Frozen beverage dispenser having feeding-assembly mounting structure

By attaching screws to the rear end of the freezing cylinder to install the feeding assembly, the problems of residual beverage ingredients and difficult cleaning caused by welding gaps in traditional beverage machines are solved, ensuring the ease of cleaning and service life of the freezing cylinder.

WO2026052159A1PCT designated stage Publication Date: 2026-03-12GUANGZHOU XINAN TRADING CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-03-12

AI Technical Summary

Technical Problem

The welding installation method of the feeding component and the freezing cylinder in traditional cold drink machines results in welding gaps, causing cold drink ingredients to remain and making cleaning difficult. It may also damage the freezing cylinder and reduce its service life.

Method used

The feeding assembly is installed by attaching screws to the rear end of the freezing cylinder, avoiding the need to weld the screw holes. This ensures a stable connection between the feeding assembly and the freezing cylinder, making cleaning convenient and preventing damage to the freezing cylinder.

Benefits of technology

It achieves thorough cleaning of the freezing cylinder, improves the hygiene quality of frozen products, and extends the service life of the freezing cylinder.

✦ Generated by Eureka AI based on patent content.
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Abstract

Disclosed in the present utility model is a frozen beverage dispenser having a feeding-assembly mounting structure. The frozen beverage dispenser comprises a housing, a feeding assembly, a discharge assembly, a freezing cylinder, a feeding-assembly mounting structure, a driver, a driver mounting bracket, a stirrer, and a refrigeration assembly. The feeding-assembly mounting structure comprises a threaded piece. The freezing cylinder is arranged in a front-rear direction, and the threaded piece is bonded to the rear end of the freezing cylinder. The feeding assembly is mounted on the threaded piece. The discharge assembly is detachably mounted on the front end of the freezing cylinder. The driver mounting bracket is disposed on the feeding assembly, the driver is mounted on the driver mounting bracket, and the stirrer is mounted on a driving end of the driver. The solution solves the following problem in a conventional method for mounting a feeding assembly onto a freezing cylinder, where protruding threaded holes are generally welded to the rear end of the freezing cylinder and the feeding assembly is fastened to the protruding threaded holes: welding the threaded holes to the rear end of the freezing cylinder results in weld gaps on the freezing cylinder, such that a frozen beverage material remains trapped in the weld gaps, and therefore the freezing cylinder cannot be thoroughly cleaned.
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Description

Cold drink machine with feed assembly mounting structure TECHNICAL FIELD

[0001] The utility model relates to cold drink machine technical field, specifically a kind of cold drink machine with feed assembly mounting structure. BACKGROUND

[0002] Cold drink machine, generally including ice blender or ice cream, is used to make ice slush or ice cream and other dessert finished product, in traditional cold drink machine is provided with freezing cylinder and feed assembly, feed assembly is installed on freezing cylinder, cold drink raw materials are sent into the inside of freezing cylinder by feed assembly and carry out cold finished product production. The installation mode of feed assembly and freezing cylinder is usually welding protruding screw hole in the rear end of freezing cylinder, then the feed assembly is locked with protruding screw hole to make feed assembly complete assembly with freezing cylinder, however, welding screw hole in the rear end of freezing cylinder can cause welding gap in freezing cylinder, cause cold drink raw materials to remain in welding gap, in turn cause subsequent staff to be unable to clean freezing cylinder thoroughly, while welding screw hole can cause damage to freezing cylinder, cause loss to increase, thereby reduce the service life of freezing cylinder.

[0003] SUMMARY

[0004] In view of the above defects, the utility model provides a kind of cold drink machine with feed assembly mounting structure, to solve the installation mode of feed assembly and freezing cylinder in traditional cold drink machine, usually welding protruding screw hole in the rear end of freezing cylinder, and feed assembly is locked with protruding screw hole, but welding screw hole in the rear end of freezing cylinder makes freezing cylinder exist welding gap, cause cold drink raw materials to remain in welding gap, in turn cause to be unable to realize the thorough cleaning of freezing cylinder, while welding screw hole can cause damage to freezing cylinder, make the service life of freezing cylinder reduce.

