A special dietary oral liquid production with ingredients stirring device

CN224777890UActive Publication Date: 2026-09-22SHANDONG HUAWEI PHARM CO LTD
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Patent Information

Application Number
CN202522248247.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-24
Publication Date
2026-09-22
Estimated Expiration
2035-10-24

AI Technical Summary

Technical Problem

[0004]为了克服现有技术的上述缺陷,本实用新型提供一种特殊膳食口服液生产用配料搅拌装置,以解决在现有技术中并未加装辅助预混结构,导致搅拌效果差,搅拌时间长,且易出现搅拌死角,无法使多种液体配料进行快速均匀搅拌混合的问题

Benefits of technology

上述方案中,通过设置对冲组件,可在多种液体配料集中下落时,利用左右往复摆动的冲击板对其进行往复打散,且配合同步反向摆动的对冲板,可对初步打散后的配料进行进一步冲击打散,使多种配料可在打散中快速混合,且同步转动的多组扩散板,并配合辅助板、弧形板和对撞斜板,可将经过两次冲击打散后的配料进行再次冲击打散,使多种配料可再次打散并混合,此时利用多重辅助打散预混结构,可在多种液体配料在搅拌前进行多重打散预混,以便后续搅拌轴可将多种液体配料进行快速均匀搅拌混合,不仅可提高搅拌效率,且可提高后续特殊膳食口服液的制备质量。

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Abstract

The utility model relates to oral liquid production technical field, concretely is a kind of special dietary oral liquid production with batching agitator, including the agitator jar of bottom fixed with bottom support and the top box at the upper portion of agitator jar, the top of agitator jar is connected with the docking box communicated with top box bottom by square tube, the two sides of top box front and back are all communicated with filling pipe, the agitator jar is horizontally rotatably equipped with stirring shaft, the left side of agitator jar is fixed with output shaft end fixed in the first motor of one end of stirring shaft by side frame, the docking box is provided with the component of opposite collision, by setting the component of opposite collision, utilize multiple auxiliary dispersion premix structure, multiple liquid batching can be dispersed premix before stirring, so that subsequent stirring shaft can carry out fast uniform stirring mixing to multiple liquid batching, not only can improve stirring efficiency, and can improve the preparation quality of subsequent special dietary oral liquid.
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Description

Technical Field

[0001] This utility model relates to the field of oral liquid production technology, and more specifically, to a mixing device for producing special dietary oral liquids. Background Technology

[0002] Oral liquids are sterile or semi-sterile liquid preparations made from traditional Chinese medicine decoctions by extracting effective components and processing them with flavoring agents, antibacterial agents, and other excipients. They are also known as oral ampoules. Their production process includes the extraction, purification and concentration, formulation, filtration, and sterilization of Chinese medicinal materials. They employ techniques such as decoction and percolation and are characterized by small dosage and rapid absorption. When producing special dietary oral liquids, a mixing device is required to stir and mix the liquid ingredients.

[0003] However, in actual use, traditional special dietary oral liquid production mixing devices do not have an auxiliary premixing structure. Most of them use a single mixing shaft for mixing, which results in poor mixing effect and is prone to dead zones. This makes it impossible to quickly and evenly mix multiple liquid ingredients, which directly affects the subsequent production quality of special dietary oral liquid. Utility Model Content

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides a special ingredient mixing device for the production of oral liquid for dietary use, so as to solve the problem that the prior art does not have an auxiliary premixing structure, resulting in poor mixing effect, long mixing time, and easy occurrence of mixing dead corners, making it impossible to quickly and evenly mix multiple liquid ingredients.

[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a mixing device for the production of a special dietary oral liquid, comprising a mixing tank with a bottom support fixed at the bottom and a top box above the mixing tank, wherein the top of the mixing tank is connected to a docking box that is connected to the bottom of the top box through a square tube, and both sides of the front and back of the top box are connected to injection pipes, wherein a stirring shaft is installed in the mixing tank for horizontal rotation, wherein a first motor with the end of the output shaft fixed to one end of the stirring shaft is fixed on the left side of the mixing tank through a side frame, and a counter-flushing assembly is provided in the docking box.

