CN114667016A - Wiring mechanism for information system integrated control cabinet and wiring method thereof - Google Patents

Wiring mechanism for information system integrated control cabinet and wiring method thereof Download PDF

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Publication number
CN114667016A
CN114667016A CN202210296493.2A CN202210296493A CN114667016A CN 114667016 A CN114667016 A CN 114667016A CN 202210296493 A CN202210296493 A CN 202210296493A CN 114667016 A CN114667016 A CN 114667016A
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China
Prior art keywords
wiring
clamping
adjusting
pair
wire
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Granted
Application number
CN202210296493.2A
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Chinese (zh)
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CN114667016B (en
Inventor
王宁
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Fujian Manku Electric Co ltd
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Nanjing Hetilian Technology Co ltd
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Priority to CN202210296493.2A priority Critical patent/CN114667016B/en
Publication of CN114667016A publication Critical patent/CN114667016A/en
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus
    • H05K5/02Details
    • H05K5/0247Electrical details of casings, e.g. terminals, passages for cables or wiring
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/02Arrangements of circuit components or wiring on supporting structure
    • H05K7/023Stackable modules
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1438Back panels or connecting means therefor; Terminals; Coding means to avoid wrong insertion
    • H05K7/1447External wirings; Wiring ducts; Laying cables
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

Abstract

The invention relates to a wiring mechanism for an information system integrated control cabinet and a wiring method thereof, relating to the field of control cabinets and comprising a control cabinet main body, a fixed adjusting component, a wiring installation component, a first wiring component and a second wiring component; two sets of fixed regulating parts, the symmetry is installed in the switch board main part, installs a plurality of wiring installation parts between two sets of fixed regulating parts, installs a plurality of first wiring parts that are used for the wiring in the wiring installation part. Through set up wiring installation component, first wiring part and second wiring part in the switch board main part, the connecting wire that can guarantee different thicknesses can both be fixed by the card, the wiring of being convenient for, avoid the connecting wire to receive the extrusion to take place to damage and appear rocking and connect not hard up to the normal connection and the use of protective apparatus, the fixed adjusting part of cooperation simultaneously is convenient for carry out position control to wiring installation component, increases the application scope of switch board main part.

Description

Wiring mechanism for information system integrated control cabinet and wiring method thereof
Technical Field
The invention relates to the field of control cabinets, in particular to a wiring mechanism for an information system integrated control cabinet and a wiring method thereof.
Background
The information system integration means that all separated devices, functions, information and the like are integrated into a system which is associated, unified and coordinated with each other through a structured comprehensive wiring system and a computer network technology, so that resources are fully shared, and the aims of centralization, high efficiency, convenient management and the like can be fulfilled.
At present, a PLC control cabinet is a relatively common device in information system integration, and is a programmable control cabinet, which has protection functions such as overload, short circuit, and open-phase protection, and can be combined according to the actual control scale, thereby not only realizing single-cabinet automatic control, but also realizing distributed control system composed of multiple cabinets through an industrial ethernet or an industrial field bus network.
But the wiring groove on the present switch board wiring layer board is evenly seted up more, make wiring groove size rigidity and unable regulation, make wiring groove and the unable adaptation of connecting wire, it is limited to lead to the fixed effect of the connecting wire that the wiring groove differs to the thickness, can cause thick connecting wire to pass the wiring groove even, or though can pass the wiring groove but can receive the extrusion damage etc. or, be unfavorable for the wiring, and simultaneously, the wiring groove also can't correspond with the position of connecting wire, lead to the connecting wire to take place easily after passing the wiring groove and buckle, receive pultrusion etc., can cause the connecting wire to take place to become flexible, damage even, influence the normal connection and the use of relevant equipment easily.
Disclosure of Invention
The invention aims to: the wiring mechanism for the information system integrated control cabinet and the wiring method thereof are provided, the wiring installation part, the first wiring part and the second wiring part are arranged in the control cabinet main body, connecting wires with different thicknesses can be guaranteed to be fixed by clamping, and meanwhile, the wiring installation part is convenient to adjust the position by matching with the fixed adjusting part, so that the problems in the prior art are solved.
The technical scheme is as follows: a wiring mechanism for an information system integrated control cabinet comprises a control cabinet main body, a fixed adjusting component, a wiring installation component, a first wiring component and a second wiring component;
a control cabinet main body;
two sets of fixed adjusting parts, the symmetry install in the switch board main part, two sets of install a plurality of wiring installation parts between the fixed adjusting part, install a plurality of first wiring parts that are used for the wiring in the wiring installation part, be provided with a plurality of second wiring parts that are used for cooperating first wiring part to lay wire in the first wiring part.
