Furnace end cleaning device of cotton candy machine

By installing cleaning spray nozzles and water inlets inside the burner base of the cotton candy machine, combined with the drive mechanism and high-pressure water mist cleaning, the problem of sugar residue clogging inside the burner head of the cotton candy machine is solved, achieving thorough cleaning of the burner head.

CN223775617UActive Publication Date: 2026-01-09GUANGZHOU LOSON TECH CO LTD
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Patent Information

Application Number
CN202520107310.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2026-01-09
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

In existing technologies, the furnace head cleaning of cotton candy machines can only be done externally by spraying, which cannot effectively solve the problem of sugar residue generated during internal heating clogging the gaps between the teeth.

Method used

A furnace head cleaning device for a cotton candy machine was designed. By setting cleaning spray nozzles and cleaning water inlets inside the furnace head base, the furnace head heating components are driven to rotate at high speed using a drive mechanism, and high-pressure water mist is sprayed for cleaning. Combined with centrifugal force, residual sugar is thrown out.

Benefits of technology

It achieves a thorough cleaning of the inside of the furnace head heating components, effectively solving the problem of internal sugar residue blockage and ensuring the normal operation of the furnace head.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a furnace end cleaning device of a marshmallow maker, which comprises a positioning bottom plate, a furnace end base is arranged on the positioning bottom plate, a furnace end heating assembly is rotatably arranged on the furnace end base, a driving mechanism is arranged between the positioning bottom plate and the furnace end base, and a cleaning water injection nozzle is arranged in the furnace end base. A clean water injection opening is formed in the outer side wall of the furnace end base, and a waste water outlet is further formed in the furnace end base. Cleaning water is discharged into the cleaning water injection opening, and then high-pressure water mist is sprayed out from the cleaning water injection opening, so that the interior of the furnace end heating assembly is cleaned; meanwhile, the driving mechanism is used for driving the furnace end heating assembly to rotate on the furnace end base at a high speed, so that residual sugar materials in the furnace end heating assembly can be effectively cleaned, the residual sugar materials are thrown out of the furnace end heating assembly through the centrifugal effect, and then the interior of the furnace end heating assembly is thoroughly kept clean; therefore, the problem that sugar outlet tooth seams are blocked by sugar residues generated by internal heating is effectively solved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of marshmallow machines, in particular to a furnace head cleaning device of a marshmallow machine. BACKGROUND

[0002] At present, a marshmallow is one of the most popular desserts, and a marshmallow machine is a device for making the marshmallow, and the device is generally applied to places such as shopping malls, amusement parks, cinemas and scenic spots. In the related art, when the marshmallow needs to be made, a worker directly pours the sugar material in a storage box into a feeding port of a furnace head, the sugar material is heated by the furnace head and is spun out to become sugar silk, the sugar silk is output through the tooth gap of the furnace head and is adhered to an external stick, after being shaped and processed, a taking opening on an outer warehouse door is opened in a limited time, and a customer takes the marshmallow out from the taking opening.

[0003] When the marshmallow machine is used to make the marshmallow for a period of time, the furnace head silk outlet of the marshmallow machine needs to be cleaned, so as to prevent the furnace head silk outlet from being blocked. However, in the related art, the cleaning of the furnace head is all external spray cleaning, which cannot effectively solve the problem that the tooth gap is blocked by the sugar residue generated by internal heating. CONTENT OF THE UTILITY MODEL

[0004] The application aims to provide a furnace head cleaning device of a marshmallow machine, so as to solve the problem that the cleaning of the furnace head is all external spray cleaning, which cannot effectively solve the problem that the tooth gap is blocked by the sugar residue generated by internal heating.

[0005] The furnace head cleaning device of the marshmallow machine provided by the application adopts the following technical scheme:

[0006] The furnace head cleaning device of the marshmallow machine comprises a positioning bottom plate, a furnace head base is arranged on the positioning bottom plate, a furnace head heating assembly is rotatably arranged on the furnace head base, a driving mechanism connected with the furnace head heating assembly is arranged between the positioning bottom plate and the furnace head base, a cleaning water spraying port matched with the furnace head heating assembly is arranged in the inside of the furnace head base, a cleaning water injection port communicated with the cleaning water spraying port is arranged on the outer side wall of the furnace head base, and a waste water outlet port matched with the furnace head heating assembly is further arranged on the furnace head base.

