CN216488877U - Auxiliary wiring device for mounting electrical instrument - Google Patents

Auxiliary wiring device for mounting electrical instrument Download PDF

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Publication number
CN216488877U
CN216488877U CN202122256668.0U CN202122256668U CN216488877U CN 216488877 U CN216488877 U CN 216488877U CN 202122256668 U CN202122256668 U CN 202122256668U CN 216488877 U CN216488877 U CN 216488877U
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box
functional
rotating shaft
wiring device
auxiliary wiring
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CN202122256668.0U
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Chinese (zh)
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王永雷
苏祥
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Individual
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Individual
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Abstract

The utility model relates to the technical field of electric instrument wiring, and particularly discloses an auxiliary wiring device for electric instrument installation. The multifunctional box comprises a functional box, wherein a functional rotating shaft is arranged in the functional box, polygonal connecting blocks are arranged at two ends of the functional rotating shaft, a driving mechanism for driving the functional rotating shaft to rotate is arranged on the outer wall of the functional box, push-pull rods are arranged on two sides of the functional box in a penetrating and sliding mode, one ends of the push-pull rods, which are located in the box body, are fixedly connected with winding wheels for rewinding wires, and connecting holes into which the connecting blocks can be inserted are formed in one sides of the winding wheels, which are close to the functional rotating shaft; the winding wheel is wound with the wires connected with each other, the movable ends of the wires are connected with the connecting box, and one side of the outer side of the connecting box penetrates through the connecting box and is provided with the connecting sheet used for conducting electricity. The utility model aims to solve the problems that when an electric instrument is installed, an auxiliary device is lacked, so that a lead is difficult to arrange and is easy to wind and knot.

