Electrolytic bath transfer vehicle
By designing an electrolytic cell transfer vehicle, which adopts a forklift and receiving platform structure, combined with rollers and wheel sets, the problems of low handling efficiency and equipment wear of electrolytic cells are solved, achieving efficient and safe handling of electrolytic cells.
Patent Information
- Application Number
- CN202520475633.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-18
AI Technical Summary
Traditional electrolytic cells are inefficient to handle and easily damaged, and existing equipment suffers from time-consuming, labor-intensive, and equipment-wearing problems.
Design an electrolytic cell transfer vehicle that uses a forklift and receiving platform structure, combined with rollers and a roller assembly. The vehicle uses sensors to detect the position of the electrolytic cells, enabling smooth movement and neat placement, and reducing the risk of friction and scratches.
It improves the handling efficiency of electrolytic cells, reduces equipment wear and tear, lowers the risk of scratches and deformation caused by friction, and increases work efficiency and equipment lifespan.
Smart Images

Figure CN223921002U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electrolytic cell transfer equipment, and particularly relates to an electrolytic cell transfer vehicle. BACKGROUND
[0002] In the traditional electrolytic cell carrying process, manual forklifts or stackers are usually used for operation. However, this method has many limitations: first, the manual forklift or stacker can only take or place one electrolytic cell at a time, resulting in low work efficiency, especially in large-scale production or frequent carrying scenarios, the time-consuming and labor-intensive problem is particularly prominent. Secondly, since the electrolytic cell usually has a large volume and weight, the frequent friction between the fork teeth and the surface of the electrolytic cell can easily cause scratches, deformation or even damage to the surface of the electrolytic cell, which not only increases the cost of equipment maintenance and replacement, but also may cause production interruption and affect the overall work progress.
[0003] Therefore, there is an urgent need for a more efficient electrolytic cell carrying solution to improve work efficiency and reduce equipment wear and tear. CONTENT OF THE UTILITY MODEL
[0004] In order to improve work efficiency and reduce equipment wear and tear, the present application provides an electrolytic cell transfer vehicle.
[0005] The electrolytic cell transfer vehicle provided by the present application adopts the following technical scheme:
[0006] An electrolytic cell transfer vehicle, comprising a main body, a receiving member, a first driving member and a sensor, the main body has wheels, the receiving member comprises a fork plate and a receiving platform connected in sequence, the first driving member drives the receiving member to move along the vertical direction of the main body, the end face of the fork plate is inclined downward from the side close to the receiving platform to the side away from the receiving platform, the fork plate is provided with a first roller, the receiving platform is provided with a plurality of roller groups parallel to the first roller at intervals, a second roller perpendicular to the roller is arranged between adjacent roller groups, and the sensor is arranged on the side of the receiving platform away from the fork plate for sensing whether the electrolytic cell is in place.
[0007] By adopting the technical scheme, the first driving member drives the receiving member to move along the vertical direction to a position corresponding to the electrolytic cell to prepare for loading the electrolytic cell, the first roller shaft arranged on the fork plate and the plurality of rollers arranged on the receiving platform can realize smooth movement of the electrolytic cell in the carrying process, reduce frictional resistance, and thus speed up the carrying speed; the design of the downward inclined end face of the fork plate helps the electrolytic cell to naturally slide into the receiving platform during the transfer process, further improving the efficiency; the arrangement of the first roller shaft and the rollers can effectively reduce the direct contact between the electrolytic cell and the carrying equipment, and reduce the risk of scratching or deformation caused by friction; when the inductor senses that the electrolytic cell is in place on the receiving platform, the rollers stop working, and the second roller shaft drives the electrolytic cell to move along the width direction of the receiving member, so that the electrolytic cells are placed in order on the receiving platform, and when the receiving platform is full of electrolytic cells, the main body is transferred to other places, so that the working efficiency is improved and the equipment loss is reduced.
[0008] Optionally, each roller of the roller group is independently controlled.
[0009] By adopting the technical scheme, the electrolytic cell in place will not be moved by the rollers.
[0010] Optionally, the second roller shafts are independently controlled.
[0011] Optionally, the inductor is an infrared sensor.
[0012] Optionally, the first driving member is a hydraulic rod, one end of the hydraulic rod is installed on the main body, and the other end is installed on the bottom of the receiving member.
[0013] By adopting the technical scheme, the hydraulic rod can achieve the effect of saving labor when the receiving member moves up and down.
[0014] Optionally, the main body is provided with guide grooves on the opposite inner sides, and the receiving member is provided with guide wheels matched with the guide grooves.
[0015] By adopting the technical scheme, the up and down movement of the receiving member can be guided, and the guide wheels can reduce the frictional force during movement.
[0016] Optionally, the main body is further provided with a display screen.
[0017] Optionally, the side of the main body away from the receiving member is further provided with a handle.
