Energy-saving and environment-friendly high-voltage power distribution cabinet

By combining the telescopic mechanism and the temperature control mechanism, the problem of rainwater and heat accumulation in the high-voltage distribution cabinet under severe weather conditions is solved, achieving energy-saving and environmentally friendly waterproof and heat-proof effects, and ensuring stable operation of the equipment.

CN116388020BActive Publication Date: 2025-11-07正耐电气股份有限公司
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Patent Information

Application Number
CN202310469291.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-27
Publication Date
2025-11-07
Estimated Expiration
2043-04-27

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    Figure CN116388020B_ABST
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Abstract

The present application relates to the technical field of high-voltage power distribution cabinet, specifically relates to an energy-saving and environment-friendly high-voltage power distribution cabinet, comprising: a receiving block, a support pad is arranged in the upper middle part of the receiving block, the upper end surface of the support pad is fixedly connected with a cabinet body in the middle part, and the upper part of the cabinet body is fixedly connected with a protection seat, and the surface of the receiving block is reserved with a receiving cavity; a limiting block is arranged along the middle part in the receiving cavity, and a telescopic mechanism is movably connected in the receiving cavity. The heat generated by the inductive element and the PLC controller is used for measurement, the inductive element is controlled by the motor to rotate the lead screw, so that the displacement sleeve reciprocatingly moves horizontally, the support pad and the cabinet body reciprocatingly expand and contract by the butt joint plate, the blocking frame is driven to reciprocatingly move horizontally by the tooth disc, the tooth groove two and the tooth groove one are engaged, the air pressure in the expansion slot is reciprocatingly transported by the output shaft and the sliding pad, and the hot air is discharged by the hollow cylinder one and the hollow cylinder two.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of high-voltage power distribution cabinet, in particular to an energy-saving and environment-friendly high-voltage power distribution cabinet. BACKGROUND

[0002] With the development of power technology, the application of power distribution cabinet is more and more widely, the power distribution cabinet can reasonably distribute electric energy, facilitate the opening and closing operation of the circuit, has high safety protection level, can directly show the conduction state of the circuit, is convenient for management, the power distribution cabinet generally includes a cabinet body and a power distribution module fixedly installed in the cabinet body, and the high-voltage power distribution cabinet is one of the commonly used power distribution cabinets.

[0003] The high-voltage power distribution cabinet is often placed indoors or outdoors, and the electric power maintenance personnel of the power distribution cabinet maintains and checks the outdoor high-voltage power distribution at intervals. However, in bad rainy weather, when the road drainage system cannot keep up with the rainfall, the rainwater that cannot be drained in time will accumulate on the road surface, or the road drainage well is blocked, which will also cause the road to accumulate sewage. Because the surface of the high-voltage power distribution cabinet is provided with a cabinet door, the rainwater will enter the interior of the high-voltage power distribution cabinet for a long time, causing short circuit of the controller and the circuit. When the heat emitted by the controller in the high-voltage power distribution cabinet reaches a specified value, the controller will be damaged, and the whole will be paralyzed for a long time. Conventionally, a fan is arranged in the high-voltage power distribution cabinet, which has two disadvantages. One is that when the controller in the high-voltage power distribution cabinet does not work, the long-time operation of the fan will cause a large amount of power waste. The second is that in rainy weather, the fan is easy to guide water droplets into the interior of the power distribution cabinet. SUMMARY

[0004] In view of the above problems, the present application aims to provide an energy-saving and environment-friendly high-voltage power distribution cabinet.

[0005] The present application provides the following technical solutions:

[0006] An energy-saving and environment-friendly high-voltage power distribution cabinet comprises a receiving block.

[0007] A support pad is arranged at the upper middle position of the receiving block, the upper end surface of the support pad is fixedly connected with a cabinet body at the middle position, and the upper position of the cabinet body is fixedly connected with a protection seat. The surface of the receiving block is reserved with a receiving cavity.

[0008] A limiting block is arranged along the middle of the receiving cavity, a telescopic mechanism is movably connected in the receiving cavity, and the telescopic mechanism controls the vertical telescopic movement of the support pad and the cabinet body. The middle of the limiting block is assembled with an electric control mechanism, and the electric control mechanism controls the telescopic mechanism.

[0009] Vertical rod, fixedly connected to the surface of the limiting block, the surface of the side wall of the cabinet is equipped with temperature control mechanism, and the cabinet is equipped with exchange mechanism, and the exchange mechanism is equipped with blocking mechanism, the blocking mechanism is located in the temperature control mechanism and the outer surface of the cabinet, the cabinet is equipped with transverse conveying mechanism, and the two conveying mechanisms are staggered, the conveying mechanism controls the blocking mechanism, and the telescopic mechanism drives the conveying mechanism to run through the vertical rod;

[0010] Induction element one, assembled on the upper end surface of the vertical rod, and the induction element one and the electric control mechanism are on the same vertical horizontal line, the upper edge of the receiving block is provided with a limiting plate, and the lower surface of the limiting plate is assembled with an induction element two, the induction element two controls the electric control mechanism, the cabinet is equipped with a buzzer one and a buzzer two near the upper position of the cabinet door, and the induction element two controls the buzzer two, and the induction element one controls the buzzer one.

