Ice box anti-dropping structure of tea bar machine
Patent Information
- Application Number
- CN202522310751.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-31
AI Technical Summary
[0004]但上述的茶吧机存在以下缺点:储冰盒在抽拉过程中易脱离制冰仓,影响设备正常使用
1.采用在制冰仓和接冰盒之间设置防脱件,在防脱件上开设防脱槽,并在接冰盒侧壁设置防脱凸部的形式,具有防止接冰盒正常使用使脱离制冰仓,避免污染的效果。
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Figure CN224792134U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tea bar machine technology, and in particular to an ice box anti-detachment structure for a tea bar machine. Background Technology
[0002] Tea bar machines are a type of modern intelligent water dispensing equipment. With the ever-changing needs of users, the split ice box has become a trend. Early tea bar machines required manual addition of ice boxes, but the current mainstream models use an independent ice-making system to separate ice making from water dispensing.
[0003] Chinese patent CN119268201A discloses a tea bar machine with ice-making, refrigeration, and cold storage functions, including a main body. The main body includes a cabinet unit and an upper cover unit mounted on the cabinet unit. The cabinet unit contains a water storage unit, a compressor, and an ice-making compartment. The ice-making compartment contains an ice-making unit and a cold water tank. Fluid enters the ice-making unit through the water storage unit. The compressor cools and freezes the fluid in the ice-making unit. The fluid is turned into ice cubes after passing through the ice-making unit and falls into the ice-making compartment. The ice-making unit includes an ice-making evaporator, an upper ice-making seat, a lower ice-making seat, and an ice storage box. The ice-making evaporator is located at the top of the ice-making compartment. The upper ice-making seat is located below the ice-making evaporator. The lower ice-making seat is located below the upper ice-making seat. The ice storage box is located between the upper and lower ice-making seats.
[0004] However, the aforementioned tea bar machine has the following drawbacks: the ice storage box is prone to detaching from the ice-making chamber during the pulling process, affecting the normal use of the equipment. Utility Model Content
[0005] The purpose of this utility model is to provide an ice box anti-detachment structure for a tea bar machine, which makes it difficult for the ice box to detach from the ice-making chamber during the pulling process.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an ice box anti-detachment structure for a tea bar machine, comprising an ice-making chamber and an ice-receiving box installed in the ice-making chamber, an anti-detachment component is provided between the ice-making chamber and the ice-receiving box, the anti-detachment component has an anti-detachment groove, the side wall of the ice-receiving box has an anti-detachment protrusion corresponding to the anti-detachment groove, the anti-detachment groove has a first anti-detachment part, a second anti-detachment part and a third anti-detachment part, a first partition is provided between the first anti-detachment part and the second anti-detachment part, a second partition is provided between the second anti-detachment part and the third anti-detachment part, the anti-detachment protrusion cooperates with the anti-detachment groove to prevent detachment, and the first anti-detachment part has an arc surface whose shape and size are adapted to the anti-detachment protrusion.
[0007] By adopting the above technical solution, when the user takes out ice, he pulls out the ice receiving box, so that the anti-detachment protrusion of the ice receiving box abuts against the inner wall of the anti-detachment groove, preventing the ice receiving box from falling off the ice making chamber. When the anti-detachment protrusion cooperates with the first anti-detachment part, the outer surface of the anti-detachment protrusion fits against the arc surface, increasing the stability of the ice receiving box installation. In addition, when using the ice receiving box, the user can place the anti-detachment protrusion into the first anti-detachment part, the second anti-detachment part, or the third anti-detachment part according to the usage needs, so as to prevent the ice receiving box from falling off while having different opening angles to adapt to different usage needs.
[0008] A further feature of this invention is that: a rotating shaft is inserted through the middle of the anti-detachment component, and the end of the rotating shaft is fixed to the ice-making chamber. The anti-detachment component is rotatably engaged with the ice-making chamber through the rotating shaft. A limiting anti-rotation component is provided on the ice-making chamber. The limiting anti-rotation component is rotatably engaged with the ice-making chamber. When the limiting anti-rotation component rotates to the vertical position, the anti-detachment component and the limiting anti-rotation component stop and cooperate.
