CN212616638U - Valve actuator - Google Patents

Valve actuator Download PDF

Info

Publication number
CN212616638U
CN212616638U CN202020985058.7U CN202020985058U CN212616638U CN 212616638 U CN212616638 U CN 212616638U CN 202020985058 U CN202020985058 U CN 202020985058U CN 212616638 U CN212616638 U CN 212616638U
Authority
CN
China
Prior art keywords
shaft
manual
valve actuator
hand
actuator
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.)
Active
Application number
CN202020985058.7U
Other languages
Chinese (zh)
Inventor
靳义坤
靳辉
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.)
Changzhou Chenglei Valve Technology Co.,Ltd.
Original Assignee
Changzhou Chenglei Valve Technology Co ltd
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 Changzhou Chenglei Valve Technology Co ltd filed Critical Changzhou Chenglei Valve Technology Co ltd
Priority to CN202020985058.7U priority Critical patent/CN212616638U/en
Application granted granted Critical
Publication of CN212616638U publication Critical patent/CN212616638U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Mechanically-Actuated Valves (AREA)
  • Electrically Driven Valve-Operating Means (AREA)

Abstract

The utility model discloses a valve actuator belongs to valve actuator technical field. Mainly including switching part and executor main part, the executor main part includes the executor casing, integral key shaft and motor, the one end of integral key shaft is equipped with first dog, switching part is including the lid shell, the activity sets up the hand shaft in the lid shell, slide and set up the manual spacing axle on the lid shell, rotate manual switching pole and the travel switch of setting on the lid shell, the interval is provided with first spacing annular and the spacing annular of second in the hand shaft, be equipped with the second dog that corresponds first dog in the one end of hand shaft, the one end of manual spacing axle is equipped with driven rack, manual switching pole is including holding portion and straight-tooth portion, travel switch sets up in the lid shell, travel switch's switch baffle sets up in the hand shaft. The utility model discloses valve actuator can realize the swift switching of manual and electric mode to safe and reliable.

