Solution stirring device

The design of the hydraulic telescopic rod and anti-splash components solves the problem of solution splashing during stirring, achieving environmental cleanliness and raw material protection, and simplifying the operation process.

CN223697429UActive Publication Date: 2025-12-23ZHEJIANG YIWEI NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202423230802.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-12-23
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Existing stirring devices are prone to splashing solutions or powders from the top of the container during stirring, causing environmental pollution and raw material contamination. In addition, the existing lid design is cumbersome to operate.

Method used

It employs a hydraulic telescopic rod and anti-splash components, including an anti-splash tank cover, a flip-top cover, and an adjusting trough plate. The height of the agitator is adjusted hydraulically, and the anti-splash components prevent solution splashing. The flip-top cover closes to prevent impurities from entering.

Benefits of technology

It effectively prevents solution splashing, keeps the working environment clean, prevents impurities from contaminating raw materials, and is easy to operate. The separate design of the agitator and anti-splash components does not interfere with each other, ensuring a smooth agitation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a solution stirring device which comprises a hydraulic telescopic rod, a cross beam is arranged at the telescopic end of the hydraulic telescopic rod, a driving motor is arranged at the top of the cross beam, a stirring rod is connected to an output shaft of the driving motor, a stirring piece is arranged at the bottom end of the stirring rod, and a splash-proof assembly is arranged on the side wall of the hydraulic telescopic rod. The splash-proof assembly comprises an adjusting groove plate, the adjusting groove plate is arranged on the side wall, close to the stirring rod, of the hydraulic telescopic rod, a T-shaped sliding block is slidably connected into the adjusting groove plate, a fixing rod is arranged on the side, away from the adjusting groove plate, of the T-shaped sliding block, and a splash-proof barrel cover is arranged on the side, away from the T-shaped sliding block, of the fixing rod. The detachable splash-proof barrel cover is arranged on the stirring rod and covers the top of the stirring barrel, so that the end cover of the stirring barrel can be covered, a solution or powder is prevented from being splashed out easily in the stirring process, the surrounding area of the stirring barrel can be kept clean and tidy, and meanwhile impurities in the environment can be prevented from entering the stirring barrel.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to stirring device technical field, especially relates to a solution stirring device. BACKGROUND

[0002] The lining material in the intermediate frequency furnace is a refractory material used in the interior of the intermediate frequency furnace, and mainly functions to protect the furnace wall from being eroded by high-temperature molten metal and to improve smelting efficiency. The preparation process of the lining material in the intermediate frequency furnace needs to go through multiple steps to ensure that it has good high-temperature resistance, high density, good volume stability, and strong resistance to molten metal and slag erosion. In the raw material preparation process, premixed granular material, premixed fine powder material, and aluminum phosphate solution need to be added to a stirring device for mixing to obtain a mixed material.

[0003] When the raw materials are stirred, the top of some stirring buckets is designed to be open, and the solution or powder is easy to splash out of the top of the stirring bucket, which causes the area near the stirring bucket to be easily contaminated and impurities in the environment to easily enter the stirring bucket to contaminate the raw materials. Some stirring parts are provided with lids, but the lids and the stirring parts are in an integrated structure. When the stirring part needs to be lifted for stirring, the lid will also be lifted synchronously, which causes the solution to splash out. Some stirring equipment is designed in a separate manner, and the lid and the stirring part are in a flip type. Before and after the stirring equipment is used, the lid needs to be opened and closed, which is relatively troublesome to operate. SUMMARY

[0004] The utility model aims at the problems existing in the prior art, and provides a solution stirring device, which is covered by a cover, so that the solution is prevented from splashing out of the stirring bucket during stirring.

[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a solution stirring device, comprising a hydraulic telescopic rod, a cross beam is arranged at the telescopic end of the hydraulic telescopic rod, a stirrer is vertically arranged at one end of the cross beam, the stirrer comprises a driving motor, a stirring rod is arranged at the output end of the driving motor, a stirring part is arranged at the bottom end of the stirring rod, and a splash-proof assembly is arranged on the side wall of the hydraulic telescopic rod.

[0006] The splash-proof assembly comprises an adjusting groove plate arranged on the side wall of the hydraulic telescopic rod facing the stirring rod, the adjusting groove plate is internally provided with a connecting piece extending outward, the connecting piece is provided with an adjusting piece matched with the adjusting groove plate, and a splash-proof bucket cover is arranged at the end of the connecting piece away from the adjusting groove plate, a through opening is formed in the top of the splash-proof bucket cover, flip cover plates are symmetrically arranged on the two side walls of the through opening, and the stirring rod penetrates through the flip cover plates.