[0011] As an energy-saving and environment-friendly high-voltage distribution cabinet, the cross section of the protection seat is inverted "V" type, the bottom size of the receiving cavity is larger than the opening size, and the transverse spacing of the receiving cavity is larger than the transverse width of the supporting pad, and the longitudinal spacing of the receiving cavity is smaller than the longitudinal width of the supporting pad, the vertical rod penetrates the middle part of the supporting pad and the bottom of the cabinet in turn, and the end of the vertical rod extending into the cabinet is matched with the upper inner edge thereof;

[0012] Through the above scheme, the vertical rod can be used to make the supporting pad and the cabinet have the function of auxiliary guidance when they are vertically extended, and the transverse spacing of the receiving cavity is larger than the transverse width of the supporting pad, and the longitudinal spacing of the receiving cavity is smaller than the longitudinal width of the supporting pad, so that the supporting pad and the cabinet can be stably placed on the receiving block.

[0013] As an energy-saving and environment-friendly high-voltage distribution cabinet, the telescopic mechanism is composed of displacement sleeve one, displacement sleeve two and screw sleeve, and the telescopic mechanism is symmetrically arranged about the center line of the limiting block, and the screw sleeve is connected with the displacement sleeve one, the top end of the screw sleeve is matched with the inner wall of the opening position of the receiving cavity, the height of the screw sleeve is greater than the depth of the receiving cavity, a plurality of butt plates are hinged on the surface of the displacement sleeve one, and the butt plates are equally spaced about the displacement sleeve one, the head of the butt plate away from the displacement sleeve one is hinged with the lower position of the supporting pad, the lower surface of the displacement sleeve one is milled with a concave surface, and the displacement sleeve two is arranged on the inner edge of the limiting block;

[0014] Through the above scheme, the displacement sleeve two or the screw sleeve can be linked to the displacement sleeve one when transmitting, and the supporting pad and the cabinet can be vertically displaced relative to the receiving block by using the butt plate, so that the cabinet has two telescopic conditions, thereby improving the telescopic application of the cabinet under different requirements.

[0015] As a preferred technical scheme of the energy-saving and environment-friendly high-voltage distribution cabinet, the edge of the receiving cavity is reserved with a docking port, and the docking block and the docking port are inserted and docked.

[0016] Through the above scheme, the docking block and the docking port are inserted and docked, so that when the displacement sleeve moves, the guiding effect is achieved, and when the docking block and the docking port are completely docked, the amount of rain entering the receiving cavity from the edge of the receiving block can be reduced, and the screw sleeve can assist in stabilizing the extension and retraction of the support pad and the cabinet.

[0017] As a preferred technical scheme of the energy-saving and environment-friendly high-voltage distribution cabinet, the electric control mechanism is composed of a placing groove, a motor one and a motor two, the motor one and the motor two each have two output ends, the motor two is located at the bottom of the motor one, and the motor one and the motor two are arranged in parallel, the motor one and the inductive element two are connected by wires, and the motor two and the inductive element one are connected by wires.

[0018] The screw rod is arranged on the left and right sides of the motor one and the motor two, the screw rod away from the motor one and the motor two and the inner edge of the receiving cavity are movably connected, the screw rod at the output position of the motor one is connected with the screw sleeve, and the screw rod at the output position of the motor one is movably connected with the displacement sleeve one, the screw rod at the output position of the motor two is connected with the displacement sleeve two, and the screw rod at the output position of the motor two is movably connected with the displacement sleeve one and the screw sleeve.

[0019] Through the above scheme, the motor one controls the displacement of the screw sleeve through the screw rod, the screw sleeve is fixedly connected with the displacement sleeve one, the displacement sleeve one can be displaced synchronously, the motor two controls the displacement of the displacement sleeve two through the screw rod, the displacement sleeve two is fixedly connected with the displacement sleeve one, and the displacement sleeve one can also be displaced synchronously.

[0020] As a preferred technical scheme of the energy-saving and environment-friendly high-voltage distribution cabinet, the displacement sleeve one and the limiting block are fixedly connected with parallel distributed elastic members, and the elastic members are located outside the corresponding position of the screw rod, and the elastic members coincide with the axis of the screw rod.

[0021] Through the above scheme, the elastic member can make the displacement sleeve one return to the original position.

[0022] As a preferred technical scheme of the energy-saving and environment-friendly high-voltage distribution cabinet, the temperature control mechanism is composed of a ventilation port and a limiting sleeve, the ventilation port is horizontally and vertically reserved at equal intervals on the edge surface of the cabinet, the ventilation port is located at the middle position of the limiting sleeve, and one end of the limiting sleeve is connected with the cabinet.

[0023] Through the above scheme can be achieved: the use of vent can be on the controller in the cabinet heat emitted to discharge.

[0024] As an energy-saving and environmentally friendly high-voltage power distribution cabinet, the exchange mechanism is composed of an expansion slot, a sliding pad and an output shaft, the expansion slot and the sliding pad are in close contact and move, and the output shafts at the upper and lower edges are respectively fixedly connected with the upper and lower ends of the blocking mechanism.

[0025] A hollow cylinder one is connected to the surface of the exchange mechanism, and the hollow cylinder one is used to extract heat from the cabinet.

