CN204857496U - Energy storage electricity behaviour device - Google Patents

Energy storage electricity behaviour device Download PDF

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Publication number
CN204857496U
CN204857496U CN201520549372.XU CN201520549372U CN204857496U CN 204857496 U CN204857496 U CN 204857496U CN 201520549372 U CN201520549372 U CN 201520549372U CN 204857496 U CN204857496 U CN 204857496U
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CN
China
Prior art keywords
lever
support
energy storage
cam
energy
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn - After Issue
Application number
CN201520549372.XU
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Chinese (zh)
Inventor
张振伟
成必勇
苟坤林
马鑫
李琳
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Suzhou Wanlong Electric Group Co Ltd
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Suzhou Wanlong Electric Group Co Ltd
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Filing date
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Priority to CN201520549372.XU priority Critical patent/CN204857496U/en
Application granted granted Critical
Publication of CN204857496U publication Critical patent/CN204857496U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses an energy storage electricity behaviour device, including support, cam, energy storage piece, lever, hasp board and rotation axis, the fulcrum of lever articulates in the support, and the one end of lever is articulated with the one end of energy storage piece, and the other end of energy storage piece is articulated with the support, and the other end of lever is as the output of drive circuit breaker action, install between the fulcrum of lever and the other end of lever with cam roll complex gyro wheel, the cam drives the pivot through one and articulates in the support, the one end of hasp board articulates in support and coaxial with the drive pivot, the other end and the support elastic connection of hasp board, and the other end of this hasp board be equipped with with the buckling part of rotation axis lock, the rotation axis articulates in the support, and be equipped with on this rotation axis with this buckling part lock joint complex catching groove, the hasp board still have with gyro wheel roll complex roll cooperation portion. The utility model discloses can reduce the uniformity of cam, the requirement of precision, and simple structure, low cost.

