Arrangement device
By designing an automated arrangement device, the problem of low efficiency in manually placing cathode and anode plates sequentially was solved, achieving efficient and reliable plate arrangement and transfer, and improving the production efficiency of the electrolytic cell.
Patent Information
- Application Number
- CN202520328151.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-02-27
AI Technical Summary
In existing electrolytic cells, the cathode and anode plates are placed manually in sequence, which is inefficient.
Design an arrangement device including a conveying mechanism, a stabilizing plate, an arrangement mechanism, a correction component, a spacing adjustment mechanism, and a feedback component to efficiently arrange the electrode plates in an automated manner, reduce the swaying amplitude, and ensure equidistant arrangement.
It improves the efficiency of electrode arrangement and the reliability of device operation, reduces manual intervention, and increases production efficiency.
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Figure CN223865770U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of automation equipment technology, and specifically relates to an arrangement device. Background Technology
[0002] Electrolysis is a process that uses direct current to pass through an electrolyte solution or molten electrolyte, causing reduction and oxidation reactions at the cathode and anode, respectively, to achieve the separation, purification, and synthesis of substances. In electrolysis, several cathode plates and several anode plates are alternately arranged in an electrolytic cell. Traditionally, the cathode and anode plates are arranged manually in sequence, which is inefficient. Utility Model Content
[0003] The technical problem to be solved by this application is that the existing electrolytic cells have low efficiency because the cathode plates and anode plates are placed manually in sequence. In order to solve this technical problem, an arrangement device that can improve the arrangement efficiency of cathode plates and anode plates is provided.
[0004] The technical solution proposed in this application is as follows:
[0005] An arrangement device, comprising:
[0006] Base;
[0007] A conveying mechanism, disposed on the base, is used to convey the electrode plate so that the electrode plate can be conveyed to a first position along a first direction and from the first position to a second position along a second direction;
[0008] A stabilizing plate is disposed in the conveying mechanism and is capable of contacting the electrode plate that is conveyed to the first position and wobbles.
[0009] An arrangement mechanism is disposed on the base, the arrangement mechanism is capable of acquiring the electrode plate conveyed to the second position, and conveying the electrode plate along the first direction;
[0010] The first direction and the second direction are set at an angle; the electrode plate is suspended from the conveying mechanism and the arranging mechanism by a suspension rod.
[0011] Using the aforementioned arrangement device, the conveying mechanism transports the electrode plates to a first position, where a stabilizing plate abuts against the swaying electrode plates to reduce their swaying amplitude. The conveying mechanism then transports the electrode plates to a second position, where the arrangement mechanism acquires the electrode plates and continues transporting them along a first direction to arrange the electrode plates in that direction. Compared to manual arrangement, this method effectively improves work efficiency. Furthermore, the stabilizing plate reduces the swaying amplitude of the electrode plates, ensuring stable transport and improving the reliability of the arrangement device.
[0012] Furthermore, the aligning device also includes a correction component, which is disposed on the base and can contact the suspension rod on the aligning mechanism to adjust the position of the suspension rod in a third direction perpendicular to the first direction.
[0013] Furthermore, the correction component includes a first guide block and a second guide block, which are disposed on the base and located on both sides of the arrangement mechanism. The first guide block and the second guide block are both inclined relative to the first direction to form a guide channel for the suspension rod to pass through.
[0014] The dimension of the guide channel in the third direction gradually decreases along the first direction, and the minimum dimension of the guide channel is the same as the length of the suspension rod.
[0015] Furthermore, the stabilizing plate is inclined relative to the vertical direction.
[0016] Furthermore, the arranging device also includes an adjusting mechanism disposed on the base for adjusting the position of the suspension rod on the arranging mechanism in the first direction.
[0017] Furthermore, the arrangement mechanism includes two arrangement chains and multiple stop bars. The two arrangement chains are arranged at intervals along a third direction perpendicular to the first direction. Multiple stop bars are provided on the outer side of each arrangement chain. The multiple stop bars are evenly spaced along the length direction of the arrangement chain, and any two adjacent stop bars form a placement groove. The multiple placement grooves on the two arrangement chains correspond one-to-one, and the two ends of the suspension rod extend into the corresponding two placement grooves respectively.
