Ice drinking machine

By optimizing the design of mixing blades and the installation structure of the material barrel, the material waste caused by the distance between the mixing blades and the discharge port in the ice drinker is solved, and more efficient mixing and discharge effects are achieved, and installation stability and condensate management are improved.

CN120240560APending Publication Date: 2025-07-04FOSHAN SHUNDE KAISHUO PRECISION MOLD AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202510259781.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

During the mixing process of existing ice drinkers, the distance between the stirring blades and the discharge port on the front side of the material chamber is large, which leads to the material being pushed when there are more smoothies, and the material being unable to be pushed when there are fewer, resulting in waste of residual materials.

Method used

Optimize the design of the stirring blade, add the first push blade at the front end of the spiral blade, and set up a material barrier at the end to enhance the material push effect; reasonably design the assembly structure of the material barrel and the installation position, improve installation stability through the upper and lower abutment parts and locking buckles; set up a flow guide structure on the body to collect condensate.

Benefits of technology

It improves the mixing and discharge effect, avoids waste of residual materials, enhances the stability and sealing of the barrel installation, simplifies operation, and facilitates the cleaning of condensate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of electric appliances, and particularly relates to an ice drink machine. Comprising an ice drink machine body and a material barrel detachably installed on the ice drink machine body, the material barrel is provided with an inner cavity, the material barrel is detachably installed on the ice drink machine body, and a discharging mechanism is further arranged on the front side of the material barrel; a stirring assembly and a condensation driving assembly which are located in an inner cavity of the material barrel are further arranged on the ice drink machine body, the condensation driving assembly is sleeved with the stirring assembly, the stirring assembly comprises a spiral blade and an installation part, the installation part is used for being installed on a driving shaft of the condensation driving assembly, a first material pushing blade is arranged at the front end of the spiral blade, and a second material pushing blade is arranged at the rear end of the first material pushing blade. The first material pushing blade is connected with the installation part, the periphery of the first material pushing blade extends along the spiral track of the spiral blade, and the tail end of the first material pushing blade is located on the front side of the installation part so as to be close to the discharging mechanism. By optimizing the design of the stirring blades, materials can be better pushed forward in the stirring process, and the discharging effect is better.
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Description

Technical Field

[0001] The present invention belongs to the technical field of electrical appliances, and particularly relates to an ice drink machine. Background Art

[0002] An ice drink machine is a device specifically used for making snow ice cream and smoothies. It stirs the materials through a stirring blade, and the stirring blade continuously rotates in the material cavity during operation. It drives the liquid materials and the internal ice sand to rotate and pushes the materials towards the front discharge port. However, due to the need to consider the rotation of the stirring blade, a certain space needs to be reserved between the stirring blade and the inner wall of the material cavity, which often results in a relatively large distance between the stirring blade and the discharge port at the front side of the material cavity. When there is a large amount of ice sand, the ice sand at the back can push the ice sand at the front. When there is less ice sand, the ice sand that has separated from the stirring blade and is located between the stirring blade and the discharge port cannot be pushed, resulting in waste of remaining materials, and the material barrel has to be disassembled. Summary of the Invention

[0003] The purpose of the present invention is to provide an ice drink machine, which can better push the materials forward during the stirring process through optimizing the design of the stirring blade, and has a better discharging effect.

[0004] Based on this, the present invention provides an ice drink machine, including an ice drink machine body and a material barrel detachably installed on the ice drink machine body. The material barrel has an inner cavity, and the material barrel is detachably installed on the ice drink machine body. A discharging mechanism is further provided at the front side of the material barrel;

[0005] A stirring assembly and a condensation driving assembly located in the inner cavity of the material barrel are further provided on the ice drink machine body. The stirring assembly is sleeved on the driving shaft of the condensation driving assembly. The stirring assembly includes a spiral blade and an installation part. The installation part is used for installing with the driving shaft of the condensation driving assembly. A first material pushing blade is provided at the front end of the spiral blade. The first material pushing blade is connected to the installation part, and the outer periphery of the first material pushing blade extends along the spiral track of the spiral blade. The end of the first material pushing blade is located at the front side of the installation part to be close to the discharging mechanism.