Description

Energy storage electric operatnig device
Technical field
The present invention relates to energy storage electric operatnig device.
Background technology
Energy storage electric operatnig device, namely energy storage type electrically operated device (mechanism), is mainly used in the circuit breaker in electric equipment, carries out disconnecting, detains, feed motion for driving circuit breaker.
The action mode of parking of energy storage electric operatnig device general at present relies on the roller on the straight planar support lever of cam point, and after cam rotates, when roller turns over the straight plane of cam point, lever moves from peak toward minimum point fast.The program needs the consistency of cam parts to accomplish very well, and the parked position that cam is each simultaneously needs unanimously can not have too large deviation, otherwise affects the consistency of each energy storage electric operatnig device action.It is rely on sensitive switch power-off to control that cam stops operating, if sensitive switch consistency is bad, cam stop position is also different.Even if the power-off that sensitive switch can be unanimously good, the actuating force of cam also can not have inertia, otherwise the stop position of cam is also difficult to unanimously, and therefore, existing energy storage electric operatnig device is higher to precision, coherence request, the high and complex structure of cost.
Summary of the invention
In order to overcome the deficiencies in the prior art, the object of the present invention is to provide energy storage electric operatnig device, the consistency of cam, the requirement of precision can be reduced, and structure is simple, with low cost.
Object of the present invention realizes by the following technical solutions:
Energy storage electric operatnig device, comprise support, cam, energy storing members, lever, locking board and rotating shaft, the fulcrum of lever is articulated with support, one end of lever and one end of energy storing members hinged, the other end and the support of energy storing members are hinged, the other end of lever is used as the output driving breaker actuation, and be provided with the roller coordinated that to roll with cam between the fulcrum of lever and the other end of lever, cam is articulated with support through a drive shaft; One end of locking board is articulated with support and coaxial with drive shaft, the other end of locking board is connected with rack elasticity, and the other end of this locking board is provided with the engaging portion fastened with rotating shaft, rotating shaft is articulated with support, and rotating shaft is provided with the catching groove be fastened with this engaging portion, locking board also has the rolling auxiliary section coordinated of rolling with roller.
Preferably, support is provided with limited post, and one end of lever is provided with the stopper slot supported with limited post and coordinate.
Preferably, the deep-slotted chip breaker passed for drive shaft is had between the fulcrum of lever and the other end of lever.
Preferably, energy storing members comprises energy-stored spring, joint pin and sleeve, one end of sleeve and one end of lever hinged, the other end slip cap of sleeve is loaded on one end of joint pin, the other end and the support of joint pin are hinged, energy-stored spring is set in joint pin and sleeve, and one end of this energy-stored spring is supported mutually with one end of sleeve, and the other end of this energy-stored spring is supported mutually with the other end of joint pin.
Preferably, rolling auxiliary section is the inside groove be opened on locking board.
Preferably, support is fixed with steady pin, the other end of locking board is connected with steady pin elasticity by an extension spring.
Preferably, described output is hinged with a set of ring stand.
Compared to existing technology, beneficial effect of the present invention is:
The present invention is with moving cam to rotate by drive shaft, order about roller by the rotation of this cam to rotate, thus drive lever relative to cam reverse rotation, now, the rolling auxiliary section of locking board will depart from the cooperation of roller, thus makes locking board under elastic force, depart from the fastening with rotating shaft, now, energy storing members is by compressed energy-storage under lever drives, and the output of lever also pulls work again by driving the handle of circuit breaker to make; When rotation rotating shaft, and after engaging portion and catching groove are fastened, reversed by drive shaft band moving cam, roller can coordinate with rolling auxiliary section, and and lever mated, thus lever is resetted, and then drive energy storing members release, the output of lever also will drive the handle of circuit breaker to make rapid closing action; As fully visible, the present invention just completes energy storage and output output action by the cooperation of roller, cam, lever, therefore low to the consistency of the parts such as cam, required precision, structure is simpler, and cost is cheaper, when roller is rolled into cam peak, locking board fastens, now whether cam continues to be driven in rotation, and locking board all can not depart from the rotating shaft with catching groove, and parked position wider range of cam is general.
Accompanying drawing explanation
Fig. 1 is the structural representation of energy storage electric operatnig device of the present invention when cam rotates clockwise;
Fig. 2 is the structural representation of energy storage electric operatnig device of the present invention when cam rotates counterclockwise;
Fig. 3 is the structural representation of cam of the present invention;
Fig. 4 is the structural representation of locking board of the present invention.
In figure: 1, support; 2, cam; 3, energy storing members; 31, energy-stored spring; 32, joint pin; 33, sleeve; 4, lever; 41, output; 42, stopper slot; 43, deep-slotted chip breaker; 5, locking board; 51, rolling auxiliary section; 52, engaging portion; 6, roller; 7, limited post; 8, steady pin; 9, extension spring; 10, ring stand is overlapped; 11, handle; 12, rotating shaft; 121, catching groove; 13, drive shaft.
Embodiment
Below, by reference to the accompanying drawings and embodiment, the present invention is described further:
