 31.
As shown in fig. 13, as an example of the movable contact 51: the moving contact 51 includes a moving contact body 512, a limiting protrusion 513 and a contacting portion 514, the moving contact body 512 is pivotally connected to the arc isolating body 311 in a resettable manner, the limiting protrusion 513 is integrally formed at the edge of the moving contact body 512 and swingably abuts against the limiting clamping groove 312, and the contacting portion 514 is formed at the edge of the moving contact body 512 and is matched with the corresponding static contact 52.
As an example of the above-described cushioning return member 34, as shown in fig. 9: the buffering reset member 34 is a torsion spring structure, the buffering reset member 34 includes a buffering torsion spring body 341, a first buffering leg 342 and a second buffering leg 343, the hinge structure 33 is sleeved with the buffering torsion spring body 341, the first buffering leg 342 abuts against the joint of the movable contact body 512 and the limiting protrusion 513, and the second buffering leg 343 abuts against the joint of the movable contact body 512 and the contact part 514. If the contact support 31 continues to rotate after the contacting portion 514 abuts against the corresponding fixed contact 52, the position of the first buffering leg 342 at the joint of the movable contact body 512 and the limiting protrusion 513 does not change, the second buffering leg 343 slides a small distance at the joint of the movable contact body 512 and the contacting portion 514, and the elastic potential energy of the buffering torsion spring body 341 increases. If the contacting portion 514 is far away from the corresponding fixed contact 52, the position of the first buffering leg 342 at the joint of the movable contact body 512 and the limiting protrusion 513 does not change, the second buffering leg 343 reversely slides to a far position at the joint of the movable contact body 512 and the contacting portion 514, and the elastic potential energy of the buffering torsion spring body 341 becomes small.
In order to simplify the structure of the movable contact 51, a V-shaped first clamping interface 515 is arranged at a joint of the movable contact body 512 and the limiting protrusion 513, a V-shaped second clamping interface 516 is arranged at a joint of the movable contact body 512 and the contacting part 514, and an opening angle corresponding to the second clamping interface 516 is larger than an opening angle corresponding to the first clamping interface 515; the first buffer leg 342 is positioned and hooked to the first card interface 515, and the second buffer leg 343 is slidably hooked to the second card interface 516. Because the opening angle corresponding to the second clip interface 516 is greater than the opening angle corresponding to the first clip interface 515, the second buffer leg 343 slides easily at the joint of the movable contact body 512 and the contact part 514.
As shown in fig. 2, 3 and 10, in order to facilitate the detachment and installation of the housing 1, the contact support 31 and the moving contact 51, the hinge structure 33 includes a first hinge shaft 331, a first hinge hole 332, a second hinge shaft 333 and a second hinge hole 334 coaxially arranged in sequence, the first hinge shaft 331 is integrally formed on an inner side wall of the housing 1, the first hinge hole 332 is opened on one side wall of the arc isolating body 311 and is in plug-in fit with the first hinge shaft 331, the second hinge shaft 333 is integrally formed on the other side wall of the arc isolating body 311, and the second hinge hole 334 is opened on the other inner side wall of the housing 1 and is in plug-in fit with the second hinge shaft 333.
As shown in fig. 10 and 11, in order to limit the rotation angle range of the latch 32 relative to the contact holder 31, a side wall of the arc-isolating body 311 is provided with a rotation-stopping rib 315 extending along the radial direction of the hinge structure 33, the latch 32 further includes a C-shaped ring 323 sleeved on the hinge structure 33, two ends of the C-shaped ring 323 are correspondingly connected with the arc-isolating cover 321 through two rotation-stopping strips 324, and the two rotation-stopping strips 324 extend along the radial direction of the hinge structure 33 and are located at two opposite sides of the rotation-stopping rib 315 along the circumferential direction of the hinge structure 33. When the rotation-stopping rib 315 abuts against one of the rotation-limiting bars 324, the latch 32 is located at a first swing limit position relative to the contact holder 31, and when the rotation-stopping rib 315 abuts against the other rotation-limiting bar 324, the latch 32 is located at a second swing limit position relative to the contact holder 31. Further, with this arrangement, the compactness between the contact holder 31 and the latch 32 can be improved, and the overall size of the contact holder 31 and the latch 32 can be reduced.
