Honey refining pot heated by circulating water

Through the internal and external dual-cavity structure and rotary communication pipe design, combined with the scraper and stirring parts of the mixing parts, the problems of uneven temperature and functional separation in the honey pot are solved, the comprehensive circulation and flexible operation of hot water are achieved, and the quality and efficiency of honey processing are improved.

CN120381792AActive Publication Date: 2025-07-29GUANG DONG HEXIANG PHARM CO LTD
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Patent Information

Application Number
CN202510833658.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-20
Publication Date
2025-07-29
Estimated Expiration
2045-06-20

AI Technical Summary

Technical Problem

During the heating process of the existing honey-refining pot, there are problems of uneven temperature distribution and separation of stirring and wall scraping functions in the water bath, resulting in uneven heating and low equipment efficiency.

Method used

It adopts a dual-cavity structure inside and outside and a rotary communication pipe design, combining the scraper and stirring parts of the stirring parts to realize closed-loop circulation of hot water and flexible working mode switching, ensuring temperature uniformity and efficient operation of the equipment.

Benefits of technology

The comprehensive circulation of hot water in the heating chamber is achieved, heating uniformity and stability are improved, and the adaptability of the equipment and the quality and efficiency of honey processing are enhanced.

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Abstract

The invention relates to the technical field of medicine production equipment, and discloses a circulating water heating honey refining pot, the circulating water heating honey refining pot comprises a heating cavity and a honey refining cavity, the heating cavity comprises an outer cavity and an inner cavity, the outer cavity covers the outer side of the honey refining cavity, the inner cavity is located in the honey refining cavity and vertically arranged at the center of the honey refining cavity, and the inner cavity is communicated with the heating cavity. The bottom end of the outer cavity is communicated with the bottom end of the inner cavity; a communicating pipe is arranged at the top end of the heating cavity, the communicating pipe is used for communicating the top end of the outer cavity with the top end of the inner cavity, one end of the communicating pipe takes the top end of the inner cavity as the center, the other end of the communicating pipe rotates around the top end of the outer cavity, and the communicating pipe is provided with a pump body; by arranging the inner and outer double-cavity structure and using the rotary communicating pipe for connection at the top, hot water enters from the bottom of the inner cavity, rises to the top after being heated, and then is guided into the outer cavity through the rotary communicating pipe to form closed-loop circulation.
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Description

Technical Field

[0001] The present invention relates to the technical field of pharmaceutical production equipment, and particularly relates to a circulating water heating honey melting pan. Background Art

[0002] During the processing of honey, due to its rich content of temperature-sensitive active ingredients such as enzymes and vitamins, too high heating temperature is likely to cause denaturation or destruction of the active ingredients, thus affecting the nutritional value and quality of honey. Therefore, honey melting usually adopts the water bath heating method to achieve uniform and stable temperature control effect.

[0003] For example: Patent Application No. CN202022202694.0 discloses a honey melting pan, which provides hot water to the pan body through an external water storage tank to achieve gentle heating. This design can effectively reduce temperature fluctuations and avoid quality degradation problems caused by local overheating. At the same time, the equipment is equipped with a stirring shaft and spiral blades to improve the stirring efficiency, and also has a scraping device to prevent honey from adhering to the pan wall. However, in the actual application process, there are still some problems that need to be urgently improved in this type of honey melting pan: Firstly, the pan body of the existing honey melting pan mostly adopts an arc-shaped structure design. When performing water bath circulation heating, usually two of the three positions at both ends of the bottom of the pan body are selected as the interfaces for the water inlet pipe and the water outlet pipe. Due to the limitation of the pan body shell structure, it is difficult for the water flow to form a full circulation in the entire water bath cavity, resulting in uneven temperature distribution during the heating process and affecting the uniformity and stability of the water bath heating.

