Fire dragon jar cleaning and drying device

CN224763857UActive Publication Date: 2026-09-18CHONGQING TONGNAN DISTRICT HOSPITAL OF TRADITIONAL CHINESE MEDICINE
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Patent Information

Application Number
CN202522225078.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-21
Publication Date
2026-09-18
Estimated Expiration
2035-10-21

AI Technical Summary

Technical Problem

[0005]但该火龙罐消毒装置在清洗前需要人工逐个精准固定火龙罐,且清洗数量受限于清洗工位限制,每次清洗数量有限,操作工序过于复杂,而且,不同火龙罐的规格尺寸因材质和设计用途不同而有所差异,该火龙罐消毒装置难以满足对不同规格火龙罐的多样化清洗的需求,适用性差,因此,该火龙罐消毒装置在实际推广应用中存在明显局限性,未能有效解决行业痛点

Benefits of technology

[0018]As can be seen from the above technical solution, the fire dragon can cleaning and drying device provided in this application includes an ultrasonic cleaning box, a holding basket, and a fire dragon can drying mechanism. The holding basket has handles at both ends that can extend and retract in opposite directions. When the handles are retracted, the holding basket, along with the fire dragon cans it contains, can be submerged into the ultrasonic cleaning box for cleaning. When the handles are extended, they can be placed on the upper edges of opposite ends of the ultrasonic cleaning box. The fire dragon can drying mechanism includes a support frame, a hot air blower, and several internal air ducts that communicate with each other at both ends. The support frame is vertically installed on one side of the upper end of the ultrasonic cleaning box. The hot air blower is installed on the support frame. Several internal air ducts are evenly distributed on the front of the support frame facing the ultrasonic cleaning box, with one end of each internal air duct extending upwards at an angle. Its other end is connected to the output port of the hot air blower. After the cleaned fire dragon can is placed with its port facing down on the upward-sloping end of each internal air duct, the internal air duct can introduce the hot air output from the hot air blower into the corresponding fire dragon can to dry the inside of the fire dragon can. Its advantages are: the basket can be used to take the cleaned fire dragon can out of the ultrasonic cleaning box, and the handle can provide support for the basket, making it easy to manually pick up and put down the fire dragon can; during drying, with manual assistance, the fire dragon can can be quickly placed on the internal air duct for drying, avoiding the trouble of fixing the fire dragon can. This fire dragon can cleaning and drying device has a simple structure, is easy to operate, has high cleaning efficiency, and strong applicability, and can meet the cleaning needs of fire dragon cans of different sizes.

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Abstract

This utility model provides a fire dragon can cleaning and drying device, including an ultrasonic cleaning box, a holding basket, and a fire dragon can drying mechanism. The holding basket has handles at both ends that can extend and retract in opposite directions. When the handles are retracted, the holding basket and the fire dragon can it contains can be submerged into the ultrasonic cleaning box for cleaning. When the handles are extended, they can be placed on the upper edges of opposite ends of the ultrasonic cleaning box. The fire dragon can drying mechanism includes a support frame, a hot air blower, and several internal air ducts connected at both ends. The support frame is erected on one side of the upper end of the ultrasonic cleaning box. The hot air blower is mounted on the support frame. The internal air ducts are evenly distributed on the front side of the support frame facing the ultrasonic cleaning box. One end of each internal air duct extends upwards at an angle, and the other end is connected to the output port of the hot air blower. After the cleaned fire dragon can is placed with its port facing down on each internal air duct, the internal air ducts can introduce hot air into the fire dragon can for drying.
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Description

Technical Field

[0001] This utility model relates to the field of fire dragon can cleaning and drying technology, specifically to a fire dragon can cleaning and drying device. Background Technology

[0002] Fire Dragon Cupping is a traditional Chinese medicine treatment method originating from ancient Chinese folk moxibustion. It combines cupping, scraping, and moxibustion with other traditional therapies, achieving therapeutic effects through a unique cup design and application techniques. The cups are typically made of a mixture of black stone and purple clay, and the mouth is designed with a petal-shaped structure, which is not only aesthetically pleasing but also allows for a better fit to the skin.

[0003] As a reusable instrument that comes into direct contact with the skin, fire dragon cupping jars will leave residues of sebum, sweat, and some patients' traditional Chinese medicine external application after each use. Therefore, they need to be cleaned. Traditional cleaning methods mainly rely on manual cleaning. Due to the large number of fire dragon cupping jars used and the petal-shaped structure of the jar opening, manual cleaning is inefficient, time-consuming, and labor-intensive. Moreover, the jar opening area is difficult to clean thoroughly, which can easily lead to dirt residue.

