Intelligent power distribution cabinet
By introducing structures such as slides, slide plates, fixed bases, and magnets into the power distribution cabinet, the problem of limited operating space inside the cabinet is solved, enabling the mobility of components and automatic resetting of wires, increasing maintenance space, and improving maintenance efficiency.
Patent Information
- Application Number
- CN202211278593.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-19
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2042-10-19
AI Technical Summary
The limited operating space inside the distribution cabinet makes component maintenance inconvenient.
An intelligent power distribution cabinet was designed. Through structures such as slides, slide plates, fixed bases, and magnets, the cabinet enables the mobility of components and the automatic reset of wires, thereby increasing the maintenance space. Magnets and clamps limit the movement distance, ensuring the operating space for components during maintenance.
It increases the maintenance space for components, limits the movement distance of components, prevents wires from becoming tangled, and improves maintenance efficiency.
Smart Images

Figure CN115603184B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of power distribution cabinet technology, and more specifically to an intelligent power distribution cabinet. Background Technology
[0002] Distribution cabinets are divided into power distribution cabinets, lighting distribution cabinets, and metering cabinets, and are the final stage equipment of the power distribution system. Distribution cabinets are a general term for motor control centers, which are used in situations where the load is relatively dispersed and there are fewer circuits. Motor control centers are used in situations where the load is concentrated and there are more circuits. They distribute the electrical energy of a certain circuit of the previous level power distribution equipment to the nearest load. This level of equipment should provide protection, monitoring and control for the load.
[0003] The limited operating space inside the distribution cabinet makes it inconvenient to maintain the various components inside. Summary of the Invention
[0004] To overcome the shortcomings of the existing technology, the present invention provides an intelligent power distribution cabinet, which has the advantage of increasing the operating space for the components of the power distribution cabinet during maintenance.
[0005] An intelligent power distribution cabinet includes a slide rail I, a slide plate I, a base I, and a fixing seat I. The base I has an integrally formed notch inside. Two slide rails I are symmetrically integrally formed on the left and right sides of the notch in the base I. The slide plate I is slidably connected inside the two slide rails I. The fixing seat I is welded to the right end of the slide plate I. Components are fixed to the right side of the fixing seat I by bolts.
[0006] It also includes slot I, slide II, spring, baffle I and locking blocks. Slide II is integrally formed on the left side of slide plate I. Two locking blocks are symmetrically slidably connected in slide II. The compressed spring is welded between the two locking blocks. Two slots I are symmetrically integrally formed on the right end of slide I. Baffle I is welded to the left end of base I.
[0007] It also includes a slide plate II, a slide groove II, a baffle plate II, and a base II. Multiple bases I are evenly spaced and fixed to the upper side of the slide plate II with bolts. The base II has an integrally formed notch inside. Two slide grooves II are symmetrically integrally formed on the left and right sides of the notch in the base II. The slide plate II is slidably connected inside the two slide grooves II. The baffle plate II is welded to the left side of the slide plate II.
[0008] It also includes a mounting base II and magnets. Two mounting bases II are symmetrically welded to the front and back sides of the upper left and right parts of the base II. The four magnets are fixed in the four mounting bases II with glue. Attached Figure Description
[0009] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0010] Figure 1 This is a structural diagram of an intelligent power distribution cabinet;
[0011] Figure 2 This is a structural schematic diagram of base I;
[0012] Figure 3 This is a structural schematic diagram of base II;
[0013] Figure 4 Schematic diagram of the structure of base I and base II Figure 1 ;
[0014] Figure 5 Schematic diagram of the structure of base I and base II Figure 2 ;
[0015] Figure 6 This is a schematic diagram of the supporting shaft structure;
[0016] Figure 7 This is a schematic diagram of the cover plate.
[0017] Figure 8 This is a schematic diagram of the roller structure;
[0018] Figure 9 This is a schematic diagram of the roller and the wire.
[0019] Figure 10 Schematic diagram of belt structure Figure 1 ;
[0020] Figure 11 Schematic diagram of belt structure Figure 2 .
[0021] In the diagram: Fixed base I 101; Slide plate I 102; Slide groove III 103; Locking block 104; Spring 105; Base I 106; Slot 107; Baffle I 108; Protective coil 109; Slide groove I 110; Wire hole II 111;
[0022] Slide II 201; Base II 202; Baffle II 203; Slide II 204; Fixing base II 205; Magnet 206; Wire hole III 207;
[0023] Support shaft 301; Roller 302; Partition plate I 303; Cable hole I 304; Groove 305; Wire 306;
[0024] Cover plate 401; Partition plate II 402; Fixing bracket 403; Belt 404; Buckle 405;
[0025] Casing 501. Detailed Implementation
[0026] like Figure 1-5 As shown, this example can increase the operating space when repairing components.