[0004] Secondly, in terms of honey stirring and anti-adhesion, the current equipment generally uses spiral blades and scrapers to undertake the stirring and wall scraping functions respectively, and the two structures are independent of each other. In the actual production process, it is not necessary for the scraper to work continuously. For example, in the initial stage of honey melting, when the honey viscosity is relatively high, strong stirring should be the main focus to ensure uniform mixing of the materials; while in the middle and late stages of melting, as the fluidity of the honey increases and residues are likely to appear on the pan wall, the wall scraping operation needs to be emphasized. Therefore, separating the stirring and wall scraping functions and running them for a long time not only causes waste of energy and structure, but also reduces the flexibility and efficiency of equipment use. Summary of the Invention

[0005] In view of this, the purpose of the present invention is to provide a circulating water heating honey melting pan to solve the problems existing in the above background art.

[0006] To solve the above technical problems, the technical solution of the present invention is a circulating water heating honey melting pot, which includes a heating chamber and a honey melting chamber. The heating chamber includes an outer chamber and an inner chamber. The outer chamber is wrapped outside the honey melting chamber. The inner chamber is located inside the honey melting chamber and is vertically arranged at the center of the honey melting chamber. The bottom ends of the outer chamber and the inner chamber are communicated. A connecting pipe is provided at the top end of the heating chamber. The connecting pipe is used to connect the top end of the outer chamber and the top end of the inner chamber. One end of the connecting pipe rotates around the top end of the outer chamber with the top end of the inner chamber as the center. The connecting pipe is equipped with a pump body. Under the rotation of the pump body and the connecting pipe, the liquid in the outer chamber and the inner chamber can flow comprehensively, ensuring the full circulation of the liquid in the heating chamber and improving the uniformity and stability of the water bath heating in the honey melting chamber.

[0007] Preferably, the opening direction of the honey melting chamber is the pot mouth. The top openings of the outer chamber and the inner chamber both face the pot mouth. A first seal and a second seal are respectively provided on the top openings of the outer chamber and the inner chamber. The first seal seals the top opening of the outer chamber and can slide on the top opening of the outer chamber. Pipe joints are provided on both the first seal and the second seal. The pipe joints communicate with the heating chamber and can be connected to the connecting pipe. The pipe joints can be switched between a conducting state and a closed state. When the pipe joints are connected to the connecting pipe, the pipe joints are switched to the conducting state to ensure the liquid circulation in the heating chamber. When the pipe joints are not connected to the connecting pipe, the pipe joints are switched to the closed state to prevent the liquid in the heating chamber from flowing out.

[0008] Further, a conducting pipe is provided on the first seal. An opening communicating with the inside of its own pipe is provided on the side wall of the conducting pipe. The conducting pipe is located inside the outer chamber and is communicated with the pipe joint on the first seal. The connecting pipe exchanges liquid deeply with the outer chamber through the conducting pipe, and under the drive of the rotation of the connecting pipe, the full and sufficient circulation of the liquid in the heating chamber is realized.

[0009] Further, the pipe joint includes a pipe body. One end of the pipe body connected to the connecting pipe is provided with a closed end and a sealing ball is provided at the port. A support member is provided at the other end port of the pipe body. A return spring is provided between the support member and the sealing ball. Under the action of the return spring, the pipe joint is in a closed state. A communication port is provided on the side wall of the end face of the connecting pipe. When the pipe joint is connected to the connecting pipe, the sealing ball is pressed down by the end face of the connecting pipe, so that the pipe joint is switched to the conducting state, and the communication port and the pipe joint are conducted.

[0010] Preferably, it includes a stirring component. The stirring component includes a driving shaft located on the central line of the honey refining cavity. One end of the connecting pipe close to the inner cavity is connected to the driving shaft, and the driving shaft drives the connecting pipe to rotate around the top end of the outer cavity with the top end of the inner cavity as the center.

[0011] Furthermore, the stirring component includes a transmission shaft coaxially arranged with the driving shaft. The transmission shaft is annularly arranged and sleeved outside the side wall of the inner cavity. A scraping plate and a stirring member are arranged on the transmission shaft, and the honey in the honey refining cavity is stirred and anti-adhesion treatment is carried out by the scraping plate and the stirring member.

