Cold drink machine

By using a support support structure and a detachable water connection tray in the cold drink machine to collect the outflow of smoothies or liquids, the existing cold drink machine is easily contaminated and occupied a large space during disassembly, and the overall structure is compact, low cost and safe use are achieved.

CN222997353UActive Publication Date: 2025-06-20GUANGZHOU XINAN TRADING CO LTD
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Patent Information

Application Number
CN202422198918.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-08-29
Filing Date
2024-09-06
Publication Date
2025-06-20
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

When disassembling, existing cold drink machines can easily cause residual smoothies in the barrel to flow into the chassis, causing pollution, increasing cleaning processes, and the main frame occupies a large space, resulting in high overall volume and cost.

Method used

A cold drink machine is designed, using a support seat as the central support structure and installed on the box. A material making mechanism and a cooling mechanism are provided on the support seat. A detachable and installed water tray is installed below the ice bin to collect outflow smoothies or liquids, reducing pollution and cleaning processes.

Benefits of technology

It achieves a compact overall structure, small space and size, and low cost. It also effectively avoids outflow materials from contaminating the box, reduces cleaning processes, and improves user comfort and the use safety of electronic control devices and lines.

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Abstract

The utility model discloses a cold drink machine, which comprises a box body and a bearing seat arranged on the box body, a material making mechanism is arranged on the bearing seat, the material making mechanism comprises a motor driving device and a material making device connected with the motor driving device, and a cold supply mechanism is arranged in the box body; a sliding rail groove and a water pan are arranged in one end of the bearing base, and a through opening is formed in one end of the sliding rail groove. The water receiving disc slides into the sliding rail groove through the through opening, a water receiving groove in the water receiving disc is located below an ice making bin of the material making device, and the water receiving disc is fixedly connected with the sliding rail groove in a buckling mode. The ice maker can collect materials flowing out of the ice making bin, reduces cleaning procedures, improves use comfort of a user, and is small in overall size and low in cost.
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Description

Technical Field

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

[0002] In hot summer, people like to drink ice drinks. For example, ice shavers or ice cream machines can better meet people's needs for cold drinks. The current cold drink machines include a main frame. At the upper end of the main frame, a material box is fixedly installed. On the outer surface of the upper end of the material box, an upper cover is movably installed. At a position near the lower part of the front outer surface of the material box, a discharge port is fixedly installed. An evaporator and a stirring device are arranged in the material barrel. Inside the main frame, a compressor, a condenser and a motor are fixedly installed. The compressor and the condenser are located on one side of the motor. At a position near the lower part of the front outer surface of the main frame, a water receiving box is arranged. The water receiving box is located below the discharge port and is used to catch the excess materials flowing out of the discharge port.

[0003] However, when disassembling the above-mentioned cold drink machine, the residual ice shavings in the material barrel are likely to directly flow onto the machine body, causing pollution, increasing the cleaning process, reducing the user's comfort, and even possibly flowing into the machine body, posing a safety hazard to the electronic control devices and circuits in the machine body. At the same time, the above-mentioned cold drink machine installs components such as motors, compressors and condensers in the main frame area, resulting in a large occupied space and large volume of the main frame, which in turn causes other structures on the main frame to increase in proportion, and further makes the overall volume of the cold drink machine large and the cost high. Summary of the Utility Model

[0004] The technical problem to be solved by the utility model is to provide a cold drink machine with a small overall volume and low cost, which can collect the materials flowing out of the ice making bin, reduce the cleaning process, and improve the user's comfort.

[0005] To solve the above technical problem, the utility model provides a cold drink machine, which includes a box body and a supporting seat installed on the box body. A material making mechanism is installed on the supporting seat. The material making mechanism includes a motor driving device and a material making device connected to the motor driving device. A cooling mechanism is arranged in the box body. A slide rail groove and a water receiving tray are arranged inside one end of the supporting seat. One end of the slide rail groove is provided with a through port. The water receiving tray slides into the slide rail groove through the through port. The water receiving groove in the water receiving tray is located below the ice making bin of the material making device. The water receiving tray and the slide rail groove are fixedly connected by a snap connection method.

