Constant-proportion continuous mixing device for functional solid powder and sugar liquid

By designing a continuous mixing device for fixed ratios of functional solid powder and sugar liquid, problems such as difficulty in quantitative addition and uneven mixing in the existing functional gummy production process are solved, efficient continuous production is achieved, and production efficiency and equipment adaptability are improved.

CN120132689APending Publication Date: 2025-06-13JIANGSU YICHAO HEALTH TECH CO LTD
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Patent Information

Application Number
CN202510439120.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

The existing functional gummy production process has problems such as difficulty in quantitative addition, uneven mixing, waste of energy, large investment in manpower equipment, low intermittent production efficiency and insufficient equipment adaptability, and cannot meet the needs of efficient continuous production.

Method used

A fixed-ratio continuous mixing device for functional solid powder and sugar liquid is designed. Through the adjustment seat, powder distribution box, feed pipe, motor frame, drive motor, spiral dragon rod, conveying pipeline, pressurized seat, pressurized pump machine, mixing box and other components, the fixed-ratio continuous mixing and adjustment of functional solid powder and sugar liquid is achieved.

Benefits of technology

It realizes efficient and fixed-ratio continuous mixing of functional solid powder and sugar liquid, improves production efficiency, reduces energy consumption and human equipment investment, and meets the efficient and continuous production needs of functional gummy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of functional sugar liquid mixing, in particular to a functional solid powder and sugar liquid constant-proportion continuous mixing device which comprises an adjusting seat and a powder distribution box, one end of the powder distribution box is fixedly connected with a pressure equalizing cover, and the bottom end of the powder distribution box is fixedly connected with a liquid storage box. And a central shaft seat is arranged in the center of the interior of the adjusting seat, a conveying pipe is fixedly connected to the top end of the central shaft seat, and a motor frame is arranged at the top end of the conveying pipe. Through the arrangement of the adjusting seat, the powder distribution box, the conveying pipe, the motor frame, the driving motor and the spiral auger rod, the equipment can carry out constant-proportion continuous batching and mixing operation on functional solid powder and sugar liquid; a worker firstly puts multiple groups of functional solid powder components into respective powder distribution boxes one by one, puts sugar liquid components into a liquid storage box, and then starts a driving motor in a motor frame and a pressure pump machine at the top end of a conveying pipeline at the same time.
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Description

Technical Field

[0001] The present invention relates to the technical field of functional sugar liquid mixing, and particularly to a device for continuously mixing functional solid powder and sugar liquid in a fixed ratio. Background Art

[0002] Functional sugars are a type of carbohydrate with special effects, mainly including functional oligosaccharides, functional dietary fibers, and functional sugar alcohols. Due to the special effects of functional sugars, they can be added as a functional ingredient in food or used as a substitute for sucrose in food to reduce the impact of sugar on special populations. From a pure chemical perspective, functional sugars actually refer to the collective name of several substances with special physiological effects, such as functional oligosaccharides, functional dietary fibers, and functional sugar alcohols. Functional dietary fiber is a high-molecular carbohydrate. Since it cannot be normally digested and absorbed by the human body, it has no nutritional value in itself. However, precisely because it cannot be digested, it can slow down the digestion speed and excrete cholesterol most quickly, keeping blood sugar and cholesterol at the most ideal level. It can also help diabetic patients reduce insulin and triglycerides. The traditional process of functional soft candies is to mix solid powder-like functional ingredients, such as vitamins and minerals, with syrup and water into a uniform liquid with a certain fluidity, and then quantitatively add it to a certain amount of boiled sugar liquid and stir to mix evenly. The functional solid powder includes (but is not limited to): vitamin B1, B2, B pressurizing pump (12), biotin, folic acid, VA embedding powder, VE embedding powder, VC, zinc citrate, magnesium citrate, and tricalcium phosphate.

