CN106655503B - Bluetooth function switch on post that opens and shuts - Google Patents

Bluetooth function switch on post that opens and shuts Download PDF

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Publication number
CN106655503B
CN106655503B CN201611049422.3A CN201611049422A CN106655503B CN 106655503 B CN106655503 B CN 106655503B CN 201611049422 A CN201611049422 A CN 201611049422A CN 106655503 B CN106655503 B CN 106655503B
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CN
China
Prior art keywords
groove
wall
sliding
box
rotating shaft
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Active
Application number
CN201611049422.3A
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Chinese (zh)
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CN106655503A (en
Inventor
郑贤舜
夏陈喆
夏惠惠
郑晟
金海晨
戴瑞海
陈韶村
梁一晨
郑圣
汤耀景
林伟恺
李藻
金强
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.)
State Grid Corp of China SGCC
State Grid Zhejiang Electric Power Co Ltd
Wenzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Original Assignee
State Grid Corp of China SGCC
State Grid Zhejiang Electric Power Co Ltd
Wenzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
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Application filed by State Grid Corp of China SGCC, State Grid Zhejiang Electric Power Co Ltd, Wenzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd filed Critical State Grid Corp of China SGCC
Priority to CN201611049422.3A priority Critical patent/CN106655503B/en
Publication of CN106655503A publication Critical patent/CN106655503A/en
Application granted granted Critical
Publication of CN106655503B publication Critical patent/CN106655503B/en
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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network

Abstract

The application discloses a column switch with a Bluetooth function. The insulation box is internally provided with the brake breaking device, the Bluetooth control module and the signal receiver, the insulation box is assembled by sliding the sliding block in the sliding groove, and the sealing ring is arranged in the sliding groove, so that the box wall is tightly attached after being assembled and stressed; the signal receiver transmits the signal to the Bluetooth control module after receiving the Bluetooth signal, and the Bluetooth control module controls the pushing rod or the gyrator in the second rotating shaft clamping block to carry out corresponding commands according to the signal so as to realize the switching-off or switching-on of the column switch; the rotation of the first rotating shaft drives the rotation of the second rotating shaft, and the broken knife on the human rotating shaft is connected or disconnected with the line-in and line-out insulating terminal, so that the control is convenient; the fixed panel is hinged with the first box wall, so that the fixed panel can rotate by taking the joint as a shaft, and the aim of conveniently installing or detaching the second rotating shaft is fulfilled.

Description

Bluetooth function switch on post that opens and shuts
Technical Field
The application relates to the field of high-voltage electrical appliance switches, in particular to a column switch with a Bluetooth function.
Background
Pole-mounted switches (circuit breakers and load switches, the same applies hereinafter) are among the most widely used electrical devices in electrical systems, and in order to meet different application requirements, there are various types of pole-mounted circuit breakers and load switches on the market, for example: ZW8, ZW20, ZW32, FZW, etc.
Most of existing pole-mounted switches are manually operated to switch on and switch off, so that the problem of large error exists in manual operation, and the problem of large potential safety hazard exists, so that the operation is inconvenient.
Disclosure of Invention
Aiming at the defects in the prior art, the application aims to provide a safe and rapid column switch with a Bluetooth function.
In order to achieve the above purpose, the present application provides the following technical solutions: the utility model provides a post switch that bluetooth function opened and shut which characterized in that: including insulation box, brake device, bluetooth control module and signal receiver, the insulation box includes first tank wall, second tank wall and bottom of the case, first tank wall is adjacent with the second tank wall, the bottom of the case links to each other with first tank wall and second tank wall, first tank wall, second tank wall and bottom of the case form the cavity, be provided with first spout on the first tank wall, be provided with on the second tank wall and be used for the gliding first slider in first spout, first tank wall is provided with the second spout, the bottom of the case is provided with the gliding second slider in the second spout, the bottom of the case still is provided with the caulking groove that is used for embedding second tank wall, when assembling the insulation box, install first slider in the first spout, connect first tank wall and second tank wall, install the second slider in the second spout, connect first tank wall and bottom of the case, the edge embedding of second tank wall is in the caulking groove.
