Novel small-sized marshmallow machine

By designing a small marshmallow machine, combining hollow chassis, furnace head assembly, sugar supply assembly, humidification assembly and wire winding assembly, a low-cost and easy-to-maintenance automated marshmallow production is achieved, solving the high cost of large machines and meeting the needs of low-budget merchants.

CN223219882UActive Publication Date: 2025-08-15GUANGZHOU DIANXIAOER ROBOT CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202421693314.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-08-15
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

The existing large marshmallow machines are expensive and have high maintenance costs, making them difficult to meet the needs of low-budget merchants and mobile food trucks.

Method used

A new small cotton candy machine was designed, including a hollow chassis, furnace head assembly, sugar supply assembly, humidification assembly, wire winding assembly and control assembly. By entering control instructions on the display screen, the automatic production of cotton candy is achieved.

Benefits of technology

It reduces equipment costs, simplifies the maintenance process, is suitable for small merchants and mobile food truck operations, improves user satisfaction, and promotes the development of marshmallow machines toward automation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223219882U_ABST
    Figure CN223219882U_ABST
Patent Text Reader

Abstract

The utility model discloses a novel small-sized marshmallow machine which comprises a hollow machine case, a machine body, a machine body and a control system. The top of the hollow machine case is provided with a first assembly opening; the furnace end assembly is matched with the first assembly opening and comprises a heating cavity and a humidifying cavity, and a wire outlet hole is formed in the top of the heating cavity; a sugar supply assembly; a humidifying assembly; a wire winding assembly; and a control assembly. A user inputs a control instruction through the operation display screen, the controller transmits a working instruction to the candy supply assembly, the humidifying assembly, the furnace end assembly and the wire winding assembly, then the purpose that the user independently prepares the marshmallow is achieved, on one hand, the marshmallow maker is convenient for people unfamiliar with marshmallow production and manufacturing to use, and is small in size, simple in structure, low in cost and easy to maintain; and on the other hand, the marshmallow machine has the characteristic of automatic production, the satisfaction degree of users is improved, and continuous development of the marshmallow machine towards the automation direction is promoted.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of cotton candy machines, in particular to a novel small cotton candy machine. Background Art

[0002] With the continuous development of automated marshmallow making machines, the variety of automated marshmallow making machines is increasing. As an indispensable snack for people's daily lives and entertainment, the demand for marshmallows is also increasing as young people pursue fashion trends. However, the number of traditional marshmallow craftsmen is decreasing, resulting in the emergence of large-scale marshmallow machines in shopping malls and commercial streets to meet consumer demand. However, large-scale marshmallow machines are expensive and require high maintenance. For businesses that want to capture a share of the marshmallow market but don't have a high budget, a low-cost, small-scale automatic marshmallow machine is particularly important. Therefore, the emergence of new small-scale marshmallow machines is a much-needed market development. Compared with large machines, small-scale marshmallow machines are cheaper and easier to maintain. Utility Model Content

[0003] In order to overcome the shortcomings and deficiencies in the prior art, the purpose of the present invention is to provide a novel small cotton candy machine.

[0004] To achieve the above purpose, the technical solution of the utility model is as follows:

[0005] A new type of small cotton candy machine, comprising:

[0006] The hollow chassis has a first assembly opening on the top;

[0007] A burner head assembly adapted to the first assembly port, comprising a heating cavity and a humidifying cavity, wherein a wire outlet hole is provided on a peripheral ring of the heating cavity;

[0008] A sugar supply component is provided in the inner cavity of the hollow chassis, with an output end connected to the heating cavity and capable of delivering sugar particles into the heating cavity;

[0009] A humidifying component is provided in the inner cavity of the hollow chassis, with an output end communicating with the humidifying cavity and capable of delivering atomized water vapor into the humidifying cavity;

[0010] A wire winding assembly is provided on the top of the hollow chassis, comprising a clamping structure and a first drive, wherein the clamping structure is capable of clamping or releasing the stick, and an output end of the first drive is in transmission connection with the clamping structure and is capable of driving the stick to rotate relative to the wire outlet hole;

[0011] The control component includes an operation display screen and a controller. The operation display screen is arranged on the outside of the hollow chassis and is used for the user to input control instructions. The controller can receive control instructions and is electrically connected to the burner head assembly, the sugar supply assembly, the humidification assembly and the wire winding assembly.