[0004] To address the drawbacks of manual cleaning, existing technology, patent application number CN202510299491.2, discloses a moxibustion fire dragon cup disinfection device. This device comprises a shell fixed to the upper surface of a base; at least six cavities arranged in a circular array on the shell; a support tube fixed to the center point of the shell; a cover fixed to the support tube; a clamping assembly for holding the fire dragon cup connected to the cover; several brush discs and brush strips connected to the clamping assembly; a receiving assembly for receiving the fire dragon cup connected to the shell; a brushing assembly for scrubbing the inner wall of the fire dragon cup connected to the receiving assembly; and a power component for driving the clamping assembly, spring telescopic column, brush discs, brush strips, and pushing assembly to rotate together to clean the fire dragon cup.

[0005] However, the fire dragon can sterilization device requires manual and precise fixing of each fire dragon can before cleaning, and the number of cans that can be cleaned is limited by the number of cleaning stations. The operation process is too complicated. Moreover, the specifications and dimensions of different fire dragon cans vary due to differences in materials and design purposes. The fire dragon can sterilization device is difficult to meet the diverse cleaning needs of fire dragon cans of different specifications, and its applicability is poor. Therefore, the fire dragon can sterilization device has obvious limitations in actual promotion and application and has failed to effectively solve the pain points of the industry. Utility Model Content

[0006] In view of this, it is necessary to provide a fire dragon can cleaning and drying device that is simple in structure, easy to operate, and highly applicable.

[0007] The technical solution adopted by this utility model to solve its technical problem is:

[0008] A device for cleaning and drying dragon cans includes an ultrasonic cleaning chamber for cleaning the dragon cans, a container basket movably mounted on the ultrasonic cleaning chamber for retrieving the dragon cans, and a drying mechanism for the dragon cans. The container basket has handles at both ends that can extend and retract in opposite directions. When the handles are retracted, the container basket, along with the dragon cans it contains, can be submerged into the ultrasonic cleaning chamber for cleaning. After the container basket is lifted out of the ultrasonic cleaning chamber, the dragon cans can be retrieved from the chamber. Extending the handles at both ends of the container basket allows them to be placed on the upper edges of opposite ends of the ultrasonic cleaning chamber to support the basket. The drying mechanism for the dragon cans includes... The device includes a support frame, a hot air blower, and several internal air ducts connected at both ends. The support frame is erected on one side of the upper part of the ultrasonic cleaning box. The hot air blower is located on the back or one side of the support frame. Several internal air ducts are evenly distributed on the front of the support frame facing the ultrasonic cleaning box. One end of each internal air duct extends upward at an angle, and the other end passes through the support frame and connects with the output port of the hot air blower. The diameter of each internal air duct is smaller than the inner diameter of the cleaning tank. After the cleaning tank is placed with its port facing down, it is fitted onto the upward angled end of each internal air duct. Each internal air duct can then introduce the hot air output by the hot air blower into the corresponding tank to dry the inside of the tank.

[0009] Preferably, a plurality of elastic support baffles are evenly distributed around the outer wall of the upwardly inclined end of each of the internal air ducts. The elastic support baffles rub against the inner wall of the fire dragon can fitted on the internal air duct to prevent the fire dragon can from detaching from the internal air duct and to support the fire dragon can so that the fire dragon can and the internal air duct are centrally fitted.

[0010] Preferably, one end of each of the internal air ducts is sealed at an upward angle, and an exhaust hole communicating with the inner cavity is provided on the outer wall of the one end of each of the internal air ducts at an upward angle. The exhaust holes are evenly distributed along the circumference of the internal air ducts, and the hot air output by the hot air blower can be blown into the fire dragon can from each exhaust hole.

[0011] Preferably, the fire dragon can drying mechanism further includes an external air duct, which is disposed above or to one side of each internal air duct. One end of the external air duct passes through the support frame and is connected to the output port of the hot air blower, while the other end of the external air duct is sealed. Several exhaust ports communicating with its inner cavity are opened on the side wall of the external air duct, and each exhaust port faces the outer wall of the fire dragon can fitted on each internal air duct. The external air duct can guide the hot air output by the hot air blower to each exhaust port to dry the outer wall of each fire dragon can.

