CN210007186U - novel rainproof distribution network automation device - Google Patents
novel rainproof distribution network automation device Download PDFInfo
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- CN210007186U CN210007186U CN201920912275.0U CN201920912275U CN210007186U CN 210007186 U CN210007186 U CN 210007186U CN 201920912275 U CN201920912275 U CN 201920912275U CN 210007186 U CN210007186 U CN 210007186U
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Abstract
The utility model belongs to the technical field of the distribution network, especially, novel rain-proof distribution network automation device is for, including the motor box shell, the last fixed surface of motor box shell installs the roof, the fretwork board has been fixed to have installed on the roof, fixedly connected with fretwork pole such as on the fretwork board, every fretwork pole top fixedly connected with lower plywood, lower plywood upper surface mounting has lower buckle, the inboard symmetry card of buckle is equipped with the buckle down, the side fixedly connected with upper plywood of going up the buckle, the water guide plate has been installed to the both sides lower extreme symmetry of upper plywood, be connected with buffer spring between lower plywood and the upper plywood, the utility model discloses a set up the cooperation of upper plywood and water guide plate, still effectual rainwater that falls with abominable weather carries out the effect of quick water conservancy diversion under effectual rain-proof condition for the surface of whole device can be quick drying, thereby guaranteed distribution network automation device's normal work.
Description
Technical Field
The utility model relates to a distribution network technical field specifically is novel rain-proof distribution network automation devices.
Background
The development of the automation of the distribution network in China is the inevitable result of electric power market and economic construction, the construction of the distribution network has not been paid due attention for a long time, the construction fund is in short, the technical performance of equipment falls behind, accidents frequently occur, the development of people's life and economic construction is seriously influenced, along with the development of electric power and the establishment of the electric power market, the weak link of the distribution network appears more and more prominent, the situation incompatible with the construction of the power grid is formed, but the following problems still exist in the existing distribution network automation device:
1. when placed outdoors, water is easy to enter, so that a circuit is burnt out, and power distribution interruption of a power distribution network is caused;
2. put too the immobilization, when the distribution network is inside to appear serious problem and need in time maintain, the base is owing to be fixed in through screws etc. and puts the face, hardly brings the slow scheduling problem of maintenance progress for the maintainer to its simple quick dismantlement.
SUMMERY OF THE UTILITY MODEL
() problems to be solved
Not enough to prior art, the utility model provides an novel rain-proof distribution network automation device has solved the outdoor time of placing of distribution network, produces easily and intakes and lead to the circuit to burn out to cause the distribution of distribution network to break off, thereby rain-proof equipment receives external force to produce easily and warp and seep water once more, puts too the problem of immobilization in addition.
(II) technical scheme
In order to achieve the purpose, the utility model provides a novel rain-proof distribution network automation equipment, including the motor case, the last fixed surface of motor case installs the roof, the fretwork board has been fixed to have installed on the roof, the last fixedly connected with fretwork pole of waiting of fretwork board, every fretwork pole top fixedly connected with lower plywood, lower plywood upper surface mounting has lower buckle, the inboard symmetry card of lower buckle is equipped with the last buckle, the side fixedly connected with upper plywood of going up the buckle, the water guide plate has been installed to the both sides lower extreme symmetry of upper plywood, be connected with buffer spring between lower plywood and the upper plywood, buffer spring installs under the inside of buckle and last buckle.
As the utility model discloses an preferred technical scheme, the fan is installed to the inside horizontal symmetry of motor case shell, ventilative board, six have been installed to the inside of motor case shell the bleeder vent has evenly been seted up on ventilative board's surface.
As the utility model discloses an preferred technical scheme, the lower extreme of motor box shell is equipped with unable adjustment base, the connecting block is installed, two to unable adjustment base's the horizontal symmetry in inside bottom horizontal the horizontal spring has been installed in the outside of connecting block, the end mounting of horizontal spring removes the knot, fixed the knot has been installed to the lower extreme both sides of motor box shell.