[0018] The adjusting mechanism includes two sets of adjusting components, which are spaced apart on the base along the third direction and can respectively push the two ends of the suspension rod to move in the opposite direction to the first direction.
[0019] Furthermore, the adjustable distance assembly includes a mounting block and an elastic lever. The mounting block is disposed on the base, and the elastic lever is mounted on the mounting block. The end of the elastic lever away from the mounting block can contact the suspension rod and push the suspension rod to move.
[0020] Furthermore, the arranging device also includes a feedback component and a controller, the feedback component being disposed on the base, and the controller being electrically connected to the feedback component and the arranging mechanism;
[0021] During the process of the conveying mechanism conveying the electrode plate from the first position to the second position, the suspension rod can contact and trigger the feedback component.
[0022] Furthermore, the feedback component includes a mounting base, a rotating rod, a movable piece, and a trigger. The mounting base is disposed on the base, the rotating rod is rotatably connected to the mounting base about an axis perpendicular to the second direction, the movable piece is connected to one end of the rotating rod, and the trigger is electrically connected to the controller.
[0023] During the rotation of the rotating rod, it can pass through the normal position and the triggered position, and the rotating rod has a rotational tendency to rotate back to the normal position;
[0024] During the process of the conveying mechanism conveying the electrode plate from the first position to the second position, the suspension rod can abut and separate from the movable piece, and when abutting the movable piece, it pushes the rotating rod to rotate to the trigger position so that the rotating rod triggers the trigger.
[0025] Furthermore, the middle position of the rotating rod is connected to the mounting base;
[0026] The feedback component also includes a balancing element connected to the end of the rotating rod away from the movable piece, and its position can be adjusted along the length of the rotating rod.
[0027] In summary, the arrangement device provided in this application has at least the following advantages:
[0028] 1. The electrode plates are conveyed to the arranging mechanism by the conveying mechanism, and then arranged by the arranging mechanism. The arranged electrode plates are then transferred to the electrolytic cell by the hoisting mechanism, which has high working efficiency.
[0029] 2. The stabilizing plate can reduce the swaying amplitude of the electrode plate conveyed to the first position, prevent the electrode plate from falling off or contacting the electrode plate on the arrangement mechanism, and improve the reliability of the device operation.
[0030] 3. The position of the correction component on the third-direction adjustment and arrangement mechanism of the electrode plate is set so that the electrode plate is aligned in the first direction, eliminating the need for manual adjustment and improving efficiency;
[0031] 4. An adjustable spacing mechanism is set up to adjust the spacing of the electrode plates on the arrangement mechanism, so that the electrode plates are arranged at equal intervals, eliminating the need for manual adjustment and improving efficiency. Attached Figure Description
[0032] The accompanying drawings are provided to further understand this application and form part of the specification. They are used together with the embodiments of this application to explain this application and do not constitute a limitation thereof.
[0033] Figure 1 This is a schematic diagram of the arrangement device provided in one embodiment of the present application;
[0034] Figure 2 for Figure 1 A schematic diagram of the feedback component in the arrangement device shown;
[0035] Figure 3 for Figure 1 A schematic diagram of the spacing adjustment component in the arrangement device shown.
[0036] Label Explanation:
[0037] 100. Arrangement device; 210. Electrode plate; 220. Suspension rod; 110. Base; 120. Conveying mechanism; 121. Conveying chain; 122. Bracket; 130. Arrangement mechanism; 140. Stabilizing plate; 150. Feedback component; 151. Mounting base; 152. Rotating rod; 153. Movable plate; 154. Trigger; 155. Balancing component; 160. Gap adjustment component; 161. Mounting block; 162. Elastic lever; 170. Correction component. Detailed Implementation
[0038] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0039] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the equipment or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0040] This application discloses an arrangement device that can sequentially arrange multiple cathode plates and / or multiple anode plates as required. After arranging the cathode plates and / or anode plates, the whole device is transferred to the electrolytic cell, which can effectively improve the arrangement efficiency and thus improve the production efficiency.
[0041] like Figure 1As shown, in one embodiment, the arranging device 100 includes a base 110, a conveying mechanism 120, and an arranging mechanism 130. Both the conveying mechanism 120 and the arranging mechanism 130 are disposed on the base 110, with the arranging mechanism 130 located downstream of the conveying mechanism 120. The conveying mechanism 120 conveys the electrode plates 210 so that the electrode plates 210 can be conveyed along a first direction to a first position, and from the first position to a second position along a second direction. The arranging mechanism 130 can acquire the electrode plates 210 conveyed to the second position and continue conveying the electrode plates 210 along the first direction, thereby arranging multiple electrode plates 210 along the first direction via the arranging mechanism 130.
