Electrolytic tank frame conveying system

By designing an electrolytic cell frame conveying system, the system utilizes lifting and double-layer conveying platforms to transport electrolytic cell frames to be painted and those already painted on the same line, solving the problem of large space occupation and improving operational efficiency.

CN223530631UActive Publication Date: 2025-11-11BLUESTAR BEIJING CHEM MACHINERY
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422716832.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-11-11
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

In the existing technology, the painting process of the electrolytic cell frame requires two separate lines to transport the electrolytic cell frame to be painted and the one that has already been painted, which occupies a large amount of factory space.

Method used

An electrolytic cell frame conveying system was designed, including a loading and unloading platform, a lifting platform, a double-layer conveying platform, and a painting platform. By combining the lifting platform and the double-layer conveying platform, loading and unloading can be achieved on the same line, reducing the space occupied.

Benefits of technology

Simultaneous conveying of electrolytic cell frames to be painted and already painted on the same line reduces system volume, shortens loading and unloading intervals, and improves operating efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223530631U_ABST
    Figure CN223530631U_ABST
Patent Text Reader

Abstract

The utility model relates to an electrolytic bath frame conveying system which comprises a feeding and discharging platform, a first lifting platform, a double-layer conveying platform, a second lifting platform and a paint spraying platform which are sequentially arranged in the conveying direction of an electrolytic bath frame. The double-layer conveying platform comprises two layers of conveying rails arranged up and down. The conveying rails of the first lifting platform and the second lifting platform can both ascend and descend to be aligned with any layer of conveying rail of the double-layer conveying platform, and can ascend and descend to be aligned with the conveying rails of the feeding and discharging platform and the paint spraying platform correspondingly. And the conveying track can bear and drive the electrolytic cell frame to be bidirectionally conveyed between the two adjacent platforms in the conveying direction of the electrolytic cell frame. The conveying system has the beneficial effects that the conveying system can be used for feeding and conveying the electrolytic cell frame to be painted and discharging and conveying the painted electrolytic cell frame on the same line at the same time, so that the overall size of the conveying system is reduced, and the occupied space of a factory is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of electrolytic cell frame processing technology, and in particular to an electrolytic cell frame conveying system. Background Technology

[0002] In the painting process of electrolytic cell frame production, the electrolytic cell frame needs to be transferred from the storage station to the painting station, and then the painted electrolytic cell frame is transferred to the storage station of the next process. Therefore, two lines need to be set up in the factory to transfer the electrolytic cell frame to be painted and the electrolytic cell frame that has been painted. Since the electrolytic cell frame is large in size, the two lines used to transfer the electrolytic cell frame also occupy a large space in the factory. Utility Model Content

[0003] (a) Technical problems to be solved

[0004] In view of the above-mentioned shortcomings and deficiencies of the prior art, the present invention provides an electrolytic cell frame conveying system, which solves the technical problem that setting up two lines to transport electrolytic cell frames to be painted and electrolytic cell frames already painted at the same time would occupy a large amount of factory space.

[0005] (II) Technical Solution

[0006] To achieve the above objectives, the main technical solutions adopted by this utility model include:

[0007] This utility model provides an electrolytic cell frame conveying system, including a loading and unloading platform, a first lifting platform, a double-layer conveying platform, a second lifting platform, and a painting platform arranged sequentially along the conveying direction of the electrolytic cell frame;

[0008] The double-layer conveying platform includes two layers of conveying tracks arranged vertically.

[0009] The conveyor rails of both the first and second lifting platforms can be raised and lowered to align with any layer of the double-layer conveyor rail, and can be raised and lowered to align with the conveyor rails of the loading / unloading platform and the painting platform, respectively.

[0010] The conveying track can carry and drive the electrolytic cell frame to be conveyed bidirectionally between two adjacent platforms along the conveying direction of the electrolytic cell frame.

[0011] According to this utility model, it also includes a conveyor frame, which is capable of supporting the electrolytic cell frame and moving along the conveyor track.

