Low-temperature dissolving device for compound food additive raw materials

By combining water bath and shaking in the dissolving tank, the problem of temperature control being disrupted by the stirring element is solved, ensuring that heat-sensitive substances are fully dissolved at low temperatures and maintain their functionality.

CN224127196UActive Publication Date: 2026-04-17JINWEIKE FOOD INGREDIENTS (HANGZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINWEIKE FOOD INGREDIENTS (HANGZHOU) CO LTD
Filing Date
2025-03-20
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In existing dissolving equipment, the stirring element is prone to disrupting temperature control during low-temperature dissolving processes, leading to functional loss of heat-sensitive substances.

Method used

A water bath is used to maintain a low temperature for dissolution, and the dissolution is accelerated by shaking the dissolution tank to avoid direct contact between the stirring components and the solute solvent. An arc plate is used to form a swirling flow to accelerate heat dissipation.

Benefits of technology

It achieves stable temperature control, maximizes the functionality of heat-sensitive substances, and avoids temperature damage caused by stirring components.

✦ Generated by Eureka AI based on patent content.

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Abstract

A low-temperature dissolving device for compound food additive raw materials relates to the field of food additive preparation and comprises a bottom plate, a water bath barrel is fixedly mounted on the upper end face of the bottom plate, a hollow hemispherical table is fixedly mounted at the center of the bottom of an inner cavity of the water bath barrel, and a connecting column is connected into the hollow hemispherical table. The upper end face of the connecting column is fixedly connected with a dissolving cylinder, the upper end face of the dissolving cylinder is provided with a protruding part, the protruding part is fixedly sleeved with a fixing ring, and the fixing ring is fixedly connected with an extending part. And other stirring pieces do not need to be adopted to be in direct contact with the solute solvent to accelerate dissolution, so that the temperature damage of the stirring pieces to the solute is effectively avoided, the temperature control in the dissolution process is more stable, and the functionality of the solute is guaranteed to the maximum extent.
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Description

Technical Field

[0001] This utility model relates to the field of food additive preparation, and in particular to a low-temperature dissolution device for compound food additive raw materials. Background Technology

[0002] When preparing compound food additives, some solid raw materials need to be dissolved first to better exert their functions, while some heat-sensitive substances (such as enzyme preparations or vitamin C) need to be dissolved at low temperature to ensure that they are completely dissolved under low temperature conditions, while avoiding functional loss caused by high temperature, and maximizing the functionality of the raw materials.

[0003] Currently available dissolving equipment often requires the use of agitators to accelerate the dissolution process during low-temperature dissolution. However, the agitators can easily disrupt the dissolution temperature, leading to unstable temperature control and consequently reducing the functionality of the dissolved raw materials to some extent. Utility Model Content

[0004] The purpose of this invention is to provide a low-temperature dissolution device for compound food additive raw materials to solve the problems mentioned in the background art.

[0005] The technical problem solved by this utility model is achieved through the following technical solution:

[0006] A low-temperature dissolving device for compound food additive raw materials includes a base plate. A water bath is fixedly installed on the upper surface of the base plate. A hollow hemispherical platform is fixedly installed at the center of the bottom of the inner cavity of the water bath. A connecting column is connected to the hollow hemispherical platform. A dissolving cylinder is fixedly connected to the upper surface of the connecting column. A protrusion is provided on the upper surface of the dissolving cylinder. A fixing ring is fixedly sleeved on the protrusion. An extension is fixedly connected to the fixing ring. A power motor is fixedly installed on the upper surface of the base plate. A rotating shaft is fixedly connected to the output end of the power motor. A drive disk is fixedly connected to the rotating shaft. A connecting arm is connected between the drive disk and the extension. The two ends of the connecting arm are respectively hinged to the drive disk and the extension.

[0007] Preferably, at least six arc-shaped plates are fixedly installed at equal intervals on the outer end face of the dissolving tank.

[0008] Preferably, the arc-shaped plate is inclined along the outer end face of the dissolving cylinder, with the inclination angle based on the vertical direction and the offset angle controlled between 0 and 30°.

[0009] Preferably, the outer end of the power motor is covered with a heat insulation cover, and an outer frame is fixedly installed on the upper end surface of the base plate, with the rotating shaft passing through the upper end surface of the outer frame.

[0010] Preferably, the bottom of the dissolving tank is provided with a discharge port, and the bottom of the base plate is equipped with a drain pipe that extends upward and connects with the discharge hole in the hollow hemispherical platform.

[0011] Preferably, the water bath has water pipe interfaces connected to both the front and rear ends, one of which is connected to the inlet of an external cooling water source, and the other is connected to the return end of the external cooling water source.

[0012] Preferably, brackets are fixedly installed on the lower end face of the base plate on both the left and right sides.

[0013] The advantages and positive effects of this utility model are:

[0014] This invention utilizes a water bath to maintain a low temperature for solute dissolution, while simultaneously using the shaking of the dissolution tank to accelerate dissolution. It eliminates the need for other stirring elements to directly contact the solute and solvent for accelerated dissolution, effectively preventing temperature disruption caused by stirring elements. This results in more stable temperature control during the dissolution process, maximizing the functionality of the solute. Attached Figure Description

[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0016] Figure 1 This is a schematic diagram of the overall structure of a low-temperature dissolution device for compound food additive raw materials according to the present invention.

