An inter-cup shorting frame apparatus

The design of the channel steel frame and the control connectors solves the problem of inconvenient installation and maintenance of copper contact assemblies, realizes the overall disassembly and position control of copper contact assemblies, and improves maintenance efficiency and flexibility.

CN116607180BActive Publication Date: 2026-03-20QINGDAO JINLIAN COPPER IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-27
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

The installation and maintenance of copper contact assemblies in existing electrodeposition cell short-circuit frames are inconvenient, and the position adjustment is inflexible, resulting in low disassembly and maintenance efficiency and failing to meet actual working requirements.

Method used

The design employs a channel steel frame, copper busbars, lifting lugs, integrated assembly connectors, and control connectors. The copper contact assembly can be disassembled and its position adjusted by bolt fastening and control connectors. The splicing components improve the convenience of local maintenance.

Benefits of technology

It enables efficient disassembly, replacement, and position adjustment of copper contact assemblies, improving maintenance efficiency and meeting actual work requirements.

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    Figure CN116607180B_ABST
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Abstract

The application relates to the technical field of copper electrolysis devices, in particular to a short-circuit frame device between copper deposition tanks, which comprises a channel steel frame, copper bars, lifting lugs, integral assembly connecting pieces, copper contact assemblies and regulating connecting pieces. The channel steel frame is provided with the copper bars through bolt fastening connection on the inner side, and the outer side walls of the channel steel frame are equidistantly fixed with the lifting lugs. The copper contact assemblies are fixed on the integral assembly connecting pieces through bolts, the integral assembly connecting pieces are connected on the channel steel frame, the integral assembly connecting pieces can be integrally disassembled, the copper contact assembly can improve the work efficiency of disassembly, replacement and maintenance in the later period; in addition, when local multiple copper contact assemblies need to be maintained, the disassembly is also convenient through the setting of the splicing assembly; the position of the copper contact assembly can be regulated through the setting of the regulating connecting pieces, the work flexibility is high, and the actual work demand can be met.
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Description

TECHNICAL FIELD

[0001] The present application relates to copper electrolysis device technical field, specifically to a kind of short-circuit frame device between electrodeposition tank. BACKGROUND

[0002] For the existing patent number CN102127780A Chinese patent document discloses a kind of short-circuit device between electrolysis, electrodeposition tank, it proposes the purpose of more effective use rectifier in the design of copper electrolysis equipment under prior art to achieve energy saving, in design, application, often use multiple tank series into group.For when the output reaches corresponding scale, the anode plate in a group of electrolytic tank, the head and tail will be very different in tank time, when local electrolytic tank needs to be repaired, more need to be powered off for maintenance.Once the power-off time is too long, it will affect the output, also will affect the quality of cathode;Due to power-off, circulating liquid causes more consumption, some pump and other configuration equipment bear more running task, its solution is to set the short-circuit device between electrolysis, electrodeposition tank, including lifting beam 1 and current collecting beam 2, lifting beam 1 and current collecting beam 2 are fixed by bolt connection through connecting plate 7.The lifting beam 1 and current collecting beam 2 form a rectangular frame and constitute a short-circuit device, the lifting beam 1 is provided with a conductive copper bar B9, the current collecting beam 2 is provided with a conductive copper bar A4, the conductive copper bar A4 and the conductive copper bar B9 are connected into a conductor by a copper connecting piece 3;The lifting beam 1 includes the conductive copper bar B9 and the channel steel B10, the channel steel B10 clamps the conductive copper bar B9 into shape by bolt (two channel steels B10 clamp the conductive copper bar B9), the lifting beam 1 is provided with lifting lug 8;The current collecting beam 2 includes the conductive copper bar A4, channel steel A5 and copper contact 6, the channel steel A5 clamps the upper part of the conductive copper bar A4 by bolt (clamped in the middle of two channel steels A5 by bolt), the lower part of the conductive copper bar A4 is connected with the copper contact 6 by bolt;The short-circuit device between electrolysis, electrodeposition tank is installed above the electrolytic tank 11, as a kind of movable hoisting short-circuit bridging device of electrodeposition, electrolytic tank intercurrent;It effectively solves the problem that the anode plate of several electrolytic tanks is out of tank;Or the whole electrolytic tank is powered off due to local electrolytic tank needs to be repaired, resulting in production interruption.