[0042] In this embodiment, the electrode plate 210 is suspended from the conveying mechanism 120 and the arranging mechanism 130 via a suspension rod 220. Thus, the electrode plates 210 arranged on the arranging mechanism 130 are also suspended from the suspension rod 220. They can then be transferred and hung on the electrolytic cell via a hoisting mechanism, making operation more convenient. Furthermore, in this embodiment, the first direction and the second direction are set at an angle, specifically... Figure 1 In the embodiment shown, the first direction is perpendicular to the second direction, and the second direction is a vertically downward direction.
[0043] It should be noted that in this embodiment, the electrode plate 210 can be either an anode plate 210 or a cathode plate 210. In this case, the upstream of the conveying mechanism 120 can be a production line for the anode plate 210 or the cathode plate 210. That is, the completed anode plate 210 or cathode plate 210 is conveyed to the arranging mechanism 130 through the conveying mechanism 120 and arranged by the arranging mechanism 130. Alternatively, the electrode plate 210 can also include both an anode plate 210 and a cathode plate 210. The conveying mechanism 120 alternately acquires and conveys the anode plate 210 and the cathode plate 210, and then the arranging mechanism 130 alternately arranges the anode plate 210 and the cathode plate 210. After the arrangement is completed, the entire plate is transferred to the electrolytic cell.
[0044] It is also understood that if the conveying mechanism 120 is used to convey either the anode plate 210 or the cathode plate 210, two arrangement devices 100 can be provided, one for arranging the anode plate 210 and the other for arranging the cathode plate 210. The arranged anode plate 210 and cathode plate 210 are transferred to the electrolytic cell by a hoisting mechanism and are arranged alternately at intervals.
[0045] Furthermore, it should be noted that the arranging mechanism 130 can continue to convey the electrode plates 210 along the first direction. Therefore, the spacing of the electrode plates 210 on the arranging mechanism 130 can be controlled by controlling the conveying cycle of the conveying mechanism 120 and the arranging mechanism 130. For example, both the conveying mechanism 120 and the arranging mechanism 130 can be driven by stepper motors to control the conveying cycle.
[0046] Furthermore, the arranging device 100 also includes a stabilizing plate 140, which is disposed on the conveying mechanism 120 and can contact the electrode plate 210 that is conveyed to the first position and is shaking, thereby reducing the shaking amplitude of the electrode plate 210 and making the conveying of the electrode plate 210 more stable.
[0047] It needs to be explained that, in Figure 1 In the illustrated embodiment, the electrode plate 210 is suspended from the conveying mechanism 120 by a suspension rod 220. Therefore, when the electrode plate 210 is conveyed to the first position along the first direction, it will sway due to its inertia. If the swaying amplitude is too large, the electrode plate 210 may fall off the conveying mechanism 120 or collide with the electrode plates 210 on the lower arranging mechanism 130 during the process of conveying the electrode plate 210 from the first position to the second position, thus affecting the subsequent arrangement of the electrode plates 210. Therefore, in this embodiment, a stabilizing plate 140 is provided on the conveying mechanism 120. The stabilizing plate 140 contacts the swaying electrode plate 210, which can effectively reduce the swaying amplitude of the electrode plate 210 and improve the stability of the conveying.
[0048] Using the aforementioned arranging device 100, the conveying mechanism 120 transports the electrode plate 210 to a first position, where the stabilizing plate 140 abuts against the swaying electrode plate 210 to reduce its swaying amplitude. Subsequently, the conveying mechanism 120 transports the electrode plate 210 to a second position, and the arranging mechanism 130 acquires the electrode plate 210 at the second position and continues transporting it along a first direction to arrange the electrode plates 210 along that direction. Compared to manual arranging, this method effectively improves work efficiency. Furthermore, the stabilizing plate 140 reduces the swaying amplitude of the electrode plate 210, ensuring stable transport and improving the reliability of the arranging device 100.