[0026] A hollow cylinder two is arranged at the abutting position of the cabinet and the protection seat, one end of the hollow cylinder two is connected with the expansion slot, and the other end of the hollow cylinder two is located at the bottom position of the protection seat, and the middle part of the hollow cylinder one and the hollow cylinder two is connected with a check valve.

[0027] Through the above scheme, when the sliding pad gradually displaces in the expansion slot, the hollow cylinder one transports the heat inside the cabinet to the expansion slot, when the sliding pad is located behind the hollow cylinder two in the expansion slot, the heat temporarily stored in the expansion slot is discharged through the hollow cylinder two, at this time, the blocking mechanism is away from the cabinet, and the cold air outside the cabinet can be introduced into the cabinet through the vent, so that the cold and hot air is replaced alternately.

[0028] As an energy-saving and environmentally friendly high-voltage power distribution cabinet, the blocking mechanism is composed of a blocking frame and a limiting seat one, and the blocking frame is connected with the output shafts at the upper and lower ends and the upper and lower positions one by one, the center line of the limiting seat one coincides with the center line of the corresponding position limiting sleeve, and the limiting seat one and the limiting sleeve are connected in plug-in connection.

[0029] A sealing gasket is connected to the outer peripheral surface of the limiting seat one, and the limiting seat one is tightly connected with the limiting sleeve through the sealing gasket.

[0030] A rubber plate is bonded to the outer wall surface of the blocking frame.

[0031] Through the above scheme, after the sealing gasket is connected with the limiting sleeve, rain cannot easily enter the position of the vent, and the plug-in connection relationship between the limiting seat one and the limiting sleeve makes the position of the vent can be opened or closed, so as to meet the different needs of the vent in inhaling cold air or avoiding dampness.

[0032] As an energy-saving and environmentally friendly high-voltage power distribution cabinet, the conveying mechanism is composed of a limiting seat two and a horizontal moving plate, the horizontal moving plate is connected through the cabinet, and one end of the horizontal moving plate is fixedly connected with the middle part of the blocking frame.

[0033] The tooth groove one is arranged on the lower side surface of the other end of the horizontal moving plate, one end of the limiting seat two is equipped with the butt joint shaft one, and the butt joint shaft one is movably arranged with the butt joint shaft two in the middle part of the inside;

[0034] The tooth disc is fixedly connected to the outside of the butt joint shaft two and is engaged with the tooth groove one, and the middle end edge of the vertical rod is reserved with the tooth groove two which is engaged with the tooth disc;

[0035] When the cabinet body is lifted, the limiting seat two is also lifted, and since the vertical rod is fixed, the tooth disc is rotated under the transmission structure of the tooth groove two, the tooth disc is engaged with the tooth groove one, and the horizontal moving plate can be horizontally moved.

[0036] The beneficial effects of the present application are:

[0037] 1. The heat generated by the PLC controller is measured by the inductive element one, the inductive element one controls the motor two to rotate the lead screw, so that the displacement sleeve two reciprocatingly moves horizontally, the butt joint plate is used to make the supporting pad and the cabinet body reciprocatingly stretch and shrink, the engagement transmission between the tooth disc, the tooth groove two and the tooth groove one is used to make the barrier frame reciprocatingly move horizontally, the air pressure in the stretching and shrinking groove is reciprocatingly transported through the output shaft and the sliding pad, and the hot gas is discharged through the hollow cylinder one and the hollow cylinder two;

[0038] 2. When the barrier frame reciprocatingly moves horizontally, the position of the limiting seat one can intermittently guide the cold air into the cabinet body, so that the heat flow in the cabinet body is accelerated;

[0039] 3. When the inductive element two detects the water accumulation height, the motor one drives the lead screw to control the lead screw sleeve transmission, the displacement sleeve one controls the supporting pad and the cabinet body linkage through the butt joint plate, so that the overall position of the cabinet body can be raised, and the distance between the bottom end of the cabinet body and the ground is increased, so that the water accumulation from the bottom end of the cabinet body into the inside of the cabinet body can be avoided;

[0040] 4. When the barrier frame reciprocatingly moves horizontally, the limiting seat one is inserted into the limiting sleeve, the sealing pad is used to make the rainwater not easy to enter the limiting seat, and after the supporting pad is lifted, the lead screw sleeve is located at the bottom position of the supporting pad, so that the lead screw sleeve can bear the supporting pad;

[0041] 5. The butt joint block, the lead screw sleeve and the storage block form a concave shape when they move horizontally, so that the rainwater can be prevented from entering the bottom position of the storage cavity in a large amount, the rubber plate can be used to block the foreign matters, and the electromagnetic valve on the surface of the storage block can be used to discharge the rainwater accumulated in the storage cavity. BRIEF DESCRIPTION OF DRAWINGS

[0042] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings:

[0043] Figure 1 This is a front-view 3D schematic diagram of an energy-saving and environmentally friendly high-voltage switchgear;

[0044] Figure 2 This is a front view schematic diagram of an energy-saving and environmentally friendly high-voltage switchgear;

[0045] Figure 3 This is a schematic diagram of the front view cross-section of an energy-saving and environmentally friendly high-voltage switchgear;

[0046] Figure 4 This is a front-view 3D schematic diagram of an energy-saving and environmentally friendly high-voltage switchgear after the rubber sheet and barrier frame have been removed.

