Switch board with wiring structure
Technical Field
The utility model relates to the technical field of power distribution cabinets, in particular to a power distribution cabinet with a wiring structure.
Background
The existing power distribution cabinet can be provided with a through opening so that a wire penetrates through the side wall of the power distribution cabinet to be led into the power distribution cabinet for wiring operation, but because a gap exists between the wire and the inner wall surface of the opening when the wire penetrates through the through opening, the wire is unfavorable for fixing, and further the wire is easy to shake, and the wire can fall off when being pulled and pulled, so that the wire is fixed through a wiring assembly in the wiring process of the power distribution cabinet.
The prior Chinese patent (bulletin number: CN 217306958U) is specifically a wiring type power distribution cabinet and a wiring device of the power distribution cabinet, and comprises a power distribution cabinet body, wherein a fixing seat is fixedly arranged on the right side surface of the power distribution cabinet body, a threading notch is formed in the surface of the fixing seat and is communicated with the inside of the power distribution cabinet body in a penetrating manner, clamping devices are symmetrically arranged on the upper side and the lower side of the threading notch in the fixing seat, an extruding device is arranged on one side of the threading notch in the fixing seat, and the extruding device is matched with the corresponding structure of the clamping devices.
Above-mentioned termination is in the use, utilize two grip blocks that set up to penetrating the circuit in the switch board and unify the centre gripping, because it once can carry out the centre gripping to a plurality of circuits, consequently the efficiency of centre gripping location is higher, but when the electric wire breaks down in the use, always need to remove the fixed state of centre gripping simultaneously to all circuits, and at this in-process, lead to having arranged the circuit to appear chaotic condition easily, the chaotic circuit is inconvenient maintenance personal not only maintains and after subsequent maintenance, still need to arrange the circuit again.
For this reason, we propose a power distribution cabinet with wiring structure to solve the above-mentioned problems.
Disclosure of utility model
The utility model provides a power distribution cabinet with a wiring structure, which solves the technical problem that a single circuit is inconvenient to disassemble during maintenance in the prior art.
In order to solve the technical problems, the power distribution cabinet with the wiring structure comprises a power distribution cabinet, a first clamping plate and a second clamping plate, wherein the first clamping plate and the second clamping plate are arranged on the same plane on one side of the power distribution cabinet, the second clamping plate is fixedly connected to the side face of the power distribution cabinet, the first clamping plate is slidably connected to the side face of the power distribution cabinet, the first clamping plate is located above the second clamping plate, a clamping assembly for fixing a wire is arranged in the first clamping plate, the clamping assembly comprises a fixing frame, a connecting rod, a C-shaped clamping plate, a limiting rod, a force application plate, a compression spring and a through hole, the fixing frame is connected to the top of the first clamping plate, the connecting rod is slidably arranged on the fixing frame, one end of the connecting rod penetrates through the first clamping plate and is connected with the C-shaped clamping plate for fixing wires, one end of the limiting rod penetrates through the connecting rod to fix the connecting rod, the through hole is formed in the connecting rod and is matched with the limiting rod, the force application plate is connected to one end of the limiting rod, which is far away from the connecting rod, the force application plate is located on the outer side of the fixing frame, the compression spring is located on the fixing frame, the compression spring is connected to one side of the clamping assembly, and the compression spring is connected to one side of the clamping plate.
Preferably, one end of the connecting rod, which is far away from the C-shaped clamping plate, extends to the outside of the fixed frame and is connected with a mounting plate.
Preferably, the number of the through holes is two.
Preferably, one end of the connecting rod is detachably connected with the C-shaped clamping plate, an internal thread groove is formed in the C-shaped clamping plate, and an external thread matched with the internal thread groove on the C-shaped clamping plate is formed in one end of the connecting rod.
Preferably, the clamping driving assembly comprises a first mounting frame, a transmission screw rod and a transmission block, wherein the first mounting frame is fixedly connected to one side of the power distribution cabinet, the transmission screw rod is rotationally connected in the first mounting frame, the transmission block is in threaded connection with the transmission screw rod, and one end of the transmission block extends to the outside of the first mounting frame and is connected with one side of the first clamping plate.
