CN210608278U - Energy-conserving high-tension loop-network cabinets - Google Patents
Energy-conserving high-tension loop-network cabinets Download PDFInfo
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- CN210608278U CN210608278U CN201921138028.6U CN201921138028U CN210608278U CN 210608278 U CN210608278 U CN 210608278U CN 201921138028 U CN201921138028 U CN 201921138028U CN 210608278 U CN210608278 U CN 210608278U
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- ring main
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- voltage ring
- heat dissipation
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Abstract
The utility model provides an energy-conserving high-pressure looped netowrk cabinet, the effectual inside heat dissipation of having solved current high-pressure looped netowrk cabinet is inhomogeneous, and the radiating rate is slow, and the external portion of cabinet is in the open air through the problem that the rainwater erodees easily corrodes for a long time, and it includes the high-pressure looped netowrk cabinet body, high-pressure looped netowrk cabinet body externally mounted has the protection component, and heat dissipation mechanism is installed to the inside one side of high-pressure looped net. The utility model discloses simple structure, high-pressure ring main unit body in the past only uses the vent heat dissipation, speed is slower and inhomogeneous, use a plurality of air-blower heat dissipations a bit even but energy-conserving, radiator unit's design makes the inside heat dissipation of high-pressure ring main unit more even when energy-conserving, the radiating rate is quicker, the shell has been increased, avoid the cabinet body to be in the open air for a long time and insolate or the rainwater erodees the corruption through the sun, prevent that the internal portion of cabinet from intaking to lead to the internal plant to meet the water short circuit, thereby the condition that influences the normal use of high-pressure ring main unit takes place.
Description
Technical Field
The utility model relates to a high-tension loop-network cabinets technical field specifically is an energy-conserving high-tension loop-network cabinets.
Background
The looped netowrk cabinet can be divided into indoor looped netowrk and outdoor looped netowrk, and indoor looped netowrk generally is used for the distribution of high-pressure side, comprises inlet wire cabinet, measurement cabinet, PT cabinet, transformer outgoing line cabinet, and to the higher user of power consumption requirement, the inlet wire must adopt dual power supply switch cabinet, and outdoor looped netowrk generally is used for urban power network, adopts box-sharing looped netowrk cabinet, but current high-voltage looped netowrk cabinet exists inside heat dissipation inhomogeneous, and the radiating rate is slow, and the external portion of cabinet is in the open air and easily corrodes the problem through the rainwater.
Therefore, how to design an energy-saving high-voltage ring main unit becomes a problem to be solved currently.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide an energy-conserving high-voltage ring main unit, it is inhomogeneous effectual to have solved the inside heat dissipation of current high-voltage ring main unit, and the radiating rate is slow, and the external portion of cabinet is in the open air for a long time and erodees perishable problem through the rainwater.
In order to solve the technical problem, the embodiment of the utility model provides an energy-conserving high-tension loop-network cabinets, including the high-tension loop-network cabinets body, high-tension loop-network cabinets body externally mounted has the protection subassembly, and heat dissipation mechanism is installed to the inside one side of high-tension loop-network cabinets body.
Wherein, the protection subassembly includes shell, shock attenuation board, dry layer, anticorrosive coating, guide plate and plays the gallows, and high-voltage ring main unit body externally mounted has the shell, and the shell is inside to be close to high-voltage ring main unit body one side and to install the shock attenuation board, and the shock attenuation board outside is located shell inside position department and installs the dry layer, and the anticorrosive coating is installed in the inside opposite side position department of shell outside the dry layer position department of shell, and the guide plate is all installed to the outside both sides of shell, and the gallows has been installed on.
Wherein, heat dissipation mechanism includes the studio, the backup pad, the rotating electrical machines, the pivot, the turn trough, the spout, the slider, connecting rod and cooling fan, the studio is installed to the inside one side of high-pressure ring main unit body, the outside one side of studio is located high-pressure ring main unit body internal position department and installs the backup pad, the rotating electrical machines is installed to the studio internally mounted, the outside one side of rotating electrical machines runs through the backup pad and is fixed with the pivot, the turn trough has been cup jointed to the outside backup pad internal position department that is located of pivot, the backup pad outside is close to turn trough one side and is fixed with the spout, the inside externally mounted that runs through of spout, the outside one side of slider is located the outside one.
The high-voltage ring main unit body is provided with a vent, and the dry layer is filled with absorbent cotton.