[0047] Figure 5 This is a three-dimensional schematic diagram of the back of the barrier frame of an energy-saving and environmentally friendly high-voltage switchgear.

[0048] Figure 6 This is a top view of an energy-saving and environmentally friendly high-voltage switchgear. Figure 1 ;

[0049] Figure 7 This is a top view of an energy-saving and environmentally friendly high-voltage switchgear. Figure 2 ;

[0050] Figure 8 This is a partial schematic diagram of the transmission mechanism of an energy-saving and environmentally friendly high-voltage switchgear;

[0051] Figure 9 This is a three-dimensional structural diagram of the displacement sleeve of an energy-saving and environmentally friendly high-voltage distribution cabinet.

[0052] The diagram is marked as follows: Storage block-12; Support pad-13; Cabinet-14; Protective seat-15; Storage cavity-16; Limiting block-17; Placement slot-18; Motor 1-19; Motor 2-20; Lead screw-21; Displacement sleeve 1-22; Lead screw sleeve-23; Connecting plate-24; Concave surface-25; Displacement sleeve 2-26; Elastic element-27; Connecting interface-28; Connecting block-29; Vertical rod-30; Vent-31; Limiting sleeve-32; Telescopic groove -33; Sliding pad -34; Output shaft -35; Barrier frame -36; Limit seat one -37; Sealing gasket -38; Hollow cylinder one -39; Hollow cylinder two -40; Limit seat two -41; Horizontal movement plate -42; Thread one -43; Connecting shaft one -44; Connecting shaft two -45; Gear plate -46; Thread two -47; Rubber plate -48; Sensing element one -49; Limit plate -50; Sensing element two -51; Buzzer one -52; Buzzer two -53. Detailed Implementation

[0053] The concept, specific structure and generated technical effects of the present application are clearly and completely described below in combination with the embodiments and drawings, so as to fully understand the purposes, schemes and effects of the present application. It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. It should be noted that when a certain feature is referred to as being “fixed” or “connected” to another feature, it can be directly fixed or connected to the other feature, or indirectly fixed or connected to the other feature. In addition, the up, down, left, right and the like used in the present application are only relative to the relative positions of the components of the present application in the drawings.

[0054] Referring to Figures 1 to 9 As shown in the drawings, an energy-saving and environment-friendly high-voltage power distribution cabinet includes a receiving block 12 and a support pad 13, the support pad 13 is arranged at the upper middle position of the receiving block 12, the upper end surface of the support pad 13 is fixedly connected with a cabinet body 14, the upper position of the cabinet body 14 is fixedly connected with a protection seat 15, the cross section of the protection seat 15 is in the shape of an inverted “V”, the surface of the receiving block 12 is reserved with a receiving cavity 16, the transverse spacing of the receiving cavity 16 is greater than the transverse width of the support pad 13, and the longitudinal spacing of the receiving cavity 16 is less than the longitudinal width of the support pad 13, a limiting block 17 is arranged in the middle of the receiving cavity 16, a telescopic mechanism is movably connected in the receiving cavity 16, the telescopic mechanism is symmetrically arranged about the center line of the limiting block 17, the telescopic mechanism controls the vertical telescopic movement of the support pad 13 and the cabinet body 14, an electric control mechanism is assembled in the middle of the limiting block 17, the electric control mechanism controls the telescopic mechanism, a vertical rod 30 is fixedly connected to the surface of the limiting block 17, the vertical rod 30 penetrates through the middle of the support pad 13 and the bottom of the cabinet body 14 in sequence, and the end of the vertical rod 30 extending into the cabinet body 14 is attached to the inner wall above it, temperature control mechanisms are assembled on the side wall surfaces of the cabinet body 14, exchange mechanisms are assembled on the right angles of the cabinet body 14, the exchange mechanisms on the same side are jointly connected with a blocking mechanism, the blocking mechanism is on the outer surface of the temperature control mechanisms and the cabinet body 14, transversely arranged conveying mechanisms are assembled in the cabinet body 14, the two conveying mechanisms are arranged in a staggered manner, and the conveying mechanisms control the blocking mechanism, the telescopic mechanism drives the conveying mechanisms to operate through the vertical rod 30, a sensing element one 49 is assembled on the upper end surface of the vertical rod 30, the sensing element one 49 is on the same vertical horizontal line as the electric control mechanism, a limiting plate 50 is arranged on the upper edge of the receiving block 12, a sensing element two 51 is assembled on the lower surface of the limiting plate 50, the sensing element two 51 controls the electric control mechanism, a buzzer one 52 and a buzzer two 53 are assembled on the upper position of the cabinet body 14 close to the cabinet door, the sensing element two 51 controls the buzzer two 53, and the sensing element one 49 controls the buzzer one 52;