[0012] Preferably, the burner head assembly comprises:

[0013] A water basin, the top opening of which is adapted to the first assembly port, the humidification chamber is annular and is opened on the water basin, the outer side of the water basin is connected to a first tube body, and the other end of the first tube body is connected to the output end of the humidification component;

[0014] The burner body is coaxially located in the center of the humidification cavity, the heating cavity and the wire outlet are respectively provided at the top of the burner body, a rotating sleeve is coaxially fixed to the bottom of the burner body, a second tube is coaxially passed through the rotating sleeve, and a gap is left between the rotating sleeve and the second tube, the output end of the second tube extends into the heating cavity, and the input end is connected to the output end of the sugar supply component;

[0015] The support seat is arranged in the inner cavity of the hollow chassis and is provided with a second drive. The rotating sleeve is transmission-connected to the output end of the second drive and rotationally cooperates with the support seat. The input end of the second tube body passes through the support seat and is fixedly cooperated with the support seat.

[0016] Preferably, the sugar supply component includes:

[0017] A collecting box body is provided in the inner cavity of the hollow chassis and is provided with a collecting channel. The output end of the collecting channel is connected to the third tube body, and the other end of the third tube body is connected to the input end of the second tube body;

[0018] Several sugar boxes, each having a sugar storage cavity for storing sugar granules, the collecting box body being provided with sugar drop holes corresponding to the sugar boxes one by one, and the collecting channel being connected to the sugar storage cavity through the sugar drop holes;

[0019] A switching structure is provided in the sugar drop through hole, capable of connecting or disconnecting the sugar storage cavity and the collecting channel;

[0020] The sugar outlet air pump is connected to one end of the collecting channel away from the third tube body through an air pump tube, and can blow the sugar particles in the collecting channel to the heating cavity.

[0021] Preferably, it also includes:

[0022] a first water pump, disposed in the inner cavity of the hollow chassis, with a suction end connected to a fourth tube, the other end of the fourth tube docking with the humidifying assembly to extract un-atomized water, and a pumping end connected to a fifth tube;

[0023] a three-way pipe, wherein one interface thereof is connected to the input end of the second pipe body, the second interface thereof is connected to the output end of the third pipe body, and the third interface thereof is connected to the output end of the fifth pipe body;

[0024] The sugar outlet air pump needs to be kept in working state to blow the water or sugar particles in the three-way pipe into the heating cavity.

[0025] Preferably, it also includes:

[0026] A water receiving flange is fixed to the bottom of the support base, communicates with the heating cavity through the gap, is provided with a second assembly port and a first sewage outlet, and the second pipe body is tightly fitted with the second assembly port at one end close to the tee pipe;

[0027] One end of the first sewage pipe is connected to the first sewage outlet, and the other end is connected to the outside.

[0028] Preferably, the humidifying component comprises:

[0029] A water storage box body is provided in the inner cavity of the hollow chassis and has a water storage cavity for storing water;

[0030] A second water pump is provided at the top of the water storage box body, a suction end of the second water pump is connected to a sixth tube, the other end of the sixth tube is connected to an external water source, and a pumping end of the second water pump is connected to a seventh tube;

[0031] an atomizer, disposed in the water storage chamber and acting on the water;

[0032] The blower is arranged on the top of the water storage box body, and the air outlet is connected to the water storage cavity, and can blow the atomized water vapor to the humidification cavity through the first tube body.

[0033] Preferably, it also includes:

[0034] a water level sensor disposed in the water storage chamber for monitoring the water level; when the water level is flush with the input end of the first tube, the blower can blow un-atomized water through the first tube into the humidification chamber, and a second drain outlet is provided on the bottom wall of the humidification chamber;

[0035] One end of the second sewage pipe is connected to the second sewage outlet, and the other end is connected to the outside.

[0036] Preferably, it also includes:

[0037] A heating assembly is coaxially arranged on the rotating sleeve and located below the burner body, capable of conducting heat into the heating cavity to melt the sugar particles;

[0038] The heat dissipation assembly includes a heat dissipation seat and a heat dissipation fan. The heat dissipation seat is coaxially arranged on the rotating sleeve and fixedly connected to the support seat. The heat dissipation seat is a hollow circular cylindrical body and has an air outlet facing the heating assembly. The heat dissipation fan is arranged on the hollow chassis and is connected to the inner cavity of the heat dissipation seat through a bellows. The heating assembly and the heat dissipation assembly are respectively connected to the controller electrical signal.