[0006] For the ice drink machine as described above, the end of the first material pushing blade further has a material blocking part extending backward to the installation part.

[0007] For the ice drink machine as described above, an installation position adapted to the material barrel is provided on the ice drink machine body. Matching positions cooperating with the material barrel are provided on both sides of the installation position. Under the action of the matching positions, the material barrel is prevented from longitudinally moving relative to the installation position.

[0008] An ice drink machine as described above, the fitting positions include a first fitting position and a second fitting position. The first fitting position and the second fitting position are on the same horizontal plane and extend along the installation direction of the material barrel. The first fitting position is close to the front side of the installation position and has a first assembly opening extending to the front end. The second fitting position has a second assembly opening extending upward to the upper side of the installation position.

[0009] An ice drink machine as described above, the outer peripheral surface of the material barrel has fitting blocks, the fitting blocks include a first fitting block and a second fitting block, and the first fitting block and the second fitting block are on the same side and satisfy:

[0010] When the second fitting block is located in the second assembly opening, the first fitting block is located in the first assembly opening or outside the first assembly opening and opposite to the first fitting position.

[0011] An ice drink machine as described above, the second fitting block has an upper abutting portion and a lower abutting portion. After the second fitting block enters the second fitting position, the upper abutting portion and the lower abutting portion respectively abut against the upper and lower inner walls of the second fitting position.

[0012] An ice drink machine as described above, the upper abutting portion and the lower abutting portion are inclined to each other.

[0013] An ice drink machine as described above, further includes a buckle for locking the material barrel on the ice drink machine body. The buckle includes a first lock buckle, a second lock buckle and a connecting portion connected between the first lock buckle and the second lock buckle. The first lock buckle and the second lock buckle are respectively arranged on opposite sides of the ice drink machine body and close to the edge where the material barrel is butted against the ice drink machine body. Both sides of the material barrel have locking structures cooperating with the first lock buckle and the second lock buckle. The connecting portion is used to drive the first lock buckle and the second lock buckle to act synchronously.

[0014] An ice drink machine as described above, an overflow tray is further arranged on the front side of the ice drink machine body. The overflow tray is located below the discharging mechanism. A diversion structure is arranged on the installation position. The diversion structure is used to divert the condensed water on the installation position to the overflow tray.

[0015] An ice drink machine as described above, the overflow tray is detachably installed on the ice drink machine body.

[0016] Implementing the embodiments of the present invention has the following beneficial effects:

[0017] 1. The present invention provides an ice drink machine, which optimizes the structure of the stirring assembly. The stirring blades are integrally connected to the drive shaft through the mounting portion to rotate with the drive shaft for stirring. While the spiral blades and the first pusher blade on the front side rotate to stir the material, they also push the material to the front side. In this solution, the first pusher blade extends towards the front side of the mounting portion, so that the axial direction of the material pushing by the stirring blades is closer to the position of the discharge port, resulting in a better material pushing effect.

[0018] 2. The ice drink machine provided by the present invention optimizes the assembly fit between the material bucket and the mounting position through a reasonable assembly structure design, making it more stable after installation. At the same time, it avoids relying on the locking portion for positioning during the stirring process, preventing the locking position from being easily loosened, resulting in leakage and damage. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0020] Figure 1 It is a schematic diagram of the ice drink machine of the present invention;

[0021] Figure 2 It is an exploded view of the ice drink machine;

[0022] Figure 3 It is a schematic diagram of another perspective of the ice drink machine;

[0023] Figure 4 It is a schematic diagram of the mounting position;

[0024] Figure 5 It is a schematic diagram before the installation of the material bucket and the mounting position (the material bucket is simplified as an assembly block for display);

[0025] Figure 6 It is a schematic diagram of the installation process of the material bucket and the mounting position (the material bucket is simplified as an assembly block for display);

[0026] Figure 7 It is a schematic diagram after the installation of the material bucket and the mounting position (the material bucket is simplified as an assembly block for display);