[0007] Further, the furnace head base comprises a base sleeve arranged on the positioning bottom plate, an inner wall of an upper end of the base sleeve is provided with a furnace head seat ring, a middle part of the furnace head seat ring is provided with a furnace head sleeve, a furnace head placing cavity is formed between the base sleeve, the furnace head seat ring and the furnace head sleeve, the furnace head heating assembly is rotationally arranged in the furnace head placing cavity, the cleaning water injection port is arranged on the furnace head sleeve, the cleaning water injection port is arranged on the outer side wall of the base sleeve, and the waste water outlet is arranged between the base sleeve and the furnace head seat ring and is in communication with the furnace head placing cavity.

[0008] Further, the inside of the furnace head seat ring and the furnace head sleeve is provided with an injection water pipeline in communication, and the injection water pipeline is in communication with the cleaning water injection port and the cleaning water injection port respectively.

[0009] Further, the caliber of the cleaning water injection port, the injection water pipeline and the cleaning water injection port gradually decreases in sequence.

[0010] Further, the driving mechanism comprises a driving motor arranged at the bottom of the positioning bottom plate, the positioning bottom plate is rotationally arranged with a furnace head transmission shaft matched with the furnace head base through a bottom bearing seat, a linkage assembly is arranged between the output end of the driving motor and the furnace head transmission shaft, and the furnace head heating assembly is arranged at the top end of the furnace head transmission shaft.

[0011] Further, the linkage assembly comprises a motor synchronous wheel arranged at the output end of the driving motor, the top end of the furnace head transmission shaft is provided with a furnace head synchronous wheel, and the motor synchronous wheel and the furnace head synchronous wheel are wound with a linkage synchronous belt.

[0012] Further, the bottom wall around the furnace head placing cavity is gradually inclined downward in the direction of the waste water outlet.

[0013] Further, the bottom of the positioning bottom plate is further provided with a damping assembly, the damping assembly comprises a plurality of elastic damping columns arranged at the bottom of the positioning bottom plate, and the bottoms of the plurality of elastic damping columns are simultaneously provided with fixing frames.

[0014] Compared with the prior art, the application has the beneficial effects that:

[0015] Through setting the structure of the positioning bottom plate, the furnace head base, the furnace head heating assembly, the driving mechanism, the cleaning water injection port, the cleaning water injection port and the waste water outlet, when the furnace head heating assembly needs to be cleaned, the external water supply equipment is connected with the cleaning water injection port, so that the cleaning water is discharged into the cleaning water injection port, and then the high-pressure water mist is sprayed from the cleaning water injection port, so that the inside of the furnace head heating assembly is cleaned. At the same time, the driving mechanism is used to drive the furnace head heating assembly to rotate at high speed on the furnace head base, so that the residual sugar in the furnace head heating assembly can be effectively cleaned, and the residual sugar is thrown out of the furnace head heating assembly by centrifugal force, so that the inside of the furnace head heating assembly is completely kept clean, so as to effectively solve the problem of sugar residue blocking the sugar tooth gap caused by internal heating. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a structure schematic view of the furnace head cleaning device of the cotton candy machine.

[0017] Figure 2 is Figure 1 is an explosion schematic view.

[0018] Figure 3 is Figure 2 is an enlarged schematic view of part A in

[0019] Figure 4 is a structure schematic view of the furnace head base.

[0020] Figure 5 is Figure 1 is a front view in

[0021] Figure 6 is Figure 1 is a left view in

[0022] Figure 7 is Figure 1 is a rear view in

[0023] Figure 8 is a structure schematic view of the furnace head outer cover and the sugar tooth gap.