As a further improvement of the application, sealing grooves for installing sealing rings are arranged in the first sliding groove and the second sliding groove, when the first sliding block slides in the first sliding groove and the second sliding block slides in the second sliding groove, the sealing rings are arranged in the sealing grooves, and the first tank wall, the second tank wall and the tank bottom are tightly connected after extrusion.
As a further improvement of the application, the cross sections of the first chute, the second chute, the first sliding block and the second sliding block are regular hexagons or triangles.
As a further improvement of the application, the box bottom is provided with an installing table, the installing table is provided with a first through groove, the first through groove comprises a first groove wall, the first groove wall is provided with a plurality of limiting holes, the brake breaking device comprises an automatic pushing rod, the automatic pushing rod is installed in the first through groove, the automatic pushing rod is provided with a fixing groove, the fixing groove is internally provided with a spring, and the spring is provided with a spherical fixing block used for being embedded into the limiting holes.
As a further improvement of the application, the automatic pushing rod is provided with a first electrifying piece, the brake breaking device further comprises a connecting block, one end of the connecting block, which is close to the first electrifying piece, is provided with a second electrifying piece matched with the first electrifying piece, the first electrifying piece is attached to the second electrifying piece after electrifying, the connecting block is provided with a plurality of first supporting rods, and the plurality of first supporting rods are connected with the bottom of the box.
As a further improvement of the application, one end of the connecting block, which is far away from the first supporting rod, is provided with a second supporting rod and a third supporting rod, the second supporting rod is provided with a second through groove, the third supporting rod is provided with a rotary groove, a driving device is arranged in the rotary groove, the driving device is provided with a first rotating shaft, the first rotating shaft penetrates through the second through groove, the first rotating shaft is provided with a first roller, the first roller is provided with a first driving groove, a driving belt is arranged in the driving groove, the brake breaking device further comprises a second roller, the second roller is provided with a second driving groove for embedding the driving belt, the diameter of the first roller is larger than that of the second roller, and the first roller and the second roller are positioned on the same vertical surface and are in transmission connection.
As a further improvement of the application, the second roller is connected with a second rotating shaft, a fourth chute is arranged on one side of the first tank wall close to the cavity, the plane of the fourth chute is arc-shaped, two fourth sliders used for embedding are arranged in the fourth chute, fixing holes are formed in the two fourth sliders, the two fourth sliders are connected with fixing panels, a third through groove is formed in the joint of the two fixing panels, the third through groove comprises a second tank wall, and a fifth chute used for embedding the second tank wall is arranged on the second rotating shaft; the two fixing panels are hinged with the first box wall, the ends, far away from the fourth sliding block, of the two fixing panels are provided with fourth through grooves used for the purpose, protrusions are arranged on the first box wall, fifth through grooves matched with the fourth through grooves are formed in the protrusions, and the fourth through grooves are communicated with the fifth through grooves.
As a further improvement of the application, the second rotating shaft is provided with a breaking knife, the first box wall and the second box wall are both provided with two, the second box wall is respectively provided with a wire inlet insulating terminal and a wire outlet insulating terminal, and the breaking knife is connected with the wire inlet insulating terminal and the wire outlet insulating terminal when the breaking knife rotates on the second rotating shaft.
As a further improvement of the application, clamping blocks are arranged at two ends of the second rotating shaft, a rotating device is arranged in the clamping blocks, and the rotating device is connected with the Bluetooth control module.
As a further improvement of the application, the signal receiver is connected with a bluetooth control module, and the bluetooth control module is connected with the brake breaking device.
The application has the beneficial effects that when the switch is opened and closed, a signal is transmitted through Bluetooth, a signal receiver in the insulation box receives the signal and then transmits the signal to the Bluetooth control module, and the Bluetooth control module controls the automatic push rod or the gyrator to drive the second rotating shaft to rotate so as to drive the breaking knife to realize the switch with the insulated terminal of the incoming and outgoing line; the whole operation is simple and quick, convenient and safe, and safety accidents such as electric leakage and the like of components in the pole switch are avoided.