[0006] The anti-impact assembly includes a first rotating shaft rotatably mounted on the top of the docking box cavity. An impact plate located below a square tube is fixed on the first rotating shaft. Anti-impact plates that cooperate with the impact plates are rotatably mounted on both sides of the top of the docking box cavity. A strip frame is symmetrically fixed on the opposite side of the anti-impact plates. A push frame that extends through the docking box is slidably arranged in two adjacent sets of strip frames. A small cylinder is fixed on both sides of the docking box, and the piston rod of the small cylinder is fixed on the push frame. A docking frame is fixed at one end of the first rotating shaft. A fixing frame is fixed on the front of the docking box, and a docking crankshaft with one end inserted into the docking frame is rotatably mounted on the fixing frame. A second rotating shaft is rotatably mounted on both sides of the bottom of the docking box cavity. A synchronous pulley driven by a synchronous belt is fixed at one end of both the first and second rotating shafts. A second motor is fixed on the front of the docking box. An auxiliary bevel gear that meshes with each other is fixed at the end of the output shaft of the second motor and on one set of the second rotating shafts.

[0007] The anti-collision assembly further includes diffuser plates uniformly fixed on each set of second rotating shafts. A flow divider seat with inclined top sides and located below the impact plate and anti-collision plate is fixed at the center of the docking box cavity. Guide blocks for use with the flow divider seat are fixed on both sides of the docking box cavity. The second rotating shaft is located below the gap between the flow divider seat and the guide block. An auxiliary plate is fixed at the bottom of the flow divider seat and one set of guide blocks. An arc plate is fixed at the bottom of each set of auxiliary plates. A collision inclined plate for use with the arc plate is fixed at the bottom of the left side of the docking box cavity and the right side of one set of arc plates.

[0008] The impact plate and the counter-impact plate swing in opposite directions.

[0009] Each of the flow guide blocks has a downward-sloping top structure.

[0010] Each group of the second rotating shaft has at least five diffuser plates, and there is a gap between the diffuser plate of the upper group and the flow divider and the flow guide block.

[0011] The bottom of the top box cavity has two sides that are inclined downwards, and a guide plate is fixed at the bottom of the mixing tank cavity.

[0012] Compared with the prior art, the beneficial effects of this utility model are: In the above scheme, by setting up a counter-impact assembly, multiple liquid ingredients can be repeatedly dispersed by a reciprocating impact plate when they fall together. In addition, a counter-impact plate that swings in the opposite direction can further impact and disperse the ingredients after initial dispersion, so that the multiple ingredients can be quickly mixed during dispersion. The multiple sets of diffuser plates that rotate synchronously, in conjunction with auxiliary plates, arc plates and opposing inclined plates, can impact and disperse the ingredients after the two impacts, so that the multiple ingredients can be dispersed and mixed again. At this time, by using a multi-auxiliary dispersion and premixing structure, multiple dispersion and premixing of multiple liquid ingredients can be performed before stirring, so that the subsequent stirring shaft can quickly and evenly stir and mix the multiple liquid ingredients. This not only improves the stirring efficiency, but also improves the preparation quality of the subsequent special dietary oral liquid. Attached Figure Description

[0013] Figure 1 This is a perspective view of the present utility model; Figure 2 This is a rear view of the structure of this utility model; Figure 3 This is a partial sectional view of the structure of this utility model; Figure 4 This is a partial exploded view of the structure of this utility model.

[0014] [Figure Labels] 1. Mixing tank; 2. Top box; 3. Docking box; 4. First motor; 5. Mixing shaft; 6. Flow divider; 7. Guide block; 8. First rotating shaft; 9. Docking frame; 10. Impact plate; 11. Docking crankshaft; 12. Synchronous pulley; 13. Counter-impact plate; 14. Strip frame; 15. Small cylinder; 16. Push frame; 17. Second rotating shaft; 18. Diffuser plate; 19. Auxiliary plate; 20. Arc plate; 21. Collision inclined plate; 22. Second motor; 23. Auxiliary bevel gear. Detailed Implementation

[0015] To make the technical problems, technical solutions and advantages of this utility model clearer, a detailed description will be given below in conjunction with the accompanying drawings and specific embodiments.