[0009] By adopting the above technical solution, the anti-detachment component can rotate around the pivot. When the limiting anti-rotation component rotates to the vertical position, the anti-detachment component is fixed to prevent the ice collection box from falling off. When the user needs to disassemble the ice collection box, the limiting anti-rotation component is rotated to the horizontal position. The user pulls out the ice collection box, causing the anti-detachment protrusion to push the bottom of the anti-detachment component. At this time, the anti-detachment component rotates around the pivot, and the anti-detachment protrusion slides out from the bottom of the anti-detachment component, making it easy to disassemble the ice collection box and clean it for the user.
[0010] A further feature of this invention is that the limiting and anti-rotation component includes a first limiting component and a second limiting component, the anti-detachment component is installed between the first limiting component and the second limiting component, and the first limiting component and the second limiting component are rotatably installed inside the ice-making chamber.
[0011] By adopting the above technical solution, when the anti-detachment protrusion cooperates with the first anti-detachment part, the anti-detachment component tends to rotate counterclockwise, and at this time, the upper end of the anti-detachment component abuts against the first limiting component; when the anti-detachment protrusion cooperates with the third anti-detachment protrusion, the anti-detachment component tends to rotate clockwise, and at this time, the upper end of the anti-detachment component abuts against the second limiting component, and the user can rotate the first limiting component and the second limiting component to control the movement and fixation of the anti-detachment component, thereby improving the anti-detachment performance of the ice box.
[0012] A further feature of this invention is that both the first limiting member and the second limiting member are provided with a limiting part, a control part, and a connecting rod. The connecting rod passes through the side wall of the ice-making chamber and connects the limiting part and the control part. The limiting part is located inside the ice-making chamber, and the control part is located outside the ice-making chamber. The control part controls the limiting part to rotate around the connecting rod.
[0013] By adopting the above technical solution, the user can rotate the control unit outside the ice-making chamber, and drive the limiting part inside the ice-making chamber to rotate through the connecting rod, thereby improving the ease of operation of the first and second limiting parts.
[0014] A further feature of this invention is that a tension spring is provided between the anti-detachment component and the ice-making chamber, one end of the tension spring is fixedly connected to the ice-making chamber, and the other end of the tension spring is fixedly connected to the anti-detachment component. The tension spring drives the anti-detachment component to rotate and then reset.
[0015] By adopting the above technical solution, when the user takes out the ice box, the anti-detachment component rotates relative to the inner wall of the ice chamber. During the rotation, the tension spring increases. After the ice box is pulled out, the tension spring contracts. Under the action of the tension spring and the gravity of the anti-detachment component, the anti-detachment component is reset in time.
[0016] A further feature of this invention is that the ice-receiving box includes a front cover and a box body, and a positioning and insertion structure is provided between the front cover and the box body, wherein the box body is positioned and engaged with the front cover through the positioning and insertion structure.
[0017] By adopting the above technical solution, the box is positioned by a positioning plug-in structure during installation, which improves the convenience and accuracy of assembly.
[0018] A further feature of this invention is that the positioning and insertion structure includes a first insertion protrusion and a first insertion groove. The first insertion protrusion is disposed on the box body, and the first insertion groove is correspondingly disposed on the front cover. The first insertion protrusion is positioned and inserted into the first insertion groove.
[0019] By adopting the above technical solution, when assembling the box body and the front cover, the first insertion protrusion is positioned and inserted into the first insertion groove, which restricts the displacement of the box body in the width direction, making assembly convenient.
[0020] A further feature of this invention is that the positioning and insertion structure includes a second insertion protrusion and a second insertion groove. The second insertion groove is located on the front cover, and a support portion is provided at the end of the second insertion groove. The second insertion protrusion is located on the box body, and the second insertion protrusion is positioned and inserted into the second insertion groove, with the end of the second insertion protrusion supported by the support portion.
[0021] By adopting the above technical solution, when the box is installed, the second insertion protrusion is positioned and inserted into the second insertion groove, which restricts the displacement of the box along the width and length directions. At the same time, the support part improves the stability and positioning accuracy of the box and the front cover assembly.
[0022] A further feature of this invention is that the ice receiving box is provided with a storage protrusion and a storage baffle, and the storage protrusion, the storage baffle and the inner wall of the ice receiving box form a storage space for storing the ice scoop.
[0023] By adopting the above technical solution, users can store the ice-receiving spoon inside the ice-receiving box, improving the utilization rate of the internal space of the ice-receiving box and making it easier for users to retrieve ice.
[0024] A further feature of this invention is that the ice receiving box is provided with a drainage structure, the drainage structure including a water outlet and a guide section, the guide section being inclined toward the water outlet.