[0039] Preferably, the wire winding assembly further comprises:

[0040] The swing structure includes a base, a swing arm and a third drive. The base is fixed to the outer top of the hollow chassis, and the swing arm is flippably arranged on the base. The output end of the third drive is transmission-connected to the swing arm and can drive the swing arm to flip downward toward the side close to the burner body or flip upward toward the side away from the burner body; the clamping structure and the first drive are respectively arranged on the swing arm.

[0041] Preferably, the wire winding assembly further comprises:

[0042] The limiting structure is provided on the base and acts on the swing arm to enable the axis of the stick to be located in a horizontal direction or a vertical direction.

[0043] The beneficial effects of the present invention are that the user inputs control instructions through the operation display screen, and the controller transmits work instructions to the sugar supply component, humidification component, burner component and wire winding component, thereby achieving the purpose of the user independently preparing marshmallows. On the one hand, it is convenient for people who are not familiar with the production of marshmallows. It is small in size, simple in structure, low in cost and easy to maintain, and can be used for small businesses and mobile food trucks. On the other hand, it has the characteristics of automated production, which improves user satisfaction and promotes the continuous development of marshmallow machines towards automation. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] Figure 1 This is a schematic structural diagram of an embodiment of the present utility model;

[0045] Figure 2 This is a structural diagram of a hidden component door in an embodiment of the present utility model;

[0046] Figure 3 This is a structural diagram of a burner head assembly in an embodiment of the present invention;

[0047] Figure 4 A cross-sectional view of a burner head assembly according to an embodiment of the present invention;

[0048] Figure 5 for Figure 4 A partial enlarged view of point A in the middle;

[0049] Figure 6 This is a cross-sectional view of a sugar supply assembly according to an embodiment of the present invention;

[0050] Figure 7 A cross-sectional view of a humidifying assembly according to an embodiment of the present invention;

[0051] Figure 8 This is a schematic structural diagram of a wire winding assembly according to an embodiment of the present invention.

[0052] As shown in the figure:

[0053] 1-hollow chassis, 11-door, 111-operating table, 12-acrylic cover, 13-blowing fan;

[0054] 2-burner head assembly;

[0055] 21-water basin, 211-humidification chamber, 212-first pipe, 213-second sewage pipe;

[0056] 22-furnace head body, 221-heating chamber, 222-wire outlet hole, 223-rotating sleeve, 2231-second synchronous wheel, 224-second tube body, 225-gap, 226-tee pipe, 227-blade;

[0057] 23-support seat, 231-second drive, 234-water flange, 2341-second assembly port, 235-first sewage pipe;

[0058] 3-sugar supply assembly, 31-collecting box body, 311-collecting channel, 312-sugar drop hole, 32-sugar box, 33-on-off structure, 34-sugar outlet air pump;

[0059] 4-humidification component, 41-water storage box, 42-second water pump, 43-atomizer, 44-blower, 45-water level sensor;

[0060] 5-winding assembly, 51-clamping structure, 52-first drive, 53-swing structure, 531-base, 532-swing arm, 533-third drive, 54-limiting structure, 541-first photoelectric component, 542-second photoelectric component, 543-grating plate;

[0061] 61-operation display screen, 62-controller;

[0062] 7- Heating component;

[0063] 8-heat dissipation assembly, 81-heat dissipation seat, 811-air outlet, 812-bellows;

[0064] 9-Marshmallow;

[0065] 10-Stick. DETAILED DESCRIPTION

[0066] The following specifically illustrates the implementation of the present invention in conjunction with the accompanying drawings. The accompanying drawings are for reference and illustration only and do not constitute a limitation on the scope of patent protection of the present invention.

[0067] See also Figures 1-8 In this embodiment, a new type of small cotton candy machine includes:

[0068] The hollow chassis 1 has a first assembly opening on the top;

[0069] The burner head assembly 2 is adapted to the first assembly port and includes a heating cavity 221 and a humidifying cavity 211. The heating cavity 221 is provided with a wire outlet hole 222 on its periphery.

[0070] The sugar supply component 3 is provided in the inner cavity of the hollow chassis 1, and its output end is connected to the heating cavity 221, and can deliver sugar particles into the heating cavity 221;

[0071] The humidifying component 4 is provided in the inner cavity of the hollow chassis 1, and the output end is communicated with the humidifying cavity 211, and can deliver the atomized water vapor into the humidifying cavity 211;

[0072] The wire winding assembly 5 is provided at the top of the hollow chassis 1 and includes a clamping structure 51 and a first drive 52. The clamping structure 51 can clamp or release the stick 10. The output end of the first drive 52 is in transmission connection with the clamping structure 51 and can drive the stick 10 to rotate relative to the wire outlet hole 222.