[0018] In summary, the present application has the following beneficial technical effects:
[0019] 1. The first driving component drives the receiving component to move vertically to the position corresponding to the electrolytic cell, preparing to load the electrolytic cell. The first roller on the fork plate and several roller sets on the receiving platform enable smooth movement of the electrolytic cell during the handling process, reducing frictional resistance and thus speeding up the handling. The downward tilt design of the fork plate end face helps the electrolytic cell slide naturally into the receiving platform during the transfer process, further improving efficiency. The setting of the first roller and roller sets can effectively reduce the direct contact between the electrolytic cell and the handling equipment, reducing the risk of scratches or deformation caused by friction. When the sensor detects that the electrolytic cell is in place on the receiving platform, the roller set stops working, and the second roller drives the electrolytic cell to move along the width direction of the receiving component, so that the electrolytic cells are neatly placed on the receiving platform. When the receiving platform is full of electrolytic cells, they are transferred to other places by the main body, thereby improving work efficiency and reducing equipment wear.
[0020] 2. Independently controlled rollers and wheels prevent the electrolytic cell from being moved by the rollers once it is in place;
[0021] 3. The hydraulic rod can achieve the effect of saving effort when the supporting parts move up and down. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other embodiments can be obtained based on these drawings without creative effort.
[0023] In the diagram:
[0024] Figure 1 This is a schematic diagram of the structure of the electrolytic cell transfer vehicle according to an embodiment of this application;
[0025] Figure 2 This is a schematic diagram of the electrolytic cell transfer vehicle from another perspective, according to an embodiment of this application.
[0026] Figure 3 This is a schematic diagram of the electrolytic cell transfer vehicle without the receiving component, according to an embodiment of this application.
[0027] Reference numerals: 1. Main body; 2. Receiving component; 21. Fork plate; 22. Receiving platform; 3. First driving component; 4. Sensor; 5. Wheel; 6. First roller; 7. Roller assembly; 8. Second roller; 9. Connecting block; 10. Guide groove; 11. Guide wheel; 12. Connecting rod; 13. Display screen; 14. Handle. Detailed Implementation
[0028] The following is in conjunction with the appendix Figures 1-3The application is further described in detail.
[0029] The application discloses an electrolytic tank transfer vehicle. Referring to Figure 1 and Figure 2 , the electrolytic tank transfer vehicle comprises a main body 1, a receiving member 2, a first driving member 3 and a sensor 4. The main body 1 has wheels 5 and is used for transferring the electrolytic tank to different places. The receiving member 2 comprises a fork plate 21 and a receiving platform 22 connected in sequence. The fork plate 21 is used for forking the electrolytic tank, and the receiving platform 22 is used for receiving the electrolytic tank forked from the fork plate 21. The first driving member 3 drives the receiving member 2 to move along the vertical direction of the main body 1, and after the receiving member 2 is moved to a suitable position, the electrolytic tank is forked.
[0030] The end surface of the fork plate 21 is arranged to be inclined downward from the side close to the receiving platform 22 to the side away from the receiving platform 22, so that the fork plate 21 can fork the electrolytic tank conveniently. A plurality of first rollers 6 are arranged on the fork plate 21, the electrolytic tank is transported to the receiving platform 22 through the first rollers 6, a plurality of roller groups 7 parallel to the first rollers 6 are arranged on the receiving platform 22 at intervals, the roller groups 7 stop after driving the electrolytic tank to a certain position, a plurality of second rollers 8 perpendicular to the rollers are arranged between adjacent roller groups 7, and the second rollers 8 transport the electrolytic tank to one side and arrange the electrolytic tank in order. The sensor 4 is arranged on the side of the receiving platform 22 away from the fork plate 21. In some embodiments, the sensor 4 is an infrared sensor, which is used for sensing whether the electrolytic tank is in place, and the position of the electrolytic tank to be arranged on the receiving platform 22 is sensed through the sensor 4. This can improve work efficiency and reduce equipment loss.
[0031] In some embodiments, each roller of the roller group 7 is independently controlled. In this way, the electrolytic tank in place cannot be moved by the rollers.
[0032] In some embodiments, the second rollers 8 are independently controlled. In this way, the electrolytic tank in place cannot be continuously driven by the second rollers 8.
[0033] Referring to Figure 1 and Figure 3 , in some embodiments, the first driving member 3 is a hydraulic rod, one end of the hydraulic rod is installed on the main body 1, and the other end is installed on the bottom of the receiving member 2. In this embodiment, the bottom of the receiving member 2 is connected with a connecting block 9, and one end of the hydraulic rod is connected with the connecting block 9.
