CN101770876B - Energy storing structure of circuit-breaker spring operating mechanism - Google Patents

Energy storing structure of circuit-breaker spring operating mechanism Download PDF

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Publication number
CN101770876B
CN101770876B CN 200810072496 CN200810072496A CN101770876B CN 101770876 B CN101770876 B CN 101770876B CN 200810072496 CN200810072496 CN 200810072496 CN 200810072496 A CN200810072496 A CN 200810072496A CN 101770876 B CN101770876 B CN 101770876B
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CN
China
Prior art keywords
disengaging type
energy storage
axle
disc cam
transmission pinion
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Expired - Fee Related
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CN 200810072496
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Chinese (zh)
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CN101770876A (en
Inventor
刘铭官
危美华
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Fujian Ceepower Co ltd
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FUJIAN CEE POWER SYSTEM Co Ltd
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Priority to CN 200810072496 priority Critical patent/CN101770876B/en
Publication of CN101770876A publication Critical patent/CN101770876A/en
Application granted granted Critical
Publication of CN101770876B publication Critical patent/CN101770876B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The invention discloses an energy storing structure of a circuit-breaker spring operating mechanism, comprising an energy storing shaft, a switching-in shaft and a spring, wherein a clutch-type disk cam is axially and movably embedded on the energy storing shaft, a clutch-type transmission pinion is sleeved on the energy storing shaft, a wedging bulge is correspondingly arranged on a connection surface of the clutch-type disk cam and the clutch-type transmission pinion; the outer edge of the clutch-type disk cam is a bevel edge; the clutch-type transmission pinion is meshed with an energy storing gearwheel; the energy storing gearwheel is connected with the switching-in shaft, one end of the spring is arranged on the switching-in shaft, and the energy storing gearwheel is provided with a lifting wheel and a pawl wheel. The invention has simple structure, small volume and reliable operation.