[0073] The control component includes an operation display screen 61 and a controller 62. The operation display screen 61 is arranged on the outside of the hollow chassis 1 and is used for the user to input control instructions. The controller 62 can receive control instructions and is electrically connected to the burner head assembly 2, the sugar supply assembly 3, the humidification assembly 4 and the wire winding assembly 5.

[0074] In this embodiment, the hollow chassis 1 is a rectangular box-shaped body with a door 11 hinged on the side and an acrylic cover 12 on the top. The door 11 is used to protect the internal working components of the hollow chassis 1, and the acrylic cover 12 is used to protect the burner head component 2 and ensure the cleanliness of the environment around the marshmallow machine 9, thereby reducing maintenance costs and increasing aesthetics. Specifically, the control component also includes an operating table 111, which is provided on the door 11. The operating display screen 61 is a touch display screen provided on the operating table 111. The controller 62 is a single-board computer with an embedded program, which can receive control instructions input by the touch display screen and convey work instructions to each working component in response to the user's operation request.

[0075] Preferably, the burner head assembly 2 includes:

[0076] The water basin 21 has an opening at the top that fits into the first assembly port. The humidification chamber 211 is annular and is provided on the water basin 21. A first tube 212 is connected to the outside of the water basin 21. The other end of the first tube 212 is connected to the output end of the humidification assembly 4.

[0077] The burner body 22 is coaxially located at the center of the humidifying cavity 211. The heating cavity 221 and the wire outlet hole 222 are respectively provided at the top of the burner body 22. A rotating sleeve 223 is coaxially fixed to the bottom of the burner body 22. A second tube 224 is coaxially passed through the rotating sleeve 223, and a gap 225 is left between the second tube 224 and the rotating sleeve 223. The output end of the second tube 224 extends into the heating cavity 221, and the input end is connected to the output end of the sugar supply component 3.

[0078] The support base 23 is arranged in the inner cavity of the hollow chassis 1 and is provided with a second drive 231. The rotating sleeve 223 is transmission-connected to the output end of the second drive 231 and rotatably cooperates with the support base 23. The input end of the second tube body 224 passes through the support base 23 and is fixedly cooperated with the support base 23.

[0079] The second drive 231 is a motor provided on the support seat 23, and the first synchronous wheel 2231 is coaxially provided on the outer side of the rotating sleeve 223. The second synchronous wheel 2231 is connected to the first synchronous wheel through a synchronous belt transmission, and then the burner is driven to rotate by the rotating sleeve 223. In the process of making marshmallows 9, the rotation force is used to throw out the sugar threads, and the marshmallows 9 are made by cooperating with the silk winding assembly 5, and the plurality of blades 227 rotate with the burner body 22 to form an upward wind force, which blows the thrown sugar threads upward; further, the humidifying assembly 4 continuously provides moist water vapor to the water basin 21, which has the effect of humidifying the sugar threads; further, the inner cavity of the hollow chassis 1 is also provided with a silk blowing fan 13, which is located below the burner assembly 2, and can continuously provide upward wind force for the thrown sugar threads.

[0080] Preferably, the sugar supply component 3 includes:

[0081] The collecting box 31 is provided in the inner cavity of the hollow chassis 1 and has a collecting channel 311. The output end of the collecting channel 311 is connected to a third tube (not shown in the figure), and the other end of the third tube (not shown in the figure) is connected to the input end of the second tube 224.

[0082] Several sugar boxes 32 each having a sugar storage cavity for storing sugar granules. The collecting box body 31 is provided with sugar drop holes 312 corresponding to the sugar boxes 32 one by one. The collecting channel 311 communicates with the sugar storage cavity through the sugar drop holes 312.

[0083] The on-off structure 33 is provided in the sugar drop through hole 312 and can connect or disconnect the sugar storage cavity and the collecting channel 311;

[0084] The sugar outlet air pump 34 is connected to one end of the collecting channel 311 away from the third tube body (not shown in the figure) through an air pump tube, and can blow the sugar particles located in the collecting channel 311 to the heating cavity 221.