In order to prevent the hinge structure 33 and the latch 32 from being separated from each other after the hinge structure 33 and the latch 32 are assembled, an assembly protrusion 335 is formed on the hinge structure 33, and an assembly notch 323a adapted to the assembly protrusion 335 is formed on an inner circumferential wall of the C-shaped ring 323. During assembly, the assembly protrusions 335 and the assembly notches 323a are aligned, the assembly protrusions 335 pass through the assembly notches 323a, the C-shaped ring 323 is completely sleeved on the hinge structure 33, and finally, the assembly protrusions 335 and the assembly notches 323a are misaligned with each other.
In order to avoid the relative friction between the movable contacts 51 and the arcing body 311. The side wall of the arc isolating body 311 is provided with a C-shaped wear-resistant rib 316, the C-shaped wear-resistant rib 316 is coaxially arranged at the periphery of the hinge structure 33, the axial size of the C-shaped wear-resistant rib 316 along the hinge structure 33 is equal to the axial size of the rotation stopping rib 315 along the hinge structure 33, and the axial size of the C-shaped wear-resistant rib 316 along the hinge structure 33 is larger than the axial size of the C-shaped ring 323 along the hinge structure 33. When in use, one side wall of the movable contact 51 is in sliding contact with the C-shaped wear-resistant rib 316, and no contact phenomenon exists between the movable contact 51 and the C-shaped ring 323.
The utility model also provides a circuit breaker, which comprises the double-contact action mechanism of the switching device.
Next, as shown in fig. 8 to 13, the present invention provides a reset structure of an operating mechanism of a switching device, including:
a housing 1;
the operating mechanism 3, the operating mechanism 3 includes a handle 35 (see fig. 12), a connecting rod 36 (see fig. 8), a contact support 31, a latch 32 and a linkage reset piece 37 (see fig. 8), the handle 35 includes a handle body 351 pivotally disposed on the housing 1, a handle slot 352 is disposed on an outer peripheral wall of the handle body 351, the contact support 31 includes an arc-isolating body 311 pivotally disposed on the housing 1 in a resettable manner, the latch 32 includes an arc-isolating cover body 321 pivotally disposed on the arc-isolating body 311, a cover body latch 325 is disposed on the arc-isolating cover body 321, one end of the connecting rod 36 is connected to the handle body 351 and the other end is locked or slipped between the latch 32 and the contact support 31, the linkage reset piece 37 includes an energy storage body and a first linkage end and a second linkage end led out by the energy storage body, the energy storage body is disposed on the handle body 351 or the arc-isolating cover body 321, the first linkage end abuts against the handle slot 352 along a reset rotation direction of the handle body 351 relative to the housing 1, the second linkage end abuts against the cover claw 325 in the reset rotation direction of the arc-isolating cover 321 relative to the arc-isolating body 311.