[0055] When working: the cabinet 14 is placed and assembled outdoors, the heat emitted by the PLC controller in the cabinet 14 is measured by the sensing element 1 49, the sensing element 1 49 is VMS-3002-WS type, when the heat emitted in the cabinet 14 exceeds the preset value of the sensing element 1 49, the sensing element 1 49 controls the motor 2 0 to run, the output position of the motor 2 0 controls the rotation of the lead screw 21, the motor 2 0 is in transmission connection with the displacement sleeve 2 26, so that the displacement sleeve 2 26 can move, when the displacement sleeve 2 26 approaches the position of the limiting block 1 7, the elastic element 27 will be deformed, when the displacement sleeve 2 26 is close to the inner wall of the storage cavity 1 6, the elastic element 27 will restore without being extruded, so that the displacement sleeve 1 22 can better reciprocate, when the displacement sleeve 1 22 reciprocates, the support pad 1 3 and the cabinet 1 4 can be synchronously stretched and contracted by the butt joint plate 2 4, when the cabinet 1 4 is synchronously stretched and contracted, the tooth disc 4 6 and the second tooth 4 7 are in meshing transmission, so that the tooth disc 4 6 can rotate, the tooth disc 4 6 uses the first tooth 4 3 to make the transverse plate 4 2 reciprocate transversely when rotating, the transverse plate 4 2 will synchronously reciprocate the blocking frame 3 6 when reciprocating transversely, the blocking frame 3 6 will synchronously reciprocate the output shaft 3 5 when reciprocating transversely, the output shaft 3 5 uses the sliding pad 3 4 to make the hollow cylinder 1 39 intermittently guide the heat emitted by the controller to the hollow cylinder 2 40, and finally guide the heat out of the cabinet 1 4, when the blocking frame 3 6 reciprocates transversely, the limiting seat 1 37 and the limiting sleeve 3 2 will be disconnected and inserted, the position of the limiting seat 2 41 can guide the cold air into the cabinet 1 4, thereby accelerating the flow of heat in the cabinet 1 4, avoiding overheating of the controller to cause the whole to collapse and paralysis, when heavy rainfall or road drainage system is blocked, the sensing element 2 5 1 QDY30A-JX type is used to detect the water accumulation reaching the position of the limiting plate 5 0, when the residual water on the road reaches the position of the sensing element 2 5 1, the sensing element 2 5 1 controls the motor 1 9 to run, the motor 1 9 drives the lead screw 2 1, the lead screw 2 1 is in transmission with the screw sleeve 2 3, so that the screw sleeve 2 3 will move transversely to the position of the limiting block 1 7, the screw sleeve 2 3 controls the displacement sleeve 1 22 to move transversely, the displacement sleeve 1 22 drives the support pad 1 3 and the cabinet 1 4 to extend by the butt joint plate 2 4 when moving transversely, at this time the whole position of the cabinet 1 4 can be improved, therefore the distance between the bottom end of the cabinet 1 4 and the ground will also increase, thereby avoiding the water from the bottom end of the cabinet 1 4 into its interior, thereby avoiding the controller in the cabinet 1 4 from short circuit, when the cabinet 1 4 is lifted, the transmission between the tooth disc 4 6, the second tooth 4 7 and the first tooth 4 3 makes the blocking frame 3 6 close to the edge of the cabinet 1 4, the sealing pad 3 8 is used to make the rain not easy to enter the limiting seat 2 41 to cause the cabinet 1 4 to be damp, after the support pad 1 3 is lifted for a distance, the position of the screw sleeve 2 3 after moving transversely will be at the bottom position of the support pad 1 3, at this time the screw sleeve 2 3 is the bearing of the support pad 1 3,Further, the cabinet 14 can be consolidated after lifting, and the lead screw sleeve 23 can drive the butt joint block 29 to move synchronously, and the butt joint block 29, the lead screw sleeve 23 and the receiving block 12 form a concave shape, thereby avoiding a large amount of rainwater from entering the bottom of the receiving cavity 16. The butt joint block 29 moves in the butt joint 28, and the lead screw sleeve 23 can move smoothly, and the rubber plate 48 is used to block the external object when the external object impacts the cabinet 14. The surface of the receiving block 12 is also provided with an electromagnetic valve, which can discharge the accumulated rainfall in the receiving cavity 16.

[0056] Referring to Figure 3 and 9 The energy-saving and environmentally friendly high-voltage power distribution cabinet is shown, and the telescopic mechanism is composed of a displacement sleeve one 22, a displacement sleeve two 26 and a lead screw sleeve 23. The bottom size of the receiving cavity 16 is larger than the opening size, and the lead screw sleeve 23 is connected with the displacement sleeve one 22. The top end of the lead screw sleeve 23 is connected with the inner wall of the opening position of the receiving cavity 16. The height of the lead screw sleeve 23 is greater than the depth of the receiving cavity 16. The surface of the displacement sleeve one 22 is hinged with a plurality of butt plates 24, and the butt plates 24 are equally spaced about the displacement sleeve one 22. The end of the butt plate 24 away from the displacement sleeve one 22 is hinged with the lower position of the support pad 13. The lower surface of the displacement sleeve one 22 is milled with a concave surface 25. The displacement sleeve two 26 is arranged on the inner edge of the limiting block 17. The displacement sleeve two 26 or the lead screw sleeve 23 can be linked to the displacement sleeve one 22 during transmission. The butt plate 24 controls the support pad 13 and the cabinet 14 to vertically extend and retract relative to the receiving block 12, so that the cabinet 14 has two telescopic conditions, thereby improving the telescopic application of the cabinet 14 under different requirements.