In a further embodiment, the fixed adjustment component comprises a transverse adjustment rail, a transverse adjustment slider, a vertical adjustment rail and a vertical adjustment slider;
the pair of transverse adjusting rails are symmetrically arranged in the control cabinet main body and are symmetrically arranged relative to a central axis of the control cabinet main body;
the two pairs of transverse adjusting sliding blocks are correspondingly arranged in the pair of transverse adjusting rails in a sliding manner;
the pair of vertical adjusting rails are symmetrically arranged on one surface, far away from the inner wall of the control cabinet main body, of the transverse adjusting rails and are correspondingly connected with the two pairs of transverse adjusting sliders, and the vertical adjusting sliders used for being connected with the wiring installation parts are arranged in the vertical adjusting rails in a sliding mode.
In a further embodiment, the fixed adjustment component further comprises a first screw hole, a first screw, a second screw hole, and a second screw;
the first screw holes are correspondingly formed in the transverse adjusting rail and the control cabinet main body, first screws for fixing the transverse adjusting rail and the control cabinet main body are connected with the first screw holes in an internal thread mode, and the transverse adjusting rail and the control cabinet main body can be conveniently disassembled and assembled through the first screw holes and the first screws;
a plurality of second screw corresponds to run through and sets up in on vertical regulation rail and the horizontal adjustment slider, second screw female connection has the second screw that is used for fixed vertical regulation rail, horizontal adjustment slider and horizontal regulation rail, and the dismouting of vertical regulation rail, horizontal adjustment slider and horizontal regulation rail of being convenient for is set up through the screw thread of second screw and second screw.
In a further embodiment, the wiring mounting component comprises a mounting bracket, a third screw hole, a third screw, a longitudinal wiring rail, a fourth screw hole and a fourth screw;
the mounting frame is arranged between the two groups of fixing and adjusting components, a plurality of third screw holes are correspondingly formed in the mounting frame and the vertical adjusting slide block in a penetrating mode, third screws for fixing the mounting frame, the vertical adjusting slide block and the vertical adjusting rail are connected with the third screw holes in an inner thread mode, and the mounting frame, the vertical adjusting slide block and the vertical adjusting rail can be conveniently disassembled and assembled through the third screw holes and the third screws;
a pair of vertical wiring rail, correspond install in the mounting bracket for connect the second wiring part, vertical wiring rail corresponds on with the mounting bracket and has seted up a plurality of fourth screws, fourth screw female connection has the fourth screw that is used for fixed vertical wiring rail and mounting bracket, and a pair of vertical wiring rail is about the axis symmetry setting of mounting bracket, and the dismouting of vertical wiring rail of being convenient for and mounting bracket is set up through the screw thread of fourth screw and fourth screw.
In a further embodiment, the first wiring part comprises a wiring rack, a wiring slider, a sixth screw hole, a sixth screw and a wiring groove;
the wiring rack is arranged in the wiring installation part, and two ends of the wiring rack are provided with wiring sliding blocks matched with the longitudinal wiring rails and used for slidably installing the wiring rack between the pair of longitudinal wiring rails;
the pair of sixth screw holes correspondingly penetrate through the wiring rack and the wiring sliding block, sixth screws for fixing the wiring rack, the wiring sliding block and the longitudinal wiring rail are connected with the sixth screw holes in an internal thread mode, and the wiring rack, the wiring sliding block and the longitudinal wiring rail can be conveniently disassembled and assembled through the thread arrangement of the sixth screw holes and the sixth screws;
the wiring groove is seted up in on the wiring frame for carry out the chucking to first predetermined dimension connecting wire, during the use, first predetermined dimension connecting wire can utilize the wiring groove on a pair of adjacent wiring frame to carry out the chucking, and the size of here mainly indicates the diameter of single connecting wire, if a plurality of connecting wires twine together, then regards as the circumscribed circle diameter after the winding.
In a further embodiment, the first wiring member further includes a pair of connection plates, a connection spring, a seventh screw hole, and a seventh screw;
the pair of connecting plates are symmetrically arranged at two ends of the wiring slider, two seventh screw holes are correspondingly formed in the connecting plates and the wiring slider, seventh screws for fixing the connecting plates and the wiring slider are connected in the seventh screw holes in an internal thread mode, the pair of connecting plates are symmetrically arranged on the wiring slider along the sliding direction of the wiring slider, and the seventh screw holes and the seventh screws are arranged to facilitate the disassembly and assembly of the connecting plates and the wiring slider;
and the connecting spring is connected to the connecting plate and used for connecting two adjacent wiring racks and matching the two adjacent wiring racks to clamp and fix the connecting wire.
In a further embodiment, the first wiring member further comprises a wire clamping adjusting rail, an eighth screw hole, an eighth screw and a locking groove;
the pair of wire clamping adjusting rails are symmetrically arranged in the wiring rack and used for being connected with a second wiring part, a plurality of eighth screw holes are correspondingly formed in the wire clamping adjusting rails and the wiring rack, eighth screws for fixing the wire clamping adjusting rails and the wiring rack are connected with the eighth screw holes in an internal thread mode, and the wire clamping adjusting rails and the wiring rack can be conveniently disassembled and assembled through the screw thread arrangement of the eighth screw holes and the eighth screws;
and the locking groove is formed in the wiring frame and used for fixing the second wiring component.