Drawings
FIG. 1 is a schematic diagram of the structure of the present application;
FIG. 2 is a schematic view of the first wall and bottom of the present application;
FIG. 3 is a cross-sectional view of the automatic pushing plate and mounting table of the present application;
FIG. 4 is a schematic view showing the structure of a third supporting bar according to the present application;
FIG. 5 is a schematic plan view of a first wall of the present application;
FIG. 6 is a diagram showing the connection between the first roller and the second roller according to the present application;
fig. 7 is a cross-sectional view of a second rotary shaft of the present application;
FIG. 8 is a schematic view of a second wall structure of the present application
Fig. 9 is a schematic plan view of the fixing panel of the present application.
Appendix:
1. an insulation box; 2. a brake breaking device; 3. a Bluetooth control module; 4. a signal receiver; 5. a first tank wall; 6. a second tank wall; 7. a box bottom; 8. a cavity; 9. a first chute; 10. a first slider; 11. a second chute; 12. a second slider; 13. a caulking groove; 14. sealing grooves; 15. a mounting table; 16. a first through groove; 17. a first groove wall; 18. a limiting hole; 19. automatically pushing the rod; 20. a fixing groove; 21. a spring; 22. a spherical fixing block; 23. a first power-on sheet; 24. a connecting block; 25. a second energizing sheet; 26. a first support bar; 27. a second support bar; 28. a second through slot; 29. a third support bar; 30. a rotary groove; 31. a driving device; 32. a first rotation shaft; 33. a first roller; 34. a first driving groove; 35. a transmission belt; 36. a second roller; 37. a second driving groove; 38. a second rotation shaft; 39. a fourth chute; 40. a fourth slider; 41. a fixing hole; 42. fixing the panel; 43. a third through slot; 44. a second groove wall; 45. a fifth chute; 46. a fourth slot; 47. a protrusion; 48. a fifth through groove; 49. a clamping block; 50. a swivel device; 51. breaking the cutter; 52. a wire inlet insulating terminal; 53. and an outgoing line insulation terminal.
Detailed Description
The application will be further described in detail with reference to examples of embodiments shown in the drawings.
Referring to fig. 1 to 9, a post switch with bluetooth function according to the present embodiment is characterized in that: the insulation box 1 comprises a first box wall 5, a second box wall 6 and a box bottom 7, the first box wall 5 is adjacent to the second box wall 6, the box bottom 7 is connected with the first box wall 5 and the second box wall 6, a cavity 8 is formed by the first box wall 5, the second box wall 6 and the box bottom 7, a first sliding groove 9 is arranged on the first box wall 5, a first sliding block 10 used for sliding in the first sliding groove 9 is arranged on the second box wall 6, a second sliding groove 11 is arranged on the first box wall 5, a second sliding block 12 used for sliding in the second sliding groove 11 is arranged on the box bottom 7, an embedding groove 13 used for embedding the second box wall 6 is further arranged on the box bottom 7, when the insulation box 1 is assembled, the first sliding block 10 is installed in the first sliding groove 9, the first box wall 5 and the second box wall 6 are connected, the second sliding block 12 is installed in the second sliding groove 11, the first sliding groove 5 and the second box wall 7 are connected, and the edge 13 of the second box wall 6 is embedded in the embedding groove 13.
According to the technical scheme, when the insulation box 1 is spliced, the second sliding block 12 arranged on the box bottom 7 is aligned with the second sliding groove 11 on the first box wall 5 to slide along the direction in which the second sliding groove 11 is formed, the first box wall 5 and the box bottom 7 are fixedly connected, the first sliding block 10 on the second box wall 6 is aligned with the first sliding groove 9 arranged on the first box wall 5 and slides along the direction in which the first sliding groove 9 is formed, the first box wall 5 and the second box wall 6 are fixedly connected, the bottom edge of the second box wall 6 is embedded into the caulking groove 13 of the box bottom 7, and the second box wall 6 and the box bottom 7 are fixedly connected; the cooperation of application spout and slider has reduced the metal such as bolt of insulation can 1 and has fixed, avoids when taking place safety problems such as electric leakage, draws forth the electric current through metal connection structure such as bolt, enlarges the potential safety hazard, and the slider has saved the time of installing the bolt with the setting up of spout moreover, has reduced cost and wasting of resources, installs convenient and swift.
The signal receiver 3 and the bluetooth control module 4 are in the prior art, and the optional commonly used HC-06 bluetooth module already comprises the signal receiver and the bluetooth module, and the whole structure is driven to move by starting a driving motor after receiving a bluetooth signal, and the driving motor can be arranged in a part needing to move in the application.