[0007] The solution stirring device adjusts the height of the stirrer through a hydraulic telescopic rod, is suitable for stirring containers of different heights, and mainly, splashing of the solution in the stirring process is effectively prevented through arrangement of the splash-proof assembly, the working environment is kept clean and safe, and thus the problem that due to the open stirring barrel design, the solution or powder is easily splashed from the top of the stirring barrel in the stirring process, the area near the stirring barrel is easily dirty, and impurities in the environment are also easily introduced into the stirring barrel to contaminate the raw materials is solved, the stirring part can also be well closed in the stirring process through arrangement of the turnover cover plate and the through rod port, impurities are prevented from entering, and the splash-proof assembly and the stirring part are designed in a separated manner and do not interfere with each other, and when the splash-proof barrel cover is covered, the stirring part can still move up and down.

[0008] Further, the through port section is a "convex" type, the turnover cover plate is a semicircular ring, and a gap formed between the two turnover cover plates after being closed is a through rod port.

[0009] The "convex" type through port design enables the turnover cover plate to be more closely attached to the edge of the through port when being closed, and the possibility of splashing of the solution from the gap is reduced. The semicircular ring-shaped turnover cover plate facilitates the stirring rod to pass through, and can effectively block the splashing solution and prevent other impurities from falling into the stirring container.

[0010] Further, the diameter of the through port is greater than the length of the stirring part, and the diameter of the through rod port is greater than the diameter of the stirring rod. The diameter of the through port being greater than the length of the stirring part ensures that the stirring part does not interfere with the splash-proof barrel cover during lifting. The diameter of the through rod port being greater than the diameter of the stirring rod enables the stirring rod to smoothly pass through the turnover cover plate and not be worn or stuck due to friction.

[0011] Further, the connecting piece comprises a T-shaped sliding block slidingly arranged in the adjusting groove plate slide, and a fixed rod connected with the splash-proof barrel cover is arranged on the side of the T-shaped sliding block away from the adjusting groove plate. The cooperation of the T-shaped sliding block and the adjusting groove plate slide enables the connecting piece to slide on the adjusting groove plate, thereby adjusting the position of the splash-proof barrel cover. The design of the fixed rod enables the splash-proof barrel cover to be stably connected to the connecting piece and not easily fall off.

[0012] Further, the adjusting piece comprises sliding rods arranged on the two side walls of the fixed rod, sliding plates slidingly connected to the surfaces of the sliding rods, springs sleeved on the surfaces of the sliding rods and located between the fixed rod and the sliding plates, and limiting columns connected with the adjusting groove plate arranged on the opposite sides of the two sliding plates.

[0013] The combined design of the sliding rods, the sliding plates and the springs enables the adjusting piece to be fixed at different positions of the adjusting groove plate as needed, thereby achieving height adjustment of the splash-proof barrel cover. The cooperation of the limiting columns and the limiting groove holes ensures the stability after adjustment and prevents the splash-proof barrel cover from shaking in the stirring process.

[0014] Furthermore, the sliding track of the adjusting groove plate is a T-shaped groove, and multiple equidistant limiting slots are symmetrically arranged on both side walls of the adjusting groove plate. The limiting post is adapted to the limiting slots. The T-shaped groove design allows the T-shaped slider to slide stably within it and is not easy to fall off. The multiple equidistant limiting slots provide various fixing positions for the limiting post, making the height adjustment of the splash cover more flexible.

[0015] Furthermore, symmetrical tie rods are provided at the top of the two sliding plates, and the tie rods are L-shaped plates. The L-shaped plate tie rod design allows the operator to easily pull the sliding plates, thereby adjusting the height of the splash guard. The tie rods also increase operational safety, avoiding potential injuries to the operator from direct contact with the sliding plates.

[0016] Furthermore, the system also includes a stirring tank positioned below the splash guard. The splash guard is a hollow frustum-shaped cylinder, with the diameter of its bottom surface larger than the diameter of the stirring tank. The hollow frustum-shaped splash guard more effectively blocks splashed solution, and its larger bottom diameter ensures that the stirring tank is completely within the protection range of the splash guard. It can also accommodate stirring tanks with slightly larger or smaller diameters.

