Welding wiring type power distribution cabinet and power distribution cabinet wiring method
By linking the fixing and cable management components within the welding wire frame, the problem of cable fixing and management in welding-type distribution cabinets is solved, achieving stable welding and automated cleaning of cables, thus improving welding efficiency and the service life of the distribution cabinet.
Patent Information
- Application Number
- CN202511224288.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2025-11-28
AI Technical Summary
Existing welded wiring type distribution cabinets make it difficult to effectively fix the cable terminals before welding, resulting in messy wiring at the welded connection points and easy wiring errors.
The system employs a welding wire clamping frame with fixed and cable management components. By rotating the connecting column, the arc-shaped clamping plate holds the cable. Combined with the linkage design of the wire clamping roller and piston cylinder, the system can fix and manage the cable, automatically adjust the cable position, and clean the welding slag.
It achieves stable cable welding, avoids welding misalignment and scattering, improves welding efficiency, ensures welding accuracy and environmental cleanliness, reduces the intensity of manual cleaning work, and extends the service life of the distribution cabinet.
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Figure CN121035798A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of power distribution cabinet, in particular to a welding wiring type power distribution cabinet and a power distribution cabinet wiring method. BACKGROUND
[0002] The power distribution cabinet is divided into power distribution cabinet, lighting distribution cabinet and metering cabinet, which is the last stage of the power distribution system. The power distribution cabinet is the control center of the motor, which is used in the occasion with dispersed load and less return circuit. The motor control center is used in the occasion with concentrated load and more return circuit. They distribute the power of a circuit of the upper level power distribution device to the nearby load. This stage of device should provide protection, monitoring and control for the load. In most cases, the wiring terminal of the power distribution cabinet needs to be fixed by welding during use to ensure the safety of the overall circuit of the power distribution cabinet. Therefore, the welding wiring type power distribution cabinet is proposed.
[0003] As disclosed in Chinese invention CN108306183B, the welding wiring type power distribution cabinet and the power distribution cabinet wiring method include a cabinet body, the bottom wall of the cabinet body is provided with a plurality of vibration isolation support seats, the cabinet body is provided with a wiring mechanism, the wiring mechanism includes an insulating square shaft and a conductive ring sleeved on the insulating square shaft, adjacent conductive rings are provided with an insulating isolation ring sleeved on the insulating square shaft, the conductive ring is provided with a wiring hole, the both ends of the insulating square shaft are provided with threaded heads, the threaded heads are threadedly connected with clamping nuts, the conductive ring and the insulating isolation ring are clamped together by the clamping nuts located at the both ends of the insulating square shaft, and the insulating square shaft is detachably connected with the cabinet body through the bolt and the nut, thereby solving the problems of poor vibration isolation effect and the inability to replace the wiring terminal independently of the existing power distribution cabinet.
[0004] Such as the above cited document, the welding wiring type power distribution cabinet in the prior art still has the following problems: 1. The welding wiring type power distribution cabinet in the prior art is difficult to effectively fix the cable wiring end before welding wiring, and it is difficult to ensure the stability of the welding process; 2. The welding wiring type power distribution cabinet in the prior art is difficult to comb the line at the welding wiring place, the overall line at the welding wiring place is relatively scattered, and wiring errors are prone to occur, which is not conducive to the welding wiring of the line in the power distribution cabinet. SUMMARY
[0005] The present application aims to provide a welding wiring type power distribution cabinet and a power distribution cabinet wiring method to solve the problems raised in the background art.
[0006] In order to achieve the above object, the present application provides the following technical scheme: a kind of distribution cabinet and distribution cabinet wiring method of welding wiring type, including distribution cabinet main body, the surface of the distribution cabinet main body is provided with cabinet door, the inside of the distribution cabinet main body is fixedly installed with mounting plate, the mounting plate is provided with welding wire frame, the surface of the welding wire frame is provided with cable inlet one, cable inlet two and welding port, the welding wire frame is provided with fixed component for fixing cable before welding wiring in it; The mounting plate is provided with a wire arrangement component, which is in transmission connection with the fixed component, for wire arrangement treatment before welding wiring.