[0016] Example: Please refer to Figures 1 to 4This utility model provides a technical solution: a mixing device for producing a special dietary oral liquid, comprising a mixing tank 1 with a bottom support fixed to the bottom and a top box 2 located above the mixing tank 1. A controller is installed on the bottom support of the mixing tank 1. The top of the mixing tank 1 is connected to a docking box 3, which is connected to the bottom of the top box 2 via a square tube. The two sides of the bottom of the inner cavity of the top box 2 are inclined downwards to guide the ingredients at the bottom of the top box 2, so that the ingredients can completely enter the docking box 3 through the square tube, avoiding accumulation in the top box 2. A guide plate is fixed to the bottom of the inner cavity of the mixing tank 1. The design allows for the complete discharge of various ingredients after mixing, making the device easier to unload. The top box 2 has injection pipes connected to both the front and back sides, and the bottom right side of the mixing tank 1 has a discharge pipe connected to it. Both the discharge pipe and the injection pipe are equipped with valves. The mixing tank 1 is equipped with a horizontally rotating stirring shaft 5. The stirring blades of the stirring shaft 5 have multiple sets of through holes. The left side of the mixing tank 1 is fixed with a first motor 4 whose output shaft end is fixed to one end of the stirring shaft 5 via a side frame. The design of the first motor 4 and the stirring shaft 5, along with their through holes, allows for rapid mixing of various ingredients. The docking box 3 is equipped with a counter-impact assembly, which includes a first rotating shaft 8 rotatably mounted on the top of the inner cavity of the docking box 3. An impact plate 10 located below a square tube is fixed on the first rotating shaft 8. Counter-impact plates 13, which cooperate with the impact plate 10, are rotatably mounted on both sides of the top of the inner cavity of the docking box 3. The impact plate 10 and the counter-impact plates 13 swing in opposite directions, a reverse design, to better counter-impact the ingredients and further improve the mixing effect. On the opposite side of the counter-impact plates 13, strip frames 14 are symmetrically fixed front and back. A pusher frame 16, extending through the docking box 3, is slidably arranged in two adjacent sets of strip frames 14. Small cylinders 15 are fixed on both sides of the docking box 3, and the piston rods of the small cylinders 15 are fixed on the pusher frame 16. A docking frame 9 is fixed to one end of the first rotating shaft 8. A fixing frame is fixed to the front of the docking box 3, and a device with one end inserted into the docking frame is rotatably mounted on the fixing frame. The docking crankshaft 11 inside the frame 9 and the two sides of the bottom of the docking box 3 are rotatably equipped with second rotating shafts 17. One end of the first rotating shaft 8 and the second rotating shaft 17 are fixed with a synchronous pulley 12 driven by a synchronous belt. The front of the docking box 3 is fixed with a second motor 22. The output shaft end of the second motor 22 and one of the second rotating shafts 17 are fixed with mutually meshing auxiliary bevel gears 23. By setting up the impact assembly, the second motor 22, the auxiliary bevel gears 23, the synchronous pulley 12, the docking frame 9 and the impact plate 10 can be used to repeatedly disperse the multiple liquid ingredients when they fall in a concentrated manner. The design of the small cylinder 15, the push frame 16 and the strip frame 14 can drive the impact plate 13 to swing back and forth synchronously in the opposite direction, so as to further impact and disperse the initially dispersed ingredients, so that the multiple liquid ingredients can be quickly mixed during the dispersion. The counter-flushing assembly also includes diffuser plates 18 uniformly fixed on each set of second rotating shafts 17. A flow divider 6, with its top and two sides inclined and located below the impact plate 10 and counter-flushing plate 13, is fixed at the center of the inner cavity of the docking box 3. Guide blocks 7, used in conjunction with the flow divider 6, are fixed on both sides of the inner cavity of the docking box 3. The second rotating shaft 17 is located below the gap between the flow divider 6 and the guide blocks 7. The top of each set of guide blocks 7 has a downward inclined structure. This shape definition, combined with the flow divider 6, allows for rapid guidance of the ingredients, enabling them to fall completely onto the diffuser plates 18. The diffuser plates 18 then completely disperse the falling ingredients, further improving the mixing effect. Auxiliary plates 19 are fixed to the bottom of the flow divider 6 and one set of guide blocks 7. An arc-shaped plate 20 is fixed to the bottom of each set of auxiliary plates 19. A matching arc-shaped plate 20 is fixed to the bottom of the left side of the inner cavity of the docking box 3 and the right side of one set of arc-shaped plates 20. The design of the combined impact inclined plate 21, multiple diffuser plates 18, and auxiliary plate 19, arc plate 20, and impact inclined plate 21 can further impact and disperse the ingredients after two impacts, allowing multiple ingredients to be dispersed and mixed again. Utilizing a multi-auxiliary dispersion and premixing structure, multiple liquid ingredients are dispersed and premixed multiple times before stirring, facilitating rapid and uniform mixing of multiple liquid ingredients by the subsequent stirring shaft 5. This not only improves stirring efficiency but also enhances the quality of the subsequent special dietary oral liquid preparation. Each set of second rotating shafts 17 has at least five diffuser plates 18. There is a gap between the upper diffuser plate 18 and the flow divider 6 and guide block 7. Limiting the number of diffuser plates 18 increases the dispersion frequency of the ingredients, thereby directly improving the auxiliary mixing effect of multiple ingredients. Furthermore, the spacing design effectively prevents the diffuser plate 18 from colliding with the flow divider 6 and guide block 7, avoiding affecting the normal operation of the device.