[0012] According to this utility model, it also includes a hanging device, a loading and storage platform, and a unloading and storage platform;

[0013] The loading and unloading storage platforms are arranged orthogonally to the conveying direction of the electrolytic cell frame and are located on both sides of the loading and unloading platforms.

[0014] The loading and storage platform is used to store multiple electrolytic cell frames to be painted, which are stacked vertically; the unloading and storage platform is used to store multiple electrolytic cell frames after painting, which are stacked vertically.

[0015] The two oppositely arranged hanging claws of the hanging device can hang the protruding columns on the outer walls of both sides of the electrolytic cell frame one by one, so as to lift the electrolytic cell frame on the loading and storage platform to the loading and unloading platform, or lift the electrolytic cell frame on the loading and unloading platform to the unloading and storage platform.

[0016] According to this utility model, the hanging claw has an insertion hole, which is used for inserting and hanging the protruding column;

[0017] The socket includes a first socket that is open at the top, and the first socket is in a vertically oriented V-shape; or,

[0018] The socket includes a closed second socket, the upper part of which is arc-shaped and the lower part of which is V-shaped.

[0019] According to this utility model, the hanging claw includes two opposing claws, and the insertion holes on the two claws are used to insert one-to-one to hang the two parallel protruding columns on one side of the outer wall of the electrolytic cell frame.

[0020] According to this utility model, the hanging device further includes a support frame;

[0021] The support frame is erected above the loading storage platform, the unloading storage platform and the loading and unloading platform. A three-axis robotic arm is installed on the support frame, and the hanging gripper is installed on the three-axis robotic arm.

[0022] The two hanging grippers are positioned opposite each other and can move closer or further apart.

[0023] According to this utility model, it also includes a pad;

[0024] The lower part of the pad can be inserted between two adjacent stiffening plates on the electrolytic cell frame, and the upper part of the pad protrudes horizontally outward and rests on the circumferential frame of the electrolytic cell frame.

[0025] The pad inserted on one of the electrolytic cell frames can support the upper electrolytic cell frame to separate two adjacent electrolytic cell frames stacked on top of each other.

[0026] According to this utility model, the number of pads is at least two, and at least two pads are inserted on both sides of the electrolytic cell frame;

[0027] The pad protrudes horizontally outward from both sides of the two adjacent stiffening plates to form an insert, and the two inserts can be inserted into the grooves at the top of the two adjacent stiffening plates in a one-to-one correspondence.

[0028] According to this utility model, a detector is installed on the conveying track of the first layer of the double-layer conveying platform used for conveying the electrolytic cell frame after painting. The detector is used to obtain the painting quality status of the electrolytic cell frame after painting.

[0029] According to this utility model, both the first lifting platform and the second lifting platform include a support frame and a winch disposed on the top of the support frame;

[0030] The hoisting rope of the winch is connected to the conveying rail of the first lifting platform or the second lifting platform to drive the conveying rail to move up and down;

[0031] The number of winches is two sets, and the two sets of winches are arranged at intervals along the conveying direction of the electrolytic cell frame. The hoisting ropes of the two sets of winches are respectively wound around the two sets of rollers. The shafts of the two sets of rollers are supported by bearings and rotatably connected to the cross-bracing frame at the top of the support frame.

[0032] (III) Beneficial Effects

[0033] The beneficial effects of this utility model are as follows: The electrolytic cell frame conveying system of this utility model can form loading and unloading paths on the same line: the loading and unloading platform, the first lifting platform, the first layer of the double-layer conveying platform, and the second lifting platform sequentially form the loading path for conveying the electrolytic cell frame to be painted to the painting platform, and the painting platform paints the electrolytic cell frame. The painting platform, the second lifting platform, the other layer of the double-layer conveying platform, and the first lifting platform sequentially form the unloading path for conveying the painted electrolytic cell frame to the loading and unloading platforms. Both loading and unloading paths are carried and driven by the conveying rails of each platform to transport the electrolytic cell frame between adjacent platforms.