[0012] Preferably, the device also includes a fire dragon can cleaning mechanism, which includes a cleaning water tank, a water pump, and several internal cleaning nozzles and a first conduit connected to each internal cleaning nozzle. The cleaning water tank is located outside the ultrasonic cleaning chamber, and the water pump is located inside or outside the cleaning water tank. The several internal cleaning nozzles are respectively mounted on the upwardly extending ends of each internal air duct. One end of the first conduit is connected to each internal cleaning nozzle, and the other end passes through each internal air duct and is connected to the output end of the water pump. Before drying the fire dragon can, the water pump can deliver clean water from the cleaning water tank to each internal cleaning nozzle, and use each internal cleaning nozzle to rinse and clean the inside of the fire dragon can mounted on each internal air duct.

[0013] Preferably, the fire dragon can cleaning mechanism further includes several external cleaning nozzles and a second conduit. The second conduit is horizontally arranged above each internal air duct. The input end of the second conduit passes through the support frame and is connected to the output end of the water pump. Several external cleaning nozzles are spaced apart on the second conduit, and the spray direction of each external cleaning nozzle is directly facing the outer wall of the fire dragon can fitted on each internal air duct, so as to rinse and clean the outer wall of each fire dragon can.

[0014] Preferably, a water collection tank with an opening at the top is provided directly below the side of the support frame facing the ultrasonic cleaning box. The opening of the water collection tank is directly below each internal air duct to collect the water sprayed from each internal cleaning nozzle and each external cleaning nozzle.

[0015] Preferably, the lower end of the water collection tank is provided with a drain outlet.

[0016] Preferably, the support frame is hinged at the upper end of the ultrasonic cleaning box, and the support frame can be flipped downwards to a parallel state and fastened to the upper end of the ultrasonic cleaning box to shield the upper port of the ultrasonic cleaning box.

[0017] Preferably, the support frame is provided with a handle.

[0018] As can be seen from the above technical solution, the fire dragon can cleaning and drying device provided in this application includes an ultrasonic cleaning box, a holding basket, and a fire dragon can drying mechanism. The holding basket has handles at both ends that can extend and retract in opposite directions. When the handles are retracted, the holding basket, along with the fire dragon cans it contains, can be submerged into the ultrasonic cleaning box for cleaning. When the handles are extended, they can be placed on the upper edges of opposite ends of the ultrasonic cleaning box. The fire dragon can drying mechanism includes a support frame, a hot air blower, and several internal air ducts that communicate with each other at both ends. The support frame is vertically installed on one side of the upper end of the ultrasonic cleaning box. The hot air blower is installed on the support frame. Several internal air ducts are evenly distributed on the front of the support frame facing the ultrasonic cleaning box, with one end of each internal air duct extending upwards at an angle. Its other end is connected to the output port of the hot air blower. After the cleaned fire dragon can is placed with its port facing down on the upward-sloping end of each internal air duct, the internal air duct can introduce the hot air output from the hot air blower into the corresponding fire dragon can to dry the inside of the fire dragon can. Its advantages are: the basket can be used to take the cleaned fire dragon can out of the ultrasonic cleaning box, and the handle can provide support for the basket, making it easy to manually pick up and put down the fire dragon can; during drying, with manual assistance, the fire dragon can can be quickly placed on the internal air duct for drying, avoiding the trouble of fixing the fire dragon can. This fire dragon can cleaning and drying device has a simple structure, is easy to operate, has high cleaning efficiency, and strong applicability, and can meet the cleaning needs of fire dragon cans of different sizes. Attached Figure Description

[0019] Figure 1 This is a side view of the structure of the utility model.

[0020] Figure 2 This is a three-dimensional structural diagram of the utility model.

[0021] Figure 3 and Figure 4 This is a schematic diagram of the structure of the utility model from another angle.

[0022] Figure 5 for Figure 1 Schematic diagram of the cross-sectional structure at point AA along the middle.

[0023] Figure 6 This is a schematic diagram of the internal air duct structure.

[0024] Figure 7 A schematic diagram of the extended handle for holding the basket.

[0025] Figure 8 A schematic diagram of the retractable handle structure for holding a basket.

[0026] Figure 9 This is a schematic diagram showing the state of the fire dragon canisters being installed on the internal air ducts.

[0027] Figure 10 This is a schematic diagram showing the support frame being parallelly fastened to the upper part of the ultrasonic cleaning box.