As the utility model discloses an preferred technical scheme, the inside fixed mounting of motor case shell has the conductor block, the connector lug has been installed at the upper and lower both ends of conductor block, the wire is installed to the port of connector lug.
As the utility model discloses an preferred technical scheme, it is the opposite form of L type with fixed knot to remove to detain, remove to detain and horizontal spring along axis horizontal installation in unable adjustment base's inside.
As the utility model discloses an preferred technical scheme, the water deflector is the arc form of downwarping, the lower bottom surface and the last plywood of water deflector are the right angle and are connected.
As the utility model discloses an preferred technical scheme, ten buffer spring is the array arc and arranges the outer wall at plywood down.
(III) advantageous effects
Compared with the prior art, the utility model provides an kind novel rain-proof distribution network automation device possesses following beneficial effect:
1. this novel rain-proof distribution network automation equipment through the cooperation that sets up plywood and water guide plate, still effectually carries out the effect of quick water conservancy diversion with the rainwater that bad weather descends under effectual rain-proof condition for the drying that the surface of whole device can be quick, thereby has guaranteed distribution network automation equipment's normal work.
2. This novel rain-proof distribution network automation device is through buckle and buffer spring about setting up for whole plywood has definite cushioning effect when receiving the foreign object striking, has saved the replacement cost when letting whole plywood have longer life.
3. This novel rain-proof distribution network automation device removes through the setting and detains and horizontal spring, has reached unable adjustment base and the quick dismantlement effect of motor box shell for whole maintenance work becomes more saves time and laborsaving, and the indirectness is for people to improve better power consumption and experience.
Drawings
FIG. 1 is a front view of the present invention;
FIG. 2 is a side view of the structure of the present invention;
fig. 3 is an enlarged view of a structure in fig. 2 according to the present invention.
In the figure: 1. a housing; 2. a top plate; 3. a hollowed-out plate; 4. a hollow rod; 5. a lower plywood; 6. a lower buckle; 7. an upper buckle; 8. a plywood is arranged; 9. a water guide plate; 10. a buffer spring; 11. a fan; 12. a ventilation plate; 13. air holes are formed; 14. a fixed base; 15. connecting blocks; 16. a horizontal spring; 17. moving the buckle; 18. a fixing buckle; 19. a conductor block; 20. a connector lug; 21. and (4) conducting wires.
Detailed Description
The technical solution in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of , but not all embodiments.
Examples
Please refer to fig. 1-3, the utility model provides a following technical scheme novel rain-proof distribution network automation device, including the electronic box shell 1, the upper surface fixed mounting of electronic box shell 1 has roof 2, the fixed fretwork board 3 of having installed on roof 2, fretwork board 3 is gone up to wait to be listed as fixedly connected with fretwork pole 4, 4 top fixedly connected with lower plywood 5 of every fretwork pole, the surface mounting has lower buckle 6 on the lower plywood 5, the inboard symmetry card of lower buckle 6 is equipped with buckle 7, side fixedly connected with upper plywood 8 of upper buckle 7, water guide plate 9 has been installed to the both sides lower extreme symmetry of upper plywood 8, be connected with buffer spring 10 between lower plywood 5 and the upper plywood 8, buffer spring 10 installs under the inside of buckle 6 and upper buckle 7.
In this embodiment, go up plywood 8 and water guide plate 9 and all set to the cambered surface form, reach quick water conservancy diversion when playing rain-proof, the stopper is installed to the junction between lower buckle 6 and the last buckle 7, and buckle 6 and last buckle 7 can reach slow receiving and releasing effect under the effect through the stopper, the better buffering protection that plays, fretwork pole 4 quantity is seventeen, evenly connects fretwork board 3 and lower plywood 5.
Specifically, fans 11 are horizontally and symmetrically arranged in the electric box shell 1, air permeable plates 12 are arranged in the electric box shell 1, and air holes 13 are uniformly formed in the surfaces of the six air permeable plates 12.