[0085] In this embodiment, there are four sugar boxes 32 on the collecting box body 31, and the four sugar boxes 32 are used to independently store different types of sugar particles, which is conducive to meeting more user needs; four assembly ports are opened on the top of the collecting channel 311, and the four sugar boxes 32 are fixedly connected to the collecting box body 31 through the assembly ports along the axial direction of the sugar drop through hole 312. The on-off structure 33 includes four motors, and the rotating shafts of the four motors extend into the sugar drop through hole 312 along the radial direction of the sugar drop through hole 312, and the ends of the motors are connected with gears. The gears are used to rotate in the sugar drop channel to realize or stop sugar drop. The falling sugar particles pass through the third tube body (not shown in the figure) and the second tube body 224 in sequence under the action of the sugar outlet air pump 34, and finally enter the heating cavity 221 of the burner.

[0086] Preferably, it also includes:

[0087] A first water pump (not shown in the figure) is provided in the inner cavity of the hollow chassis 1, with a suction end connected to a fourth tube (not shown in the figure), the other end of the fourth tube (not shown in the figure) being connected to the humidifying assembly 4 to extract the unatomized water, and a pumping end being connected to a fifth tube (not shown in the figure);

[0088] A three-way pipe 226, one end of which is connected to the input end of the second pipe body 224, a second end of which is connected to the output end of the third pipe body (not shown in the figure), and a third end of which is connected to the output end of the fifth pipe body (not shown in the figure);

[0089] The sugar outlet air pump 34 needs to be kept in working state to blow the water or sugar particles in the three-way pipe 226 into the heating cavity.

[0090] In this embodiment, the three joints of the three-way pipe 226 are respectively connected to the second tube body 224, the third tube body (not shown in the figure) and the fifth tube body (not shown in the figure), so as to add sugar granules or clean water into the heating chamber. The above-mentioned clean water cooperates with the rotation of the burner to clean the heating chamber 221 and the wire outlet hole 222, thereby reducing malfunctions caused by sugar pollution blocking the machine. When the clean water reaches the three-way pipe 226, the sugar outlet air pump 34 is used to blow the clean water into the heating chamber 221, that is, in the sugar supply step and the above-mentioned burner cleaning step, the sugar outlet air pump 34 needs to keep working to avoid the clean water from being diverted along the third tube body (not shown in the figure) to the sugar supply component 3; the first water pump (not shown in the figure) pumps the clean water in the humidification component 4 into the heating chamber 221 through the fifth tube body (not shown in the figure).

[0091] Preferably, it also includes:

[0092] The water receiving flange 234 is fixed to the bottom of the support base 23 and communicates with the heating chamber 221 through the gap 225. It is provided with a second assembly port 2341 and a first sewage outlet. The second pipe body 224 is tightly fitted with the second assembly port 2341 at one end close to the tee pipe 226.

[0093] One end of the first sewage pipe 235 is connected to the first sewage outlet, and the other end is connected to the outside.

[0094] In this embodiment, the water receiving flange 234 is fixed to the bottom of the support base 23 and is used to receive sewage after cleaning the heating chamber 221. In order to allow the aforementioned sewage to flow out along the gap 225 between the rotating sleeve 223 and the second tube body 224, an annular baffle is provided on the top of the second tube body 224. The height of the baffle is higher than the top opening of the rotating sleeve 223, and its diameter is larger than the inner cavity diameter of the rotating sleeve 223. When assembled, the second tube body 224 is inserted into the rotating sleeve 223 from top to bottom; further, the second tube body 224 and the second Waterproof glue is applied between the assembly openings 2341 to seal the second tube body 224 through a tight fit, thereby preventing the second tube body 224 from rotating with the rotation of the rotating sleeve 223, thereby reducing the entanglement of the pipes inside the hollow chassis 1. On the other hand, waterproof glue is used to improve the sealing performance of the water receiving flange 234, thereby reducing the accumulation of water on the inner wall of the hollow chassis 1. Furthermore, a drainage interface is also provided on the hollow chassis 1, and the output end of the first sewage pipe 235 and the output end of the second sewage pipe 213 are discharged to the outside through the aforementioned drainage interface.

[0095] Preferably, the humidifying component 4 includes:

[0096] The water storage box body 41 is provided in the inner cavity of the hollow chassis 1 and has a water storage cavity for storing water;

[0097] A second water pump 42 is provided at the top of the water storage box 41, with a suction end connected to a sixth tube (not shown in the figure), the other end of the sixth tube (not shown in the figure) being connected to an external water source, and a pumping end connected to a seventh tube;

[0098] an atomizer 43 , which is disposed in the water storage chamber and acts on the water;

[0099] The blower 44 is provided at the top of the water storage box body 41 , and the air outlet 811 is connected to the water storage cavity, so as to blow the atomized water vapor to the humidification cavity 211 through the first tube body 212 .