As a modified embodiment, sealing grooves 14 for installing sealing rings are arranged in the first sliding groove 9, the second sliding groove 11 and the caulking groove 13, when the first sliding block 10 slides in the first sliding groove 9 and the second sliding block 12 slides in the second sliding groove 11, the sealing rings are installed in the sealing grooves 14, and after extrusion, the first box wall 5, the second box wall 6 and the box bottom 7 are connected more tightly.
Through above-mentioned technical scheme, the cooperation of slider and spout can produce great gap, and the production in gap can be in bad weather, lets rainwater etc. leak into in the insulation case 1, produces the potential safety hazard. Set up seal groove 14 in first spout 9 and second spout 11, set up the sealing washer in seal groove 14, when sliding in the slider spout, fixed tank wall and bottom of the case 7, after having installed all tank walls, can produce effort between the tank wall, under the effect, the sealing washer is extruded and is reached better sealed laminating effect. The seal groove 14 is arranged to facilitate the installation of the seal ring, and the problem that the seal ring cannot slide or cannot be directly installed due to the fact that a certain space is not reserved when the sliding block and the sliding groove slide is directly avoided.
As a modified specific embodiment, the cross sections of the first chute 9, the second chute 11, the first slide block 10 and the second slide block 12 are all regular hexagons.
Through the technical scheme, the cross sections of the first chute 9, the second chute 11, the first sliding block 10 and the second sliding block 12 are all set to be regular hexagons, so that the phenomenon that the box body is separated from the groove and the like in the moving process and the like can be avoided after the insulating box 1 is installed, and the influence of the shaking of the box body in the front, the back, the left and the right on the internal brake breaking device 2 is avoided, so that the insulating box cannot work normally.
As a modified specific embodiment, the box bottom 7 is provided with a mounting table 15, a first through groove 16 is arranged on the mounting table 15, the first through groove 16 comprises a first groove wall 17, the first groove wall 17 is provided with a plurality of limiting holes 18, the brake breaking device 2 comprises an automatic pushing rod 19, the automatic pushing rod 19 is arranged in the first through groove 16, a fixed groove 20 is arranged on the automatic pushing rod 19, a spring 21 is arranged in the fixed groove 20, and a spherical fixed block 22 used for being embedded into the limiting holes 18 is arranged on the spring 21.
According to the technical scheme, the spring 21 is installed in the fixing groove 20 of the automatic pushing rod 19, the spherical fixing block 22 is installed on the spring 21, when the automatic pushing rod 19 is installed in the first through groove 16 and the automatic pushing rod 19 is acted, the automatic pushing rod slides into the cavity 8, the spherical fixing block 22 is pressed by the groove wall of the first through groove 16 to generate force, the force acts on the spring 21, the spring 21 is deformed and generates a reaction force, and the spherical fixing block 22 is fixed between the groove wall and the spring 21 under the action of the action force and the reaction force, so that the problem of falling does not occur; when the automatic pushing rod 19 slides to a certain position, the spherical fixing block 22 slides to the position of the limiting hole 18, the concave limiting hole 18 suddenly removes the acting force on the spherical fixing block 22, the reaction force generated by the spring 21 pushes the spherical fixing block 22 into the limiting hole 18, the spherical fixing block 22 which is again subjected to the wall of the limiting hole 18 is fixed between the limiting hole 18 and the spring 21, the automatic pushing rod 19 is fixed at the position and can not slide continuously, the aim of preventing the continuous sliding of the automatic pushing rod 19 is achieved, the surface of the spherical fixing block 22 is a curved surface, the spherical fixing block 22 rolls in the first through groove 16 when the automatic pushing rod 19 slides, the friction force generated between the spherical fixing block 22 and the limiting hole is reduced, and the sliding of the automatic pushing rod 19 is more convenient.
As a specific implementation way of improvement, the automatic pushing rod 19 is provided with a first electrifying piece 23, the brake breaking device 2 further comprises a connecting block 24, one end, close to the first electrifying piece 23, of the connecting block 24 is provided with a second electrifying piece 25 matched with the first electrifying piece 23, after electrifying, the first electrifying piece 23 is attached to the second electrifying piece 25, the connecting block is provided with a plurality of first supporting rods 26, and the plurality of first supporting rods 26 are connected with the box bottom 7.