Description

The energy storing structure of breaker spring operating mechanism
Technical field
The present invention relates to circuit breaker, is the main element in the power switchgear, relates in particular to the energy storing structure of the spring operating mechanism of circuit breaker.
The combined floodgate of technical background circuit breaker (connection circuit) or separating brake (open circuit) are to rely on its operating mechanism to realize.Spring operating mechanism is a kind of pattern of breaker operation mechanism, also is topmost, most widely used a kind of operating mechanism.The spring operating mechanism of circuit breaker passes to spring with mechanical energy (manpower is manual), electric energy (motor drags) and stores, and spring is the provider of breaker closing merit.The transmission of spring energy, storage and release are three groundwork modes of operating mechanism.Therefore energy-storage units (parts) is important in the spring operating mechanism, indispensable.Ratchet, sprocket wheel and gear have been used in the energy storage of existing numerous spring mechanisms, complex structure, take bigger installing space and in the insecure shortcoming of contact of energy transmission, storage and release link.
Summary of the invention
The invention provides a kind of dependable performance, can realize the transmission, storage, release of circuit breaker institute energy requirement and the energy storing structure of the spring operating mechanism of the circuit breaker of the circulation of transmitting again.
The present invention is by the following technical solutions: the energy storing structure of spring operating mechanism comprises the energy storage axle, axle closes a floodgate, spring, wherein the axial activity of the disc cam of disengaging type is entrenched on the energy storage axle, be arranged with the transmission pinion of disengaging type on the energy storage axle, the joint face correspondence of the transmission pinion of the disc cam of disengaging type and disengaging type is provided with Eat and closes projection, the cam outward flange of the disc cam of disengaging type is hypotenuse, the transmission pinion of disengaging type and the engagement of energy storage gear wheel, the energy storage gear wheel is connected with the axle that closes a floodgate, spring one end is located on the axle that closes a floodgate, and the energy storage gear wheel is provided with top wheel and sincere the wheel.
When above-mentioned energy storage axle rotates, the disc cam that drives disengaging type rotates, the disc cam of disengaging type drives the transmission pinion of disengaging type, the transmission pinion of disengaging type drives the energy storage gear wheel and rotates, the cam face that slips into the disc cam of disengaging type along the outer peripheral hypotenuse of cam of the disc cam of disengaging type is taken turns on top on the energy storage gear wheel, and the disc cam of jack-up disengaging type is mobile vertically.
The disc cam of above-mentioned disengaging type is provided with the elastic recoil structure.
Above-mentioned energy storage axle is provided with that fixing pin cooperates on the disc cam of holddown groove and disengaging type, forms axial movable fixed structure.
Above-mentioned energy storage gear wheel is connected by rotation axis with the axle that closes a floodgate.
The transmission pinion of above-mentioned disengaging type is provided with position limiting structure.
The present invention adopts above structure, when the operating mechanism energy storage, rotate (the manual or motor powered of manpower) energy storage axle, the disc cam that is embedded in the disengaging type on the energy storage axle rotates thereupon, close the transmission pinion that projection drives disengaging type by Eat, the transmission pinion of disengaging type drives the engagement of energy storage gear wheel, the axle rotation of closing a floodgate has been drawn in the rotation of energy storage gear wheel, close a floodgate the circumgyration stretch spring of axle and energy storage, thus mechanical energy (manually) or electric energy (motor) are passed to the potential energy that spring becomes spring.When the energy storage gear wheel turns over certain angle, when extension spring satisfies the energy storage requirement, top wheel on the energy storage gear wheel goes to the disc cam of disengaging type and contacts, the disc cam that promotes disengaging type is mobile vertically, the disc cam of disengaging type separates with the transmission pinion of disengaging type, the transmission pinion of disengaging type separates with the energy storage axle, has finished circulation of energy transmission in the spring operating mechanism, energy storage, separation.Sincere wheel the on the energy storage gear wheel is used for keeping spring energy-storage, transmits released state, and it links to each other with sincere son in the switching-on mechanism.When breaker closing, sincere son separates with sincere the wheel, the spring of energy storage releases energy to the axle that closes a floodgate, the parts action that links with it, finish the combined floodgate of switch, after spring discharged, the energy storage gear wheel was together with the top wheel and sincerely take turns reduction, the transmission pinion Eat that the disc cam of disengaging type is axially retracted with disengaging type closes, and prepares the spring energy-storage process of a beginning new round.So circulate repeatedly, by transmission, storage, release and the again circulation of transmission of side to realize circuit breaker institute energy requirement of automatic clutch.
Description of drawings
Now by reference to the accompanying drawings the present invention is further elaborated:
Fig. 1 is the energy storing structure schematic diagram of energy storage state not of spring operating mechanism of the present invention;
Fig. 2 is the schematic diagram of the energy storing structure energy storage state of spring operating mechanism of the present invention.
Embodiment
See also shown in Fig. 1 or 2, the present invention includes energy storage axle 1, combined floodgate axle 2, spring 3, wherein the disc cam 4 axial activities of disengaging type are entrenched on the energy storage axle 1, energy storage axle 1 is provided with that fixing pin 41 cooperates on the disc cam 4 of holddown groove 11 and disengaging type, form axial movable fixed structure, the disc cam 4 of disengaging type is provided with elastic recoil structure 9.Be arranged with the transmission pinion 5 of disengaging type on the energy storage axle 1, the joint face correspondence of the disc cam 4 of disengaging type and the transmission pinion 5 of disengaging type is provided with Eat and closes projection 42,51, the cam outward flange of the disc cam 4 of disengaging type is hypotenuse 43, the transmission pinion 5 of disengaging type can be provided with position limiting structure 6, the transmission pinion 5 of disengaging type and 7 engagements of energy storage gear wheel, energy storage gear wheel 7 is connected by rotation axis 8 with the axle 2 of closing a floodgate, spring 3 one ends 31 are located on the axle 2 that closes a floodgate, and energy storage gear wheel 7 is provided with top wheel 71 and sincerely takes turns 72.When energy storage axle 1 rotates, the disc cam 4 that drives disengaging type rotates, the disc cam 4 of disengaging type drives the transmission pinion 5 of disengaging type, the transmission pinion 5 of disengaging type drives energy storage gear wheel 7 and rotates, top on the energy storage gear wheel 7 wheel 71 slips into the cam face 44 of cam 4 of the disc cam of disengaging type along the cam 4 outer peripheral hypotenuses 43 of the disc cam of disengaging type, the disc cam 4 of jack-up disengaging type is mobile vertically.
As shown in Figure 1, when the operating mechanism energy storage, energy storage axle 1 (the manual or motor powered of manpower) rotates, the disc cam 4 that is embedded in the disengaging type of axial activity on energy storage axle 1 rotates thereupon, close the transmission pinion 5 that projection has driven disengaging type by Eat, the transmission pinion 5 of disengaging type and energy storage gear wheel 7 engagements that are installed on the axle 2 that closes a floodgate, axle 2 rotations of closing a floodgate have been drawn in the rotation of energy storage gear wheel 7, close a floodgate the circumgyration stretch spring 3 of axle 2 and energy storage, thereby mechanical energy (manually) or electric energy (motor) are passed to spring 3, becoming the potential energy of spring 3, is exactly the required closing function of circuit breaker.
As shown in Figure 2, energy storage gear wheel 7 turns over certain angle, when extension spring 3 satisfies the energy storage requirement, top wheel 71 on the energy storage gear wheel 7 goes to the disc cam 4 of disengaging type and contacts, top wheel 71 turns to disc cam 4 end faces 44 of disengaging type along hypotenuse 43, the disc cam 4 that promotes disengaging type is mobile vertically, the disc cam 4 of disengaging type separates with the transmission pinion 5 of disengaging type, has finished a circulation of energy transmission in the spring operating mechanism, energy storage, separation.

