Cold drink processing equipment

By setting up a push piece and water connection assembly at the crimping output end of the cold drink processing equipment, the problem of difficulty in completely ejecting the material in the cylinder and difficulty in collecting condensate water is solved, the complete ejection of the material and the timely discharge of water are achieved, and the service life and appearance of the equipment are improved.

CN223169089UActive Publication Date: 2025-08-01NINGBO COMMA ELECTRICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422336810.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-25
Publication Date
2025-08-01
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

In existing cold drink processing equipment, it is difficult to completely unload the material in the cylinder, resulting in accumulated material and difficult to effectively collect and discharge condensate water, affecting the life and appearance of the equipment.

Method used

The pushing piece and water-connecting assembly are set at the output end of the dragon. The pushing piece increases the thrust to ensure that the material is fully pushed out. The water-connecting assembly collects and discharges condensate in a timely manner.

Benefits of technology

The complete introduction of the internal material of the cylinder is achieved, avoiding accumulation of materials, and timely collection and reasonable discharge of condensate water, extending the service life of the equipment and improving the appearance.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223169089U_ABST
Patent Text Reader

Abstract

The utility model relates to cold drink processing equipment which comprises a shell cavity structure, a main machine base is arranged on the lower portion in the shell cavity structure, a cylinder cover assembly is arranged on the upper portion in the shell cavity structure, a stirring device is arranged between the main machine base and the cylinder cover assembly, a refrigerating device is arranged in the main machine base, and the stirring device comprises a cylinder body capable of guiding materials. An auger is arranged in the cylinder body, a pushing structure is formed at the front part of the cylinder body, the output end of the cylinder body is connected with a discharging valve in a matching manner, a water receiving assembly capable of collecting water and draining water is arranged under the discharging valve, and the pushing structure is formed at the front part of the cylinder body, so that the pushing force is effectively increased during stirring, and materials in the cylinder body can be completely pushed out; and in addition, condensate water can be effectively collected in time and reasonably discharged through the water receiving assembly.
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Description

Technical Field

[0001] The utility model relates to the technical field of cold drink equipment, in particular to a cold drink processing equipment. Background Art

[0002] Cold drink processing equipment generally includes ice cream machines, snow melt machines, etc. It usually stirs the materials in the cylinder body by means of a transmission shaft, so that during the stirring and mixing process of the slurry in the cylinder body, it is conveyed from the rear end to the front end in the cylinder body, so that the cold drink ejected from the nozzle of the ice cream machine has a better taste.

[0003] However, in the prior art, the cylinder body of the cold drink processing equipment is provided with a spiral auger, and the shape and thrust of the spiral blades of the spiral auger are constant, so that the materials at the front end cannot be completely pushed out, resulting in material accumulation and waste. In addition, when the cylinder body makes cold drinks, the condensed water generated by the cylinder body will drip, which will damage the shell. Therefore, in the prior art, it is discharged outward through an external drain pipe, but the external pipe will affect the appearance and cause inconvenience in drainage. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a cold drink processing equipment, which has the characteristics that by arranging a pusher blade at the output end of the auger, the thrust can be effectively increased, the materials in the cylinder body can be completely pushed out, there is no material accumulation in the cylinder body, and the condensed water can be effectively collected and reasonably discharged through the water receiving assembly.

[0005] In order to solve the above technical problems, the utility model is solved by the following technical solutions: a cold drink processing equipment, including a shell cavity structure, a main machine seat is arranged at the lower part inside the shell cavity structure, a cylinder head assembly is arranged at the upper part inside the shell cavity structure, a stirring device is arranged between the main machine seat and the cylinder head assembly, a refrigeration device is arranged inside the main machine seat, the stirring device includes a cylinder body capable of guiding materials, an auger is arranged inside the cylinder body, a pusher structure is formed at the front part of the cylinder body, an outlet valve is connected in a matching way at the output end of the cylinder body, and a water receiving assembly capable of collecting and draining water is arranged directly below the outlet valve.

[0006] Preferably, a transmission shaft is arranged at the center of the auger, a transmission head is arranged at the front end of the auger, the rear end of the transmission shaft is connected with a stirring motor, and an evaporator connected with the refrigeration device is sleeved outside the transmission shaft.

[0007] Further preferably, the cylinder body includes a cylindrical cavity and a feed hopper arranged on the cylindrical cavity, a guiding inclined plane is formed between the feed hopper and the cylindrical cavity, a closed section with a length greater than 30MM is formed between the bottom end of the guiding inclined plane and the material outlet hole of the cylinder body, and the guiding inclined plane forms a tangential angle of 30-90 degrees with the center line of the transmission shaft.

[0008] Further preferably, the material pushing structure includes a material pushing piece and a material pushing screw arranged at the front end of the auger. A gap of 0-2 mm is formed between the material pushing piece and the material pushing screw and the inner wall of the closed section of the cylindrical cavity.