[0027] Figure 8 It is a schematic diagram of the stirring blade;

[0028] Figure 9 It is a schematic diagram of the second perspective of the stirring blade;

[0029] Figure 10 It is a schematic diagram of the third perspective of the stirring blade;

[0030] Figure 11 Schematic diagram of the stirring blade installed on the condensing part;

[0031] Figure 12 Schematic diagram of the snap fastener;

[0032] Figure 13 Schematic diagram of the unlocked state of the snap fastener;

[0033] Figure 14 For Figure 13 Enlarged view of part A of;

[0034] Figure 15 Schematic diagram of the cooperation between the locked state of the snap fastener and the machine body;

[0035] Figure 16 Schematic diagram of the cooperation between the snap fastener when it is locked and unlocked and the locking structure;

[0036] Figure 17 Schematic diagram of the cooperation between the snap fastener when it is locked and the locking structure

[0037] Figure 18 Schematic diagram of the interior of the ice drink machine;

[0038] Figure 19 Schematic diagram of the overflow tray and the front panel. Detailed implementation manners

[0039] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0040] As Figures 1 to 4 shown, an embodiment of the present invention provides an ice drink machine, including an ice drink machine body 1 and a material bucket 2 detachably installed on the ice drink machine body 1. The material bucket 2 has an inner cavity. The material bucket 2 is detachably installed on the ice drink machine body 1, and a discharge mechanism 29 is further provided on the front side of the material bucket 2;

[0041] As Figure 2 、 Figures 8 to 11On the body 1 of the ice drink machine shown, there is also a stirring assembly and a condensation driving assembly located inside the inner cavity of the material bucket 2. The stirring assembly is sleeved on the condensation driving assembly. The stirring assembly includes a spiral blade 41 and a mounting part 42. The mounting part 42 is used to mount with the driving shaft of the condensation driving assembly. A first material pushing blade 43 is provided at the front end of the spiral blade 41. The first material pushing blade 43 is connected to the mounting part 42, and the outer periphery of the first material pushing blade 43 extends along the spiral track of the spiral blade 41. The end of the first material pushing blade 43 is located on the front side of the mounting part 42 to be close to the discharging mechanism 29.

[0042] In addition, the end of the first material pushing blade 43 also has a material blocking part 430 that extends backward to the mounting part 42. Through the material blocking part that extends backward to the mounting part, the retention of materials in front of the stirring blade is avoided, further making the stirring and discharging effects better.

[0043] In this solution, the material blocking part 430 is equivalent to filling the gap between the forward extension of the first material pushing blade 43 and the mounting part 42, and the materials falling into this gap are agitated by the material blocking part 430 and then return to the front side of the first material pushing blade 43 - that is, the material pushing surface. To make it flow more smoothly, the material blocking part 430 transitions to the material pushing surface of the first material pushing blade 43 with an arc-shaped edge.

[0044] In addition, in the embodiment of the present invention, the end of the first material pushing blade 43 also has a material guiding part 431 that inclines from its material pushing surface to the rear side. It can be seen that the material guiding part 431 gradually inclines along the rotation direction, and its thickness gradually decreases, forming a conical or shovel-shaped front end. The materials piled up in the front generally form ice sand, and this front end is more conducive to dispersing the materials and penetrating into the materials, so as to make the stirring more uniform.

[0045] Furthermore, in the embodiment of the present invention, a material blocking block 432 is also provided at the first end 4 where the first material pushing blade 43 is connected to the spiral blade 41. The material blocking block 432 is located at the inner edge of the spiral blade 41. Since during installation and use, the stirring blade as a whole surrounds the outer end of the condensation part, and the spiral blade 41 has a hollow structure - which is convenient for the condensation part to be inserted. The first material pushing blade 43 is located at the front end of the condensation part. Since the connection between the first end of the first material pushing blade 43 and the spiral blade 41 just lies on the front side of the condensation part, the most ideal state is that the connection between the first end of the first material pushing blade 43 and the spiral blade 41 just contacts the front side of the condensation part, so as to prevent materials from forming a layer of ice on the front side of the condensation part. Due to installation and manufacturing errors, there will be a certain gap at this position. In this solution, by presetting the material blocking block 432 at this position, the gap can be reduced. Specifically, the material blocking block 432 has an inclined surface that inclines backward from the material pushing surface. Similarly, it forms the effect of a shovel surface, so that when rotating with the first material pushing blade 43, it can effectively scrape the materials at the front end of the condensation part.

