Ice cleaning machine convenient to assemble
By adopting structures such as connecting brackets, rotating shafts and give way slots in the ice cleaner, the assembly process of the ice crushing device is simplified, and the problems of large volume and complex assembly of the ice crushing device in the existing ice cleaner are solved, thereby achieving efficient assembly and space optimization.
Patent Information
- Application Number
- CN202422420619.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The ice crushing device in the existing ice cleaning machine has a large volume and a complex assembly structure, resulting in cumbersome assembly and an increase in the volume of the entire machine.
The first and second installation structures are used to connect the ice crushing mechanism to the refrigerator and the cold water tank, and the assembly process is simplified by connecting components such as brackets, rotary shafts and give way slots, improving assembly efficiency, and optimizing space utilization.
The assembly process of the ice crushing mechanism is simplified, the assembly efficiency of the ice cleaning machine is improved, the volume of the whole machine is reduced, and the utilization rate of high space is improved.
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Figure CN223258426U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of ice making and water drinking machines, in particular to an ice purifier which is easy to assemble. Background Art
[0002] An ice purifier, also known as an ice water dispenser, is an appliance that purifies and makes ice. A typical ice purifier can prepare pure water, use it to make and dispense ice, and can also deliver drinkable water at room temperature, hot water, and chilled water.
[0003] To further enhance the functionality of ice purifiers, an ice crushing mechanism is provided in the ice purifier to enable the ice purifier to deliver crushed ice to users, thereby meeting their needs. However, in existing ice purifiers, the ice crushing cutters are relatively large, resulting in a relatively large overall ice crushing device. To ensure a stable connection of the ice crushing device within the ice purifier, the ice crushing device is often installed within the ice purifier using a more complex assembly structure, making assembly of the ice crushing device very cumbersome and increasing the overall size of the ice purifier.
[0004] The present invention is proposed in view of the deficiencies in the prior art. Utility Model Content
[0005] The present invention aims to solve the problems that the ice crushing device in the ice purifier in the prior art mentioned above is large in size, and the assembly structure of the ice crushing device is complex, the assembly is cumbersome, and the overall size of the ice purifier is increased. The utility model proposes an ice purifier that is easy to assemble.
[0006] The technical solution adopted by the utility model to solve its technical problems is:
[0007] An ice purifier that is easy to assemble includes a body, the body including an ice making refrigerator and a cold water tank arranged in the body, and an ice crushing mechanism arranged between the ice making refrigerator and the cold water tank, a first mounting structure is provided between the ice crushing mechanism and the ice making refrigerator, and a second mounting structure is provided between the ice crushing mechanism and the cold water tank.
[0008] As described above, an ice purifier that is easy to assemble, the first mounting structure includes a connecting bracket arranged between the ice crushing mechanism and the ice making refrigerator, a first connecting part arranged on the ice making refrigerator, the connecting bracket includes a second connecting part arranged corresponding to the first connecting part, and a third connecting part that can be connected to the ice crushing mechanism, and the connecting bracket is connected to the ice making refrigerator by correspondingly connecting the second connecting part to the first connecting part.
[0009] As described above, in an ice purifier that is easy to assemble, the ice crushing mechanism includes a rotating shaft arranged in the body, an opening for the rotating shaft to pass through is provided at the bottom of the ice making refrigerator, at least a portion of the rotating shaft passes through the opening and extends into the ice making refrigerator, and the rotating shaft is connected to the third connecting part via a transmission connecting member.
[0010] As described above, the ice purifier is easy to assemble, and the connecting bracket also includes a connecting rod connected between the second connecting part and the third connecting part; the second connecting part is provided with a plurality of connecting rods and is respectively connected to the peripheral side of the third connecting part through the connecting rods, the first connecting part is arranged corresponding to the second connecting part, and the ice purifier is also provided with an inner cavity connected to the opening, and an interval space connected to the inner cavity and the opening is provided between any two of the connecting rods.
[0011] In the ice purifier that is easy to assemble as described above, the connecting bracket further includes a reinforcing rib connected to the connecting rod, and the reinforcing rib is connected between the connecting rod and the second connecting portion and / or the third connecting portion.