[0034] Therefore, this conveying system can simultaneously load and unload electrolytic cell frames to be painted onto the same line, reducing the overall size of the system and minimizing its footprint in the factory. Furthermore, the two conveyor tracks of the double-layer conveyor platform can respectively support electrolytic cell frames to be painted and those already painted, allowing the loading and unloading paths to operate simultaneously, thus shortening the loading and unloading intervals and improving the system's operational efficiency. Attached Figure Description

[0035] Figure 1 This is a three-dimensional schematic diagram of the electrolytic cell frame conveying system of this utility model;

[0036] Figure 2 for Figure 1 A three-dimensional schematic diagram of the suspension device in the middle;

[0037] Figure 3 for Figure 2 The main view;

[0038] Figure 4 This is a three-dimensional schematic diagram of the first lifting platform;

[0039] Figure 5 A three-dimensional schematic diagram of a double-layer conveyor platform;

[0040] Figure 6 This is a three-dimensional schematic diagram of the second lifting platform;

[0041] Figure 7 This is a 3D schematic diagram of the spray painting platform;

[0042] Figure 8 This is a three-dimensional schematic diagram of the electrolytic cell frame;

[0043] Figure 9 This is an exploded view of the electrolytic cell frame and pad blocks;

[0044] Figure 10 A schematic diagram of the electrolytic cell frame and hanging grippers;

[0045] Figure 11 for Figure 10 A partial schematic diagram;

[0046] Figure 12 This is a three-dimensional schematic diagram of the pad block;

[0047] Figure 13 A three-dimensional schematic diagram of the pad for setting the insertion block.

[0048] [Explanation of Labels in the Attached Image]

[0049] 1: Loading and unloading platform;

[0050] 2: First lifting platform; 21: First support frame; 211: First load-bearing frame; 22: First winch; 221: First hoisting rope; 23: First roller; 24: First shaft;

[0051] 3: Double-layer conveyor platform; 31: Double-layer support frame;

[0052] 4: Second lifting platform; 41: Second support frame; 411: Second load-bearing frame; 42: Second winch; 421: Second hoisting rope; 43: Second roller; 44: Second shaft;

[0053] 5: Spray painting platform;

[0054] 61: Conveyor track; 62: Conveyor frame;

[0055] 7: Suspension device; 71: Suspension gripper; 711: Gripper; 7111: First insertion hole; 7112: Second insertion hole; 72: Support frame; 73: Three-axis robotic arm;

[0056] 81: Loading and storage platform; 82: Unloading and storage platform;

[0057] 9: Spacer block; 91: Insert block;

[0058] A: Electrolytic cell frame; A1: Rib plate; A11: Cell body; A2: Protruding column. Detailed Implementation

[0059] To better explain and facilitate understanding of this utility model, a detailed description of its specific embodiments is provided below with reference to the accompanying drawings. In this document, directional terms such as "upper" and "lower" are used interchangeably with... Figure 1 The orientation is used as a reference.

[0060] See Figure 1-12 The electrolytic cell frame conveying system proposed in this embodiment includes a loading and unloading platform 1, a first lifting platform 2, a double-layer conveying platform 3, a second lifting platform 4, and a painting platform 5 arranged sequentially along the conveying direction of the electrolytic cell frame A.

[0061] The double-layer conveyor platform 3 includes two layers of conveyor tracks 61 arranged vertically. The conveyor tracks 61 of both the first lifting platform 2 and the second lifting platform 4 can be raised and lowered to align with any one of the conveyor tracks 61 of the double-layer conveyor platform 3, and can also be raised and lowered to align with the conveyor tracks 61 of the loading / unloading platform 1 and the painting platform 5, respectively. The conveyor tracks 61 can carry and drive the electrolytic cell frame A to bidirectionally transport it between adjacent platforms along the conveying direction of the electrolytic cell frame A.