[0012] Furthermore, the transmission shaft includes a first transmission member and a second transmission member. One end of the scraping plate is rotatably connected and installed on the first transmission member, one end of the stirring member is rotatably connected and installed on the second transmission member, and the other end of the first transmission member and the other end of the second transmission member are rotatably connected together; the distance between the first transmission member and the second transmission member can be adjusted. Under the rotation connection of the stirring member and the scraping plate, the stirring state and the anti-adhesion state of the stirring component are switched; when the first transmission member and the second transmission member are close to each other, the stirring component switches to the anti-adhesion state, and the scraping plate acts on the side wall of the honey refining cavity to avoid honey adhesion; when the first transmission member and the second transmission member are far away from each other, the stirring component switches to the stirring state, and the scraping plate and the stirring member jointly carry out the stirring operation.

[0013] Furthermore, the transmission shaft includes a first connecting member and a second connecting member. The first connecting member is used to connect the first transmission member and the driving shaft, the second connecting member is used to connect the second transmission member and the driving shaft, and the second transmission member is slidably arranged on the first connecting member; at least one of the first connecting member and the second connecting member is slidably arranged on the driving shaft. By controlling the positions of the first connecting member and the second connecting member on the driving shaft, the control of the distance between the first transmission member and the second transmission member is realized.

[0014] Furthermore, the driving shaft is provided with a sliding groove, the sliding groove acts on the first connecting member and / or the second connecting member, and a control member is movably arranged on the connecting pipe. By controlling the control member, the positions of the first connecting member and / or the second connecting member in the sliding groove are controlled, so as to realize the control of the positions of the first connecting member and the second connecting member on the driving shaft.

[0015] The technical effects of the present invention are mainly reflected in the following aspects: By setting up an inner and outer double - cavity structure and connecting them with a rotary connecting pipe at the top, after the hot water enters from the bottom of the inner cavity, it rises to the top after heating and then enters the outer cavity through the rotary connecting pipe, forming a closed - loop circulation. This breaks the limitations of traditional fixed interfaces, enabling the hot water to achieve dynamic and comprehensive circulation within the entire heating cavity, effectively avoiding the problems of local stagnation and the co - existence of "hot zones" and "cold zones"; ensuring that heat can be evenly conducted from the center to the surroundings, improving the uniformity of honey heating and protecting its active ingredients from being damaged.

[0016] The settings of the first seal and the second seal not only play a role in preventing hot - water leakage but also allow the first seal to slide synchronously with the rotation of the connecting pipe, providing an installation basis for the conducting pipe. The pipe joint can automatically switch between the "conducting state" and the "closed state" according to whether the connecting pipe is connected. When the connecting pipe is not connected, it remains in the closed state to prevent liquid from flowing out; once connected, the channel is opened through the pressure action on the end face of the connecting pipe to achieve liquid circulation.

[0017] By driving the connecting pipe and the stirring component with a drive shaft, the liquid circulation and the stirring operation are carried out simultaneously. The stirring component integrates the functions of a scraper and a stirrer, and can flexibly adjust the working mode according to different stages of honey processing. For example, a strong stirring mode is adopted in the initial stage of honey refining, while anti - adhesion treatment is emphasized in the later stage. This design enhances the adaptability and flexibility of the equipment, improving the quality and efficiency of honey processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the structural diagram of the present invention; Figure 2 is Figure 1 the half - section structural diagram of the middle pot body; Figure 3 is Figure 2 the half - section structural diagram of the middle heating cavity; Figure 4 is Figure 3 the structural diagram of the middle pipe joint; Figure 5 is Figure 1 the structural diagram of the middle stirring component; Figure 6 is Figure 5 the schematic diagram of the functions of the control part and the connecting pipe in the middle stirring component; In the figure: 1. Heating chamber, 11. Outer chamber, 12. Inner chamber, 13. First seal; 2. Honey refining chamber; 3. Connecting pipe, 31. Connecting port; 4. Pipe joint, 41. Pipe body, 42. Sealing ball, 43. Support member, 44. Return spring; 5. Stirring member, 51. Driving shaft, 52. Scraper, 53. Stirring piece, 54. First transmission member, 55. Second transmission member, 56. First connecting member, 57. Second connecting member, 58. Chute, 59. Control member; 61. Frame, 62. Kettle body, 63. Kettle lid. Detailed implementation manners

[0019] The following further details the specific implementation manners of the present invention in conjunction with the accompanying drawings, so that the technical solutions of the present invention are easier to understand and master. In the embodiments, it should be understood that the orientation or positional relationship indicated by terms such as "middle", "upper", "lower", "top", "right side", "left end", "above", "back", "middle part", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation to the present invention. Additionally, in this specific implementation manner, if there is no special description of the connection or fixing method between components, the connection or fixing method can be bolt fixing, nail pin fixing, or pin shaft connection, etc., which are commonly used in the prior art. Therefore, it will not be elaborated in this embodiment.