[0025] By adopting the above technical solution, water may be generated inside the ice box when it is opened due to prolonged opening time. The water is guided to flow into the outlet and discharged through the guide part, preventing the ice box from becoming damp and breeding bacteria.
[0026] In summary, this utility model has the following beneficial effects: 1. By using an anti-detachment component between the ice-making chamber and the ice-receiving box, with an anti-detachment groove on the anti-detachment component and an anti-detachment protrusion on the side wall of the ice-receiving box, the ice-receiving box is prevented from detaching from the ice-making chamber during normal use, thus avoiding contamination.
[0027] 2. The device employs a first anti-detachment part, a second anti-detachment part, and a third anti-detachment part within the anti-detachment groove. The anti-detachment protrusion abuts against different anti-detachment parts, achieving the effect of preventing the ice box from detaching while providing different opening angles to adapt to different usage needs.
[0028] 3. It adopts an anti-detachment component that can rotate around the pivot and a rotatable limiting anti-rotation component on both sides of the anti-detachment component, which can control the fixation or movement of the anti-detachment component, thereby achieving the effect of making the ice box detachable and easy to clean. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0030] Figure 2 This is a schematic diagram of the overall structure of another embodiment of the present invention.
[0031] Figure 3 yes Figure 2 A magnified view of a portion of point A in the middle.
[0032] Figure 4 This is a schematic diagram of the anti-detachment component structure.
[0033] Figure 5 This is a structural diagram of a limit stop component.
[0034] Figure 6 This is a top view of the present invention.
[0035] Figure 7 yes Figure 6 A sectional view of section BB in the middle.
[0036] Figure 8 yes Figure 6 A sectional view of section CC.
[0037] Figure 9 This is a schematic diagram of the positioning and plugging structure.
[0038] Figure 10 This is a schematic diagram of the entire system for connecting the ice box.
[0039] In the diagram: 1. Ice maker; 2. Ice container; 21. Anti-detachment protrusion; 22. Front cover; 23. Box body; 24. Storage protrusion; 25. Storage baffle; 3. Anti-detachment component; 31. Anti-detachment groove; 311. First anti-detachment component; 312. Second anti-detachment component; 313. Third anti-detachment component; 314. First partition; 315. Second partition; 316. Arc surface; 32. Rotating shaft; 4. Limiting and anti-rotation component; 41. First limiting component; 411. Limiting part; 412. Connecting rod; 413. Control part; 42. Second limiting component; 5. Tension spring; 6. Positioning and plugging structure; 61. First plugging protrusion; 62. First plugging groove; 63. Second plugging protrusion; 64. Second plugging groove; 65. Support part; 7. Drainage structure; 71. Water outlet; 72. Flow guide part. Detailed Implementation
[0040] The present invention will be further described below with reference to the accompanying drawings.
[0041] Example 1 An ice box anti-detachment structure for a tea bar machine, such as Figure 1As shown, the device includes an ice-making chamber 1 and an ice-receiving box 2 detachably installed inside the ice-making chamber 1. An anti-detachment component 3 is provided between the ice-making chamber 1 and the ice-receiving box 2. The anti-detachment component 3 has an anti-detachment groove 31. Corresponding to the anti-detachment groove 31, an anti-detachment protrusion 21 is provided on the side wall of the ice-receiving box 2. The anti-detachment groove 31 has a first anti-detachment part 311, a second anti-detachment part 312, and a third anti-detachment part 313. A first partition 314 is provided between the first anti-detachment part 311 and the second anti-detachment part 312 and the third anti-detachment part 313. A second partition 315 is provided between 13, and the first anti-detachment part 311 has an arc surface 316 whose shape and size are adapted to the anti-detachment protrusion 21. When the user takes ice, the anti-detachment protrusion 21 can achieve anti-detachment engagement with the anti-detachment component 3 at any position among the first anti-detachment part 311, the second anti-detachment part 312, and the third anti-detachment part 313. During the use of the equipment, the anti-detachment protrusion 21 usually engages with the first anti-detachment part 311. At this time, the outer surface of the anti-detachment protrusion 21 fits against the arc surface 316, reducing the risk of detachment. The anti-detachment protrusion 21 wears down, and simultaneously abuts against the lower surface of the first partition 314, increasing the stability of the ice box 2 installation. The opening angle between the ice box 2 and the horizontal plane is relatively small. When the anti-detachment protrusion 21 engages with the second anti-detachment protrusion 21, the anti-detachment protrusion 21 abuts against the lower surface of the second partition 315. At this time, the opening angle between the ice box 2 and the horizontal plane becomes larger. When the anti-detachment protrusion 21 engages with the third anti-detachment protrusion 21, the anti-detachment protrusion 21 abuts against the lower surface of the second partition 314. On the inner wall of the anti-detachment groove 31, the opening angle formed by the opening of the ice box 2 and the horizontal plane is at its maximum. When using the ice box 22, the user can place the anti-detachment protrusion 21 into the first anti-detachment part 311, the second anti-detachment part 312, or the third anti-detachment part 313 according to the usage requirements. This prevents the ice box 2 from falling off while having different opening angles to adapt to different usage requirements. In other embodiments, the adjustable range of the opening angle of the ice box 2 can also be achieved by setting different numbers of anti-detachment parts in the anti-detachment groove 31.