In a further embodiment, the second wiring part comprises a first snap ring, a wire clamping slide block, a locking hole, a locking nail, a mounting groove, a mounting plate and a first compression spring;
the pair of first clamping rings are arranged in the first wiring component and used for clamping the connecting wire with a second preset size, and wire clamping slide blocks matched with the wire clamping adjusting rails are arranged on the surfaces, far away from each other, of the pair of first clamping rings;
the locking hole is formed in the wire clamping sliding block, and a locking nail matched with the locking groove and used for fixing the wire clamping sliding block and the wiring frame is connected to the inner thread of the wire clamping sliding block;
the pair of mounting grooves are formed in the wire clamping sliding block, the mounting plate is mounted in the mounting groove, a plurality of first compression springs are connected between the mounting plate and the first clamping ring, and the first compression springs are matched with the first clamping ring to clamp and fix the connecting wire.
In a further embodiment, the second wiring part further includes a mounting hole, a mounting bolt, a receiving block, a second pressing spring, a receiving groove, a second snap ring, and a third pressing spring;
the pair of mounting holes are correspondingly formed in the mounting plate and the wire clamping slide block, and mounting bolts for fixing the mounting plate and the wire clamping slide block are inserted into the mounting holes so as to facilitate the mounting and dismounting of the mounting plate and the wire clamping slide block;
the accommodating block is connected to one surface, close to the mounting plate, of the first clamping ring, a second compression spring is connected between the accommodating block and the mounting plate, and the second compression spring can be matched with the first compression spring to enable the first clamping ring to clamp and fix the connecting wire;
the accommodating groove is correspondingly formed in the accommodating block and the first clamping ring, one side, away from the mounting plate, of the first clamping ring is provided with a second clamping ring which is matched with the accommodating groove and used for clamping a third connecting wire with a preset size, and a third compression spring is connected between the second clamping ring and the inner wall of the accommodating groove.
A wiring method of a wiring mechanism for an information system integrated control cabinet comprises the following steps:
s1, according to the condition of the connecting wire, installing the corresponding first wiring component and second wiring component in the wiring installation component, and installing the fixed adjustment component and the wiring installation component in the control cabinet main body;
s2, moving the wiring rack to drive the wiring sliding block to slide in the longitudinal wiring rail, adjusting the position of the wiring rack to correspond to the position of the first preset-size connecting wire, and clamping the first preset-size connecting wire by utilizing the matching of a wiring groove between a pair of adjacent wiring racks and a connecting spring;
s3, moving the pair of first clamping rings to drive the wire clamping slide block to slide in the wire clamping adjusting rail, adjusting the pair of first clamping rings to clamp the connecting wire with the second preset size, and screwing the locking nail into the locking hole to fix the wire clamping slide block in the wire clamping adjusting rail;
and S4, moving the pair of first clamping rings to drive the wire clamping slide block to slide in the wire clamping adjusting rail, and adjusting the pair of second clamping rings to clamp the connecting wire with the third preset size.
Has the advantages that: the invention relates to a wiring mechanism for an information system integrated control cabinet and a wiring method thereof.
Drawings
Fig. 1 is a perspective view of the overall structure of the present invention.
Fig. 2 is a perspective view of the control cabinet body of the present invention.
Fig. 3 is a perspective view showing a partial structure of a fixed adjusting part according to the present invention.
Fig. 4 is an exploded view of a part of the structure of the fixed regulating member of the present invention.
Fig. 5 is a perspective view of the wiring mounting part, the first wiring part and the second wiring part of the present invention.
Fig. 6 is a perspective view of the wiring mounting part of the present invention.
Fig. 7 is an exploded view of a part of the structure of the wiring installation member of the present invention.
Fig. 8 is a perspective view of two first wiring members of the present invention.
Fig. 9 is a partial enlarged view of a portion a in fig. 8.
Fig. 10 is an exploded view of the first wiring member of the present invention.
Fig. 11 is a perspective view of two second wiring members of the present invention.
Fig. 12 is an exploded view of two second wiring parts of the present invention.
Fig. 13 is a diagram showing the effect of the present invention.
The figures are numbered: 1. the control cabinet comprises a control cabinet main body, a fixed adjusting component, a 201 horizontal adjusting rail, a 202 first screw hole, a 203 first screw, a 204 horizontal adjusting slide block, a 205 vertical adjusting rail, a 206 second screw hole, a 207 second screw, a 208 vertical adjusting slide block, a 3 wiring installation component, a 301 mounting frame, a 302 third screw hole, a 303 third screw, a 304 longitudinal wiring rail, a 305 fourth screw hole, a 306 fourth screw, a 307 fifth screw hole, a 4 first wiring component, a 401 wiring frame, a 402 wiring slide block, a 403 sixth screw hole, a 404 sixth screw, a 405 connecting plate, a 406 connecting spring, a 407 seventh screw hole, a 408 seventh screw, a 409 wiring groove, a 410 wiring clamping adjusting rail, a 411 eighth screw hole, a 412 eighth screw, a 413 locking groove, a 5 second wiring component, a 501 first clamping ring, a 502 clamping slide block, a clamping wire slide block, 503. The locking device comprises locking holes, 504, locking nails, 505, mounting grooves, 506, mounting plates, 507, mounting holes, 508, mounting bolts, 509, a first compression spring, 510, a receiving block, 511, a second compression spring, 512, a receiving groove, 513, a second snap ring, 514 and a third compression spring.