[0003] The advantages of the traditional process of functional soft candies are quantitative addition and accurate content of functional ingredients. However, there are also many disadvantages. For example, it must be in a small pot, and only about 100 liters of mixing can ensure uniform mixing. Moreover, the sugar liquid must be boiled to a relatively high sugar degree to ensure that the sugar degree can still meet the requirements for pouring and molding after adding the liquid containing functional ingredients, which is relatively energy-consuming. Secondly, preparing the liquid of functional ingredients requires a lot of manpower and equipment, and it is an intermittent production with low efficiency. At the same time, the device cannot perform the operation of adding and proportioning various functional solid powder raw materials adaptively and selectively, resulting in the need for manual quantitative adjustment of the addition of raw materials, which affects the overall high-efficiency continuous production efficiency of functional soft candies and cannot meet the daily use requirements. Therefore, it is urgent to design a device for continuously mixing functional solid powder and sugar liquid in a fixed ratio to solve the above problems. Summary of the Invention

[0004] The object of the present invention is to provide a device for continuously mixing functional solid powder and sugar solution in a fixed ratio, so as to solve the problems raised in the above-mentioned background technology. The advantages of the traditional process of existing functional soft candies are quantitative addition and accurate content of functional components. However, there are also many disadvantages. For example, it must be in small batches, and about 100 liters of mixing is required to ensure uniform mixing. Moreover, the sugar solution must be boiled to a relatively high sugar degree to ensure that the sugar degree can still meet the requirements for pouring and molding after adding the liquid containing functional components, which is relatively energy-consuming. Secondly, preparing the liquid of functional components requires a lot of manpower and equipment, and it is an intermittent production with low efficiency. At the same time, the device cannot perform the addition and proportioning operations of multiple functional solid powder raw materials in an adaptable and selective manner, resulting in the need for manual quantitative adjustment of the addition of raw materials, affecting the overall high-efficiency continuous production efficiency of functional soft candies and unable to meet the daily use requirements.

[0005] To achieve the above object, the present invention provides the following technical solution: A device for continuously mixing functional solid powder and sugar solution in a fixed ratio, including an adjustment seat. A plurality of powder distribution boxes are uniformly and fixedly connected to the back of the adjustment seat. One end of the powder distribution box is fixedly connected with a pressure equalizing cover. The bottom end of the powder distribution box is fixedly connected with a liquid storage tank. A central shaft seat is arranged at the center inside the adjustment seat. A feeding pipe is fixedly connected to the top end of the central shaft seat. A motor frame is arranged at the top end of the feeding pipe. A driving motor is arranged inside the motor frame. One end of the driving motor is provided with a spiral auger rod;

[0006] A conveying pipeline. A conveying pipeline is fixedly connected to the side of one end of the feeding pipe. One end of the conveying pipeline is provided with a pressurizing seat. A pressurizing pump is arranged at the top end of the pressurizing seat. A regulating ball valve is arranged at the bottom end of the pressurizing seat. The bottom end of the regulating ball valve is fixedly connected with a top frame. The bottom end of the top frame is fixedly connected with a mixing tank. The bottom end of the mixing tank is fixedly connected with a bottom frame. Four corners of the bottom of the bottom frame are fixedly connected with support feet.

[0007] Preferably, a lifting weighing groove is opened inside the support feet. Suction side valves are arranged on both sides of the lifting weighing groove.

[0008] Preferably, a filter screen groove is arranged on the inner wall of the suction side valve. A weight loss weighing hopper is arranged inside the lifting weighing groove. A display is arranged on the front of the bottom frame. The internal structures of the bottom frame and the top frame are the same.

[0009] Preferably, a homogenizing mixer is arranged on the back of the mixing tank. An equipment groove is opened on the back of the mixing tank. Feeding grids are arranged on both sides of the mixing tank. A discharge valve seat is arranged at the bottom end of the front of the mixing tank.

[0010] Preferably, protective covers are provided on the four sides of the inner wall of the adjustment base, and limiting rubber strips are provided at the four corners of the inner wall of the adjustment base.

[0011] Preferably, a rotating shaft seat is provided at the center of the side surface of the central shaft seat. A first docking valve seat is fixedly connected to the side surface of the rotating shaft seat. A rotating motor is fixedly connected to the bottom end of the central shaft seat. A vibration frame is provided inside the rotating motor, and a vibration motor is provided at the bottom end of the rotating motor.