[0012] As described above, an ice purifier that is easy to assemble, the cold water tank includes a first shell arranged in the body, the second mounting structure includes a clearance groove arranged in the first shell, at least a portion of the ice crushing mechanism can extend into the clearance groove, and an assembly gap can be formed between the inner wall of the clearance groove and the portion of the ice crushing mechanism extending into the clearance groove.
[0013] As described above, an ice purifier that is easy to assemble, the give way groove includes a first groove and a second groove connected to each other up and down, at least a portion of the ice crushing mechanism can extend into the first groove and the second groove, a first assembly gap is formed between the inner wall of the first groove and the ice crushing mechanism, and a second assembly gap is formed between the inner wall of the second groove and the ice crushing mechanism.
[0014] In the ice purifier that is easy to assemble as described above, the inner diameter of the first groove is larger than the inner diameter of the second groove.
[0015] As described above, an ice purifier that is easy to assemble is further provided with a third mounting structure between the ice making refrigerator and the ice crushing mechanism. The ice crushing mechanism includes a second shell provided in the body, and an upwardly open accommodating cavity provided in the second shell. At least a portion of the ice making refrigerator can extend into the accommodating cavity. The third mounting structure includes a fourth connecting portion provided in the ice making refrigerator and a fifth connecting portion provided in the second shell. The ice making refrigerator is connected to the ice crushing mechanism through the corresponding connection between the fourth connecting portion and the fifth connecting portion.
[0016] In the ice purifier that is easy to assemble as described above, the ice making refrigerator is further provided with an extension portion extending downward, the extension portion can abut against the second shell, and the fourth connecting portion is provided on one side of the extension portion.
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] In the ice purifier of the present invention, the ice making bin, ice crushing mechanism, and ice water tank are sequentially connected from top to bottom. The upper end of the ice crushing mechanism is connected to the ice making bin via a first mounting structure, and the lower end of the ice crushing mechanism is connected to the cold water tank via a second mounting structure. The ice crushing mechanism can be directly installed between the ice making bin and the cold water tank via the first and second mounting structures, which helps simplify the assembly of the ice crushing mechanism in the ice purifier, improves the assembly efficiency of the ice crushing mechanism, and thus improves the assembly efficiency of the entire ice purifier. Furthermore, by vertically installing the ice making bin, ice crushing mechanism, and cold water tank in the ice purifier, it helps improve the height space utilization of the entire ice purifier and reduces the volume of the entire ice purifier.
[0019] The present invention will be further described below with reference to the accompanying drawings and specific implementation methods. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 The utility model is a disassembly of the refrigerator, ice crushing mechanism and cold water tank Figure 1 ;
[0021] Figure 2 The utility model is a disassembly of the refrigerator, ice crushing mechanism and cold water tank Figure 2 ;
[0022] Figure 3 This is a top view of the refrigerator of the present invention;
[0023] Figure 4 for Figure 3 A-A sectional view in FIG;
[0024] Figure 5 It is a top view of the ice making refrigerator, ice crushing mechanism and cold water tank of the present invention;
[0025] Figure 6 for Figure 5 B-B section Figure 1 (Hide cold water tank);
[0026] Figure 7 for Figure 5 B-B section Figure 2 (Hidden refrigerator);
[0027] Figure 8 for Figure 5 C-C sectional view (hidden cold water tank). DETAILED DESCRIPTION
[0028] The following describes the embodiments of the present invention in detail with reference to the accompanying drawings.