[0100] In this embodiment, a clean water tank (not shown in the figure) is also included, which is used to provide clean water for the preparation of water mist and cleaning of the water basin 21 or the burner. The second water pump 42 is connected to the clean water tank through the sixth pipe body (not shown in the figure), and the clean water is pumped into the water storage chamber through the seventh pipe body. The atomizer 43 is used to act on the water in the water tank to produce moist water mist. Finally, the blower 44 is used to squeeze the above-mentioned water mist into the humidification cavity 211 of the water basin 21, and the annular humidification cavity 211 is used to surround the burner, thereby achieving the purpose of humidifying the sugar thread.

[0101] Preferably, it also includes:

[0102] A water level sensor 45 is provided in the water storage chamber to monitor the water level. When the water level is flush with the input end of the first tube 212, the blower 44 can blow the un-atomized water through the first tube 212 to the humidification chamber 211. A second drain outlet is provided on the bottom wall of the humidification chamber 211.

[0103] One end of the second sewage pipe 213 is connected to the second sewage outlet, and the other end is connected to the outside.

[0104] In this embodiment, a water level sensor 45 is used to monitor the water level in the water storage chamber in real time and transmit an electrical signal to the controller 62. The controller 62 controls the second water pump 42 to work according to the water level in the water tank. Furthermore, an air guide cover is provided on the top of the water tank, and an air inlet opening is provided on one side of the air guide cover. The air outlet end of the blower 44 is connected to the aforementioned air inlet opening. When the water basin 21 needs to be cleaned, the water level needs to be controlled to be flush with the bottom opening of the first tube body 212. Similarly, the air pressure generated by the blower 44 is used to squeeze water into the water basin 21, thereby achieving cleaning of the water basin 21. The sewage after cleaning is discharged through the second sewage pipe 213, and the output end of the second sewage pipe 213 and the output end of the first sewage pipe 235 are respectively connected to the drainage interface.

[0105] Preferably, it also includes:

[0106] The heating assembly 7 is coaxially arranged on the rotating sleeve 223 and located below the burner body 22, and can conduct heat to the heating cavity 221 to melt the sugar particles;

[0107] The heat dissipation component 8 includes a heat dissipation seat 81 and a heat dissipation fan. The heat dissipation seat 81 is coaxially arranged on the rotating sleeve 223 and fixedly connected to the support seat 23. The heat dissipation seat 81 is a hollow circular cylinder and has an air outlet 811 facing the heating component 7. The heat dissipation fan is arranged on the hollow chassis 1 and is connected to the inner cavity of the heat dissipation seat 81 through a bellows 812. The heating component 7 and the heat dissipation component 8 are respectively connected to the controller 62 with electrical signals.

[0108] In this embodiment, the specific structure and heating principle of the heating component 7 can be found in the Chinese utility model patent (patent number: 202320672694.8), the patent name is: A wireless signal transmission type marshmallow 9 machine burner and a heating method disclosed in a marshmallow 9 machine. The difference between the aforementioned patent and the present application is that this embodiment also includes a heat dissipation component 8, and the heat dissipation fan dissipates heat for the heating component 7 provided on the heat dissipation seat 81 through the bellows 812, which is beneficial to improving the service life of the burner.

[0109] Preferably, the wire winding assembly 5 further includes:

[0110] The swing structure 53 includes a base 531, a swing arm 532 and a third drive 533. The base 531 is fixed to the outer top of the hollow chassis 1, and the swing arm 532 is flippably arranged on the base 531. The output end of the third drive 533 is transmission-connected with the swing arm 532 and can drive the swing arm 532 to flip downward toward the side close to the burner body 22 or flip upward toward the side away from the burner body 22; the clamping structure 51 and the first drive 52 are respectively arranged on the swing arm 532.