[0003] The above scheme and prior art, for the installation of two rows of copper contacts symmetrically arranged in the short-circuit frame between electrodeposition tank is fixed by screw and nut accessories, and is single installation, in the later use, when the whole needs to be disassembled and maintained or replaced, it is relatively inconvenient, needs to be disassembled and connected one by one, waste more working hours, and when maintenance is good, it also needs to be installed one by one, time-consuming and labor-saving;When local multiple copper contact assemblies need to be maintained, disassembly will also bring many inconveniences;Furthermore, the overall position of copper contact cannot be adjusted adaptively, fixed connection is formed after being connected by screw and bolt, work flexibility is poor, cannot meet the actual work demand, needs to be improved and optimized.

[0004] To this end, the application proposes an electrodeposition cell-to-cell short-circuit frame device to solve the above problems. SUMMARY

[0005] The application aims to provide an electrodeposition cell-to-cell short-circuit frame device to solve the problems raised in the background art.

[0006] To achieve the above-mentioned purpose, the application provides the following technical solution: an electrodeposition cell-to-cell short-circuit frame device, comprising a channel steel frame, a copper bar, a lifting lug, a whole assembly connecting piece, a copper contact assembly, and a control connecting piece, the copper bar is arranged on the inner side of the channel steel frame through bolt fastening connection, and the lifting lug is fixedly arranged on the outer side wall of the channel steel frame at equal intervals, the whole assembly connecting piece is symmetrically arranged on the inner side of the channel steel frame, and the copper contact assembly is connected at equal intervals on the whole assembly connecting piece, and the control connecting piece controls the position of the whole assembly connecting piece.

[0007] The whole assembly connecting piece comprises a connecting long body, a vertical bearing plate, a horizontal bearing plate, a connecting threaded rod, an internally threaded fastening cylinder, a handle, a side threaded groove, a locking threaded column, a locking handle, and an anti-skid protrusion.

[0008] The control connecting piece comprises a control through slot, a fixed body, a movable slot, a limiting sliding block, a supporting sliding plate, a circular through slot, a bearing, a control threaded column, a control handle, a positioning clamping groove, a positioning threaded column, and a positioning handle.

[0009] Preferably, one side of the connecting long body is fixedly provided with a connecting threaded rod at equal intervals, and the other side of the connecting long body is fixedly provided with a vertical bearing plate, one side of the vertical bearing plate is fixedly provided with a horizontal bearing plate, the copper contact assembly is fixedly connected on the horizontal bearing plate, an internally threaded fastening cylinder is screw-connected on the connecting threaded rod, one end of the internally threaded fastening cylinder is fixedly provided with a handle at equal intervals, and one side of the internally threaded fastening cylinder is provided with a side threaded groove, a locking threaded column is screw-connected in the side threaded groove, an anti-skid protrusion is fixedly arranged on the end face of one end of the locking threaded column at equal intervals, and a locking handle is fixedly arranged on the other end of the locking threaded column.

[0010] Preferably, the horizontal bearing plate is welded on the side wall of the vertical bearing plate, and two groups of horizontal bearing plates are arranged, a mounting circular groove is arranged on the horizontal bearing plate at equal intervals, and a bolt mounting hole is arranged on the vertical bearing plate at equal intervals.