[0029] Example 1:
[0030] like Figure 1 As shown in FIG8 , the present invention provides an ice purifier that is easy to assemble, comprising a body, the body comprising an ice making refrigerator 1 and a cold water tank 2 disposed therein, and an ice crushing mechanism 3 disposed between the ice making refrigerator 1 and the cold water tank 2. A first mounting structure is provided between the ice crushing mechanism 3 and the ice making refrigerator 1, and a second mounting structure is provided between the ice crushing mechanism 3 and the cold water tank 2. In this embodiment, the ice making refrigerator 1, the ice crushing mechanism 3, and the ice water tank are sequentially connected from top to bottom, wherein the upper end of the ice crushing mechanism 3 is connected to the ice making refrigerator 1 via the first mounting structure, and the lower end of the ice crushing mechanism 3 is connected to the cold water tank 2 via the second mounting structure. During installation, the cold water tank 2 can be fixedly installed in the body first, and then the ice crushing mechanism 3 and the refrigerator 1 can be installed in sequence. The ice crushing mechanism 3 is directly installed between the refrigerator 1 and the cold water tank 2 through the first installation structure and the second installation structure, which is conducive to simplifying the assembly of the ice crushing mechanism 3 in the ice purifier and improving the assembly efficiency of the ice crushing mechanism 3, thereby improving the assembly efficiency of the entire ice purifier. Moreover, by longitudinally installing the refrigerator 1, the ice crushing mechanism 3 and the cold water tank 2 in the ice purifier, it is conducive to improving the utilization rate of the height space of the entire ice purifier and reducing the volume of the entire ice purifier.
[0031] More specifically, Figure 1As shown in FIG. 7 , the first mounting structure includes a connecting bracket 41 disposed between the ice crushing mechanism 3 and the ice making refrigerator 1, and a first connecting portion 11 disposed on the ice making refrigerator 1. The connecting bracket 41 includes a second connecting portion 411 corresponding to the first connecting portion 11, and a third connecting portion 412 capable of connecting to the ice crushing mechanism 3. The connecting bracket 41 is connected to the ice making refrigerator 1 by correspondingly connecting the second connecting portion 411 to the first connecting portion 11. Furthermore, an opening 12 is provided at the bottom of the ice making refrigerator 1 for the rotating shaft 31 to pass through. At least a portion of the rotating shaft 31 passes through the opening 12 and extends into the ice making refrigerator 1. The rotating shaft 31 is connected to the third connecting portion 412 via a transmission connector 42. In this embodiment, the ice crushing mechanism 3 can be used for crushing ice. The ice crushing mechanism 3 generally includes an ice crushing blade and a driving device connected to the ice crushing blade. One of the common ice crushing methods is to crush ice with the ice crushing blade. The driving device can drive the ice crushing blade to rotate and crush ice, or the driving device can drive the box body containing ice cubes to rotate relative to the ice crushing blade, thereby driving the ice cubes to rotate relative to the ice crushing blade to achieve ice crushing. The ice crushing mechanism 3 also includes a rotating shaft 31, one end of which can be connected to the driving device to achieve rotation, and the other end passes through the opening 12 and extends into the interior of the refrigerator 1. The ice crushing blade or the box body containing ice cubes can be connected to the rotating shaft 31 and rotate synchronously with the rotating shaft 31. Moreover, the first connecting portion 11 is provided on the inner wall of the refrigerator 1. During installation, the rotating shaft 31 is connected to the third connecting portion 412 of the connecting bracket 41 through a transmission connecting member 42 to ensure that the rotating shaft 31 can rotate normally, thereby ensuring that the ice crushing mechanism 3 can crush ice normally. The second connection portion 411 of the connecting bracket 41 is correspondingly connected to the first connection portion 11 so that the connecting bracket 41 can be fixedly installed inside the ice making refrigerator 1; by providing an opening 12 at the bottom of the ice making refrigerator 1, the rotating shaft 31 can pass through the opening 12 and extend into the interior of the ice making refrigerator 1, so as to enhance the assembly tightness between the ice making refrigerator 1 and the ice crushing mechanism 3. In addition, the connecting bracket 41 is fixedly installed inside the ice making refrigerator 1, and the rotating shaft 31 is rotatably installed in the connecting bracket 41 through the transmission connecting member 42. When the ice crushing mechanism 3 crushes ice, the rotating shaft 31 can rotate relative to the connecting bracket 41, and the connecting bracket 41 is fixed relative to the rotating shaft 31 and the ice making refrigerator 1. The fixed connection between the connecting bracket 41 and the ice making refrigerator 1 can enhance the stability of the connecting bracket 41, and the connection between the connecting bracket 41 and the rotating shaft 31 enhances the rotational stability of the rotating shaft 31, thereby enhancing the structural stability of the ice crushing mechanism 3 when crushing ice.