[0020] A circulating water heating honey refining kettle provided by the present invention is mainly applied to the heating and refining of honey, aiming to solve problems such as uneven water bath heating and low efficiency caused by the separation of stirring and wall scraping functions in the prior art; however, it should not be limited to this, and it can also be used in other similar production processes.

[0021] Introduction to the basic structure of the honey refining kettle: The honey refining kettle includes a frame 61, a kettle body 62, and a kettle lid 63. The kettle body 62 is swingably arranged on the frame 61 to facilitate the pouring of honey after honey refining. A linear moving member is arranged between the kettle lid 63 and the frame 61, and the linear moving member is used to control the closing and opening of the kettle body 62 and the kettle lid 63.

[0022] Embodiment 1 See Figure 1 、 Figure 2 、 Figure 3, this embodiment discloses a circulating water heating honey cooking pot, which includes a heating chamber 1 and a honey cooking chamber 2. The heating chamber 1 is used to provide a surrounding constant temperature water bath environment; the heating chamber 1 includes an outer chamber 11 and an inner chamber 12. The outer chamber 11 is wrapped outside the honey cooking chamber 2, and the inner chamber 12 is located inside the honey cooking chamber 2 and is vertically arranged at the center of the honey cooking chamber 2. The bottom ends of the outer chamber 11 and the inner chamber 12 are communicated; hot water flows upward from the center and then flows into the outer chamber 11 through the rotating connecting pipe 3, driving the heat to diffuse outward. This structure helps the heat to be evenly conducted from the center to the surrounding, avoiding the problem of coexistence of "hot zones" and "cold zones" caused by limited water flow paths in traditional structures, further ensuring that the honey is uniformly heated and protecting its active ingredients from being damaged. The top of the heating chamber 1 is provided with a connecting pipe 3, which is used to connect the top of the outer chamber 11 and the top of the inner chamber 12. One end of the connecting pipe 3 rotates around the top of the outer chamber 11 with the top of the inner chamber 12 as the center; the connecting pipe 3 is equipped with a pump body; it breaks the limitation of the traditional fixed interface, enables the hot water to dynamically adjust the path during the circulation process, and avoids local stagnation phenomena. At the same time, by adjusting the pump body power, the water circulation speed can be flexibly controlled, so as to match the heating requirements of honey at different stages and achieve precise temperature control. Under the rotation of the pump body and the connecting pipe 3, the liquids in the outer chamber 11 and the inner chamber 12 can flow comprehensively, ensuring the full circulation of the liquid in the heating chamber 1 and improving the uniformity and stability of the water bath heating of the honey cooking chamber 2. By setting the inner and outer double chamber structure and using a rotating connecting pipe 3 to connect at the top, after the hot water enters from the bottom of the inner chamber 12, it rises to the top after heating and then enters the outer chamber 11 through the rotating connecting pipe 3 to form a closed-loop circulation. This structure ensures that the liquid in the entire heating chamber 1 can flow comprehensively, effectively improving the heating uniformity and stability.

[0023] See Figure 2 , Figure 3 , Figure 4 , this embodiment optimizes the sealing structure and pipeline connection method of the heating chamber 1, improving the stability and safety of the equipment during the liquid circulation process. Specifically as follows: The opening direction of the honey cooking chamber 2 is the pot mouth, which is used for the feeding and discharging operations of honey. The top openings of the outer chamber 11 and the inner chamber 12 both face the pot mouth. First sealing members 13 and second sealing members are respectively arranged on the top openings of the outer chamber 11 and the inner chamber 12. The first sealing member 13 seals the top opening of the outer chamber 11, and the first sealing member 13 can slide on the top opening of the outer chamber 11; the first sealing member 13 slides synchronously with the rotation of the connecting pipe 3 without damaging the sealing performance. This sealing member not only plays a role in preventing hot water leakage, but also provides an installation basis for the subsequent conduction pipe.