[0046] In addition, in the embodiment of the present invention, in order to improve its strength, the rear side of the material blocking portion 430 further has a reinforcing rib 433 .

[0047] This solution also includes a second pusher blade 44, which is arranged spirally symmetrically with the first pusher blade 43. The second pusher blade 44 can increase the area of ​​contact with the material, and the second pusher blade 44 is also spiral, so that the stirring is uniform.

[0048] Furthermore, the present solution further includes a mounting ring 45, which is located at the rear end of the spiral blade 41. It is used to mount the rear end of the stirring blade on the condensing member and improve the overall strength. In addition, the spiral blade 41 further includes a support rod 46 arranged along the axial direction, and the support rod 46 includes at least two support rods, which are arranged in parallel along the circumferential direction, and the spiral blade 41 is spirally wound along the support rod group 12.

[0049] Preferably, the spiral blade 41, the mounting portion 42, the first material pushing blade 43, the material blocking portion 430 and the second material pushing blade 44 in this solution are integrally formed and manufactured, which has a simple structure and is easy to manufacture.

[0050] In daily use, the barrel 2 is locked on the ice machine body 1, and during the stirring operation, the material is stirred inside, and the contact with the inner cavity of the barrel will cause the barrel to vibrate, and the vibration is limited by the locking part, which is easy to loosen in daily use, resulting in locking failure, thus affecting the sealing performance, and even causing damage to the locking part. In order to avoid this problem, the present solution is provided with a mounting position 101 adapted to the barrel 2 on the ice machine body 1, and the two sides of the mounting position 101 are provided with matching positions that match the barrel 2. Under the action of the matching positions, the barrel 2 is prevented from moving longitudinally relative to the mounting position 101. Through reasonable assembly structure design, it optimizes the assembly and matching between the barrel and the mounting position, making it more stable after installation, and at the same time avoids relying on the locking part for positioning during the stirring process, and prevents the locking position from being easily loosened, causing leakage and damage.

[0051] like Figures 2 to 7As shown in the figure, specifically, the fitting positions include a first fitting position 81 and a second fitting position 82. The first fitting position 81 and the second fitting position 82 are located on the same horizontal plane and extend along the installation direction of the material barrel 2. The first fitting position 81 is close to the front side of the installation position 101 and has a first assembly opening 810 extending to the front end. The second fitting position 82 has a second assembly opening 820 extending upward to the upper side of the installation position 101. The first fitting position 81 and the second fitting position 82 are groove-shaped structures provided on the side wall of the installation position, and the assembly openings penetrating to the edge of the installation position are equivalent to facilitating the corresponding parts to be snapped into the grooves. Correspondingly, the first fitting position 81 and the second fitting position 82 are provided on both sides of the installation position 101 in this solution.

[0052] Moreover, the outer peripheral surface of the material barrel 2 has fitting blocks, and the fitting blocks include a first fitting block 83 and a second fitting block 84. The first fitting block 83 and the second fitting block 84 are located on the same side and satisfy: when the second fitting block 84 is located in the second assembly opening 820, the first fitting block 83 is located in the first assembly opening 810 or outside the first assembly opening 810 and opposite to the first fitting position 81.

[0053] In order to make the installation more stable after installation, the second fitting block 84 has an upper abutting portion and a lower abutting portion. After the second fitting block 84 enters the second fitting position 82, the upper abutting portion and the lower abutting portion respectively abut against the upper and lower inner walls of the second fitting position 82. That is, through the contact between the upper and lower inner walls of the second fitting position 82 and the upper abutting portion and the lower abutting portion, the installation of the material barrel is further made more stable.