[0012] Preferably, a liquid suction pump is provided at one end of the liquid storage tank, and a liquid delivery pipe is fixedly connected to one end of the liquid suction pump.

[0013] Preferably, a second docking valve seat is provided at one end of the powder distribution box, and a feed valve is provided at the top of the other end of the powder distribution box.

[0014] Preferably, a pressure equalizing unit is provided inside the pressure equalizing cover. Partition plates are uniformly and fixedly connected to the front surface of the pressure equalizing unit. Pressure equalizing push plates are provided on the front surface of the pressure equalizing cover and separated by the partition plates.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] The functional solid powder and sugar solution proportional continuous mixing device, through the set adjusting seat, powder distribution box, feeding pipe, motor frame, driving motor, spiral auger rod, conveying pipeline, pressurizing seat, pressure pump, top frame, mixing tank, bottom frame, supporting foot seat, lifting weighing tank, suction side valve, filter screen tank, loss-in-weight weighing hopper, display, homogenizing mixer, equipment tank, feeding grille, discharge valve seat, liquid suction pump and liquid conveying pipe, can enable the equipment to perform the proportional continuous batching and mixing operation of functional solid powder and sugar solution. In the actual use process, the staff first put multiple groups of functional solid powder components into their respective powder distribution boxes one by one, and put the sugar solution component into the internal of the liquid storage tank. Then, the driving motor in the motor frame and the pressure pump at the top of the conveying pipeline are started simultaneously. The driving motor drives the spiral auger rod to quickly convey the multiple groups of functional solid powders in the powder distribution box upward obliquely inside the feeding pipe. When it is conveyed to the conveying pipeline, through the negative pressure suction of the pressure pump, the multiple groups of functional solid powders are quickly sent into the internal of the top frame along the regulating ball valve control from the pressurizing seat. And the liquid suction pump and liquid conveying pipe at one end of the liquid storage tank can also perform the feeding operation of the sugar solution component into the internal of the bottom frame. The precise feeding is realized by controlling the rotation of the spiral auger rod through the driving motor connection control component. The loss-in-weight weighing hoppers inside the top frame and the bottom frame calculate the added amount through the weight reduction. The top frame and the bottom frame can also suck out the raw materials in the lifting weighing tank through the suction side valves and filter screen tanks on both sides of the bottom frame, and under the cooperation of the feeding grilles on both sides of the mixing tank, perform uniform preliminary mixing inside the mixing tank, so as to achieve high-stability material control operation of multiple groups of functional solid powders and sugar solution at the upper and lower ends of the mixing tank. According to the calculation of the input formula data, the sugar solution and solid powder are synchronously and quantitatively fed into the mixing tank in a linked manner, and quantitative feeding is carried out simultaneously up and down. And the homogenizing mixer on the back of the mixing tank is started to complete the mixing at the equipment tank. The whole equipment constitutes a set of control systems for the quantitative feeding device, sugar solution quantitative pumping device and solid-liquid rapid mixing device during the production of functional soft candies, realizing the requirements of production continuity, reliability and large-scale online production, and reflecting the practicability of the equipment design.