[0032] As a preferred implementation manner of this embodiment but not limitation, the first connection portion 11 and the second connection portion 411 can be detachably connected by plugging, snapping, threading, or fastener connection. Preferably, as Figure 4 and Figure 5 The figure shows one of the specific embodiments of the first connecting part 11 and the second connecting part 411. In order to facilitate installation and further enhance the connection stability of the connecting bracket 41, the first connecting part 11 can be set as a first mounting column connected to the inner wall of the refrigerator 1, and the second connecting part 411 can be set as a matching part connected to the first mounting column, and the first mounting column and the matching part are both provided with aligned internal threaded holes. During installation, the second connecting part 411 can be clamped on the first connecting part 11 through the matching part, so that the internal threaded holes of the first mounting column and the matching part are aligned, and are locked in the above two internal threaded holes through fasteners such as screws and bolts to realize the connection between the second connecting part 411 and the first connecting part 11, thereby connecting the connecting bracket 41 to the refrigerator 1. The above-mentioned first connecting part 11 and the second connecting part 411 have simple structures and are easy to assemble.
[0033] As a preferred implementation of this embodiment but not limiting, the transmission connection member 42 can be a bearing member, a coupling, a hinged connection member, etc. In addition, in order to facilitate the installation of the transmission connection member 42, such as Figure 2 and Figure 6 The figure shows one specific embodiment of the third connecting part 412. The third connecting part 412 can be provided with a downwardly open mounting groove to install the transmission connecting member 42, and at least a portion of the rotating shaft 31 can extend into the mounting groove and be connected to the transmission connecting member 42; the above-mentioned third connecting part 412 has a simple structure and is easy to assemble.
[0034] In the ice purifier, the ice making refrigerator 1 can accommodate ice cubes. In order to ensure that the ice cubes can be transported from the ice making refrigerator 1 to the ice crushing mechanism 3, as shown in FIG. Figure 1 、 Figure 5 and Figure 8As shown, the connecting bracket 41 also includes a connecting rod 413 connected between the second connecting part 411 and the third connecting part 412; the second connecting part 411 is provided with a plurality of connecting rods 413 and is respectively connected to the peripheral side of the third connecting part 412 through the connecting rods 413, the first connecting part 11 is arranged corresponding to the second connecting part 411, and the refrigerator 1 is also provided with an inner cavity 13 connected to the opening 12, and an interval space 414 connected to the inner cavity 13 and the opening 12 is provided between any two of the connecting rods 413. In this embodiment, the ice making refrigerator 1 is provided with an inner cavity 13 capable of accommodating ice cubes, and the connecting bracket 41 is installed at the bottom of the inner cavity 13, wherein the third connecting portion 412 can be set as a columnar connecting portion, and the connecting rods 413 are provided with a plurality of them and are evenly distributed along the circumference of the third connecting portion 412, and the end of each connecting rod 413 away from the third connecting portion 412 is provided with a second connecting portion 411, and the number and position of the first connecting portions 11 in the ice making refrigerator 1 correspond to the second connecting portions 411, and a spacing space 414 connected to the inner cavity 13 and the opening 12 is formed between any two of the connecting rods 413, and the spacing space 414 can allow ice cubes to pass through, and the ice cubes located in the inner cavity 13 of the ice making refrigerator 1 can freely fall into the ice crushing mechanism 3 through the spacing space 414 and the opening 12, without the need to additionally set up an ice cube conveying channel, which is beneficial to simplifying the path of conveying ice cubes in the ice purifier and reducing the energy consumption of conveying ice cubes by the ice purifier. Preferably, three connecting rods 413, second connecting parts 411 and first connecting parts 11 can be provided correspondingly, so as to ensure that the space for ice cubes to pass through in the interval space 414 is expanded as much as possible on the basis of ensuring the connection stability of the connecting bracket 41, so that more ice cubes of different sizes can pass through the interval space 414 smoothly.
[0035] As a preferred implementation of this embodiment but not limiting, in order to enhance the structural stability of the connecting bracket 41, as Figure 1 As shown, the connecting bracket 41 further includes a reinforcing rib 415 connected to the connecting rod 413, and the reinforcing rib 415 is connected between the connecting rod 413 and the second connecting portion 411 and / or the third connecting portion 412. In this embodiment, the reinforcing rib 415 can be connected between the connecting rod 413 and the second connecting portion 411, or between the connecting rod 413 and the third connecting portion 412, or between the connecting rod 413 and both the second connecting portion 411 and the third connecting portion 412.