[0028] In the diagram: ultrasonic cleaning box 10, hinge seat 11, holding basket 20, handle 21, fixing edge 22, fire dragon can drying mechanism 30, support frame 31, hot air blower 32, internal air duct 33, elastic support baffle 34, exhaust port 35, external air duct 36, exhaust port 37, air collection hood 38, handle 39, fire dragon can cleaning mechanism 40, cleaning water tank 41, water pump 42, internal cleaning nozzle 43, first conduit 44, external cleaning nozzle 45, second conduit 46, output main pipe 47, water collection tank 50, drain outlet 51. Detailed Implementation

[0029] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0030] Please refer to Figure 1 , Figure 2 and Figure 9This utility model provides a device for cleaning and drying dragon fruit cans, including an ultrasonic cleaning box 10 for cleaning dragon fruit cans, a container basket 20 movably mounted on the ultrasonic cleaning box 10 for retrieving the dragon fruit cans, and a dragon fruit can drying mechanism 30. The container basket 20 has handles 21 that can extend and retract in opposite directions at both ends. When the handles 21 are retracted, the container basket 20, along with the dragon fruit cans it contains, can be submerged into the ultrasonic cleaning box 10 for cleaning. After the container basket 20 is lifted out of the ultrasonic cleaning box 10, the cleaned dragon fruit cans can be retrieved from the ultrasonic cleaning box 10. Extending the handles 21 at both ends of the container basket 20 allows the handles 21 to be placed on the upper edges of opposite ends of the ultrasonic cleaning box 10 to support the container basket 20, facilitating the removal of the cleaned dragon fruit cans. The drying mechanism 30 for the fire dragon can includes a support frame 31, a hot air blower 32, and several internal air ducts 33 connected at both ends. The support frame 31 is erected on one side of the upper end of the ultrasonic cleaning box 10. The hot air blower 32 is located on the back or outside of the support frame 31. Several internal air ducts 33 are evenly distributed on the front side of the support frame 31 facing the ultrasonic cleaning box 10. One end of each internal air duct 33 extends upward at an incline, and the other end passes through the support frame 31 and is connected to the output port of the hot air blower 32. The diameter of each internal air duct 33 is smaller than the inner diameter of the fire dragon can to be cleaned. After the fire dragon can is cleaned with its port facing down, it is fitted onto the upward inclined end of each internal air duct 33. Each internal air duct 33 can introduce the hot air output by the hot air blower 32 into the corresponding fire dragon can to dry the inside of the fire dragon can.

[0031] Please refer to Figure 2 , Figure 7 , Figure 8 and Figure 9 Specifically, the holding basket 20 is a stainless steel mesh basket. Parallel tubular fixing edges 22 are arranged along the upper edges of opposite sides of the holding basket 20, with both ends of the fixing edges 22 being through-through. The handles 21 have a U-shaped structure, with the ends of the two handles 21 inserted into the opposite ends of the two fixing edges 22 respectively. The two handles 21 can freely pull and extend along the length of the fixing edges 22. The overall size of the holding basket 20 is smaller than the internal size of the ultrasonic cleaning box 10. The handles at both ends of the holding basket 20... After retraction, the basket 20 can be placed into the ultrasonic cleaning box 10. After the basket 20 is taken out of the ultrasonic cleaning box 10, the cleaned fire dragon can can be taken out of the ultrasonic cleaning box 10 together with the basket 20. After the handles 21 at both ends of the basket 20 are extended, the handles 21 can be placed on the upper edges of the opposite ends of the ultrasonic cleaning box 10. The two handles 21 can support the basket 20 and set it on the upper part of the ultrasonic cleaning box 10 for easy removal of the fire dragon can.

[0032] Please refer to Figures 2 to 5 The support frame 31 is erected on one side of the upper end of the ultrasonic cleaning chamber 10. The hot air blower 32 is located on the back or outside of the support frame 31. A sealed air collection hood 38 is provided on the back of the support frame 31. The output port of the hot air blower 32 is connected to the inner cavity of the air collection hood 38. Several internal air ducts 33 are evenly spaced on the front of the support frame 31 facing the ultrasonic cleaning chamber 10. One end of each internal air duct 33 faces the ultrasonic cleaning chamber 10 and extends upward at a 45° angle. The other end of each internal air duct 33 passes through the support frame 31 and enters the inner cavity of the air collection hood 38. The air collecting hood 38 is connected to the output port of the hot air blower 32. The diameter of each of the internal air ducts 33 is smaller than the inner diameter of the smallest size fire dragon can. The fire dragon can can be fitted onto the inclined end of the internal air duct 33. The cleaned fire dragon can can be hung on the support frame 31 with its port facing down through each internal air duct 33. The hot air output from the hot air blower 32 can be introduced into the fire dragon can for drying through the internal air duct 33. The hot air blower 32 is an electric hot air blower. For example, the temperature-adjustable hot air gun of the Qili brand, model QR866B, sold by Foshan Qili Technology Co., Ltd., can be used.