[0042] like Figure 9As shown, in this embodiment, the ice-receiving box 2 includes a front cover 22 and a box body 23. A positioning and insertion structure 6 is provided between the front cover 22 and the box body 23. When the ice-receiving box 2 is assembled, the box body 23 is positioned and engaged with the front cover 22 through the positioning and insertion structure 6. The positioning and insertion structure 6 includes a first insertion protrusion 61 and a first insertion groove 62. The first insertion protrusion 61 is disposed on the box body 23, and the first insertion groove 62 is correspondingly disposed on the front cover 22. The first insertion protrusion 61 is positioned and inserted into the first insertion groove 62. The positioning and insertion structure 6 also includes a second insertion protrusion 63 and a second insertion groove 64. The second insertion groove 64 is disposed on the front cover 22, and the second insertion groove 64 is disposed on the front cover 22. The second insertion slot 64 has a support portion 65 at its end, and the second insertion protrusion 63 is provided on the box body 23. The second insertion protrusion 63 is positioned and inserted into the second insertion slot 64, and the end of the second insertion protrusion 63 is supported by the support portion 65. When the box body 23 is assembled with the front cover 22, the first insertion protrusion 61 is positioned and inserted into the first insertion slot 62, which restricts the displacement of the box body 23 along the width direction of the ice box 2. The second insertion protrusion 63 is inserted into the second insertion slot 64, which restricts the displacement of the box body 23 along the width and length directions. At the same time, the support portion 65 provides support, which improves the assembly stability and positioning accuracy of the box body 23 and the front cover 22.
[0043] like Figure 10 As shown, in this embodiment, the ice receiving box 2 is provided with a storage protrusion 24 and a storage baffle 25. The storage protrusion 24, the storage baffle 25 and the inner wall of the ice receiving box 2 form a storage space for storing the ice scoop. When the user stores the ice scoop in the ice receiving box 2, the storage baffle 25 abuts against the lower surface of the ice scoop body, and the other side of the storage baffle 25 abuts against the lower surface of the ice scoop handle. The storage protrusion 24 abuts against the bottom of the ice scoop, making the ice scoop less likely to be lost and improving the utilization rate of the internal space of the ice receiving box 2, making it convenient for the user to take ice.
[0044] like Figure 8 , 10 As shown, the ice collection box 2 is equipped with a drainage structure 7, which includes a water outlet 71 and a guide section 72. The guide section 72 is inclined towards the water outlet 71. When the ice collection box 2 is opened, water is easily generated inside the box due to the long opening time, which can lead to the growth of bacteria and contamination of the ice collection box 2. The guide section 72 guides the condensate or water generated by the melting of ice into the water outlet 71 and discharges it, thereby improving the dryness of the internal space of the ice collection box 2 and preventing the internal space of the ice collection box 2 from being damp and breeding bacteria.