[0054] As a preferred but non-limiting embodiment, the upper abutting portion and the lower abutting portion in this solution are inclined to each other. They are inclined to each other along the installation direction of the material barrel to form a horizontal trumpet-shaped cross-section. This not only facilitates installation but also is pressed tighter and tighter by the second fitting position 82 during the installation process.

[0055] Such as Figures 12 to 17As shown in the figure, this solution further includes a buckle 3 for locking the material bucket 2 to the body 1 of the ice drink machine. The buckle 3 includes a first lock 31, a second lock 32, and a connecting portion 33 connected between the first lock 31 and the second lock 32. The first lock 31 and the second lock 32 are respectively arranged on opposite sides of the body 1 of the ice drink machine and close to the edge 20 where the material bucket 2 is docked with the body 1 of the ice drink machine. Both sides of the material bucket 2 have a locking structure 21 that cooperates with the first lock 31 and the second lock 32. The connecting portion 33 is used to drive the first lock 31 and the second lock 32 to act synchronously. Generally speaking, there is a material cavity inside the material bucket 2. An outlet structure 19 is provided on the front side of the material bucket 2, and the rear side is an opening communicating with the material cavity. The outer peripheral wall of the opening is the edge 20 that is docked with the body 1 of the ice drink machine. In order to ensure the sealing effect, a sealing ring opposite to the edge 20 is generally provided at the body 1 of the ice drink machine, so that the edge 20 can abut against the sealing ring after the material bucket 2 is installed to ensure the sealing effect. The function of the buckle 3 is to maintain the locking force of the edge 20.

[0056] In this solution, the first lock and the second lock respectively cooperate with the locking structures on both sides of the material barrel to lock the material bucket to the body of the ice drink machine and press and seal the edge where the material bucket is docked with the body of the ice drink machine. In this solution, the connecting portion connects the first locks and the second locks on both sides, and only by operating the connecting portion can the first lock and the second lock be locked and unlocked through actions, effectively avoiding the occurrence of missed buckles, ensuring its locking and sealing performance, and making the operation simpler and more convenient.

[0057] Of course, the locking method is to pull the material bucket 2 towards the body 1 of the ice drink machine. That is, the first lock 31 and the second lock 32 can adopt a flat-pull locking method. For example, after the first lock 31 and the second lock 32 are buckled with the locking structure 21, they are pulled backward - that is, the installation direction of the material bucket, and positioned at the pulled position, so as to ensure the locking force after the material bucket 2 is installed and achieve a good sealing effect.

[0058] In this solution, it is preferably to adopt a rotating method, that is, the first lock 31 and the second lock 32 are rotatably arranged on the body 1 of the ice drink machine, and the connecting portion 33 is used to drive the first lock 31 and the second lock 32 to rotate synchronously. That is, after the first lock 31 and the second lock 32 rotate, they can be switched to the locking position and the unlocking position. And adopting the rotating method, its structure is simple, the operation is convenient, and the required space is small.

[0059] Specifically, the connecting portion 33 is a handle connected between the first latch 31 and the second latch 32, and the handle extends along the contour of the upper surface of the body 1 of the beverage cooler to both sides of the body 1 of the beverage cooler. The structure of the handle is convenient for operation. In this application, the handle forms an arc-shaped structure that spans both sides of the body 1 of the beverage cooler and is consistent with the contour of the upper surface of the body 1 of the beverage cooler. When locked, the handle can fit on the body 1 of the beverage cooler in a shape-adapted manner, avoiding overly prominent structures and maintaining a unified appearance.

[0060] In this solution, the connecting portion 33 is made of a plastically deformable material. Common plastically deformable materials include metal materials and non-metal materials, such as steel, copper, aluminum, plastic, rubber, etc.