[0006] As an improvement of the above solution, the motor driving device includes a motor base and a driving motor installed in the motor base. The other end of the supporting base is internally provided with a motor installation groove, and the motor base is installed on the motor installation groove. The ice-making device includes an ice-making bin, an evaporator, and a scraper. The ice-making bin and the evaporator are both installed at one end of the motor base. The evaporator and the scraper are arranged inside the ice-making bin. A scraper rotating shaft adapted to be connected to the driving motor penetrates through the interior of the evaporator. The scraper is sleeved on the evaporator and connected to the scraper rotating shaft.

[0007] As an improvement of the above solution, an external water receiving gap is formed between the supporting base and the shell of the ice-making bin. The external water receiving gaps are respectively located on both sides of the supporting base, and the external water receiving gaps are communicated with the water receiving tank.

[0008] As an improvement of the above solution, the width of the water receiving tank is greater than or equal to the bottom width of the ice-making bin.

[0009] As an improvement of the above solution, slide rail flanges are respectively arranged on both side edges of the water receiving tray, and the slide rail flanges are respectively abutted against the inner walls on both sides of the slide rail groove.

[0010] As an improvement of the above solution, first abutting portions are respectively arranged on both sides of one end of the water receiving tray close to the through port. Second abutting portions adapted to the first abutting portions are respectively arranged on both sides of the upper part of the through port. The first abutting portion is abutted against the second abutting portion.

[0011] As an improvement of the above solution, elastic buckle portions are respectively arranged on the inner walls on both sides of the through port. Buckle grooves adapted to the elastic buckle portions are respectively arranged at both ends of the water receiving tray. The elastic buckle portions are snap-connected to the buckle grooves.

[0012] As an improvement of the above solution, an ice outlet is arranged at one end of the ice-making bin away from the motor base. A liquid inlet and a liquid adding cover covering the liquid inlet are arranged on the upper part of the ice-making bin. The liquid adding cover is movably connected to the ice-making bin.

[0013] As an improvement of the above solution, the cooling mechanism includes a compressor and a condenser. The compressor is connected to the input end of the condenser through a pipeline. The output end of the condenser is connected to the input end of the evaporator through a pipeline. The output end of the evaporator is connected to the compressor through a pipeline.

[0014] As an improvement of the above solution, a condenser mounting seat is provided at one end inside the box body. The condenser mounting seat is located below the motor seat, and the condenser is installed in the condenser mounting seat; a cooling fan is installed at one end of the condenser mounting seat close to the compressor. A driving cooling fan is provided inside the motor seat, and the driving cooling fan is installed at one end of the driving motor away from the ice making bin; a heat dissipation plate corresponding to the condenser is provided at one end of the box body, and a control panel is provided at the other end of the box body. The heat dissipation plate covers the motor seat and the same end of the box body respectively.

[0015] The beneficial effects of implementing the present utility model are as follows:

[0016] The present utility model uses a support seat as the middle support structure, which is installed on the box body; a material making mechanism is installed on the support seat. The material making mechanism includes a motor driving device and a material making device connected to the motor driving device. A cooling mechanism is provided inside the box body, so that the overall structure is optimized and arranged in the upper and lower parts, with a compact structure, small overall occupied space and volume, and low cost.

[0017] At the same time, a water receiving tray is provided inside the support seat of the present utility model, and the water receiving tray is located below the ice making bin; when the ice making bin needs to be disassembled after working, the ice sand or liquid flowing out of the ice making bin will flow into the water receiving tray below to realize the function of receiving ice sand or liquid; when the receiving capacity of the water receiving tray is too large, the water receiving tray is disassembled from the slide rail groove for discharging materials, and the water receiving tray can be used continuously by reinstalling it into the slide rail groove; through the above method, it can effectively avoid the materials flowing out from polluting the box body, reduce the cleaning process, and improve the user's comfort and the use safety of the electric control devices and circuits. Description of the Drawings