[0057] Referring to Figure 3As shown, an energy-saving and environmentally friendly high-voltage power distribution cabinet, the electric control mechanism is composed of a placing groove 18, a motor 1 19 and a motor 2 20, the motor 1 19 and the motor 2 20 are both provided with two output ends, and the motor 2 20 is located at the bottom of the motor 1 19, and the motor 1 19 and the motor 2 20 are arranged in parallel, the motor 1 19 is connected with the induction element 2 51 by wires, the motor 2 20 is connected with the induction element 1 49 by wires, the left and right sides of the motor 1 19 and the motor 2 20 are both driven by the lead screws 21, the lead screws 21 which are arranged in parallel are away from the motor 1 19 and the motor 2 20 and are movably connected with the inner edge of the receiving cavity 16, the lead screw 21 at the output position of the motor 1 19 is connected with the screw sleeve 23, and the lead screw 21 at the output position of the motor 1 19 is movably connected with the displacement sleeve 1 22, the lead screw 21 at the output position of the motor 2 20 is connected with the displacement sleeve 2 26, and the lead screw 21 at the output position of the motor 2 20 is slidably connected with the displacement sleeve 1 22 and the screw sleeve 23, the motor 1 19 controls the displacement of the screw sleeve 23 by the lead screw 21, the screw sleeve 23 is fixedly connected with the displacement sleeve 1 22, and the displacement sleeve 1 22 can be displaced synchronously, the motor 2 20 controls the displacement of the displacement sleeve 2 26 by the lead screw 21, the displacement sleeve 2 26 is fixedly connected with the displacement sleeve 1 22, and the displacement sleeve 1 22 can also be displaced synchronously;

[0058] Referring to Figure 3 As shown, an energy-saving and environmentally friendly high-voltage power distribution cabinet, the displacement sleeve 1 22 and the limiting block 17 are fixedly connected with the elastic members 27 which are arranged in parallel, and the elastic members 27 are located outside the corresponding positions of the lead screws 21, and the axes of the elastic members 27 coincide with the lead screws 21, the elastic members 27 can make the displacement sleeve 1 22 return to the original position;

[0059] Referring to Figure 3 As shown, an energy-saving and environmentally friendly high-voltage power distribution cabinet, the screw sleeve 23 is fixedly connected with the abutting block 29 near the edge of the receiving cavity 16, and the abutting block 29 is arranged vertically with the screw sleeve 23, the inner edge of the receiving cavity 16 is reserved with the abutting port 28, the abutting block 29 is inserted into the abutting port 28, the abutting block 29 and the abutting port 28 are inserted into each other, which can guide the displacement sleeve 1 22 when it moves, and when the abutting block 29 and the abutting port 28 are completely connected, the amount of rainwater entering the receiving cavity 16 from the edge of the receiving block 12 can be reduced, and the screw sleeve 23 can assist the abutting plate 24 in moving the support pad 13 and the cabinet 14;

[0060] Referring to Figure 3 and 4 As shown, an energy-saving and environmentally friendly high-voltage power distribution cabinet, the temperature control mechanism is composed of the air vents 31 and the limiting sleeve 32, the air vents 31 are horizontally and vertically reserved at equal intervals on the edge surface of the cabinet 14, and the air vents 31 are located at the middle position of the limiting sleeve 32, and one end of the limiting sleeve 32 is connected with the cabinet 14;

[0061] Referring to Figures 2 to 8 As shown in the figure, an energy-saving and environment-friendly high-voltage power distribution cabinet, the exchange mechanism is composed of an expansion slot 33, a sliding pad 34 and an output shaft 35, the expansion slot 33 and the sliding pad 34 are tightly attached and moved, and the output shaft 35 at the common edge upper and lower positions is respectively fixedly connected with the upper and lower end positions of the blocking mechanism, the surface of the exchange mechanism is through-connected with a hollow cylinder I 39, the hollow cylinder I 39 is used for extracting heat in the cabinet body 14, the cabinet body 14 and the protection seat 15 are jointly arranged at the through-connected position, one end of the hollow cylinder II 40 is through-connected with the expansion slot 33, and the other end of the hollow cylinder II 40 is at the bottom position of the protection seat 15, the middle part of the hollow cylinder I 39 and the hollow cylinder II 40 is through-connected with a check valve, when the sliding pad 34 gradually displaces in the expansion slot 33, the hollow cylinder I 39 transports the heat inside the cabinet body 14 to the expansion slot 33, when the sliding pad 34 is positioned behind the hollow cylinder II 40 in the expansion slot 33, the heat temporarily stored in the expansion slot 33 is discharged through the hollow cylinder II 40, at this time the blocking mechanism is away from the cabinet body 14, the cold air outside the cabinet body 14 can be introduced into the cabinet body 14 through the air vent 31, and the cold and hot air is alternately replaced;