Through above-mentioned technical scheme, first bracing piece 26 one end and bottom of the case 7 fixed connection, the connecting block 24 is connected to the other end, realizes the purpose of fixed connecting block 24. After the automatic pushing rod 19 slides to a certain position in the first sliding groove 9 to be fixed, the first electrifying piece 23 at the tail end of the automatic pushing rod 19 is just tightly attached to the second electrifying piece 25 at one end of the connecting block, and the current of the automatic pushing rod 19 is transmitted into the connecting block through the attached first electrifying piece 23 and second electrifying piece, so that the control opening and closing of the current are realized.
As a modified specific embodiment, one end of the connecting block 24, which is away from the first supporting rod 26, is provided with a second supporting rod 27 and a third supporting rod 29, the second supporting rod 27 is provided with a second through groove 28, the third supporting rod 29 is provided with a rotary groove 30, a driving device 31 is arranged in the rotary groove 30, a first rotary shaft 32 is arranged on the driving device 31, the first rotary shaft 32 penetrates through the second through groove 28, a first roller 33 is arranged on the first rotary shaft 32, a first driving groove 34 is arranged on the first roller 33, a driving belt 35 is arranged in the driving groove, the brake breaking device 2 further comprises a second roller 36, a second driving groove 37 for embedding the driving belt 35 is arranged on the second roller 36, the diameter of the first roller 33 is larger than that of the second roller 36, and the first roller 33 and the second roller 36 are positioned on the same vertical surface and are in driving connection.
Through the above technical scheme, the second support rod 27 and the third support rod 29 are respectively fixed at the corresponding positions of the connecting blocks, the driving device 31 is installed in the rotating groove 30 of the third support rod 29, one end of the first rotating shaft 32 is fixed on the driving device 31, the other end of the first rotating shaft 32 passes through the second through groove 28 on the second support rod 27, the first roller 33 and the first rotating shaft 32 are integrally arranged, the driving belt 35 is installed in the first driving groove 34 of the first roller 33, the second roller 36 with the diameter smaller than that of the first roller 33 is provided with the second driving groove 37, the driving belt 35 is also installed in the second driving groove 37, when the driving device 31 is connected with the connecting blocks 24, the first rotating shaft 32 drives the first roller 33 to rotate, the driving belt 35 is driven by the driving belt 35 to rotate under the action of the first roller 33, and the number of turns of the first roller 33 is inversely proportional to the number of turns of the second roller 36 and the diameter of the roller, and the diameter of the first roller 33 is larger than the diameter of the second roller 36, so that the second roller 36 rotates more rapidly, and the second roller 36 rotates more rapidly.
As a modified specific embodiment, the second roller 36 is connected with a second rotating shaft 38, one side of the first tank wall 5, which is close to the cavity 8, is provided with a fourth chute 39, the plane of the fourth chute 39 is arc-shaped, two fourth sliding blocks 40 used for embedding are arranged in the fourth chute 39, fixing holes 41 are arranged on the two fourth sliding blocks 40, the two fourth sliding blocks 40 are connected with a fixing panel 42, a third through groove 43 is arranged at the joint of the two fixing panels 42, the third through groove 43 comprises a second groove wall 44, and a fifth chute 45 used for embedding the second groove wall 44 is arranged on the second rotating shaft 38; the two fixing panels 42 are hinged with the first tank wall 5, a fourth through groove 46 is formed in one end, far away from the fourth sliding block 40, of the two fixing panels 42, a protrusion 47 is arranged on the first tank wall 5, a fifth through groove 48 matched with the fourth through groove 46 is formed in the protrusion 47, and the fourth through groove 46 is communicated with the fifth through groove 48.