[0007] Preferably, the fixed component includes a support plate fixedly connected to the mounting plate, a rotating shaft is fixedly connected to the surface of the support plate, a connecting column is fixedly connected to the end of the rotating shaft away from the support plate, and a non-slip pattern is provided on the surface of the connecting column.
[0008] Preferably, the fixed component further includes a rotating shaft fixedly connected to the surface of the welding wire frame, a gear is fixedly connected to the surface of the rotating shaft, a limiting groove is formed in the inner wall of the welding wire frame, a connecting rod is slidably connected to the inner wall of the limiting groove, an arc-shaped clamping plate is fixedly connected to one end of the connecting rod, and a gear rack is fixedly connected to the other end of the connecting rod and engaged with the gear. A limiting groove is formed in the inner wall of the welding wire frame, a connecting rod is slidably connected to the inner wall of the limiting groove, an arc-shaped clamping plate is fixedly connected to one end of the connecting rod, and a gear rack is fixedly connected to the other end of the connecting rod and engaged with the gear.
[0009] Preferably, a gear is fixedly connected to the surface of the rotating shaft, a connecting plate is fixedly connected to the end of the rotating shaft extending out of the welding wire frame, a rotating shaft is fixedly connected to the surface of the connecting plate, a gear is fixedly connected to the surface of the rotating shaft and engaged with the gear, and a gear is fixedly connected to the surface of the rotating shaft and engaged with the gear.
[0010] Preferably, the wire arrangement component includes a rotating plate fixedly connected to the surface of the rotating shaft, a rotating shaft is fixedly connected to the surface of the rotating plate, and a wire pressing roller is fixedly connected to the surface of the rotating shaft.
[0011] Preferably, a slot is formed in the surface of the mounting plate, an installation disc is fixedly connected to the inner wall of the slot, a connecting column is fixedly connected to the surface of the installation disc, a gear is fixedly connected to the surface of the connecting column, a gear is fixedly connected to the surface of the rotating shaft and engaged with the gear, and a non-slip pattern is provided on the surface of the connecting column.
[0012] Preferably, the surface of the gear five is fixedly connected with a moving column, the surface of the moving column is slidably connected with a moving frame, and the surface of the moving frame is fixedly connected with a connecting block; The inner wall of the slot is fixedly installed with a piston cylinder, the inner wall of the piston cylinder is slidably connected with a piston plate, the surface of the piston plate is fixedly connected with a piston rod, and the end of the piston rod is fixedly connected with the connecting block.
[0013] Preferably, the surface of the piston cylinder is fixedly connected with an air suction pipe and a cleaning pipe, the surface of the air suction pipe is provided with a one-way valve one, the surface of the cleaning pipe is provided with a one-way valve two, the end of the air suction pipe is provided with a gas collecting cover, and the lower surface of the welding wire pressing frame is provided with a cleaning opening. The mounting plate is detachably connected with a collecting box through the buckle.
[0014] Preferably, the wiring method comprises: S1, cable entry: opening the cabinet door, inserting two cables to be welded into the welding wire pressing frame through the cable entry port one and the cable entry port two respectively; S2, cable fixation: rotating the connecting column one, driving the rack set one to move horizontally and the rack set two to move downward at the same time, moving the arc-shaped clamping plate one through the rack set one, clamping and fixing the cable inserted from the cable entry port two, moving the arc-shaped clamping plate two downward through the rack set two, and clamping and fixing the cable inserted from the cable entry port one; S3, cable arrangement at the wiring position: rotating the connecting column one at the same time, driving the wire pressing roller to deflect to the position of abutting the cable inserted into the welding wire pressing frame from the cable entry port one, and driving the gear six on the surface of the rotating shaft three to deflect to the position of engaging with the gear five, rotating the connecting column two, driving the gear six and the wire pressing roller to rotate synchronously, and driving the bent cable to move away from the welding wire pressing frame under the action of friction until the cable between the wire pressing roller and the welding wire pressing frame is completely straightened; S4, cable welding and wiring: welding and wiring the two cables through the welding port; S5, slag cleaning: rotating the connecting column two again, driving the piston movement in the piston cylinder, and sucking the residual welding slag in the welding wire pressing frame into the collecting box under the action of negative pressure in the piston cylinder.
