Wine glass cleaning device

Through the coordinated design of the rotating component and the spray washing component, the problems of water waste and low cleaning efficiency in traditional wine glass cleaning devices are solved, a water-saving and efficient cleaning effect is achieved, and the space utilization and operation stability of the device are improved.

CN223438467UActive Publication Date: 2025-10-17GUANGDONG SHIWAN WINE GRP CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422885075.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-10-17
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

In the existing wine glass cleaning device, the movable connection between the cleaning water inlet of each row of cup racks and the water outlet of the flushing water source is prone to gaps, resulting in water waste and low cleaning efficiency.

Method used

The coordinated design of the rotating assembly, cup holder and spray assembly forms a continuous cleaning process. The spray assembly is fixedly set inside the rotating assembly, and the nozzle corresponds one-to-one with the cup holder cavity. The cup holder is driven by the rotating assembly through the spray assembly for precise cleaning.

Benefits of technology

Effectively reduce water waste, improve cleaning efficiency, ensure that each wine glass is fully cleaned, reduce water consumption and improve space utilization and operational stability of the cleaning device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223438467U_ABST
    Figure CN223438467U_ABST
Patent Text Reader

Abstract

A wine glass cleaning device comprises a shell, a rotating assembly, a plurality of glass holders and a plurality of spray-washing assemblies, and the rotating assembly, the glass holders and the spray-washing assemblies are arranged in the shell; the rotating assembly is arranged in an up-and-down two-layer end-to-end surrounding mode, the plurality of cup holders are sequentially arranged on the outer side of the rotating assembly, and the plurality of spray-washing assemblies are arranged in the rotating assembly; the cup holder is provided with a plurality of containing cavities used for containing wine cups, the spray-washing assembly is provided with a plurality of nozzles in one-to-one correspondence with the containing cavities, and the rotating assembly drives the cup holder to pass through the spray-washing assembly. Through cooperation of the rotating assembly, the cup holder and the spray-washing assembly, a continuous cleaning process is formed. In the rotating process, the wine cups are stably placed in the containing cavity of the cup holder, conveyed to the position over the spraying and washing assembly through the rotating assembly and directly sprayed and washed through the nozzles, water waste caused by untight butt joint in a traditional device is avoided, the washing efficiency is improved, and water consumption is effectively reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of wine glass cleaning, in particular to a wine glass cleaning device. Background Art

[0002] When printing the logo on the surface of the existing wine glass, the paint will enter the inner wall of the cup, so the inner wall of the wine glass needs to be washed. Figure 1 The diagram below shows the structure of a traditional glass washer. Each row of cup racks is equipped with a cleaning water inlet. The cup racks move along the cup rack track until the cleaning water inlet 01 aligns with the flushing water outlet 02, where they rinse the inner walls of the wine glasses placed on the cup racks. After rinsing, the cup racks in that row continue forward along the cup rack track, and the cup racks in the next row similarly move until their cleaning water inlet aligns with the flushing water outlet, and then rinse. Because each row of cup racks has a separate cleaning water inlet, but the cleaning water inlet and the flushing water outlet are flexibly connected, a large gap inevitably exists during the docking process, through which flushing water sprays out, resulting in water waste and increased water consumption. This design not only wastes precious water resources but also increases the cost of the cleaning process. Utility Model Content

[0003] In view of the problems raised in the background technology, the purpose of the present invention is to provide a wine glass cleaning device to solve the problems of high water consumption and low cleaning efficiency of existing wine glass washing machines.

[0004] To achieve this purpose, the present invention adopts the following technical solutions:

[0005] A wine glass cleaning device comprises a housing, a rotating assembly, a plurality of cup racks and a plurality of spraying assemblies, wherein the rotating assembly, the cup racks and the spraying assemblies are arranged inside the housing;

[0006] The rotating assembly is arranged in two layers, end to end, with a plurality of cup holders arranged in sequence on the outside of the rotating assembly, and a plurality of groups of spraying assemblies arranged inside the rotating assembly;

[0007] The cup holder is provided with a plurality of accommodating cavities for placing wine glasses. The spray assembly is provided with a plurality of nozzles, which are arranged vertically upward and correspond one to one with the accommodating cavities. The rotating assembly drives the cup holder to pass through the spray assembly.