Detailed Description
In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. It will be apparent, however, to one skilled in the art, that the present invention may be practiced without one or more of these specific details. In other instances, well-known features have not been described in order to avoid obscuring the invention.
As shown in fig. 1-13, the invention discloses a wiring mechanism for an information system integrated control cabinet and a wiring method thereof. The wiring mechanism for the information system integrated control cabinet comprises a control cabinet main body 1, a fixed adjusting component 2, a wiring installation component 3, a first wiring component 4 and a second wiring component 5.
Specifically, two sets of fixed adjusting parts 2 are symmetrically installed in the control cabinet main body 1, a plurality of wiring installation parts 3 are installed between the two sets of fixed adjusting parts 2, a plurality of first wiring parts 4 for wiring are installed in the wiring installation parts 3, and a plurality of second wiring parts 5 for matching with the first wiring parts 4 for wiring are arranged in the first wiring parts 4.
As shown in fig. 1 to 4, the fixed adjusting part 2 includes a lateral adjusting rail 201, a lateral adjusting slider 204, a vertical adjusting rail 205, and a vertical adjusting slider 208.
Wherein, a pair of horizontal adjusting rail 201 is installed in switch board main part 1 symmetrically, and a pair of horizontal adjusting rail 201 sets up about the axis symmetry of switch board main part 1.
Two pairs of transverse adjusting sliding blocks 204 are correspondingly arranged in the pair of transverse adjusting rails 201 in a sliding manner.
A pair of vertical adjusting rails 205 are symmetrically arranged on one surface of the pair of transverse adjusting rails 201 far away from the inner wall of the control cabinet main body 1 and correspondingly connected with the two pairs of transverse adjusting sliders 204, and vertical adjusting sliders 208 used for connecting the wiring installation components 3 are slidably arranged in the vertical adjusting rails 205.
In the application, two groups of fixed adjusting components 2 are provided, the two groups of fixed adjusting components 2 are symmetrically arranged about the central axis of the control cabinet main body 1, each group of fixed adjusting components 2 comprises at least one transverse adjusting rail 201 and one vertical adjusting rail 205, and is used for connecting the control cabinet main body 1 and the wiring installation component 3, the vertical adjusting rail 205 can move on the transverse adjusting rail 201 through a transverse adjusting slider 204, the wiring installation component 3 can move on the vertical adjusting rail 205 through a vertical adjusting slider 208, the position of the wiring installation component 3 on the vertical adjusting rail 205 can be adjusted, so that the positions of the wiring installation component 3 and a connecting wire can be adjusted, the first wiring component 4 and the second wiring component 5 can clamp and wire the connecting wire, meanwhile, the vertical adjusting rail 205 can move on the transverse adjusting rail 201 through the transverse adjusting slider 204, the wiring installation components 3 with different sizes can be installed in an adaptive manner, the position of the connecting line is convenient to adapt.
As shown in fig. 3 to 4, the fixing-adjusting member 2 further includes a first screw hole 202, a first screw 203, a second screw hole 206, and a second screw 207.
Wherein, a plurality of first screw 202 are opened on horizontal regulation rail 201 and switch board main part 1 correspondingly, and first screw 202 female connection has the first screw 203 that is used for fixed horizontal regulation rail 201 and switch board main part 1, and the dismouting of horizontal regulation rail 201 and switch board main part 1 of being convenient for through the screw thread setting of first screw 202 and first screw 203.
A plurality of second screw holes 206 correspondingly penetrate through the vertical adjusting rail 205 and the horizontal adjusting slide block 204, second screws 207 for fixing the vertical adjusting rail 205, the horizontal adjusting slide block 204 and the horizontal adjusting rail 201 are connected with the second screw holes 206 in an internal thread mode, and the vertical adjusting rail 205, the horizontal adjusting slide block 204 and the horizontal adjusting rail 201 can be conveniently disassembled and assembled through the second screw holes 206 and the second screws 207.
When the cable routing and mounting device is used, the vertical adjusting rail 205, the transverse adjusting slider 204 and the transverse adjusting rail 201 can be fixed by screwing the second screw 207, and the transverse adjusting slider 204 can move on the transverse adjusting rail 201 by loosening the second screw 207, so that the vertical adjusting rail 205 can be matched with the cable routing and mounting components 3 with different sizes.
As shown in fig. 1 to 7, the wiring mounting part 3 includes a mounting bracket 301, a third screw hole 302, a third screw 303, a longitudinal wiring rail 304, a fourth screw hole 305, and a fourth screw 306.