[0049] Furthermore, the stabilizing plate 140 is tilted relative to the vertical direction so that the contact between the swaying electrode 210 and the stabilizing plate 140 is surface contact, preventing damage to the electrode 210. It should be noted that to ensure surface contact between the stabilizing plate 140 and the electrode 210, calculations can be made based on the position of the stabilizing plate 140 and the tilt angle relative to the vertical direction when the electrode 210 rotates to the position of the stabilizing plate 140. Specifically, it is sufficient to ensure that the electrode 210 is parallel to the stabilizing plate 140 when it rotates to the position of the stabilizing plate 140. Specifically, in Figure 1 In the embodiment shown, when the electrode plate 210 is in the first position and stationary relative to the conveying mechanism 120, the electrode plate 210 is in a vertical state, and the distance between the electrode plate 210 and the stabilizing plate 140 is 15-30mm.
[0050] In one embodiment, the conveying mechanism 120 includes two conveying chains 121 and multiple limiting members. The two conveying chains 121 are spaced apart along a third direction perpendicular to the first and second directions. Multiple limiting members are provided on the outer side of each conveying chain 121, and these limiting members are evenly spaced along the length of the conveying chain 121. Any two adjacent limiting members enclose a conveying groove, and the multiple conveying grooves on the two conveying chains 121 correspond one-to-one. Thus, the two ends of the suspension rod 220 can be placed in the corresponding two conveying grooves, allowing the electrode plate 210 to be hung on the conveying mechanism 120 via the suspension rod 220 and conveyed by the conveying mechanism 120. Specifically... Figure 1 In the embodiment shown, the first position is located at the top of the conveying mechanism 120. The conveying mechanism 120 can also lift the electrode plate 210 located below to the top of the conveying mechanism 120, then translate the electrode plate 210 to the first position along the first direction, and then lower the electrode plate 210 to the second position.
[0051] Furthermore, there are two bases 110, which are spaced apart along a third direction, and two conveyor chains 121 are respectively installed on the two bases 110. Specifically... Figure 1 In the embodiment shown, the conveying mechanism 120 further includes two supports 122, which are respectively disposed on two bases 110, and two conveying chains 121 are respectively disposed on the two supports 122.
[0052] In one embodiment, the arranging device 100 further includes a feedback component 150 and a controller. The feedback component 150 is disposed on the base 110, and the controller is electrically connected to the feedback component 150 and the arranging mechanism 130. During the process of the conveying mechanism 120 conveying the electrode plate 210 from the first position to the second position, the suspension rod 220 can contact and trigger the feedback component 150. In this way, the feedback component 150 can determine whether the electrode plate 210 has been conveyed to the second position, avoiding the omission of the electrode plate 210.
[0053] It should be explained that, as described above, the arranging mechanism 130 and the conveying mechanism 120 convey the electrode plates 210 at a suitable rhythm so that the electrode plates 210 are arranged along the upper edge of the arranging mechanism 130. If the arranging mechanism 130 needs to arrange n electrode plates 210, under normal circumstances, the conveying mechanism 120 and the arranging mechanism 130 can operate n times at a suitable rhythm. However, if the conveying mechanism 120 fails to convey an electrode plate 210 to the second position in a certain rhythm, and the arranging mechanism 130 operates normally, one electrode plate 210 will be missed, and the arranging mechanism 130 will only arrange n-1 electrode plates 210 after operating n times. In this embodiment, by setting a feedback component 150, if the feedback component 150 is not triggered in a certain operation of the conveying mechanism 120, it indicates that there is no electrode plate 210 at the conveying slot corresponding to the feedback component 150 on the conveying mechanism 120 at this time. After the controller obtains this information, when the conveying trough moves to the second position, the controller controls the arranging mechanism 130 not to perform the conveying action in this cycle until the subsequent conveying mechanism 120 conveys the electrode plate 210 to the second position, and then the controller controls the arranging mechanism 130 to continue the cycle action.
[0054] Please see Figure 2 Furthermore, the feedback component 150 includes a mounting base 151, a rotating rod 152, a movable piece 153, and a trigger 154. The mounting base 151 is disposed on the base 110, the rotating rod 152 is rotatably connected to the mounting base 151 about an axis perpendicular to the first direction and the second direction, the movable piece 153 is connected to one end of the rotating rod 152, and the trigger 154 is electrically connected to the controller.
