Pulley type labor-saving device convenient to move and used for injecting electrolyte
By designing a pulley-type labor-saving device that is easy to move, using the principles of pulleys and prying rods, the operation inconvenience and safety risks of scooping electrolytes in the electrolytic workshop are solved, and safe and efficient electrolyte scooping is achieved to meet the height needs of different construction personnel.
Patent Information
- Application Number
- CN202422495400.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-15
AI Technical Summary
The electrolyte scoops in the electrolyte workshop frequently and has high labor intensity, is inconvenient to operate, poses safety risks, and is difficult to meet the height needs of different construction personnel.
A pulley-type labor-saving device that is easy to move is designed, including a scoop handle, a support structure and a length adjustment structure. The principles of pulleys and prying rods are used to reduce the operation difficulty, and the pulleys are supported by the support platform and U-shaped seat to achieve safe and efficient electrolyte scooping.
The safety and efficiency of electrolyte scoop is achieved, the labor intensity of construction workers is reduced, the height needs of different construction workers are adapted to the height needs and the work efficiency is improved.
Smart Images

Figure CN223254854U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrolyte processing, in particular to a pulley-type labor-saving device which is easy to move and used for beating electrolyte. Background Art
[0002] Currently, electrolyte scooping in electrolysis workshops is a frequent and entirely manual operation. The large scoops used to scoop electrolyte are relatively heavy and difficult to maneuver. Furthermore, they must be operated close to the electrolytic cells, which can easily cause overlap and increase safety risks. Furthermore, the handles of the scoops in electrolysis workshops are fixed in length. Operators of varying heights have varying requirements for handle lengths, making operation extremely inconvenient and labor-intensive. Manual scooping, however, is labor-intensive and cannot be performed for extended periods, resulting in low efficiency.
[0003] Therefore, the present application provides a pulley-type labor-saving device that is easy to move for injecting electrolyte to solve the above problems. Utility Model Content
[0004] In response to the technical problems existing in the background technology, the purpose of the present utility model is to provide a pulley-type labor-saving device that is easy to move for scooping electrolytes. The overall weight of the device is relatively light, easy to move, and can be safe, efficient, and convenient, meeting the on-site operation requirements of scooping electrolytes in the electrolysis workshop.
[0005] In order to achieve the above purpose, the technical solution provided by the present utility model is:
[0006] A pulley-type labor-saving device for beating electrolytes that is easy to move, comprising a ladle handle, a large ladle fixedly arranged at one end of the ladle handle, and a handle arranged at the end of the ladle handle away from the large ladle;
[0007] A supporting structure for supporting the ladle handle is provided at the bottom of the ladle handle, and the supporting structure includes a supporting platform, a bracket fixedly arranged at the bottom of the supporting platform, a U-shaped seat arranged at the top of the supporting platform, and a pulley rotatably arranged on the U-shaped seat for making the ladle handle move back and forth in a straight line; an adjustment structure for adjusting the length of the ladle handle is provided at the end of the ladle handle away from the large ladle.
[0008] Preferably, a rotating pin is fixedly connected to the bottom end of the U-shaped seat, and a bearing fixedly connected to the supporting platform for horizontally rotating the rotating pin is sleeved on the bottom of the rotating pin.
[0009] Preferably, the bracket member includes a first support rod symmetrically welded on one side of the bottom end of the support platform and a second support rod symmetrically welded on the other side of the bottom end of the support platform, and a fixed rod fixedly welded between adjacent first support rods and adjacent second support rods and between the first support rod and the second support rod.
[0010] Preferably, the first support rod is arranged perpendicular to the support platform, and the bottom of the second support rod is arranged at an angle of 45° to the support platform in a direction away from the first support rod.
[0011] Preferably, the adjustment structure includes an extension rod inserted into the end of the ladle handle away from the large ladle, a first through hole opened on the ladle handle, a second through hole equidistantly opened on the extension rod and used in conjunction with the first through hole, and a fixing pin inserted into the first through hole and the second through hole, and the handle is fixedly connected to the end of the extension rod away from the ladle handle.