[0017] Furthermore, the bottom of the hydraulic telescopic rod is equipped with a base. The base design allows the hydraulic telescopic rod to be stably installed on the ground, preventing it from tipping over. At the same time, the base also provides support for the entire mixing device, increasing its stability.

[0018] Furthermore, the stirring element includes a fixed cylinder disposed at the end of the stirring rod, and the side wall of the fixed cylinder is provided with two blades. This design allows the stirring rod to more effectively rotate the solution during stirring, improving stirring efficiency. The two blades increase the uniformity of stirring, allowing the components in the solution to mix more thoroughly.

[0019] Compared with the prior art, the beneficial effects of this utility model are: 1. The splash-proof component effectively prevents the solution from splashing during the stirring process, maintaining a clean and safe working environment. This solves the problem that the open mixing tank design allows the solution or powder to easily splash out from the top of the mixing tank during stirring, causing the area around the mixing tank to become dirty and allowing impurities in the environment to easily enter the mixing tank and contaminate the raw materials; 2. The flip-top cover and the through-hole design allow the mixing components to close well during the stirring process, preventing impurities from entering. Furthermore, the splash-proof component and the mixing components are designed separately, so they do not interfere with each other. Even when the splash-proof cover is on, the mixing components can still move up and down; 3. The "convex" shaped through-hole design allows the flip-top cover to close smoothly. 4. The T-shaped slider and the adjusting groove slide allow the connector to slide on the adjusting groove, thereby adjusting the position of the splash guard. The fixed rod design ensures that the splash guard is stably connected to the connector and is not easy to fall off. 5. The combination design of the slider, sliding plate and spring allows the adjusting component to be fixed at different positions on the adjusting groove as needed, realizing the height adjustment of the splash guard. The cooperation between the limiting post and the limiting groove hole ensures the stability after adjustment and prevents the splash guard from shaking during the stirring process. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of the stirring device of this utility model;

[0021] Figure 2 This is a three-dimensional structural view of the splash-proof barrel cover and splash-proof assembly of this utility model;

[0022] Figure 3 This utility model Figure 2 Enlarged view of the structure at point A in the middle;

[0023] Figure 4 This is a three-dimensional view of the adjusting groove plate of this utility model;

[0024] Figure 5 This is a three-dimensional structural view of the stirring rod of this utility model;

[0025] Figure 6 This is a cross-sectional view of the splash-proof barrel cover of this utility model.

[0026] In the diagram: 1. Hydraulic telescopic rod; 2. Crossbeam; 3. Drive motor; 4. Stirring rod; 41. Stirring component; 5. Base; 6. Stirring tank; 7. Adjusting trough plate; 71. T-shaped slide groove; 72. Limiting slot hole; 8. Fixing rod; 9. Splash guard cover; 10. Through port; 11. Flip cover plate; 12. Through rod opening; 13. Pull block; 14. T-shaped slider; 15. Slide rod; 16. Sliding plate; 17. Spring; 18. Pull rod; 19. Limiting post. Detailed Implementation

[0027] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0028] In the description of this utility model, it should be noted that the terms "middle", "upper", "lower", "left", "right", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device 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 utility model.

[0029] like Figure 1 As shown in Figure 3, the specific solution of the embodiment is as follows: A solution stirring device includes a hydraulic telescopic rod: 1, a crossbeam 2 is provided at the telescopic end of the hydraulic telescopic rod: 1, a stirrer is vertically provided at one end of the crossbeam 2, the stirrer includes a drive motor 3, a stirring rod 4 is provided at the output end of the drive motor 3, a stirring component 41 is provided at the bottom end of the stirring rod 4, and a splash-proof component is provided on the side wall of the hydraulic telescopic rod: 1.

[0030] The anti-splash assembly includes an adjusting groove plate 7 installed on the side wall of the hydraulic telescopic rod 1 facing the stirring rod 4. The adjusting groove plate 7 has an extending connector inside, and the connector has an adjusting element adapted to the adjusting groove plate 7. The end of the connector away from the adjusting groove plate 7 is provided with an anti-splash cover 9. The top of the anti-splash cover 9 has an opening 10, and the two side walls of the opening 10 are symmetrically provided with flip-top covers 11. The stirring rod 4 passes through the flip-top covers 11.