[0017] Figure 2 This is a top view schematic diagram of a low-temperature dissolution device for compound food additive raw materials according to the present invention.

[0018] Figure 3 This is a schematic diagram of the bottom plate structure in a low-temperature dissolving device for compound food additive raw materials according to this utility model.

[0019] Figure 4 This is a schematic diagram of the dissolving tank in a low-temperature dissolving device for compound food additive raw materials according to this utility model.

[0020] The markings in the attached drawings are as follows: base plate 10; bracket 11; water bath 12; dissolving tank 13; arc plate 14; fixing ring 15; extension 16; connecting arm 17; drive plate 18; rotating shaft 19; outer frame 20; heat insulation cover 21; power motor 22; water pipe interface end 23; drain pipe 24. Detailed Implementation

[0021] The present invention will now be described in further detail with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention. These drawings are simplified schematic diagrams, which are only used to illustrate the basic structure of the present invention in an illustrative manner. Therefore, they only show the components related to the present invention.

[0022] To facilitate understanding of this utility model, a more comprehensive description of the utility model will be given below with reference to the accompanying drawings, which show several embodiments of the utility model. However, the utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that the disclosure of the utility model will be more thorough and complete.

[0023] The following is combined Figure 1-4 This utility model will be described in detail below. For ease of description, the directions mentioned below are defined as follows: the directions of up, down, left, right, front, and back mentioned below are the same as... Figure 1 The directions of front, back, left, right, up, and down in the view are consistent. Figure 1 The directions shown are consistent with the front-facing, back-facing, left-right, up-down directions of the device.

[0024] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; they can refer to the internal communication of at least two elements or the interaction relationship of at least two elements, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0025] The embodiments of this utility model will be further described in detail below with reference to the accompanying drawings:

[0026] Please see Figure 1-4This utility model provides an embodiment of a low-temperature dissolving device for compound food additive raw materials, mainly for dissolving some heat-sensitive raw materials, ensuring that the components are evenly distributed and that the functionality is not lost due to high temperature. It includes a base plate 10, with two supports 11 mounted on the bottom for support. A water bath 12 is fixedly installed on the upper surface of the base plate 10. Water pipe interfaces 23 are respectively connected to the front and rear ends of the water bath 12, one connected to the inlet of an external cooling water source and the other to the return end of the external cooling water source, allowing low-temperature cooling water to be introduced into the water bath 12. A hollow hemispherical platform 25 is fixedly installed at the center of the bottom of the inner cavity of the water bath 12, and a connecting column 26 is connected to the hollow hemispherical platform 25. The upper end of the connecting column 26... A dissolving cylinder 13 is fixedly connected to the bottom plate 10, with only the round head of the bottom connecting column 26 connected to the round head groove of the hollow hemispherical platform 25. This allows the connecting column 26 to rotate at multiple angles within the hollow hemispherical platform 25. A protrusion 27 is provided on the upper end face of the dissolving cylinder 13, and a fixing ring 15 is fixedly sleeved on the protrusion 27. An extension 16 is fixedly connected to the fixing ring 15. A power motor 22 is fixedly installed on the upper end face of the bottom plate 10, and a rotating shaft 19 is fixedly connected to the output end of the power motor 22. A drive disk 18 is fixedly connected to the rotating shaft 19, and a connecting arm 17 is connected between the drive disk 18 and the extension 16. The two ends of the connecting arm 17 are hinged to the drive disk 18 and the extension 16, respectively.

[0027] First, the solute and solvent requiring low-temperature dissolution are added to the inner cavity of the dissolution tank 13. Meanwhile, condensate is circulated into the water bath 12, and the temperature of the condensate is controlled within the required range. If the condensate temperature exceeds the required range, the condensate is circulated to ensure that the condensate temperature in the water bath 12 remains at the required dissolution temperature. Then, the power motor 22 is started, driving the drive disc 18 to rotate, thereby causing the entire dissolution tank 13 to rotate circumferentially via the connecting arm 17. Since the bottom of the dissolution tank 13 is connected to the hollow half... The ball joints 25 are connected by connecting columns 26, so the entire dissolving tank 13 will rotate with the hollow hemispherical platform 25 as the bottom point, and the upper part will tilt towards the water bath 12. It will be shaken in the water bath 12. The bottom is kept at a low temperature by using condensed water for low-temperature dissolution. Shaking is used to accelerate the dissolution efficiency. Compared with other low-temperature dissolution devices, it effectively avoids contact between other stirring elements and solute solvents, because contact between stirring elements and solute solvents will cause a certain degree of temperature disruption, resulting in a reduction in the functionality of the solute.