[0036] As a preferred implementation mode of this embodiment but not a limitation, the connecting bracket 41 can be an integrally formed structure, that is, the second connecting part 411, the connecting rod 413, the third connecting part 412 and the reinforcing rib 415 are formed by integral molding, which further enhances the structural stability of the connecting bracket 41, and is also conducive to simplifying the manufacturing process of the connecting bracket 41 and improving the production efficiency and assembly efficiency of the connecting bracket 41.
[0037] On the other hand, Figure 1 and Figure 7 As shown, the cold water tank 2 includes a first shell 21 disposed within the body, and the second mounting structure includes a clearance groove 22 disposed in the first shell 21. At least a portion of the ice crushing mechanism 3 can extend into the clearance groove 22, and an assembly gap can be formed between the inner wall of the clearance groove 22 and the portion of the ice crushing mechanism 3 extending into the clearance groove 22. In this embodiment, the top of the first shell 21 is recessed downward to form the clearance groove 22. During installation, at least a portion of the bottom of the ice crushing mechanism 3 can extend into the clearance groove 22, thereby improving the assembly tightness between the cold water tank 2 and the ice crushing mechanism 3. In addition, by providing the clearance groove 22, the distance between the cold water tank 2 and the ice crushing mechanism 3 can be reduced, thereby reducing the occupancy rate of the ice crushing mechanism 3 in the internal height space of the ice purifier. In addition, during installation, if the portion of the ice crushing mechanism 3 extending into the clearance groove 22 includes a drive device such as a motor, in order to prevent the drive device from generating vibration during operation and affecting the cold water tank 2, the portion of the ice crushing mechanism 3 extending into the clearance groove 22 can be arranged relative to the inner wall of the clearance groove 22 to form an assembly gap, that is, the inner diameter of the clearance groove 22 is larger than the outer diameter of the bottom of the ice crushing mechanism 3. In actual production, the specific width of the assembly gap can be determined according to the size of the portion extending into the ice crushing mechanism 3 and the specifications of the cold water tank 2. The above-mentioned second installation structure is simple in structure and easy to assemble.
[0038] Specifically, such as Figure 7 As shown, the clearance groove 22 includes a first groove 221 and a second groove 222 connected to each other from top to bottom, that is, the first groove 221 is provided at the upper part of the second groove 222, and at least part of the ice crushing mechanism 3 can extend into the first groove 221 and the second groove 222. A first assembly gap 231 is formed between the inner wall of the first groove 221 and the ice crushing mechanism 3, and a second assembly gap 232 is formed between the inner wall of the second groove 222 and the ice crushing mechanism 3. Figure 2 and Figure 7As shown, the protruding portion of the ice crushing mechanism 3 corresponding to the first groove 221 is the first protruding portion 33, and the protruding portion of the ice crushing mechanism 3 corresponding to the second groove 222 is the second protruding portion 34. During installation, the second protruding portion 34 and the first protruding portion 33 of the ice crushing mechanism 3 can be installed on the upper side of the cold water tank 2 through the first groove 221 and the second groove 222 in sequence, and the first protruding portion 33 and the inner wall of the first groove 221 form the first assembly gap 231, and the second protruding portion 34 and the inner wall of the second groove 222 form the second assembly gap 232.
[0039] In this embodiment, to ensure that at least part of the ice crushing mechanism 3 fits smoothly within the first groove 221 and the second groove 222, the inner diameter of the first groove 221 is larger than the inner diameter of the second groove 222. Furthermore, the cold water tank 2 is capable of storing water. This arrangement facilitates enhancing the tightness of the assembly between the ice crushing mechanism 3 and the cold water tank 2 while maximizing the water storage space within the cold water tank 2. In actual production, the inner diameters of the first groove 221 and the second groove 222 can be appropriately determined based on the portion of the ice crushing mechanism 3 that extends therein.