[0024] BRIEF DESCRIPTION OF DRAWINGS:

[0025] 1, positioning the base plate; 2, the furnace head base; 21, the base sleeve; 22, the furnace head seat ring; 23, the furnace head sleeve; 24, the water injection pipeline; 25, the furnace head cavity; 26, the gap; 27, the sugar mouth; 3, the furnace head heating assembly; 31, the furnace head feeding screw; 32, the furnace head inner cover; 33, the furnace head line pressing plate; 34, the furnace head heating disc; 35, the furnace head outer cover; 36, the heating cavity; 37, the sugar tooth gap; 38, the furnace head fan blade; 4, the driving mechanism; 41, the driving motor; 42, the furnace head transmission shaft; 43, the bottom bearing seat; 44, the motor synchronous wheel; 45, the furnace head synchronous wheel; 46, the linkage synchronous belt; 5, the cleaning water jet; 6, the cleaning water injection; 7, the waste water outlet; 8, the flow gap; 9, the elastic shock column; 10, the fixed frame; 11, the brush. DETAILED DESCRIPTION

[0026] The following will be described in detail in combination with the accompanying drawings Figures 1-8 The application is further described in detail.

[0027] The application discloses a furnace head cleaning device of a marshmallow machine, which refers to Figure 1 and Figure 2 In the embodiment, the furnace head cleaning device comprises a positioning base plate 1, a furnace head base 2, a furnace head heating assembly 3 and a driving mechanism 4. The positioning base plate 1 is installed in the interior of the marshmallow machine; the furnace head base 2 is fixedly installed on the top of the positioning base plate 1; and the furnace head heating assembly 3 is rotationally arranged on the top of the furnace head base 2, so as to heat and melt the sugar material.

[0028] The driving mechanism 4 is arranged between the positioning base plate 1 and the furnace head base 2, and the output end of the driving assembly is connected with the furnace head heating assembly 3, so as to support the furnace head heating assembly 3. When the driving mechanism 4 is started, the furnace head heating assembly 3 can be driven to rotate at high speed on the top of the furnace head base 2, so that the melted sugar material can be spun out into silk from the tooth gap of the furnace head heating assembly 3.

[0029] Preferably, referring to Figure 2 and Figure 3 In the embodiment, the cleaning water jet 5 is arranged on the inner side wall of the furnace head base 2, and is located in the interior of the furnace head heating assembly 3, so that the cleaning water jet 5 cooperates with the furnace head heating assembly 3. Meanwhile, the cleaning water injection 6 is arranged on the outer side wall of the furnace head base 2, and is in communication with the cleaning water jet 5. The cleaning water injection 6 is connected with the external water supply equipment through a pipeline.

[0030] When the water supply device is started, the water supply device discharges clean water into the clean water injection port 6 through the pipeline, and then sprays high-pressure water mist from the clean water spray port 5, so that the inside of the burner head heating assembly 3 can be effectively cleaned. At the same time, by driving the burner head heating assembly 3 to rotate at high speed on the burner head base 2 by the driving mechanism 4, the residual sugar in the burner head heating assembly 3 can be effectively cleaned, and the residual sugar is thrown out of the burner head heating assembly 3 by centrifugal force, so that the inside of the burner head heating assembly 3 is completely kept clean.

[0031] In addition, with reference to Figure 1 , Figure 3 and Figure 4 , in this embodiment, a waste water outlet 7 is also provided on the burner head base 2, which cooperates with the burner head heating assembly 3, and is connected to the external waste water collection tank through a pipeline. After the high-pressure water mist cleans the inside of the burner head heating assembly 3, the cleaning water mist forms waste water in the inside of the burner head heating assembly 3, and a flow guide gap 8 is formed between the inside of the burner head heating assembly 3 and the top of the burner head base 2. The waste water flows along the flow guide gap 8 to the inside of the burner head base 2, and then is discharged into the external waste water collection tank through the waste water outlet 7, so that the waste water can be effectively discharged and collected, thereby preventing the waste water from overflowing by being stored in the inside of the burner head base 2.