Preferably, the top of the first installation frame is rotatably connected with a rotating shaft, and one end of the rotating shaft extends into the first installation frame and is connected with the top of the transmission screw rod.
Preferably, one side of switch board is connected with the second installing frame, the second installing frame is connected with the wire pole, sliding connection has the stopper on the wire pole, the one end of stopper extends to the outside of second installing frame and is connected with one side that the transmission piece was kept away from to first splint.
Preferably, one side of the first clamping plate and one side of the second clamping plate, which are far away from the power distribution cabinet, are connected with rain shielding gaskets.
Compared with the related art, the power distribution cabinet with the wiring structure has the following beneficial effects:
According to the utility model, the clamping driving assembly is used for driving the first clamping plate and is matched with the second clamping plate to clamp and fix the wires, so that the wire connection is convenient, when one of the wires is damaged, the force application plate can be pulled to enable one end of the limiting rod to be no longer in contact with the connecting rod, and then the connecting rod is pulled to drive the C-shaped clamping plate to vertically move upwards, so that the C-shaped clamping plate is in contact with the wires to fix the wires.
According to the utility model, the transmission screw rod is rotated to drive the transmission block to vertically move downwards, at the moment, the first clamping plate connected to one side of the transmission block can vertically move downwards to fix the lead, and the arrangement is convenient for driving the first clamping plate to vertically move downwards to position the lead.
Drawings
Fig. 1 is a front view of a power distribution cabinet with a wiring structure;
fig. 2 is a side view of a power distribution cabinet with a wiring structure;
fig. 3 is a schematic structural view of a clamping assembly in a power distribution cabinet with a wiring structure;
Fig. 4 is a schematic diagram of a connection structure between a second clamping plate and a protection pad in a power distribution cabinet with a wiring structure.
Reference numerals in the drawings: 1. a power distribution cabinet; 2. a first clamping plate; 3. a second clamping plate;
4. Clamping the driving assembly; 401. a first mounting frame; 402. a transmission screw rod; 403. a transmission block; 404. a rotating shaft;
5. a second mounting frame; 6. a wire rod; 7. a limiting block;
8. A clamping assembly; 801. a fixed frame; 802. a connecting rod; 803. c-shaped clamping plates; 804. a limit rod; 805. a force application plate; 806. a compression spring; 807. a through hole;
9. rain shield gasket.
Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals refer to the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary only for explaining the present utility model and are not to be construed as limiting the present utility model.
An embodiment I is given by fig. 1-4, a power distribution cabinet with wiring structure, including power distribution cabinet 1, first splint 2 and second splint 3 all set up on the coplanar of power distribution cabinet 1 one side, second splint 3 fixed connection is in the side of power distribution cabinet 1, first splint 2 sliding connection is in the side of power distribution cabinet 1, and first splint 2 is located the top of second splint 3, be equipped with in the first splint 2 to the wire and carry out fixed clamping component 8, clamping component 8 includes fixed frame 801, connecting rod 802, C-shaped splint 803, spacing bar 804, force application plate 805, compression spring 806 and through-hole 807, fixed frame 801 connects at the top of first splint 2, connecting rod 802 sliding arrangement is on fixed frame 801 and one end of connecting rod 802 runs through first splint 2 and is connected with C-shaped splint for the fixed wire, spacing bar 804 sliding connection is on one side of fixed frame 801 and one end of spacing bar 804 runs through the connecting rod 802 to the connecting rod 802, through-hole 807 is seted up on connecting rod 802 and is adapted with spacing bar 804, force application plate 802 is connected with force application plate 805 on the side of connecting rod 805, it is close to compression spring 805 on one side of fixed frame 801 and is connected with compression spring 805 on one side of drive plate 801 to be close to compression plate 805, compression spring 805 is connected on one side of drive plate 1, the side of drive plate is held in compression plate is close to compression plate on compression plate 801 is connected with compression plate on one end of drive plate is located compression plate on compression plate 801 and is adjacent side of compression plate on compression plate is fixed plate 801.