In the utility model, as the handle clamping groove 352 is arranged on the peripheral wall of the handle body 351, the contact support 31 comprises the arc isolating body 311 which is pivoted on the shell 1 in a resettable manner, the lock catch 32 comprises the arc isolating cover body 321 which is pivoted on the arc isolating body 311, the cover body clamping claw 325 is arranged on the arc isolating cover body 321, one end of the connecting rod 36 is connected to the handle body 351, and the other end of the connecting rod 36 is locked or slipped between the lock catch 32 and the contact support 31, the arrangement is that when one end of the connecting rod 36 is connected to the handle body 351 and the other end of the connecting rod is locked between the lock catch 32 and the contact support 31, the handle 35 can drive the contact support 31 to rotate through the connecting rod 36; when one end of the link 36 is connected to the handle body 351 and the other end is slid between the latch 32 and the contact holder 31, the contact holder 31 can be reset with respect to the housing 1 (a reset tension spring may be provided between the contact holder 31 and the housing 1), the handle 35 can be reset with respect to the housing 1, and the latch 32 can be reset with respect to the contact holder 31. More importantly, the linkage reset piece 37 comprises an energy storage body and a first linkage end and a second linkage end which are led out from the energy storage body, the energy storage body is arranged on the handle body 351 or the arc-isolating cover body 321, the first linkage end abuts against the handle clamping groove 352 along the reset rotation direction of the handle body 351 relative to the shell 1, the second linkage end abuts against the cover clamping claw 325 along the reset rotation direction of the arc-isolating cover body 321 relative to the arc-isolating body 311, the linkage reset piece 37 can simultaneously drive the handle 35 and the lock catch 32 to reset, parts of the operating mechanism 3 with the reset function are reduced, the overall structure of the operating mechanism of the switch electric appliance is simplified, and the compactness of the operating mechanism of the switch electric appliance is improved. Therefore, the reset structure of the switch electric appliance operating mechanism can simultaneously drive the handle 35 and the lock catch 32 to reset, thereby simplifying the overall structure of the switch electric appliance operating mechanism and improving the compactness of the switch electric appliance operating mechanism.
In order to further simplify the overall structure of the operating mechanism of the switching device and improve the compactness of the operating mechanism of the switching device, an annular assembling groove 353 is arranged on one side wall of the handle body 351; the linkage reset piece 37 is a torsion spring structure, the linkage reset piece 37 comprises a linkage torsion spring body 371, a first linkage support leg 372 and a second linkage support leg 373, the linkage torsion spring body 371 is located in the annular assembly groove 353, the first linkage support leg 372 is abutted to the handle clamping groove 352, and the second linkage support leg 373 is abutted to the cover clamping jaw 325. When the switching device is in a short circuit or an overload condition, the latch 32 rotates a certain angle relative to the contact support 31 under the action of an external force, and at the moment, the elastic potential energy of the linkage reset piece 37 is increased. Then, the other end of the link 36 slides between the latch 32 and the contact holder 31, the contact holder 31 is reset by the reset tension spring, and the handle 35 and the latch 32 provide the reset of the interlocking reset member 37.
In order to facilitate the embedding of the interlocking restoring member 37 in the handle body 351, the handle engaging groove 352 radially penetrates the annular mounting groove 353 along the handle body 351.
As shown in fig. 8, 10 and 11, in order to realize that the handle 35 applies force to the contact holder 31 through the connecting rod 36, two ends of the connecting rod 36 are respectively a plugging end 361 and a pushing end 362, the arc isolating body 311 is provided with a sliding chute 313 in sliding fit with the pushing end 362, and the sliding chute 313 includes a locking groove portion 313a and a tripping groove portion 313b which are communicated; the arc-isolating cover 321 is provided with a pressing rod arm 326, the pressing rod arm 326 is in open-close fit with the locking groove 313a to lock or release the pushing end 362, and an arc-shaped locking notch 326a matched with the pushing end 362 is formed on a side wall of the pressing rod arm 326 facing the locking groove 313 a. When the latch 32 is in the reset state with respect to the contact holder 31, the pressing lever arm 326 and the locking groove portion 313a lock the pushing end 362 together.
In order to enable the lever arm 326 to lock the pushing end 362 with the locking groove portion 313a, the sliding slot 313 includes two sliding slot side walls 313c, and an escape opening 313d for escaping from the movement of the lever arm 326 is provided on one sliding slot side wall 313c close to the lever arm 326.
In order to improve the compactness of the contact support 31, the arc isolating body 311 is provided with a limit slot 312 for positioning the movable contact 51, and a slot side wall 312a of the limit slot 312 is connected with a sliding chute side wall 313c far away from the pressing rod arm 326 to form an integral structure.
In order to improve the overall rigidity of the stopper groove 312 and the slide groove 313, a reinforcing rib 314 is provided between the groove side wall 312a of the stopper groove 312 and one slide groove side wall 313c away from the presser bar arm 326.