[0055] During its rotation, the rotating rod 152 can traverse between a normal position and a triggered position, and it tends to rotate back to the normal position. During the process of the conveying mechanism 120 conveying the electrode plate 210 from the first position to the second position, the suspension rod 220 can abut and separate from the movable piece 153. When abutting the movable piece 153, the suspension rod 220 pushes the rotating rod 152 to the triggered position, thereby triggering the trigger 154. This ensures that the conveying mechanism 120 has conveyed the electrode plate 210 to the second position, preventing the electrode plate 210 from being missed. Simultaneously, it is certain that after the suspension rod 220 separates from the movable piece 153, the rotating rod 152 will rotate back to the normal position to ensure it is triggered by subsequent suspension rods 220.
[0056] Furthermore, the middle position of the rotating rod 152 is connected to the mounting base 151. The feedback assembly 150 also includes a balancer 155, which is connected to the end of the rotating rod 152 away from the movable piece 153 and can be adjusted in position along the length of the rotating rod 152. Thus, the rotating rod 152 forms a lever structure with its connection point to the mounting base 151 as the fulcrum, and the torque on the side of the rotating rod 152 with the balancer 155 is greater than the torque on the side with the movable piece 153, so that the rotating rod 152 tends to rotate towards its normal position under the action of gravity. Simultaneously, since the balancer 155 can be adjusted in position along the length of the rotating rod 152, the torque on the side with the balancer 155 can be adjusted, thereby adjusting the speed at which the rotating rod 152 rotates from the triggered position back to the normal position. Optionally, the balancer 155 is a nut, and the nut is threadedly connected to the rotating rod 152.
[0057] It should be noted that in this embodiment, a limiting structure is provided on the mounting base 151 or the base 110. When the rotating rod 152 rotates to its normal position under the action of gravity, the rotating rod 152 abuts against the limiting structure to maintain its normal position. In other embodiments, a reset component, such as a reset spring or a spring sheet, can be provided. The reset component is connected to the rotating rod 152 to provide a force for the rotating rod 152 to rotate back to its normal position. By adjusting the reset range of the reset component, the rotation of the rotating rod 152 between its normal position and the triggered position can be controlled.
[0058] In one embodiment, the arranging device 100 further includes an adjusting mechanism disposed on the base 110, which is used to adjust the position of the suspension rods 220 on the arranging mechanism 130 in the first direction, so that the spacing between all the suspension rods 220 after the adjustment is the same, thereby realizing the equidistant arrangement of the electrode plates 210.
[0059] Furthermore, the arrangement mechanism 130 includes two arrangement chains and multiple stop bars. The two arrangement chains are arranged at intervals in the third direction. Multiple stop bars are provided on the outer side of each arrangement chain. The multiple stop bars are evenly spaced along the length of the arrangement chain, and any two adjacent stop bars enclose a placement groove. The multiple placement grooves on the two arrangement chains correspond one-to-one, and the two ends of the suspension rod 220 extend into the corresponding two placement grooves respectively.
[0060] Understandably, the two arranging chains are located between the two bases 110, and in the third direction, they are also located between the two conveying chains 121. This ensures that when the electrode plate 210 moves to the second position, the suspension rod 220 in the conveying groove can enter the placement groove, thereby ensuring that the arranging mechanism 130 can acquire the electrode plate 210 conveyed to the second position by the conveying mechanism 120. Specifically, when the conveying mechanism 120 conveys the electrode plate 210 to the second position, the conveying chain 121 remains stationary, the arranging chains move, transferring the electrode plate 210 to the arranging mechanism 130, and then the conveying chain 121 moves again to continue conveying the subsequent electrode plates 210 to the second position.
[0061] Furthermore, the adjustment mechanism includes two sets of adjustment components 160, which are spaced apart along a third direction on the base 110, specifically on two separate bases 110. The two sets of adjustment components 160 can respectively push both ends of the suspension rod 220 in the opposite direction to the first direction, thereby pushing the suspension rod 220 to abut against the stop bars. Because the stop bars are evenly spaced, the suspension rods 220 are thus evenly spaced after adjustment.