Wherein, the mounting bracket 301 sets up between two sets of fixed adjustment parts 2, correspond on mounting bracket 301 and the vertical adjusting block 208 and run through and seted up a plurality of third screw 302, third screw 302 female connection has the third screw 303 that is used for fixed mounting bracket 301, vertical adjusting block 208 and vertical adjusting rail 205, the dismouting of mounting bracket 301, vertical adjusting block 208 and vertical adjusting rail 205 of being convenient for is set up through the screw of third screw 302 and third screw 303.
When the control cabinet main body 1 is used, the mounting frame 301, the vertical adjusting slide block 208 and the vertical adjusting rail 205 can be fixed by screwing the third screw 303, the vertical adjusting slide block 208 can move on the vertical adjusting rail 205 by loosening the third screw 303, the position of the mounting frame 301 can be adjusted, the positions of the wiring mounting component 3 and the connecting wires can be adjusted, the first wiring component 4 and the second wiring component 5 can conveniently clamp and wire the connecting wires, and the application range of the control cabinet main body 1 is enlarged.
In addition, there are differences in the installation position, quantity, etc. of equipment in different switch board main parts 1, in order to adapt to this kind of difference, the wiring layer board that needs to select suitable size and quantity is installed in switch board main part 1 for current switch board main part 1 lacks the commonality, and wiring installation component 3 can cooperate fixed adjusting part 2 to carry out position control in this application, thereby the different switch board main parts 1 of adaptation realize "a cabinet is multi-purpose" function, and wiring installation component 3 is equipped with multiple size, can further increase the application scope of switch board main part 1.
A pair of longitudinal wiring rails 304 are correspondingly installed in the installation frame 301 and used for connecting the second wiring member 5, a plurality of fourth screw holes 305 are correspondingly formed in the longitudinal wiring rails 304 and the installation frame 301, and fourth screws 306 used for fixing the longitudinal wiring rails 304 and the installation frame 301 are connected in the fourth screw holes 305 in an internal thread mode.
A pair of vertical wiring rail 304 sets up about the axis symmetry of mounting bracket 301, and the dismouting of vertical wiring rail 304 and mounting bracket 301 of being convenient for is set up through the screw of fourth screw 305 and fourth screw 306, and simultaneously, still the symmetry has seted up a plurality of fifth screw 307 in the mounting bracket 301, can be used to fix and change the position of vertical wiring rail 304 to the connecting wire of the different positions of adaptation.
As shown in fig. 1 to 10, the first wiring member 4 includes a wiring rack 401, a wiring slider 402, a sixth screw hole 403, a sixth screw 404, and a wiring groove 409.
The wiring rack 401 is disposed in the wiring installation component 3, and the two ends of the wiring rack 401 are provided with the wiring sliders 402 adapted to the longitudinal wiring rails 304, so that the wiring rack 401 is slidably mounted between the pair of longitudinal wiring rails 304.
The pair of sixth screw holes 403 are correspondingly formed in the wiring rack 401 and the wiring slider 402 in a penetrating manner, sixth screws 404 for fixing the wiring rack 401, the wiring slider 402 and the longitudinal wiring rail 304 are connected to the sixth screw holes 403 in an internal thread manner, and the wiring rack 401, the wiring slider 402 and the longitudinal wiring rail 304 are conveniently detached through the thread arrangement of the sixth screw holes 403 and the sixth screws 404.
During the use, the sixth screw 404 of screwing can be fixed wiring frame 401, wiring slider 402 and vertical wiring rail 304, loosens sixth screw 404 and can make wiring slider 402 remove on vertical wiring rail 304, can adjust wiring frame 401's position, and it is fixed to be convenient for a pair of adjacent wiring frame 401 carries out the chucking to the connecting wire, increases switch board main part 1's application scope simultaneously, can the different connecting wires of adaptation position.
The wiring groove 409 is opened on the wiring rack 401 for clamping the connection wires of the first predetermined size.
In use, a first predetermined size of the connecting wire may be secured by the wire slot 409 of a pair of adjacent wire holders 401, where the size is primarily the diameter of a single connecting wire, and if multiple connecting wires are twisted together, the diameter is considered to be the diameter of the twisted circumscribed circle.
As shown in fig. 8 to 10, the first wiring member 4 further includes a pair of connection plates 405, a connection spring 406, a seventh screw hole 407, and a seventh screw 408.
The pair of connecting plates 405 are symmetrically arranged at two ends of the wiring slider 402, two seventh screw holes 407 are correspondingly formed in the connecting plates 405 and the wiring slider 402, and seventh screws 408 for fixing the connecting plates 405 and the wiring slider 402 are connected to the seventh screw holes 407 through internal threads.
The pair of connection plates 405 are symmetrically provided on the wiring slider 402 in the sliding direction of the wiring slider 402, and the connection plates 405 and the wiring slider 402 are easily attached to and detached from each other by the screw arrangement of the seventh screw hole 407 and the seventh screw 408.
The connecting spring 406 is connected to the connecting plate 405, and is used for connecting two adjacent wiring racks 401 and clamping and fixing the connecting wire by matching two adjacent wiring racks 401.