[0011] Preferably, the regulating through slot is arranged through the channel steel frame and the copper bar, the fixed body is fixedly arranged on the outer side wall of the channel steel frame and symmetrically arranged relative to the regulating through slot, the inner side of the fixed body is provided with a movable slot, a limiting slider is movably arranged in the movable slot, the limiting slider is symmetrically fixedly arranged on both sides of the supporting sliding plate, a circular through slot is arranged at the middle position of the supporting sliding plate, the bearing is fixedly arranged on the top end surface of the limiting slider, and the bearing is fixedly sleeved on one end of the regulating threaded column, the regulating threaded column is threadedly connected in the fixed body and extends to the outside of the fixed body at one end, and a regulating handle is fixedly arranged at the end.

[0012] Preferably, the circular through slot is matched with the connecting threaded rod, and the circular through slot, the connecting threaded rod and the regulating through slot are arranged at corresponding positions and have the same number of groups.

[0013] Preferably, the limiting slider and the movable slot have the same number of groups, and the length of the movable slot is greater than the length of the limiting slider.

[0014] Preferably, the regulating threaded column and the positioning clamping groove are arranged at corresponding positions and matched.

[0015] Preferably, the supporting sliding plate and the regulating through slot are arranged at corresponding positions and have the same number of groups, and the width of the supporting sliding plate is greater than the slot width of the regulating through slot.

[0016] Preferably, partial disassembly work is carried out by the setting of the splicing assembly, which comprises a bearing long body, a first mounting carrier plate, a second mounting carrier plate, a splicing plug, a stable clamping groove, a splicing slot, a mounting threaded groove, a mounting screw and an auxiliary handle, one side of the bearing long body is fixedly provided with a connecting threaded rod, and the other side of the bearing long body is equidistantly provided with a splicing slot, the splicing slot is matched with the splicing plug, the splicing plug is fixedly arranged on one side of the first mounting carrier plate, the other side of the first mounting carrier plate is fixedly provided with the second mounting carrier plate, the mounting threaded groove is symmetrically arranged on the bearing long body and communicated with the splicing slot, the stable clamping groove is arranged on the splicing plug, and one end of the mounting screw is fixedly provided with the auxiliary handle.

[0017] Preferably, the mounting screw, the mounting threaded groove and the stable clamping groove are arranged at corresponding positions and have the same number of groups, the mounting screw is matched with the mounting threaded groove in threaded connection, the stable clamping groove is arranged in a circular groove, and the stable clamping groove is matched with the mounting screw in clamping connection.

[0018] Compared with the prior art, the present application has the following advantages:

[0019] For the electric precipitation tank short circuit frame device designed by the application, on the one hand, the copper contact assembly is fixed on the integral assembly connecting piece by bolt mounting, the integral assembly connecting piece is connected and arranged on the channel steel frame, the integral assembly connecting piece can be disassembled and assembled as a whole, the work efficiency of disassembling, replacing and maintaining the copper contact assembly in the later period is improved; in addition, when local multiple copper contact assemblies need to be maintained, the disassembly is also convenient through the arranged splicing assembly; the position of the copper contact assembly can be regulated and controlled through the arranged regulating and controlling connecting piece, the work flexibility is high, and the actual work demand can be met. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a front side schematic view of the short circuit frame structure connection of the electric precipitation tank of the application.

[0021] Figure 2 It is a back side schematic view of the short circuit frame structure connection of the electric precipitation tank of the application.

[0022] Figure 3 It is a top view of the integral assembly connecting piece structure connection of the application.

[0023] Figure 4 It is a bottom view of the integral assembly connecting piece structure connection of the application.

[0024] Figure 5 It is a partial schematic view of the channel steel frame and the regulating and controlling connecting piece structure connection of the application.

[0025] Figure 6 It is a right side schematic view of the splicing assembly structure connection of the application.

[0026] Figure 7 It is a left side schematic view of the splicing assembly structure connection of the application.