[0012] The utility model has the following advantages and beneficial effects:
[0013] The utility model is relatively light in weight and easy to move, and can be safe, efficient and convenient, meeting the on-site operation requirements of scooping electrolytes in the electrolysis workshop. When using a large scoop to scoop electrolytes, the scoop handle is placed on the pulley, and the pulley can be supported by the cooperation of the bracket, the support platform and the U-shaped seat, so that the pulley can provide point-to-surface support for the scoop handle. The design using the pry bar principle saves the physical strength of construction workers, improves work efficiency and can also ensure the safety of construction. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a three-dimensional structural diagram of a pulley-type labor-saving device that is easy to move for injecting electrolyte provided by the utility model;
[0015] Figure 2 This is a schematic diagram of the support structure of a pulley-type labor-saving device that is easy to move for injecting electrolyte provided by the utility model;
[0016] Figure 3 The utility model provides a schematic diagram of the adjustment structure of a pulley-type labor-saving device that is easy to move for injecting electrolyte.
[0017] Icons: 1-handle; 2-large ladle; 3-handle; 41-support platform; 42-bracket; 421-first support rod; 422-second support rod; 423-fixing rod; 43-U-shaped seat; 431-rotating pin; 4311-bearing; 44-pulley; 5-adjustment structure; 51-fixing sleeve; 52-first through hole; 53-second through hole; 54-fixing pin. DETAILED DESCRIPTION
[0018] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in combination with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments.
[0019] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are also within the scope of protection of the present invention.
[0020] Example 1
[0021] This embodiment provides a pulley-type labor-saving device that is easy to move for injecting electrolyte, such as Figure 1-3 As shown, the labor-saving device includes a ladle handle 1, a large ladle 2 fixed at one end of the ladle handle 1, and a handle 3 arranged at the end of the ladle handle 1 away from the large ladle 2; when in use, the ladle handle 1 is held and the electrolyte in the electrolysis workshop is scooped out through the large ladle 2.
[0022] In order to facilitate the support of the ladle handle 1 and save the physical strength of the construction workers, a supporting structure for supporting the ladle handle 1 is provided at the bottom of the ladle handle 1. The supporting structure includes a supporting platform 41, a bracket 42 fixedly arranged at the bottom of the supporting platform 41, a U-shaped seat 43 arranged on the top of the supporting platform 41, and a pulley 44 rotatably arranged on the U-shaped seat 43 for making the ladle handle 1 move back and forth in a straight line. When in use, it is only necessary to place the ladle handle 1 on the pulley 44 to facilitate the ladle handle 1 to move back and forth in a straight line on the pulley 44, thereby reducing the friction between the ladle handle 1 and the U-shaped seat 43. When using the large ladle 2 to scoop electrolyte, the ladle handle 1 is placed on the pulley 44, and the pulley 44 can be supported by the cooperation of the bracket 42, the support platform 41 and the U-shaped seat 43, so that the pulley 44 can provide point-to-surface support for the ladle handle 1. The design using the pry bar principle can save the physical strength of the construction workers, improve work efficiency and ensure the safety of construction.
[0023] Furthermore, in order to facilitate pouring the scooped electrolyte into the trolley, a rotating pin 431 is fixedly connected to the bottom end of the U-shaped seat 43, and the bottom of the rotating pin 431 is fitted with a bearing 4311 fixedly connected to the support platform 41 for horizontally rotating the rotating pin 431. After the large ladle 2 scoops up the electrolyte, by applying torque to the ladle handle 1, the ladle handle 1 drives the rotating pin 431 to rotate in the bearing 4311 on the support platform 41 through the pulley 44 and the U-shaped seat 43, and then the large ladle 2 is horizontally rotated around the point-to-surface contact between the ladle handle 1 and the pulley 44 toward the direction close to the trolley, making it convenient to pour the electrolyte inside the large ladle 2 into the trolley, facilitating operation, saving physical effort, and improving work efficiency.
[0024] Specifically, to ensure the stability of the connection between the bracket member 42 and the support platform 41, the bracket member 42 includes a first support rod 421 symmetrically welded to one side of the bottom end of the support platform 41, a second support rod 422 symmetrically welded to the other side of the bottom end of the support platform 41, and a fixing rod 423 fixedly welded between adjacent first support rods 421 and adjacent second support rods 422, and between the first support rod 421 and the second support rod 422. The first support rod 421 and the second support rod 422 are hollow square tubes, and the fixing rod 423 is a round rod.