[0017] The working process of this utility model is as follows: The user pre-activates the first motor 4, the second motor 22, and the small cylinder 15 via the controller, and presets the reciprocating stroke of the small cylinder 15 via the controller. At this time, the first motor 4 can drive the stirring shaft 5 to rotate, and the second motor 22, with the assistance of two sets of auxiliary bevel gears 23, can drive one of the second rotating shafts 17 to rotate. Furthermore, utilizing the mutual transmission of three sets of synchronous pulleys 12, it can drive the two sets of second rotating shafts 17 and a mating crankshaft 11 to rotate synchronously. At this time, the second rotating shaft 17... Multiple diffuser plates 18 rotate synchronously, and with the assistance of the docking frame 9, the docking crankshaft 11 can drive the impact plate 10 to reciprocate left and right around the first rotating shaft 8. At the same time, the small cylinder 15 can drive the push frame 16 to reciprocate, and with the cooperation of the strip frame 14, it can drive the counter-impact plate 13 to reciprocate synchronously, and the direction of the swing is opposite to that of the impact plate 10. At this time, the user pours multiple sets of liquid ingredients into the top box 2 through multiple sets of injection pipes, and they fall into the docking box 3 through the square tube. At this time, the impact plate 10, which swings back and forth, can concentrate and repeatedly disperse various liquid ingredients. In conjunction with the synchronously swinging counter-impact plate 13, the initially dispersed ingredients can be further impacted and dispersed, so that the various liquid ingredients can be quickly mixed during dispersion. After secondary initial mixing, the various liquid ingredients can fall onto the continuously rotating diffuser plate 18 under the guidance of the flow divider 6 and the flow guide block 7. At this time, the diffuser plate 18 can disperse the falling liquid ingredients again and throw them towards the auxiliary plate 19 and the arc plate 20, and impact them, so that the various liquid ingredients can be impacted and dispersed again. Under the guidance of the arc plate 20, the various liquid ingredients will continue to collide with the anti-collision inclined plate 21, so that the various ingredients can be dispersed and mixed again. With the help of the multiple auxiliary dispersion and premixing structure, the various liquid ingredients can be dispersed and premixed multiple times before stirring. After premixing, the various liquid ingredients can fall into the stirring tank 1. At this time, the stirring shaft 5 can quickly and evenly stir and mix the various liquid ingredients.