[0027] In the figure: channel steel frame 1, copper bar 2, lifting lug 3, integral assembly connecting piece 4, connecting long body 401, vertical bearing plate 402, horizontal bearing plate 403, connecting threaded rod 404, inner threaded fastening cylinder 405, handle 406, side threaded groove 407, locking threaded column 408, locking handle 409, anti-skid protrusion 410, copper contact assembly 5, regulating and controlling connecting piece 6, regulating and controlling through groove 601, fixed body 602, movable groove 603, limiting sliding block 604, supporting sliding plate 605, circular through groove 606, bearing 607, regulating and controlling threaded column 608, regulating and controlling handle 609, positioning clamping groove 610, positioning threaded column 611, positioning handle 612, splicing assembly 7, bearing long body 701, first mounting bearing plate 702, second mounting bearing plate 703, splicing plug block 704, stable clamping groove 705, splicing plug slot 706, mounting threaded groove 707, mounting screw 708, auxiliary handle 709. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the present application will be described clearly and completely below. All other embodiments obtained by the person of ordinary skill in the art without creative labor, based on the embodiments in the present application, belong to the protection scope of the present application.

[0029] Embodiment one: please refer to Figures 1-5 A kind of electric precipitation tank short circuit frame device, including channel steel frame 1, copper bar 2, lug 3 and integral assembly connecting piece 4, copper contact assembly 5, control connecting piece 6, copper bar 2 is arranged in the inside of channel steel frame 1 by bolt fastening connection, and lug 3 is fixedly arranged with equidistance on the outside wall of channel steel frame 1, integral assembly connecting piece 4 is symmetrically arranged in the inside of channel steel frame 1, and copper contact assembly 5 is equidistantly connected and arranged on integral assembly connecting piece 4, control connecting piece 6 controls the position of integral assembly connecting piece 4;

[0030] Integral assembly connecting piece 4 includes connecting long body 401, vertical bearing plate 402, horizontal bearing plate 403, connecting threaded rod 404, internal thread fastening cylinder 405, handle 406, side threaded groove 407, locking threaded column 408, locking handle 409, anti-skid boss 410;The side of connecting long body 401 is fixedly provided with connecting threaded rod 404 symmetrically, and the other side of connecting long body 401 is fixedly provided with vertical bearing plate 402, the side of vertical bearing plate 402 is fixedly provided with horizontal bearing plate 403, copper contact assembly 5 is fixedly connected and arranged on horizontal bearing plate 403, internal thread fastening cylinder 405 is screw-connected on connecting threaded rod 404, handle 406 is fixedly arranged on the one end side of internal thread fastening cylinder 405 symmetrically, and the side of internal thread fastening cylinder 405 is provided with side threaded groove 407, locking threaded column 408 is screw-connected in side threaded groove 407, anti-skid boss 410 is fixedly arranged on the end face of one end of locking threaded column 408 equidistantly, and locking handle 409 is fixedly arranged on the other end of locking threaded column 408;Horizontal bearing plate 403 is welded on the side wall of vertical bearing plate 402, and is provided with two groups, equidistantly provided with mounting circular groove on horizontal bearing plate 403, equidistantly provided with bolt mounting hole on vertical bearing plate 402.