[0018] Figure 1 is the structural schematic diagram of the cold drink machine of the present utility model Figure 1 ;

[0019] Figure 2 is the structural schematic diagram of the cold drink machine of the present utility model Figure 2 ;

[0020] Figure 3 is the structural schematic diagram of the cold drink machine of the present utility model Figure 3 ;

[0021] Figure 4 is the side view structural schematic diagram of the support seat, water receiving tray and ice making bin of the present invention;

[0022] Figure 5 is Figure 4 the sectional structural schematic diagram in the AA direction of

[0023] Figure 6It is a schematic structural diagram of the supporting seat of the present invention;

[0024] Figure 7 It is a schematic structural diagram of the water receiving tray of the present invention. Detailed implementation manners

[0025] To make the objectives, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0026] As Figures 1 to 2 shown, a specific embodiment of the present utility model provides an ice cream machine, including a box body 1 and a supporting seat 2 installed on the box body 1. The supporting seat 2 is a middle supporting structure of the ice cream machine, and a material making mechanism 3 is installed thereon. The material making mechanism 3 includes a motor driving device 31 and a material making device 32 connected to the motor driving device 31. A cooling mechanism 4 is provided in the box body 1. The cooling mechanism 4 is used to provide a cold source for the material making device 32 so that the material making device 32 can perform ice making work on raw materials. The motor driving device 31 is used to drive a scraper or a stirring member in the material making device 32 to scrape ice materials to form the required ice sand.

[0027] One end of the supporting seat 2 is internally provided with a slide rail groove 21 and a water receiving tray 5. One end of the slide rail groove 21 is provided with a through port 22; the water receiving tray 5 slides into the slide rail groove 21 through the through port 22. A water receiving groove 51 in the water receiving tray 5 is located directly below an ice making bin 321 of the material making device 32 to collect ice sand or liquid raw materials falling from the ice making bin 321 and avoid polluting the box body 1. The water receiving tray 5 and the slide rail groove 21 are fixedly connected by a snap connection method to realize quick disassembly and installation of the water receiving tray 5, and the usability is high.

[0028] The beneficial effects of the embodiment of the present utility model are as follows:

[0029] The present utility model uses the supporting seat 2 as a middle supporting structure, which is installed on the box body 1; the supporting seat 2 is provided with a material making mechanism 3. The material making mechanism 3 includes a motor driving device 31 and a material making device 32 connected to the motor driving device 31. A cooling mechanism 4 is provided in the box body 1, so that the overall structure is optimized and arranged in the upper and lower two parts, the structure is compact, the overall occupied space and volume are small, and the cost is low.

[0030] Meanwhile, the utility model is provided with a water receiving tray 5 in the supporting seat 2. The water receiving tray 5 is located below the ice making bin 321. When the ice making bin 321 needs to be disassembled after working, the ice sand or liquid flowing out of the ice making bin 321 will flow into the lower water receiving tray 5 to realize the function of receiving ice sand or liquid. When the receiving capacity of the water receiving tray 5 is too large, the water receiving tray 5 is disassembled from the slide rail groove 21 for discharging materials, and the water receiving tray 5 can be reinstalled into the slide rail groove 21 to continue using. By the above method, it can effectively avoid the materials flowing out from polluting the box body 1, reduce the cleaning process, and improve the user's use comfort and the use safety of the electric control devices and circuits.

[0031] Specifically, as Figures 1 to 3 shown, the motor driving device 31 includes a motor seat 311 and a driving motor 312 installed in the motor seat 311. The other end of the supporting seat 2 is provided with a motor installation groove 23, and the motor seat 311 is installed on the motor installation groove 23. The ice making device 32 includes an ice making bin 321, an evaporator 322 and a scraper 323. The ice making bin 321 and the evaporator 322 are both installed at one end of the motor seat 311, and the ice making bin 321 is provided with the evaporator 322 and the scraper 323 inside. A scraper 323 rotating shaft adapted to be connected with the driving motor 312 penetrates through the inside of the evaporator 322, and the scraper 323 is sleeved on the evaporator 322 and connected with the scraper 323 rotating shaft. When the evaporator 322 makes ice from the raw material liquid, the driving motor 312 drives the scraper 323 rotating shaft to rotate, so as to drive the scraper 323 to rotate, and the formed ice material is sanded by the scraper 323, thereby forming the required ice sand.