Description

Valve actuator
Technical Field
The utility model relates to a valve actuator technical field, concretely relates to valve actuator.
Background
The electric valve actuator is a machine which drives a valve to act by taking electric energy as a main energy source. The valve actuator is generally provided with a manual mode and used for switching the valve actuator into the manual mode when the electric execution part cannot be used or in emergency, so that the valve can be manually controlled; whether the manual-electric mode is switched is simple, convenient, quick and safe, and the use feeling of a user and the influence of a product are directly influenced.
There is a need to provide a valve actuator that addresses the above-mentioned problems.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem who solves: the valve actuator is provided, so that the manual mode and the electric mode can be switched quickly, and the valve actuator is safe and reliable.
In order to solve the technical problem, the utility model discloses a as follows technical scheme be: a valve actuator; the manual gear shifting device comprises a switching part and an actuator main body, wherein the actuator main body comprises an actuator shell, a spline shaft arranged in the actuator shell in a rotating mode and a motor connected with the spline shaft, a first jaw is arranged at one end, corresponding to the switching part, of the spline shaft, the switching part comprises a cover shell, a manual rotating shaft, a manual limiting shaft, a manual switching rod and a travel switch, a shaft hole in clearance fit with the manual rotating shaft is formed in the cover shell, a sliding hole for the manual limiting shaft to slide is further formed in the cover shell, a second elastic part is arranged in the sliding hole, a bearing hole for the manual switching rod to rotate is formed in the cover shell, a first limiting ring groove and a second limiting ring groove are formed in the manual rotating shaft at intervals, a second jaw is arranged at one end, corresponding to the first jaw, of the manual rotating shaft, a first elastic part is arranged between the first jaw and the second jaw, and a driven rack is arranged at one end of the manual limiting shaft, the manual switching rod is provided with a straight tooth part meshed with the driven rack, the travel switch is arranged in the cover shell, and a control circuit of the travel switch is connected with the motor.
Further, the manual switching rod further comprises a holding part connected with the straight tooth part.
Furthermore, a bearing and a framework oil seal which are sleeved on the hand rotating shaft are arranged in the shaft hole.
Furthermore, a switch baffle is arranged on a contact of the travel switch, and the switch baffle can be rotationally clamped and embedded on the hand rotating shaft.
Furthermore, the actuator main body further comprises a worm sleeve arranged on the spline shaft, a worm wheel and an output shaft arranged in the worm wheel, and the worm wheel is arranged on one side of the worm sleeve and meshed with the worm sleeve.
Furthermore, a key groove is formed in the inner side wall of the worm sleeve and corresponds to the spline shaft.
Furthermore, a driving shaft is arranged at the output end of the motor, and the motor is connected with the spline shaft through the driving shaft.
Furthermore, a plug is arranged on an opening at the outer side of the sliding hole.
Furthermore, a sealing element is sleeved at the position, fixedly attached to the actuator shell, of the cover shell, and the sealing element is an O-shaped sealing ring.
Furthermore, a hand wheel is arranged at one end of the hand rotating shaft extending out of the cover shell.
Compared with other methods, the utility model, beneficial technological effect is: the utility model discloses a valve actuator, including switching part and executor main part, the executor main part includes integral key shaft and motor, switching part includes hand-operated shaft, manual spacing axle, manual switching pole and travel switch, hand-operated shaft tip is equipped with the second dog that corresponds the complex with the first dog on the integral key shaft, and the switch baffle in the travel switch sets up on hand-operated shaft, promote hand-operated shaft to be connected with the integral key shaft through the second dog and realize the torque transmission, hand-operated spacing axle moves and inserts in the second spacing annular on hand-operated shaft under the effect of second elastic component after hand-operated shaft and integral key shaft are connected, thereby hand-operated shaft axial spacing has realized the quick switch-over of manual mode, the hand-operated shaft drives the switch baffle to move when moving, thereby closed travel switch's control circuit, guarantee that the motor can not miss the start and cause danger, when switching over the electronic mode, rotate manual switching rod and drive manual spacing axle and take off from the hand pivot, the hand pivot can be opened by automatic bullet under the spring action of first elastic component, drives the switch baffle when the hand pivot is opened by bullet and removes the control circuit who opens travel switch, switches valve actuator to the electric mode fast, realizes the swift switching of hand electric mode, because the hand pivot breaks away from integral key shaft after the motor just can the circular telegram, has improved the security of mode switching once more.
Drawings
The present invention will be further explained with reference to the drawings and examples.
In the figure: fig. 1 is a schematic structural diagram of a valve actuator according to the present invention;
FIG. 2 is a schematic diagram of a switching element of the valve actuator of FIG. 1;
FIG. 3 is a partially cross-sectional schematic view of the switching member of FIG. 2 in a top view;
in the figure:
100. a switching member; 11. a cover shell; 111. a shaft hole; 112. a slide hole; 113. a bearing hole; 114. framework oil seal; 115. a bearing; 116. a plug; 117. a copper sleeve; 118. a seal member; 12. a hand-operated shaft; 121. A first limit ring groove; 122. a second limit ring groove; 123. a second jaw; 13. a first elastic member; 14. a manual limiting shaft; 141. a driven rack; 15. a second elastic member; 16. a manual switch lever; 161. a straight tooth portion; 162. a holding portion; 17. a retainer ring; 18. a travel switch; 181. a switch bracket; 182. and (4) opening and closing a baffle.
200. An actuator body; 21. an actuator housing; 22. a spline shaft; 221. a first jaw; 23. a worm sleeve; 24. a worm gear; 25. an output shaft; 26. a motor; 261. a drive shaft; 27. a handwheel.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the present application, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