[0005] To achieve this purpose, the utility model adopts the following technical solutions:

[0006] A kind of cold drink machine with feed assembly mounting structure, including casing, feed assembly, discharge assembly, freezing cylinder, feed assembly mounting structure, driver, driver mounting frame, agitator and refrigeration assembly, the feed assembly mounting structure includes screw piece;

[0007] The feeding assembly, the freezing cylinder, the feeding assembly mounting structure, the driver, the driver mounting rack, the stirrer and the refrigeration assembly are arranged in the cabinet, and the discharging assembly is arranged outside the cabinet; the freezing cylinder is arranged in the front-rear direction, the blade is attached to the rear end of the freezing cylinder, the feeding assembly is mounted on the blade, and the feeding assembly is used to feed cold raw materials into the freezing cylinder; the discharging assembly is detachably mounted on the front end of the freezing cylinder, and the discharging assembly is used to discharge the cold finished product outside the freezing cylinder; the driver mounting rack is arranged on the feeding assembly, the driver is mounted on the driver mounting rack, the stirrer is mounted on the driving end of the driver, the stirrer is located in the freezing cylinder, and the refrigeration assembly is used to reduce the temperature in the freezing cylinder to the required cold finished product manufacturing temperature.

[0008] Preferably, a plurality of screws are further included, the feeding assembly comprises a first mounting rack; and the first mounting rack is mounted on the blade through the plurality of screws.

[0009] Preferably, the blade is provided with a plurality of first screw holes, the first mounting rack is provided with a plurality of second screw holes, and the first screw holes and the second screw holes correspond to each other in one-to-one manner.

[0010] Preferably, the freezing cylinder is integrally formed.

[0011] Preferably, the feeding assembly further comprises a conveying pipe and a first sealing ring, the rear end of the freezing cylinder is provided with a first opening, the top of the cabinet is provided with a feeding port, the conveying pipe comprises an input end and an output end; the first sealing ring is arranged in the first opening, the conveying pipe is fixed to the first mounting rack, the input end of the conveying pipe is communicated with the feeding port, and the output end of the conveying pipe is communicated with the first opening.

[0012] Preferably, the feeding assembly further comprises a second sealing ring, and the rear end of the freezing cylinder is further provided with a second opening; the second sealing ring is arranged in the second opening, the driver mounting rack is mounted on the first mounting rack, and the driving end of the driver penetrates through the second opening.

[0013] Preferably, the discharging assembly comprises a discharging disc, a second mounting rack, an operating handle, a rotating shaft, a linkage arm, a torsional spring and a stop block, the front end of the freezing cylinder is provided with a third opening, the front side of the cabinet is provided with a first discharging port, the discharging disc is provided with a second discharging port;

[0014] The third opening is communicated with the first discharge port, the discharge disc is arranged on the first discharge port, the second mounting frame is mounted on the discharge disc, the operating handle is swingably mounted on the second mounting frame through the rotating shaft, one end of the torsion spring is connected to the rotating shaft, the other end of the torsion spring is connected to the stop block, one end of the linkage arm is connected to the operating handle, and the other end of the linkage arm is connected with the stop block.

[0015] When the operating handle swings upward, the stop block can shield the second discharge port; when the operating handle swings downward, the stop block can move away the second discharge port.

[0016] The technical scheme provided by the utility model can have the following beneficial effects:

[0017] In the scheme, the screw piece is pasted on the rear end of the freezing cylinder, and the feeding assembly is mounted on the screw piece, so that the feeding assembly is mounted on the freezing cylinder. Compared with the traditional mounting mode of the feeding assembly and the freezing cylinder, the scheme does not need to weld screw holes on the surface of the freezing cylinder, but adopts the screw piece pasted on the rear end of the freezing cylinder, so that the welding gap of the freezing cylinder is avoided, the cold drink raw materials are hidden in the welding gap, and the freezing cylinder can be directly washed in the subsequent cleaning, so that the staff can clean the freezing cylinder thoroughly, and the sanitary quality of the cold product is ensured. In addition, the freezing cylinder is not damaged, so that the service life of the freezing cylinder is increased. BRIEF DESCRIPTION OF DRAWINGS

[0018] Fig. 1 is a partial structure schematic view of a cold drink machine with a feeding assembly mounting structure;

[0019] Fig. 2 is an explosion schematic view of one of the embodiments in the utility model;

[0020] Fig. 3 is an explosion schematic view of one of the embodiments in the utility model;

[0021] Fig. 4 is an explosion schematic view of one of the embodiments in the utility model;

[0022] Fig. 5 is an explosion schematic view of one of the embodiments in the utility model.