[0111] In this embodiment, the burner body 22 throws out sugar threads, and the upward blowing wind formed by the blades acts on the thrown sugar threads, and the winding assembly 5 is used to drive the stick 10 to rotate to wind the aforementioned sugar threads, which is convenient for users who have no experience in preparing marshmallows 9 and greatly improves the user experience. Specifically, the clamping structure 51 is a stick inserter with four elastic clamping claws. When the user inserts the sugar threads for winding into the stick inserter, the four elastic clamping pieces act on the stick 10 at the same time to achieve a fixing effect. When the marshmallow 9 is prepared, the stick 10 is pulled out along the radial direction of the stick inserter. The first drive 52 is provided on the swing arm. The motor on 532, the motor's rotating shaft is connected to the stick inserter and thus drives the stick 10 to rotate along its own axis; further, the controller 62 is used to control the start and stop of the swing structure 53, and when the burner rotates and throws out the sugar thread, the work instruction is conveyed to the third drive 533. The third drive 533 is a motor provided on the base 531, and the motor's rotating shaft is connected to the swing shaft. The swing arm 532 is fixedly connected to the swing shaft. The third motor drives the swing downward and swings close to one side of the burner assembly 2, cooperating with the rotation of the first drive 52, and then the thrown sugar thread is wrapped around and fixed on the stick 10.

[0112] Preferably, the wire winding assembly 5 further includes:

[0113] The limiting structure 54 is provided on the base 531 and acts on the swing arm 532 to enable the axis of the stick 10 to be located in the horizontal direction or the vertical direction.

[0114] In this embodiment, the limiting structure 54 includes: a first photoelectric component 541, a second photoelectric component 542, and a grating piece 543 connected to the swing shaft. The first photoelectric component 541 is fixed on the base 531 with its opening facing upward, and the second photoelectric component 542 is fixed on the base 531 with its opening facing left. The grating piece 543 is provided with protruding teeth protruding outward. The protrusion passes through the first photoelectric component 541 or the second photoelectric component 542 through the rotation of the swing shaft. The first photoelectric component 541 and the second photoelectric component 542 are respectively connected to the controller 62 by electrical signals, and the rotation of the swing shaft is used to bring The convex teeth on the movable grating piece 543 rotate synchronously, thereby positioning the swing angle of the swing arm 532. In this embodiment, the stick 10 swings downward and approaches the burner assembly 2 until the convex teeth of the grating piece 543 are sensed by the first photoelectric component 541, and the third drive 533 stops working. After the marshmallows 9 are prepared, the third drive 533 drives the swing arm 532 to swing upward and away from the burner assembly 2 until the convex teeth of the grating piece 543 are sensed by the second photoelectric component 542, and the third drive 533 stops working, thereby making it convenient for the user to take out the stick 10 with the marshmallows 9.

[0115] The above disclosure is only a preferred embodiment of the present invention and cannot be used to limit the scope of protection of the present invention. Therefore, equivalent changes made within the scope of the patent application of the present invention are still within the scope covered by the present invention.

Claims

1. A new type of small cotton candy machine, characterized in that, include: The hollow chassis has a first assembly opening on the top; A burner head assembly adapted to the first assembly port, comprising a heating cavity and a humidifying cavity, wherein the periphery of the heating cavity is provided with a wire outlet hole; A sugar supply component is provided in the inner cavity of the hollow chassis, with an output end connected to the heating cavity and capable of delivering sugar particles into the heating cavity; A humidifying component is provided in the inner cavity of the hollow chassis, with an output end communicating with the humidifying cavity and capable of delivering atomized water vapor into the humidifying cavity; A wire winding assembly is provided on the top of the hollow chassis, comprising a clamping structure and a first drive, wherein the clamping structure is capable of clamping or releasing the stick, and an output end of the first drive is in transmission connection with the clamping structure and is capable of driving the stick to rotate relative to the wire outlet hole; The control component includes an operation display screen and a controller. The operation display screen is arranged on the outside of the hollow chassis and is used for the user to input control instructions. The controller can receive control instructions and is electrically connected to the burner head assembly, the sugar supply assembly, the humidification assembly and the wire winding assembly.

2. A novel small cotton candy machine according to claim 1, characterized in that: The burner head assembly comprises: A water basin, the top opening of which is adapted to the first assembly port, the humidification chamber is annular and is opened on the water basin, the outer side of the water basin is connected to a first tube body, and the other end of the first tube body is connected to the output end of the humidification component; The burner body is coaxially located in the center of the humidification cavity, the heating cavity and the wire outlet are respectively provided at the top of the burner body, a rotating sleeve is coaxially fixed to the bottom of the burner body, a second tube is coaxially passed through the rotating sleeve, and a gap is left between the rotating sleeve and the second tube, the output end of the second tube extends into the heating cavity, and the input end is connected to the output end of the sugar supply component; The support seat is arranged in the inner cavity of the hollow chassis and is provided with a second drive. The rotating sleeve is transmission-connected to the output end of the second drive and rotationally cooperates with the support seat. The input end of the second tube body passes through the support seat and is fixedly cooperated with the support seat.