[0061] In the embodiment of the present invention, the first latch 31 and the second latch 32 are symmetrically arranged on both sides of the body 1 of the beverage cooler, and their structures are the same. In this solution, the structure of the first latch 31 is described in detail. Specifically, the first latch 31 includes a rotating portion 311 and a connecting arm 312 provided on the rotating portion 311. An articulated portion 10 is provided on the side surface of the body 1 of the beverage cooler, and the rotating portion 311 is installed on the articulated portion 10 to rotate relative to the body 1 of the beverage cooler. The connecting arm 312 is connected to the connecting portion 33. The connecting arm 312 is used to dock with one end of the connecting portion 33, so that the connecting portion 33 can drive the rotation of the rotating portion 311. In this solution, the locking mainly depends on the rotating portion 311. Since the entire locking and unlocking operation only relies on the rotation of the rotating portion 311 and does not require additional movement, the operation can be completed without occupying a large amount of space.

[0062] More specifically, in this solution, a locking groove 3111 is provided on the rotating portion 311. The locking groove 3111 is an arc-shaped groove opened along the rotation direction of the rotating portion 311, and one end of the locking groove 3111 is an opening 3112 extending to the radial circumferential surface of the rotating portion 311. When the rotating portion 311 rotates, it drives the locking groove 3111 to rotate. When it rotates to the position where the opening 3112 faces the installation direction of the material bucket 2, it is the unlocking position. After the locking structure 21 of the material bucket 2 enters the opening 3112, by further rotating the rotating portion 311, the locking structure 21 can enter the locking groove 3111. At this time, the opening 3112 is not in the translation direction of the locking structure 21, so as to lock the locking structure 21 through the locking groove 3111. In this solution, when the rotating portion 311 is in the locked state, the opening 3112 rotates clockwise to the upper side.

[0063] Correspondingly, the locking structure 21 is a locking post extending from the surface of the material bucket 2, and the locking post can enter the locking groove 3111 from the opening 3112. Its structure is simple and convenient for cooperation with the locking groove 3111.

[0064] In addition, in order to further enhance the locking and sealing effect, the locking groove 3111 has a guiding wall that gradually approaches the middle from the opening 3112 towards the end. That is, the guiding wall is arranged in an arc trajectory, and its inner wall satisfies that the radial distance from the opening 3112 to the end relative to the rotation center gradually decreases. Since during locking, it is equivalent to the locking structure 21 being restricted by the guiding wall, and during the rotation of the guiding wall, by utilizing its above characteristics, the locking structure 21 is gradually forced to move further backward, thereby enhancing the locking and sealing effects.

[0065] In the embodiment of the present invention, for the convenience of operation, a limiting post 100 is further provided on one side of the ice drink machine body 1 located at the hinge part 10. A limiting groove 3113 for the limiting post 100 to extend into is further provided on the rotating part 311, and the limiting groove 3113 is opened along the rotation direction of the rotating part 311. Through the cooperation of the limiting post 100 and the limiting groove 3113, the rotation amplitude of the rotating part 311 can be limited. At the same time, it can also limit the position when rotating to one end of the limiting groove 3113 abuts against the limiting post 100, that is, the unlocking posture, thereby realizing quick operation.

[0066] As Figure 18 、 Figure 19 shown, an overflow tray 7 is further provided on the front side of the ice drink machine body 1 of the present invention. The overflow tray 7 is located below the discharging mechanism 29, and a guiding structure 5 is provided on the mounting position 101. The guiding structure 5 is used to guide the condensed water on the mounting position 101 to the overflow tray 7. It adds a guiding structure at the mounting position where the ice drink machine body is adapted to the barrel. Through the guiding structure, the condensed water falling onto this mounting position is drained and discharged into the overflow tray for collection, avoiding the problem of condensed water accumulating on the machine body, and there is no need to rely on the user to manually wipe it. In addition, centralized collection is carried out using the overflow tray, which is convenient for subsequent cleaning.

[0067] In this solution, for the convenience of cleaning the accumulated water, the overflow tray 7 is detachably installed on the ice drink machine body 1. Since the overflow tray 7 is arranged below the discharging mechanism 29, it is originally convenient for the user to externally connect an ice drink to prevent the drink from dripping, thus providing the overflow tray 7 for collection. And the solution combines the guiding structure 5 to collect the condensed water on the overflow tray 7, making the structure simpler and more convenient to use.