[0031] The regulating connecting piece 6 comprises a regulating through slot 601, a fixed body 602, a movable slot 603, a limiting sliding block 604, a supporting sliding plate 605, a circular through slot 606, a bearing 607, a regulating threaded column 608, a regulating handle 609, a positioning clamping groove 610, a positioning threaded column 611 and a positioning handle 612. The regulating through slot 601 is arranged through the channel steel frame 1 and the copper bar 2, the fixed body 602 is fixedly arranged on the outer side wall of the channel steel frame and symmetrically arranged with the regulating through slot 601, the inner side of the fixed body 602 is provided with the movable slot 603, the limiting sliding block 604 is movably arranged in the movable slot 603, the limiting sliding block 604 is symmetrically and fixedly arranged on both sides of the supporting sliding plate 605, the middle part of the supporting sliding plate 605 is provided with the circular through slot 606, the bearing 607 is fixedly arranged on the top end face of the limiting sliding block 604, and the bearing 607 is fixedly sleeved on one end of the regulating threaded column 608, the regulating threaded column 608 is threadedly connected in the fixed body 602, and one end of the regulating threaded column 608 extends to the outside of the fixed body 602, the end is fixedly provided with the regulating handle 609, the positioning clamping groove 610 is equidistantly arranged on one side of the limiting sliding block 604, the positioning threaded column 611 is threadedly connected on one side of the fixed body 602, and one end of the positioning threaded column 611 is fixedly provided with the positioning handle 612, the circular through slot 606 is matched with the connecting threaded rod 404, the circular through slot 606 is arranged in position corresponding to the connecting threaded rod 404 and the regulating through slot 601, and the number of the circular through slot 606 is same as that of the connecting threaded rod 404 and the regulating through slot 601, the limiting sliding block 604 is arranged in the same number as the movable slot 603, and the length of the movable slot 603 is greater than that of the limiting sliding block 604, the positioning threaded column 611 is arranged in position corresponding to the positioning clamping groove 610, and the positioning threaded column 611 is matched with the positioning clamping groove 610, the supporting sliding plate 605 is arranged in position corresponding to the regulating through slot 601, and the number of the supporting sliding plate 605 is same as that of the regulating through slot 601, and the width of the supporting sliding plate 605 is greater than the slot width of the regulating through slot 601.

[0032] For the electrodeposition cell short-circuit frame device designed in this invention, on the one hand, the copper contact assembly 5 is fixed to the integral assembly connector 4 by bolts. The integral assembly connector 4 is connected to the channel steel frame 1, which can be disassembled and reassembled as a whole, improving the efficiency of disassembly, replacement and maintenance of the copper contact assembly 5 in the later stage; on the other hand, the splicing component 7 makes disassembly convenient when multiple copper contact assemblies 5 need to be maintained locally; the adjustment connector 6 can adjust the position of the copper contact assembly 5, which is highly flexible and can meet the actual working needs; after passing the connecting threaded rod 404 through the adjustment through slot 601 and then through the circular through slot 606 on the support slide plate 605, the connecting elongated body 401 is pressed tightly against the copper busbar 2, and then the internal thread fastening cylinder 405 is tightened by the handle 406, and then... Tightening the locking handle 409 to tighten the locking threaded post 408 causes the locking threaded post 408 to press against the side wall of the connecting threaded rod 404, thereby locking the internal thread fastening cylinder 405. Anti-slip protrusions 410 are equidistantly arranged on the pressing surface of the locking threaded post 408 to improve locking stability. Before tightening the internal thread fastening cylinder 405, if it is necessary to adjust the position of the entire copper contact assembly 5, the adjusting handle 609 is rotated to adjust the adjusting threaded post 608, which drives the limiting slider 604 to move, thereby adjusting the position of the supporting slide plate 605. Finally, the position of the entire copper contact assembly 5 is adjusted. Afterwards, by tightening the positioning threaded post 611, the positioning threaded post 611 engages with the positioning slot 610 at the corresponding position of the limiting slider 604, thus fixing the position of the supporting slide plate 605.

[0033] Example 2: Based on Example 1, please refer to... Figures 1-5 For later maintenance and replacement work, when partial individual disassembly is required, only the copper contact assembly 5 needs to be removed. When the entire assembly needs to be disassembled and replaced, first loosen the locking threaded post 408 by tightening the locking handle 409 to release the locking threaded post 408 from the internal thread fastening cylinder 405. Then loosen the internal thread fastening cylinder 405 by tightening the handle 406. Finally, pull the connecting threaded rod 404 out of the circular through groove 606 on the support slide plate 605 and disassemble the connecting long body 401 as a whole.