[0032] The structure of the burner head base 2, the driving mechanism 4 and the burner head heating assembly 3 will be described in detail as follows:

[0033] Specifically, with reference to Figure 1 and Figure 4 , in this embodiment, the burner head base 2 includes a base sleeve 21, a burner head ring 22 and a burner head sleeve 23. The base sleeve 21 is fixedly installed on the top side of the positioning base plate 1 by a plurality of screws. The burner head ring 22 is installed on the inner side wall of the upper end of the base sleeve 21. One end of the burner head sleeve 23 is perpendicularly installed at the middle part of the burner head ring 22, and the other end of the burner head sleeve 23 extends into the inside of the burner head heating assembly 3.

[0034] More specifically, the clean water spray port 5 is provided on the outer side wall of the burner head sleeve 23, and the clean water injection port 6 is provided on the outer side wall of the base sleeve 21. Water injection pipelines 24 are provided in the inside of the burner head ring 22 and the burner head sleeve 23 and are in communication with each other. The two ends of the water injection pipeline 24 are in communication with the clean water spray port 5 and the clean water injection port 6 respectively, so that the clean water is discharged into the water injection pipeline 24 through the clean water injection port 6, and then is discharged into the clean water spray port 5 through the water injection pipeline 24, so that the clean water is sprayed out of the clean water spray port 5 in the form of high-pressure water mist.

[0035] Preferably, in the embodiment, the diameters of the cleaning water inlet 6, the water pipeline 24 and the cleaning water nozzle 5 are gradually reduced in sequence; in this way, the pressure of the cleaning water when sprayed from the cleaning water nozzle 5 can be increased by gradually reducing the diameter, so that the cleaning water mist can more effectively clean the residual sugar in the heating assembly 3, thereby improving the cleaning effect and making the cleaning more comprehensive and efficient.

[0036] Meanwhile, referring to Figure 3 and Figure 4 , in the embodiment, the top end of the base sleeve 21, the bottom side of the furnace head base ring 22 and the outside of the furnace head sleeve 23 form a furnace head placement cavity 25, and the bottom of the heating assembly 3 is rotationally arranged in the furnace head placement cavity 25 under the action of the driving mechanism 4; the water outlet end and the water inlet end of the waste water outlet 7 are respectively arranged between the base sleeve 21 and the furnace head base ring 22, and the water inlet end of the waste water outlet 7 is in communication with the furnace head placement cavity 25, and the internal space of the heating assembly 3 and the flow guide gap 8 formed between the outside wall of the furnace head sleeve 23 of the furnace head base 2 are also in communication with the furnace head placement cavity 25.

[0037] In this way, after the high-pressure water mist cleans the internal space of the heating assembly 3, the cleaning water mist forms waste water in the internal space of the heating assembly 3, and the waste water flows into the internal space of the furnace head placement cavity 25 along the flow guide gap 8, and the furnace head placement cavity 25 collects the waste water, and then the waste water is discharged from the water inlet end to the water outlet end of the waste water outlet 7, and then is discharged into the external waste water collection tank through the pipeline, thereby achieving the collection of waste water.

[0038] Preferably, in the embodiment, the four surrounding bottom walls of the furnace head placement cavity 25 are gradually inclined downward toward the water inlet end of the waste water outlet 7; in this way, the waste water flowing into the furnace head placement cavity 25 can be effectively collected, thereby effectively discharging all the waste water in the furnace head placement cavity 25 into the waste water outlet 7, and preventing the accumulation of water in the furnace head placement cavity 25.

[0039] In addition, specifically, referring to Figure 2 , in the embodiment, the driving mechanism 4 includes a driving motor 41, a furnace head transmission shaft 42, a bottom bearing seat 43 and a linkage assembly. The driving motor 41 is fixedly installed on the bottom side of the positioning bottom plate 1 by a plurality of screws, and the output end of the driving motor 41 penetrates through the positioning bottom plate 1 vertically to extend out of the top of the positioning bottom plate 1; the furnace head transmission shaft 42 is rotationally installed on the positioning bottom plate 1 through the bottom bearing seat 43, and the bottom end of the furnace head transmission shaft 42 penetrates through and extends out of the bottom of the positioning bottom plate 1, and the top end of the furnace head transmission shaft 42 penetrates through and extends out of the top of the positioning bottom plate 1 and cooperates with the internal space of the furnace head base 2, so that the top end of the furnace head transmission shaft 42 extends into the internal space of the furnace head base 2.