[0031] This solution stirring device achieves height adjustment of the stirrer through a hydraulic telescopic rod 1, making it suitable for stirring containers of different heights. Most importantly, the anti-splash component effectively prevents solution splashing during stirring, maintaining a clean and safe working environment. This solves the problem that the open stirring tank 6 design allows solution or powder to easily splash out from the top of the stirring tank 6 during stirring, causing the area around the stirring tank 6 to become dirty and allowing impurities in the environment to easily enter the stirring tank 6 and contaminate the raw materials. Through the setting of the flip cover 11 and the through rod opening 12, the stirring component 41 can also be closed well during stirring, preventing impurities from entering. Furthermore, the anti-splash component and the stirring component 41 are designed separately and do not interfere with each other. When the anti-splash tank cover 9 is covering the stirring component 41, it can still move up and down.

[0032] like Figure 6 As shown, the cross-section of the through-hole 10 is convex, the flip cover 11 is a semi-circular ring, and the notch formed in the middle after the two flip cover plates 11 are closed is the through-rod opening 12.

[0033] In this embodiment, the "convex" shaped opening 10 design allows the flip cover 11 to fit more tightly against the edge of the opening 10 when closed, reducing the possibility of solution splashing out from the gap. The semi-circular flip cover 11 facilitates the passage of the stirring rod 4, while effectively blocking splashed solution and preventing other debris from falling into the stirring container.

[0034] The diameter of the through-hole 10 is larger than the length of the stirring component 41, and the diameter of the through-rod opening 12 is larger than the diameter of the stirring rod 4. The larger diameter of the through-hole 10 ensures that the stirring component 41 will not interfere with the splash guard 9 during its lifting and lowering process. The larger diameter of the through-rod opening 12 allows the stirring rod 4 to pass smoothly through the flip cover 11 without wear or jamming due to friction.

[0035] In addition, in this embodiment, a pull block 13 is provided on the top of the flip cover 11 to facilitate workers to open the flip cover 11.

[0036] like Figures 2-3 As shown, the connector includes a T-shaped slider 14 slidably disposed within the slide rail of the adjusting groove plate 7. A fixing rod 8, connected to the splash guard 9, is located on the side of the T-shaped slider 14 away from the adjusting groove plate 7. The cooperation between the T-shaped slider 14 and the slide rail of the adjusting groove plate 7 allows the connector to slide on the adjusting groove plate 7, thereby adjusting the position of the splash guard 9. The design of the fixing rod 8 ensures that the splash guard 9 is stably connected to the connector and is not easily detached.

[0037] like Figure 3The adjusting component shown includes slide rods 15 mounted on both sides of the fixed rod 8. Sliding plates 16 are slidably connected to the surface of the slide rods 15. A spring 17 is sleeved on the surface of the slide rods 15 and located between the fixed rod 8 and the sliding plates 16. Each of the two sliding plates 16 has a limiting post 19 connected to the adjusting groove plate 7 on its opposite side.

[0038] The combined design of the slide bar 15, sliding plate 16, and spring 17 allows the adjusting component to be fixed at different positions on the adjusting groove plate 7 as needed, thus achieving height adjustment of the splash guard 9. The cooperation between the limiting post 19 and the limiting slot 72 ensures stability after adjustment and prevents the splash guard 9 from shaking during the stirring process.

[0039] like Figure 4 As shown, the slide rail of the adjusting groove plate 7 is a T-shaped slide rail 71. Multiple equidistant limiting slots 72 are symmetrically arranged on both sides of the adjusting groove plate 7, and the limiting post 19 is adapted to the limiting slots 72. The design of the T-shaped slide rail 71 allows the T-shaped slider 14 to slide stably within it, preventing it from easily falling off. The multiple equidistant limiting slots 72 provide various fixing positions for the limiting post 19, making the height adjustment of the splash guard 9 more flexible.

[0040] like Figure 3 As shown, in this embodiment, tie rods 18 are symmetrically arranged on the top of the two sliding plates 16. The tie rods 18 are L-shaped plates. The L-shaped tie rods 18 design allows the operator to easily pull the sliding plates 16, thereby adjusting the height of the splash guard 9. The tie rods 18 also increase the safety of operation, avoiding potential injury to the operator from direct contact with the sliding plates 16.

[0041] In addition, such as Figures 1-2 As shown, this device also includes a stirring tank 6 disposed below the splash guard 9. The splash guard 9 is a hollow frustum shape, and the diameter of the bottom surface of the splash guard 9 is larger than the diameter of the stirring tank 6. The hollow frustum shape of the splash guard 9 can more effectively block splashed solution, and at the same time, its bottom diameter is larger than the diameter of the stirring tank 6, ensuring that the stirring tank 6 is completely within the protection range of the splash guard 9. It can also be adapted to stirring tanks 6 with slightly larger or smaller diameters.