[0032] Among them, as Figures 4 to 5 shown, an external water receiving gap 6 is formed by enclosing between the supporting seat 2 and the shell of the ice making bin 321. The external water receiving gap 6 is respectively located on both sides of the supporting seat 2, and both sides of the external water receiving gap 6 are communicated with the water receiving tank 51. When the ice making bin 321 is working, the outer walls on both sides of the ice making bin 321 form condensed water due to the lower internal temperature. The condensed water on both sides will automatically flow to the bottom of the ice making bin 321 through the external water receiving gap 6 and drop into the lower water receiving tray 5, and the condensed water located at the bottom of the ice making bin 321 will also drop into the water receiving tray 5 to further realize the liquid collection function. By the above method, it can maximize the avoidance of the liquid flowing out from polluting the box body 1, reduce the cleaning process, and further improve the user's use comfort and the use safety of the electric control devices and circuits.

[0033] Further, to prevent the condensed water formed on the outer walls on both sides of the ice making bin 321 from possibly falling from the bottom of the ice making bin 321 to an area outside the water receiving tank 51, that is, falling to other positions of the cabinet 1, which may lead to an increase in unnecessary cleaning procedures. As Figures 4 to 5 shown, the width of the water receiving tank 51 is greater than or equal to the bottom width of the ice making bin 321, so that when the condensed water falls from the bottom of either side of the ice making bin 321, it can stably fall into the water receiving tank 51, thereby achieving a comprehensive collection function for the condensed water to be collected, eliminating unnecessary cleaning procedures, and improving the user's comfort.

[0034] Preferably, as Figures 5 to 7 shown, slide rail flanges 52 are respectively provided at both edges of the water receiving tray 5, and the slide rail flanges 52 are respectively in contact with the inner walls on both sides of the slide rail groove 21. By providing the slide rail flanges 52, the contact area with the slide rail groove 21 can be reduced, thereby reducing the contact friction force, improving the sliding installation and sliding disassembly effects of the water receiving tray 5, and facilitating the user to disassemble, install and use.

[0035] To limit the position of the water receiving tray 5. As Figures 4 to 5 shown, first abutting portions 53 are respectively provided at both sides of one end of the water receiving tray 5 close to the through port 22, second abutting portions 24 adapted to the first abutting portions 53 are respectively provided at both sides of the upper part of the through port 22, and the first abutting portions 53 are in contact with the second abutting portions 24. When the water receiving tray 5 slides into the slide rail groove 21, the first abutting portions 53 are in contact with the second abutting portions 24, which can play a limiting role on the water receiving tray 5 in the horizontal inward and vertical upward directions. Among them, the first abutting portion 53 is a first inclined portion, and the second abutting portion 24 is a second inclined portion, but it is not limited thereto. In other embodiments, as long as the adapted contact of the first abutting portion 53 and the second abutting portion 24 can achieve the above-mentioned limiting effect, such as mutually adapted stepped portions or semi-circular portions, etc., there is no excessive limitation here.

[0036] Preferably, to play a guiding installation role on the water receiving tray 5. As Figures 4 to 5 shown, horizontal limiting portions 25 are respectively provided on the inner walls on both sides of one end of the slide rail groove 21 close to the through port 22, and the horizontal limiting portions 25 are respectively in contact and cooperate with the two ends of the water receiving tray 5 below them. When the water receiving tray 5 is inserted from the through port 22, the water receiving tray 5 is in contact with the inner wall of the slide rail groove 21 and its space in the vertical direction is limited by the horizontal limiting portions 25, so that the water receiving tray 5 slides into the slide rail groove 21 along this horizontal direction to achieve the guiding installation function of the water receiving tray 5.