[0040] Meanwhile, the furnace head heating assembly 3 is fixedly installed on the top end of the furnace head transmission shaft 42, so as to not only support the furnace head heating assembly 3, but also make the furnace head transmission shaft 42 drive the furnace head heating assembly 3 to rotate; and the linkage assembly is arranged between the output end of the driving motor 41 and the top end of the furnace head transmission shaft 42. Under the driving action of the driving motor 41, the furnace head transmission shaft 42 is driven to rotate by the linkage assembly, so that the furnace head transmission shaft 42 drives the furnace head heating assembly 3 to rotate at high speed.

[0041] Specifically, referring to Figure 2 and Figure 5 , in the embodiment, the linkage assembly includes a motor synchronous wheel 44, a furnace head synchronous wheel 45, and a linkage synchronous belt 46. The motor synchronous wheel 44 is installed on the output end of the driving motor 41; the furnace head synchronous wheel 45 is installed on the top end of the furnace head transmission shaft 42, and the furnace head synchronous wheel 45 is located inside the base sleeve 21; and the linkage synchronous belt 46 is wound between the motor synchronous wheel 44 and the furnace head synchronous wheel 45, and a notch 26 is formed on the side of the base sleeve 21 facing the motor synchronous wheel 44. The notch 26 facilitates the rotation of the linkage synchronous belt 46 between the motor synchronous wheel 44 and the furnace head synchronous wheel 45.

[0042] When the driving motor 41 is started, the output end of the driving motor 41 drives the motor synchronous wheel to rotate, which drives the furnace head synchronous wheel 45 to rotate under the action of the linkage synchronous belt 46, and the furnace head synchronous wheel 45 drives the furnace head transmission shaft 42 to rotate, so that the furnace head transmission shaft 42 drives the furnace head heating assembly 3 to rotate at high speed in the furnace head placing cavity 25. Thus, not only can the melted sugar be spun out of the furnace head heating assembly 3 in the form of a filament when making cotton candy, but also the residual sugar in the furnace head heating assembly 3 can be effectively cleaned with cleaning water, and the residual sugar is spun out of the furnace head heating assembly 3 by centrifugal action, so that the inside of the furnace head heating assembly 3 is completely kept clean.

[0043] In addition, specifically, referring to Figure 2 , Figure 5 and Figure 6 , in the embodiment, the furnace head heating assembly 3 includes a furnace head feeding screw 31, a furnace head inner cover 32, a furnace head wire pressing plate 33, a furnace head heating disc 34, and a furnace head outer cover 35. One end of the furnace head feeding screw 31 is connected to the top end of the furnace head transmission shaft 42, the other end of the furnace head feeding screw 31 cooperates with the inside of the furnace head sleeve 23 and extends out of the outside of the furnace head sleeve 23; a fixed block is installed on the end of the furnace head feeding screw 31 away from the furnace head transmission shaft 42, and the furnace head inner cover 32 is installed between the fixed block and the furnace head feeding screw 31.

[0044] The furnace head pressure line plate 33 is installed on the fixed block; the furnace head heating disc 34 is installed on the bottom of the furnace head inner cover 32, the middle part of the furnace head heating disc 34 is sleeved outside the furnace head sleeve pipe 23, and the above-mentioned flow guide gap 8 is formed between the furnace head heating disc 34 and the furnace head sleeve pipe 23; at the same time, the heating pipe or the electromagnetic heating iron disc is installed inside the furnace head heating disc 34, so that the sugar material can be heated to the melting temperature.