[0042] like Figure 1 As shown, a base 5 is provided at the bottom of the hydraulic telescopic rod 1. The design of the base 5 allows the hydraulic telescopic rod 1 to be stably installed on the ground, preventing it from tipping over. At the same time, the base 5 also provides support for the entire mixing device, increasing its stability.

[0043] like Figure 5As shown, the stirring component 41 includes a fixed cylinder disposed at the end of the stirring rod 4, and the side wall of the fixed cylinder is provided with two blades. The design of the stirring component 41 enables the stirring rod 4 to more effectively drive the solution to rotate during the stirring process, thereby improving the stirring efficiency. The two blades increase the uniformity of the stirring, allowing the components in the solution to be mixed more thoroughly.

[0044] The working principle of the above embodiment is as follows: When stirring, first extend the stirring rod 4 and the stirring component 41 through the opening 10, and at the same time, pull the two pull rods 18 in opposite directions by hand, so that the limiting post 19 is disengaged from the adjusting groove plate 7. Then, the T-shaped slider 14 can be slid up and down to adjust the height of the splash guard 9 until the splash guard 9 covers the stirring tank 6. Then, pull the pull rod 18 open, and under the rebound force of the spring 17, let the limiting post 19 be inserted into the limiting groove 72 of the corresponding height. Then, drive the stirring rod 4 and the stirring component 41 to rotate and stir the solution and powder in the stirring tank 6 through the drive motor 3, so that the splash guard 9 can cover the opening of the stirring tank 6, thereby preventing the solution or powder from splashing out.

[0045] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A solution stirring device, characterized in that, The device includes a hydraulic telescopic rod, a crossbeam at the telescopic end of the hydraulic telescopic rod, a stirrer vertically mounted at one end of the crossbeam, a drive motor, a stirring rod at the output end of the drive motor, a stirring element at the bottom end of the stirring rod, and a splash-proof component on the side wall of the hydraulic telescopic rod. The splash-proof assembly includes an adjusting groove plate disposed on the side wall of the hydraulic telescopic rod facing the stirring rod. The adjusting groove plate has an extending connector inside, and the connector has an adjusting element adapted to the adjusting groove plate. A splash-proof cover is disposed at the end of the connector away from the adjusting groove plate. The top of the splash-proof cover has an opening, and flip-top covers are symmetrically disposed on both sides of the opening. The stirring rod passes through the flip-top covers.

2. The solution stirring device according to claim 1, characterized in that: The cross-section of the opening is convex, the flip cover is semi-circular, and the notch formed in the middle after the two flip covers are closed is the rod opening.

3. The solution stirring device according to claim 2, characterized in that: The diameter of the through-hole is greater than the length of the stirring element, and the diameter of the through-rod opening is greater than the diameter of the stirring rod.

4. The solution stirring device according to claim 1, characterized in that: The connector includes a T-shaped slider that is slidably disposed in the slide rail of the adjusting groove plate, and a fixing rod connected to the splash guard is provided on the side of the T-shaped slider away from the adjusting groove plate.

5. The solution stirring device according to claim 4, characterized in that: The adjusting component includes slide rods disposed on the two side walls of the fixed rod, with sliding plates slidably connected to the surface of the slide rods, and a spring sleeved on the surface of the slide rods and between the fixed rod and the sliding plates, and a limiting post connected to the adjusting groove plate on each of the two sliding plates on opposite sides.

6. The solution stirring device according to claim 5, characterized in that: The slide of the adjusting groove plate is a T-shaped slide groove. Multiple limiting slots are symmetrically distributed at equal intervals on both sides of the adjusting groove plate. The limiting post is adapted to the limiting slot.

7. A solution stirring device according to claim 5, characterized in that: The tops of the two sliding plates are symmetrically provided with tie rods, and the tie rods are L-shaped plates.

8. The solution stirring device according to claim 1, characterized in that: It also includes a stirring tank located below the splash guard, wherein the splash guard is a hollow frustum shape and the diameter of the bottom surface of the splash guard is larger than the diameter of the stirring tank.

9. A solution stirring device according to claim 1, characterized in that: The bottom of the hydraulic telescopic rod is provided with a base.

10. A solution stirring device according to claim 1, characterized in that: The stirring component includes a fixed cylinder disposed at the end of the stirring rod, and the side wall of the fixed cylinder is provided with two blades.