[0037] To achieve the quick fixed disassembly and installation of the water receiving tray 5 and the slide rail groove 21. As Figures 4 to 5As shown, elastic snap portions 221 are respectively provided on the inner walls on both sides of the through port 22, and snap grooves 54 adapted to the elastic snap portions 221 are respectively provided at both ends of the water receiving tray 5. When the water receiving tray 5 is installed, by inserting the water receiving tray 5 into the slide rail groove 21, the elastic snap portions 221 of the slide rail groove 21 are snap-fitted with the snap grooves 54 of the water receiving tray 5, so as to achieve quick and fixed connection between the two; when the water receiving tray 5 is disassembled, just pull the water receiving tray 5 to separate the snap groove 54 from the elastic snap portion 221, and the quick disassembly of the water receiving tray 5 can be achieved, meeting the convenient use requirements of users.

[0038] Preferably, as Figure 2 , Figure 4 and Figure 6 shown, an installation groove 26 is provided inside one end of the supporting seat 2, the slide rail groove 21 is provided inside the installation groove 26, and limiting abutting blocks 27 are respectively provided at the tops of both sides of one end of the installation groove 26 close to the motor seat 311; clamping blocks 3211 are respectively provided on both sides of the ice making bin 321, and the clamping blocks 3211 are abutted against one end of the limiting abutting blocks 27 away from the motor seat 311 and are abutted against the top of one side of the installation groove 26. When the ice making bin 321 is installed on the motor seat 311, the clamping blocks 3211 on both sides of the ice making bin 321 are respectively abutted against the corresponding limiting abutting blocks 27 on the supporting seat 2 to play a limiting role in the horizontal inward direction, avoiding excessive pressing of one end of the ice making bin 321 on the motor seat 311 during installation; at the same time, the clamping blocks 3211 on both sides of the ice making bin 321 are also abutted against the tops of both sides of the installation groove 26 to support the ice making bin 321, so as to facilitate the disassembly and installation of the ice making bin 321.

[0039] Further, on both inner walls of one end of the installation groove 26 away from the motor base 311, guiding and limiting grooves 28 are respectively provided. The guiding and limiting grooves 28 are located above the water receiving tray 5. A limiting portion 29 is provided at one end of the guiding and limiting groove 28 close to the motor base 311. On both sides of the bottom of the ice making bin 321, sliding blocks 3212 adapted to the guiding sliding grooves are respectively provided. The sliding blocks 3212 slide into the guiding and limiting grooves 28 and abut against the limiting portion 29. When the ice making bin 321 is installed, the two sliding blocks 3212 on the ice making bin 321 will respectively slide into the guiding and limiting grooves 28, so that the ice making bin 321 moves along the guiding and limiting grooves 28 towards the motor base 311. When it moves to the required position, the sliding blocks 3212 will abut against the limiting portion 29, further playing a role of horizontally inward limiting on the ice making bin 321, and avoiding excessive pressing of one end of the ice making bin 321 on the motor base 311 during installation. Among them, the width of the sliding rail groove 21 is greater than the widths of the ice making bin 321 and the water receiving groove 51. At least part of the structure of the ice making bin 321 (such as the lower part or the bottom of the ice making bin 321) is located in the sliding rail groove 21, so that the liquid dropped from the ice making bin 321 can fall more stably into the water receiving groove 51, improving the material collection effect. For example, when the bottom of the ice making bin 321 is located in the installation groove 26, the distance from the water receiving tray 5 can be shortened, the sputtering height when the material drops can be reduced, and the material can be prevented from splashing out of the water receiving groove 51. Thus, when disassembling, the ice sand or liquid flowing out of the ice making bin 321 can quickly drop from the bottom position into the water receiving tray 5 in its entirety, and when working, the condensed water formed by the ice making bin 321 can quickly drop into the water receiving tray 5 in its entirety, improving the access and collection effect of the water receiving tray 5. Furthermore, it can effectively prevent the flowing out liquid from dropping to other positions of the box body 1, reducing the cleaning process, and improving the user's use comfort and the use safety of the electric control devices and circuits.