[0017] The functional solid powder and sugar solution proportional continuous mixing device further improves the overall use effect of the equipment through the set adjusting seat, powder distribution box, pressure equalizing cover, liquid storage tank, central shaft seat, regulating ball valve, protective cover, limit rubber strip, rotating shaft seat, first docking valve seat, rotating motor, vibrating frame, vibrating motor, second docking valve seat, feeding valve, pressure equalizing unit, partition plate and pressure equalizing push plate. During daily use, the vibrating frame inside the rotating motor at the bottom of the central shaft seat and the vibrating motor at the bottom of the rotating motor can be started simultaneously. The vibrating frame can drive the first docking valve seat on the side of the central shaft seat to perform positioning rotation along the rotating shaft seat, so as to quickly adaptively dock the first docking valve seat with the second docking valve seat at one end of the powder distribution box, realize the quick switching and feeding operation of multiple groups of functional solid powders, complete the batching operation of functional solid powders, and the vibrating motor drives the central shaft seat, conveying pipe, conveying pipeline and pressurizing seat to perform adaptive vibration adjustment operation at the regulating ball valve. The central shaft seat can be stably centered and limited by the protective cover and limit rubber strip inside the adjusting seat, so that when the functional solid powder is conveyed through the spiral auger rod inside the conveying pipe, the powder is in a vibrating and scattered state, avoiding the problem of conveying adhesion, improving the conveying effect of functional solid powder. At the same time, when the functional solid powder is conveyed inside the powder distribution box, the pressure equalizing unit inside the pressure equalizing cover can be started, and the pressure equalizing push plates separated by the partition plate inside it are adaptively sucked into the powder distribution box to perform adaptive pressure pushing operation on the functional solid powder inside the powder distribution box, pushing the functional solid powder inside the powder distribution box adaptively, reflecting the comprehensiveness of the equipment design. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a three-dimensional schematic diagram of the structure of the present invention;

[0019] Figure 2 is an overall schematic diagram of the structure of the central shaft seat of the present invention;

[0020] Figure 3 is an overall schematic diagram of the structure of the chassis of the present invention;

[0021] Figure 4 is an overall schematic diagram of the structure of the drive motor of the present invention;

[0022] Figure 5 is an overall schematic diagram of the structure of the mixing tank of the present invention;

[0023] Figure 6 is an overall schematic diagram of the structure of the powder distribution box of the present invention;

[0024] Figure 7 is an overall schematic diagram of the structure of the pressure equalizing cover of the present invention;

[0025] Figure 8 For the present invention Figure 1 is an enlarged schematic view of the structure at position A in the present invention.

[0026] In the figure: 1, adjusting seat; 2, powder dispensing box; 3, uniform pressure cover; 4, liquid storage tank; 5, central shaft seat; 6, feeding pipe; 7, motor frame; 8, driving motor; 9, spiral auger rod; 10, conveying pipeline; 11, pressing seat; 12, pressure pump; 13, regulating ball valve; 14, top frame; 15, mixing tank; 16, bottom frame; 17, support foot seat; 18, lifting weighing tank; 19, suction side valve; 20, filter screen tank; 21, loss-in-weight weighing hopper; 22, display; 23, homogenizing mixer; 24, equipment tank; 25, feeding grille; 26, discharge valve seat; 27, protective cover; 28, limiting rubber strip; 29, rotating shaft seat; 30, first docking valve seat; 31, rotating motor; 32, vibrating frame; 33, vibrating motor; 34, liquid suction pump; 35, liquid delivery pipe; 36, second docking valve seat; 37, feeding valve; 38, uniform pressure unit; 39, partition plate; 40, uniform pressure push plate. Specific embodiments

[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0028] Please refer to Figure 1-8 , an embodiment provided by the present invention:

[0029] A functional solid powder and sugar solution proportional continuous mixing device, including an adjustment seat 1. A plurality of powder distribution boxes 2 are evenly fixedly connected to the back of the adjustment seat 1. One end of the powder distribution box 2 is fixedly connected with a pressure equalizing cover 3. The bottom end of the powder distribution box 2 is fixedly connected with a liquid storage tank 4. A central shaft seat 5 is arranged at the center inside the adjustment seat 1. A feeding pipe 6 is fixedly connected to the top end of the central shaft seat 5. A motor frame 7 is arranged at the top end of the feeding pipe 6. A driving motor 8 is arranged inside the motor frame 7. A spiral auger rod 9 is arranged at one end of the driving motor 8. Protective covers 27 are arranged on the four sides of the inner wall of the adjustment seat 1. Limit rubber strips 28 are arranged at the four corners of the inner wall of the adjustment seat 1. A rotating shaft seat 29 is arranged at the center of the side of the central shaft seat 5. A first docking valve seat 30 is fixedly connected to the side of the rotating shaft seat 29. A rotating motor 31 is fixedly connected to the bottom end of the central shaft seat 5. A vibration frame 32 is arranged inside the rotating motor 31. A vibration motor 33 is arranged at the bottom end of the rotating motor 31. A liquid suction pump 34 is arranged at one end of the liquid storage tank 4. A liquid delivery pipe 35 is fixedly connected to one end of the liquid suction pump 34. A second docking valve seat 36 is arranged at one end of the powder distribution box 2. A feeding valve 37 is arranged at the top of the other end of the powder distribution box 2. A pressure equalizing unit 38 is arranged inside the pressure equalizing cover 3. Partition plates 39 are evenly fixedly connected to the front of the pressure equalizing unit 38. Pressure equalizing push plates 40 are arranged on the front of the pressure equalizing cover 3 through the partition plates 39. Simultaneously start the vibration frame 32 inside the rotating motor 31 at the bottom of the central shaft seat 5 and the vibration motor 33 at the bottom end of the rotating motor 31. The vibration frame 32 can drive the first docking valve seat 30 on the side of the central shaft seat 5 to perform positioning rotation operation along the rotating shaft seat 29, so as to quickly adaptively dock the first docking valve seat 30 with the second docking valve seat 36 at one end of the powder distribution box 2, realize the quick switching and feeding operation of a plurality of functional solid powders, complete the batching operation of the functional solid powders, and the vibration motor 33 drives the central shaft seat 5, the feeding pipe 6, the conveying pipeline 10 and the pressurizing seat 11 to perform adaptive vibration adjustment operation at the regulating ball valve 13. The central shaft seat 5 can be stably centered and limited and protected by the protective cover 27 and the limit rubber strip 28 inside the adjustment seat 1, so that when the functional solid powder is conveyed through the spiral auger rod 9 inside the feeding pipe 6, the powder is ensured to be in a vibrating and dispersing state.

[0030] The conveying pipeline 10, one end side of the material conveying pipe 6 is fixedly connected to the conveying pipeline 10. One end of the conveying pipeline 10 is provided with a pressurizing seat 11. The top end of the pressurizing seat 11 is provided with a pressurizing pump 12. The bottom end of the pressurizing seat 11 is provided with a regulating ball valve 13. The bottom end of the regulating ball valve 13 is fixedly connected to a top frame 14. The bottom end of the top frame 14 is fixedly connected to a mixing tank 15. The bottom end of the mixing tank 15 is fixedly connected to a bottom frame 16. Four corners of the bottom of the bottom frame 16 are fixedly connected to support feet 17. An elevating weighing groove 18 is formed inside the support feet 17. Suction side valves 19 are arranged on both sides of the elevating weighing groove 18. A filter net groove 20 is arranged on the inner wall of the suction side valve 19. A loss-in-weight weighing hopper 21 is arranged inside the elevating weighing groove 18. A display 22 is arranged on the front surface of the bottom frame 16. The internal structures of the bottom frame 16 and the top frame 14 are the same. A homogenizing mixer 23 is arranged on the back of the mixing tank 15. An equipment groove 24 is formed on the back of the mixing tank 15. Feeding grilles 25 are arranged on both sides of the mixing tank 15. A discharge valve seat 26 is arranged at the bottom end of the front surface of the mixing tank 15. The precise feeding is realized by driving the spiral auger rod 9 to rotate through the driving motor 8 to connect the control component. The loss-in-weight weighing hoppers 21 inside the top frame 14 and the bottom frame 16 calculate the added amount through the weight reduction. The top frame 14 and the bottom frame 16 can also suck out the raw materials in the elevating weighing groove 18 through the suction side valves 19 and the filter net grooves 20 on both sides of the bottom frame 16, and cooperate with the feeding grilles 25 on both sides of the mixing tank 15 to perform uniform preliminary mixing inside the mixing tank 15, so as to realize the high-stability material control operation of multiple groups of functional solid powders and sugar solutions at the upper and lower ends of the mixing tank 15. According to the calculation of the input formula data, the sugar solution and the solid powder are synchronously and quantitatively controlled to enter the mixing tank 15.