[0062] Please see Figure 3 In one embodiment, the pitch adjustment assembly 160 includes a mounting block 161 and an elastic lever 162. The mounting block 161 is disposed on the base 110, and the elastic lever 162 is mounted on the mounting block 161. The end of the elastic lever 162 away from the mounting block 161 can contact the suspension rod 220 and push the suspension rod 220 to move in the opposite direction to the first direction, so that the suspension rod 220 moves to abut against the stop bar. Subsequently, the suspension rod 220 continues to move along the first direction under the action of the stop bar. Since the elastic lever 162 is elastic, the suspension rod 220 pushes the elastic lever 162 to deform, so that the suspension rod 220 disengages from the elastic lever 162 and continues to be conveyed along the first direction.
[0063] In one embodiment, the aligning device 100 further includes a correction component 170, which is disposed on the base 110 and can contact the suspension rod 220 on the aligning mechanism 130 to adjust the position of the suspension rod 220 in a third direction, ensuring that the electrode plates 210 on the aligning mechanism 130 are aligned in the first direction. Specifically... Figure 1 In the embodiment shown, the correction component 170 is located downstream of the adjustment mechanism, that is, the correction component 170 is used to adjust the position of the suspension rod 220 after adjustment.
[0064] In one embodiment, the correction assembly 170 includes a first guide block and a second guide block. The first and second guide blocks are respectively disposed on two bases 110 and located on both sides of the alignment mechanism 130. Both the first and second guide blocks are inclined relative to a first direction to form a guide channel for the suspension rod 220 to pass through. Simultaneously, the dimension of the guide channel in the third direction gradually decreases along the first direction, and the minimum dimension of the guide channel is the same as the length of the suspension rod 220, so that after correction through the guide channel, the suspension rod 220 is aligned in the first direction.
[0065] Specifically, the first guide block and the second guide block each have a first inclined surface and a second inclined surface on their opposite sides. Both the first and second inclined surfaces are inclined relative to the first direction to form a guide channel for the suspension rod 220 to pass through. During the conveying of the suspension rod 220 on the arrangement mechanism 130 along the first direction, the end of the suspension rod 220 can contact the first inclined surface and / or the second inclined surface, thereby adjusting its position along the third direction under the guidance of the first inclined surface and / or the second inclined surface.
[0066] To facilitate understanding of the technical solution of this application, this document combines... Figure 1 The working process of the arranging device 100 in the above embodiments will be described as follows:
[0067] Initially, the electrode plate 210 is conveyed into the conveying groove of the conveying mechanism 120. As the conveying chain 121 rotates, the electrode plate 210 is first lifted to the top of the conveying chain 121, and then conveyed horizontally to the first position. When moving to the first position, the swaying electrode plate 210 contacts the stabilizing plate 140, and the swaying amplitude of the electrode plate 210 is reduced under the action of the stabilizing plate 140. Next, the conveying chain 121 continues to convey the electrode plate 210 to the second position. During this process, the suspension rod 220 can contact and trigger the feedback component 150. After moving to the second position, the suspension rod 220 also extends into the placement groove on the arranging chain, and the arranging chain moves to transfer the electrode plate 210 onto the arranging mechanism 130.
[0068] Next, the arranging chain continues to convey the electrode plates 210 along the first direction. During the conveying process, the spacing adjustment mechanism first cooperates with the stop bars on the arranging chain to adjust the spacing of the suspension rods 220, so that the electrode plates 210 are evenly spaced after the spacing adjustment. After the spacing adjustment is completed, the position of the suspension rods 220 on the arranging chain is adjusted in the third direction by the correction component 170, so that the suspension rods 220 are aligned in the first direction. After the preset number of electrode plates 210 are arranged, the multiple arranged electrode plates 210 are transferred to the electrolytic cell by the hoisting mechanism.
[0069] In summary, the arranging device 100 provided in this application has at least the following advantages:
[0070] 1. The electrode plate 210 is conveyed to the arranging mechanism 130 through the conveying mechanism 120, and then arranged by the arranging mechanism 130. The arranged electrode plate 210 can be transferred to the electrolytic cell by the hoisting mechanism, which has high working efficiency.
[0071] 2. The stabilizing plate 140 can reduce the swaying amplitude of the electrode plate 210 conveyed to the first position, prevent the electrode plate 210 from falling off or contacting the electrode plate 210 on the arranging mechanism 130, and improve the reliability of the device operation.