[0040] Furthermore, as Figure 2 shown, an ice outlet 3213 is provided at one end of the ice making bin 321 away from the motor base 311 to discharge the required ice sand through the ice outlet 3213. A liquid inlet and a liquid adding cover 3214 covering the liquid inlet are provided on the upper part of the ice making bin 321. The liquid adding cover 3214 is movably connected to the ice making bin 321. When feeding is required, the user can open the liquid adding cover 3214 and add ice sand raw materials into the liquid inlet to achieve the feeding work of the ice making bin 321. When feeding is not required, the user can close the liquid adding cover 3214 to play a role of protection and isolation, avoiding external impurities from entering the inner cavity of the ice making bin 321 through the liquid inlet and polluting the material, thereby affecting the ice making effect.

[0041] To provide the required cooling energy for the evaporator 322. As Figure 1 and Figure 3As shown, the cooling mechanism 4 located below the supporting seat 2 includes a compressor 41 and a condenser 42. The compressor 41 is connected to the input end of the condenser 42 through a pipeline. The output end of the condenser 42 passes through the motor base 311 through a pipeline and is connected to the input end of the evaporator 322 located above to provide refrigerant liquid for the evaporator 322, enabling the evaporator 322 to achieve the refrigeration function. The output end of the evaporator 322 passes through the motor base 311 through a pipeline and is connected to the compressor 41 below to return the high-temperature gas after heat exchange to the compressor 41, thereby realizing the cyclic cooling operation and ensuring the stable operation of the refrigeration work of the evaporator 322.

[0042] To improve the heat dissipation effect of the cold drink machine. As Figure 1 and Figure 3 shown, one end inside the box body 1 is provided with a condenser mounting seat 43. The condenser mounting seat 43 is located below the motor base 311, and the condenser 42 is installed in the condenser mounting seat 43. A cooling fan 44 is installed at one end of the condenser mounting seat 43 close to the compressor 41. A driving cooling fan 313 is provided inside the motor base 311, and the driving cooling fan 313 is installed at one end of the driving motor 312 away from the ice making bin 321. One end of the box body 1 is provided with a heat dissipation plate 7 corresponding to the condenser 42. The heat dissipation plate 7 covers the motor base 311 and the same end of the box body 1 respectively, making the structural layout reasonable and compact and reducing the required occupied space. The cooling fan 44 located in the box body 1 and the driving cooling fan 313 located in the motor base 311 are both close to the heat dissipation plate 7. The high-temperature gas in the box body 1 can be discharged to the outside of the machine body through the corresponding heat dissipation holes of the heat dissipation plate 7 by the cooling fan 44 located in the box body 1 to achieve the function of dissipating heat and cooling the heating components in the box body 1. Correspondingly, the high-temperature gas in the motor base 311 can be discharged to the outside of the machine body through the corresponding heat dissipation holes of the heat dissipation plate 7 by the driving cooling fan 313 located in the motor base 311 to achieve the function of dissipating heat and cooling the heating components in the motor base 311. Therefore, through the above two heat dissipation methods, the upper and lower areas of the cold drink machine can be respectively dissipated heat and cooled, improving the heat dissipation effect of the cold drink machine and ensuring the stable operation of the cold drink machine.

[0043] Among them, a control panel 8 is provided at the other end of the box body 1. Users can realize different functions of the cold drink machine by operating the control panel 8 to meet different usage requirements of users.

[0044] In summary, the utility model uses a supporting seat as the central supporting structure, with a material making mechanism arranged on the supporting seat and a cooling mechanism arranged below it, so that the overall structure is optimized and arranged in the upper and lower parts, with a compact structure, small overall occupied space and volume, and low cost. At the same time, a detachable water receiving tray is arranged below the ice making bin. When the ice making bin needs to be disassembled after working, the ice sand or liquid flowing out of the ice making bin will flow into the water receiving tray below to realize the function of storing ice sand or liquid; when the storage capacity of the water receiving tray is too large, the water receiving tray can be disassembled from the slide rail groove for discharging materials, and it can be used continuously by reinstalling the water receiving tray into the slide rail groove; through the above method, it can effectively avoid the materials flowing out from contaminating other positions of the box body, reduce the cleaning process, and improve the user's comfort and the use safety of the electric control devices and circuits.