[0031] Working principle: During use, the operator first puts multiple groups of functional solid powder components into their respective powder distribution boxes 2 one by one, and puts the sugar solution component into the interior of the liquid storage tank 4. Then, the drive motor 8 in the motor frame 7 and the pressure pump 12 at the top of the conveying pipeline 10 are started simultaneously. The drive motor 8 drives the spiral auger rod 9 to quickly convey the multiple groups of functional solid powders in the powder distribution box 2 upward obliquely inside the feeding pipe 6. When it is conveyed to the conveying pipeline 10, through the negative pressure suction of the pressure pump 12, the multiple groups of functional solid powders are quickly sent into the interior of the top frame 14 from the pressure seat 11 along the control of the regulating ball valve 13. And the liquid suction pump 34 and the liquid delivery pipe 35 at one end of the liquid storage tank 4 can also perform the operation of feeding the sugar solution component into the interior of the bottom frame 16. The rotation of the spiral auger rod 9 is controlled by the drive motor 8 connected to the control component to achieve precise feeding. The loss-in-weight weighing hoppers 21 inside the top frame 14 and the bottom frame 16 calculate the added amount through weight reduction. The top frame 14 and the bottom frame 16 can also suck out the raw materials in the lifting weighing tank 18 through the suction side valves 19 and the filter mesh grooves 20 on both sides of the bottom frame 16, and under the cooperation of the feeding grilles 25 on both sides of the mixing tank 15, perform uniform preliminary mixing inside the mixing tank 15, so as to achieve high-stability control of the multiple groups of functional solid powders and the sugar solution at the upper and lower ends of the mixing tank 15. According to the input formula data calculation, the sugar solution and the solid powder are synchronously and quantitatively controlled to enter the mixing tank 15, and quantitative feeding is carried out simultaneously from top and bottom. And through starting the homogenizing mixer 23 on the back of the mixing tank 15, the mixing is completed at the equipment tank 24. The whole equipment constitutes a set of control systems for the quantitative feeding device, the sugar solution quantitative pumping device, and the solid-liquid rapid mixing device during the production of functional soft candies, realizing the requirements of continuous production, reliability, and large-batch online production. By synchronously starting the vibration frame 32 in the rotation motor 31 at the bottom of the central shaft seat 5 and the vibration motor 33 at the bottom end of the rotation motor 31, the vibration frame 32 can drive the first docking valve seat 30 on the side of the central shaft seat 5 to perform positioning rotation operation along the rotation shaft seat 29, so as to quickly dock the first docking valve seat 30 with the second docking valve seat 36 at one end of the powder distribution box 2 in an adaptable manner, realizing the rapid switching and feeding operation of the multiple groups of functional solid powders and completing the batching operation of the functional solid powders. And the vibration motor 33 drives the central shaft seat 5, the feeding pipe 6, the conveying pipeline 10, and the pressure seat 11 to perform adaptable vibration adjustment operation at the regulating ball valve 13. The central shaft seat 5 can be stably centered and limited by the protective cover 27 and the limiting rubber strip 28 inside the regulating seat 1. Thus, when the functional solid powder is conveyed inside the feeding pipe 6 by the spiral auger rod 9, it is ensured that the powder is in a vibrating and dispersed state, avoiding the problem of conveying adhesion, improving the conveying effect of the functional solid powder. At the same time, when the functional solid powder is conveyed inside the powder distribution box 2, the equalizing unit 38 inside the equalizing cover 3 can be started,The equalizing push plate 40 separated by the internal partition plate 39 is adaptively sucked into the interior of the powder dispensing box 2, and the functional solid powder inside the powder dispensing box 2 is subjected to an adaptively pressured pushing operation to adaptively push the functional solid powder in the powder dispensing box 2. The above is the entire working principle of the present invention.