[0008] Preferably, the spray assembly is fixedly arranged inside the rotating assembly, and the spray assembly includes a water receiving pipe section, a water supply pipe section and a plurality of the nozzles;

[0009] One end of the water receiving pipe section is connected with a water source, and the other end of the water receiving pipe section is connected with the water supply pipe section, the water supply pipe section is arranged in parallel with the length direction of any of the cup holders, and a plurality of the nozzles are arranged at intervals along the extension direction of the water supply pipe section.

[0010] Preferably, the vertical section of the water spraying hole of the nozzle is inverted triangular;

[0011] The spraying angle of the water spraying hole is 20-40°.

[0012] The diameter of the water spraying hole is 1-2 mm.

[0013] Preferably, the rotating assembly comprises a chain track, a driving roller, no less than two driven rollers and a driver.

[0014] The driving roller and one of the driven rollers are arranged in the same plane in parallel with each other, and the other driven roller is arranged below the driving roller, the chain track is arranged outside the driving roller and the driven rollers, and the driver is used to drive the driving roller to rotate.

[0015] The cup holder is arranged outside the chain track.

[0016] Preferably, the driving roller comprises two driving sprockets and a main connecting shaft, and the two driving sprockets are arranged at two ends of the main connecting shaft.

[0017] The driven roller comprises two driven sprockets and a driven connecting shaft, and the two driven sprockets are arranged at two ends of the driven connecting shaft.

[0018] The chain track comprises two chains, and the two driving sprockets and the two driven sprockets are respectively meshed with the two chains.

[0019] The driver is a pneumatic cylinder, and the pneumatic cylinder is used to drive one of the driving sprockets to overturn forward.

[0020] Preferably, the cup holder comprises two vertical supports, a bottom layer plate and a top layer plate.

[0021] The top layer plate is arranged above the bottom layer plate, the top layer plate and the bottom layer plate are arranged in parallel with each other, the two vertical supports are respectively arranged at two sides of the top layer plate and the bottom layer plate, and the two vertical supports are respectively connected with the two chains.

[0022] The top layer plate is provided with a plurality of top openings, the bottom layer plate is provided with a plurality of bottom openings, the top openings and the bottom openings are in one-to-one correspondence, and the diameter of the bottom openings is smaller than the diameter of the top openings.

[0023] Preferably, an annular enclosure is provided between the top opening and the bottom opening, and the inner wall of the annular enclosure is provided with a plurality of ribs along the vertical direction.

[0024] Preferably, the housing is provided with a cup placing station and a cup unloading station, the cup placing station is provided at the rear side of the housing, and the cup unloading station is provided at the front side of the housing;

[0025] The rotating assembly drives the plurality of cup racks to sequentially pass through the cup placing station, the spray cleaning assembly and the cup unloading station from the back to the front.

[0026] Preferably, it further comprises a cup receiver, which is arranged at the cup unloading station;

[0027] The cup receiver is used to receive the wine glasses unloaded at the cup unloading station.

[0028] Preferably, the cup receiver comprises an L-shaped plate, a hinge shaft and a flip driver;

[0029] The hinge shaft is arranged on the rear side of the L-shaped plate, and the flip driver is used to drive the L-shaped plate to flip around the hinge shaft.

[0030] Compared with the prior art, one of the above technical solutions has the following beneficial effects:

[0031] The rotating assembly, cup holder, and spray assembly work together to create a continuous cleaning process. During rotation, wine glasses are securely placed in the cup holder's cavities and transported by the rotating assembly directly above the spray assembly, where they are sprayed directly through the nozzles, eliminating the water waste associated with loose docking in traditional systems. The rotating assembly drives the cup holder through the spray assembly, ensuring each glass is fully cleaned, improving cleaning efficiency and significantly reducing water consumption. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 It is a structural diagram of an existing wine glass washing machine;

[0033] Figure 2 It is a structural diagram of an embodiment of the utility model;

[0034] Figure 3 This is another structural diagram of an embodiment of the utility model;

[0035] Figure 4 It is a structural schematic diagram of a nozzle according to an embodiment of the present invention.