Through the above technical scheme, the second roller 36 and the second rotating shaft 38 are also integrated, the fourth slider 40 and the fixed panel 42 are also integrated, when the fixed panel 42 is installed, the fifth through groove 48 on the first wall 5 of the fourth through groove 46 of the fixed panel 42 is aligned and bonded together, and the bolts pass through the bonded fourth through groove 46 and fifth through groove 48, so as to realize the fixed connection of the first wall 5 and the fixed panel 42, and the fixed panel 42 rotates on the first wall 5 by taking the connected protrusion 47 as an axis due to the hinge connection, so as to realize the bonding and the separation of the two fixed panels 42; the fourth sliding block 40 connected with the fixed panel 42 is embedded into the fourth sliding groove 39 arranged on the first box wall 5, the plane of the fourth sliding groove 39 is arc-shaped, so that the fixed panel 42 can be conveniently opened and closed when hinged rotation occurs, the supporting function is achieved, the fourth sliding block 40 which also plays a role in the fixed panel 42 can slide along the fourth sliding groove 39, the fixed panel 42 can be prevented from rotating along a fixed direction when sliding, and the problem of sliding deviation is avoided; the second rotating shaft 38 passes through the third through slot 43 on the fixed panel 42, the second slot wall 44 arranged on the third through slot 43 is embedded into the fifth slide slot 45 on the second rotating shaft 38, and the second slot wall 44 is embedded with the fifth slide slot 45, so that when the first rotating shaft rotates, the transmission belt 35 drives the second rotating shaft 38 to rotate.
As a modified embodiment, the second rotating shaft 38 is provided with a breaking knife 51, the first tank wall 5 and the second tank wall 6 are both provided with two, the second tank wall 6 is respectively provided with a wire inlet insulating terminal 52 and an insulating terminal, and when the breaking knife 51 rotates on the second rotating shaft 38, the breaking knife 51 is connected with the wire inlet insulating terminal 52 and the insulating terminal.
Through the above technical scheme, the second rotating shaft 38 is driven to rotate by the rotation of the first rotating shaft 32, the breaking blade 51 also rotates, and the breaking blade 51 is connected with or disconnected from the line-in-out insulating terminal 53 when rotating to a certain position, so that the on-column switch is in a switch-on or switch-off state.
As a modified embodiment, two ends of the second rotating shaft 38 are provided with clamping blocks 49, and a turning device 50 is arranged in each clamping block 49.
By the above technical scheme, after the second rotating shaft 38 rotates until the breaking blade 51 is connected with the wire-in and wire-out insulating terminal 53, the connection between the breaking blade 51 and the wire-in and wire-out insulating terminal 53 is disconnected, and the rotating device 50 drives the second rotating shaft 38 to restore to the original position.
As a modified embodiment, the signal receiver 4 is connected with the bluetooth control module 3, and the bluetooth control module 3 is connected with the brake breaking device 2.
Through above-mentioned technical scheme, when the operation, through bluetooth transmission operating signal, signal receiver 4 received signal transmission to bluetooth control module 3, bluetooth control module 3 control automatic catch bar 19 or rotary device 50 realize the switching floodgate of on-column switch, whole easy operation is swift, has avoided the emergence potential safety hazard problem such as electric leakage when artifical direct operation.
In summary, when the bluetooth sends out a signal, the signal receiver 4 receives the signal and transmits the signal to the bluetooth control module 3, the bluetooth control module 3 controls the automatic pushing rod 19 to slide along the first chute 9 into the cavity 8, when the first electrifying piece 23 at the tail end of the automatic pushing rod 19 is attached to the second electrifying piece 25 on the connecting block, the spherical fixing block 22 in the automatic pushing rod 19 is clamped in the limiting hole 18, the driving device 31 on the connecting block drives the first rotating shaft 32 to rotate, the first roller 33 on the first rotating shaft 32 rotates along with the first rotating shaft and drives the driving belt 35, the driving belt 35 drives the second roller 36 to rotate, the second roller 36 and the second rotating shaft 38 are integrally arranged and drive the second rotating shaft 38 to rotate, and the second rotating shaft is connected with the line-in and line-out insulating terminal 53 arranged on the second box wall 6 after rotating to the fixed breaking knife 51; when the signal receiver 4 receives the signal again, the bluetooth control module 3 controls the rotating device 50 on the second rotating shaft 38 to enable the second rotating shaft 38 to return to the original position, and the breaking knife 51 is disconnected from the wire inlet and outlet insulating terminal 53, so that the whole operation is safe and simple, and the operation time and cost are saved.
The above is only a preferred embodiment of the present application, and the protection scope of the present application is not limited to the above examples, and all technical solutions belonging to the concept of the present application belong to the protection scope of the present application. It should be noted that modifications and adaptations to the present application may occur to one skilled in the art without departing from the principles of the present application and are intended to be within the scope of the present application.