As shown in fig. 1, the valve actuator of the present invention includes an actuator body 200 for being mounted on a valve to open and close, regulate and control the valve, and a switching component 100 mounted on the actuator body 200 for manually operating and controlling the actuator body 200.
Further, in the present embodiment, the actuator main body 200 includes an actuator housing 21, a spline shaft 22 provided in the actuator housing 21, a worm sleeve 23 fitted over the spline shaft 22, a worm wheel 24 provided in the actuator housing 21 and corresponding to the worm sleeve 23, an output shaft 25 inserted through the worm wheel 24, and a motor 26 fixedly mounted outside the actuator housing 21.
The actuator housing 21 is a closed housing structure with a hollow interior, and in other embodiments, the actuator housing 21 may be a split structure to facilitate mounting or dismounting of internal components.
The spline shaft 22 is rotatably disposed in the inner cavity of the actuator housing 21, and both ends of the spline shaft 22 are inserted into bearings (not shown) in the actuator housing 21 corresponding to both ends of the spline shaft 22, and a first jaw 221 is integrally fixed to an end portion of the spline shaft 22 facing one end of the switching member 100.
The inner side wall of the worm housing 23 is provided with a key groove 231 corresponding to the spline of the spline shaft 22, so that the worm housing 23 is fixed in the circumferential direction and the torque on the spline shaft 22 is transmitted to the worm housing 23.
The worm wheel 24 is rotatably disposed inside the actuator housing 21, and is disposed offset to one side of the worm housing 23 and engaged with the worm housing 23.
The output shaft 25 is inserted and fixed in the center of the worm wheel 24, and is circumferentially fixed with the worm wheel 24 by key connection or interference fit, and when the actuator is used and installed, one end of the output shaft 25 extending to the outside of the actuator housing 21 is fixedly connected with an executed element (such as a rotating rod of a valve).
The motor 26 is fixedly installed on the outer side surface of the actuator housing 21, in this embodiment, the motor 26 is coaxially arranged with the spline shaft 22, a driving shaft 261 is arranged on a power output end of the motor 26, and the other end of the driving shaft 261 is fixedly connected with the other end of the spline shaft 22, which is deviated from the first jaw 221, through a coupler.
As shown in fig. 1, the switching member 100 is mounted outside the actuator housing 21 at a position corresponding to the first dog 221 on the spline shaft 22. Referring to fig. 2, in the present embodiment, the switching component 100 includes a cover shell 11, a hand rotating shaft 12 disposed in the cover shell 11, a hand limiting shaft 14 slidably disposed on the cover shell 11, a hand switching lever 16 movably disposed on the cover shell 11, and a travel switch 18 disposed in the cover shell 11.
The cover shell 11 is provided with a shaft hole 111 penetrating through two ends of the cover shell 11 at the right center, a framework oil seal 114 is fixed at one end of the shaft hole 111 inside the cover shell 11, a bearing 115 is fixed at the other end of the shaft hole 111 inside the cover shell 11, a copper sleeve 117 is fixed at a coaxial position between the bearing 115 and the framework oil seal 114, in the embodiment, the copper sleeve 117 is an oil-containing copper sleeve, a sliding hole 112 perpendicular to the shaft hole 111 is also arranged on the cover shell 11, a plug 116 is fixed at one end of the sliding hole 112 facing outwards, the sliding hole 112 is communicated with the shaft hole 111, the plug 116 can be fixed with an inner hole of the sliding hole 112 in a threaded fit manner, a bearing hole 113 intersecting the sliding hole 112 is arranged on the cover shell 11, a switch bracket 181 for installing a travel switch 18 is also fixed inside the cover shell 11, and a sealing element 118 is sleeved at a position fixedly attached to the actuator shell 21, in order to improve the sealing performance at the joint, the sealing member 118 is an O-ring in the present embodiment.
The hand rotating shaft 12 is arranged in the shaft hole 111, and the bearing 115, the copper sleeve 117 and the framework oil seal 114 are sequentially sleeved on the hand rotating shaft 12. The frame oil seal 114 is used for isolating the outside of the shaft hole 111 and preventing impurities such as dust from entering and damaging the inner parts of the cover shell 11. The copper bush 117 is used for radially bearing the hand rotating shaft 12, and can lubricate the outer side surface of the hand rotating shaft 12, so that the abrasion of the hand rotating shaft 12 in the use process is reduced, and the bearing 115 is used for improving the rotation flexibility of the hand rotating shaft 12. A first limiting ring groove 121 and a second limiting ring groove 122 are arranged on the hand rotating shaft 12 at intervals corresponding to the sliding hole 112, a second jaw 123 is fixedly arranged at one end of the hand rotating shaft 12 facing the spline shaft 22, the second jaw 123 is correspondingly matched with the first jaw 221 at the end of the spline shaft 22, a first elastic part 13 is sleeved between the first jaw 221 and the second jaw 123, and a hand wheel 27 is fixedly sleeved at the end of the hand rotating shaft 12 extending out of the cover shell 11.
The manual limit shaft 14 is a cylindrical structure and is slidably disposed in the sliding hole 112, a driven rack 141 is integrally and fixedly disposed at one end of the manual limit shaft 14, and a second elastic member 15 is disposed in the sliding hole 112 and between the manual limit shaft 14 and the plug 116.
Referring to fig. 3, the manual switching lever 16 of the present embodiment includes a grip portion 162 and a spur portion 161 connected to one end of the grip portion 162, and in the present embodiment, the grip portion 162 and the spur portion 161 are vertically connected. The spur gear portion 161 is rotatably disposed in the bearing hole 113, and a spur gear portion of the spur gear portion 161 is correspondingly engaged with the driven rack 141 of the manual limiting shaft 14, and a retaining ring 17 disposed on the manual switching lever 16 is fixedly disposed on an inner sidewall of the bearing hole 113 to prevent the manual switching lever 16 from being disengaged from the bearing hole 113.