[0036] Wherein: the cleaning water inlet 01, water outlet 02, shell 1, put cup station 11, unload cup station 12, rotating assembly 2, chain track 21, driving roller 22, driving sprocket 221, main connecting shaft 222, driven roller 23, driven sprocket 231, from connecting shaft 232, cup holder 3, vertical support 31, bottom layer plate 32, bottom opening 321, top layer plate 33, top opening 331, containing cavity 30, spray washing assembly 4, nozzle 41, water pipe section 42, water supply pipe section 43, cup receiver 5, L-shaped plate 51, hinged shaft 52 and wine glass 9. DETAILED DESCRIPTION

[0037] The embodiments of the present application are described in detail below, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are used only for explaining the present application, and cannot be understood as a limitation of the present application.

[0038] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0039] In addition, the terms "first", "second" and "third" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" and "third" can explicitly or implicitly include one or more of the features.

[0040] It should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0041] The technical scheme of the present application is described below in conjunction with the drawings Figures 1 to 4 and is further illustrated by the specific embodiments.

[0042] The utility model provides a wine cup cleaning device, which comprises a shell 1, a rotating assembly 2, a plurality of cup holders 3 and a plurality of groups of spray cleaning assemblies 4, wherein the rotating assembly 2, the cup holders 3 and the spray cleaning assemblies 4 are arranged inside the shell 1.

[0043] The rotating assembly 2 is arranged in two layers from top to bottom and encircles the front and the rear, a plurality of cup holders 3 are sequentially arranged on the outer side of the rotating assembly 2, and a plurality of groups of spray cleaning assemblies 4 are arranged inside the rotating assembly 2.

[0044] The cup holder 3 is provided with a plurality of accommodation cavities 30 for placing wine cups 9, the spray cleaning assembly 4 is provided with a plurality of nozzles 41 arranged vertically upward, the nozzles 41 correspond to the accommodation cavities 30 one by one, and the rotating assembly 2 drives the cup holder 3 to pass through the spray cleaning assembly 4.

[0045] In the wine cup printing industry, the logo on the surface of the cup often leads to paint entering the inner wall of the cup during the printing process, so the inner wall of the wine cup needs to be thoroughly cleaned. The traditional wine cup cleaning device usually adopts a combination of a fixed cleaning water inlet 01 and a moving cup holder 3. However, this design has some problems: each row of cup holders 3 needs to be provided with a separate water inlet 01, and the movable connection between the water inlet 01 of the cup holder and the water outlet 02 of the flushing water source is prone to gaps, resulting in waste of water resources and reduction of cleaning efficiency.

[0046] To solve the above problems, the utility model provides a wine cup cleaning device, which adopts a design of the rotating assembly 2, the cup holder 3 and the spray cleaning assembly 4 cooperating with each other to form an efficient and water-saving continuous cleaning process. Specifically, the wine cup cleaning device of the utility model comprises a rotating assembly 2 arranged inside a shell 1, a plurality of cup holders 3 and a plurality of groups of spray cleaning assemblies 4, which form a compact and efficient cleaning system.

[0047] The rotating assembly 2 is the core part of the device, which is arranged in two layers from top to bottom and encircles the front and the rear, providing power and a track for the whole cleaning process. A plurality of cup holders 3 are sequentially arranged on the outer side of the rotating assembly 2, each cup holder 3 is provided with a plurality of accommodation cavities 30 for stably placing the wine cups 9 to be cleaned (the cup opening of the wine cup 9 faces downward, and the cup bottom faces upward). Different from the traditional design, the spray cleaning assembly 4 of the utility model is fixedly arranged inside the rotating assembly 2, each group of spray cleaning assemblies 4 is provided with a plurality of nozzles 41 arranged vertically upward, and the nozzles 41 correspond to the accommodation cavities 30 of the cup holder 3 one by one. When the rotating assembly 2 drives the cup holder 3 to pass through the spray cleaning assembly 4, each wine cup 9 can be accurately and efficiently cleaned. This corresponding relationship not only improves the cleaning accuracy, but also greatly reduces the waste of water resources.

[0048] Specifically, in actual operation, the operator only needs to put the wine glass to be cleaned into the accommodating cavity 30 of the cup holder 3, and as the rotating assembly 2 rotates, the cup holder 3 will pass through the spray washing assembly 4 in turn. When the wine glass 9 is located directly above the nozzle 41, the nozzle 41 will accurately spray cleaning water upward, directly flushing the inner wall of the wine glass 9. This direct spraying method avoids the water leakage problem that may occur when the water outlet of the water source is connected with the water inlet of the cup holder in the traditional device, effectively reducing the waste of water resources.