[0068] Preferably, the diversion structure 5 is a diversion channel provided on the installation position 101. One end of the diversion channel is a diversion inlet located on the installation position 101, and the other end extends into the ice drink machine body 1. By draining to the inside of the body, and all related components are installed inside, this can avoid adding accessories outside the body. Of course, when cleaning is required, one side panel can be directly disassembled to clean the inside. In order to further extend the discharge range of this solution, a diversion pipe connected to the diversion channel is provided in the ice drink machine body 1, and the diversion pipe extends to the overflow tray 7. Moreover, in some scenarios with greater demand, a booster pump can be added to achieve active pumping and drainage.

[0069] For the convenience of use, in this solution, the ice drink machine body 1 is also provided with a front panel 19. The lower side of the front panel 19 has a notch for the overflow tray 7 to be inserted. An outlet interface 191 penetrating to the notch is also provided inside the front panel 19. The outlet interface 191 is opposite to the upper side of the overflow tray 7, and one end of the diversion pipe is installed on the outlet interface 191. It is equivalent to fixing and installing the diversion pipe through the front panel 19. In this way, when the overflow tray 7 is disassembled and cleaned, it does not affect the position of the diversion pipe, thereby avoiding the problem that the drainage position of the condensed water is uncertain due to the displacement of the diversion pipe.

[0070] Specifically, the overflow tray 7 includes a tray body 71 and an upper cover 72 provided on the tray body 71. The upper cover 72 is provided with a plurality of water leakage holes, and a through hole with a diameter greater than or equal to that of the outlet interface 191 is also provided at the position of the upper cover 72 opposite to the outlet interface 191. Considering that the condensed water also drips when discharging, in order to prevent it from splashing everywhere when dripping, in this solution, a through hole with an optimized size is opposite to its outlet interface 191, so that the dripping water can directly pass through the through hole and enter the inside of the tray body 71 as much as possible.

[0071] In the embodiment of the present invention, in order to prevent the condensed water on the outer periphery of the material bucket from dripping outside the body, the installation position 101 is an arc-shaped concave position adapted to the surface of the material bucket 2. When the material bucket 2 is installed on the ice drink machine body 1, the installation position 101 is placed in a wrapped state on the lower outer peripheral surface of the material bucket 2. Thus, when the condensed water generated on the outer periphery of the material bucket naturally falls, it can enter the installation position 101, and the design of the installation position 101 as an arc-shaped concave position can better collect the condensed water.

[0072] Preferably, in order to better make the condensed water fall into, when the material bucket 2 is installed on the ice drink machine body 1, a gap is left between the lower peripheral wall of the material bucket 2 and the installation position 101. In this way, the condensed water dripping from both sides onto the installation position 101 can flow into the bottom of the installation position through this gap, and then be discharged through the diversion structure 5. Moreover, for the convenience of confluence, the two side walls of the installation position 101 form diversion side surfaces with gradually decreasing widths, and the diversion side surfaces are used to divert the condensed water to the diversion bottom surface.

[0073] Specifically, the bottom of the installation position 101 is a diversion bottom surface that is inclined. The diversion inlet of the diversion structure 5 is located at the lowest position of the diversion bottom surface. The diversion bottom surface is inclined from the left and right sides and the front and back sides towards the middle. Through the inclined diversion bottom surface, when water droplets fall into the installation position and accumulate more and more, they naturally flow towards the lowest position and are discharged from the diversion structure 5.

[0074] The present invention provides an ice drink machine. A diversion structure is added at the installation position where the ice drink machine body is adapted to the material cylinder. Through the diversion structure, the condensed water falling into this installation position is diverted and discharged into an overflow tray for collection, avoiding the problem of water accumulation of the condensed water on the machine body, and there is no need to rely on manual wiping by the user. In addition, centralized collection is carried out by using the overflow tray, which is convenient for subsequent cleaning.

[0075] It should be understood that in the present invention, terms such as "first" and "second" are used to describe various information, but these information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present invention, "first" information can also be called "second" information. Similarly, "second" information can also be called "first" information. In addition, the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention.