[0062] This electrolytic cell frame conveying system can form loading and unloading paths on the same line: the loading / unloading platform 1, the first lifting platform 2, the first layer of the double-layer conveying platform 3 (conveying rail 61), and the second lifting platform 4 sequentially form the loading path for conveying the electrolytic cell frame A to be painted to the painting platform, and the electrolytic cell frame A is painted by the painting platform 5. The painting platform 5, the second lifting platform 4, the other layer of the double-layer conveying platform 3 (conveying rail 61), and the first lifting platform 2 sequentially form the unloading path for conveying the painted electrolytic cell frame A to the loading / unloading platform 1. The loading and unloading paths are all carried and driven by the conveying rail 61 of each platform to transport the electrolytic cell frame A between adjacent platforms.

[0063] Therefore, this conveying system can simultaneously feed and unload electrolytic cell frames A that are to be painted onto the same line, thereby reducing the overall volume of the conveying system and minimizing the space occupied in the factory. Furthermore, the two conveying tracks 61 of the double-layer conveying platform 3 can respectively carry electrolytic cell frames A that are to be painted and those that have already been painted. Thus, the feeding and unloading paths can operate simultaneously, shortening the interval between feeding and unloading and improving the operating efficiency of the conveying system.

[0064] Specifically, the conveyor track 61 is a chain conveyor track or a belt conveyor track, which can realize bidirectional conveying.

[0065] Furthermore, the conveying system also includes a conveyor frame 62, which can carry the electrolytic cell frame A and move along the conveying track 61 to drive the electrolytic cell frame A carried to be conveyed bidirectionally between two adjacent platforms along the conveying direction of the electrolytic cell frame A.

[0066] See Figure 2 Furthermore, this conveying system also includes a hanging device 7, a loading storage platform 81, and a unloading storage platform 82.

[0067] The loading and unloading storage platform 81 and the unloading storage platform 82 are arranged orthogonally to the conveying direction of the electrolytic cell frame A and are located on both sides of the loading and unloading platform 1. The loading and unloading storage platform 81 is used to store multiple electrolytic cell frames A stacked vertically and awaiting painting, while the unloading storage platform 82 is used to store multiple electrolytic cell frames A stacked vertically and after painting. This further reduces the overall volume of the conveying system.

[0068] The two oppositely arranged hanging claws 711 of the hanging device 7 can hang the protruding columns A2 on both sides of the outer wall of the electrolytic cell frame A in a one-to-one correspondence, so as to lift the electrolytic cell frame A on the loading and storage platform 81 to the loading and unloading platform 1 for loading the electrolytic cell frame A to be painted, or lift the electrolytic cell frame A on the loading and unloading platform 1 to the unloading and storage platform 82 for unloading the electrolytic cell frame A after painting.

[0069] Furthermore, the conveying process of this electrolytic cell frame conveying system is as follows:

[0070] The conveying process of the feeding path is as follows:

[0071] A1: The conveyor frame 62 is located on the conveyor track 61 of the loading and unloading platform 1, and the conveyor track 61 of the first lifting platform 2 is raised and lowered to align with the loading and unloading platform 1.

[0072] A2: The hoisting device 7 hoists an electrolytic cell frame A on the loading and storage platform 81 to the conveyor frame 62 on the loading and unloading platform 1. The conveyor frame 62 drives the electrolytic cell frame A it carries to move along the conveyor track 61 of the loading and unloading platform 1 to the conveyor track 61 of the first lifting platform 2.

[0073] A3: After the conveying rail 61 of the first lifting platform 2 is raised and lowered to align with the first conveying rail 61 of the double-layer conveying platform 3, the conveying frame 62 drives the electrolytic cell frame A it carries to move along the conveying rail 61 of the first lifting platform 2 to the first conveying rail 61 of the double-layer conveying platform 3.