[0049] The rotating assembly 2 and the spray washing assembly 4 are arranged in a head-to-tail surrounding manner, and the structure is compact. Compared with the traditional cup washing machine which needs to separately arrange the water inlet and the water outlet of the flushing water source for each cup holder, the device can save more space resources under the same production capacity. The rotating assembly 2 drives each row of cup holders 3 to automatically and continuously pass through the spray washing assembly 4, greatly improving the cleaning efficiency and enabling a large number of wine glasses to be cleaned in a shorter time. By adopting the centralized spray washing assembly 4 design, instead of arranging the water inlet and the movable connection of the flushing water source for each row of cup holders 3, the problem of splashing and waste of flushing water caused by the joint gap is avoided. The nozzle 41 of the spray washing assembly 4 is vertically arranged upward and corresponds to the accommodating cavity 30 of the cup holder 3, so that the flushing water can be directly and accurately sprayed to the inner wall of the wine glass 9, thereby improving the utilization efficiency of water and reducing water consumption.

[0050] The rotating assembly 2, the cup holder 3 and the spray washing assembly 4 cooperate to form a continuous cleaning process. In the process of moving each row of cup holders 3 driven by the rotating assembly 2, the wine glass 9 is stably placed in the accommodating cavity 30 of the cup holder and directly sprayed by the nozzle 41, avoiding the water waste caused by the loose joint in the traditional device. The rotating assembly 2 drives the cup holder 3 to pass through the spray washing assembly 4, so that each wine glass 9 can be fully cleaned, improving the cleaning efficiency and effectively reducing the water consumption.

[0051] Further, the spray washing assembly 4 is fixedly arranged in the interior of the rotating assembly 2, and the spray washing assembly 4 comprises a water receiving pipe section 42, a water supply pipe section 43 and a plurality of nozzles 41.

[0052] One end of the water receiving pipe section 42 is connected with the water source, and the other end of the water receiving pipe section 42 is connected with the water supply pipe section 43. The water supply pipe section 43 is arranged in parallel with the length direction of any cup holder 3, and a plurality of nozzles 41 are arranged at intervals along the extension direction of the water supply pipe section 43.

[0053] The spray assembly 4 is fixedly mounted within the rotating assembly 2, ensuring a stable position and protecting it from external vibrations or shocks, thereby improving the reliability of the device. The water inlet pipe section 42 is connected to a fixed water source, providing a continuous and stable flow of water for cleaning. The water supply pipe section 43 is arranged parallel to the cup holder 3, ensuring that the water flow is evenly distributed to each nozzle 41, thereby achieving full coverage of the wine glasses 9 in each accommodating cavity 30.

[0054] In addition, to ensure that the nozzle 41 can effectively cover the cleaning range of the wine glass 9, the nozzle 41 is arranged at intervals along the extension direction of the water supply pipe section 43. Specifically, the spacing distance of the nozzle 41 can be appropriately adjusted according to the size and shape of the wine glass 9 to ensure that the water flow can effectively flush the inner wall of the wine glass 9 and other parts that need to be cleaned.

[0055] In practice, to further optimize the cleaning effect, nozzle 41 can be designed to be adjustable, allowing the angle and flow rate to be adjusted according to the height and shape of the wine glass. For example, nozzle 41 can be designed as a rotating nozzle, which can be rotated to adjust the spray angle to cover different parts of the wine glass. In addition, the number and spacing of nozzles 41 can also be adjusted according to application requirements to increase cleaning coverage or enhance cleaning intensity.

[0056] Through the above-mentioned design, the present invention ensures that the spray assembly provides a stable water flow and evenly distributes it to each nozzle, achieving comprehensive cleaning of the interior and exterior of the wine glass. Compared with the prior art, the present invention's fixed arrangement of the spray assembly 4 avoids the problem of gaps easily generated at the movable joints in traditional devices, thereby improving water resource utilization and cleaning efficiency. Furthermore, the adjustable nozzle design allows for more precise coverage of all parts of the wine glass, enhancing the cleaning effect. The above technical means, in conjunction with each other, can effectively solve the technical problems of unstable water flow and insufficient cleaning range that exist in traditional wine glass cleaning devices.