[0076] The above is the preferred embodiment of the present invention. It should be noted that for those of ordinary skill in the art in the technical field, without departing from the principle of the present invention, several improvements and deformations can still be made, and these improvements and deformations are also regarded as the protection scope of the present invention.

Claims

1. An ice drink machine, characterized in that, It includes an ice drink machine body (1) and a material bucket (2) detachably installed on the ice drink machine body (1). The material bucket (2) has an inner cavity. The material bucket (2) is detachably installed on the ice drink machine body (1), and a discharging mechanism (29) is further provided on the front side of the material bucket (2). A stirring assembly and a condensation driving assembly located inside the inner cavity of the material bucket (2) are further provided on the ice drink machine body (1). The stirring assembly is sleeved on the condensation driving assembly. The stirring assembly includes a spiral blade (41) and a mounting part (42). The mounting part (42) is used for installing with the driving shaft of the condensation driving assembly. A first material pushing blade (43) is provided at the front end of the spiral blade (41). The first material pushing blade (43) is connected to the mounting part (42), and the outer periphery of the first material pushing blade (43) extends along the spiral track of the spiral blade (41). The end of the first material pushing blade (43) is located on the front side of the mounting part (42) to be close to the discharging mechanism (29).

2. The ice drink machine according to claim 1, characterized in that, The end of the first material pushing blade (43) further has a material blocking part (430) extending backward to the mounting part (42).

3. An ice drink machine according to claim 1 or 2, characterized in that, An installation position (101) adapted to the material bucket (2) is provided on the ice drink machine body (1). Matching positions for cooperating with the material bucket (2) are provided on both sides of the installation position (101). Under the action of the matching positions, the material bucket (2) is prevented from longitudinally moving relative to the installation position (101).

4. An ice drink machine according to claim 3, characterized in that, The matching positions include a first matching position (81) and a second matching position (82). The first matching position (81) and the second matching position (82) are on the same horizontal plane and extend along the installation direction of the material bucket (2). The first matching position (81) is close to the front side of the installation position (101) and has a first assembly opening (810) extending to the front end. The second matching position (82) has a second assembly opening (820) extending upward to the upper side of the installation position (101).

5. An ice drink machine according to claim 4, characterized in that, The outer peripheral surface of the material bucket (2) has assembly blocks, and the assembly blocks include a first assembly block (83) and a second assembly block (84). The first assembly block (83) and the second assembly block (84) are on the same side and satisfy: When the second assembly block (84) is located in the second assembly opening (820), the first assembly block (83) is located in the first assembly opening (810) or outside the first assembly opening (810) and is opposite to the first matching position (81).

6. The ice drink machine according to claim 5, characterized in that, The second assembly block (84) has an upper abutting part and a lower abutting part. After the second assembly block (84) enters the second matching position (82), the upper abutting part and the lower abutting part respectively abut against the upper and lower inner walls of the second matching position (82).

7. An ice drink machine according to claim 6, characterized in that, The upper abutting part and the lower abutting part are inclined to each other.

8. An ice drink machine according to claim 1 or 2, characterized in that, It further includes a buckle (3) for locking the barrel (2) onto the ice drink machine body (1). The buckle (3) includes a first lock (31), a second lock (32), and a connecting portion (33) connected between the first lock (31) and the second lock (32). The first lock (31) and the second lock (32) are respectively arranged on opposite sides of the ice drink machine body (1) and close to the edge (20) where the barrel (2) is docked with the ice drink machine body (1). Both sides of the barrel (2) have a locking structure (21) that cooperates with the first lock (31) and the second lock (32). The connecting portion (33) is used to drive the first lock (31) and the second lock (32) to act synchronously.

9. An ice drink machine according to claim 3, characterized in that, An overflow tray (7) is further provided on the front side of the ice drink machine body (1). The overflow tray (7) is located below the discharging mechanism (29). A diversion structure (5) is provided at the installation position (101). The diversion structure (5) is used to divert the condensed water at the installation position (101) onto the overflow tray (7).

10. An ice drink machine according to claim 9, characterized in that, The overflow tray (7) is detachably installed on the ice drink machine body (1).