[0009] Further preferably, the cylinder head assembly includes a cylinder head. The rear end of the cylinder head is connected to the main machine base by a shaft pin, and an operation panel is arranged at the upper end of the cylinder head.

[0010] Further preferably, the shell cavity structure further includes a left shell assembly, a right shell assembly, a front shell and a rear shell. Both the left shell assembly and the right shell assembly are composed of an inner plate, an outer plate, a window and a metal side plate. A cavity is formed between the inner plate and the outer plate, and a heat insulation material layer is filled in the cavity.

[0011] Further preferably, the water receiving assembly includes a water receiving box arranged at a concave position of the front shell. A water receiving groove is correspondingly arranged between the front shell and the rear shell and below the cylinder body. A water collecting hole is opened on the water receiving groove, a drain nozzle is arranged at the lower end of the front shell, and the water collecting hole is connected to the drain nozzle through a connecting pipe. An overflow hole is arranged at the front end of the water receiving box, and the other end of the overflow hole is provided with an overflow nozzle.

[0012] The beneficial effects of the present utility model are as follows: It includes a shell cavity structure. A main machine base is arranged at the lower part inside the shell cavity structure, a cylinder head assembly is arranged at the upper part inside the shell cavity structure, a stirring device is arranged between the main machine base and the cylinder head assembly, a refrigeration device is arranged inside the main machine base, the stirring device includes a cylinder body capable of guiding materials, an auger is arranged inside the cylinder body, a material pushing structure is formed at the front part of the cylinder body, an outlet valve is connected and matched with the output end of the cylinder body, and a water receiving assembly capable of collecting and draining water is arranged directly below the outlet valve. Through the material pushing structure formed at the front part of the cylinder body, the thrust is effectively increased during stirring, the materials in the cylinder body can be completely pushed out, so that there is no accumulated material in the cylinder body, and the condensed water can be effectively collected and reasonably drained through the water receiving assembly. Description of the Drawings

[0013] Figure 1 is a schematic structural diagram of the present utility model.

[0014] Figure 2 is an exploded structural diagram of the present utility model.

[0015] Figure 3 is an exploded structural diagram of the stirring device of the present utility model.

[0016] Figure 4 is a cross-sectional view of the stirring device of the present utility model. Detailed Embodiments

[0017] The present utility model will be further described in detail below in conjunction with the drawings and embodiments.

[0018] Such asFigures 1-4 As shown in the figure, a cold drink processing device includes a housing cavity structure 1. Inside the housing cavity structure 1, a main base 2 is provided at the lower part, and a cylinder head assembly 3 is provided at the upper part. A stirring device 4 is arranged between the main base 2 and the cylinder head assembly 3. A refrigeration device is provided inside the main base 2. The stirring device 4 includes a cylinder body 5 capable of guiding materials. A screw conveyor 6 is arranged inside the cylinder body 5. A material pushing structure 7 is formed at the front part of the cylinder body 5. The output end of the cylinder body 5 is cooperatively connected with a discharge valve 8. A water receiving assembly 9 capable of collecting and draining water is provided directly below the discharge valve 8. Through the material pushing structure 7 formed at the front part of the cylinder body 5, the thrust is effectively increased during stirring, and the materials in the cylinder body 5 can be completely pushed out, so that there is no accumulated material in the cylinder body 5. Moreover, through the water receiving assembly 9, the condensed water can be effectively collected and reasonably discharged in time.

[0019] In this embodiment, a transmission shaft 61 is provided at the center of the screw conveyor 6, and a transmission head 62 is provided at the front end of the screw conveyor 6. The rear end of the transmission shaft 61 is connected to a stirring motor. An evaporator 63 connected to the refrigeration device is sleeved outside the transmission shaft 61. When the screw conveyor 6 is inserted into the evaporator 63, it is exactly docked with the transmission head 62.

[0020] In this embodiment, the cylinder body 5 includes a cylindrical cavity 51 and a feed hopper 52 provided on the cylindrical cavity 51. A material guiding inclined plane 53 is formed between the feed hopper 52 and the cylindrical cavity 51. A closed section 54 with a length "L" value greater than 30 mm is formed between the bottom end of the material guiding inclined plane 53 and the front end face of the transmission head 62. The material guiding inclined plane 53 forms a tangential angle of 30 - 90 degrees (such as the annotation "A" in the attachment Figure 4 with the center line of the transmission shaft 61). Through the cooperation of the material guiding inclined plane 53 and the cylindrical cavity 51 for guiding materials, the smooth flow of raw materials from front to back is realized.

[0021] In this embodiment, the material pushing structure 7 includes a material pushing plate 71 and a material pushing spiral 72 provided at the front end of the screw conveyor 6. A gap not greater than 2 mm is formed between the material pushing plate 71 and the material pushing spiral 72 and the inner wall of the closed section 54 of the cylindrical cavity 51 body. When stirring the materials, through the cooperation of the material pushing plate 71 and the material pushing spiral 72 with the material guiding inclined plane 53 and the cylindrical cavity 51, the materials in the cylinder body 5 are further completely pushed out of the cylinder body 5. During stirring, while the screw conveyor 6 breaks up the materials, the material pushing plate 71 at the front end of the material pushing plate 71 and the material pushing spiral 72 cooperate with the material guiding inclined plane 53 to push all the materials to the liquid outlet at the front end of the cylinder body 5, and finally they are taken out through the discharge valve 8.

