An assembly structure for an ice pressing component of an ice shaver.

CN224635652UActive Publication Date: 2026-08-14FOSHAN HUOLIYUAN ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

该刨冰机中,主机的输出端通过连接轴连接压冰盘,连接轴通过螺丝安装在主机的输出端,此安装方式不方便拆装,而且装配效率低

Benefits of technology

[0015]本实用新型的刨冰机压冰组件装配结构通过在主机的输出端设置插接孔,压冰组件上设置插接头,主机和压冰组件安装时,只需要将压冰组件的插接头对准插入插接孔即可,通过限位凸筋轴向抵在限位部上,以使压冰组件固定在主机的输出端,无需使用螺丝刀等工具进行安装,而且压冰组件整个模块进行拆装,实现了“一键式”安装和拆卸,使得主机和压冰组件的拆装更加方便,大大提高装配效率,同时极大方便了用户清洗压冰组件。

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Abstract

This utility model discloses an assembly structure for an ice-pressing component of an ice shaver, belonging to the technical field of ice shaver technology. It includes a main unit and an ice-pressing component. The output end of the main unit is provided with a plug-in hole, and the ice-pressing component is provided with a plug connector. One end of the plug-in hole is provided with a limiting part, and the plug connector is provided with a limiting rib. The plug connector and the plug-in hole are interlocked, and the limiting rib axially abuts against the limiting part to fix the ice-pressing component to the output end of the main unit. This structure, by providing a plug-in hole at the output end of the main unit and a plug connector on the ice-pressing component, allows for easy installation of the main unit and ice-pressing component. Simply align the plug connector of the ice-pressing component with the plug and insert it into the plug-in hole. The limiting rib axially abuts against the limiting part to fix the ice-pressing component to the output end of the main unit, eliminating the need for screwdrivers or other tools. Furthermore, the entire ice-pressing component module can be disassembled and reassembled, achieving "one-click" installation and disassembly, making the assembly and disassembly of the main unit and ice-pressing component more convenient and greatly improving assembly efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of ice shaver technology, specifically an assembly structure for an ice pressing component of an ice shaver. Background Technology

[0002] Chinese patent document CN214501820U, published on October 26, 2021, discloses an ice shaver, including a main unit, a blade holder assembly, and a glass. The blade holder's base plate has a blade holder plate adjacent to the ice-lowering hole and an adjusting base. The blade holder plate has a guide groove, within which two guide posts are located. The blade is positioned within the guide groove, and the guide posts are inserted into elongated guide holes. A positioning plate covers the guide groove, and a screw passes through a connecting hole and engages with the guide posts. The threaded portion of an adjusting rod engages with the internal threaded hole of the adjusting base. The driving groove of the adjusting base plate connects to an annular groove on the driving base, and the connecting portion connects to a knob. Rotating the knob adjusts the length of the blade entering the blade holder. In this ice shaver, the output end of the main unit is connected to the ice-pressing plate via a connecting shaft, which is screwed onto the output end of the main unit. This installation method is inconvenient for disassembly and assembly, and has low assembly efficiency.

[0003] Therefore, further improvements are necessary. Utility Model Content

[0004] The present invention aims to provide an assembly structure for an ice pressing component of an ice shaver that is simple in structure, easy to disassemble and assemble, has high assembly efficiency, is stable and reliable, and is highly practical, so as to overcome the shortcomings of the prior art.

[0005] An assembly structure for an ice-pressing component of an ice shaver designed for this purpose includes a main unit and an ice-pressing component. The main unit has an output end with a plug-in hole, and the ice-pressing component has a plug connector. One end of the plug-in hole has a limiting portion, and the plug connector has a limiting rib. The plug connector and the plug-in hole are detachably plugged into each other. When the plug connector is plugged into the plug-in hole, the limiting rib axially abuts against the limiting portion to fix the ice-pressing component at the output end of the main unit.