[0034] Referring to Figure 3 , in some embodiments, guide grooves 10 are formed in the opposite inner sides of the main body 1, and guide wheels 11 matched with the guide grooves 10 are arranged on the two sides of the receiving member 2. In this embodiment, the connecting block 9 is provided with a connecting rod 12, and the two ends of the connecting rod 12 are connected with the guide wheels 11. In this way, the up-and-down movement of the receiving member 2 can be guided, and the guide wheels 11 can reduce the friction during movement.
[0035] In some embodiments, the main body 1 is also provided with a display screen 13. The display screen 13 can observe the position of the electrolytic cell and related information, and the display screen 13 is also provided with control buttons.
[0036] In some embodiments, the main body 1 is also provided with a handle 14 on the side away from the receiving member 2.
[0037] The implementation principle of the electrolytic cell transfer vehicle according to the embodiment of the application is as follows: the first driving member 3 drives the receiving member 2 to move in the vertical direction to a position corresponding to the electrolytic cell to prepare for loading the electrolytic cell, the first roller shaft 6 provided on the fork plate 21 and the plurality of roller sets 7 on the receiving platform 22 can realize smooth movement of the electrolytic cell during the carrying process, reduce the frictional resistance, and thus speed up the carrying speed; the end surface of the fork plate 21 is designed to be inclined downward, which helps the electrolytic cell to naturally slide into the receiving platform 22 during the transfer process, further improving the efficiency; the arrangement of the first roller shaft 6 and the roller set 7 can effectively reduce the direct contact between the electrolytic cell and the carrying equipment, and reduce the risk of scratching or deformation caused by friction; when the inductor 4 senses that the electrolytic cell is in place on the receiving platform 22, the roller set 7 stops working, the second roller shaft 8 drives the electrolytic cell to move in the width direction of the receiving member 2, so that the electrolytic cells are placed in order on the receiving platform 22, and when the receiving platform 22 is full of electrolytic cells, the main body 1 is transferred to other places, so that the working efficiency is improved and the equipment loss is reduced.
[0038] The above is the exemplary embodiment disclosed by the application, but it should be noted that various changes and modifications can be made without departing from the scope of the embodiment disclosed by the application defined in the claims. The functions, steps and / or acts of the method claims described herein need not be performed in any particular order. Furthermore, although the elements of the embodiment disclosed by the application can be described or claimed in individual form, they can also be understood as plural, unless explicitly limited as singular.
[0039] It should be understood that, as used herein, the singular form "a", "an", and "the" are intended to include plural references, unless the context clearly indicates otherwise. It should also be understood that "and / or" as used herein means any and all possible combinations of one or more of the associated listed items. The above embodiment numbers of the embodiment disclosed by the application are only for description, and do not represent the advantages and disadvantages of the embodiments.
[0040] Those skilled in the art should understand that the above discussion of any embodiment is only exemplary, and is not intended to mean that the scope of the embodiments disclosed by the present application (including claims) is limited to these examples; under the idea of the embodiments of the present application, the above embodiments or technical features in different embodiments can also be combined, and there are many other changes of different aspects of the embodiments of the present application as above. In order to be brief, they are not provided in details. Therefore, any omission, modification, equivalent replacement, improvement, etc. made in the spirit and principle of the embodiments of the present application shall be included in the protection scope of the embodiments of the present application.
Claims
1. An electrolytic cell transfer vehicle, characterized in that: The device includes a main body, a receiving component, a first driving component, and a sensor. The main body has wheels. The receiving component includes a fork plate and a receiving platform connected in sequence. The first driving component drives the receiving component to move vertically along the main body. The end face of the fork plate is inclined downward along the side close to the receiving platform to the side away from the receiving platform. A first roller is provided on the fork plate. A plurality of roller groups parallel to the first roller are arranged at intervals on the receiving platform. A second roller perpendicular to the roller is provided between adjacent roller groups. The sensor is located on the side of the receiving platform away from the fork plate and is used to sense whether the electrolytic cell is in position.
2. The electrolytic cell transfer vehicle according to claim 1, characterized in that: Each roller in the roller assembly is controlled independently of the others.
3. The electrolytic cell transfer vehicle according to claim 1, characterized in that: The second rollers are controlled independently of each other.
4. The electrolytic cell transfer vehicle according to claim 1, characterized in that: The sensor is an infrared sensor.
5. The electrolytic cell transfer vehicle according to claim 1, characterized in that: The first driving component is a hydraulic rod, with one end of the hydraulic rod installed on the main body and the other end installed on the bottom of the receiving component.
6. The electrolytic cell transfer vehicle according to claim 1, characterized in that: The main body has guide grooves on its two opposing inner sides, and the receiving component has guide wheels on both sides that cooperate with the guide grooves.
7. The electrolytic cell transfer vehicle according to claim 1, characterized in that: The main body is also equipped with a display screen.
8. The electrolytic cell transfer vehicle according to claim 1, characterized in that: A handle is also provided on the side of the main body away from the receiving component.