Preferably, the lifting frame is externally provided with two grooves.
Preferably, the sliding groove is circular, and a heat dissipation plate is arranged inside the supporting plate.
The utility model discloses an above-mentioned technical scheme's beneficial effect as follows: the utility model discloses simple structure, convenient to use has optimized current high-voltage ring main unit, and radiator unit's design makes the inside heat dissipation of high-voltage ring main unit more even, and the radiating rate is faster, has increased the shell, avoids the cabinet body to be in for a long time in the open air through sun exposure or the erosion and corrosion of rainwater, avoids the internal portion of cabinet to intake and leads to the internal plant to meet the water short circuit to the condition that influences high-voltage ring main unit's normal use takes place.
Drawings
Fig. 1 is a cross-sectional view of the present invention;
FIG. 2 is a schematic view of the installation structure of the middle rotating shaft of the present invention;
fig. 3 is a schematic view of the installation structure of the middle connecting rod of the present invention.
Description of reference numerals:
1. a high-voltage ring main unit body; 2. a protection component; 3. a heat dissipation mechanism; 4. a vent; 21. a housing; 22. A damper plate; 23. drying the layer; 24. an anticorrosive layer; 25. a baffle; 26. lifting the hanger; 31. a rotation chamber; 32. a support plate; 33. a rotating electric machine; 34. a rotating shaft; 35. rotating the groove; 36. a chute; 37. a slider; 38. A connecting rod; 39. a heat radiation fan.
Detailed Description
In order to make the technical problems, technical solutions and advantages to be solved by the present invention clearer, the following detailed description will be given with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1-3, the embodiment of the utility model provides an energy-conserving high-tension loop-network cabinets, including high-tension loop-network cabinets body 1, 1 externally mounted of high-tension loop-network cabinets body has protection component 2, and heat dissipation mechanism 3 is installed to 1 inside one side of high-tension loop-network cabinets body, is convenient for only use a cooling fan 39 to carry out diversified heat dissipation.
Protection component 2 includes shell 21, shock attenuation board 22, dry layer 23, anticorrosive coating 24, guide plate 25 and play gallows 26, 1 externally mounted of high-voltage ring main unit body has shell 21, 1 one side of the inside high-voltage ring main unit body that is close to of shell 21 installs shock attenuation board 22, be convenient for play the cushioning effect in transportation or removal process, shock attenuation board 22 outside is located shell 21 inside position department and installs dry layer 23, dry layer 23 outside is located shell 21 inside opposite side position department and installs anticorrosive coating 24, guide plate 25 is all installed to the outside both sides of shell 21, gallows 26 is installed on the shell 21 top.
The heat dissipation mechanism 3 comprises a rotating chamber 31, a support plate 32, a rotating motor 33, a rotating shaft 34, a rotating groove 35, a sliding groove 36, a sliding block 37, a connecting rod 38 and a heat dissipation fan 39, wherein the rotating chamber 31 is installed on one side inside the high-voltage ring main unit body 1, the support plate 32 is installed on one side outside the rotating chamber 31 and located at the position inside the high-voltage ring main unit body 1, the rotating motor 33 is installed inside the rotating chamber 31, the rotating shaft 34 is fixed on one side outside the rotating motor 33 through the support plate 32, the rotating groove 35 is sleeved on the position outside the rotating shaft 34 and located at the position inside the support plate 32, the sliding groove 36 is fixed on one side outside the support plate 32 and close to the rotating groove 35, the sliding block 37 is installed on one side outside the sliding groove 36 through the outside, the connecting rod 38 is installed on one side outside, the heat dissipation is more multidirectional and more uniform.
The high-voltage ring main unit body 1 internally mounted is run through to shell 21 lower part outside has vent 4, and dry layer 23 is inside to be filled with the cotton that absorbs water, prevents inside humidity.
Grooves are arranged outside the lifting frame 26, and the number of the grooves is two, so that a lifting fulcrum is provided conveniently.
In this embodiment, the sliding groove 36 is circular, so as to facilitate the auxiliary heat dissipation, and a heat dissipation plate is installed inside the supporting plate 32.