Energy storage electric operatnig device as shown in figures 1-4, comprise support 1, cam 2, energy storing members 3, lever 4, locking board 5 and rotating shaft 12, the fulcrum of lever 4 is articulated with support 1, one end of lever 4 and one end of energy storing members 3 hinged, the other end and the support 1 of energy storing members 3 are hinged, the other end of lever 4 is used as the output 41 driving breaker actuation, and be provided with the roller 6 coordinated that to roll with cam 2 between the fulcrum of lever 4 and the other end of lever 4, cam 2 is articulated with support 1 through a drive shaft 13; One end of locking board 5 is articulated with support 1 and coaxial with drive shaft 13, the other end of locking board 5 is connected with support 1 elasticity, and the other end of this locking board 5 is provided with the engaging portion 52 fastened with rotating shaft 12, rotating shaft 12 is articulated with support 1, and rotating shaft 12 is provided with the catching groove 121 be fastened with this engaging portion 52, locking board 5 also has the rolling auxiliary section 51 coordinated of rolling with roller 6.
Moving cam 2 is with to rotate by drive shaft 13, order about roller 6 by the rotation of this cam 2 to rotate, thus drive lever 4 relative to cam 2 reverse rotation, now, the rolling auxiliary section 51 of locking board 5 will depart from the cooperation of roller 6, thus makes locking board 5 under elastic force, depart from the fastening with rotating shaft 12, now, energy storing members 3 is by compressed energy-storage under lever 4 drives, and the output 41 of lever 4 also will drive the handle 11 of circuit breaker to make feed motion; When rotation rotating shaft 12, and after engaging portion 52 and catching groove 121 are fastened, moving cam 2 is with to reverse by drive shaft 13, roller 6 can coordinate with rolling auxiliary section 51, and coordinate with lever 4, thus lever 4 is resetted, and then drive energy storing members 3 to discharge, the output 41 of lever 4 also pulls work again by driving the handle 11 of short-circuiting device to make; As fully visible, the present invention just completes energy storage and output 41 output action by the cooperation of roller 6, cam 2, lever 4, therefore low to the consistency of parts such as cam 2 grade, required precision, structure is simpler, and cost is cheaper, when roller 6 is rolled into cam peak, locking board 5 fastens, and now whether cam continues to be driven in rotation, and locking board all can not depart from the rotating shaft with catching groove, parked position wider range of cam is general, relaxes the final parked position of cam.
For carrying out spacing to the rotary oscillation of lever 4, support 1 is provided with limited post 7, and one end of lever 4 is provided with the stopper slot 42 supported with limited post 7 and coordinate.
Dodging space for being formed, avoiding to make the actuating force of drive shaft 13 interfering, between the fulcrum of lever 4 and the other end of lever 4, having the deep-slotted chip breaker 43 passed for drive shaft 13.
As a preferred structure of energy storing members 3 of the present invention, energy storing members 3 comprises energy-stored spring 31, joint pin 32 and sleeve 33, one end of sleeve 33 and one end of lever 4 hinged, the other end slip cap of sleeve 33 is loaded on one end of joint pin 32, the other end and the support 1 of joint pin 32 are hinged, energy-stored spring 31 is set in joint pin 32 and sleeve 33, and one end of this energy-stored spring 31 is supported mutually with one end of sleeve 33, and the other end of this energy-stored spring 31 is supported mutually with the other end of joint pin 32.When the stressed extruding energy storing members 3 of lever 4, sleeve 33 is inserted in joint pin 32, and energy-stored spring 31 is extruded energy storage, otherwise sleeve 33 is overhanging from joint pin 32, and energy-stored spring 31 discharges.
Coordinate for being formed to roll with roller 6 better, as shown in Figure 4, rolling auxiliary section 51 is for being opened in the inside groove on locking board 5.Maintain the stable of action during the effect of locking board 5, prevent lever 4 from arbitrarily swinging.
As one preferred embodiment, for providing enough elastic forces, guaranteeing the limited action of the elasticity of locking board 5, as shown in Fig. 1 ~ 2, the support 1 of this example being fixed with steady pin 8, the other end of locking board 5 is connected with steady pin 8 elasticity by an extension spring 9.
Link for being formed with the handle 11 of circuit breaker better, the output 41 of the lever 4 of this example is hinged with a set of ring stand 10, and cover ring stand 10 can be set with the handle 11 of circuit breaker better and links, more reliably to realize detaining again, to close a floodgate, the action of separating brake.
Snap close and unblock effect are played in the action that the output 41 of lever 4 exports, and during snap close, make lever 4 under its supporting role, maintain the energy storage state of lever 4 under energy storing members 3 acts on; During unblock, only need less external force to rotate rotating shaft 12, just can complete unlocking motion.
Specifically, rotate counterclockwise under the outside rotary driving force effect of cam 2, as shown in Figure 2, roller 6 tangent with it on lever 4 is rolled, thus lever 4 take fulcrum as pivot turns clockwise, and driving cover ring stand 10 (divide-shut brake assembly) toward left movement by output 41, this Sports band moves circuit breaker handle 11 and pulls work again, and lever 4 compressed energy-storage spring 31 carries out energy storage simultaneously.When lever 4 clockwise movement, because roller 6 will depart from and the coordinating of rolling auxiliary section 51, then locking board 5 does clockwise movement around himself pivot under extension spring 9 acts on, when rotating to peak to make cam 2, circuit breaker is detained again, and energy-stored spring 31 completes energy storage, after energy storage, engaging portion 52 can be buckled into catching groove 121, remain stable, so far mechanism completes energy storage and pulls work again.
As shown in Figure 1, when rotating shaft 12 under external force, after the motion of himself pivot, engaging portion 52 can fall into catching groove 121 and fasten with it, now lever 4 balance support is broken, and counterclockwise movement is done under the elastic force of energy-stored spring 31, the cover ring stand 10 (divide-shut brake assembly) that lever 4 promotes output 41 is turned right motion, and this Sports band moves circuit breaker handle 11 and carries out feed motion.When lever 4 move to stopper slot 42 contact with limited post 7 time, energy-stored spring 31 discharges completely, circuit breaker rapid closing.
To one skilled in the art, according to technical scheme described above and design, other various corresponding change and deformation can be made, and all these change and deformation all should belong within the protection range of the claims in the present invention.