[0023] Wherein, 1, the shell; 2, feed assembly; 3, discharge assembly; 4, freezing cylinder; 5, feed assembly mounting structure; 6, driver; 7, driver mounting bracket; 8, stirrer; 11, feed inlet; 12, first discharge port; 21, first mounting bracket; 22, conveying pipe; 23, first sealing ring; 24, second sealing ring; 31, discharge disc; 32, second mounting bracket; 33, operating handle; 34, rotating shaft; 35, linkage arm; 36, torsional spring; 37, stop block; 41, first opening; 42, second opening; 43, third opening; 50, spiral blade; 210, second screw hole; 221, input end of conveying pipe; 222, output end of conveying pipe; 310, second discharge port; 500, first screw hole. DETAILED DESCRIPTION

[0024] The technical scheme of the present application will be further described below in conjunction with the drawings and through specific embodiments. In the description of the present application, it should be understood that the terms "length", "middle", "upper", "lower", "left", "right", "top", "bottom" and the like indicate 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 do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0025] In addition, the terms "first" and "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0026] In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounting", "splicing", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium; it can be the communication between 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.

[0027] A cold drink machine with a feed assembly mounting structure, comprising a shell 1, a feed assembly 2, a discharge assembly 3, a freezing cylinder 4, a feed assembly mounting structure 5, a driver 6, a driver mounting bracket 7, a stirrer 8 and a refrigeration assembly (not marked in the figure), the feed assembly mounting structure 5 comprises a spiral blade 50;

[0028] The feeding assembly 2, the freezing cylinder 4, the feeding assembly mounting structure 5, the driver 6, the driver mounting rack 7, the stirrer 8 and the refrigeration assembly are arranged in the cabinet 1, and the discharging assembly 3 is arranged outside the cabinet 1; the freezing cylinder 4 is arranged in the front-rear direction, the screw blade 50 is attached to the rear end of the freezing cylinder 4, the feeding assembly 2 is mounted on the screw blade 50, and the feeding assembly 2 is used to feed cold beverage raw materials into the freezing cylinder 4; the discharging assembly 3 is detachably mounted on the front end of the freezing cylinder 4, and the discharging assembly 3 is used to discharge the cold product outside the freezing cylinder 4; the driver mounting rack 7 is arranged on the feeding assembly 2, the driver 6 is mounted on the driver mounting rack 7, the stirrer 8 is mounted on the driving end of the driver 6, the stirrer 8 is located in the freezing cylinder 4, and the refrigeration assembly is used to reduce the temperature in the freezing cylinder 4 to the required cold product manufacturing temperature.

[0029] In the embodiment, the cold beverage machine is an ice cream machine or a smoothie machine. As shown in FIGS. 1-3, when cold beverage is needed to be made, the maker first feeds cold beverage raw materials into the freezing cylinder 4 through the feeding assembly 2, and then starts the driver 6, which is a motor in the embodiment. The driver 6 drives the stirrer 8 to rotate, and at the same time, the temperature in the freezing cylinder 4 is reduced to the required cold product manufacturing temperature under the action of the refrigeration assembly. The rotation of the stirrer 8 ensures that the cold beverage raw materials in the freezing cylinder 4 are fully mixed and uniformly cooled, and form a cold product. Finally, the cold product is discharged outside the freezing cylinder 4 through the discharging assembly 3. Further, the arrangement of the driver mounting rack 7 is conducive to the installation and fixation of the driver 6. The refrigeration assembly is a prior art structure, and the reduction of the temperature in the freezing cylinder 4 is achieved by the circulation of refrigerant in the refrigeration assembly.

[0030] In the embodiment, the screw blade 50 is attached to the rear end of the freezing cylinder 4, and the feeding assembly 2 is mounted on the screw blade 50, so that the feeding assembly 2 and the freezing cylinder 4 are mounted. Compared with the traditional mounting mode of the feeding assembly and the freezing cylinder, the screw blade 50 is attached to the rear end of the freezing cylinder 4, so that the welding gap of the freezing cylinder 4 is avoided, and cold beverage raw materials are prevented from hiding in the welding gap. Subsequent water washing of the freezing cylinder 4 is facilitated, the staff is facilitated to completely clean the freezing cylinder, and the sanitary quality of the cold product is ensured. In addition, the freezing cylinder is not damaged, so that the service life of the freezing cylinder is increased.

[0031] Preferably, a plurality of screws (not shown in the figure) are further included, the feeding assembly 2 comprises a first mounting frame 21, and the first mounting frame 21 is mounted on the fin 50 through the plurality of screws.