[0045] Example 2 An ice box anti-detachment structure for a tea bar machine, such as Figure 2-5As shown, the difference between this embodiment and Embodiment 1 is that: a rotating shaft 32 is inserted through the middle of the anti-detachment component 3, and the end of the rotating shaft 32 is fixed to the ice-making chamber 1. The anti-detachment component 3 is rotatably engaged with the ice-making chamber 1 through the rotating shaft 32. The ice-making chamber 1 is provided with a limiting anti-rotation component 4, which is rotatably engaged with the ice-making chamber 1. The limiting anti-rotation component 4 includes a first limiting component 41 and a second limiting component 42. When the limiting anti-rotation component 4 is rotated to the vertical position, the anti-detachment component 3 is fixed, and the anti-detachment component 3 and the limiting anti-rotation component 4 stop and prevent the ice-receiving box 2 from falling off. When the user needs to disassemble the ice-receiving box 2, the limiting anti-rotation component 4 is rotated to the horizontal position, and the user pulls out the ice-receiving box. Box 2, causing the anti-detachment protrusion 21 to push the bottom of the anti-detachment component 3, at which time the anti-detachment component 3 rotates counterclockwise around the pivot 32, and the lower end of the anti-detachment component 3 forms a gap with the ice-making chamber 1. At the same time, the anti-detachment protrusion 21 slides down from the arc surface 316 and slides out from the gap between the lower end of the anti-detachment component 3 and the ice-making chamber 1, making it easy to disassemble the ice-receiving box 2 and easy for the user to clean the ice-receiving box 2. When the user reinstalls the ice-receiving box 2, the anti-detachment protrusion 21 pushes the lower end of the anti-detachment component 3 from the outside, causing the anti-detachment component 3 to rotate clockwise around the pivot 32. The anti-detachment protrusion 21 slides into the ice-making chamber 1 through the gap formed between the lower end of the anti-detachment component 3 and the ice-making chamber 1, so that the ice-receiving box 2 is reinserted into the ice-making chamber 1.
[0046] like Figure 2 , 3 As shown in Figure 5, both the first limiting member 41 and the second limiting member 42 are provided with a limiting part 411, a control part 413, and a connecting rod 412. The connecting rod 412 penetrates the side wall of the ice-making chamber 1 and connects the limiting part 411 and the control part 413. The limiting part 411 is located inside the ice-making chamber 1, and the control part 413 is located outside the ice-making chamber 1. The user can rotate the control part 413 outside the ice-making chamber 1, which will drive the limiting part 411 inside the ice-making chamber 1 to rotate synchronously through the connecting rod 412. In addition, In this embodiment, a tension spring 5 is provided between the anti-detachment component 3 and the ice-making chamber 1. One end of the tension spring 5 is connected to the inner wall of the ice-making chamber 1, and the other end of the tension spring 5 is connected to the fixing ring at the upper end of the anti-detachment component 3. When the user takes out the ice box 2, the anti-detachment component 3 rotates counterclockwise relative to the inner wall of the ice-making chamber 1. During the rotation, the tension spring 5 extends and the elastic force increases. After the ice box 2 is pulled out, the tension spring 5 contracts. Under the action of the elastic force and the gravity of the anti-detachment component 3, the anti-detachment component 3 is reset in time.
[0047] The basic working principle of this utility model is as follows: An anti-detachment component 3 is provided between the ice-making chamber 1 and the ice-receiving box 2. An anti-detachment groove 31 is provided on the anti-detachment component 3. An anti-detachment protrusion 21 is provided on the side wall of the ice-receiving box 2. The anti-detachment groove 31 is provided with a first anti-detachment part 311, a second anti-detachment part 312 and a third anti-detachment part 313. When the user pulls out the ice-receiving box 2, the anti-detachment protrusion 21 and the anti-detachment groove 31 cooperate to prevent the ice-receiving box 2 from falling off. When the anti-detachment protrusion 21 is located at the first anti-detachment part 311, the opening angle formed by the opening of the ice-receiving box 2 and the horizontal plane is the smallest. When the anti-detachment protrusion 21 is located at the second anti-detachment part 312, the opening angle formed by the opening of the ice-receiving box 2 and the horizontal plane is medium. When the anti-detachment protrusion 21 is located at the third anti-detachment part 313, the opening angle formed by the opening of the ice-receiving box 2 and the horizontal plane is the largest. This has the effect that the ice-receiving box 2 is not easy to detach from the ice-making chamber 1 during the pulling process, and the opening angle of the ice-receiving box 2 is adjustable.