[0057] Furthermore, the vertical cross-section of the water spray hole of the nozzle 41 is in the shape of an inverted triangle;

[0058] The spray angle α of the water spray hole ranges from 20° to 40°;

[0059] The aperture D of the water spray hole ranges from 1 mm to 2 mm.

[0060] like Figure 4 As shown, by designing the water spray hole of the nozzle as an inverted cone-shaped water spray hole (equivalent to the vertical section of the water spray hole being an inverted triangle), the water flow can be effectively concentrated, the spraying force can be increased, and the cleaning effect can be enhanced.

[0061] The spray angle of the water spray hole ranges from 20° to 40°, which can ensure that the water flow can fully cover the inner wall of the wine glass, and will not cause water waste due to too large angle. By precisely controlling the spray angle, the distribution of the water flow can be further optimized, so that the washing water can be more evenly distributed on the inner wall of the wine glass, reducing waste.

[0062] The hole diameter of the water spray hole is set to 1mm-2mm, which can ensure that the water flow has enough pressure to wash the stains, and will not cause the water flow to be too dispersed due to too large hole diameter, affecting the cleaning effect. By precisely controlling the hole size, it can be ensured that each nozzle 41 can work in the best state, improving the cleaning efficiency.

[0063] Preferably, the spray washing assembly 4 is provided with three groups, and the three groups of spray washing assemblies 4 are arranged in order from front to back. By providing three groups of spray washing assemblies 4, the same cup holder 3 is washed three times, further improving the cleaning cleanliness of the wine glass.

[0064] Further, the rotating assembly 2 comprises a chain track 21, a driving roller 22, not less than two driven rollers 23 and a driver;

[0065] The driving roller 22 and one of the driven rollers 23 are arranged in the same plane, and the other driven roller 23 is arranged below the driving roller 22. The chain track 21 is arranged outside the driving roller 22 and the driven roller 23. The driver is used to drive the driving roller 22 to rotate.

[0066] The cup holder 3 is installed on the outside of the chain track 21.

[0067] The rotating assembly 2 is designed with a chain track 21, a driving roller 22, not less than two driven rollers 23 and a driver. This structure ensures that the rotating assembly 2 can run smoothly and avoid the shaking or jamming phenomenon that may occur in traditional designs. The cooperation between the driving roller 22 and the driven roller 23 enables the chain track 21 to move smoothly and circulate, thereby improving the running stability and reliability of the entire cleaning device.

[0068] Further, the driving roller 22 and one of the driven rollers 23 are arranged in the same plane, and the other driven roller 23 is arranged below the driving roller 22. This design not only optimizes the spatial layout of the rotating assembly 2, making it more compact, but also improves the space utilization. In this way, more cup holders 3 can be installed in the same space, thereby improving the production capacity of the cleaning device. The driver is used to drive the driving roller 22 to rotate, thereby driving the entire chain track 21 and the cup holders 3 installed on the outside to move. This design simplifies the driving structure and reduces energy consumption. Compared with traditional complex driving systems, this design is more efficient and energy-saving, which meets the development trend of modern industrial equipment.

[0069] Specifically, the driven rollers 23 can be multiple, which are arranged according to the specific design requirements of the cleaning device to ensure that the chain track 21 can smoothly run between different cleaning stations. The drive can be optimized according to the margin adjustment range, response speed and other characteristics, so that the entire drive system has higher reliability.

[0070] Further, the driving roller 22 includes two driving sprockets 221 and a main connecting shaft 222, and the two driving sprockets 221 are arranged at two ends of the main connecting shaft 222.

[0071] The driven roller 23 includes two driven sprockets 231 and a driven connecting shaft 232, and the two driven sprockets 231 are arranged at two ends of the driven connecting shaft 232.

[0072] The chain track 21 includes two chains, and the two driving sprockets 221 and the two driven sprockets 231 are respectively meshed with the two chains.

[0073] The drive is a pneumatic cylinder, which is used to drive the forward overturning of one of the driving sprockets 221.