[0028] It is worth mentioning that, in order to further improve the low-temperature control of the solute by the condensate, in this embodiment, no fewer than six arc-shaped plates 14 are fixedly installed at equal intervals on the outer end face of the dissolving tank 13. Here, eight are selected to be installed. The arc-shaped plates 14 are inclined along the outer end face of the dissolving tank 13, with the inclination angle based on the vertical direction and the offset angle controlled between 0 and 30°. During the shaking of the dissolving tank 13, the arc-shaped plates 14 can be used to stir the condensate, forming a vortex to a certain extent, thereby accelerating the heat dissipation of the dissolving tank 13 and thus improving the low-temperature control of the solute.

[0029] It should be noted that, in order to further avoid the impact on the low-temperature dissolution temperature, in this embodiment, the outer end of the power motor 22 is covered with a heat insulation cover 21, and the upper end face of the base plate 10 is fixedly installed with an outer frame 20. The rotating shaft 19 passes through the upper end face of the outer frame 20, and the entire drive mechanism is isolated with heat insulation material to reduce the impact on the temperature of the dissolution tank 13.

[0030] It is also worth mentioning that, in this embodiment, the bottom of the inner cavity of the dissolving tank 13 is provided with a discharge port, and the bottom end of the bottom plate 10 is equipped with a drain pipe 24. The drain pipe 24 extends upward and penetrates into the discharge hole in the hollow hemispherical platform 25, so that the raw material can be discharged through the drain pipe 24 after dissolution is completed.

[0031] In practice, the solute and solvent that need to be dissolved at low temperature are first added to the inner cavity of the dissolving tank 13. At this time, condensate is introduced into the water bath 12. The temperature of the condensate is controlled within the required range. Once the temperature of the condensate exceeds the required range, the condensate is circulated to ensure that the temperature of the condensate in the water bath 12 is at the required dissolving temperature. Then, the power motor 22 is started to drive the drive disc 18 to rotate, thereby driving the entire dissolving tank 13 to rotate in a circle through the connecting arm 17. The shaking is used to accelerate the dissolution. At the same time, the arc plate 14 at the outer end stirs the condensate, forming a vortex to a certain extent, thereby accelerating the heat dissipation of the dissolving tank 13 and improving the low temperature control of the solute. After the raw material is dissolved, it is discharged through the drain pipe 24.

[0032] It should be emphasized that the embodiments described in this utility model are illustrative rather than limiting. Therefore, this utility model is not limited to the embodiments described in the specific implementation. Any other implementation methods derived by those skilled in the art based on the technical solutions of this utility model are also within the scope of protection of this utility model.

Claims

1. A low-temperature dissolving device for a compounded food additive raw material, comprising a base plate (10), characterized in that: A water bath (12) is fixedly installed on the upper surface of the base plate (10). A hollow hemispherical platform (25) is fixedly installed at the center of the bottom of the inner cavity of the water bath (12). A connecting column (26) is connected to the hollow hemispherical platform (25). A dissolving tank (13) is fixedly connected to the upper surface of the connecting column (26). A protrusion (27) is provided on the upper surface of the dissolving tank (13). A fixing ring (15) is fixedly sleeved on the protrusion (27). 15) An extension (16) is fixedly connected to the base plate (10). A power motor (22) is fixedly installed on the upper end face of the base plate (10). A rotating shaft (19) is fixedly connected to the output end of the power motor (22). A drive disk (18) is fixedly connected to the rotating shaft (19). A connecting arm (17) is connected between the drive disk (18) and the extension (16). The two ends of the connecting arm (17) are respectively hinged to the drive disk (18) and the extension (16).

2. The low temperature dissolving device of a compound food additive raw material according to claim 1, characterized in that: At least six arc-shaped plates (14) are fixedly installed at equal intervals on the outer end face of the dissolving tank (13).

3. The low temperature dissolving device of a compound food additive raw material according to claim 2, characterized in that: The arc-shaped plate (14) is inclined along the outer end face of the dissolving tank (13), with the inclination angle based on the vertical direction and the offset angle controlled between 0 and 30°.

4. The low temperature dissolving device of a compound food additive raw material according to claim 3, characterized in that: The outer end of the power motor (22) is covered with a heat insulation cover (21), and an outer frame (20) is fixedly installed on the upper end surface of the base plate (10). The rotating shaft (19) passes through the upper end surface of the outer frame (20).

5. The low temperature dissolving apparatus of a compounded food additive raw material according to claim 4, characterized in that: The bottom of the inner cavity of the dissolving tank (13) is provided with a discharge port, and the bottom end of the bottom plate (10) is equipped with a drain pipe (24). The drain pipe (24) extends upward and enters to connect with the discharge hole in the hollow hemispherical platform (25).

6. The low temperature dissolving apparatus of a compounded food additive raw material according to claim 5, characterized in that: The water bath (12) has water pipe interface ends (23) connected to both the front and rear ends, one of which is connected to the inlet of the external cooling water source and the other is connected to the return end of the external cooling water source.

7. The low temperature dissolving apparatus of a compounded food additive raw material according to claim 6, characterized in that: The bottom plate (10) has brackets (11) fixedly installed on the left and right sides of its lower end face.