As shown in fig. 11, in order to simplify the structure of the cover body latch 325, the cover body latch 325 includes an abutting portion 325a and a retaining portion 325b, the abutting portion 325a is integrally formed in a protruding manner in the arc-isolating cover body 321 and is abutted and engaged with the second coupling end, and the retaining portion 325b is integrally formed in a perpendicular manner in the abutting portion 325a so as to prevent the second coupling end from being separated from the abutting portion 325 a.
As shown in fig. 10, in order to restrict the rotation angle range of the arc shielding body 321 relative to the contact holder 31, the arc shielding body 311 is provided with a first limit notch 311a and a second limit notch 311b, the first limit notch 311a is engaged with one side of the arc shielding body 321 along the rotation direction thereof, and the second limit notch 311b is engaged with the other side of the arc shielding body 321 along the rotation direction thereof.
The utility model also provides a circuit breaker, which comprises the reset structure of the switch electrical appliance operating mechanism.
Finally, as shown in fig. 1, 5, 14 and 15, the present invention provides a static contact component structure of a switching apparatus, including:
the structure comprises a shell 1, wherein an inner cavity of the shell 1 is divided into two assembly cavities 2 which are arranged side by side, the two assembly cavities 2 are respectively an L-pole assembly cavity 21 and an N-pole assembly cavity 22, the L-pole assembly cavity 21 comprises an L-pole arc striking chamber 211 and an L-pole arc extinguishing chamber 212 which are communicated, and the N-pole assembly cavity 22 comprises an N-pole arc striking chamber 221 and an N-pole arc extinguishing chamber 222 which are communicated; specifically, the housing 1 includes a base 11, an intermediate partition 12, and a cover 13, the base 11 and the cover 13 enclosing an inner cavity defining the housing 1, the intermediate partition 12 dividing the inner cavity into an L-pole fitting cavity 21 and an N-pole fitting cavity 22.
The conductive mechanism comprises a magnetic yoke 6 and an N-pole integrated plate 7 which are integrally formed, the magnetic yoke 6 comprises a magnetic gathering frame part 61, a transition connection part 62, an L-pole static contact installation part 63, an arc-shaped first L-pole arc striking part 64, an inclined plate-shaped second L-pole arc striking part 65 and an L-pole arc extinguishing plate part 66 which are sequentially connected, the magnetic gathering frame part 61 is clamped in a short circuit release 4, the L-pole arc extinguishing plate part 66 is positioned in the L-pole arc extinguishing chamber 212, and the N-pole integrated plate 7 comprises a wiring plate part 71, an inclined connection part 72, a conductive plate part 73, an N-pole static contact installation part 74, an arc-shaped first N-pole arc striking part 75 and an inclined plate-shaped second N-pole arc striking part 76 which are sequentially connected;
the contact mechanism 5 includes two fixed contacts 52, the two fixed contacts 52 are an L-pole fixed contact 521 and an N-pole fixed contact 522, the L-pole fixed contact 521 is disposed on the L-pole fixed contact mounting portion 63, and the N-pole fixed contact 522 is disposed on the N-pole fixed contact mounting portion 74.
In the utility model, the conductive mechanism comprises a magnetic yoke 6 and an N-pole integrated plate 7 which are integrally formed, the magnetic yoke 6 comprises a magnetic gathering frame part 61, a transition connection part 62, an L-pole static contact installation part 63, an arc-shaped first L-pole arc striking part 64, a slant plate-shaped second L-pole arc striking part 65 and an L-pole arc extinguishing plate part 66 which are sequentially connected, the magnetic gathering frame part 61 is clamped on a short circuit release 4, the L-pole arc extinguishing plate part 66 is positioned in the L-pole arc extinguishing chamber 212, the N-pole integrated plate 7 comprises a wiring plate part 71, a slant connection part 72, a conductive plate part 73, an N-pole static contact installation part 74, an arc-shaped first N-pole arc striking part 75 and a slant plate-shaped second N-pole arc striking part 76 which are sequentially connected, meanwhile, the L-pole static contact 521 is arranged on the L-pole static contact installation part 63, the N-pole static contact 522 is arranged on the N-pole static contact installation part 74, and the magnetic yoke 6 and the N-pole integrated plate 7 of the conductive mechanism can be conveniently and integrally formed, therefore, the number of parts of the conductive mechanism can be simplified, the reliability of the conductive mechanism is improved, and the conductive mechanism has the functions of magnetism gathering, electric conduction, arc striking and arc extinguishing. Therefore, the static contact assembly structure of the switch electric appliance can enable the magnetic yoke 6 and the N-pole integrated plate 7 to be integrally formed, simplifies the number of parts of the conducting mechanism, improves the reliability of the conducting mechanism, and has the functions of magnetism gathering, conducting, arc striking and arc extinguishing.