[0032] Preferably, the fin 50 is provided with a plurality of first screw holes 500, the first mounting frame 21 is provided with a plurality of second screw holes 210, and the first screw holes 500 and the second screw holes 210 correspond to each other. In the embodiment, as shown in FIG. 3, the first screw holes 500 and the second screw holes 210 are both provided with five, and since the first screw holes 500 and the second screw holes 210 correspond to each other, each screw is precisely threaded through the corresponding first screw hole 500 and the second screw hole 210, so that the installation of the feeding assembly 2 and the freezing cylinder 4 is more stable.

[0033] Preferably, the freezing cylinder 4 is integrally formed. In the embodiment, since the freezing cylinder 4 is integrally formed, compared with the traditional freezing cylinder which is made by welding a plurality of parts, the integrally formed freezing cylinder 4 can avoid the situation that the welding gap is left on the surface of the freezing cylinder due to welding, so that the cold drink raw materials are left in the welding gap, and further facilitates the thorough cleaning of the freezing cylinder 4 in the subsequent cleaning.

[0034] Preferably, the feeding assembly 2 further comprises a conveying pipe 22 and a first sealing ring 23, the rear end of the freezing cylinder 4 is provided with a first opening 41, the top of the cabinet 1 is provided with a feeding port 11, and the conveying pipe 22 comprises an input end 221 and an output end 222.

[0035] The first sealing ring 23 is arranged on the first opening 41, the conveying pipe 22 is fixed on the first mounting frame 21, the input end 221 of the conveying pipe 22 is communicated with the feeding port 11, and the output end 222 of the conveying pipe 22 is communicated with the first opening 41.

[0036] In the embodiment, as shown in FIGS. 1, 3 and 4, the arrangement of the first sealing ring 23 can ensure the sealing property of the first opening 41, so as to prevent the cold drink raw materials from leaking to the outside of the freezing cylinder 4 or the external impurities from entering the inside of the freezing cylinder 4. The arrangement of the first mounting frame 21 plays a supporting and fixing role on the conveying pipe 22, so that the conveying pipe 22 can be stably mounted on the freezing cylinder 4. Further, the arrangement of the conveying pipe 31 can convey the cold drink raw materials from the feeding port 11 to the freezing cylinder 4.

[0037] Preferably, the feeding assembly 2 further comprises a second sealing ring 24, and the rear end of the freezing cylinder 4 is provided with a second opening 42; the second sealing ring 24 is arranged in the second opening 42, the driver mounting rack 7 is mounted on the first mounting rack 21, and the driving end of the driver 6 penetrates through the second opening 42. In this embodiment, as shown in FIG. 3, the arrangement of the second sealing ring 24 can ensure the sealing of the connection between the driving end of the driver 6 and the freezing cylinder 4, thereby preventing the leakage of cold beverage raw materials. Further, since the driver mounting rack 7 is mounted on the first mounting rack 21, the arrangement of the first mounting rack 21 also supports the driver mounting rack 5.

[0038] Preferably, the discharging assembly 3 comprises a discharging disc 31, a second mounting rack 32, an operating handle 33, a rotating shaft 34, a linkage arm 35, a torsional spring 36 and a stop block 37, the front end of the freezing cylinder 4 is provided with a third opening 43, the front side of the casing 1 is provided with a first discharging port 12, and the discharging disc 31 is provided with a second discharging port 310; the third opening 43 is in communication with the first discharging port 12, the discharging disc 31 is arranged in the first discharging port 12, the second mounting rack 32 is mounted on the discharging disc 31, the operating handle 33 is swingably mounted on the second mounting rack 32 through the rotating shaft 34, one end of the torsional spring 36 is connected to the rotating shaft 34, the other end of the torsional spring 36 is connected to the stop block 37, one end of the linkage arm 35 is connected to the operating handle 33, and the other end of the linkage arm 35 is connected with the stop block 37.

[0039] When the operating handle 33 swings upward, the stop block 37 can block the second discharging port 310; when the operating handle 33 swings downward, the stop block 37 can move away from the second discharging port 310.

[0040] In this embodiment, as shown in FIGS. 2, 4 and 5, since the discharging disc 31 is arranged in the first discharging port 12, the arrangement of the discharging disc 31 can ensure the sealing of the freezing cylinder 4. In the initial state, the stop block 37 completely blocks the second discharging port 310, when it is necessary to extrude cold products, the operating handle 43 can be swung downward, thereby driving the linkage arm 35 to move upward, at the same time, the elastic force of the torsional spring 36 can be provided, thereby driving the stop block 37 to move upward, so that the stop block 37 moves away from the second discharging port 310, at the same time, the driver 6 is started, the driver 6 drives the stirrer 8 to stir the cold beverage raw materials in the freezing cylinder 4, in the process of stirring the cold beverage raw materials by the stirrer 8, the stirrer 8 can push the cold beverage raw materials to move in the direction of the second discharging port 310 of the discharging disc 31, so that the finally formed cold products can come out from the second discharging port 310.