[0034] Example 3: Based on Example 2, please refer to... Figures 6-7, the local disassembly work is carried out, and the splicing assembly 7 is arranged to realize the local disassembly work, and the splicing assembly 7 comprises a bearing long body 701, a first mounting carrier plate 702, a second mounting carrier plate 703, a splicing plug block 704, a stable clamping groove 705, a splicing slot 706, a mounting threaded groove 707, a mounting screw 708 and an auxiliary handle 709, a connecting threaded rod 404 is symmetrically and fixedly arranged on one side of the bearing long body 701, and a plurality of splicing slots 706 are equidistantly arranged on the other side of the bearing long body 701, the splicing slots 706 are matched and inserted with the splicing plug block 704, the splicing plug block 704 is fixedly arranged on one side of the first mounting carrier plate 702, the second mounting carrier plate 703 is fixedly arranged on the other side of the first mounting carrier plate 702, the mounting threaded groove 707 is symmetrically arranged on the bearing long body 701, and the mounting threaded groove 707 is in communication with the splicing slot 706, the stable clamping groove 705 is arranged on the splicing plug block 704, and one end of the mounting screw 708 is fixedly provided with the auxiliary handle 709; the mounting screw 708, the mounting threaded groove 707 and the stable clamping groove 705 are arranged in corresponding positions and have the same number of groups, and the mounting screw 708 is matched and threadedly connected with the mounting threaded groove 707; the stable clamping groove 705 is arranged in a circular groove, and the stable clamping groove 705 is matched and clamped with the mounting screw 708.

[0035] The first mounting carrier plate 702 is spliced and fixed on the bearing long body 701, that is, the first mounting carrier plate 702 is spliced and fixed on the bearing long body 701 through the insertion of the splicing plug block 704 and the splicing slot 706, and then the mounting screw 708 is tightened by the auxiliary handle 709, one end of the mounting screw 708 is clamped into the stable clamping groove 705, the installation and fixation of the first mounting carrier plate 702 are realized, and for the later disassembly of the local continuous copper contact assembly 5, the first mounting carrier plate 702 at the corresponding position is directly disassembled, that is, the mounting screw 708 is loosened, and the splicing plug block 704 and the splicing slot 706 are separated.

[0036] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A short-circuit frame device between electrodeposition cells, characterized in that: The assembly includes a channel steel frame (1), copper busbars (2), lifting lugs (3), an integral assembly connector (4), copper contact assemblies (5), and an adjustment connector (6). The channel steel frame (1) is bolted to the inner side with copper busbars (2), and the outer side wall of the channel steel frame (1) is fixedly provided with lifting lugs (3) at equal intervals. The integral assembly connector (4) is symmetrically arranged on the inner side of the channel steel frame (1), and copper contact assemblies (5) are connected at equal intervals on the integral assembly connector (4). The adjustment connector (6) adjusts the position of the integral assembly connector (4). The integral assembly connector (4) includes a connecting long body (401), a vertical bearing plate (402), a horizontal bearing plate (403), a connecting threaded rod (404), an internal threaded fastening cylinder (405), a handle (406), a side threaded groove (407), a locking threaded column (408), a locking handle (409), and an anti-slip protrusion (410). A connecting threaded rod (404) is symmetrically fixed on one side of the connecting long body (401), and a vertical bearing plate (402) is fixed on the other side of the connecting long body (401). A horizontal bearing plate (403) is fixed on one side of the vertical bearing plate (402). The copper contact assembly (5) is fixedly connected to the horizontal bearing plate (403). An internal thread fastening cylinder (405) is threadedly connected to the connecting threaded rod (404). A handle (406) is symmetrically fixed on one side of the internal thread fastening cylinder (405). A side thread groove (407) is provided on one side of the internal thread fastening cylinder (405). A locking threaded post (408) is threadedly connected in the side thread groove (407). Anti-slip protrusions (410) are fixedly provided at equal intervals on the end face of one end of the locking threaded post (408). A locking handle (409) is fixedly provided on the other end of the locking threaded post (408). The regulating connector (6) includes a regulating through groove (601), a fixed body (602), a movable groove (603), a limiting slider (604), a supporting slide plate (605), a circular through groove (606), a bearing (607), a regulating threaded post (608), a regulating handle (609), a positioning slot (610), a positioning threaded post (611), and a positioning handle (612); The regulating channel (601) is installed through the channel steel frame (1) and the copper busbar (2). The fixing body (602) is welded and fixed on the outer wall of the channel steel frame and is symmetrically arranged about the regulating channel (601). The fixing body (602) has a movable groove (603) on its inner side. A limit slider (604) is movably installed in the movable groove (603). The limit slider (604) is symmetrically fixed on both sides of the support slide plate (605). A circular channel (606) is provided in the middle of the support slide plate (605). The bearing (607) is embedded and fixed in the limit. The top surface of the limit slider (604) is provided with a bearing (607) fixedly sleeved at one end of the regulating threaded column (608). The regulating threaded column (608) is threadedly connected in the fixed body (602), and one end of the regulating threaded column (608) extends to the outside of the fixed body (602). An regulating handle (609) is fixedly provided at the end. The positioning slot (610) is equidistantly provided on one side of the limit slider (604). The positioning threaded column (611) is threadedly connected on one side of the fixed body (602), and a positioning handle (612) is fixedly provided at one end of the positioning threaded column (611).