The utility model discloses a theory of operation does: the high-voltage ring main unit body 1 is externally provided with a protection component 2, a damping plate 22 arranged inside a shell 21 of the protection component 2 can help the high-voltage ring main unit body 1 to play a damping role in movement and transportation, a drying layer 23 is filled with absorbent cotton and drying agents and can absorb water vapor outside the high-voltage ring main unit body and prevent equipment aging caused by humidity inside the high-voltage ring main unit body, an anti-corrosion layer 24 can prevent corrosion outside the shell 21, a guide plate 25 plays a guiding role and can prevent rainwater from flowing into the shell 21 and entering the high-voltage ring main unit body, the high-voltage ring main unit body 1 in the prior art only uses a vent 4 to dissipate heat, the speed is slow and uneven, a plurality of air blowers are used for dissipating heat, although the heat is dissipated uniformly, the heat is not energy-saving, a heat dissipation mechanism 3 can solve the problem, a rotating motor 33 in a rotating chamber 31 can drive a rotating shaft 34 to rotate, cooling fan 39 on connecting rod 38 and the connecting rod 38 also can rotate round spout 36 to can only carry out more omnidirectional heat dissipation with a cooling fan 39, also make the heat dissipation more even when energy-conserving, prevent that the internal portion equipment overheat loss of cabinet from increaseing, if need remove high-tension loop-network cabinets body 1, can use the gallows 26 to remove.
The foregoing is a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the principle of the present invention, and these improvements and decorations should also be regarded as the protection scope of the present invention.
Claims (4)
1. An energy-saving high-voltage ring main unit comprises a high-voltage ring main unit body (1), and is characterized in that a protection assembly (2) is installed outside the high-voltage ring main unit body (1), and a heat dissipation mechanism (3) is installed on one side inside the high-voltage ring main unit body (1);
the protection assembly (2) comprises a shell (21), a damping plate (22), a drying layer (23), an anticorrosive layer (24), a guide plate (25) and a lifting frame (26), wherein the shell (21) is installed outside the high-voltage ring main unit body (1), the damping plate (22) is installed on one side, close to the high-voltage ring main unit body (1), inside the shell (21), the drying layer (23) is installed at the position, located inside the shell (21), outside the damping plate (22), the drying layer (23) is installed at the position, located inside the shell (21), of the other side, outside the drying layer (23), the anticorrosive layer (24) is installed at the position, located inside the shell (21), the guide plate (25) is installed on each of two sides of;
the heat dissipation mechanism (3) comprises a rotating chamber (31), a support plate (32), a rotating motor (33), a rotating shaft (34), a rotating groove (35), a sliding groove (36), a sliding block (37), a connecting rod (38) and a heat dissipation fan (39), wherein the rotating chamber (31) is installed on one side inside the high-voltage ring main unit body (1), the support plate (32) is installed at the position, located inside the high-voltage ring main unit body (1), of one side outside the rotating chamber (31), the rotating motor (33) is installed inside the rotating chamber (31), the rotating shaft (34) penetrates through the support plate (32) and is fixed to one side outside the rotating motor (33), the rotating groove (35) is sleeved at the position, located inside the support plate (32), outside the rotating groove (35), the sliding groove (36) is fixed to one side, close to the rotating groove (35), of the outside of the support plate (32), the sliding block (37) penetrates through the outside and is installed to the outside, and a heat radiation fan (39) is arranged on one side of the outer part of the connecting rod (38) far away from the slide block (37).
2. The energy-saving high-voltage ring main unit according to claim 1, wherein the outer side of the lower part of the outer shell (21) penetrates through the inside of the high-voltage ring main unit body (1) to be provided with a ventilation opening (4), and the inside of the drying layer (23) is filled with absorbent cotton.
3. The energy-saving high-voltage ring main unit as claimed in claim 1, wherein the lifting frame (26) is externally provided with two grooves.
4. The energy-saving high-voltage ring main unit as claimed in claim 1, wherein the sliding groove (36) is circular, and a heat dissipation plate is installed inside the supporting plate (32).
Priority Applications (1)
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CN201921138028.6U CN210608278U (en) | 2019-07-19 | 2019-07-19 | Energy-conserving high-tension loop-network cabinets |
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CN201921138028.6U CN210608278U (en) | 2019-07-19 | 2019-07-19 | Energy-conserving high-tension loop-network cabinets |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112123857A (en) * | 2020-09-24 | 2020-12-25 | 安徽开来包装有限公司 | Forming device is used in processing of environmental protection paper cup |
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2019
- 2019-07-19 CN CN201921138028.6U patent/CN210608278U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112123857A (en) * | 2020-09-24 | 2020-12-25 | 安徽开来包装有限公司 | Forming device is used in processing of environmental protection paper cup |
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