[0033] The ultrasonic cleaning chamber 10 is an ultrasonic cleaning machine, mainly composed of an ultrasonic generator, an ultrasonic transducer, a cleaning tank, and a control panel. The ultrasonic generator is the core component that generates ultrasonic waves. It generates high-frequency electrical signals through an electronic oscillation circuit and then converts them into mechanical vibrations to produce ultrasonic waves. The ultrasonic transducer converts the electrical signals generated by the ultrasonic generator into mechanical vibrations and amplifies these vibrations to generate ultrasonic waves. The cleaning tank is made of stainless steel and contains cleaning fluid for holding the canisters to be cleaned. Multiple canisters can be placed in the cleaning tank at the same time for simultaneous cleaning. The control panel is used to control parameters such as cleaning time and power of the ultrasonic generator and ultrasonic transducer. The cleaning capacity and power of the ultrasonic cleaning chamber 10 can be selected according to the cleaning volume. For example, the CH-030S ultrasonic cleaning machine manufactured by Dongguan Chaoneng Ultrasonic Cleaning Equipment Co., Ltd. can be selected.

[0034] When cleaning the dragon-shaped canisters, place them in the basket 20, manually retract the handle 21, and submerge the basket 20 along with the canisters into the ultrasonic cleaning chamber 10 for ultrasonic cleaning. After cleaning, manually hold the handles 21 at both ends of the basket 20 to lift it out of the ultrasonic cleaning chamber 10. Use the basket 20 to retrieve the cleaned dragon-shaped canisters from the ultrasonic cleaning chamber 10. Pull the handles 21 outwards and place them on the upper edges of opposite ends of the ultrasonic cleaning chamber 10. The handles 21 support the basket 20, placing it on top of the ultrasonic cleaning chamber 10. After the top end is removed, the bottom will leave the cleaning liquid surface in the ultrasonic cleaning box 10. The basket 20 can drain water from the fire dragon can and make it easy to remove the fire dragon can. After manually pouring out the residual cleaning liquid in the fire dragon can in the basket 20, the fire dragon cans are placed one by one with their ports facing down on the inclined ends of the internal air ducts 33. The fire dragon cans can be hung upside down on the support frame 31 through the internal air ducts 33, with the ports of the fire dragon cans tilted downwards. At this time, the hot air blower 32 is turned on and the temperature of the hot air output by the hot air blower 32 is controlled at 45-70 degrees. The hot air generated by the hot air blower 32 enters the internal air ducts 33 from the air collector 38 and is introduced into the corresponding fire dragon can through the internal air ducts 33 to dry the inside of the fire dragon can. By tilting the canister downwards for drying, the residual cleaning solution inside the canister can flow out. During the drying process, the canisters to be cleaned can be continuously put into the ultrasonic cleaning box 10, so that drying and cleaning can be carried out simultaneously. Furthermore, canisters of different sizes can be put into the ultrasonic cleaning box 10 for cleaning at the same time. The operation is flexible, convenient, and highly applicable.

[0035] Please refer to Figure 2 , Figure 5 and Figure 6Furthermore, several elastic support baffles 34 are erected on the outer wall of the upwardly inclined end of each internal air duct 33. These elastic support baffles 34 are evenly distributed around the circumference of the outer wall of the internal air duct 33. The elastic support baffles 34 are made of elastic materials such as rubber or silicone. The diameter of the elastic support baffles 34 is slightly larger than the inner diameter of the fire dragon can. During the process of fitting the fire dragon can onto the internal air duct 33, the elastic support baffles 34 can adaptively shrink and deform, and can follow the internal air duct 33 into the fire dragon can. They can also rub against the inner wall of the fire dragon can, thus acting as a friction stop and preventing the fire dragon can from naturally detaching from the internal air duct 33. This ensures the stability of the fire dragon can during the drying process and provides support for the fire dragon can, bringing the internal air duct 33 closer to the center of the fire dragon can, which is beneficial for the hot air to diffuse to the inner wall of the fire dragon can.