2. The electrodeposition cell short-circuit frame device according to claim 1, characterized in that: The transverse bearing plate (403) is welded to the side wall of the vertical bearing plate (402) and there are two sets of them. The transverse bearing plate (403) is provided with mounting grooves at equal intervals and the vertical bearing plate (402) is provided with bolt mounting holes at equal intervals.

3. The electrodeposition cell short-circuit frame device according to claim 1, characterized in that: The circular through groove (606) is adapted to be inserted into the connecting threaded rod (404), and the circular through groove (606) is positioned in a corresponding manner to the connecting threaded rod (404) and the regulating through groove (601), and the number of sets is the same.

4. The electrodeposition cell short-circuit frame device according to claim 1, characterized in that: The number of sets of the limiting slider (604) and the movable groove (603) are the same, and the length of the movable groove (603) is greater than the length of the limiting slider (604).

5. The electrodeposition cell short-circuit frame device according to claim 1, characterized in that: The positioning threaded post (611) and the positioning slot (610) are positioned in a corresponding manner and are fitted together.

6. The electrodeposition cell short-circuit frame device according to claim 1, characterized in that: The support slide plate (605) and the regulating channel (601) are positioned in the same way and have the same number of sets. The width of the support slide plate (605) is greater than the width of the regulating channel (601).

7. The electrodeposition cell short-circuit frame device according to claim 1, characterized in that: Partial disassembly and assembly are performed using a splicing assembly (7), which includes a support body (701), a first mounting plate (702), a second mounting plate (703), a splicing block (704), a stabilizing slot (705), a splicing slot (706), a mounting threaded groove (707), mounting screws (708), and an auxiliary handle (709). A connecting threaded rod (404) is symmetrically fixed on one side of the support body (701), and splicing slots (706) are equidistantly arranged on the other side of the support body (701). 706) is adapted to be inserted into the splicing block (704). The splicing block (704) is fixedly disposed on one side of the first mounting plate (702). A second mounting plate (703) is fixedly disposed on the other side of the first mounting plate (702). The mounting thread groove (707) is symmetrically disposed on the supporting long body (701), and the mounting thread groove (707) is connected to the splicing slot (706). The stabilizing slot (705) is disposed on the splicing block (704). An auxiliary handle (709) is fixedly disposed at one end of the mounting screw (708).

8. The electrodeposition cell short-circuit frame device according to claim 7, characterized in that: The mounting screw (708), mounting thread groove (707), and stabilizing slot (705) are positioned in a corresponding manner and have the same number of sets. The mounting screw (708) and mounting thread groove (707) are threaded together. The stabilizing slot (705) is a circular slot and is fitted and engaged with the mounting screw (708).

Citation Information

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