When the application uses, if install a plurality of wiring frame 401, can utilize one of them wiring frame 401 to fix with vertical wiring rail 304 after adjusting the position, all the other wiring frame 401 alright utilize coupling spring 406 relatively fixed, after the connecting wire passed the wiring groove 409 on two adjacent wiring frames 401, two adjacent wiring frames 401 alright utilize coupling spring 406 to carry out elasticity to the connecting wire and compress tightly fixedly, thereby be convenient for the first predetermined dimension of adaptation, the great connecting wire of size promptly.
Meanwhile, if the connecting lines are distributed in a scattered manner, a plurality of wiring racks 401 can be fixed to the longitudinal wiring rails 304, two adjacent wiring racks 401 which are far away from each other can be connected without the connecting springs 406, and the mounting and fixing can be selected according to specific conditions during actual use.
As shown in fig. 8 to 10, the first wiring member 4 further includes a wire-clamping adjustment rail 410, an eighth screw hole 411, an eighth screw 412, and a locking groove 413.
The pair of wire clamping adjusting rails 410 are symmetrically installed in the wiring rack 401 and used for being connected with the second wiring component 5, a plurality of eighth screw holes 411 are correspondingly formed in the wire clamping adjusting rails 410 and the wiring rack 401, eighth screws 412 used for fixing the wire clamping adjusting rails 410 and the wiring rack 401 are connected with the eighth screw holes 411 in an internal thread mode, and the wire clamping adjusting rails 410 and the wiring rack 401 can be conveniently dismounted through the screw threads of the eighth screw holes 411 and the eighth screws 412.
The locking groove 413 is opened in the wiring frame 401 and fixes the second wiring member 5.
As shown in fig. 1 to 12, the second wiring member 5 includes a first snap ring 501, a wire-clamping slider 502, a locking hole 503, a locking pin 504, a mounting groove 505, a mounting plate 506, and a first pressing spring 509.
Wherein, a pair of first snap rings 501 are arranged in the first wiring component 4 for clamping the connecting wire with the second predetermined size, and the surfaces of the first snap rings 501 far away from each other are provided with wire clamping sliders 502 adapted to the wire clamping adjusting rails 410, wherein the connecting wire with the second predetermined size, i.e. the connecting wire with the moderate size, is provided.
The first clamping ring 501 can be driven to move by moving the wire clamping sliding block 502 on the wire clamping adjusting rail 410, so that the first clamping ring 501 is adaptive to the positions of different connecting wires, and the pair of first clamping rings 501 can clamp and fix the connecting wires with the second preset size or larger.
The locking hole 503 is opened on the wire clamping slider 502, and the inner thread of the wire clamping slider 502 is connected with a locking pin 504 which is matched with the locking groove 413 and used for fixing the wire clamping slider 502 and the wiring rack 401.
After the first snap ring 501 corresponds to the connection line, the locking pin 504 passes through the locking groove 413 and is screwed into the locking hole 503, so that the line clamping slider 502 can be fixed on the line clamping adjustment rail 410, and after the locking pin 504 is loosened, the line clamping slider 502 can move on the line clamping adjustment rail 410, so that the position of the first snap ring 501 can be adjusted, and the position of the first snap ring 501 corresponds to the position of the connection line.
A pair of mounting grooves 505 is opened on card line slider 502, installs mounting panel 506 in the mounting groove 505, is connected with a plurality of first pressure spring 509 between mounting panel 506 and the first snap ring 501, and first pressure spring 509 cooperates first snap ring 501 to carry out the chucking fixedly to the connecting wire.
As shown in fig. 1 to 13, the second wiring member 5 further includes a mounting hole 507, a mounting pin 508, a receiving block 510, a second pressing spring 511, a receiving groove 512, a second snap ring 513, and a third pressing spring 514.
Wherein, a pair of mounting holes 507 are correspondingly arranged on the mounting plate 506 and the wire clamping slide block 502, and mounting bolts 508 for fixing the mounting plate 506 and the wire clamping slide block 502 are inserted into the mounting holes 507, so that the mounting plate 506 and the wire clamping slide block 502 can be conveniently disassembled.
The accommodating block 510 is connected to one surface of the first snap ring 501 close to the mounting plate 506, a second compression spring 511 is connected between the accommodating block 510 and the mounting plate 506, and the second compression spring 511 can cooperate with the first compression spring 509 to enable the first snap ring 501 to clamp and fix the connecting line.
The accommodating groove 512 is correspondingly formed in the accommodating block 510 and the first snap ring 501, a second snap ring 513 which is matched with the accommodating groove 512 and used for clamping a connecting line with a third preset size is arranged on one side, away from the mounting plate 506, of the first snap ring 501, wherein the connecting line with the third preset size, namely the connecting line with the smaller size, is connected with a third compression spring 514 between the second snap ring 513 and the inner wall of the accommodating groove 512.