[0062] Referring to Figure 2 and 8 As shown in the figure, an energy-saving and environment-friendly high-voltage power distribution cabinet, the blocking mechanism is composed of a blocking frame 36 and a limiting seat I 37, and the blocking frame 36 is connected with the output shaft 35 at the upper and lower two ends and the upper and lower positions one by one, the center line of the limiting seat I 37 coincides with the center line of the limiting sleeve 32 at the corresponding position, and the limiting seat I 37 is connected with the limiting sleeve 32 in a plug-in connection, the outer peripheral surface of the limiting seat I 37 is through-connected with a sealing pad 38, the limiting seat I 37 is tightly connected with the limiting sleeve 32 through the sealing pad 38, after the sealing pad 38 is through-connected with the limiting sleeve 32 by the sealing pad 38, rain is not easy to enter the position of the air vent 31, by using the plug-in relationship of the limiting seat I 37 and the limiting sleeve 32, the position of the air vent 31 can be opened or closed, so as to meet the different needs of the air vent 31 in inhaling cold air or avoiding humid conditions;

[0063] Referring to Figure 3 , 6, 7 and 8, an energy-saving and environment-friendly high-voltage power distribution cabinet, the conveying mechanism is composed of the limiting seat two 41 and the transverse plate 42, the transverse plate 42 is in through butt joint with the cabinet body 14, and one end of the transverse plate 42 is fixedly connected with the middle part of the blocking frame 36, the other end of the transverse plate 42 is milled with the tooth pattern one 43 on the lower side surface, one end of the limiting seat two 41 is assembled with the butt joint shaft one 44, the butt joint shaft two 45 is movably arranged in the middle part of the butt joint shaft one 44, the tooth disc 46 is fixedly connected with the outer side of the butt joint shaft two 45, the tooth disc 46 is in engagement with the tooth pattern one 43, the vertical rod 30 is reserved with the tooth pattern two 47 on the middle end edge, the tooth pattern two 47 is in engagement with the tooth disc 46, when the cabinet body 14 is lifted, the limiting seat two 41 is also lifted, since the vertical rod 30 is fixedly unchanged, at this time, the tooth disc 46 is rotated by the transmission structure of the tooth pattern two 47, the tooth disc 46 is in engagement with the tooth pattern one 43, so that the transverse plate 42 can be transversely moved;

[0064] Referring to Figure 1 、 2 , 6, 7 and 8, an energy-saving and environment-friendly high-voltage power distribution cabinet, the outer wall surface of the blocking frame 36 is bonded with the rubber plate 48, when the cabinet body 14 is impacted by external objects, the rubber plate 48 and the blocking frame 36 block the external objects.

[0065] The above only describes preferred embodiments of the present application and is not used to limit the present application, although the foregoing embodiments of the present application are described in detail, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or equivalently replace some technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. An energy-saving and environment-friendly high-voltage power distribution cabinet, characterized in that, Include: Accommodation block (12); Support pad (13) is installed in the upper middle position of the accommodation block (12), the upper end surface of the support pad (13) is fixedly connected with the cabinet (14), and the upper position of the cabinet (14) is fixedly connected with the protection seat (15), the surface of the accommodation block (12) is reserved with a receiving cavity (16); Limiting block (17) is installed along the middle of the receiving cavity (16), the receiving cavity (16) is also movably connected with the telescopic mechanism, and the telescopic mechanism controls the vertical telescopic movement of the support pad (13) and the cabinet (14), the middle of the limiting block (17) is assembled with an electric control mechanism, and the electric control mechanism controls the telescopic mechanism; Vertical rod (30) is fixedly connected to the surface of the limiting block (17), the side wall surface of the cabinet (14) is equipped with a temperature control mechanism, and the cabinet (14) is equipped with an exchange mechanism on the straight edge, and the exchange mechanisms on the common edge are jointly connected with the blocking mechanism, the blocking mechanism is on the outer surface of the temperature control mechanism and the cabinet (14), the cabinet (14) is assembled with a horizontal conveying mechanism, and the two conveying mechanisms are arranged in a staggered manner, the conveying mechanism controls the blocking mechanism, and the telescopic mechanism drives the conveying mechanism to operate through the vertical rod (30); The exchange mechanism is composed of telescopic slot (33), sliding pad (34) and output shaft (35), the telescopic slot (33) and the sliding pad (34) are closely combined and moved, and the output shaft (35) on the common edge is fixedly connected with the upper and lower end positions of the blocking mechanism; Hollow cylinder one (39) is connected to the surface of the exchange mechanism, and the hollow cylinder one (39) is used for extracting heat from the cabinet (14); Hollow cylinder two (40) is installed at the joint position of the cabinet (14) and the protection seat (15), one end of the hollow cylinder two (40) is connected with the telescopic slot (33), and the other end of the hollow cylinder two (40) is at the bottom position of the protection seat (15), the middle of the hollow cylinder one (39) and the hollow cylinder two (40) is connected with a check valve; The blocking mechanism is composed of blocking frame (36) and limiting seat one (37), and the blocking frame (36) is connected with the output shaft (35) on the upper and lower ends and the upper and lower positions one by one, the center line of the limiting seat one (37) coincides with the center line of the limiting sleeve (32), and the limiting seat one (37) is connected with the limiting sleeve (32) in the form of plug-in connection; Sealing pad (38) is connected to the outer peripheral surface of the limiting seat one (37), the limiting seat one (37) is tightly connected with the limiting sleeve (32) through the sealing pad (38); Rubber plate (48) is bonded to the outer wall surface of the blocking frame (36); The conveying mechanism is composed of limiting seat two (41) and horizontal moving plate (42), the horizontal moving plate (42) is connected with the cabinet (14), and one end of the horizontal moving plate (42) is fixedly connected with the middle of the blocking frame (36). The tooth groove one (43) is milled on the lower surface of the other end of the horizontal moving plate (42), one end of the limiting seat two (41) is equipped with the butt joint shaft one (44), the inner middle part of the butt joint shaft one (44) movably sets the butt joint shaft two (45); The tooth disc (46) is fixedly connected to the outer side of the butt joint shaft two (45), and the tooth disc (46) is engaged with the tooth groove one (43), the middle end edge of the vertical rod (30) is reserved with the tooth groove two (47), and the tooth groove two (47) is engaged with the tooth disc (46); The induction element one (49) is assembled on the upper end surface of the vertical rod (30), and the induction element one (49) is on the same vertical horizontal line with the electric control mechanism, the upper edge of the receiving block (12) is provided with the limiting plate (50), and the lower surface of the limiting plate (50) is equipped with the induction element two (51), the induction element two (51) controls the electric control mechanism, the cabinet (14) is equipped with the buzzer one (52) and the buzzer two (53) near the upper position of the cabinet door, and the induction element two (51) controls the buzzer two (53), and the induction element one (49) controls the buzzer one (52).