[0074] The design of the driving roller 22 and the driven roller 23 ensures the stable connection and operation of the chain track 21. The main connecting shaft 222 and the driven connecting shaft 232 respectively connect the two sprockets, so that the sprockets are evenly distributed at both ends of the shaft, ensuring the balance and stability of the entire device. The chain track 21 is composed of two chains and is meshed with the driving sprockets 221 and the driven sprockets 231, which ensures that the chain track 21 does not derail during operation and can effectively transmit power. The use of the pneumatic cylinder drive improves the automation level of the cleaning process. By controlling the extension and retraction of the pneumatic cylinder, the start and stop of the chain track 21 can be easily realized, thereby controlling the time when the cup holder 3 and the wine glasses 9 on it enter and leave the cleaning area. This design not only improves the cleaning efficiency, but also reduces the labor intensity of the operator.

[0075] It is worth noting that the pneumatic cylinder is only used to drive the forward overturning of the driving sprocket 221 when it is extended. When the driving sprocket 221 is overturned forward and drives the chain to move one step, the driving end of the pneumatic cylinder retracts, which does not affect the driving sprocket 221, ensuring that the driving sprocket 221 (rotating assembly 2) only overturns forward.

[0076] Further, the cup holder 3 includes two vertical supports 31, a bottom plate 32 and a top plate 33.

[0077] The top plate 33 is arranged above the bottom plate 32, and the top plate 33 and the bottom plate 32 are parallel to each other. The two vertical supports 31 are respectively arranged on both sides of the top plate 33 and the bottom plate 32, and the two vertical supports 31 are respectively connected to the two chains.

[0078] The top layer plate 33 is provided with a plurality of top openings 331, and the bottom layer plate 32 is provided with a plurality of bottom openings 321, the top openings 331 and the bottom openings 321 correspond one by one, and the aperture of the bottom openings 321 is smaller than the aperture of the top openings 331.

[0079] The vertical supports 31 connect the top layer plate 33 and the bottom layer plate 32, ensuring the overall stability of the cup holder 3. The design of the openings on the top layer plate 33 and the bottom layer plate 32 allows the wine glass 9 to be placed vertically and fixed in the accommodation cavity 30, and the cooperation of the top openings 331 and the bottom openings 321 can effectively prevent the wine glass 9 from tilting or falling during cleaning. This structural design not only ensures the stable placement of the wine glass 9, but also allows the nozzle 41 to accurately aim at the wine glass 9 for all-around cleaning.

[0080] In the entire cleaning device, the design of the cup holder 3 is crucial. The two vertical supports 31 provide the necessary vertical support, while the parallel arrangement of the top layer plate 33 and the bottom layer plate 32 ensures lateral stability. The top openings 331 on the top layer plate 33 and the bottom openings 321 on the bottom layer plate 32 form a structure that can accommodate the wine glass and prevent it from moving by changing the aperture size. Specifically, the diameter of the top openings 331 is larger than the diameter of the bottom openings 321, which can ensure that the body of the wine glass 9 can be smoothly inserted, while the opening of the wine glass 9 is limited by the bottom openings 321, thereby increasing the stability of the wine glass during cleaning.

[0081] Further, a ring-shaped enclosure is provided between the top openings 331 and the bottom openings 321, and the inner wall of the ring-shaped enclosure is provided with a plurality of ribs in the vertical direction.

[0082] The role of the ring-shaped enclosure is to provide a closed area to limit the shaking of the wine glass 9 during cleaning, thereby improving stability. The plurality of ribs arranged in the vertical direction can further enhance the fixing effect of the wine glass, preventing the wine glass 9 from shifting or tilting during rotation and spray cleaning. This effectively solves the stability problem of the wine glass 9 during cleaning, ensuring that the wine glass 9 remains in the predetermined position during cleaning, thereby improving the cleaning effect and efficiency.

[0083] In the specific implementation, the ring-shaped enclosure can adopt a variety of different structural forms. For example, the material of the enclosure can be selected as a corrosion-resistant plastic material to ensure that it is not eroded by detergents during long-term use. In addition, the design of the ribs can also have multiple variations, in addition to being arranged in the vertical direction, a variety of arrangement forms such as spiral and grid can be adopted on the inner wall according to the shape and size of the wine glass, in order to achieve better fixing effect. In order to enhance the practicability, the shape and height of the ribs should also be adjusted and optimized according to different types of wine glasses and cleaning requirements.