3. A novel small cotton candy machine according to claim 2, characterized in that: The sugar supply component includes: A collecting box body is provided in the inner cavity of the hollow chassis and is provided with a collecting channel. The output end of the collecting channel is connected to the third tube body, and the other end of the third tube body is connected to the input end of the second tube body; Several sugar boxes, each having a sugar storage cavity for storing sugar granules, the collecting box body being provided with sugar drop holes corresponding to the sugar boxes one by one, and the collecting channel being connected to the sugar storage cavity through the sugar drop holes; A switching structure is provided in the sugar drop through hole, capable of connecting or disconnecting the sugar storage cavity and the collecting channel; The sugar outlet air pump is connected to one end of the collecting channel away from the third tube body through an air pump tube, and can blow the sugar particles in the collecting channel to the heating cavity.

4. A novel small cotton candy machine according to claim 3, characterized in that: Also includes: a first water pump, disposed in the inner cavity of the hollow chassis, with a suction end connected to a fourth tube, the other end of the fourth tube docking with the humidifying assembly to extract un-atomized water, and a pumping end connected to a fifth tube; a three-way pipe, wherein one interface thereof is connected to the input end of the second pipe body, the second interface thereof is connected to the output end of the third pipe body, and the third interface thereof is connected to the output end of the fifth pipe body; The sugar outlet air pump needs to be kept in working state to blow the water or sugar particles in the three-way pipe into the heating cavity.

5. A novel small cotton candy machine according to claim 4, characterized in that: Also includes: A water receiving flange is fixed to the bottom of the support base, communicates with the heating cavity through the gap, is provided with a second assembly port and a first sewage outlet, and the second pipe body is tightly fitted with the second assembly port at one end close to the tee pipe; One end of the first sewage pipe is connected to the first sewage outlet, and the other end is connected to the outside.

6. A novel small cotton candy machine according to claim 2, characterized in that: The humidifying component comprises: A water storage box body is provided in the inner cavity of the hollow chassis and has a water storage cavity for storing water; A second water pump is provided at the top of the water storage box body, a suction end of the second water pump is connected to a sixth tube, the other end of the sixth tube is connected to an external water source, and a pumping end of the second water pump is connected to a seventh tube; an atomizer, disposed in the water storage chamber and acting on the water; The blower is arranged on the top of the water storage box body, and the air outlet is connected to the water storage cavity, and can blow the atomized water vapor to the humidification cavity through the first tube body.

7. A novel small cotton candy machine according to claim 6, characterized in that: Also includes: a water level sensor disposed in the water storage chamber for monitoring the water level; when the water level is flush with the input end of the first tube, the blower can blow un-atomized water through the first tube into the humidification chamber, and a second drain outlet is provided on the bottom wall of the humidification chamber; One end of the second sewage pipe is connected to the second sewage outlet, and the other end is connected to the outside.

8. A novel small cotton candy machine according to claim 2, characterized in that: Also includes: A heating assembly is coaxially arranged on the rotating sleeve and located below the burner body, capable of conducting heat into the heating cavity to melt the sugar particles; The heat dissipation assembly includes a heat dissipation seat and a heat dissipation fan. The heat dissipation seat is coaxially arranged on the rotating sleeve and fixedly connected to the support seat. The heat dissipation seat is a hollow circular cylindrical body and has an air outlet facing the heating assembly. The heat dissipation fan is arranged on the hollow chassis and is connected to the inner cavity of the heat dissipation seat through a bellows. The heating assembly and the heat dissipation assembly are respectively connected to the controller electrical signal.

9. A novel small cotton candy machine according to claim 2, characterized in that: The wire winding assembly also includes: The swing structure includes a base, a swing arm and a third drive. The base is fixed to the outer top of the hollow chassis, and the swing arm is flippably arranged on the base. The output end of the third drive is transmission-connected to the swing arm and can drive the swing arm to flip downward toward the side close to the burner body or flip upward toward the side away from the burner body; the clamping structure and the first drive are respectively arranged on the swing arm.

10. A novel small cotton candy machine according to claim 9, characterized in that: The wire winding assembly also includes: The limiting structure is provided on the base and acts on the swing arm to enable the axis of the stick to be located in a horizontal direction or a vertical direction.

Citation Information

Patent Citations

  • Wireless signal transmission type marshmallow maker furnace end and marshmallow maker

    CN219330613U