The travel switch 18 is mounted on a switch bracket 181 in the cover shell 11, a switch baffle 182 is arranged on a contact of the travel switch 18, the switch baffle 182 is rotatably clamped on the hand rotating shaft 12, the switch baffle 182 can move along the axial direction along with the hand rotating shaft 12, and a control circuit of the travel switch 18 is electrically connected with the motor 26 to control the on-off of a circuit of the motor 26.
The working process of the valve actuator of the present invention is described below with reference to the accompanying drawings:
referring to fig. 2, in a normal condition, the valve actuator of the present invention operates in an electric mode, at this time, the hand rotating shaft 12 is located at the rightmost end position, the second jaw 123 on the hand rotating shaft 12 is separated from the first jaw 221 on the spline shaft 22, and the manual limit shaft 14 is inserted into the first limit ring groove 121, at this time, the travel switch 18 is in an open state. The motor 26 drives the spline shaft 22 to rotate through the driving shaft 261, the spline shaft 22 transmits torque to the worm sleeve 23 through key connection, the worm sleeve 23 drives the worm wheel 24 to rotate through meshing, finally, the output shaft 25 fixed at the center of the worm wheel 24 is driven to rotate, the output shaft 25 rotates to drive the executed part to act, and electric regulation and control on the executed part (valve) are achieved.
When the electric mode cannot be used or the manual mode needs to be switched, referring to fig. 2, the holding portion 162 on the manual switching lever 16 is firstly toggled to rotate counterclockwise, so as to drive the spur gear portion 161 to rotate counterclockwise, since the spur gear portion 161 is engaged with the driven rack 141 on the manual limiting shaft 14, the driven rack 141 is driven to move upward against the elastic force of the second elastic member 15, and finally the manual limiting shaft 14 is disengaged from the first limiting ring groove 121 on the manual rotating shaft 12, the axial movement limitation on the manual rotating shaft 12 is removed, then the hand wheel 27 is operated to push the hand wheel 27 in the direction of the actuator 200, so as to drive the manual rotating shaft 12 to move against the elastic force of the first elastic member 13, since the switch baffle 182 is sleeved on the manual rotating shaft 12, when the manual rotating shaft 12 moves leftward, the switch baffle 182 is driven to move leftward and disconnect the control circuit of the travel switch 18, so as to cut off the power of the motor 26, the safety of the manual mode is ensured, with the continuous propulsion of the manual rotating shaft 12, the second jaw 123 at the end of the manual rotating shaft 12 is finally sleeved with the first jaw 221 on the spline shaft 22, so that the manual rotating shaft 12 and the spline shaft 22 are circumferentially and fixedly connected, when the first jaw 221 is connected with the second jaw 123 in a matching manner, the manual limiting shaft 14 moves downwards under the elastic restoring force of the second elastic member 15 and is inserted into the second limiting groove 122, thereby limiting the axial offset of the manual rotating shaft 12, ensuring that the manual rotating shaft 12 cannot axially offset and slide under the manual mode, ensuring the operational reliability of the manual mode, at the moment, the spline shaft 22 can be driven to rotate by rotating the hand wheel 27, the torque transmission is realized by the spline shaft 22 through the worm sleeve 23 on the spline shaft and the meshed worm wheel 24, finally driving the output shaft 25 at the center of the worm wheel 24 to rotate, and driving the executed member (valve) at one end of the output shaft 25 to act, therefore, the valve is manually regulated, and the worm drives the worm wheel 24 to be a labor-saving mechanism, so that manual operation and control are labor-saving.
When the electric mode needs to be switched again, only the manual switching rod 16 in the switching part 100 needs to be pulled to drive the manual limiting shaft 14 to move upwards, and finally the manual limiting shaft 14 is separated from the second limiting ring groove 122 on the manual rotating shaft 12; the hand-operated rotating shaft 12 drives the switch baffle 182 to move rightwards in the moving process, so that a control circuit of the travel switch 19 is switched on, the motor 26 is switched on at the moment, the circuit of the motor 26 can be switched on after the hand-operated rotating shaft 12 is separated from the spline shaft 22, the motor 26 cannot be started by mistake to threaten personal safety, torque transmission is realized mainly by meshing the worm sleeve 23 and the worm wheel 24 in the electric mode, and the operation is reliable.
The utility model discloses a valve actuator, including switch part 100 and executor main part 200, executor main part 200 includes integral key shaft 22 and motor 26, switch part 100 includes manual pivot 12, manual spacing axle 14, manual switch lever 16 and travel switch 18, the tip of manual pivot 12 is equipped with the second dog 123 that corresponds the complex with first dog 221 on integral key shaft 22, and switch baffle 182 among the travel switch 18 sets up on manual pivot 12, promote manual pivot 12 to be connected with integral key shaft 22 through second dog 123 and realize the torque transmission, manual spacing axle 14 is removed and is inserted in the second spacing annular 122 on manual pivot 12 after manual pivot 12 is connected with integral key shaft 22 by the effect of second elastic component 15, thereby it is spacing to manual pivot 12 axial, the fast switch-over of manual mode has been realized, manual pivot 12 drives switch baffle 182 when moving, thereby the control circuit of travel switch 18 has been closed, guarantee that motor 26 can not miss the start and cause danger, when switching the electronic mode, rotate manual switching rod 16 and drive manual spacing axle 14 and leave hand-operated axle 12, hand-operated axle 12 can be opened by automatic bullet under the spring action of first elastic component 13, drive switch baffle 182 when hand-operated axle 12 bounces, remove the control circuit who opens travel switch 18, with valve actuator fast switch to electronic mode, realize the swift switching of hand-operated mode, motor 26 just can the circular telegram behind integral key shaft 22 owing to hand-operated axle 12 breaks away from, the security of mode switch has been improved once more.
In light of the foregoing, it will be apparent to those skilled in the art from this disclosure that various changes and modifications can be made without departing from the scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims (10)