[0022] In this embodiment, the cylinder head assembly 3 includes a cylinder head. The rear end of the cylinder head is connected to the main base 2 by a shaft pin, and the rotation and opening of the cylinder head can be realized; an operation panel is provided at the upper end of the cylinder head. The cylinder head as a whole adopts a double-layer structure and is sleeved with the housing cavity structure 1 to form a sealed space to achieve the heat preservation effect.

[0023] In this embodiment, the housing cavity structure 1 further includes a left housing component, a right housing component, a front housing, and a rear housing. The left housing component and the right housing component are both composed of an inner plate 12, an outer plate 13, a viewing window 14, and a metal side plate. A cavity is formed between the inner plate 12 and the outer plate 13, and a heat insulation material layer is filled in this cavity to further enhance the heat preservation effect.

[0024] In this embodiment, the water receiving component 9 includes a water receiving box 91 disposed at a concave position of the front housing to achieve the assembly and fixation of the water receiving box 91. A water receiving groove 92 is correspondingly provided between the front housing and the rear housing and below the cylinder block 5. A water collecting hole 93 is formed in the water receiving groove 92. A drain nozzle is provided at the lower end of the front housing, which is used to collect the condensed water generated on the outer wall of the cylinder block 5 during operation and the sewage during the cleaning of the evaporator 63. The water collecting hole 93 is connected to the drain nozzle through a connecting pipe 94. An overflow hole is provided at the front end of the water receiving box 91, and the other end of the overflow hole is provided with an overflow nozzle, and a silica gel tube can be connected to drain the collected water outside the machine.

[0025] According to the idea of the present utility model, there will be changes in the specific implementation manner and application scope, and the content of this specification should not be construed as a limitation to the present utility model.

Claims

1. A cold drink processing device, comprising a housing cavity structure, a main seat is arranged at the lower part inside the housing cavity structure, a cylinder head assembly is arranged at the upper part inside the housing cavity structure, a stirring device is arranged between the main seat and the cylinder head assembly, and a refrigeration device is arranged inside the main seat, characterized in that: The stirring device includes a cylinder capable of guiding materials. A screw conveyor is arranged inside the cylinder. A material pushing structure is formed at the front part of the cylinder. An outlet valve is connected to the output end of the cylinder in a matching manner. A water receiving component capable of collecting and draining water is arranged directly below the outlet valve.

2. The cold drink processing equipment according to claim 1, characterized in that: A transmission shaft is arranged at the center of the screw conveyor. A transmission head is arranged at the front end of the screw conveyor. The rear end of the transmission shaft is connected to a stirring motor. An evaporator connected to the refrigeration device is sleeved outside the transmission shaft.

3. The cold drink processing equipment according to claim 2, characterized in that: The cylinder includes a cylindrical cavity and a feed hopper arranged on the cylindrical cavity. A material guiding inclined surface is formed between the feed hopper and the cylindrical cavity. A closed section with a length greater than 30 mm is formed between the bottom end of the material guiding inclined surface and the discharge hole of the cylinder. The material guiding inclined surface forms a tangential angle of 30 - 90 degrees with the center line of the transmission shaft.

4. The cold drink processing equipment according to claim 3, characterized in that: The material pushing structure includes a material pushing plate and a material pushing spiral arranged at the front end of the screw conveyor. A gap of 0 - 2 mm is formed between the material pushing plate and the material pushing spiral and the inner wall of the closed section of the cylindrical cavity.

5. The cold drink processing equipment according to claim 3, characterized in that: The cylinder head assembly includes a cylinder head. The rear end of the cylinder head is connected to the main machine base by a shaft pin. An operation panel is arranged at the upper end of the cylinder head.

6. A cold drink processing device according to claim 1, characterized in that: The shell cavity structure further includes a left shell assembly, a right shell assembly, a front shell, and a rear shell. Both the left shell assembly and the right shell assembly are composed of an inner plate, an outer plate, a window, and a metal side plate. A cavity is formed between the inner plate and the outer plate, and a heat insulation material layer is filled in the cavity.

7. A cold drink processing device according to claim 6, characterized in that: The water receiving component includes a water receiving box arranged at the concave position of the front shell. A water receiving groove is correspondingly arranged between the front shell and the rear shell and below the cylinder. A water collecting hole is opened on the water receiving groove. A drain nozzle is arranged at the lower end of the front shell. The water collecting hole and the drain nozzle are connected by a connecting pipe. An overflow hole is arranged at the front end of the water receiving box, and the other end of the overflow hole is provided with an overflow nozzle.