[0084] The utility model discloses an innovation lies in, through the annular enclosure and vertical direction's convex rib of adding in the wine cup placement area, successfully solve the problem that wine cup is easy to shake in the cleaning process. This design improves the fixed effect and cleaning stability of wine cup greatly. Compared with prior art, the design provided by the utility model not only simplifies structure, but also improves the effect and efficiency of cleaning, significantly reduces the cleaning dead angle and incomplete cleaning situation caused by wine cup shaking, guarantees the stability and safety of every wine cup in the cleaning process.

[0085] Further, the shell 1 is provided with a cup placing station 11 and a cup unloading station 12, the cup placing station 11 is arranged at the rear side of the shell 1, and the cup unloading station 12 is arranged at the front side of the shell 1.

[0086] The rotating assembly 2 drives a plurality of the cup holders 3 to sequentially pass through the cup placing station 11, the spray cleaning assembly 4 and the cup unloading station 12 from rear to front.

[0087] In order to ensure that the wine cup can orderly complete the placing, cleaning and unloading process in the cleaning device, the rear side and the front side of the shell 1 of the utility model are further respectively provided with the cup placing station 11 and the cup unloading station 12. A plurality of cup holders 3 are driven by the rotating assembly 2 to sequentially pass through these stations, so that the wine cup 9 enters the cleaning device from the cup placing station 11, is cleaned by the spray cleaning assembly 4, and is finally unloaded at the cup unloading station 12. This design makes the wine cup cleaning process more automatic and efficient, and improves the cleaning efficiency and effect.

[0088] In actual operation, the staff places the wine cup 9 to be cleaned into the containing cavity 30 of the cup holder 3 passing through the cup placing station 11 one by one at the rear side of the device, and then the cleaning device drives a plurality of cup holders 3 to sequentially pass through the intermediate spray cleaning assembly 4 by the rotating assembly 2. The wine cup 9 on the cup holder 3 is accurately cleaned by the fixed nozzle 41, and finally the cleaned wine cup 9 (cup holder 3) is automatically unloaded at the cup unloading station 12 at the front side. This setting not only ensures that the wine cup can smoothly pass through each cleaning process, improves the compactness of the device, but also improves the operation convenience and efficiency of the device.

[0089] Further, the utility model still includes a cup receiver 5, and the cup receiver 5 is arranged at the cup unloading station 12.

[0090] The cup receiver 5 is used for receiving the wine cup 9 unloaded at the cup unloading station 12.

[0091] The cup receiver 5 is arranged to effectively receive the wine cup 9 unloaded from the cup unloading station 12, so as to realize the automatic unloading function of the wine cup cleaning device. With the assistance of the cup receiver 5, the staff does not need to manually take out the cleaned wine cup, reduces the complexity and labor intensity of operation, and improves the cleaning efficiency and overall use convenience.

[0092] Further, the cup receiver 5 comprises an L-shaped plate 51, a hinged shaft 52 and a turnover driver;

[0093] The hinged shaft 52 is arranged at the rear side of the L-shaped plate 51, and the turnover driver is used to drive the L-shaped plate 51 to turn over around the hinged shaft 52.

[0094] In order to ensure that the wine cup 9 unloaded by the cup unloading station 12 can be stably received and processed, the L-shaped plate 51 in the cup receiver 5 of the utility model provides a stable platform for receiving the wine cup. The design of the L-shaped plate 51 enables the wine cup to be stably placed thereon, thereby avoiding the risk of the wine cup 9 being tilted or slipped during the receiving process. Through the hinged shaft 52, the L-shaped plate 51 can be turned over by a certain angle, and such a design enables the wine cup 9 to be transferred to other stations or containers after being received by means of turnover. The turnover driver acts on the hinged shaft 52 to control the turnover action of the L-shaped plate 51, so that the wine cup 9 can be smoothly received and then processed. This achieves the purpose of stably receiving and processing the wine cup unloaded by the cup unloading station 12, and ensures the smooth and undamaged flow of the wine cup 9 in the cleaning device.

[0095] The technical principle of the utility model is described above in combination with specific embodiments. These descriptions are only for explaining the principle of the utility model, and cannot be interpreted as limiting the protection scope of the utility model in any way. Based on the explanation herein, other specific embodiments of the utility model can be conceived by those skilled in the art without creative labor, and these embodiments will all fall within the protection scope of the utility model.