As shown in fig. 14, in order to provide the magnetic concentration frame portion 61 with the magnetic concentration function, the magnetic concentration frame portion 61 is U-shaped, the magnetic concentration frame portion 61 includes a first supporting plate portion 611, an overhead plate portion 612 and a second supporting plate portion 613 which are connected in sequence, the first supporting plate portion 611 is provided with a retaining notch 611a, and the second supporting plate portion 613 is provided with a retaining through hole 613 a.
As shown in fig. 16 and 17, in order to improve the arc-isolating performance of the L-pole arc-striking chamber 211, two L-pole arc-isolating plates 213 are symmetrically disposed in the L-pole arc-striking chamber 211. Similarly, two N-pole arc separators 223 are symmetrically disposed in the N-pole arc ignition chamber 221. In order to guide the arc to the L-pole arc extinguishing chamber 212, the L-pole arc isolating plate 213 is provided with an L-pole arc-guiding long groove 213a, and the L-pole arc-guiding long groove 213a extends in the direction of the L-pole arc extinguishing chamber 212. Similarly, the N-pole arc-isolating plate 223 is provided with an N-pole arc-striking long groove 223a, and the N-pole arc-striking long groove 223a extends toward the N-pole arc-extinguishing chamber 222.
The N-pole integrated plate 7 further includes an N-pole arc-extinguishing plate portion (not shown) that is integrally formed with the second N-pole arc-striking portion 76 and is located inside the N-pole arc-extinguishing chamber 222.
As shown in fig. 6, an L-pole arc chute assembly 23 is disposed in the L-pole arc chute 212, and an N-pole arc chute assembly or arc-extinguishing long rib 24 is disposed in the N-pole arc chute 222.
The utility model also provides a circuit breaker, which comprises the static contact component structure of the switch electric appliance.
In conclusion, the present invention effectively overcomes various disadvantages of the prior art and has high industrial utilization value.
The foregoing embodiments are merely illustrative of the principles and utilities of the present invention and are not intended to limit the utility model. Any person skilled in the art can modify or change the above-mentioned embodiments without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which can be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

Claims (10)

1. A reset structure of an operating mechanism of a switching device is characterized by comprising:
a housing (1);
the operating mechanism (3), the operating mechanism (3) includes a handle (35), a connecting rod (36), a contact support (31), a lock catch (32) and a linkage reset piece (37), the handle (35) includes a handle body (351) pivoted on the shell (1), a handle clamping groove (352) is arranged on the peripheral wall of the handle body (351), the contact support (31) includes an arc isolation body (311) pivoted on the shell (1) in a resettable manner, the lock catch (32) includes an arc isolation cover body (321) pivoted on the arc isolation body (311), a cover body clamping claw (325) is arranged on the arc isolation cover body (321), one end of the connecting rod (36) is connected to the handle body (351) and the other end is locked or slipped between the lock catch (32) and the contact support (31), the linkage reset piece (37) includes an energy storage body, a first linkage end and a second linkage end led out by the energy storage body, the energy storage body is arranged on the handle body (351) or the arc isolation cover body (321), the first linkage end abuts against the inside of the handle clamping groove (352) along the reset rotation direction of the handle body (351) relative to the shell (1), and the second linkage end abuts against the cover clamping claw (325) along the reset rotation direction of the arc isolation cover (321) relative to the arc isolation body (311).