[0024] A conduction tube is provided on the first seal 13. An opening communicating with the inside of its own pipeline is provided on the side wall of the conduction tube. The conduction tube is located inside the outer cavity 11, and the conduction tube communicates with the pipeline joint 4 on the first seal 13; the communicating tube 3 performs in-depth liquid exchange with the outer cavity 11 through the conduction tube. Driven by the rotation of the communicating tube 3, full and sufficient circulation of the liquid in the heating cavity 1 is realized. The communicating tube 3 extends deep into the outer cavity 11 through the conduction tube and, in cooperation with its rotation action, realizes in-depth liquid exchange between the inner and outer cavities 11; ensures full circulation of hot water in the entire heating cavity 1, reduces the occurrence of local overheating or cooling phenomena, and ensures the gentle heating requirements during the honey processing process.

[0025] Pipeline joints 4 are provided on both the first seal 13 and the second seal. The pipeline joint 4 communicates with the heating cavity 1 and can be connected to the communicating tube 3; the pipeline joint 4 can switch between a conducting state and a closed state; when the pipeline joint 4 is connected to the communicating tube 3, the pipeline joint 4 switches to the conducting state to ensure the progress of liquid circulation in the heating cavity 1; when the pipeline joint 4 is not connected to the communicating tube 3, the pipeline joint 4 switches to the closed state to prevent the liquid in the heating cavity 1 from flowing out.

[0026] The pipeline joint 4 includes a pipe body 41. One end of the pipe body 41 connected to the communicating tube 3 is provided with a closed end and a sealing ball 42 is provided at the port. A support member 43 is provided at the other end port of the pipe body 41. A return spring 44 is provided between the support member 43 and the sealing ball 42; under the action of the return spring 44, the pipeline joint 4 is in the closed state; a communication port 31 is provided on the end face side wall of the communicating tube 3. When the pipeline joint 4 is connected to the communicating tube 3, the sealing ball 42 is pressed down by the end face of the communicating tube 3, causing the pipeline joint 4 to switch to the conducting state and enabling the communication port 31 to communicate with the pipeline joint 4.

[0027] In the embodiment, the liquid circulation path in the heating cavity 1 is as follows: 1) Hot water is pumped into the bottom of the inner cavity 12; 2) The liquid rises to the top of the inner cavity 12 after being heated; 3) The communicating tube 3 drives the liquid to enter the outer cavity 11 from the inner cavity 12; 4) The liquid in the outer cavity 11 flows back to the communicating tube 3 through the conduction tube and the pipeline joint 4; 5) It returns to the inner cavity 12 again to form a closed-loop circulation.

[0028] Under the driving of the pump body and the rotation of the connecting pipe 3, hot water continuously flows in the entire heating chamber 1, and the path coverage is wide, effectively reducing the problem of water flow dead ends in the traditional structure, and significantly improving the heating efficiency and temperature consistency.

[0029] See Figure 5 , Figure 6 , this embodiment also discloses a stirring component 5, the stirring component 5 includes a driving shaft 51, the driving shaft 51 is located on the center line of the honey refining chamber 2, one end of the connecting pipe 3 close to the inner cavity 12 is connected to the driving shaft 51, and the driving shaft 51 drives the connecting pipe 3 to rotate around the top end of the outer cavity 11 with the top end of the inner cavity 12 as the center. The driving shaft 51 can not only drive the stirring component 5 to work, but also synchronously drive the connecting pipe 3 to rotate around the top end of the inner cavity 12, realizing the full circulation of the liquid in the inner and outer cavities 11. The need for an independent driving device is reduced, making the whole system more compact; at the same time, the liquid circulation and the stirring operation are realized, improving the overall working efficiency and stability.

[0030] The stirring component 5 includes a transmission shaft coaxially arranged with the driving shaft 51. The transmission shaft is annularly arranged and sleeved outside the side wall of the inner cavity 12. A scraping plate 52 and a stirring member 53 are arranged on the transmission shaft, and the honey in the honey refining chamber 2 is stirred and anti-adhesion treated by the scraping plate 52 and the stirring member 53.