[0015] Compared with the prior art, the present application has the following advantages: The present application can fix the cable by rotating the connecting column one to drive the arc-shaped clamping plate one and the arc-shaped clamping plate two to clamp the cable inserted into the welding wire pressing frame from different wire inlet ports, solve the problem of welding deviation caused by the cable sliding due to the difficulty in fixing the cable wiring end before welding in the traditional wiring mode, and automatically adjust the wire pressing roller to the position abutting against the cable while fixing the two welding cables by rotating the connecting column one, then drive the wire pressing roller to rotate by rotating the connecting column two, and actively straighten the bent cable near the welding point under the action of friction force, avoid the risk of cross connection caused by the scattered cable, realize the synchronous completion of the cable fixing process and the cable arranging process, and improve the efficiency of the welding wiring in the power distribution cabinet.
[0016] Before welding, the connecting column two is rotated to drive the piston movement in the piston cylinder to actively adsorb the dust, oil stains and other impurities on the surface of the cable, avoid the influence of pollutants on the conductivity and bonding strength of the welding point, ensure the accurate welding of the cable, and then rotate the connecting column two again after the welding is completed, so that the residual welding slag in the welding wire pressing frame can be sucked into the collection box under the action of negative pressure in the piston cylinder, so as to avoid the problem that the welding slag scattered into the main body of the power distribution cabinet causes the short circuit of electrical elements or corrosion of metal parts, realize the automation of the cleaning action through mechanical linkage, reduce the work intensity of manual cleaning, ensure the cleanliness of the welding environment, reduce the failure rate of electrical elements in the main body of the power distribution cabinet, and prolong the service life of the power distribution cabinet. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The isometric view of the structure of the present application; Figure 2 The isometric view of the structure of the present application; Figure 1 The enlarged view of A in the present application; Figure 3 The isometric view of the structure of the present application; Figure 4 The cross-sectional view of the structure of the welding wire pressing frame in the present application; Figure 5 The cross-sectional view of the structure of the welding wire pressing frame in the present application; Figure 6 The cross-sectional view of the structure of the arc-shaped clamping plate one in the present application; Figure 7 The isometric view of the structure of the arc-shaped clamping plate two in the present application; Figure 8 The cross-sectional view of the structure of the arc-shaped clamping plate two in the present application;
[0018] In the figure: 1, power distribution cabinet main body; 2, cabinet door; 3, mounting plate; 4, welding wire pressing frame; 6, connecting column two; 7, gear five; 8, notch; 9, connecting column one; 10, rack two; 11, gear three; 12, rotating rod; 13, gear four; 14, rotating plate; 15, wire pressing roller; 16, gear six; 17, rotating shaft three; 18, rack one; 19, arc-shaped clamping plate one; 20, arc-shaped clamping plate two; 21, limiting groove one; 22, limiting groove two; 23, gas collecting cover; 24, air suction pipe; 25, one-way valve one; 26, one-way valve two; 27, collecting box; 28, cleaning pipe; 29, buckle; 30, piston cylinder; 31, connecting block; 32, piston rod; 33, moving column; 34, moving frame; 35, gear one; 36, rotating shaft one; 37, support plate; 39, piston plate; 40, connecting plate; 41, gear two; 42, connecting rod one; 43, connecting rod two; 45, mounting disc; 401, welding port; 402, cable inlet port one; 403, cable inlet port two. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0020] Embodiment one, please refer to Figures 1-8 The present application provides a technical solution: a welding wiring type power distribution cabinet and a power distribution cabinet wiring method, comprising a power distribution cabinet main body 1, the surface of the power distribution cabinet main body 1 is provided with a cabinet door 2, the inside of the power distribution cabinet main body 1 is fixedly installed with a mounting plate 3, the mounting plate 3 is provided with a welding wire pressing frame 4, the surface of the welding wire pressing frame 4 is provided with a cable inlet port one 402, a cable inlet port two 403 and a welding port 401, and the welding wire pressing frame 4 is provided with a fixing component for fixing the cable before welding wiring; The mounting plate 3 is provided with a wire arranging component, which is in transmission connection with the fixing component, for wire arranging treatment before welding wiring.