[0040] Example 2:
[0041] The difference between this embodiment 2 and the above embodiment 1 is that Figure 1As shown, a third mounting structure is further provided between the refrigerator 1 and the ice crushing mechanism 3. The ice crushing mechanism 3 includes a second shell 32 provided in the body, and an upwardly open accommodating cavity 321 provided in the second shell 32. At least a portion of the refrigerator 1 can extend into the accommodating cavity 321. The third mounting structure includes a fourth connecting portion 14 provided on the refrigerator 1 and a fifth connecting portion 322 provided on the second shell 32. The refrigerator 1 is connected to the ice crushing mechanism 3 by correspondingly connecting the fourth connecting portion 14 and the fifth connecting portion 322. In this embodiment, the bottom of the refrigerator 1 can be set to a bottom extending downward and with a gradually narrowing width, such as a funnel-shaped bottom. When installed, at least a portion of the bottom of the refrigerator 1 can extend into the accommodating cavity 321, so as to reduce the spacing distance between the refrigerator 1 and the ice crushing mechanism 3 and enhance the assembly tightness between the refrigerator 1 and the ice crushing mechanism 3. Specifically, as a preferred embodiment of the present invention but not a limitation, the fourth connecting portion 14 can be set on the bottom outer wall of the refrigerator 1, and the fourth connecting portion 14 can be set as a second mounting column extending downward. The fifth connecting portion 322 can be configured as a connecting plate extending along the outer side of the top of the second shell 32. The second mounting post and the connecting plate are each provided with a corresponding internally threaded hole. During installation, the refrigerator 1 is placed on the second shell 32, and the internally threaded holes in the second mounting post and the connecting plate are aligned. Fasteners such as screws and bolts are then fastened to the two internally threaded holes, thereby connecting the refrigerator 1 to the ice crushing mechanism 3 via the third mounting structure. The fourth connecting portion 14 and the fifth connecting portion 322 are simple in structure and easy to assemble. To further enhance the connection stability between the refrigerator 1 and the ice crushing mechanism 3, a plurality of the fourth connecting portion 14 and the fifth connecting portion 322 can optionally be provided.
[0042] As a preferred embodiment of the present invention but not a limitation, in order to further enhance the connection stability between the refrigerator 1 and the ice crushing mechanism 3, as shown in FIG. Figure 2 、 Figure 4 and Figure 6 As shown, the refrigerator 1 is further provided with a downwardly extending extension portion 15, which is capable of abutting against the second shell 32, and the fourth connecting portion 14 is provided on one side of the extension portion 15. In this embodiment, the extension portion 15 is provided at the bottom of the refrigerator 1 and corresponds to the inner wall of the accommodating cavity 321. That is, when installed, the extension portion 15 contacts the top of the second shell 32, and the inner wall of the extension portion 15 connects with the inner wall of the accommodating cavity 321 to form a flat inner wall surface. The fourth connecting portion 14 is preferably provided on the outside of the extension portion 15 to facilitate the corresponding connection between the fourth connecting portion 14 and the fifth connecting portion 322.
[0043] As a preferred embodiment of the present invention but not a limitation, the fourth connecting portion 14, the extension portion 15 and the refrigerator 1 are an integrally formed structure, so as to enhance the structural stability of the refrigerator 1, simplify the manufacturing process of the refrigerator 1, and thus improve the production efficiency and assembly efficiency of the refrigerator 1; the fifth connecting portion 322 and the second shell 32 are an integrally formed structure, so as to enhance the structural stability of the second shell 32, simplify the manufacturing process of the second shell 32, and thus improve the production efficiency and assembly efficiency of the second shell 32.
[0044] The above examples are merely used to further illustrate the technical content of the present invention for easier understanding by the reader. However, they do not limit the implementation of the present invention to these examples. Any technical extension or reinvention based on the present invention is protected by the present invention. The scope of protection of the present invention shall be determined by the claims.
Claims
1. An ice purifier that is easy to assemble, comprising a body, characterized in that: The machine body comprises an ice making refrigerator (1) and a cold water tank (2) arranged therein, and an ice crushing mechanism (3) arranged between the ice making refrigerator (1) and the cold water tank (2); a first mounting structure is provided between the ice crushing mechanism (3) and the ice making refrigerator (1), and a second mounting structure is provided between the ice crushing mechanism (3) and the cold water tank (2).