[0027] The intelligent power distribution cabinet includes a slide rail I110, a slide plate I102, a base I106, and a fixed seat I101. The base I106 has an integrally formed notch, and two slide rails I110 are symmetrically integrally formed on the left and right sides of the notch. The slide plate I102 is slidably connected inside the two slide rails I110. The fixed seat I101 is welded to the right side of the slide plate I102, and the components are fixed to the right side of the fixed seat I101 by bolts. When repairing the components, the slide plate I102 is pulled outward from the power distribution cabinet, which in turn moves the fixed seat I101 outward from the power distribution cabinet, thereby moving the components to the outside of the power distribution cabinet, thus increasing the operating space when repairing the components, and thus achieving the effect of increasing the operating space for repairing the components.
[0028] like Figure 1-5 As shown, this example can achieve the effect of limiting the movement distance of the fixed seat I101.
[0029] Since the intelligent power distribution cabinet includes slots 107, slide rails III 103, springs 105, baffles I 108, and locking blocks 104, slide rails III 103 are integrally formed on the left side of slide plate I 102, two locking blocks 104 are symmetrically slidably connected in slide rails III 103, compressed springs 105 are welded between the two locking blocks 104, two slots 107 are symmetrically integrally formed on the right end of slide rails I 102, and baffles I 108 are welded to the left end of base I 106; pulling slide plate I 102 outwards from the power distribution cabinet causes slide rails III 103 on slide plate I 102 to move relative to base I 106 outwards from the power distribution cabinet, thereby causing the two locking blocks 104 on slide rails III 103 to move outwards relative to base I 106; when the two locking blocks 104 move to the position of slots 107, the two The locking blocks 104, under the elastic force of the compressed spring 105, move to both sides in the slide groove Ⅲ 103, thereby locking the two locking blocks 104 into the locking slot 107, thus restricting the sliding plate Ⅰ 102 from moving outward, and thus restricting the fixed seat Ⅰ 101 from moving outward of the distribution cabinet, thereby achieving the effect of limiting the distance the fixed seat Ⅰ 101 moves outward of the distribution cabinet; pushing the fixed seat Ⅰ 101 to move inward of the distribution cabinet, thereby driving the sliding plate Ⅰ 102 to move inward of the distribution cabinet relative to the base Ⅰ 106; when the sliding plate Ⅰ 102 moves to the inside of the baffle Ⅰ 108, the baffle Ⅰ 108 restricts the sliding plate Ⅰ 102 from moving inward, thereby achieving the effect of limiting the movement of the fixed seat Ⅰ 101 inward of the distribution cabinet, and thus achieving the effect of limiting the distance the fixed seat Ⅰ 101 moves.
[0030] like Figure 1-5 As shown, this example can achieve the effect of increasing the operating space when repairing multiple components simultaneously.
[0031] The intelligent power distribution cabinet includes a baffle II203, a sliding plate II201, a sliding groove II204, and a base II202. Multiple bases I106 are evenly spaced and fixed to the upper side of the sliding plate II201 with bolts. The base II202 has an integrally formed notch inside. Two sliding grooves II204 are symmetrically integrally formed on the left and right sides of the notch in the base II202. The sliding plate II201 is slidably connected inside the two sliding grooves II204. The baffle II203 is welded to the left side of the sliding plate II201. Pulling the sliding plate II201 to move it outwards from the power distribution cabinet will, in turn, move the baffle II203. The baffle II 203 moves to the outside of the distribution cabinet, which in turn pushes multiple baffles I 108 to the outside of the distribution cabinet, thereby driving multiple bases I 106 to move to the outside, driving multiple sliding plates I 102 to move to the outside of the distribution cabinet, driving multiple fixed seats I 101 to move to the outside of the distribution cabinet, and driving multiple components to move to the outside of the distribution cabinet, thereby achieving the effect of multiple components being outside the distribution cabinet, and simultaneously increasing the operating space for the maintenance of multiple components.
[0032] like Figure 1-5 As shown, this example can achieve the effect of limiting the movement distance of the skateboard II 201.