[0074] A4: After the conveying rail 61 of the second lifting platform 4 is lifted to the first conveying rail 61 of the double-layer conveying platform 3, the conveying frame 62 drives the electrolytic cell frame A it carries to move along the first conveying rail 61 of the double-layer conveying platform 3 to the conveying rail 61 of the second lifting platform 4.

[0075] A5: After the conveyor rail 61 of the second lifting platform 4 is raised and lowered to align with the conveyor rail 61 of the paint spraying platform 5, the conveyor frame 62 drives the electrolytic cell frame A it carries to move along the conveyor rail 61 of the second lifting platform 4 to the conveyor rail 61 of the paint spraying platform 5 for painting.

[0076] The conveying process of the feeding path is as follows:

[0077] B1: After the electrolytic cell frame A carried by the conveyor rail 61 of the spray painting platform 5 is painted, the conveyor rail 61 of the second lifting platform 4 is raised and lowered to align with the conveyor rail 61 of the spray painting platform 5. The conveyor frame 62 drives the electrolytic cell frame A carried by it to move along the conveyor rail 61 of the spray painting platform 5 to the conveyor rail 61 of the second lifting platform 4.

[0078] B2: After the conveying rail 61 of the second lifting platform 4 is lifted to the other conveying rail 61 of the double-layer conveying platform 3, the conveying frame 62 drives the electrolytic cell frame A it carries to move along the conveying rail 61 of the second lifting platform 4 to the other conveying rail 61 of the double-layer conveying platform 3.

[0079] B3: After the conveying rail 61 of the first lifting platform 2 is raised and lowered to align with the other conveying rail 61 of the double-layer conveying platform 3, the conveying frame 62 drives the electrolytic cell frame A it carries to move along the other conveying rail 61 of the double-layer conveying platform 3 to the conveying rail 61 of the first lifting platform 2.

[0080] B4: After the conveying rail 61 of the first lifting platform 2 is raised and lowered to align with the conveying rail 61 of the loading and unloading platform 1, the conveying frame 62 drives the electrolytic cell frame A it carries to move along the conveying rail 61 of the first lifting platform 2 to the conveying rail 61 of the loading and unloading platform 1.

[0081] B5: The hoisting device 7 hoists the painted electrolytic cell frame A on the loading and unloading platform 1 to the unloading and storage platform 82.

[0082] Therefore, this electrolytic cell frame conveying system can conveniently and quickly load electrolytic cell frames A to be painted and unload them on the same line simultaneously. Furthermore, when conveying the electrolytic cell frame A to be painted to the first layer of the double-layer conveying platform 3, the painted electrolytic cell frame A can be simultaneously conveyed to the other layer of the double-layer conveying platform. Thus, the loading and unloading paths of this electrolytic cell frame conveying system can operate simultaneously.

[0083] See Figure 10 and 11 Furthermore, the hanging claw 71 has an insertion hole for inserting and hanging the protruding column A2.

[0084] The socket includes a first socket 7111 that is open at the top and is V-shaped in a vertical orientation; or, the socket includes a second socket 7112 that is closed, with the upper part of the second socket 7112 being arc-shaped and the lower part of the second socket 7112 being V-shaped.

[0085] During the process of aligning the insertion hole of the lifting gripper 71 with the protruding column A2, if the insertion hole is a round hole slightly larger than the diameter of the protruding column A2, it is difficult to align the insertion hole and insert the protruding column A2. If the diameter of the insertion hole is increased, the gap between the insertion hole and the protruding column A2 will be larger, and the protruding column A2 will easily shake during the lifting process of the lifting gripper 71, making it impossible to lift the electrolytic cell frame A stably. This application designates either a first insertion hole 7111 or a second insertion hole 7112, allowing the protruding column A2 to be inserted through the open upper end of the first insertion hole 7111 or through the larger, arc-shaped upper part of the second insertion hole 7112. This facilitates the alignment and insertion of the protruding column A2 into the insertion hole. During the lifting process of the electrolytic cell frame A by the lifting claw 71, the protruding column A2, under its own weight, is inserted downwards into the bottom of the V-shaped first insertion hole 7111 or into the lower V-shaped part of the second insertion hole 7112. This securely positions the protruding column A2 within the insertion hole, preventing it from swaying during lifting and thus improving the stability and safety of the lifting process.