[0031] The transmission shaft includes a first transmission member 54 and a second transmission member 55. One end of the scraping plate 52 is rotatably connected and installed on the first transmission member 54, one end of the stirring member 53 is rotatably connected and installed on the second transmission member 55, and the other end of the first transmission member 54 and the other end of the second transmission member 55 are rotatably connected together; the distance between the first transmission member 54 and the second transmission member 55 can be adjusted. Under the rotation connection of the stirring member 53 and the scraping plate 52, the stirring state and the anti-adhesion state of the stirring component 5 are switched; the working mode can be automatically adjusted according to different stages of honey processing (such as strong stirring required at the initial stage with high viscosity and key anti-adhesion required at the later stage with enhanced fluidity), optimizing the production process. When the first transmission member 54 and the second transmission member 55 are close to each other, the stirring component 5 switches to the anti-adhesion state, and the scraping plate 52 acts on the side wall of the honey refining chamber 2 to avoid the situation of honey adhesion; when the first transmission member 54 and the second transmission member 55 are far away from each other, the stirring component 5 switches to the stirring state, and the scraping plate 52 and the stirring member 53 jointly perform the stirring operation.

[0032] The transmission shaft includes a first connecting member 56 and a second connecting member 57. The first connecting member 56 is used to connect the first transmission member 54 and the drive shaft 51, and the second connecting member 57 is used to connect the second transmission member 55 and the drive shaft 51. The second transmission member 55 is slidably disposed on the first connecting member 56; at least one of the first connecting member 56 and the second connecting member 57 is slidably disposed on the drive shaft 51. By controlling the positions of the first connecting member 56 and the second connecting member 57 on the drive shaft 51, the control of the distance between the first transmission member 54 and the second transmission member 55 is realized. A chute 58 is formed on the drive shaft 51. The chute 58 acts on the first connecting member 56 and / or the second connecting member 57. A control member 59 is movably disposed on the communication pipe 3. The position of the control member 59 is controlled by a linear moving member. By controlling the positions of the first connecting member 56 and / or the second connecting member 57 in the chute 58 by the control member 59, the control of the positions of the first connecting member 56 and the second connecting member 57 on the drive shaft 51 is realized.

[0033] In addition; as common general knowledge in this industry; the heating chamber 1 mentioned in the foregoing is equipped with a heating element, and the drive shaft 51 is equipped with an independent drive motor. The above is common general knowledge; therefore, the principles and structures thereof will not be described in detail.

[0034] Of course, the above are only typical examples of the present invention. In addition, the present invention may have many other specific implementation manners. Any technical solutions formed by equivalent substitution or equivalent transformation fall within the scope of protection required by the present invention.

Claims

1. A circulating water heating honey melting pan, comprising a heating chamber and a honey melting chamber, characterized in that: The heating chamber includes an outer chamber and an inner chamber. The outer chamber is wrapped outside the honey melting chamber. The inner chamber is located inside the honey melting chamber and is vertically arranged at the center of the honey melting chamber. The bottom ends of the outer chamber and the inner chamber are communicated; A connecting pipe is provided at the top end of the heating chamber. The connecting pipe is used to connect the top end of the outer chamber and the top end of the inner chamber. One end of the connecting pipe is centered on the top end of the inner chamber, and the other end rotates around the top end of the outer chamber. The connecting pipe is equipped with a pump body; Under the rotation of the pump body and the connecting pipe, the liquids in the outer chamber and the inner chamber can flow comprehensively, ensuring the full circulation of the liquid in the heating chamber and improving the uniformity and stability of the water bath heating in the honey melting chamber.

2. The circulating water heating honey melting pan according to claim 1, wherein the opening direction of the honey melting chamber is the pot mouth, and it is characterized in that The top openings of the outer chamber and the inner chamber both face the pot mouth. A first seal and a second seal are respectively provided on the top openings of the outer chamber and the inner chamber. The first seal seals the top opening of the outer chamber, and the first seal can slide on the top opening of the outer chamber; Both the first seal and the second seal are provided with pipe joints for pipelines. The pipe joints are communicated with the heating chamber and can be connected to the connecting pipe; The pipe joint can be switched between a conducting state and a closed state; when the pipe joint is connected to the connecting pipe, the pipe joint is switched to the conducting state to ensure the circulation of the liquid in the heating chamber; when the pipe joint is not connected to the connecting pipe, the pipe joint is switched to the closed state to prevent the liquid in the heating chamber from flowing out.