In practical use, the connecting spring 406 with different elastic coefficients, the first snap ring 501 with different inner diameters and the second snap ring 513 with different inner diameters can be selected, and the ranges of the first predetermined size, the second predetermined size and the third predetermined size can be adjusted to adapt to connecting wires with different sizes.
Meanwhile, in the present application, the first predetermined size is greater than or equal to the second predetermined size, and the second predetermined size is greater than or equal to the third predetermined size, for example: when the three are equal, the three can be matched together to compress and fix the connecting wire, when the first predetermined size is larger than the second predetermined size and the second predetermined size is larger than the third predetermined size, the pair of adjacent wiring racks 401 can clamp and fix the connecting wire with the first predetermined size, the pair of corresponding first clamping rings 501 can clamp and fix the connecting wire with the second predetermined size, the pair of corresponding second clamping rings 513 can clamp and fix the connecting wire with the third predetermined size, and the like.
Through coupling spring 406, the setting of first snap ring 501 and second snap ring 513 can carry out the chucking to not unidimensional connecting wire fixed, the wiring of being convenient for, simultaneously can separately fix a plurality of connecting wires, the person of being convenient for finds the connecting wire that needs the very first time, the connecting wire of being convenient for simultaneously dispels the heat when using etc. also can avoid the connecting wire to receive the extrusion and take place to damage, the normal use of protection connecting wire, the connecting wire that also can guarantee different thicknesses can both be fixed, avoid the connecting wire to rock and connect not hard up, the normal connection and the use of protective apparatus.
Based on the technical scheme, the specific working process of the invention is as follows: according to the situation of the connecting wires, the corresponding first wiring parts 4 and second wiring parts 5 are installed in the wiring installation part 3, wherein the situation includes the number, size, position and the like of the connecting wires, the corresponding number and size of the second wiring parts 5 are installed in the first wiring parts 4, the corresponding number of the first wiring parts 4 are installed in the wiring installation part 3, the wiring installation part 3 is installed on the fixed adjusting part 2 at the corresponding position, and the fixed adjusting part 2 is installed in the control cabinet main body 1.
Then, the wiring rack 401 is moved to drive the wiring sliding block 402 to slide in the longitudinal wiring rail 304, the position of the wiring rack 401 is adjusted to correspond to the position of the first preset-size connecting line, the wiring groove 409 between a pair of adjacent wiring racks 401 is matched with the connecting spring 406 to clamp the first preset-size connecting line, the first clamping ring 501 is moved to drive the wire clamping sliding block 502 to slide in the wire clamping adjusting rail 410, the first clamping ring 501 is adjusted to clamp the second preset-size connecting line, the locking pin 504 is screwed into the locking hole 503 to fix the wire clamping sliding block 502 in the wire clamping adjusting rail 410, meanwhile, the first clamping ring 501 is moved to drive the wire clamping sliding block 502 to slide in the wire clamping adjusting rail 410, and the second clamping ring 513 is adjusted to clamp the third preset-size connecting line.
As above, while the invention has been shown and described with reference to certain preferred embodiments, it is not to be construed as limited thereto. Various changes in form and detail may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. The utility model provides an information system integrated control is wiring mechanism for cabinet which characterized in that includes:
a control cabinet main body;
two sets of fixed adjusting parts, the symmetry install in the switch board main part, two sets of install a plurality of wiring installation parts between the fixed adjusting part, install a plurality of first wiring parts that are used for the wiring in the wiring installation part, be provided with a plurality of second wiring parts that are used for cooperating first wiring part to lay wire in the first wiring part.
2. The wiring mechanism for the information system integrated control cabinet according to claim 1, wherein: the fixed regulating member includes:
the pair of transverse adjusting rails are symmetrically arranged in the control cabinet main body;
the two pairs of transverse adjusting sliding blocks are correspondingly arranged in the pair of transverse adjusting rails in a sliding manner;
the pair of vertical adjusting rails are symmetrically arranged on one surface, far away from the inner wall of the control cabinet main body, of the transverse adjusting rails and are correspondingly connected with the two pairs of transverse adjusting sliders, and the vertical adjusting sliders used for being connected with the wiring installation parts are arranged in the vertical adjusting rails in a sliding mode.
3. The wiring mechanism for the information system integrated control cabinet according to claim 2, wherein: the fixed adjustment member further includes:
the first screw holes are correspondingly formed in the transverse adjusting rail and the control cabinet main body, and first screws for fixing the transverse adjusting rail and the control cabinet main body are connected with the first screw holes in an internal thread mode;
and the second screw holes are correspondingly penetrated and arranged on the vertical adjusting rail and the transverse adjusting slide block, and second screws for fixing the vertical adjusting rail, the transverse adjusting slide block and the transverse adjusting rail are connected with the second screw holes in an internal thread mode.