In this embodiment, can be better dispel the heat in the electronic box shell 1 through fan 11, the rethread ventilation board 12 and bleeder vent 13 dispel the heat to fan 11's rear.
Specifically, the lower extreme of the electric box shell 1 is equipped with unable adjustment base 14, and connecting block 15 is installed to unable adjustment base 14's inside bottom level symmetry, and horizontal spring 16 has been installed to the outside of two connecting blocks 15, and the end fixed mounting of horizontal spring 16 has the removal to detain 17, and the lower extreme both sides of electric box shell 1 have been installed and have been detained 18 fixedly.
In this embodiment, through the back that contracts of horizontal spring 16, will remove to detain 17 and carry out simple convenient horizontal migration to make removal to detain 17 and fixed knot 18 no longer card and establish, play convenient dismantlement through lifting and pulling electric box shell 1 to electricity box shell 1 and unable adjustment base 14.
Specifically, a conductor block 19 is fixedly installed inside the housing 1, the upper end and the lower end of the conductor block 19 are provided with a connector lug 20, and a lead 21 is installed at the port of the connector lug 20.
In this embodiment, the wire 21 is pulled out from the cable and pulled in from a hole formed in the rear surface of the electric box housing 1, the connector lug 20 is installed at both ends of the conductor block 19, a wire inlet hole is formed in the center of the connector lug 20, and the wire 21 extends into the wire inlet hole formed in the connector lug 20 and is fixed by winding.
Specifically, the movable buckle 17 and the fixed buckle 18 are in an L-shape, and the movable buckle 17 and the horizontal spring 16 are horizontally installed inside the fixed base 14 along the axis.
In this embodiment, the end of the moving button 17 extends out pieces to achieve better connection with the fixed button 18, and the horizontal spring 16 retracts after being pressed and automatically rebounds after external force is removed, so that the disassembly and assembly are simpler.
Specifically, the water guide plate 9 is in an arc shape bent downward, and the lower bottom surface of the water guide plate 9 is connected with the upper plywood 8 at a right angle.
In this embodiment, water deflector 9 is the rainwater on the arc form 8 surfaces of plywood carries out the water conservancy diversion, reaches the rapid draing on 8 surfaces of plywood, prevents the entering of rainwater for the better clearing damp of whole equipment.
Specifically, ten buffer springs 10 are arranged on the outer wall of the lower plywood 5 in an array arc shape.
In this embodiment, improved the utility model discloses an impact resistance, buffer spring 10 is the deformation that alleviates the shrink with upper plywood 8 on lower plywood 5, prevents that gravity from leading to.
The utility model discloses a theory of operation and use flow: when the equipment is placed outdoors, the upper plywood 8 is connected with the buffer spring 10 through the lower buckle 6 and the upper buckle 7, the water guide plates 9 are further installed on two sides of the lower end of the upper plywood 8 at the moment, the upper plywood 8 is rain-proof in rainy seasons, the water guide plates 9 have a flow guide effect to prevent rainwater from sliding in, when the upper plywood 8 is acted by external force, the buffer spring 10 can immediately relax and contract, the anti-drop effect is achieved through the connection of the upper buckle 7 and the lower buckle 6, so that the buffer anti-deformation effect is achieved, the lower surface of the lower plywood 5 is uniformly provided with the hollowed-out rods 4, the hollowed-out rods 4 penetrate through the hollowed-out plates 3 and are connected, the hollowed-out plates 3 are fixedly connected to the upper surface of the top plate 2 installed above the electric box shell 1, the connection effect is achieved while materials are saved, the fan 11 is further installed inside the electric box shell 1, the rear surface of the fan is fixedly provided with the ventilation plate 12, and, therefore, the heat dissipation in the electric box shell 1 is achieved, in the electric box shell 1, the conducting wire 21 is pulled out from a cable and pulled in from a hole position formed in the rear surface of the electric box shell 1, a wire inlet hole is formed in the center of the connector lug 20, the conducting wire 21 extends into the wire inlet holes formed in the connector lugs 20 at two ends of the conducting body block 19 and is fixed through winding, when the electric box shell 1 needs to be overhauled, the movable buckle 17 is pressed inwards firstly, the movable buckle 17 is separated from the fixed buckle 18, at the moment, the electric box shell 1 and the fixed base 14 can be quickly disassembled, after the overhaul is finished, the movable buckle 17 is pressed inwards again, the electric box shell 1 is placed on the fixed base 14, the movable buckle 17 is loosened, the movable buckle 17 is moved rightwards by the counter-acting force of the horizontal spring 16, and the fixing buckle 18 is clamped to achieve assembly.