[0086] Specifically, the hanging gripper 71 includes two opposing grippers 711, and the insertion holes on the two grippers 711 are used to insert one-to-one with two parallel protruding columns A2 on one side of the outer wall of the electrolytic cell frame A.

[0087] See Figure 2 Furthermore, the hanging device 7 also includes a support frame 72.

[0088] A support frame 72 is mounted above the loading and unloading storage platform 81, the unloading storage platform 82, and the loading / unloading platform 1. A three-axis robotic arm 73 is mounted on the support frame 72, and a hanging gripper 711 is mounted on the robotic arm 73. The robotic arm 73 drives the hanging gripper 711 to move relative to the support frame 72 along the X, Y, and Z axes, thereby driving the hanging gripper 711 to load and unload the electrolytic cell frame A between the loading and unloading storage platforms 81, 82, and 1. This configuration reduces the overall volume of the hanging device 7, the loading and unloading storage platform 81, the unloading storage platform 82, and the loading / unloading platform 1, further reducing the overall volume of the conveying system.

[0089] Specifically, the two hanging claws 711 are arranged opposite each other and can move closer or further apart to insert into and hang or detach from the protruding columns A2 on both sides of the outer wall of the electrolytic cell frame A.

[0090] Optionally, a horizontally oriented lead screw with reversed threads at both ends is provided on the three-axis robotic arm 73. Nuts are fitted at both ends of the lead screw, and the two hanging grippers 711 are fixedly connected to each other in a corresponding manner. When the lead screw rotates, it can drive the two hanging grippers 711 to move closer or further apart through the nuts at both ends.

[0091] Furthermore, the aforementioned hanging device and / or loading / unloading storage platform 81 and / or unloading / unloading storage platform 82 are equipped with sensors so that the hanging device 7 can accurately correspond to the protruding column A2 of the electrolytic cell frame A and quickly hang it.

[0092] See Figure 8-9 Furthermore, as shown in 12-13, the electrolytic cell frame conveying system also includes pad block 9.

[0093] The lower part of the pad 9 can be inserted between two adjacent stiffening plates A1 on the electrolytic cell frame A, and the upper part of the pad 9 protrudes horizontally outward and rests on the circumferential frame of the electrolytic cell frame A.

[0094] The pad 9, inserted into an electrolytic cell frame A, supports the upper electrolytic cell frame A to separate two adjacent electrolytic cell frames A stacked vertically in the feeding storage platform 81 and the unloading storage platform 82, preventing the two adjacent electrolytic cell frames A from being squeezed and damaged. It also facilitates the hanging claws 711 to hang the protruding columns A2 on both sides of the outer wall of the electrolytic cell frame A. At the same time, the pad 9 has a simple structure and is easy to manufacture.

[0095] Specifically, at least two pads 9 are provided, and at least two pads 9 are inserted on both sides of the electrolytic cell frame A to stably support the upper electrolytic cell frame A and separate two adjacent electrolytic cell frames A.

[0096] Specifically, when the top of the two adjacent stiffening plates A1 is opened with grooves A11, the pad 9 protrudes horizontally outward against the two sides of the two adjacent stiffening plates A1 to form inserts 91. The two inserts 91 can be inserted into the grooves A11 at the top of the two adjacent stiffening plates A1 in a one-to-one correspondence, so as to restrict the position of the pad 9 and prevent the pad 9 from shifting.

[0097] Furthermore, both the first lifting platform 2 and the second lifting platform 4 include a support frame and a winch mounted on top of the support frame.