Claims (4)

1. the energy storing structure of the spring operating mechanism of circuit breaker, comprise the energy storage axle, axle closes a floodgate, spring, it is characterized in that: the axial activity of the disc cam of disengaging type is entrenched on the energy storage axle, be arranged with the transmission pinion of disengaging type on the energy storage axle, the joint face correspondence of the transmission pinion of the disc cam of disengaging type and disengaging type is provided with agrees with projection, the cam outward flange of the disc cam of disengaging type is hypotenuse, the transmission pinion of disengaging type and the engagement of energy storage gear wheel, the energy storage gear wheel is connected with the axle that closes a floodgate, spring one end is located on the axle that closes a floodgate, and the energy storage gear wheel is provided with top wheel and detent roller; When its energy storage axle rotates, the disc cam that drives disengaging type rotates, the disc cam of disengaging type drives the transmission pinion of disengaging type, the transmission pinion of disengaging type drives the energy storage gear wheel and rotates, the cam face that slips into the disc cam of disengaging type along the outer peripheral hypotenuse of cam of the disc cam of disengaging type is taken turns on top on the energy storage gear wheel, and the disc cam of jack-up disengaging type is mobile vertically; Its energy storage axle is provided with that fixing pin cooperates on the disc cam of holddown groove and disengaging type, forms axial movable fixed structure.
2. the energy storing structure of the spring operating mechanism of circuit breaker according to claim 1, it is characterized in that: the disc cam of its disengaging type is provided with the elastic recoil structure.
3. the energy storing structure of the spring operating mechanism of circuit breaker according to claim 1 is characterized in that: its energy storage gear wheel is connected by rotation axis with the axle that closes a floodgate.
4. the energy storing structure of the spring operating mechanism of circuit breaker according to claim 1, it is characterized in that: the transmission pinion of its disengaging type is provided with position limiting structure.
CN 200810072496 2008-12-29 2008-12-29 Energy storing structure of circuit-breaker spring operating mechanism Expired - Fee Related CN101770876B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200810072496 CN101770876B (en) 2008-12-29 2008-12-29 Energy storing structure of circuit-breaker spring operating mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200810072496 CN101770876B (en) 2008-12-29 2008-12-29 Energy storing structure of circuit-breaker spring operating mechanism

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CN101770876A CN101770876A (en) 2010-07-07
CN101770876B true CN101770876B (en) 2013-09-04

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102017223358A1 (en) * 2017-12-20 2019-06-27 Siemens Aktiengesellschaft Clamping mechanism for clamping a storage spring of a spring-loaded drive
CN112002604A (en) * 2020-08-24 2020-11-27 王海涛 Switching-on and switching-off mechanism for vacuum circuit breaker
CN112002603A (en) * 2020-08-24 2020-11-27 王海涛 Vacuum circuit breaker based on manual switching-on and switching-off mechanism

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19642031A1 (en) * 1995-10-12 1997-04-17 Mitsubishi Electric Corp Actuation mechanism for electrical circuit-breaker
CN2502391Y (en) * 2001-08-07 2002-07-24 刘铭官 Spring operated mechanism for high voltage breaker
CN201345303Y (en) * 2008-12-29 2009-11-11 福建中能电气股份有限公司 Energy storing structure of breaker spring operating mechanism

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19642031A1 (en) * 1995-10-12 1997-04-17 Mitsubishi Electric Corp Actuation mechanism for electrical circuit-breaker
CN2502391Y (en) * 2001-08-07 2002-07-24 刘铭官 Spring operated mechanism for high voltage breaker
CN201345303Y (en) * 2008-12-29 2009-11-11 福建中能电气股份有限公司 Energy storing structure of breaker spring operating mechanism

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Address after: 350002 Fuzhou, Jinshan Development Zone, Jinzhou Road, No. 20, North Road, No.

Patentee after: CEEPOWER Co.,Ltd.

Address before: 350002 Fuzhou, Jinshan Development Zone, Jinzhou Road, No. 20, North Road, No.

Patentee before: Fujian CEE Installation Co.,Ltd.

TR01 Transfer of patent right

Effective date of registration: 20170601

Address after: Fuqing City, Fuzhou City, Fujian province 350301 economic and Technological Development Zone (Hong Lu Jie Dao Zhou Dian Cun)

Patentee after: FUJIAN CEEPOWER CO.,LTD.

Address before: 350002 Fuzhou, Jinshan Development Zone, Jinzhou Road, No. 20, North Road, No.

Patentee before: CEEPOWER Co.,Ltd.

TR01 Transfer of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130904

Termination date: 20201229

CF01 Termination of patent right due to non-payment of annual fee