3. The circulating water heating honey melting pan according to claim 2, characterized in that A conducting pipe is provided on the first seal. An opening communicating with the inside of its own pipeline is opened on the side wall of the conducting pipe. The conducting pipe is located inside the outer chamber and is communicated with the pipe joint on the first seal; The connecting pipe exchanges liquids deeply with the outer chamber through the conducting pipe, and under the drive of the rotation of the connecting pipe, the full and sufficient circulation of the liquid in the heating chamber is realized.

4. The circulating water heating honey melting pan according to claim 2, characterized in that: The pipe joint includes a pipe body. One end of the pipe body connected to the connecting pipe is provided with a constricted opening and a sealing ball is arranged at the port. A support member is provided at the other end port of the pipe body. A return spring is arranged between the support member and the sealing ball; Under the action of the return spring, the pipe joint is in a closed state; A communication port is opened on the end face side wall of the connecting pipe. When the pipe joint is connected to the connecting pipe, the sealing ball is pressed down by the end face of the connecting pipe, so that the pipe joint is switched to the conducting state, and the communication port and the pipe joint are conducted.

5. The circulating water heating honey melting pan according to any one of claims 1 to 4, including a stirring component, the stirring component includes a driving shaft, and is characterized in that, the driving shaft is located on the central line of the honey melting cavity, one end of the connecting pipe close to the inner cavity is connected to the driving shaft, and the connecting pipe is driven by the driving shaft to rotate around the top end of the outer cavity with the top end of the inner cavity as the center.

6. The circulating water heating honey melting pan according to claim 5, characterized in that: the stirring component includes a transmission shaft arranged coaxially with the driving shaft, the transmission shaft is arranged in a ring shape and sleeved outside the side wall of the inner cavity, a scraping plate and a stirring member are arranged on the transmission shaft, and the honey in the honey melting cavity is stirred and anti-adhesion treated by the scraping plate and the stirring member.

7. The circulating water heating honey melting pan according to claim 6, characterized in that: the transmission shaft includes a first transmission member and a second transmission member, one end of the scraping plate is rotatably connected and installed on the first transmission member, one end of the stirring member is rotatably connected and installed on the second transmission member, and the other end of the first transmission member and the other end of the second transmission member are rotatably connected together; the distance between the first transmission member and the second transmission member can be adjusted, and under the rotation connection of the stirring member and the scraping plate, the stirring state and the anti-adhesion state of the stirring component are switched; when the first transmission member and the second transmission member are close to each other, the stirring component switches to the anti-adhesion state, and the scraping plate acts on the side wall of the honey melting cavity to avoid honey adhesion; when the first transmission member and the second transmission member are far away from each other, the stirring component switches to the stirring state, and the scraping plate and the stirring member jointly perform the stirring operation.

8. The circulating water heating honey melting pan according to claim 7, characterized in that: the transmission shaft includes a first connecting member and a second connecting member, the first connecting member is used to connect the first transmission member and the driving shaft, the second connecting member is used to connect the second transmission member and the driving shaft, and the second transmission member is slidably arranged on the first connecting member; at least one of the first connecting member and the second connecting member is slidably arranged on the driving shaft, and by controlling the positions of the first connecting member and the second connecting member on the driving shaft, the control of the distance between the first transmission member and the second transmission member is realized.

9. The circulating water heating honey melting pan according to claim 8, characterized in that: a chute is opened on the driving shaft, the chute acts on the first connecting member and / or the second connecting member, a control member is movably arranged on the connecting pipe, and by controlling the control member to control the positions of the first connecting member and / or the second connecting member in the chute, the control of the positions of the first connecting member and the second connecting member on the driving shaft is realized.

Citation Information

Patent Citations

  • Honey refining pot

    CN213434114U

  • Equipment for processing and preparing hydrogel dressing and processing method

    CN115738874A

  • Uniform stirring tank for processing macromolecular water-absorbing material

    CN215540232U

  • Heating and cooking device and method

    JP2001178628A