[0045] The above is the preferred embodiment of the utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle of the utility model, several improvements and refinements can still be made, and these improvements and refinements are also regarded as the protection scope of the utility model.

Claims

1. A cold drink machine, characterized in that: It comprises a box body and a supporting seat installed on the box body, a material making mechanism is installed on the supporting seat, the material making mechanism comprises a motor driving device and a material making device connected to the motor driving device, and a cooling mechanism is arranged in the box body; A slide rail groove and a water receiving tray are provided in one end of the support seat, and a through opening is provided at one end of the slide rail groove; The water receiving tray slides into the slide rail groove through the through opening, the water receiving groove in the water receiving tray is located below the ice making bin of the material making device, and the water receiving tray is fixedly connected to the slide rail groove by means of a snap buckle.

2. The cold beverage machine according to claim 1, characterized in that: The motor drive device comprises a motor seat and a drive motor installed in the motor seat, a motor mounting groove is provided in the other end of the support seat, and the motor seat is installed in the motor mounting groove; The material making device comprises an ice making bin, an evaporator and a scraper, the ice making bin and the evaporator are both mounted at one end of the motor base, and the evaporator and the scraper are arranged in the ice making bin; A scraper rotating shaft adapted to be connected to the driving motor runs through the interior of the evaporator, and the scraper sleeve is arranged on the evaporator and connected to the scraper rotating shaft.

3. The cold beverage machine according to claim 1 or 2, characterized in that: An external water receiving gap is formed between the supporting seat and the shell of the ice making bin. The external water receiving gap is respectively located on both sides of the supporting seat, and the external water receiving gap is communicated with the water receiving groove.

4. The cold beverage machine according to claim 3, characterized in that: The width of the water receiving groove is greater than or equal to the bottom width of the ice making bin.

5. The cold beverage machine according to claim 1, characterized in that: The edges of both sides of the water receiving tray are respectively provided with slide rail flanges, and the slide rail flanges are respectively abutted against the inner walls of both sides of the slide rail groove.

6. The cold beverage machine according to claim 1, characterized in that: The water receiving tray is provided with first abutting parts on both sides of one end close to the through hole, and second abutting parts matched with the first abutting parts are provided on both sides of the upper part of the through hole, and the first abutting parts abut against the second abutting parts.

7. The cold beverage machine as claimed in claim 1, characterized in that: The inner walls on both sides of the through opening are respectively provided with elastic buckle parts, and the two ends of the water receiving tray are respectively provided with buckle grooves adapted to the elastic buckle parts, and the elastic buckle parts are snap-connected with the buckle grooves.

8. The cold beverage machine according to claim 2, characterized in that: An ice outlet is arranged at one end of the ice making bin away from the motor seat, a liquid inlet and a liquid filling cover arranged on the liquid inlet are arranged at the upper part of the ice making bin, and the liquid filling cover is movably connected with the ice making bin.

9. The cold beverage machine according to claim 2, characterized in that: The cooling mechanism includes a compressor and a condenser. The compressor is connected to the input end of the condenser through a pipeline, the output end of the condenser is connected to the input end of the evaporator through a pipeline, and the output end of the evaporator is connected to the compressor through a pipeline.

10. The cold beverage machine according to claim 9, characterized in that: A condenser mounting seat is provided at one end of the box body, the condenser mounting seat is located below the motor seat, and the condenser is installed in the condenser mounting seat; A cooling fan is installed at one end of the condenser mounting seat close to the compressor, a driving cooling fan is arranged in the motor seat, and the driving cooling fan is installed at one end of the driving motor away from the ice making bin; A heat sink corresponding to the condenser is disposed at one end of the box body, and a control panel is disposed at the other end of the box body. The heat sinks are respectively covered on the same end of the motor base and the box body.

Citation Information

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