[0018] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change. Secondly: The accompanying drawings of the embodiments disclosed in this utility model only involve the structures involved in the embodiments disclosed in this utility model. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this utility model can be combined with each other. In conclusion, the above are merely preferred embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A mixing and stirring device for producing a special dietary oral liquid, characterized in that, The mixture includes a mixing tank (1) with a bottom support fixed at the bottom and a top box (2) above the mixing tank (1). The top of the mixing tank (1) is connected to a docking box (3) that is connected to the bottom of the top box (2) through a square tube. Both sides of the front and back of the top box (2) are connected to injection pipes. The mixing tank (1) is equipped with a stirring shaft (5) that rotates laterally inside. The left side of the mixing tank (1) is fixed with a first motor (4) whose output shaft end is fixed to one end of the stirring shaft (5) through a side frame. The docking box (3) is equipped with a counter-impact assembly.

2. The ingredient mixing device for producing a special dietary oral liquid according to claim 1, characterized in that, The counter-impact assembly includes a first rotating shaft (8) rotatably mounted on the top of the inner cavity of the docking box (3). An impact plate (10) located below the square tube is fixed on the first rotating shaft (8). Counter-impact plates (13) cooperating with the impact plates (10) are rotatably mounted on both sides of the top of the inner cavity of the docking box (3). A strip frame (14) is symmetrically fixed on the opposite side of the counter-impact plates (13). A push frame (16) penetrating to the outside of the docking box (3) is slidably arranged in the two adjacent sets of strip frames (14). A small cylinder (15) is fixed on both sides of the docking box (3), and the piston rod of the small cylinder (15) is fixed to the push frame (16). On the top, a docking frame (9) is fixed at one end of the first rotating shaft (8), a fixing frame is fixed on the front of the docking box (3), and a docking crankshaft (11) with one end inserted into the docking frame (9) is rotatably mounted on the fixing frame. A second rotating shaft (17) is rotatably mounted on both sides of the bottom of the inner cavity of the docking box (3). A synchronous pulley (12) driven by a synchronous belt is fixed at one end of the first rotating shaft (8) and the second rotating shaft (17). A second motor (22) is fixed on the front of the docking box (3). An auxiliary bevel gear (23) meshes with each other on the end of the output shaft of the second motor (22) and on one of the second rotating shafts (17).

3. The ingredient mixing device for producing a special dietary oral liquid according to claim 2, characterized in that, The counter-impact assembly also includes diffuser plates (18) uniformly fixed on each set of second rotating shafts (17). A flow divider (6) with inclined top sides and located below the impact plate (10) and counter-impact plate (13) is fixed at the center of the inner cavity of the docking box (3). A flow guide block (7) for use with the flow divider (6) is fixed on both sides of the inner cavity of the docking box (3). The second rotating shaft (17) is located below the gap between the flow divider (6) and the flow guide block (7). An auxiliary plate (19) is fixed at the bottom of the flow divider (6) and one set of flow guide blocks (7). An arc plate (20) is fixed at the bottom of each set of auxiliary plates (19). A collision inclined plate (21) for use with the arc plate (20) is fixed at the bottom of the left side of the inner cavity of the docking box (3) and the right side of one set of arc plates (20).

4. The ingredient mixing device for producing a special dietary oral liquid according to claim 2, characterized in that, The impact plate (10) and the counter-impact plate (13) swing in opposite directions.

5. The ingredient mixing device for producing a special dietary oral liquid according to claim 3, characterized in that, The top of each of the flow guide blocks (7) is sloping downwards.

6. The ingredient mixing device for producing a special dietary oral liquid according to claim 3, characterized in that, The number of diffuser plates (18) on each group of the second rotating shaft (17) is at least five, and there is a gap between the upper group of diffuser plates (18) and the flow divider (6) and the flow guide block (7).

7. The ingredient mixing device for producing a special dietary oral liquid according to claim 1, characterized in that, The bottom of the inner cavity of the top box (2) is inclined downward on both sides, and a guide plate is fixed at the bottom of the inner cavity of the mixing tank (1).