1. A valve actuator, comprising: the manual switching device comprises a switching part (100) and an actuator main body (200), wherein the actuator main body (200) comprises an actuator shell (21), a spline shaft (22) which is rotatably arranged in the actuator shell (21) and a motor (26) which is connected with the spline shaft (22), one end of the spline shaft (22) corresponding to the switching part (100) is provided with a first jaw (221), the switching part (100) comprises a cover shell (11), a hand rotating shaft (12), a manual limiting shaft (14), a manual switching rod (16) and a travel switch (18), the cover shell (11) is provided with a shaft hole (111) which is in clearance fit with the hand rotating shaft (12), the cover shell (11) is further provided with a sliding hole (112) for the manual limiting shaft (14) to slide, a second elastic piece (15) is arranged in the sliding hole (112), and the cover shell (11) is provided with a bearing hole (113) for the manual switching rod (16) to rotate, the interval is provided with first spacing annular (121) and second spacing annular (122) on hand shaft (12), the one end that corresponds with first dog (221) on hand shaft (12) is equipped with second dog (123), be equipped with first elastic component (13) between first dog (221) and second dog (123), the one end of manual spacing axle (14) is equipped with driven rack (141), be provided with on manual switching rod (16) with straight tooth portion (161) of driven rack (141) meshing, travel switch (18) set up in lid shell (11), the control circuit and the motor (26) of travel switch (18) are connected.
2. The valve actuator of claim 1, wherein: the manual switching lever (16) further includes a grip portion (162) connected to the straight tooth portion (161).
3. The valve actuator of claim 1, wherein: and a bearing (115) and a framework oil seal (114) which are sleeved on the hand rotating shaft (12) are arranged in the shaft hole (111).
4. The valve actuator of claim 1, wherein: the contact of the travel switch (18) is provided with a switch baffle (182), and the switch baffle (182) is rotatably embedded on the hand rotating shaft (12).
5. The valve actuator of claim 1, wherein: the actuator main body (200) further comprises a worm sleeve (23) arranged on the spline shaft (22), a worm wheel (24) and an output shaft (25) arranged in the worm wheel (24), wherein the worm wheel (24) is arranged on one side of the worm sleeve (23) and meshed with the worm sleeve (23).
6. The valve actuator of claim 5, wherein: and a key groove (231) is formed in the inner side wall of the worm sleeve (23) and corresponds to the spline shaft (22).
7. The valve actuator of claim 1, wherein: and a driving shaft (261) is arranged at the output end of the motor (26), and the motor (26) is connected with the spline shaft (22) through the driving shaft (261).
8. The valve actuator of claim 1, wherein: and a plug (116) is arranged on an opening at the outer side of the sliding hole (112).
9. The valve actuator of claim 1, wherein: the position cover that is fixed with executor casing (21) on lid shell (11) is equipped with sealing member (118), sealing member (118) are O type sealing washer.
10. The valve actuator of claim 1, wherein: and a hand wheel (27) is arranged at one end of the hand rotating shaft (12) extending out of the cover shell (11).
CN202020985058.7U 2020-06-02 2020-06-02 Valve actuator Active CN212616638U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020985058.7U CN212616638U (en) 2020-06-02 2020-06-02 Valve actuator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020985058.7U CN212616638U (en) 2020-06-02 2020-06-02 Valve actuator