[0045] The furnace head outer cover 35 is fixedly covered on the top of the furnace head heating disc 34 to seal the top of the furnace head heating disc 34; and the space combined by the furnace head outer cover 35, the furnace head inner cover 32 and the furnace head heating disc 34 forms a heating cavity 36 which cooperates with the furnace head feeding screw 31; and the sugar adding port 27 is also provided on the outside of the furnace head base 2, which is in communication with the furnace head feeding screw 31, and the sugar adding port 27 is connected with the sugar feeding device through the pipeline.

[0046] The sugar feeding device can send the sugar material particles into the sugar adding port 27 through high-speed airflow, and then the sugar material particles enter the furnace head feeding screw 31 along the sugar adding port 27, under the driving action of the furnace head transmission shaft 42, the high-speed rotating furnace head feeding screw 31 rotates the sugar material particles into the heating cavity 36 to realize the automatic adding process of the sugar material, and then the sugar material in the heating cavity 36 is heated and melted under the action of the heat generated by the heating pipe or the electromagnetic heating iron disc.

[0047] At the same time, referring to Figure 2 , Figure 7 and Figure 8 , in this embodiment, a plurality of sugar tooth gaps 37 are provided on the bottom of the furnace head outer cover 35, which are in communication with the heating cavity 36; during the high-speed rotation of the furnace head heating assembly 3, the melted sugar material in the heating cavity 36 is thrown out from the sugar tooth gaps 37 on the furnace head outer cover 35 into silk; and a plurality of furnace head fan leaves 38 are installed on the outer side of the furnace head heating disc 34, which rotate at high speed with the furnace head heating disc 34 to form upward airflow, which can blow the sugar silk thrown out from the tooth gap upward, and finally the sugar silk adheres to the stick of the paper stick structure on the upper part, so that the cotton candy can be made.

[0048] Preferably, referring to Figures 2-4In the embodiment, the bottom of the heating cavity 36 is in a downwardly protruding arc shape structure which cooperates with the flow guiding gap 8, and the cleaning water jet 5 is located in the heating cavity 36; thus when cleaning the residual sugar in the heating cavity 36, high-pressure water mist is sprayed from the cleaning water jet 5 into the heating cavity 36 to clean the residual sugar in the heating cavity 36, and the cleaned waste water is collected in the heating cavity 36; due to the downwardly protruding arc shape structure of the bottom of the heating cavity 36, the waste water collected in the heating cavity 36 can be effectively guided, so that the waste water uniformly flows along the flow guiding gap 8 into the furnace head placing cavity 25.

[0049] Secondly, referring to Figure 6 and Figure 7 In the embodiment, a damping assembly is further installed on the bottom of the positioning bottom plate 1, which includes elastic damping columns 9 and a fixing frame 10. The elastic damping columns 9 are provided in four, and one end of each of the four elastic damping columns 9 is installed at a corner position of the bottom of the positioning bottom plate 1; the fixing frame 10 is installed on the other end of the four elastic damping columns 9 away from the positioning bottom plate 1, so as to effectively bear the elastic damping columns 9 and the structure installed on the positioning bottom plate 1.

[0050] Thus, the damping structure of the elastic damping columns 9 and the fixing frame 10 can effectively reduce the vibration of the overall structure, so that the overall structure is more stable and reliable in operation. Meanwhile, an electric brush 11 is further installed between the bottom end of the furnace head transmission shaft 42 and the bottom end of the bottom bearing seat 43, which is used to conduct the temperature in the furnace head and the lead wire of the heating wire disc.

[0051] Therefore, the positioning bottom plate 1, the furnace head base 2, the furnace head heating assembly 3, the driving mechanism 4, the cleaning water jet 5, the cleaning water inlet 6 and the waste water outlet 7 are cooperated with each other; when the furnace head heating assembly 3 needs to be cleaned, the cleaning water inlet 6 is connected with an external water supply device, so that cleaning water is discharged into the cleaning water inlet 6, and then high-pressure water mist is sprayed from the cleaning water jet 5 to clean the inside of the furnace head heating assembly 3; meanwhile, the driving mechanism 4 drives the furnace head heating assembly 3 to rotate at high speed on the furnace head base 2, so that the residual sugar in the furnace head heating assembly 3 can be effectively cleaned, and the residual sugar is thrown out of the furnace head heating assembly 3 by centrifugal force, so that the inside of the furnace head heating assembly 3 is completely kept clean, thereby effectively solving the problem of sugar slag blocking the sugar tooth gap 37 caused by internal heating.