[0072] 3. The position of the correction component 170 on the electrode plate 210 of the third-direction adjustment and arrangement mechanism 130 is set so that the electrode plate 210 is aligned in the first direction, eliminating the need for manual adjustment and improving efficiency.
[0073] 4. An adjustment mechanism is set up to adjust the spacing of the electrode plates 210 on the arrangement mechanism 130, so that the electrode plates 210 are arranged at equal intervals, eliminating the need for manual adjustment and improving efficiency.
[0074] Although embodiments of this application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An arrangement device, characterized in that, include: Base; A conveying mechanism, disposed on the base, is used to convey the electrode plate so that the electrode plate can be conveyed to a first position along a first direction and from the first position to a second position along a second direction; A stabilizing plate is disposed in the conveying mechanism and is capable of contacting the electrode plate that is conveyed to the first position and wobbles. An arrangement mechanism is disposed on the base, the arrangement mechanism is capable of acquiring the electrode plate conveyed to the second position, and conveying the electrode plate along the first direction; The first direction and the second direction are set at an angle; the electrode plate is suspended from the conveying mechanism and the arranging mechanism by a suspension rod.
2. The arrangement device according to claim 1, characterized in that, It also includes a correction component, which is disposed on the base and can contact the suspension rod on the arrangement mechanism to adjust the position of the suspension rod in a third direction perpendicular to the first direction.
3. The arrangement device according to claim 2, characterized in that, The correction component includes a first guide block and a second guide block. The first guide block and the second guide block are disposed on the base and are respectively located on both sides of the arrangement mechanism. The first guide block and the second guide block are both inclined relative to the first direction to form a guide channel for the suspension rod to pass through. The dimension of the guide channel in the third direction gradually decreases along the first direction, and the minimum dimension of the guide channel is the same as the length of the suspension rod.
4. The arranging device according to claim 1, characterized in that, The stabilizing plate is set at an angle relative to the vertical direction.
5. The arranging device according to claim 1, characterized in that, It also includes an adjustment mechanism, which is disposed on the base and is used to adjust the position of the suspension rod on the arrangement mechanism in the first direction.
6. The arranging device according to claim 5, characterized in that, The arrangement mechanism includes two arrangement chains and multiple stop bars. The two arrangement chains are arranged at intervals along a third direction perpendicular to the first direction. Multiple stop bars are provided on the outer side of each arrangement chain. The multiple stop bars are evenly spaced along the length direction of the arrangement chain, and any two adjacent stop bars form a placement groove. The multiple placement grooves on the two arrangement chains correspond one-to-one, and the two ends of the suspension rod extend into the corresponding two placement grooves respectively. The adjusting mechanism includes two sets of adjusting components, which are spaced apart on the base along the third direction and can respectively push the two ends of the suspension rod to move in the opposite direction to the first direction.
7. The arranging device according to claim 6, characterized in that, The adjustable distance assembly includes a mounting block and an elastic lever. The mounting block is disposed on the base, and the elastic lever is mounted on the mounting block. The end of the elastic lever away from the mounting block can contact the suspension rod and push the suspension rod to move.
8. The arranging device according to claim 1, characterized in that, It also includes a feedback component and a controller, wherein the feedback component is disposed on the base and the controller is electrically connected to the feedback component and the arrangement mechanism; During the process of the conveying mechanism conveying the electrode plate from the first position to the second position, the suspension rod can contact and trigger the feedback component.
9. The arranging device according to claim 8, characterized in that, The feedback component includes a mounting base, a rotating rod, a movable piece, and a trigger. The mounting base is disposed on the base. The rotating rod is rotatably connected to the mounting base about an axis perpendicular to the second direction. The movable piece is connected to one end of the rotating rod. The trigger is electrically connected to the controller. During the rotation of the rotating rod, it can pass through the normal position and the triggered position, and the rotating rod has a rotational tendency to rotate back to the normal position; During the process of the conveying mechanism conveying the electrode plate from the first position to the second position, the suspension rod can abut and separate from the movable piece, and when abutting the movable piece, it pushes the rotating rod to rotate to the trigger position so that the rotating rod triggers the trigger.
10. The arranging device according to claim 9, characterized in that, The middle position of the rotating rod is connected to the mounting base; The feedback component also includes a balancing element connected to the end of the rotating rod away from the movable piece, and its position can be adjusted along the length of the rotating rod.