4. The wiring mechanism for the information system integrated control cabinet according to claim 1, wherein: the wiring installation component comprises:
the mounting frame is arranged between the two groups of fixing and adjusting components, a plurality of third screw holes are correspondingly formed in the mounting frame and the vertical adjusting slide block in a penetrating mode, and third screws for fixing the mounting frame, the vertical adjusting slide block and the vertical adjusting rail are connected with the third screw holes in an internal thread mode;
and the pair of longitudinal wiring rails are correspondingly installed in the mounting frame and used for connecting a second wiring component, a plurality of fourth screw holes are correspondingly formed in the longitudinal wiring rails and the mounting frame, and fourth screws for fixing the longitudinal wiring rails and the mounting frame are connected with the fourth screw holes in an internal thread manner.
5. The wiring mechanism for the information system integrated control cabinet according to claim 1, wherein: the first wiring member includes:
the wiring rack is arranged in the wiring installation part, and two ends of the wiring rack are provided with wiring sliding blocks matched with the longitudinal wiring rails and used for slidably installing the wiring rack between the pair of longitudinal wiring rails;
the pair of sixth screw holes correspondingly penetrate through the wiring rack and the wiring sliding block, and sixth screws for fixing the wiring rack, the wiring sliding block and the longitudinal wiring rail are connected with the sixth screw holes in an internal thread manner;
and the wiring groove is formed in the wiring frame and used for clamping the first preset-size connecting wire.
6. The wiring mechanism for the information system integrated control cabinet according to claim 5, wherein: the first wiring member further includes:
the pair of connecting plates are symmetrically arranged at two ends of the wiring sliding block, two seventh screw holes are correspondingly formed in the connecting plates and the wiring sliding block, and seventh screws for fixing the connecting plates and the wiring sliding block are connected in the seventh screw holes in an internal thread mode;
and the connecting spring is connected to the connecting plate and used for connecting two adjacent wiring racks and matching the two adjacent wiring racks to clamp and fix the connecting wire.
7. The wiring mechanism for the information system integrated control cabinet according to claim 5, wherein: the first wiring member further includes:
the pair of wire clamping adjusting rails are symmetrically arranged in the wiring rack and used for being connected with a second wiring part, a plurality of eighth screw holes are correspondingly formed in the wire clamping adjusting rails and the wiring rack, and eighth screws used for fixing the wire clamping adjusting rails and the wiring rack are connected with the eighth screw holes in an internal thread mode;
and the locking groove is formed in the wiring frame and used for fixing the second wiring component.
8. The wiring mechanism for the information system integrated control cabinet according to claim 1, wherein: the second wiring member includes:
the pair of first clamping rings are arranged in the first wiring component and used for clamping a connecting wire with a second preset size, and wire clamping sliding blocks matched with the wire clamping adjusting rails are arranged on the surfaces, far away from each other, of the pair of first clamping rings;
the locking hole is formed in the wire clamping sliding block, and a locking nail matched with the locking groove and used for fixing the wire clamping sliding block and the wiring frame is connected to the inner thread of the wire clamping sliding block;
the clamping line sliding block is provided with a plurality of first clamping rings, the clamping line sliding block is provided with a pair of mounting grooves, the mounting grooves are internally provided with mounting plates, and a plurality of first compression springs are connected between the mounting plates and the first clamping rings.
9. The wiring mechanism for the information system integrated control cabinet according to claim 8, wherein: the second wiring member further includes:
the pair of mounting holes are correspondingly formed in the mounting plate and the wire clamping sliding block, and mounting bolts for fixing the mounting plate and the wire clamping sliding block are inserted in the mounting holes;
the accommodating block is connected to one surface, close to the mounting plate, of the first clamping ring, and a second compression spring is connected between the accommodating block and the mounting plate;
the accommodating groove is correspondingly formed in the accommodating block and the first clamping ring, one side, away from the mounting plate, of the first clamping ring is provided with a second clamping ring which is matched with the accommodating groove and used for clamping a third connecting wire with a preset size, and a third compression spring is connected between the second clamping ring and the inner wall of the accommodating groove.
10. A wiring method of a wiring mechanism for an information system integrated control cabinet is characterized by comprising the following steps:
s1, according to the condition of the connecting wire, installing the corresponding first wiring component and second wiring component in the wiring installation component, and installing the fixed adjustment component and the wiring installation component in the control cabinet main body;
s2, moving the wiring rack to drive the wiring slider to slide in the longitudinal wiring rail, adjusting the position of the wiring rack to correspond to the position of the first connecting wire with the preset size, and clamping the first connecting wire with the preset size by utilizing the matching of a wiring groove between a pair of adjacent wiring racks and a connecting spring;
s3, moving the pair of first clamping rings to drive the wire clamping slide block to slide in the wire clamping adjusting rail, adjusting the pair of first clamping rings to clamp the connecting wire with the second preset size, and screwing the locking nail into the locking hole to fix the wire clamping slide block in the wire clamping adjusting rail;
and S4, moving the pair of first clamping rings to drive the wire clamping slide block to slide in the wire clamping adjusting rail, and adjusting the pair of second clamping rings to clamp the connecting wire with the third preset size.
CN202210296493.2A 2022-03-24 2022-03-24 Wiring mechanism for information system integrated control cabinet and wiring method thereof Active CN114667016B (en)

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