Publications (1)

Publication Number Publication Date
CN212616638U true CN212616638U (en) 2021-02-26

Family

ID=74722742

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020985058.7U Active CN212616638U (en) 2020-06-02 2020-06-02 Valve actuator

Country Status (1)

Country Link
CN (1) CN212616638U (en)

Similar Documents

Publication Publication Date Title
WO2013124723A1 (en) Food processor or chopper
CN111609202A (en) Valve actuator
CA2433380A1 (en) Automatically disconnecting plug and method of triggering disconnection of an automatically disconnecting plug
CN212616638U (en) Valve actuator
CN212868674U (en) Switching part and valve actuator with same
US7240582B1 (en) Override device for allowing manual operation of a closure normally driven by an electric motor
CN1637276B (en) Starter for an engine
JPH01218927A (en) Free wheel hub device
CN107411552B (en) Automatic flip kettle
CN102881478B (en) Spring return type centrifugal clutch
CN211117882U (en) Electric actuator
MX2023001790A (en) Driving device, in particular for opening and closing, e.g. a lock.
CN214874233U (en) Power takeoff, gearbox and vehicle
RU2012108374A (en) DRIVER TO ENSURE CLOSING THE LOCK OF THE OPENING PART OF THE VEHICLE AND THE RELATED DEVICE
CN201860211U (en) Manual operation device of electric actuator
CN209766339U (en) Miniature circuit breaker opening and closing driving device
CN211666511U (en) Electric window opener convenient to use
CN210068882U (en) Special gear for switching on and off of grounding switch
CN215861964U (en) Electric actuator with manual operation as full-automatic type
CN209055873U (en) A kind of machinery hand wheel structure
CN201426066Y (en) Electric actuator
CN213628581U (en) Manual clutch operating lever positioning mechanism
CN213245360U (en) Multifunctional electric actuator
JP2888329B2 (en) Manual operation mechanism
CN213871332U (en) Valve electric actuator with interlocking protection manual and electric switching function

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CP03 Change of name, title or address
CP03 Change of name, title or address

Address after: 213119 No. 76, Furong Industrial Park, Hengshanqiao Town, Wujin District, Changzhou City, Jiangsu Province

Patentee after: Changzhou Chenglei Valve Technology Co.,Ltd.

Address before: 213000 No.76 Furong Industrial Park, Hengshanqiao Town, Wujin District, Changzhou City, Jiangsu Province

Patentee before: CHANGZHOU CHENGLEI VALVE TECHNOLOGY Co.,Ltd.