[0036] Please refer to Figure 2 and Figure 5 Furthermore, the fire dragon can drying mechanism 30 also includes an external air duct 36. The external air duct 36 is arranged horizontally or vertically on the front of the support frame 31 facing the ultrasonic cleaning box 10, and is located above or to one side of each internal air duct 33. One end of the external air duct 36 passes through the support frame 31 and communicates with the inner cavity of the air collecting hood 38. The other end of the external air duct 36 is sealed. Several exhaust ports 37 communicating with its inner cavity are opened on the side wall of the external air duct 36. Each exhaust port 37 is directly opposite the outer wall of the fire dragon can fitted on each internal air duct 33. The external air duct 36 can guide the hot air output by the hot air blower 32 to each exhaust port 37 to dry the outer wall of each fire dragon can.

[0037] Please continue reading. Figure 2 , Figure 5 and Figure 6 In another preferred embodiment, one end of each of the internal air ducts 33 extending upwards is a closed structure. An exhaust hole 35 communicating with the inner cavity is provided on the outer wall of the upwardly extending end of each of the internal air ducts 33. The exhaust holes 35 are evenly distributed around the circumference of the internal air ducts 33, and the diameter of the exhaust holes 35 is 0.15-0.3 mm. The hot air output by the hot air blower 32 can be blown into the fire dragon can through each exhaust hole 35. The hot air can be dispersed to the surrounding area inside the fire dragon can through the exhaust holes 35, and the exhaust holes 35 increase the resistance to the flow of hot air, thereby increasing the flow velocity of hot air at the exhaust holes 35 and improving the drying efficiency.

[0038] When drying the fire dragon can, in order to ensure the air pressure at the exhaust hole 35 on each internal air duct 33, a valve can be installed at the end where the external air duct 36 is connected to the air collection hood 38. The exhaust volume of the external air duct 36 can be adjusted by manually controlling the opening of the valve. If necessary, the valve can also be closed so that the hot air generated by the hot air blower 32 can be concentrated to dry the inner wall of the fire dragon can.

[0039] Please continue reading. Figure 2 , Figure 3 and Figure 5 Furthermore, the fire dragon can cleaning and drying device also includes a fire dragon can cleaning mechanism 40. The fire dragon can cleaning mechanism 40 includes a water tank 41 for holding clean water for cleaning, a water pump 42, and several internal cleaning nozzles 43, as well as first conduits 44 connected to each internal cleaning nozzle 43. The water tank 41 is located outside the ultrasonic cleaning box 10. The water pump 42 is located at the bottom inside the water tank 41 or outside the water tank 41. The water pump 42 is powered by an external power supply. An output main pipe 47 is provided at the output end of the water pump 42. One end of each internal air duct 33 extends upward at an angle and is a sealed structure. Several internal cleaning nozzles 43 are respectively mounted on the sealed end of each internal air duct 33. One end of each first conduit 44 is connected to each internal cleaning nozzle 43. The other end of the first conduit 44 passes through the support frame 31 and the air collection hood 38 from the inner cavity of each internal air duct 33 or from the outside of each internal air duct 33 and then connects to the water pump 41. The output manifolds 47 at the output ends of the 2 are connected in parallel. Before drying the fire dragon can, the water pump 42 can be turned on to send clean water from the cleaning water tank 41 to each internal cleaning nozzle 43. The internal cleaning nozzles 43 are used to rinse and clean the inside of the fire dragon can that is sleeved on each internal air duct 33. In addition, the fire dragon can cleaning mechanism 40 also includes several external cleaning nozzles 45 and a second conduit 46. The second conduit 46 is horizontally arranged above each internal air duct 33. The input end of the second conduit 46 passes through the support frame 31 and is connected in parallel with the output manifolds 47 at the output ends of the water pump 42. Several external cleaning nozzles 45 are spaced apart on the second conduit 46, and the spray direction of each external cleaning nozzle 45 is directly facing the outer wall of the fire dragon can that is sleeved on each internal air duct 33, so as to rinse and clean the outer wall of each fire dragon can. The fire dragon can cleaning mechanism 40 can effectively remove the cleaning liquid remaining on the inner wall and outer surface of the fire dragon can.