[0025] More specifically, to ensure the stability of the support structure during use, the first support rod 421 is perpendicular to the support platform 41, and the bottom of the second support rod 422 is tilted 45 degrees relative to the support platform 41, facing away from the first support rod 421. During the electrolyte scooping process, the construction worker steps on the tilted second support rod 422 to ensure the stability of the support structure's contact with the ground. At the same time, the first support rod 421, which is perpendicular to the support platform 41, can bring the support structure closer to the electrolytic cell, facilitating scooping of electrolyte from the cell.
[0026] It should be noted that the structures in the device are all made of steel.
[0027] Example 2
[0028] What is different from the first embodiment is that (due to the height difference between different construction workers, there may be a problem that the ladle handle 1 is too long or too short), for this reason, an adjustment structure 5 for adjusting the length of the ladle handle 1 is provided at the end of the ladle handle 1 away from the large ladle 2. The adjustment structure 5 includes an extension rod 51 inserted into the end of the ladle handle 1 away from the large ladle 2, a first through hole 52 provided on the ladle handle 1, a second through hole 53 equidistantly provided on the extension rod 51 and used in conjunction with the first through hole 52, and a fixing pin 54 inserted into the first through hole 52 and the second through hole 53. The handle 3 is fixedly connected to the end of the extension rod 51 away from the ladle handle 1. When adjusting the length of the ladle handle 1, first remove the fixing pin 54, and then adjust the position of the extension rod 51 on the ladle handle 1 according to the needs of the construction workers. After the adjustment, align the second through hole 53 with the first through hole 52, and then insert the fixing pin 54 into the first through hole 52 and the second through hole 53 to fix the extension rod 51 and the ladle handle 1.
[0029] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention may have various changes and variations. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A pulley-type labor-saving device for beating electrolytes that is easy to move, comprising a ladle handle (1), a large ladle (2) fixedly arranged at one end of the ladle handle (1), and a handle (3) arranged at the end of the ladle handle (1) away from the large ladle (2); Its characteristics are: The bottom of the ladle handle (1) is provided with a support structure for supporting the ladle handle (1), the support structure comprising a support platform (41), a bracket (42) fixedly arranged at the bottom of the support platform (41), a U-shaped seat (43) arranged at the top of the support platform (41), and a pulley (44) rotatably arranged on the U-shaped seat (43) for causing the ladle handle (1) to move back and forth linearly; An adjustment structure (5) for adjusting the length of the ladle handle (1) is provided at one end of the ladle handle (1) away from the large ladle (2).
2. The pulley-type labor-saving device for injecting electrolyte according to claim 1, characterized in that: The bottom end of the U-shaped seat (43) is fixedly connected to a rotating pin (431), and the bottom of the rotating pin (431) is sleeved with a bearing (4311) fixedly connected to the supporting platform (41) for enabling the rotating pin (431) to rotate horizontally.
3. The pulley-type labor-saving device for injecting electrolyte according to claim 1, characterized in that: The bracket member (42) comprises a first support rod (421) symmetrically welded to one side of the bottom end of the support platform (41) and a second support rod (422) symmetrically welded to the other side of the bottom end of the support platform (41), and a fixing rod (423) fixedly welded between adjacent first support rods (421) and adjacent second support rods (422) and between the first support rod (421) and the second support rod (422).
4. The pulley-type labor-saving device for injecting electrolyte according to claim 3, characterized in that: The first support rod (421) is arranged perpendicular to the support platform (41), and the bottom of the second support rod (422) is arranged at a 45° inclination with respect to the support platform (41) in a direction away from the first support rod (421).
5. The pulley-type labor-saving device for injecting electrolyte according to claim 1, characterized in that: The adjustment structure (5) comprises an extension rod (51) inserted into the end of the ladle handle (1) away from the large ladle (2), a first through hole (52) provided on the ladle handle (1), a second through hole (53) equidistantly provided on the extension rod (51) and used in conjunction with the first through hole (52), and a fixing pin (54) inserted into the first through hole (52) and the second through hole (53), and the handle (3) is fixedly connected to the end of the extension rod (51) away from the ladle handle (1).