Description

Auxiliary wiring device for mounting electrical instrument
Technical Field
The application relates to the technical field of electric instrument wiring, and specifically discloses an auxiliary wiring device for electric instrument installation.
Background
Before actual electrical wiring operation is performed, multiple electrical experiments are often required to select specifications of various electrical elements so as to achieve optimal power supply effect, reduce loss and avoid faults, and wiring steps are indispensable in the electrical experiments.
When carrying out electric experiment the wire that need select different length and carry out the wiring and use, it is more troublesome, difficult to arrange in order to frequently change the wire of different length, and to the wire of overlength inconvenient arrangement wire, the wire is easily twined, inconvenient staff high-speed joint, consequently, the inventor is in view of the above, provides an electric instrument installation with supplementary termination to solve above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the problems that the wires are difficult to arrange and easy to wind and knot due to the fact that an auxiliary device is not needed during installation of an electric instrument.
In order to achieve the purpose, the basic scheme of the utility model provides an auxiliary wiring device for mounting an electrical instrument, which comprises a function box, wherein a function rotating shaft is arranged in the function box, polygonal connecting blocks are arranged at two ends of the function rotating shaft, a driving mechanism for driving the function rotating shaft to rotate is arranged on the outer wall of the function box, push-pull rods are arranged on two sides of the function box in a penetrating and sliding manner, one ends of the push-pull rods, which are positioned in a box body, are fixedly connected with winding wheels for rewinding wires, and one sides of the winding wheels, which are close to the function rotating shaft, are provided with connecting holes into which the connecting blocks can be inserted; the winding wheel is all wound with the wire of interconnect, and the expansion end of wire all is connected with the connecting box, and the outer one side of connecting box all runs through the connecting box and is equipped with the connection piece that is used for electrically conductive.
The principle and effect of this basic scheme lie in:
1. according to the utility model, through the arrangement of the motor, the functional rotating shaft taking the motor as a power source and the winding wheel detachably connected to the functional rotating shaft, the motor can drive the winding wheel to rotate, so that the wire can be loosened and rewound, and the wire can be wound on the winding wheel when being wound.
2. According to the utility model, through the arrangement of the connecting box and the connecting sheet, the connecting sheet and the electric instrument can be quickly inserted and connected, and then can be conducted to the electric instrument under the action of the connecting sheet through the matching of the connecting sheet and the wire, so that the safety problem of workers caused by the fact that the workers use the wire to be directly connected with the electric instrument is avoided.
Compared with the prior art, the wire winding device has the advantages that wires with different lengths can be conveniently extended according to requirements during use, and after the wire winding device is used, the wires can be rewound on the winding wheel, so that the wires are conveniently sorted, and the wires are prevented from being knotted; and safety accidents caused by directly using a wire to connect instruments can be prevented, and the safety is improved.
Furthermore, actuating mechanism includes the motor, and the motor runs through box coaxial coupling and has the initiative pivot, and initiative pivot coaxial coupling has initiative bevel gear, and the initiative bevel gear meshing has the driven bevel gear with function pivot coaxial coupling. The motor can drive the driving rotating shaft and the driving bevel gear on the driving rotating shaft to rotate, the driving bevel gear rotates to drive the driven bevel gear to rotate, and the driven bevel gear rotates to drive the functional rotating shaft coaxially connected with the driven bevel gear to rotate.
Furthermore, the shape of the functional rotating shaft and the shape of the connecting hole are hexagons with the same size, and supporting seats for supporting are symmetrically arranged below the functional rotating shaft and the push-pull rod. The function pivot of can being convenient for drives the winding wheel and rotates, and the hexagon is convenient for transmit power.
Furthermore, the function box is internally symmetrically provided with guide shafts for assisting the wire to be rewound on the winding shaft, and the guide shafts are rotatably connected with two sides in the function box. The guide shaft that the symmetry set up can mix with the wire between two guide shafts, and the guide shaft rotates with function incasement both sides and is connected. Can assist the wire to be rewound on the reel.
Further, all sliding connection has insulating movable block on the connecting box, all is equipped with the conduction piece that is used for electrically conducting in the connecting box, and insulating movable block is close to conduction piece one end and wire rigid coupling, and the conduction piece is connected with the connection piece. Can be convenient for with the connecting box internal connection, be convenient for control wire and conduction piece contact through insulating movable block.
Furthermore, the insulating movable block is I-shaped, an operation hole convenient for the insulating movable block to slide up and down is formed in the connecting box, and an anti-skid rubber pad is arranged in the operation hole. The I-shaped insulating movable block can be conveniently plugged and pulled by workers, and the rubber pad can prevent the insulating movable block from sliding.
Furthermore, the box bilateral symmetry is equipped with the function groove that is used for placing the connecting box. The connecting box can be placed, and the carrying is convenient.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
Fig. 1 is a schematic view showing a structure of an auxiliary wiring device for mounting an electrical instrument according to an embodiment of the present application;
fig. 2 is a sectional view showing an internal structure of a functional box in an auxiliary wiring device for mounting an electrical instrument according to an embodiment of the present invention;
fig. 3 is a view showing an inside of a connection box in an auxiliary wiring device for electric instrument installation according to an embodiment of the present application.
Detailed Description
To further illustrate the technical means and effects of the present invention adopted to achieve the predetermined objects, the following detailed description of the embodiments, structures, features and effects according to the present invention will be made with reference to the accompanying drawings and preferred embodiments.
Reference numerals in the drawings of the specification include: the device comprises a function box 1, a motor 2, a connecting box 3, a connecting sheet 4, a driving rotating shaft 5, a function rotating shaft 6, a connecting hole 7, a push-pull rod 8, a winding wheel 9, a lead wire 10, a guide shaft 11, a conducting sheet 12, a function hole 13, an insulating movable block 14, a function groove 15 and a handle 16.
The utility model provides an electric instrument installation is with supplementary termination, the embodiment is shown in figure 1, including function box 1, function box 1 rear side rotation is connected with a chamber door, the last skin weld of function box 1 has one to be convenient for take handle 16, a motor 2 is still installed to the upper surface of function box 1, function box 1's front and back both sides all weld one and are used for placing function groove 15 of connecting box 3, the left and right sides of function box 1 all is connected with an insulating connecting box 3 through wire 10, the left and right sides of function box 1 all opens the aperture that is convenient for wire 10 to pass, the left and right sides of function box 1 still runs through sliding connection and is used for the push-and-pull rod 8 of push-and-pull winding wheel 9.
As shown in fig. 1 and 3, an operation hole is formed above the connection box 3, an insulating movable block 14 is connected in the operation hole in a sliding manner, the insulating movable block 14 is in an i shape, a rubber pad for preventing the insulating movable block 14 from freely sliding is arranged in the operation hole, the lower surface of the insulating movable block 14 is fixedly connected with a wire 10, a conductive sheet 12 for contacting the wire 10 is fixedly connected to the inner bottom surface of the box, a connection sheet 4 penetrating through the side wall of the box is fixedly connected to the left end of the conductive sheet 12, the connection sheet 4 can be quickly inserted into an electrical instrument, and the connection box 3 is made of insulating materials.
As shown in fig. 3, a driving shaft 5 is coaxially connected with a motor 2 in a function box 1, the driving shaft 5 is coaxially connected with a driving bevel gear, the driving bevel gear is engaged with a driven bevel gear, the driven bevel gear is coaxially connected with a function shaft 6, hexagonal connection blocks are welded at the left and right ends of the function shaft 6, a winding wheel 9 is arranged at each of the left and right sides of the function shaft 6, a hexagonal connection hole 7 into which the connection block on the function shaft 6 can be inserted is formed at each of the right side of the left winding wheel 9 and the left side of the right winding wheel 9, the connection hole 7 and the connection block are in the shape of a hexagon with the same size, a push-pull rod 8 is welded at each of the left side of the left winding wheel 9 and the right side of the right winding wheel 9, the push-pull rod 8 penetrates through the function box 1 to be convenient for a worker to detach the winding wheel 9, a lead wire 10 is wound on each of the left winding wheel 9 and the right winding wheel 9, the wire 10 of winding makes the intercommunication on two winding wheels 9 of left and right sides, wire 10 and winding axle contact and the initiating terminal of wire 10 are fixed on the winding axle, the left side of left side winding wheel 9 and the right side of right side winding wheel 9 all rotate in function box 1 and are connected with the guiding axle 11 that two symmetries set up, wire 10 passes between two guiding axles 11, can assist the backrush of wire 10, two supporting seats that are used for supporting are installed to the below symmetry of function pivot 6, a supporting seat that is used for the support is also all installed to the below of two push-pull rods 8.
When using this auxiliary termination:
firstly, inserting the connecting sheet 4 into an electric instrument for connection, loosening the wire 10 according to the use requirement, when only the left wire 10 needs to be loosened, detaching the winding wheel 9 on the right side for winding the wire 10 from the functional rotating shaft 6 by pulling the push-pull rod 8, then starting the motor 2, when the left wire 10 is loosened to the required length, closing the motor 2, and pulling the push-pull rod 8 to detach the left winding wheel 9 from the functional rotating shaft 6; inserting the connecting sheet 4 on the right side into the electric instrument, installing the winding wheel 9 on the right side onto the functional rotating shaft 6, starting the motor 2, loosening to a required length, closing the motor 2, moving the insulating movable block 14, contacting the tail end of the lead 10 with the conducting sheet 12, and connecting a circuit; after use, the insulating movable block 14 is loosened, the motor 2 is started, and the wires 10 on the two sides are respectively wound on the winding wheel 9 in the same way. In use, it is also possible to mount both the left and right winding wheels 9 on the functional shaft 6 so that the left and right loose wires 10 are of the same length.
Compared with the prior art, the wire winding device has the advantages that wires with different lengths can be conveniently extended according to requirements during use, and after the wire winding device is used, the wires can be rewound on the winding wheel, so that the wires are conveniently sorted, and the wires are prevented from being knotted; and safety accidents caused by directly using a wire to connect instruments can be prevented, and the safety is improved.
Although the present invention has been described with reference to the preferred embodiments, it should be understood that various changes, substitutions and alterations can be made herein without departing from the spirit and scope of the utility model as defined by the appended claims.