[0048] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. An ice box anti-detachment structure for a tea bar machine, comprising an ice-making chamber (1) and an ice-receiving box (2) installed within the ice-making chamber (1), characterized in that: An anti-detachment component (3) is provided between the ice-making chamber (1) and the ice-receiving box (2). An anti-detachment groove (31) is provided on the anti-detachment component (3). An anti-detachment protrusion (21) is provided on the side wall of the ice-receiving box (2) corresponding to the anti-detachment groove (31). The anti-detachment groove (31) is provided with a first anti-detachment part (311), a second anti-detachment part (312) and a third anti-detachment part (313). A first partition (314) is provided between the first anti-detachment part (311) and the second anti-detachment part (312). A second partition (315) is provided between the second anti-detachment part (312) and the third anti-detachment part (313). The anti-detachment protrusion (21) cooperates with the anti-detachment groove (31) to prevent detachment. The first anti-detachment part (311) is provided with an arc surface (316) whose shape and size are adapted to the anti-detachment protrusion (21).
2. The ice box anti-detachment structure of a tea bar machine according to claim 1, characterized in that: The anti-detachment component (3) has a rotating shaft (32) through its middle part. The end of the rotating shaft (32) is fixed on the ice-making chamber (1). The anti-detachment component (3) is rotatably engaged with the ice-making chamber (1) through the rotating shaft (32). The ice-making chamber (1) is provided with a limiting anti-rotation component (4). The limiting anti-rotation component (4) is rotatably engaged with the ice-making chamber (1). When the limiting anti-rotation component (4) rotates to the vertical position, the anti-detachment component (3) and the limiting anti-rotation component (4) stop and cooperate.
3. The ice box anti-detachment structure of a tea bar machine according to claim 2, characterized in that: The limiting and anti-rotation component (4) includes a first limiting component (41) and a second limiting component (42). The anti-detachment component (3) is installed between the first limiting component (41) and the second limiting component (42). The first limiting component (41) and the second limiting component (42) are rotatably installed inside the ice-making chamber (1).
4. The ice box anti-detachment structure of a tea bar machine according to claim 3, characterized in that: Both the first limiting member (41) and the second limiting member (42) are provided with a limiting part (411), a control part (413) and a connecting rod (412). The connecting rod (412) passes through the side wall of the ice-making chamber (1) and connects the limiting part (411) and the control part (413). The limiting part (411) is located inside the ice-making chamber (1), and the control part (413) is located outside the ice-making chamber (1). The control part (413) controls the limiting part (411) to rotate around the connecting rod (412).
5. The ice box anti-detachment structure of a tea bar machine according to claim 1, characterized in that: A tension spring (5) is provided between the anti-detachment component (3) and the ice-making chamber (1). One end of the tension spring (5) is fixedly connected to the ice-making chamber (1), and the other end of the tension spring (5) is fixedly connected to the anti-detachment component (3). The tension spring (5) drives the anti-detachment component (3) to rotate and then reset.
6. The ice box anti-detachment structure of a tea bar machine according to claim 1, characterized in that: The ice box (2) includes a front cover (22) and a box body (23). A positioning and insertion structure (6) is provided between the front cover (22) and the box body (23). The box body (23) is positioned and engaged with the front cover (22) through the positioning and insertion structure (6).
7. The ice box anti-detachment structure of a tea bar machine according to claim 6, characterized in that: The positioning and plugging structure (6) includes a first plugging protrusion (61) and a first plugging groove (62). The first plugging protrusion (61) is disposed on the box body (23), and the first plugging groove (62) is disposed on the front cover (22). The first plugging protrusion (61) is positioned and plugged into the first plugging groove (62).
8. The ice box anti-detachment structure of a tea bar machine according to claim 6, characterized in that: The positioning and plugging structure (6) includes a second plugging protrusion (63) and a second plugging groove (64). The second plugging groove (64) is provided on the front cover (22). The end of the second plugging groove (64) is provided with a support part (65). The second plugging protrusion (63) is provided on the box body (23). The second plugging protrusion (63) is positioned and plugged into the second plugging groove (64), and the end of the second plugging protrusion (63) is supported by the support part (65).
9. The ice box anti-detachment structure of a tea bar machine according to claim 1, characterized in that: The ice receiving box (2) is provided with a storage protrusion (24) and a storage baffle (25). The storage protrusion (24), the storage baffle (25) and the inner wall of the ice receiving box (2) form a storage space for storing the ice scoop.
10. The ice box anti-detachment structure of a tea bar machine according to claim 1, characterized in that: The ice receiving box (2) is provided with a drainage structure (7), which includes a water outlet (71) and a guide section (72), and the guide section (72) is inclined toward the water outlet (71).
Citation Information
Patent Citations
Tea bar machine with functions of ice making, refrigeration and cold storage
CN119268201A