[0033] Since the intelligent power distribution cabinet includes mounting bases II205 and magnets 206, two mounting bases II205 are symmetrically welded to the front and rear sides of the upper left and right parts of the base II202. Four magnets 206 are fixed to the four mounting bases II205 with glue. When the sliding plate II201 is pulled outwards until the baffle II203 moves to the inside of the two mounting bases II205 on the right side of the base II202, the two magnets 206 inside the two mounting bases II205 on the right side attract the baffle II203, thus causing the baffle II203 to move outwards to its maximum distance, thereby limiting the sliding plate II201 from further moving towards the power distribution cabinet. The sliding plate II 201 moves to the outside of the cabinet, thereby limiting the distance that the sliding plate II 201 moves to the outside of the distribution cabinet; when the sliding plate II 201 is pushed to the inside of the distribution cabinet until the baffle II 203 moves to the inside of the two fixed seats II 205 on the left end of the base II 202, the two magnets 206 inside the two fixed seats II 205 on the left end attract the baffle II 203, thereby feeding back the baffle II 203 to move to the inside of the distribution cabinet to the maximum distance, thereby limiting the sliding plate II 201 to continue moving to the inside of the distribution cabinet, thus limiting the distance that the sliding plate II 201 moves to the inside of the distribution cabinet; thus achieving the effect of limiting the distance that the sliding plate II 201 moves.
[0034] like Figure 1-3 As shown, this example can achieve the effect of fixing the base II202.
[0035] Since the intelligent power distribution cabinet includes a housing 501, the base II 202 is fixed inside the housing 501 by bolts; after tightening the bolts, the base II 202 is fixed inside the housing 501, thereby achieving the effect of fixing the base II 202; after loosening the bolts, the base II 202 can be removed from the housing 501, thereby achieving the effect of facilitating the removal of the base II 202.
[0036] like Figure 1-6 As shown, this example can achieve the effect of the roller 302 rotating on the support shaft 301.
[0037] Since the intelligent power distribution cabinet includes rollers 302 and support shafts 301, the support shafts 301 are fixed inside the outer shell 501 by bolts. The position of the support shafts 301 is above the base II 202. Multiple rollers 302 are evenly spaced and rotatably connected to the support shafts 301. When the rollers 302 rotate, the rollers 302 rotate on the support shafts 301, thereby limiting the vertical distance of the rollers 302 to remain unchanged, thus achieving the effect of the rollers 302 rotating on the support shafts 301.
[0038] like Figure 6-9 As shown, this example can eliminate the influence of wire 306 on the components when the components are moved to the outside of the distribution cabinet.
[0039] The intelligent power distribution cabinet includes cable passage holes I304, partition I303, and wires 306. Partition I303 is welded to the middle of roller 302. Two cable passage holes I304 are symmetrically and integrally formed on the lower part of partition I303. Wires 306 pass through the cable passage hole I304 on the right side and are wound around roller 302 in opposite directions on both sides of partition I303. Wires 306 on the left side of partition I303 are connected to components, and wires 306 on the right side of partition I303 converge at... On the cable; when the component moves to the outside of the distribution cabinet, it causes the wire 306 on the left side of the partition I 303 to extend, which in turn causes the roller 302 to rotate clockwise on the support shaft 301, which in turn causes the wire 306 on the right side of the partition I 303 to extend. As a result, the component does not pull the cable when it moves to the outside of the distribution cabinet, thus eliminating the pulling effect of the wire 306 on the component when it moves to the outside of the distribution cabinet, and thus eliminating the influence of the wire 306 on the component when it moves to the outside of the distribution cabinet.
[0040] like Figure 6-9 As shown, this example can achieve the effect of multiple rollers 302 rotating independently.
[0041] Since the intelligent power distribution cabinet includes a cover plate 401 and partition plate II 402, the cover plate 401 is fixed inside the outer shell 501 by bolts. The cover plate 401 is located above the roller 302. Multiple partition plates II 402 are evenly spaced and welded to the lower side of the cover plate 401. The multiple partition plates II 402 are located between two adjacent rollers 302. Thus, the multiple partition plates II 402 separate the multiple rollers 302, thereby achieving the effect of separating the multiple rollers 302 and enabling each roller 302 to rotate independently.
[0042] like Figure 10-11 As shown, this example demonstrates how wire 306 can be automatically reset after the components return to the inside of the distribution cabinet.
[0043] The intelligent power distribution cabinet includes a buckle 405, a belt 404, a groove 305, and a fixing bracket 403. The groove 305 is integrally formed in the middle of the partition I 303. Multiple fixing brackets 403 are integrally formed on the left side of the cover plate 401. The left ends of multiple belts 404 are respectively fitted onto multiple fixing brackets 403. The right ends of multiple buckles 405 are respectively locked onto the wire passage holes I 304 on the left side. The right ends of the belts 404 are inside the groove 305. Pulling the components outwards from the power distribution cabinet causes the wires 306 on the components to extend, thereby driving... The roller 302 rotates, causing the wire hole I 304 on the roller 302 to rotate clockwise, which in turn drives the buckle 405 to rotate clockwise, thus stretching the belt 404. After the component returns to the inside of the distribution cabinet, the component no longer exerts tension on the wire 306, causing the stretched belt 404 to retract, which in turn drives the buckle 405 to rotate counterclockwise, which in turn drives the roller 302 to rotate counterclockwise, thus causing the wire 306 to wrap around the roller 302, thereby achieving the effect of automatic reset of the wire 306 after the component returns to the inside of the distribution cabinet.