2. The reset structure of the switch electric appliance operating mechanism according to claim 1, characterized in that: an annular assembling groove (353) is formed in one side wall of the handle body (351); the linkage resets piece (37) and is the torsional spring structure, and the linkage resets piece (37) and includes linkage torsional spring body (371), first linkage stabilizer blade (372) and second linkage stabilizer blade (373), and linkage torsional spring body (371) are located annular assembly groove (353), and first linkage stabilizer blade (372) butt in handle draw-in groove (352), and second linkage stabilizer blade (373) butt in cover body jack catch (325).
3. The reset structure of the switch electric appliance operating mechanism according to claim 2, characterized in that: the handle clamping groove (352) penetrates through the annular assembling groove (353) along the radial direction of the handle body (351).
4. The reset structure of the switch electric appliance operating mechanism according to claim 1, characterized in that: the two ends of the connecting rod (36) are respectively provided with a plugging end (361) and a pushing end (362), the arc isolating body (311) is provided with a sliding chute (313) in sliding fit with the pushing end (362), and the sliding chute (313) comprises a locking groove part (313a) and a tripping groove part (313b) which are communicated; the arc-isolating cover body (321) is provided with a pressure lever arm (326), the pressure lever arm (326) is in open-close fit with the locking groove portion (313a) to lock or release the pushing end (362), and an arc-shaped locking notch (326a) matched with the pushing end (362) is formed in one side wall of the pressure lever arm (326) facing the locking groove portion (313 a).
5. The reset structure of the switch electric appliance operating mechanism according to claim 4, characterized in that: the sliding chute (313) comprises two sliding chute side walls (313c), and an avoiding opening (313d) which is used for avoiding the movement of the pressure lever arm (326) is formed in one sliding chute side wall (313c) close to the pressure lever arm (326).
6. The reset structure of the switch electric appliance operating mechanism according to claim 5, characterized in that: the arc isolating body (311) is provided with a limiting clamping groove (312) for positioning a moving contact (51), and a clamping groove side wall (312a) of the limiting clamping groove (312) is connected with a sliding groove side wall (313c) far away from the pressure lever arm (326) to form an integral structure.
7. The reset structure of the switch electric appliance operating mechanism according to claim 6, characterized in that: and a reinforcing rib (314) is arranged between the clamping groove side wall (312a) of the limiting clamping groove (312) and a sliding groove side wall (313c) far away from the pressure lever arm (326).
8. The reset structure of the switch electric appliance operating mechanism according to claim 1, characterized in that: the cover body clamping jaw (325) comprises an abutting part (325a) and a separation preventing part (325b), the abutting part (325a) is convexly and integrally formed on the arc-isolating cover body (321) and is in abutting fit with the second linkage end, and the separation preventing part (325b) is vertically and integrally formed on the abutting part (325a) to prevent the second linkage end from being separated from the abutting part (325 a).
9. The reset structure of the switch electric appliance operating mechanism according to claim 1, characterized in that: the arc isolation cover is characterized in that a first limiting notch (311a) and a second limiting notch (311b) are arranged on the arc isolation body (311), the first limiting notch (311a) is matched with the arc isolation cover body (321) along one side of the rotation direction of the first limiting notch, and the second limiting notch (311b) is matched with the arc isolation cover body (321) along the other side of the rotation direction of the second limiting notch.
10. A circuit breaker, characterized by: reset structure comprising an electric switching apparatus operating mechanism according to any one of claims 1 to 9.
CN202121738654.6U 2021-07-28 2021-07-28 Reset structure of switching device operating mechanism and circuit breaker Active CN216084766U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121738654.6U CN216084766U (en) 2021-07-28 2021-07-28 Reset structure of switching device operating mechanism and circuit breaker

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121738654.6U CN216084766U (en) 2021-07-28 2021-07-28 Reset structure of switching device operating mechanism and circuit breaker

Publications (1)

Publication Number Publication Date
CN216084766U true CN216084766U (en) 2022-03-18

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121738654.6U Active CN216084766U (en) 2021-07-28 2021-07-28 Reset structure of switching device operating mechanism and circuit breaker

Country Status (1)

Country Link
CN (1) CN216084766U (en)

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