[0040] It should be noted that the internal air duct 33 is inclined upwards with a sealed end, and the exhaust port 35 has a small diameter. During the cleaning process, the water sprayed by the internal cleaning nozzle 43 mainly acts on the inner wall of the fire dragon can and will not flow directly into the internal air duct 33. Even if a small amount of water enters the internal air duct 33 through the exhaust port 35, it will be dried by the hot air during the drying process and will not affect the use of the internal air duct 33. In addition, to prevent the water sprayed by the internal cleaning nozzle 43 from flowing into the internal air duct 33, the hot air blower 32 can be turned on simultaneously during the cleaning process to blow air into the fire dragon can, using airflow to prevent cleaning water from entering the internal air duct 33.

[0041] Please continue reading. Figure 2 , Figure 5 To prevent water sprayed from the internal cleaning nozzles 43 and the external cleaning nozzles 45 from flowing into the ultrasonic cleaning chamber 10, a water collection tank 50 with an opening at the top is provided directly below the side of the support frame 31 facing the ultrasonic cleaning chamber 10. The opening of the water collection tank 50 is directly below each internal air duct 33. A drain outlet 51 is provided at the lower end of the water collection tank 50. The water collection tank 50 can receive and guide the water sprayed from each internal cleaning nozzle 43 and each external cleaning nozzle 45, so as to separate the cleaning water from the cleaning liquid.

[0042] Please refer to Figure 2 and Figure 10 In the above embodiment, hinge seats 11 are symmetrically arranged on the opposite sides of the upper end of the ultrasonic cleaning box 10. The support frame 31 is a rectangular box structure that matches the size of the upper port of the ultrasonic cleaning box 10. The lower end of the support frame 31 is connected to the two hinge seats 11. The support frame 31 is hinged to the upper end of the ultrasonic cleaning box 10 through the two hinge seats 11. A handle 39 is provided on the end of the support frame 31 away from the hinge seats 11. The support frame 31 can be flipped and fastened to the upper port of the ultrasonic cleaning box 10. When cleaning the fire dragon can, the support frame 31 can be flipped over by the handle 39. In the upright position, when the cleaning of the fire dragon can is completed or when the fire dragon can cleaning and drying device is transferred and moved, the support frame 31 can be flipped downwards to a parallel position through the handle 39, so that the front of the support frame 31 is attached to the upper end of the ultrasonic cleaning box 10. The support frame 31 can cover the upper port of the ultrasonic cleaning box 10. In addition, the internal air duct 33, external air duct 36, internal cleaning nozzle 43 and external cleaning nozzle 45 installed on the support frame 31 can also be hidden in the ultrasonic cleaning box 10, reducing the space occupied and also playing a protective role, which can facilitate the transfer and movement of the fire dragon can cleaning and drying device.

[0043] This fire cupping cleaning and drying device is suitable for cleaning fire cupping jars of different sizes. During the cleaning process, the cleaning fire cupping jars can be scooped out of the ultrasonic cleaning box 10 using the holding basket 20. The handle provides support for the holding basket 20, making it easy to manually remove the fire cupping jars and drain them. During drying, with manual assistance, the cleaning fire cupping jars can be quickly placed on the internal air duct 33 for drying, avoiding the hassle of fixing the fire cupping jars. This fire cupping cleaning and drying device has a simple structure, is easy to operate, has high cleaning efficiency, and the cleaning fluid in the ultrasonic cleaning box can be reused, resulting in minimal waste. It is highly applicable, not only meeting the cleaning needs of fire cupping jars of different sizes but also suitable for cleaning cupping jars of different sizes.

[0044] The above-disclosed embodiments are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Those skilled in the art can understand that implementing all or part of the above-described embodiments and making equivalent changes in accordance with the claims of the present utility model are still within the scope of the utility model.