[0021] The fixing component comprises a support plate 37 fixedly connected to the mounting plate 3, the surface of the support plate 37 is in axis rotation connection with a rotating rod 12, the end of the rotating rod 12 away from the support plate 37 is fixedly connected with a connecting column one 9, and the surface of the connecting column one 9 is provided with an anti-skid pattern one.
[0022] The fixed part further comprises a rotating shaft 36 fixedly connected to the surface of the welding wire pressing frame 4, the surface of the rotating shaft 36 is fixedly connected with a gear 35, the inner wall of the welding wire pressing frame 4 is provided with a limiting groove 21, the inner wall of the limiting groove 21 is slidably connected with a connecting rod 42, one end of the connecting rod 42 is fixedly connected with an arc-shaped clamping plate 19, and the other end of the connecting rod 42 is fixedly connected with a gear rack row 18 engaged with the gear 35. The inner wall of the welding wire pressing frame 4 is provided with a limiting groove 22, the inner wall of the limiting groove 22 is slidably connected with a connecting rod 43, one end of the connecting rod 43 is fixedly connected with an arc-shaped clamping plate 20, and the other end of the connecting rod 43 is fixedly connected with a gear rack row 10 engaged with the gear 35.
[0023] The surface of the rotating shaft 36 is fixedly connected with a gear 41, the end of the welding wire pressing frame 4 is fixedly connected with a connecting plate 40, the surface of the connecting plate 40 is fixedly connected with a rotating shaft 2, the surface of the rotating shaft 2 is fixedly connected with a gear 11 engaged with the gear 41, and the surface of the rotating rod 12 is fixedly connected with a gear 13 engaged with the gear 11.
[0024] The wire arranging part comprises a rotating plate 14 fixedly connected to the surface of the rotating rod 12, the surface of the rotating plate 14 is fixedly connected with a rotating shaft 3, and the surface of the rotating shaft 3 is fixedly connected with a wire pressing roller 15.
[0025] The surface of the mounting plate 3 is provided with a slot 8, the inner wall of the slot 8 is fixedly connected with a mounting disc 45, the surface of the mounting disc 45 is fixedly connected with a connecting column 6, the surface of the connecting column 6 is fixedly connected with a gear 7, the surface of the rotating shaft 3 is fixedly connected with a gear 16 engaged with the gear 7, and the surface of the connecting column 6 is provided with an anti-skid pattern 2.
[0026] More specifically, in the embodiment, as shown in As shown in Figure 1 And Figure 2 When the welding operation of the power distribution cabinet is performed, the cabinet door 2 is opened, the wire ends of the two cables to be welded are respectively inserted into the welding wire pressing frame 4 through the cable inlet port 402 and the cable inlet port 403, and then the connecting column 1 is rotated, the anti-skid pattern 1 on the surface of the connecting column 1 can increase the friction between the operator's hand and the connecting column 1 to avoid slipping, and the rotating of the connecting column 1 will drive the rotating rod 12 and the gear 13 to rotate synchronously. As shown in Figure 3 With the rotation of the gear 13, the gear 41 and the gear 13 will rotate synchronously and in the same direction under the meshing action of the gear 11 and the gear 41, and the rotation of the gear 41 will drive the rotating shaft 1 to rotate. As shown in Figure 4 ,Figure 5 、 Figure 6 and Figure 7 As shown in FIGS. 1-3, when the rotating shaft 36 rotates, the gear 35 will rotate, and the rack 18 will move horizontally and the rack 10 will move downward. Since the rack 18 and the rack 10 are staggered, they will not contact during movement. With the movement of the rack 18, the arc-shaped clamping plate 19 will move synchronously under the connection of the connecting rod 42, thereby clamping and fixing the cable inserted from the cable inlet 403. Similarly, with the movement of the rack 10, the arc-shaped clamping plate 20 will move downward under the connection of the connecting rod 43, thereby clamping and fixing the cable inserted from the cable inlet 402. After the two cables are fixed, the operator can perform welding and wiring operation on the two cables through the welding port 401. It is worth noting that before the rotating connecting column 9 drives the arc-shaped clamping plate 19 and the arc-shaped clamping plate 20 to fix the two cables for welding and wiring