[0006] The connector has elastic opening and closing parts on both sides, and limiting ribs are set on the opening and closing parts. The two limiting ribs are arranged opposite each other and there is a gap between the two opening and closing parts. The gap is located in the direction of the two limiting ribs facing each other. When the connector is inserted into the insertion hole, the hole wall of the insertion hole acts on the limiting ribs, so that the two opening and closing parts deform inward and close, thereby allowing the limiting ribs to avoid the hole wall of the insertion hole. After the limiting ribs pass through the insertion hole, the two opening and closing parts elastically expand outward so that the limiting ribs axially abut against the limiting part.

[0007] The limiting rib is provided with a first guide slope on both sides, and the two ends of the insertion hole are provided with guide edges. The limiting rib enters the insertion hole through the cooperation of the first guide slope and the guide edges.

[0008] The end of the connector is provided with a second guide slope, and the connector is inserted into the plug hole through the cooperation of the second guide slope and the guide edge.

[0009] The ice pressing assembly includes a connecting shaft component, a rotating shaft component, and an ice pressing plate component. One end of the rotating shaft component is connected to the connecting shaft component, and the other end of the rotating shaft component is connected to the ice pressing plate component. A connector is provided on the connecting shaft component, and the connecting shaft component is connected to a plug hole through the connector. The connector and the plug hole are non-circular.

[0010] The connecting shaft component includes a connecting shaft and a connecting piece. The connecting shaft is provided with a positioning post, and the connecting piece is provided with a positioning hole. The positioning post is inserted into the positioning hole. A connecting part is provided between the connecting shaft and the connecting piece, and the connecting shaft and the connecting piece are connected through the connecting part.

[0011] One end of the connector is provided with a non-circular positioning block, and one end of the connecting shaft is provided with a non-circular positioning hole. The positioning block is inserted into the positioning hole, and the connector is provided at the other end of the connector.

[0012] The rotating shaft component includes a rotating shaft and a limiting block. The limiting block is connected to one end of the rotating shaft. The connecting shaft has a first inner hole and a second inner hole that are stepped together. A support portion is provided on the upper side of the second inner hole. The rotating shaft passes through the first inner hole and is mounted on the second inner hole. The limiting block and the first inner hole are non-circular. The limiting block is limited on the first inner hole and supported on the support portion to connect the rotating shaft component and the connecting shaft component. An elastic element is provided between the limiting block and the connecting component. The elastic element is located on the first inner hole. The rotating shaft component is telescopically movably mounted on the connecting shaft component. When the rotating shaft component retracts into the connecting shaft component, it compresses the elastic element. Under the elastic force of the elastic element, the rotating shaft component extends out of the connecting shaft component.

[0013] The ice pressing tray component includes an ice pressing tray and a fastening connector. The fastening connector is fixed on the ice pressing tray, and the other end of the rotating shaft is connected to the fastening connector to connect the rotating shaft component and the ice pressing tray component.

[0014] The main unit is equipped with a drive device, which includes a motor, a gear set and an output gear. The motor drives and connects to the gear set, and the gear set drives and connects to the output gear. A plug hole is provided on the output gear, and a shaft hole is provided on the gear set. The plug passes through the plug hole and extends into the shaft hole, and the limiting part is located at the bottom of the shaft hole.

[0015] The ice-pressing component assembly structure of this utility model features a plug-in hole at the output end of the main unit and a plug-in connector on the ice-pressing component. During installation, simply align the plug-in connector of the ice-pressing component with the plug-in hole. A limiting rib axially abuts against the limiting part, fixing the ice-pressing component to the output end of the main unit. No screwdrivers or other tools are required for installation. Furthermore, the entire ice-pressing component module can be disassembled and reassembled, achieving "one-click" installation and disassembly. This makes assembling and disassembling the main unit and ice-pressing component much more convenient, greatly improving assembly efficiency and significantly facilitating cleaning of the ice-pressing component for users. Attached Figure Description

[0016] Figure 1 This is a cross-sectional view of an ice shaver in one embodiment of the present invention.