[0032] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, in any regard, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A device for continuously mixing functional solid powder and sugar solution in a fixed ratio, comprising an adjusting seat (1), characterized in that: The back of the adjustment seat (1) is evenly and fixedly connected with a plurality of powder distribution boxes (2), one end of the powder distribution box (2) is fixedly connected with a pressure equalizing cover (3), the bottom end of the powder distribution box (2) is fixedly connected with a liquid storage tank (4), a central shaft seat (5) is arranged at the inner center of the adjustment seat (1), a feed pipe (6) is fixedly connected to the top of the central shaft seat (5), a motor frame (7) is arranged at the top of the feed pipe (6), a driving motor (8) is arranged inside the motor frame (7), and a spiral dragon rod (9) is arranged at one end of the driving motor (8); A conveying pipeline (10), one end of the conveying pipe (6) is fixedly connected to the conveying pipeline (10), one end of the conveying pipeline (10) is provided with a pressurizing seat (11), the top of the pressurizing seat (11) is provided with a pressurizing pump (12), the bottom of the pressurizing seat (11) is provided with a regulating ball valve (13), the bottom end of the regulating ball valve (13) is fixedly connected to a top frame (14), the bottom end of the top frame (14) is fixedly connected to a mixing box (15), the bottom end of the mixing box (15) is fixedly connected to a bottom frame (16), and the bottom four corners of the bottom of the bottom frame (16) are fixedly connected to supporting feet (17).

2. The device for continuously mixing functional solid powder and sugar solution in a fixed ratio according to claim 1, characterized in that: A lifting and weighing groove (18) is provided inside the supporting foot seat (17), and suction side valves (19) are provided on both sides of the lifting and weighing groove (18).

3. The device for continuously mixing functional solid powder and sugar solution in a fixed ratio according to claim 2, characterized in that: The inner wall of the suction side valve (19) is provided with a filter screen groove (20), the interior of the lifting weighing groove (18) is provided with a loss-in-weight weighing hopper (21), the front of the bottom frame (16) is provided with a display (22), and the internal structure of the bottom frame (16) and the top frame (14) is the same.

4. The device for continuously mixing functional solid powder and sugar solution in a fixed ratio according to claim 1, characterized in that: The back of the mixing box (15) is provided with a homogenizing mixer (23), the back of the mixing box (15) is provided with an equipment slot (24), the back of the mixing box (15) is provided with a feeding grid (25) on both sides of the mixing box (15), and the front bottom of the mixing box (15) is provided with a discharge valve seat (26).

5. The device for continuously mixing functional solid powder and sugar solution in a fixed ratio according to claim 1, characterized in that: Protective covers (27) are provided on the four sides of the inner wall of the adjustment seat (1), and limiting rubber strips (28) are provided on the four corners of the inner wall of the adjustment seat (1).

6. The device for continuously mixing functional solid powder and sugar solution in a fixed ratio according to claim 1, characterized in that: A rotating shaft seat (29) is arranged at the center of the side surface of the central shaft seat (5), a first docking valve seat (30) is fixedly connected to the side surface of the rotating shaft seat (29), a rotating motor (31) is fixedly connected to the bottom end of the central shaft seat (5), a vibration frame (32) is arranged inside the rotating motor (31), and a vibration motor (33) is arranged at the bottom end of the rotating motor (31).

7. The device for continuously mixing functional solid powder and sugar solution in a fixed ratio according to claim 1, characterized in that: A liquid suction pump (34) is provided at one end of the liquid storage box (4), and a liquid infusion tube (35) is fixedly connected to one end of the liquid suction pump (34).

8. The device for continuously mixing functional solid powder and sugar solution in a fixed ratio according to claim 1, characterized in that: A second docking valve seat (36) is provided at one end of the powder distribution box (2), and a feed valve (37) is provided at the top of the other end of the powder distribution box (2).

9. The device for continuously mixing functional solid powder and sugar solution in a fixed ratio according to claim 1, characterized in that: A pressure equalizing unit (38) is arranged inside the pressure equalizing hood (3), a partition plate (39) is evenly and fixedly connected to the front of the pressure equalizing unit (38), and a pressure equalizing push plate (40) is arranged on the front of the pressure equalizing hood (3) through the partition plate (39).