operation, the rotation of the connecting column 9 will also drive the rotating plate 14 to rotate synchronously. With the rotation of the rotating plate 14, the wire pressing roller 15 will be deflected to the position of abutting with the horizontal cable, i.e., the cable inserted from the cable inlet 402 into the welding wire pressing frame 4. At the same time, the gear 16 on the surface of the rotating shaft 17 will be deflected to the position of engaging with the gear 7. Before the cable welding and wiring operation, the operator rotates the connecting column 6 to drive the gear 7 to rotate. Since the gear 16 has been deflected to the position of engaging with the gear 7 at this time, with the rotation of the gear 7, the gear 16 and the wire pressing roller 15 will rotate synchronously. Since the wiring end of the horizontal cable has been fixed by the arc-shaped clamping plate 20, under the friction force between the wire pressing roller 15 and the horizontal cable, the cable between the wire pressing roller 15 and the welding wire pressing frame 4 will move away from the welding wire pressing frame 4 until the cable between the wire pressing roller 15 and the welding wire pressing frame 4 is completely straightened. Thus, the cable arrangement operation before the cable welding and wiring operation is completed, which solves the problem of scattered lines at the welding and wiring position, which easily causes cable misconnection and misconnection. It is worth noting that the vertical cable inserted into the welding wire pressing frame 4 from the cable inlet 403 is not easy to bend at the wiring position due to gravity. Therefore, only the horizontal cable inserted into the welding wire pressing frame 4 from the cable inlet 402 needs to be arranged. In summary, under the meshing effect of the gear 35 and the rack row 18 and the rack row 10, the single-point operation of rotating the connecting column 9 synchronously drives the arc-shaped clamping plate 19 and the arc-shaped clamping plate 20 to clamp the cables inserted from different wire inlet ports, respectively, to form a bidirectional positioning effect, effectively solving the problem of welding deviation caused by the difficulty in effectively fixing the cable wiring end before welding and the easy sliding of the cable in the traditional wiring method; and the cable arrangement component is designed in linkage with the rotating plate 14 and the wire pressing roller 15, which automatically adjusts the deflection position of the wire pressing roller 15 while fixing the two welding cables through the rotating connecting column 9, and through the rotating connecting column 6, the meshing transmission of the gear six 16 and the gear five 7, the bent cable near the welding point is actively straightened and tensioned, avoiding the risk of cross connection caused by scattered cables, and realizing the synchronous completion of the cable fixing process and the cable arrangement process, that is, the two operation steps of fixing and arranging the scattered cables are integrated into a coherent action through mechanical linkage, and the operator only needs to rotate two connecting columns to complete the cable fixing and cable arrangement before cable welding, which greatly simplifies the operation process, improves the efficiency of the power distribution cabinet welding, and is worth popularizing and using.
[0027] In the above embodiment, on the basis of the above embodiment: Further, the surface of the gear five 7 is fixedly connected with a moving column 33, the surface of the moving column 33 is slidably connected with a moving frame 34, and the surface of the moving frame 34 is fixedly connected with a connecting block 31; The inner wall of the slot 8 is fixedly installed with a piston cylinder 30, the inner wall of the piston cylinder 30 is slidably connected with a piston plate 39, the surface of the piston plate 39 is fixedly connected with a piston rod 32, and the end of the piston rod 32 is fixedly connected with the connecting block 31.
[0028] The surface of the piston cylinder 30 is fixedly connected with an air suction pipe 24 and a cleaning pipe 28, the surface of the air suction pipe 24 is provided with a one-way valve 25, the surface of the cleaning pipe 28 is provided with a one-way valve 26, the end of the air suction pipe 24 is provided with a gas collecting cover 23, and the lower surface of the welding wire pressing frame 4 is provided with a cleaning opening; Further, the mounting plate 3 is detachably connected with a collecting box 27 through a buckle 29.