[0017] Figure 2 for Figure 1 A magnified structural diagram of point A in the middle.

[0018] Figure 3 for Figure 1 A magnified structural diagram at point B in the middle.

[0019] Figure 4 This is a schematic diagram of the overall structure of the ice-pressing component in one embodiment of the present invention.

[0020] Figure 5 This is a schematic diagram of the overall structure of the ice shaver in one embodiment of the present invention.

[0021] Figure 6 This is an exploded structural diagram of the connecting shaft component in one embodiment of the present invention.

[0022] Figure 7 This is a cross-sectional view of the connecting shaft component in one embodiment of the present invention.

[0023] Figure 8 This is a schematic diagram of the overall structure of the connector in one embodiment of the present invention.

[0024] Figure 9 This is a schematic diagram of the overall structure of the ice pressing tray component in one embodiment of the present invention.

[0025] Figure 10 This is an exploded structural diagram of the rotating shaft component in one embodiment of the present invention.

[0026] Figure 11 This is a partial structural diagram of an ice shaver in one embodiment of the present invention.

[0027] Figure 12 This is a cross-sectional view of the output gear in one embodiment of the present invention.

[0028] Figure 13This is a schematic diagram of the overall structure of the output gear in one embodiment of the present invention. Detailed Implementation

[0029] To make the above-mentioned objects, features, and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a full understanding of this utility model. However, this utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.

[0030] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0031] See Figures 1-13 The assembly structure of the ice pressing component of this shaved ice machine includes a main unit 1 and an ice pressing component 2. The main unit 1 is located above the ice pressing component 2. The output end of the main unit 1 is provided with a plug hole 3. The top of the ice pressing component 2 is provided with a plug connector 4. The top of the plug hole 3 is provided with a limiting part 5. Limiting ribs 6 are provided on both sides of the plug connector 4. The plug connector 4 and the plug hole 3 can be detachably plugged into each other. When the plug connector 4 is plugged into the plug hole 3, the limiting ribs 6 axially downward abut against the limiting part 5 to fix the ice pressing component 2 at the output end of the main unit 1.

[0032] The connector 4 has elastic opening and closing parts 7 on both sides. The limiting ribs 6 are located on the outside of the opening and closing parts 7 and are arranged opposite to each other. There is a gap 11 between the two opening and closing parts 7. The gap 11 is located in the direction of the opposite direction of the two limiting ribs 6. When the connector 4 is inserted into the insertion hole 3, the hole wall of the insertion hole 3 acts on the limiting ribs 6, so that the two opening and closing parts 7 deform inward and close, thereby allowing the limiting ribs 6 to avoid the hole wall of the insertion hole 3. After the limiting ribs 6 pass through the insertion hole 3, the two opening and closing parts 7 elastically open outward, so that the limiting ribs 6 axially abut against the limiting part 5. This structure allows the connector 4 to be smoothly inserted into the insertion hole 3 without jamming.

[0033] The upper and lower sides of the limiting rib 6 are respectively provided with first guide slopes 8, and the upper and lower ends of the insertion hole 3 are respectively provided with guide edges 9. The limiting rib 6 enters the insertion hole 3 through the cooperation of the first guide slopes 8 and the guide edges 9. When the insertion connector 4 is inserted into the insertion hole 3, the first guide slope 8 on the upper side of the limiting rib 6 cooperates with the guide edge 9 at the lower end of the insertion hole 3. When the insertion connector 4 is pulled out from the insertion hole 3, the first guide slope 8 on the lower side of the limiting rib 6 cooperates with the guide edge 9 at the upper end of the insertion hole 3.

[0034] The upper end of the plug 4 (opening and closing part 7) is provided with a second guide slope 10. The plug 4 is inserted into the plug hole 3 through the cooperation of the second guide slope 10 and the guide edge 9. The second guide slope 10 cooperates with the guide edge 9 at the lower end of the plug hole 3.