2. The energy-saving and environment-friendly high-voltage power distribution cabinet according to claim 1, characterized in that, The cross section of the protection seat (15) is inverted "V" type, the bottom size of the receiving cavity (16) is greater than the opening size, the transverse spacing of the receiving cavity (16) is greater than the transverse width of the supporting pad (13), and the longitudinal spacing of the receiving cavity (16) is less than the longitudinal width of the supporting pad (13), the vertical rod (30) penetrates the middle part of the supporting pad (13) and the bottom of the cabinet (14) in turn, and the end of the vertical rod (30) extending into the cabinet (14) is fitted with the upper inner side thereof.

3. The energy-saving and environment-friendly high-voltage power distribution cabinet according to claim 1, characterized in that, The telescopic mechanism is composed of the displacement sleeve one (22), the displacement sleeve two (26) and the screw sleeve (23), and the telescopic mechanism is symmetrically arranged about the center line of the limiting block (17), and the screw sleeve (23) is connected with the displacement sleeve one (22), the top end of the screw sleeve (23) is fitted with the inner wall of the opening position of the receiving cavity (16), the height of the screw sleeve (23) is greater than the depth of the receiving cavity (16), a plurality of butt plates (24) are hinged on the surface of the displacement sleeve one (22), and the butt plates (24) are equally spaced about the displacement sleeve one (22), one end of the butt plate (24) away from the displacement sleeve one (22) is hinged with the lower position of the supporting pad (13), the lower surface of the displacement sleeve one (22) is milled with the concave surface (25), and the displacement sleeve two (26) is arranged on the inner side of the limiting block (17).

4. The energy-saving and environment-friendly high-voltage power distribution cabinet according to claim 3, characterized in that, The screw sleeve (23) is fixedly connected with the butt block (29) near the edge of the receiving cavity (16), and the butt block (29) is vertically distributed with the screw sleeve (23), the inner side of the receiving cavity (16) is reserved with the butt joint (28), and the butt block (29) is inserted with the butt joint (28).

5. The energy-saving and environment-friendly high-voltage power distribution cabinet according to claim 1, characterized in that, The electric control mechanism is composed of a placing groove (18), a motor one (19) and a motor two (20), the motor one (19) and the motor two (20) each have two output ends, the motor two (20) is located at the bottom position of the motor one (19), and the motor one (19) and the motor two (20) are arranged in parallel, the motor one (19) is connected with the inductive element two (51) by wires, and the motor two (20) is connected with the inductive element one (49) by wires; A lead screw (21) is arranged on the left and right sides of the motor one (19) and the motor two (20) in parallel, the lead screw (21) away from the motor one (19) and the motor two (20) is movably connected with the inner edge of the accommodating cavity (16), the lead screw (21) at the output position of the motor one (19) is connected with the lead screw sleeve (23), and the lead screw (21) at the output position of the motor one (19) is movably connected with the displacement sleeve one (22), the lead screw (21) at the output position of the motor two (20) is connected with the displacement sleeve two (26), and the lead screw (21) at the output position of the motor two (20) is movably connected with the displacement sleeve one (22) and the lead screw sleeve (23).

6. The energy-saving and environment-friendly high-voltage power distribution cabinet according to claim 5, characterized in that, The displacement sleeve one (22) and the limiting block (17) are fixedly connected with parallel distributed elastic members (27), the elastic members (27) are located outside the corresponding positions of the lead screw (21), and the elastic members (27) are coaxial with the axis of the lead screw (21).

7. The energy-saving and environment-friendly high-voltage power distribution cabinet according to claim 1, characterized in that, The temperature control mechanism is composed of a vent (31) and a limiting sleeve (32), the vent (31) is horizontally and vertically reserved at equal intervals on the edge surface of the cabinet (14), the vent (31) is located at the middle position of the limiting sleeve (32), and one end of the limiting sleeve (32) is connected with the cabinet (14).

Citation Information

Patent Citations

  • Liftable power distribution cabinet for power marketing

    CN214280645U

  • Outdoor waterproof power distribution cabinet

    CN216530084U