[0098] The hoisting rope of the winch is connected to the conveying rail 61 of the first lifting platform 2 or the second lifting platform 4 to drive the conveying rail 61 to rise and fall, so as to achieve alignment with the conveying rail 61 of any layer of the double-layer conveying platform 3, the loading and unloading platform 1 and the painting platform 5.

[0099] Specifically, two sets of winches are installed, arranged at intervals along the conveying direction of the electrolytic cell frame A. The hoisting ropes of the two sets of winches are wound around the two sets of rollers respectively. The shafts fitted on the two sets of rollers are supported by bearings and rotatably connected to the cross-bracing frame at the top of the support frame. This allows the two sets of hoisting ropes to be supported by corresponding shafts, and the support shafts are stabilized by the support frames respectively. This avoids the two sets of hoisting ropes being supported by the same shaft at the same time, which would cause the bearing weight to be too large and cause creep deformation, thus improving the support stability of the shaft.

[0100] See Figure 4 and 6 The support frame includes a first support frame 21 for the first lifting platform 2 and a second support frame 41 for the second lifting platform 4. The winch includes a first winch 22 for the first lifting platform 2 and a second winch 42 for the second lifting platform 4. The hoisting rope includes a first hoisting rope 221 for the first lifting platform 2 and a second hoisting rope 421 for the second lifting platform 4. The rollers include a first roller 23 for the first lifting platform 2 and a second roller 43 for the second lifting platform 4. The shaft includes a first shaft 24 for the first lifting platform 2 and a second shaft 44 for the second lifting platform 4.

[0101] Furthermore, a detector is installed on the first layer of the conveying track 61 of the double-layer conveying platform 3, which is used to convey the electrolytic cell frame A after painting. The detector is used to obtain the painting quality status of the electrolytic cell frame A after painting. The painting quality status includes whether the paint film is uniform, whether there are pinholes, and the thickness of the paint layer.

[0102] When the detector detects that the paint quality of the electrolytic cell frame A is unqualified, the qualified and unqualified electrolytic cell frames A are sorted and oscillated to facilitate subsequent repainting of the unqualified electrolytic cell frames A, thereby improving the product yield.

[0103] Alternatively, the detector may be a video detector, an image detector, or a ray detector.

[0104] Specifically, the unloading and storage platform 82 includes a qualified product storage platform and a non-qualified product storage platform. The qualified product storage platform and the non-qualified product storage platform are arranged sequentially on one side of the loading and unloading platform 1 along the conveying direction of the electrolytic cell frame A. The hanging device 7 can lift the electrolytic cell frame A with qualified paint quality to the qualified product storage platform and can lift the electrolytic cell frame A with unqualified paint quality to the non-qualified product storage platform.

[0105] In the description of this utility model, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0106] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0107] In this utility model, unless otherwise explicitly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "beneath" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0108] In the description of this specification, the terms "one embodiment," "some embodiments," "embodiment," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0109] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make modifications, alterations, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. An electrolytic cell frame conveying system, characterized in that, It includes a loading and unloading platform (1), a first lifting platform (2), a double-layer conveying platform (3), a second lifting platform (4), and a painting platform (5) arranged sequentially along the conveying direction of the electrolytic cell frame (A); The double-layer conveying platform (3) includes two layers of conveying tracks (61) arranged vertically; The conveying rails (61) of the first lifting platform (2) and the second lifting platform (4) can be raised and lowered to any layer of the conveying rail (61) aligned with the double-layer conveying platform (3), and can be raised and lowered to the conveying rails (61) aligned with the loading and unloading platform (1) and the painting platform (5), respectively. The conveying track (61) can carry and drive the electrolytic cell frame (A) to be conveyed bidirectionally between two adjacent platforms along the conveying direction of the electrolytic cell frame (A).

2. The electrolytic cell frame conveying system as described in claim 1, characterized in that, It also includes a conveyor frame (62) that can carry the electrolytic cell frame (A) and can move along the conveyor track (61).