Claims (10)

1. The utility model provides a post switch that bluetooth function opened and shut which characterized in that: the novel energy-saving type electric power transmission device comprises an insulation box (1), a brake breaking device (2), a Bluetooth control module (3) and a signal receiver (4), wherein the insulation box (1) comprises a first box wall (5), a second box wall (6) and a box bottom (7), the first box wall (5) is adjacent to the second box wall (6), the box bottom (7) is connected with the first box wall (5) and the second box wall (6), the first box wall (5), the second box wall (6) and the box bottom (7) form a cavity (8), two first sliding grooves (9) are formed in the first box wall (5), a first sliding block (10) used for sliding in the two first sliding grooves (9) is arranged on the second box wall (6), two second sliding grooves (11) are formed in the first box wall (5), a second sliding block (12) sliding in the two second sliding grooves (11) are formed in the box bottom (7), and two second sliding blocks (13) are further arranged on the second box wall (6) and are embedded in the second box wall (7); when the insulation box (1) is assembled, the first sliding block (10) is installed in the first sliding groove (9) to connect the first box wall (5) and the second box wall (6), the second sliding block (12) is installed in the second sliding groove (11) to connect the first box wall (5) and the box bottom (7), and the edge of the second box wall (6) is embedded in the caulking groove (13);
when Bluetooth sends out a signal, a signal receiver (4) receives the signal and transmits the signal to a Bluetooth control module (3), the Bluetooth control module (3) controls an automatic pushing rod (19) to slide into a cavity (8) along a first sliding groove (9), when a first electrifying sheet (23) at the tail end of the automatic pushing rod (19) is attached to a second electrifying sheet (25) on a connecting block, a spherical fixing block (22) in the automatic pushing rod (19) is clamped in a limiting hole (18), a driving device (31) on the connecting block drives a first rotating shaft (32) to rotate, a first roller (33) on the first rotating shaft (32) rotates along with the first rotating shaft and drives a driving belt (35), the driving belt (35) drives a second roller (36) to rotate, the second roller (36) and the second rotating shaft (38) are integrated into a whole, and the second rotating shaft is connected with an in-out line insulation terminal (53) arranged on a second box wall (6) after rotating to a fixed breaking knife (51); when the signal receiver (4) receives the signal again, the Bluetooth control module (3) controls the rotating device (50) on the second rotating shaft (38) to enable the second rotating shaft (38) to return to the original position, and the breaking knife (51) is disconnected from the wire inlet and outlet insulating terminal (53).
2. The bluetooth enabled on-column switch of claim 1, wherein: sealing grooves (14) for installing sealing rings are formed in the first sliding grooves (9), the second sliding grooves (11) and the caulking grooves (13), when the first sliding blocks (10) slide in the first sliding grooves (9), the second sliding blocks (12) slide in the second sliding grooves (11), the sealing rings are installed in the sealing grooves (14), and after extrusion, the first tank wall (5), the second tank wall (6) and the tank bottom (7) are connected more tightly.
3. The bluetooth enabled on-column switch of claim 2, wherein: the cross sections of the first sliding groove (9), the second sliding groove (11), the first sliding block (10) and the second sliding block (12) are regular hexagons or triangles.
4. A bluetooth enabled switch on a pole according to claim 3, wherein: the box bottom (7) is provided with an installing table (15), a first through groove (16) is formed in the installing table (15), the first through groove (16) comprises a first groove wall (17), the first groove wall (17) is provided with a plurality of limiting holes (18), the brake breaking device (2) comprises an automatic pushing rod (19), the automatic pushing rod (19) is installed in the first through groove (16), a fixing groove (20) is formed in the automatic pushing rod (19), a spring (21) is arranged in the fixing groove (20), and a spherical fixing block (22) used for being embedded into the limiting holes (18) is arranged on the spring (21).
5. The bluetooth enabled on-column switch of claim 4, wherein: be provided with first circular telegram piece (23) on automatic catch bar (19), brake device (2) still include connecting block (24), connecting block (24) are close to the one end of first circular telegram piece (23) be provided with first circular telegram piece (23) matched with second circular telegram piece (25), after the circular telegram first circular telegram piece (23) with laminating of second circular telegram piece (25), be provided with a plurality of first bracing pieces (26) on connecting block (24), a plurality of first bracing pieces (26) with bottom of the case (7) are connected.