It should be noted that in this document, terms such as "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises an series of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (7)
- The utility model provides a novel rain-proof distribution network automation equipment, includes motor case (1), its characterized in that the last fixed surface of motor case (1) installs roof (2), fretwork board (3) have been installed to the fixed roof (2), be arranged fixedly connected with fretwork pole (4) such as on fretwork board (3), plywood (5) down is down fixedly connected with in every fretwork pole (4) top, plywood (5) surface mounting has down buckle (6) down, the inboard symmetry card of buckle (6) is equipped with buckle (7) down, side fixedly connected with upper plywood (8) of going up buckle (7), water guide plate (9) have been installed to the both sides lower extreme symmetry of upper plywood (8), be connected with buffer spring (10) between lower plywood (5) and upper plywood (8), buffer spring (10) are installed under the inside of buckle (6) and upper buckle (7).
- 2. The novel rainproof distribution network automation device of claim 1, wherein fans (11) are horizontally and symmetrically installed inside the electric cabinet shell (1), air permeable plates (12) are installed inside the electric cabinet shell (1), and air holes (13) are uniformly formed in the surfaces of the six air permeable plates (12).
- 3. The novel rainproof distribution network automation device of claim 1, wherein the lower end of the electrical cabinet shell (1) is provided with a fixed base (14), the bottom end of the inside of the fixed base (14) is horizontally and symmetrically provided with connecting blocks (15), the outer sides of the two connecting blocks (15) are provided with horizontal springs (16), ends of the horizontal springs (16) are fixedly provided with movable buckles (17), and both sides of the lower end of the electrical cabinet shell (1) are provided with fixed buckles (18).
- 4. The novel rainproof distribution network automation device of claim 1, wherein a conductor block (19) is fixedly installed inside the cabinet housing (1), the upper end and the lower end of the conductor block (19) are provided with wire connectors (20), and the port of each wire connector (20) is provided with a wire (21).
- 5. The novel rainproof distribution network automation device of claim 3, wherein the mobile button (17) and the fixed button (18) are in opposite L-shape, and the mobile button (17) and the horizontal spring (16) are horizontally installed inside the fixed base (14) along the axis.
- 6. The novel rainproof distribution network automation device of claim 1, wherein the water guide plate (9) is in a downward curved arc shape, and the lower bottom surface of the water guide plate (9) is connected with the upper plywood (8) in a right angle.
- 7. The novel rainproof distribution network automation device of claim 1, wherein ten of the buffer springs (10) are arranged on the outer wall of the lower plywood (5) in an array arc shape.
Priority Applications (1)
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CN201920912275.0U CN210007186U (en) | 2019-06-18 | 2019-06-18 | novel rainproof distribution network automation device |
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CN201920912275.0U CN210007186U (en) | 2019-06-18 | 2019-06-18 | novel rainproof distribution network automation device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2021248487A1 (en) * | 2020-06-12 | 2021-12-16 | 南京唐壹信息科技有限公司 | Smart power grid signal device with rainproof function |
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2019
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2021248487A1 (en) * | 2020-06-12 | 2021-12-16 | 南京唐壹信息科技有限公司 | Smart power grid signal device with rainproof function |
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