[0041] The technical principles of the present application are described above in combination with specific embodiments. These descriptions are only for explaining the principles of the present application, and cannot be interpreted as limiting the protection scope of the present application in any way. Based on the explanations herein, other specific embodiments of the present application can be conceived by those skilled in the art without creative efforts, and these embodiments will all fall within the protection scope of the present application.

Claims

1. A cold beverage machine having a feed assembly mounting structure, characterized by: The application relates to a cold drink machine, which comprises a machine shell, a feeding assembly, a discharging assembly, a freezing cylinder, a feeding assembly mounting structure, a driver, a driver mounting rack, a stirrer and a refrigeration assembly, wherein the feeding assembly mounting structure comprises a screw blade. The feeding assembly, the freezing cylinder, the feeding assembly mounting structure, the driver, the driver mounting rack, the stirrer and the refrigeration assembly are arranged in the machine shell, and the discharging assembly is arranged outside the machine shell; the freezing cylinder is arranged in the front-back direction, the screw blade is attached to the rear end of the freezing cylinder, the feeding assembly is mounted on the screw blade, and the feeding assembly is used for feeding cold drink raw materials into the freezing cylinder; the discharging assembly is detachably mounted on the front end of the freezing cylinder, and the discharging assembly is used for discharging cold products outside the freezing cylinder; the driver mounting rack is arranged on the feeding assembly, the driver is mounted on the driver mounting rack, the stirrer is mounted on the driving end of the driver, the stirrer is arranged in the freezing cylinder, and the refrigeration assembly is used for reducing the temperature in the freezing cylinder to a required cold product manufacturing temperature.

2. The cold beverage machine having a feed assembly mounting structure according to claim 1, characterized in that: The application further comprises a plurality of screws, the feeding assembly comprises a first mounting rack, and the first mounting rack is mounted on the screw blade through the plurality of screws.

3. The cold beverage machine having a feed assembly mounting structure according to claim 2, characterized in that: The screw blade is provided with a plurality of first screw holes, the first mounting rack is provided with a plurality of second screw holes, and the first screw holes and the second screw holes are in one-to-one correspondence.

4. The cold beverage machine having a feed assembly mounting structure according to claim 1, characterized in that: The freezing cylinder is integrally formed.

5. The cold beverage machine having a feed assembly mounting structure according to claim 2, characterized in that: The feeding assembly further comprises a conveying pipe and a first sealing ring, the rear end of the freezing cylinder is provided with a first opening, the top of the machine shell is provided with a feeding port, and the conveying pipe comprises an input end and an output end. The first sealing ring is arranged on the first opening, the conveying pipe is fixed on the first mounting rack, the input end of the conveying pipe is communicated with the feeding port, and the output end of the conveying pipe is communicated with the first opening.

6. The cold beverage machine having a feed assembly mounting structure according to claim 5, characterized in that: The feeding assembly further comprises a second sealing ring, the rear end of the freezing cylinder is further provided with a second opening, the second sealing ring is arranged on the second opening, the driver mounting rack is mounted on the first mounting rack, and the driving end of the driver penetrates through the second opening.

7. The cold beverage machine having a feed assembly mounting structure according to claim 1, characterized in that: The discharging assembly comprises a discharging disc, a second mounting rack, an operating handle, a rotating shaft, a linkage arm, a torsional spring and a stop block, the front end of the freezing cylinder is provided with a third opening, the front side of the machine shell is provided with a first discharging port, and the discharging disc is provided with a second discharging port. The third opening is communicated with the first discharging port, the discharging disc is arranged on the first discharging port, the second mounting rack is mounted on the discharging disc, the operating handle is swingably mounted on the second mounting rack through the rotating shaft, one end of the torsional spring is connected to the rotating shaft, the other end of the torsional spring is connected to the stop block, one end of the linkage arm is connected to the operating handle, and the other end of the linkage arm is connected with the stop block. When the operating handle swings upwards, the stop block can shield the second discharging port; when the operating handle swings downwards, the stop block can move away the second discharging port.

Citation Information

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