Claims

1. A fire dragon can cleaning and drying device, characterized in that: The system includes an ultrasonic cleaning box for cleaning dragon-shaped cans, a movable basket mounted on the ultrasonic cleaning box for retrieving the cans, and a can drying mechanism. The basket has retractable handles at both ends. When the handles are retracted, the basket and the dragon-shaped cans it contains are submerged in the ultrasonic cleaning box for cleaning. After the basket is removed from the ultrasonic cleaning box, the dragon-shaped cans can be retrieved. Extending the handles allows them to rest on the upper edges of opposite ends of the ultrasonic cleaning box for support. The can drying mechanism includes a support frame and a heating element. The ultrasonic cleaning chamber is equipped with a fan and several internal air ducts connected at both ends. The support frame is erected on one side of the upper part of the chamber. The hot air fan is located on the back or one side of the support frame. The internal air ducts are evenly distributed on the front of the support frame facing the ultrasonic cleaning chamber. One end of each internal air duct extends upward at an angle, and the other end passes through the support frame and connects with the output port of the hot air fan. The diameter of each internal air duct is smaller than the inner diameter of the cleaning can. After the cleaning can is placed with its port facing down on the upward angled end of each internal air duct, the hot air output by the hot air fan can be introduced into the corresponding cleaning can to dry the inside of the cleaning can.

2. The fire dragon can cleaning and drying device as described in claim 1, characterized in that: Several elastic support baffles are evenly distributed around the outer wall of the upwardly inclined end of each of the internal air ducts. The elastic support baffles rub against the inner wall of the fire dragon can fitted on the internal air duct to prevent the fire dragon can from detaching from the internal air duct and to support the fire dragon can so that the fire dragon can and the internal air duct are fitted in the center.

3. The dragon jar cleaning and drying device according to claim 2, characterized in that: Each of the internal air ducts has an upwardly inclined end that is sealed. An exhaust hole communicating with the inner cavity is provided on the outer wall of the upwardly inclined end of each of the internal air ducts. The exhaust holes are evenly distributed along the circumference of the internal air ducts. The hot air output by the hot air blower can be blown into the fire dragon can from each exhaust hole.

4. The device as claimed in claim 3, wherein the device further comprises a water tank and a water pump. The fire dragon can drying mechanism also includes an external air duct, which is located above or to one side of each internal air duct. One end of the external air duct passes through the support frame and is connected to the output port of the hot air blower. The other end of the external air duct is sealed. Several exhaust ports communicating with its inner cavity are opened on the side wall of the external air duct. Each exhaust port is directly opposite the outer wall of the fire dragon can fitted on each internal air duct. The external air duct can guide the hot air output by the hot air blower to each exhaust port to dry the outer wall of each fire dragon can.

5. The fire dragon can cleaning and drying device as described in claim 4, characterized in that: It also includes a fire dragon can cleaning mechanism, which includes a cleaning water tank, a water pump, and several internal cleaning nozzles and a first conduit connected to each internal cleaning nozzle. The cleaning water tank is located outside the ultrasonic cleaning box, and the water pump is located inside or outside the cleaning water tank. The several internal cleaning nozzles are respectively mounted on the upwardly extending ends of each internal air duct. One end of the first conduit is connected to each internal cleaning nozzle, and the other end passes through each internal air duct and is connected to the output end of the water pump. Before drying the fire dragon can, the water pump can deliver clean water from the cleaning water tank to each internal cleaning nozzle, and use each internal cleaning nozzle to rinse and clean the inside of the fire dragon can mounted on each internal air duct.

6. The dragon jar cleaning and drying apparatus according to claim 5, wherein: The fire dragon can cleaning mechanism also includes several external cleaning nozzles and a second conduit. The second conduit is horizontally arranged above each internal air duct. The input end of the second conduit passes through the support frame and is connected to the output end of the water pump. Several external cleaning nozzles are spaced apart on the second conduit, and the spray direction of each external cleaning nozzle is directly facing the outer wall of the fire dragon can fitted on each internal air duct, so as to rinse and clean the outer wall of each fire dragon can.

7. The fire dragon can cleaning and drying device as described in claim 6, characterized in that: A water collection tank with an opening at the top is also provided directly below the side of the support frame facing the ultrasonic cleaning box. The opening of the water collection tank is directly below each internal air duct to collect the water sprayed from each internal cleaning nozzle and each external cleaning nozzle.

8. The device according to claim 7, wherein the device is characterized by: A drain outlet is provided at the lower end of the water collection tank.

9. The device as claimed in claim 8, wherein the device further comprises a water tank and a water pump. The support frame is hinged at the upper end of the ultrasonic cleaning box. The support frame can be flipped downwards to a parallel state and fastened to the upper end of the ultrasonic cleaning box to shield the upper port of the ultrasonic cleaning box.

10. The fire dragon can cleaning and drying device as described in claim 9, characterized in that: The support frame is equipped with a handle.

Citation Information

Patent Citations

  • Disinfection device and method for pitaya tank for moxibustion

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