Claims

1. A wine glass cleaning device, characterized in that: The invention comprises a housing, a rotating assembly, a plurality of cup holders and a plurality of spraying assemblies, wherein the rotating assembly, the cup holders and the spraying assemblies are arranged inside the housing; The rotating assembly is arranged in two layers, end to end, with a plurality of cup holders arranged in sequence on the outside of the rotating assembly, and a plurality of groups of spraying assemblies arranged inside the rotating assembly; The cup holder is provided with a plurality of accommodating cavities for placing wine glasses. The spray assembly is provided with a plurality of nozzles, which are arranged vertically upward and correspond one to one with the accommodating cavities. The rotating assembly drives the cup holder to pass through the spray assembly.

2. The wine glass cleaning device according to claim 1, characterized in that: The spray cleaning assembly is fixedly arranged inside the rotating assembly, and the spray cleaning assembly includes a water receiving pipe section, a water supply pipe section and a plurality of the nozzles; One end of the water receiving pipe section is connected to the water source, and the other end of the water receiving pipe section is connected to the water supply pipe section. The water supply pipe section is arranged parallel to the length direction of any cup holder, and several nozzles are arranged at intervals along the extension direction of the water supply pipe section.

3. The wine glass cleaning device according to claim 2, characterized in that: The vertical cross-section of the water spray hole of the nozzle is an inverted triangle; The spray angle α of the water spray hole ranges from 20° to 40°; The aperture D of the water spray hole ranges from 1 mm to 2 mm.

4. The wine glass cleaning device according to claim 1, characterized in that: The rotating assembly includes a chain track, a driving roller, no less than two driven rollers and a driver; The active roller and one of the driven rollers are arranged parallel to each other on the same plane, the other driven roller is arranged below the active roller, the chain track is wound around the outside of the active roller and the driven roller, and the driver is used to drive the active roller to rotate; The cup holder is installed on the outer side of the chain track.

5. The wine glass cleaning device according to claim 4, characterized in that: The active roller includes two active sprockets and a main connecting shaft, and the two active sprockets are respectively arranged at both ends of the main connecting shaft; The driven roller includes two driven sprockets and a slave connecting shaft, and the two driven sprockets are respectively arranged at both ends of the slave connecting shaft; The chain crawler comprises two chains, and the two driving sprockets and the two driven sprockets are respectively engaged with the two chains; The driver is a cylinder, and the cylinder is used to drive the driving sprocket to flip forward.

6. The wine glass cleaning device according to claim 5, characterized in that: The cup holder includes two vertical brackets, a bottom plate and a top plate; The top plate is arranged above the bottom plate, the top plate and the bottom plate are parallel to each other, the two vertical brackets are respectively arranged on both sides of the top plate and the bottom plate, and the two vertical brackets are respectively connected to the two chains; The top plate is provided with a plurality of top openings, and the bottom plate is provided with a plurality of bottom openings, the top openings correspond to the bottom openings one by one, and the aperture of the bottom openings is smaller than the aperture of the top openings.

7. The wine glass cleaning device according to claim 6, characterized in that: An annular enclosure is provided between the top opening and the bottom opening, and an inner wall of the annular enclosure is provided with a plurality of ribs along the vertical direction.

8. The wine glass cleaning device according to any one of claims 1 to 7, characterized in that: The shell is provided with a cup placing station and a cup unloading station, the cup placing station is provided at the rear side of the shell, and the cup unloading station is provided at the front side of the shell; The rotating assembly drives the plurality of cup racks to sequentially pass through the cup placing station, the spray cleaning assembly and the cup unloading station from the back to the front.

9. The wine glass cleaning device according to claim 8, characterized in that: It also includes a cup receiver, which is arranged at the cup unloading station; The cup receiver is used to receive the wine glasses unloaded at the cup unloading station.

10. The wine glass cleaning device according to claim 9, characterized in that: The cup receiver includes an L-shaped plate, a hinge shaft and a flip driver; The hinge shaft is arranged on the rear side of the L-shaped plate, and the flip driver is used to drive the L-shaped plate to flip around the hinge shaft.