[0044] like Figure 2-5 As shown, this example can achieve the effect of preventing wires 306 from becoming cluttered.
[0045] Since the intelligent power distribution cabinet includes wire passage holes II111, wire passage holes III207, and protective coils 109, wire passage holes II111 are integrally formed on baffle I108, multiple wire passage holes III207 are evenly spaced and integrally formed on baffle II203, and multiple protective coils 109 are nested in multiple wire passage holes II111 and wire passage holes III207 respectively; the wire 306 on the right side of baffle I103 is connected to the component through wire passage holes II111 and wire passage holes III207, and when the wire 306 is stretched and reset, the wire passage holes II111 and III207 limit the connection. The movement of the wire 306 in the up, down, left, and right directions is restricted, thereby limiting the vertical movement of the wire 306 on the roller 302 and the slide plate II 201, as well as the horizontal movement of the wire 306 above the slide plate I 102. This restricts the direction of movement of the wire 306, prevents multiple wires 306 from becoming entangled, and prevents the wires 306 from becoming messy. The protective coils 109 on the wire holes II 111 and III 207 prevent the wire 306 from being damaged during movement, thus protecting the wire 306.
Claims
1. An intelligent power distribution cabinet, comprising a fixed seat I (101), a sliding plate I (102), a base I (106) and a sliding groove I (110), characterized in that: The base I (106) is internally provided with a notch, two sliding grooves I (110) are symmetrically arranged on the left and right sides of the notch of the base I (106), the sliding plate I (102) is arranged inside the two sliding grooves I (110), the fixed seat I (101) is arranged at the right end of the sliding plate I (102), and the components are arranged on the right side of the fixed seat I (101); The base II (202) is internally provided with a notch, two sliding grooves II (204) are symmetrically arranged on the left and right sides of the notch of the base II (202), the sliding plate II (201) is arranged inside the two sliding grooves II (204), and the baffle II (203) is arranged on the left side of the sliding plate II (201); The base II (202) is arranged inside the shell (501); The support shaft (301) is arranged inside the shell (501) and above the base II (202), and a plurality of the rollers (302) are uniformly and intermittently arranged on the support shaft (301); The baffle I (303) is arranged in the middle of the roller (302), two wire passing holes I (304) are symmetrically arranged on the lower part of the baffle I (303), the electric wires (306) pass through the wire passing holes I (304) on the right side, are wound on the roller (302) on the two sides of the baffle I (303) in opposite directions, the electric wires (306) on the left side of the baffle I (303) are connected to the components, and the electric wires (306) on the right side of the baffle I (303) converge to the electric cable; The cover plate (401) is arranged inside the shell (501) and above the roller (302), a plurality of the baffles II (402) are uniformly and intermittently arranged on the lower side of the cover plate (401), and the plurality of baffles II (402) are respectively arranged between two adjacent rollers (302); The belt groove (305) is arranged in the middle of the baffle I (303), a plurality of the fixed frames (403) are arranged on the left part of the cover plate (401), the right end of the belt (404) is arranged on the left end of the buckle (405), the left end of the plurality of belts (404) is respectively arranged on the plurality of fixed frames (403), the right end of the plurality of buckles (405) is respectively arranged on the wire passing holes I (304) on the left side, and the right end of the belt (404) is arranged on the inner side of the belt groove (305).
2. The intelligent power distribution cabinet of claim 1, wherein: It also includes the sliding slot III (103), the clamping block (104), the spring (105), the clamping slot (107) and the baffle I (108), the sliding slot III (103) is arranged at the left part of the sliding plate I (102), two clamping blocks (104) are symmetrically arranged in the sliding slot III (103), the compressed spring (105) is arranged between the two clamping blocks (104), two clamping slots (107) are symmetrically arranged at the right part of the sliding slot I (110), and the baffle I (108) is arranged at the left end of the base I (106).
3. The intelligent power distribution cabinet of claim 1, wherein: It also includes the fixed seat II (205) and the magnet (206), two fixed seats II (205) are symmetrically arranged on the front and back of the left and right parts of the base II (202), and four magnets (206) are arranged in the four fixed seats II (205) respectively.
4. The intelligent power distribution cabinet of claim 3, wherein: It also includes the wire passing hole II (111), the wire passing hole III (207) and the wire protection ring (109), the wire passing hole II (111) is arranged on the baffle I (108), a plurality of wire passing hole III (207) are uniformly and interval arranged on the baffle II (203), and a plurality of wire protection rings (109) are arranged in the wire passing hole II (111) and the wire passing hole III (207) respectively.
Citation Information
Patent Citations
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