During specific implementation, the clamping driving assembly 4 is utilized to drive the first clamping plate 2 and is matched with the second clamping plate 3 to clamp and fix a wire, so that the wire is conveniently connected for use, when one of the wires is damaged, the force application plate 805 can be pulled to enable one end of the limiting rod 804 to be no longer in contact with the connecting rod 802, then the connecting rod 802 is pulled to drive the C-shaped clamping plate 803 to vertically move upwards, the C-shaped clamping 803 is enabled to be in contact with the wire to fix the wire, at the moment, the single wire can be conveniently maintained, and the wire is prevented from being disordered due to the fact that the whole clamping equipment is not required to be disassembled.
Specifically, the end of the connecting rod 802 away from the C-shaped clamping plate 803 extends to the outside of the fixing frame 801 and is connected with a mounting plate, which is convenient for a user to apply force to pull the connecting rod 802 to move vertically upwards.
Specifically, the number of through holes 807 is two, and the two through holes 807 can be used during clamping and maintenance respectively, and the height of the through holes 807 for maintenance is higher than that of the through holes 807 for positioning, so that the compression spring 806 can be inserted into the through holes 807 for maintenance during maintenance, thereby heightening the position of the C-shaped clamping plate 803 without the need for a worker to pull the connecting rod 802 all the time.
Specifically, one end of the connecting rod 802 is detachably connected with the C-shaped clamping plate 803, an internal thread groove is formed in the C-shaped clamping plate 803, an external thread matched with the internal thread groove in the C-shaped clamping plate 803 is formed in one end of the connecting rod 802, and the C-shaped clamping plate 803 is conveniently detached and replaced by the aid of the setting, so that lines with different thicknesses are conveniently fixed.
Referring to fig. 1-4, on the basis of the first embodiment, the clamping driving assembly 4 includes a first mounting frame 401, a transmission screw 402 and a transmission block 403, the first mounting frame 401 is fixedly connected to one side of the power distribution cabinet 1, the transmission screw 402 is rotatably connected in the first mounting frame 401, the transmission block 403 is in threaded connection with the transmission screw 402, and one end of the transmission block 403 extends to the outside of the first mounting frame 401 and is connected to one side of the first clamping plate 2.
In specific implementation, the transmission screw 402 can drive the transmission block 403 to vertically move downwards, at this time, the first clamping plate 2 connected to one side of the transmission block 403 can vertically move downwards to fix the wire, and the arrangement is convenient to drive the first clamping plate 2 to vertically move downwards to fix the wire.
Specifically, the top of the first mounting frame 401 is rotatably connected with a rotating shaft 404, one end of the rotating shaft 404 extends into the first mounting frame 401 and is connected with the top of the transmission screw 402, and the arrangement facilitates force application to rotate the transmission screw 402, so that a worker can apply force more conveniently.
Specifically, one side of switch board 1 is connected with second installing frame 5, and second installing frame 5 internal connection has wire pole 6, and sliding connection has stopper 7 on the wire pole 6, and the one end of stopper 7 extends to the outside of second installing frame 5 and is connected with one side that transmission piece 403 was kept away from to first splint 2, and this setting can provide certain spacing and direction effect to the removal of first splint 2, has promoted the stability of centre gripping.
Specifically, the side that switch board 1 was kept away from to first splint 2 and second splint 3 all is connected with the gasket 9 that keeps off the rain, and this setting can protect the circuit of centre gripping and avoid when rainy day, and the rainwater is immersed in switch board 1 through first splint 2 and second splint 3.
Working principle: the transmission screw 402 can be rotated to drive the transmission block 403 to vertically move downwards, at this time, the first clamping plate 2 connected to one side of the transmission block 403 can vertically move downwards to fix the lead, and the arrangement is convenient to drive the first clamping plate 2 to vertically move downwards to fix the lead.
The first clamping plate 2 is driven by the clamping driving assembly 4 and matched with the second clamping plate 3 to clamp and fix the wires, so that the wires are conveniently wired, when one of the wires is damaged, the force application plate 805 can be pulled to enable one end of the limiting rod 804 to be no longer in contact with the connecting rod 802, then the connecting rod 802 is pulled to drive the C-shaped clamping plate 803 to vertically move upwards, the C-shaped clamping plate 803 is enabled to be in contact with the fixing of the wires, at the moment, the single wire can be conveniently maintained, and the wire is prevented from being disordered due to the fact that the whole clamping equipment is not required to be dismounted.