3. The electrolytic cell frame conveying system as described in claim 1, characterized in that, It also includes a hanging device (7), a loading and storage platform (81), and a unloading and storage platform (82); The loading and unloading storage platform (81) and the unloading storage platform (82) are arranged in an orthogonal direction to the conveying direction of the electrolytic cell frame (A) and are located on both sides of the loading and unloading platform (1); The loading storage platform (81) is used to store multiple electrolytic cell frames (A) to be painted, which are stacked vertically; the unloading storage platform (82) is used to store multiple electrolytic cell frames (A) after painting, which are stacked vertically. The two oppositely arranged hanging claws (711) of the hanging device (7) can hang the protruding columns (A2) on both sides of the outer wall of the electrolytic cell frame (A) in a one-to-one correspondence, so as to lift the electrolytic cell frame (A) on the loading storage platform (81) to the loading and unloading platform (1), or lift the electrolytic cell frame (A) on the loading and unloading platform (1) to the unloading storage platform (82).

4. The electrolytic cell frame conveying system as described in claim 3, characterized in that, The hanging claw (71) has an insertion hole for inserting and suspending the protruding column (A2); The socket includes a first socket (7111) open at the top, the first socket (7111) being a vertically oriented V-shape; or, The socket includes a closed second socket (7112), the upper part of which is arc-shaped and the lower part of which is V-shaped.

5. The electrolytic cell frame conveying system as described in claim 4, characterized in that, The hanging gripper (71) includes two opposing grippers (711), and the insertion holes on the two grippers (711) are used to insert one-to-one with the two parallel protruding columns (A2) on one side of the outer wall of the electrolytic cell frame (A) for hanging.

6. The electrolytic cell frame conveying system as described in claim 3, characterized in that, The suspension device (7) also includes a support frame (72); The support frame (72) is mounted above the loading storage platform (81), the unloading storage platform (82) and the loading and unloading platform (1). A three-axis robotic arm (73) is mounted on the support frame (72), and a hanging gripper (711) is mounted on the three-axis robotic arm (73). The two hanging grippers (711) are positioned opposite each other and can move closer or further apart.

7. The electrolytic cell frame conveying system as described in claim 3, characterized in that, It also includes pads (9); The lower part of the pad (9) can be inserted between two adjacent stiffeners (A1) on the electrolytic cell frame (A), and the upper part of the pad (9) protrudes horizontally outward and rests on the circumferential frame of the electrolytic cell frame (A). The pad (9) inserted on one of the electrolytic cell frames (A) can support the upper electrolytic cell frame (A) to separate two adjacent electrolytic cell frames (A) stacked on top of each other.

8. The electrolytic cell frame conveying system as described in claim 7, characterized in that, The number of the pads (9) is at least two, and at least two of the pads (9) are inserted on both sides of the electrolytic cell frame (A); The pad (9) protrudes horizontally outward against the two sides of the adjacent stiffeners (A1) to form an insert (91), and the two inserts (91) can be inserted into the grooves (A11) on the top of the two adjacent stiffeners (A1) in a one-to-one correspondence.

9. The electrolytic cell frame conveying system as described in claim 1, characterized in that, A detector is installed on the conveying track (61) of the double-layer conveying platform (3) used to convey the electrolytic cell frame (A) after painting. The detector is used to obtain the painting quality status of the electrolytic cell frame (A) after painting.

10. The electrolytic cell frame conveying system as described in claim 1, characterized in that, Both the first lifting platform (2) and the second lifting platform (4) include a support frame and a winch installed on top of the support frame; The hoisting rope of the winch is connected to the conveying rail (61) of the first lifting platform (2) or the second lifting platform (4) to drive the conveying rail (61) to rise and fall. The number of winches is two sets, and the two sets of winches are arranged at intervals along the conveying direction of the electrolytic cell frame (A). The hoisting ropes of the two sets of winches are respectively wound around the two sets of rollers. The shafts of the two sets of rollers are respectively supported by bearings and rotatably connected to the cross-bracing frame at the top of the support frame.