[0029] More specifically, in this embodiment: As Figure 5 And Figure 8As shown, when the cable near the welding point is straightened and arranged by rotating the connecting column two 6 to drive the gear five 7 to rotate, the rotation of the gear five 7 will also drive the moving column 33 to move in a circle. Since the moving frame 34 on the outer surface of the moving column 33 is limited by the connecting block 31 and the piston rod 32 to move only in the horizontal direction, the moving frame 34 will move back and forth in the horizontal direction with the circular motion of the moving column 33, so that the piston rod 32 drives the piston plate 39 to move in the piston cylinder 30, so that the dust and impurities on the surface of the two cables can be sucked into the piston cylinder 30 through the gas cover 23 before the cable welding operation, and then input into the collection box 27 through the cleaning pipe 28, avoiding the influence of dust and impurities on the subsequent cable welding connection, and improving the precision of the welding connection.
[0030] It is worth noting that after the cable welding connection operation is completed, the connecting column two 6 is rotated again, and under the action of the negative pressure in the piston cylinder 30, the residual welding slag in the welding pressure frame 4 can be sucked into the suction pipe 24 through the gas cover 23 and discharged from the cleaning pipe 28 to the collection box 27.
[0031] In summary, when the operator rotates the connecting column two 6, not only can the pressing roller 15 be rotated to arrange the cable, but also the piston cylinder 30 can be driven to move before the welding connection, actively adsorbing dust, oil stains and other impurities on the surface of the cable, avoiding the influence of pollutants on the conductivity and bonding strength of the welding point, ensuring the precise welding of the cable, and after the welding is completed, the connecting column two 6 is rotated again, and under the action of the negative pressure in the piston cylinder 30, the residual welding slag in the welding pressure frame 4 can be sucked into the collection box 27, so as to prevent the welding slag from scattering into the power distribution cabinet main body 1, causing short circuit or corrosion of electrical elements, and seamlessly integrating the cleaning process into the welding operation process, without the need for additional operation steps. Through mechanical linkage, the cleaning action is automated, reducing the work intensity of manual cleaning, ensuring the cleanliness of the welding environment, reducing the failure rate of electrical elements in the power distribution cabinet main body 1, and prolonging the service life of the power distribution cabinet.
[0032] Although embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A welding-wire type distribution cabinet and a wiring method for the distribution cabinet, comprising a distribution cabinet body (1), characterized in that: The main body (1) of the power distribution cabinet is provided with a cabinet door (2). An installation plate (3) is fixedly installed inside the main body (1). A welding wire clamping frame (4) is provided on the installation plate (3). The surface of the welding wire clamping frame (4) is provided with a cable inlet 1 (402), a cable inlet 2 (403) and a welding port (401). A fixing component for fixing the cable before welding is provided inside the welding wire clamping frame (4). The mounting plate (3) is provided with a cable management component, which is connected to the fixing component for cable management before welding.
2. The welding-wire type distribution cabinet and the wiring method of the distribution cabinet according to claim 1, characterized in that, The fixing component includes a support plate (37) fixedly connected to the mounting plate (3). A rotating rod (12) is rotatably connected to the surface of the support plate (37). A connecting column (9) is fixedly connected to the end of the rotating rod (12) away from the support plate (37). The surface of the connecting column (9) is provided with anti-slip texture.
3. The welding-wire type distribution cabinet and the wiring method of the distribution cabinet according to claim 2, characterized in that, The fixing component also includes a rotating shaft (36) that is rotatably connected to the surface of the welding pressure frame (4) on a fixed axis. A gear (35) is fixedly connected to the surface of the rotating shaft (36). A limiting groove (21) is opened on the inner wall of the welding pressure frame (4). A connecting rod (42) is slidably connected to the inner wall of the limiting groove (21). An arc-shaped clamp (19) is fixedly connected to one end of the connecting rod (42). A rack (18) that meshes with the gear (35) is fixedly connected to the other end of the connecting rod (42). The inner wall of the welding pressure frame (4) is provided with a limiting groove (22), and the inner wall of the limiting groove (22) is slidably connected to a connecting rod (43). One end of the connecting rod (43) is fixedly connected to an arc-shaped clamp (20), and the other end of the connecting rod (43) is fixedly connected to a rack (10) that meshes with the gear (35).