Claims (7)

1. energy storage electric operatnig device, it is characterized in that, comprise support, cam, energy storing members, lever, locking board and rotating shaft, the fulcrum of lever is articulated with support, one end of lever and one end of energy storing members hinged, the other end and the support of energy storing members are hinged, and the other end of lever is used as the output driving breaker actuation, be provided with the roller coordinated that to roll with cam between the fulcrum of lever and the other end of lever, cam is articulated with support through a drive shaft; One end of locking board is articulated with support and coaxial with drive shaft, the other end of locking board is connected with rack elasticity, and the other end of this locking board is provided with the engaging portion fastened with rotating shaft, rotating shaft is articulated with support, and this rotating shaft is provided with the catching groove be fastened with this engaging portion, locking board also has the rolling auxiliary section coordinated of rolling with roller.
2. energy storage electric operatnig device according to claim 1, it is characterized in that, support is provided with limited post, and one end of lever is provided with the stopper slot supported with limited post and coordinate.
3. energy storage electric operatnig device according to claim 1, is characterized in that, has the deep-slotted chip breaker passed for drive shaft between the fulcrum of lever and the other end of lever.
4. energy storage electric operatnig device according to claim 1, it is characterized in that, energy storing members comprises energy-stored spring, joint pin and sleeve, one end of sleeve and one end of lever hinged, the other end slip cap of sleeve is loaded on one end of joint pin, the other end of joint pin and support hinged, energy-stored spring is set in joint pin and sleeve, one end of this energy-stored spring is supported mutually with one end of sleeve, and the other end of this energy-stored spring is supported mutually with the other end of joint pin.
5. energy storage electric operatnig device according to claim 1, is characterized in that, rolling auxiliary section is the inside groove be opened on locking board.
6. energy storage electric operatnig device according to claim 1, is characterized in that, support is fixed with steady pin, and the other end of locking board is connected with steady pin elasticity by an extension spring.
7. the energy storage electric operatnig device according to any one of claim 1 ~ 6, is characterized in that, described output is hinged with a set of ring stand.
CN201520549372.XU 2015-07-27 2015-07-27 Energy storage electricity behaviour device Withdrawn - After Issue CN204857496U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520549372.XU CN204857496U (en) 2015-07-27 2015-07-27 Energy storage electricity behaviour device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520549372.XU CN204857496U (en) 2015-07-27 2015-07-27 Energy storage electricity behaviour device

Publications (1)

Publication Number Publication Date
CN204857496U true CN204857496U (en) 2015-12-09

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CN201520549372.XU Withdrawn - After Issue CN204857496U (en) 2015-07-27 2015-07-27 Energy storage electricity behaviour device

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105006388A (en) * 2015-07-27 2015-10-28 苏州万龙电气集团股份有限公司 Energy storage electrical operation device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105006388A (en) * 2015-07-27 2015-10-28 苏州万龙电气集团股份有限公司 Energy storage electrical operation device
CN105006388B (en) * 2015-07-27 2017-08-22 苏州万龙电气集团股份有限公司 Energy storage electric operatnig device

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20151209

Effective date of abandoning: 20170822

AV01 Patent right actively abandoned