6. The bluetooth enabled on-column switch of claim 5, wherein: connecting block (24) deviate from a plurality of first bracing piece (26) one end is provided with second bracing piece (27) and third bracing piece (29), be provided with second through groove (28) on second bracing piece (27), be provided with rotary groove (30) on third bracing piece (29), be provided with drive arrangement (31) in rotary groove (30), be provided with first rotation axis (32) on drive arrangement (31), first rotation axis (32) pass second through groove (28), be provided with first gyro wheel (33) on first rotation axis (32), be provided with first driving groove (34) on first gyro wheel (33), install drive belt (35) in the driving groove, brake equipment (2) still include second gyro wheel (36), be provided with on second gyro wheel (36) and be used for the embedding second driving groove (37) of drive belt (35), the diameter of first gyro wheel (33) is greater than the diameter of second gyro wheel (36), first gyro wheel (33) are in same vertical connection with first gyro wheel (33) and second gyro wheel (36).
7. The bluetooth enabled on-column switch of claim 6, wherein: the second roller (36) is connected with a second rotating shaft (38), a fourth chute (39) is arranged on one side, close to the cavity (8), of the first tank wall (5), the plane of the fourth chute (39) is arc-shaped, two fourth sliding blocks (40) used for embedding are arranged in the fourth chute (39), fixing holes (41) are formed in the two fourth sliding blocks (40), the two fourth sliding blocks (40) are connected with fixing panels (42), a third chute (43) is formed in the joint of the two fixing panels (42), the third chute (43) comprises a second chute wall (44), and a fifth chute (45) used for embedding the second chute wall (44) is arranged on the second rotating shaft (38); two fixed panels (42) with first case wall (5) are articulated, two fixed panels (42) are kept away from fourth slider (40) one end all is provided with fourth logical groove (46) that are used for, be provided with arch (47) on first case wall (5), arch (47) be provided with fourth logical groove (46) matched with fifth logical groove (48), fourth logical groove (46) with fifth logical groove (48) link up.
8. The bluetooth enabled on-column switch of claim 7, wherein: clamping blocks (49) are arranged at two ends of the second rotating shaft (38), and a rotating device (50) is arranged in each clamping block (49).
9. The bluetooth enabled on-column switch of claim 8, wherein: be provided with on second rotation axis (38) and break sword (51), first case wall (5) and second case wall (6) all are provided with two, be provided with inlet wire insulating terminal (52) and appearance insulating terminal on second case wall (6) respectively, when breaking sword (51) rotate to certain position in second rotation axis (38), break sword (51) with inlet wire insulating terminal (52) and appearance insulating terminal's connection.
10. The bluetooth enabled on-column switch of claim 9, wherein: the signal receiver (4) is connected with the Bluetooth control module (3), and the Bluetooth control module (3) is connected with the brake breaking device (2).
CN201611049422.3A 2016-11-24 2016-11-24 Bluetooth function switch on post that opens and shuts Active CN106655503B (en)

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CN205542446U (en) * 2016-03-22 2016-08-31 珠海许继电气有限公司 Device is moved back to automatic throwing of column switch

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GB107775A (en) * 1916-04-07 1917-07-19 Alfred Ernest White Method of and Apparatus for Charging Gas Retorts.
KR20030004983A (en) * 2001-07-06 2003-01-15 티케이디 가부시키가이샤 Handling device for a switch
WO2006128517A1 (en) * 2005-05-27 2006-12-07 Ellenberger & Poensgen Gmbh Device for the remote activation of a manual activation means for a protective switch
CN101714472A (en) * 2009-12-16 2010-05-26 中国西电电气股份有限公司 Electrical operating mechanism for switchgear
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CN202110972U (en) * 2011-04-20 2012-01-11 常熟开关制造有限公司(原常熟开关厂) Operating mechanism and power supply transition switching device with the operating mechanism
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CN205542446U (en) * 2016-03-22 2016-08-31 珠海许继电气有限公司 Device is moved back to automatic throwing of column switch

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