2. The ice purifier that is easy to assemble according to claim 1, characterized in that: The first mounting structure comprises a connecting bracket (41) provided between the ice crushing mechanism (3) and the ice making refrigerator (1), and a first connecting portion (11) provided on the ice making refrigerator (1); the connecting bracket (41) comprises a second connecting portion (411) provided corresponding to the first connecting portion (11), and a third connecting portion (412) capable of being connected to the ice crushing mechanism (3); the connecting bracket (41) is connected to the ice making refrigerator (1) by correspondingly connecting the second connecting portion (411) to the first connecting portion (11).
3. The ice purifier that is easy to assemble as claimed in claim 2, characterized in that: The ice crushing mechanism (3) comprises a rotating shaft (31) disposed in the body; an opening (12) for the rotating shaft (31) to pass through is provided at the bottom of the ice making refrigerator (1); at least a portion of the rotating shaft (31) passes through the opening (12) and extends into the ice making refrigerator (1); and the rotating shaft (31) is connected to the third connecting portion (412) via a transmission connecting member (42).
4. The ice purifier that is easy to assemble as claimed in claim 3, characterized in that: The connecting bracket (41) further includes a connecting rod (413) connected between the second connecting portion (411) and the third connecting portion (412); the second connecting portion (411) is provided with a plurality of connecting rods (413) connected to the peripheral side of the third connecting portion (412) respectively through the connecting rods (413); the first connecting portion (11) and the second connecting portion (411) are provided correspondingly; the refrigerator (1) further includes an inner cavity (13) communicating with the opening (12); and an interval space (414) communicating with the inner cavity (13) and the opening (12) is provided between any two of the connecting rods (413).
5. The ice purifier that is easy to assemble as claimed in claim 4, characterized in that: The connecting bracket (41) further comprises a reinforcing rib (415) connected to the connecting rod (413), wherein the reinforcing rib (415) is connected between the connecting rod (413) and the second connecting portion (411) and / or the third connecting portion (412).
6. The ice purifier that is easy to assemble as claimed in claim 1, characterized in that: The cold water tank (2) comprises a first shell (21) arranged in the body, the second mounting structure comprises a clearance groove (22) arranged in the first shell (21), at least a portion of the ice crushing mechanism (3) can extend into the clearance groove (22), and an assembly gap can be formed between the inner wall of the clearance groove (22) and the portion of the ice crushing mechanism (3) extending into the clearance groove (22).
7. The ice purifier that is easy to assemble as claimed in claim 6, characterized in that: The clearance groove (22) comprises a first groove (221) and a second groove (222) which are connected to each other from top to bottom. At least a portion of the ice crushing mechanism (3) can extend into the first groove (221) and the second groove (222). A first assembly gap (231) is formed between the inner wall of the first groove (221) and the ice crushing mechanism (3), and a second assembly gap (232) is formed between the inner wall of the second groove (222) and the ice crushing mechanism (3).
8. The ice purifier that is easy to assemble as claimed in claim 7, characterized in that: The inner diameter of the first groove (221) is greater than the inner diameter of the second groove (222).
9. An ice purifier that is easy to assemble according to any one of claims 1 to 8, characterized in that: A third mounting structure is further provided between the refrigerator (1) and the ice crushing mechanism (3). The ice crushing mechanism (3) comprises a second shell (32) provided in the body, and an upwardly open accommodating cavity (321) provided in the second shell (32). At least a portion of the refrigerator (1) can extend into the accommodating cavity (321). The third mounting structure comprises a fourth connecting portion (14) provided in the refrigerator (1) and a fifth connecting portion (322) provided in the second shell (32). The refrigerator (1) is connected to the ice crushing mechanism (3) by correspondingly connecting the fourth connecting portion (14) and the fifth connecting portion (322).
10. The ice purifier that is easy to assemble as claimed in claim 9, characterized in that: The refrigerator (1) is further provided with an extension portion (15) extending downward, wherein the extension portion (15) is capable of abutting against the second shell (32), and the fourth connecting portion (14) is provided on one side of the extension portion (15).