Claims (7)

1. The utility model provides an electric instrument installation is with supplementary termination which characterized in that: the multifunctional box comprises a functional box, wherein a functional rotating shaft is arranged in the functional box, polygonal connecting blocks are arranged at two ends of the functional rotating shaft, a driving mechanism for driving the functional rotating shaft to rotate is arranged on the outer wall of the functional box, push-pull rods are arranged on two sides of the functional box in a penetrating and sliding mode, one ends of the push-pull rods, which are located in the box body, are fixedly connected with winding wheels for rewinding wires, and connecting holes into which the connecting blocks can be inserted are formed in one sides of the winding wheels, which are close to the functional rotating shaft; the winding wheel is all wound with the wire of interconnect, and the expansion end of wire all is connected with the connecting box, and the outer one side of connecting box all runs through the connecting box and is equipped with the connection piece that is used for electrically conductive.
2. The auxiliary wiring device for electric instrument installation as claimed in claim 1, wherein the driving mechanism comprises a motor, the motor is coaxially connected with a driving rotating shaft through the box body, the driving rotating shaft is coaxially connected with a driving bevel gear, and the driving bevel gear is engaged with a driven bevel gear coaxially connected with the functional rotating shaft.
3. The auxiliary wiring device for electric instrument installation as claimed in claim 2, wherein the functional shaft and the connection hole are hexagons having the same size, and support seats for supporting are symmetrically provided below the functional shaft and the push-pull rod.
4. The auxiliary wiring device for the installation of the electrical instrument as claimed in claim 1, wherein guide shafts for assisting the wire to be rewound onto the winding shaft are symmetrically arranged in the function box, and the guide shafts are rotatably connected with two sides in the function box.
5. The auxiliary wiring device for the installation of the electrical instrument as claimed in claim 1, wherein the connection boxes are slidably connected with insulating movable blocks, the connection boxes are internally provided with conductive pieces for conducting electricity, one ends of the insulating movable blocks, which are close to the conductive pieces, are fixedly connected with the conducting wires, and the conductive pieces are connected with the connection pieces.
6. The auxiliary wiring device for the installation of the electrical instrument as claimed in claim 5, wherein the insulating movable block is I-shaped, an operation hole for facilitating the vertical sliding of the insulating movable block is formed in the connection box, and an anti-skid rubber pad is arranged in the operation hole.
7. The auxiliary wiring device for electric instrument installation as claimed in claim 1, wherein functional grooves for placing the connection box are symmetrically formed on both sides of the box body.
CN202122256668.0U 2021-09-17 2021-09-17 Auxiliary wiring device for mounting electrical instrument Active CN216488877U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122256668.0U CN216488877U (en) 2021-09-17 2021-09-17 Auxiliary wiring device for mounting electrical instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122256668.0U CN216488877U (en) 2021-09-17 2021-09-17 Auxiliary wiring device for mounting electrical instrument

Publications (1)

Publication Number Publication Date
CN216488877U true CN216488877U (en) 2022-05-10

Family

ID=81436935

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122256668.0U Active CN216488877U (en) 2021-09-17 2021-09-17 Auxiliary wiring device for mounting electrical instrument

Country Status (1)

Country Link
CN (1) CN216488877U (en)

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