[0052] The above merely illustrates the embodiments of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation, or direct or indirect application in other related technical fields, which are made according to the content of the present application specification and drawings, are also included in the patent protection scope of the present application.

Claims

1. A burner cleaning device for a cotton candy machine, characterized in that: The device includes a positioning base plate (1), on which a burner base (2) is provided. A burner heating assembly (3) is rotatably provided on the burner base (2). A drive mechanism (4) connected to the burner heating assembly (3) is provided between the positioning base plate (1) and the burner base (2). A cleaning spray nozzle (5) that cooperates with the burner heating assembly (3) is provided inside the burner base (2). A cleaning water inlet (6) that communicates with the cleaning spray nozzle (5) is provided on the outer side wall of the burner base (2). A wastewater outlet (7) that cooperates with the burner heating assembly (3) is also provided on the burner base (2).

2. The furnace head cleaning device for a cotton candy machine according to claim 1, characterized in that: The burner base (2) includes a base sleeve (21) disposed on the positioning base plate (1). A burner seat ring (22) is disposed on the upper inner wall of the base sleeve (21). A burner sleeve (23) is disposed in the middle of the burner seat ring (22). A burner placement cavity (25) is formed between the base sleeve (21), the burner seat ring (22), and the burner sleeve (23). The burner heating assembly (3) is rotatably disposed in the burner placement cavity (25). The cleaning spray nozzle (5) is opened on the burner sleeve (23). The cleaning water inlet (6) is opened on the outer wall of the base sleeve (21). The wastewater outlet (7) is opened between the base sleeve (21) and the burner seat ring (22) and is connected to the burner placement cavity (25).

3. The furnace head cleaning device for a cotton candy machine according to claim 2, characterized in that: Both the burner head seat ring (22) and the burner head sleeve (23) have interconnected water injection pipes (24) inside, and the water injection pipes (24) are connected to the cleaning spray nozzle (5) and the cleaning water injection nozzle (6) respectively.

4. The burner head cleaning device for a cotton candy machine according to claim 3, characterized in that: The diameters of the cleaning water inlet (6), the water inlet pipe (24), and the cleaning water nozzle (5) gradually decrease in sequence.

5. The burner cleaning device for a cotton candy machine according to claim 1, characterized in that: The drive mechanism (4) includes a drive motor (41) disposed at the bottom of the positioning base plate (1). The positioning base plate (1) is rotatably disposed with a burner head drive shaft (42) that cooperates with the burner head base (2) via a bottom bearing seat (43). A linkage component is disposed between the output end of the drive motor (41) and the burner head drive shaft (42). The burner head heating component (3) is disposed at the top of the burner head drive shaft (42).

6. The burner head cleaning device for a cotton candy machine according to claim 5, characterized in that: The linkage component includes a motor synchronous pulley (44) disposed at the output end of the drive motor (41), a furnace head synchronous pulley (45) disposed at the top end of the furnace head drive shaft (42), and a linkage synchronous belt (46) wound between the motor synchronous pulley (44) and the furnace head synchronous pulley (45).

7. The furnace head cleaning device for a cotton candy machine according to claim 2, characterized in that: The bottom walls of the furnace head placement cavity (25) gradually slope downwards toward the wastewater outlet (7).

8. The burner head cleaning device for a cotton candy machine according to claim 1, characterized in that: The bottom of the positioning base plate (1) is also provided with a shock-absorbing component, which includes multiple elastic shock-absorbing columns (9) disposed at the bottom of the positioning base plate (1), and the bottom of the multiple elastic shock-absorbing columns (9) is also provided with a fixing frame (10).