4. The welding-wire type distribution cabinet and the wiring method of the distribution cabinet according to claim 3, characterized in that, Gear 2 (41) is fixedly connected to the surface of the rotating shaft 1 (36). The end of the rotating shaft 1 (36) extending out of the welding pressure frame (4) is rotatably connected to the connecting plate (40). The surface of the connecting plate (40) is rotatably connected to the rotating shaft 2. Gear 3 (11) meshing with gear 2 (41) is fixedly connected to the surface of the rotating shaft 2. Gear 4 (13) meshing with gear 3 (11) is fixedly connected to the surface of the rotating rod (12).
5. The welding-wire type distribution cabinet and the wiring method of the distribution cabinet according to claim 2, characterized in that, The cable management component includes a rotating plate (14) fixedly connected to the surface of the rotating rod (12), a rotating shaft three (17) is rotatably connected to the surface of the rotating plate (14), and a pressure roller (15) is fixedly connected to the surface of the rotating shaft three (17).
6. The welding-wire type distribution cabinet and the wiring method of the distribution cabinet according to claim 5, characterized in that, The mounting plate (3) has a slot (8) on its surface. The inner wall of the slot (8) is fixedly connected to a mounting disc (45). The surface of the mounting disc (45) is rotatably connected to a connecting column two (6). The surface of the connecting column two (6) is fixedly connected to a gear five (7). The surface of the rotating shaft three (17) is fixedly connected to a gear six (16) that meshes with the gear five (7). The surface of the connecting column two (6) is provided with anti-slip texture two.
7. The welding-wire type distribution cabinet and the wiring method of the distribution cabinet according to claim 6, characterized in that, A movable column (33) is fixedly connected to the surface of the gear five (7), a movable frame (34) is slidably connected to the surface of the movable column (33), and a connecting block (31) is fixedly connected to the surface of the movable frame (34). A piston cylinder (30) is fixedly installed on the inner wall of the slot (8). A piston plate (39) is slidably connected to the inner wall of the piston cylinder (30). A piston rod (32) is fixedly connected to the surface of the piston plate (39). The end of the piston rod (32) is fixedly connected to the connecting block (31).
8. The welding-wire type distribution cabinet and the wiring method of the distribution cabinet according to claim 7, characterized in that, The piston cylinder (30) is fixedly connected to the suction pipe (24) and the cleaning pipe (28). The surface of the suction pipe (24) is provided with a one-way valve (25), the surface of the cleaning pipe (28) is provided with a one-way valve (26), the end of the suction pipe (24) is provided with a gas gathering cover (23), and the lower surface of the welding pressure frame (4) is provided with a cleaning port. It also includes a fastener (29), and the mounting plate (3) is detachably connected to a collection box (27) via the fastener (29).
9. A welding-wire type distribution cabinet and a wiring method for the distribution cabinet according to claim 8, characterized in that, The wiring method includes: S1, Cable entry: Open the cabinet door (2) and insert the two cables to be welded into the welding wire clamp (4) through cable entry port one (402) and cable entry port two (403) respectively; S2, Cable fixing: Rotate connecting column one (9) to drive rack row one (18) to move laterally and rack row two (10) to move downward. Through rack row one (18), arc clamp plate one (19) moves to clamp and fix the cable inserted from cable inlet two (403). Through rack row two (10), arc clamp plate two (20) moves downward to clamp and fix the cable inserted from cable inlet one (402). S3, Cable management at the connection point: While rotating the connecting post one (9), the pressure roller (15) is driven to deflect to the position where it abuts against the cable inserted into the welding pressure frame (4) from the cable inlet one (402). At the same time, the gear six (16) on the surface of the rotating shaft three (17) is deflected to the position where it meshes with the gear five (7). The connecting post two (6) is rotated, which drives the gear six (16) and the pressure roller (15) to rotate synchronously. Under the action of friction, the bent cable is driven to move away from the welding pressure frame (4) until the cable between the pressure roller (15) and the welding pressure frame (4) is completely straightened. S4, Cable welding connection, the two cables are welded together through the welding port (401); S5, clean the welding slag, rotate the connecting column 2 (6) again, drive the piston in the piston cylinder (30) to move the piston, and under the action of negative pressure in the piston cylinder (30), suck the welding slag remaining in the welding pressure frame (4) into the collection box (27).
Citation Information
Patent Citations
Welded wiring type distribution cabinet and distribution cabinet wiring method
CN108306183B