[0035] The ice pressing assembly 2 includes a connecting shaft component, a rotating shaft component, and an ice pressing plate component. The upper end of the rotating shaft component is connected to the connecting shaft component, and the lower end of the rotating shaft component is connected to the ice pressing plate component. The plug 4 is located at the upper end of the connecting shaft component, and the connecting shaft component is connected to the plug hole 3 through the plug 4. The plug 4 and the plug hole 3 are non-circular.

[0036] The connecting shaft component includes a connecting shaft 12 and a connector 13. The connecting shaft 12 is provided with a positioning post 14, and the connector 13 is provided with a positioning hole 15. The positioning post 14 is inserted into the positioning hole 15. A connecting part is provided between the connecting shaft 12 and the connector 13, and the connecting shaft 12 and the connector 13 are connected through the connecting part.

[0037] The connecting part includes a first fixing hole 30 provided on the connector 13 and a second fixing hole 31 provided on the connecting shaft 12. The fastener (screw) passes through the first fixing hole 30 and is fastened to the second fixing hole 31 so that the connecting shaft 12 and the connector 13 are connected to each other.

[0038] The lower end of the connector 13 is provided with a non-circular positioning block 16, and one end of the connecting shaft 12 is provided with a non-circular positioning hole 17. The positioning block 16 is inserted into the positioning hole 17, and the connector 4 is provided at the upper end of the connector 13. The cooperation of the positioning block 16 and the positioning hole 17, and the cooperation of the positioning post 14 and the positioning hole 15, make the connector 13 drive the connecting shaft 12 to rotate more stably.

[0039] The rotating shaft component includes a rotating shaft 18 and a limiting block 19. The limiting block 19 is connected to the upper end of the rotating shaft 18. A first inner hole 20 and a second inner hole 21 are provided inside the connecting shaft 12, which are arranged in a stepped manner. The first inner hole 20 and the second inner hole 21 are distributed vertically. A support portion 22 is provided on the upper side of the second inner hole 21. The rotating shaft 18 passes through the first inner hole 20 and is then mounted on the second inner hole 21. The limiting block 19 and the first inner hole 20 are non-circular. The limiting block 19 is positioned to limit the rotation of the first inner hole 21. The limit block 19 is supported on the support part 22 to connect the rotating shaft component and the connecting shaft component so that the connecting shaft component can drive the rotating shaft component to rotate; an elastic element 23 is provided between the limit block 19 and the connecting member 13. The elastic element 23 is a spring and is located on the first inner hole 20. The rotating shaft component is telescopically movably arranged on the connecting shaft component. When the rotating shaft component retracts into the connecting shaft component, it compresses the elastic element 23. The rotating shaft component extends out of the connecting shaft component under the elastic force of the elastic element 23.

[0040] The upper end of the rotating shaft 18 is provided with a first threaded head 32, and the limiting block 19 is provided with a first threaded hole 33. The first threaded head 32 is threadedly connected to the first threaded hole 33.

[0041] The ice pressing tray component includes an ice pressing tray 24 and a fastening connector 25. The fastening connector 25 is fixed on the ice pressing tray 24. The lower end of the rotating shaft 18 is connected to the fastening connector 25 to connect the rotating shaft component and the ice pressing tray component. The fastening connector 25 is a nut. The fastening connector 25 is pressed into the ice pressing tray 24 by a machine so that the fastening connector 25 and the ice pressing tray 24 form an integral unit.

[0042] The lower end of the rotating shaft 18 is provided with a second threaded head 34, and the fastening connector 25 is provided with a second threaded hole 35. The second threaded head 34 is threadedly connected to the second threaded hole 35.

[0043] The main unit 1 is equipped with a drive device, which includes a motor 26, a gear set 27, and an output gear 28. The motor 26 drives the gear set 27, and the gear set 27 drives the output gear 28. A plug hole 3 is provided on the output gear 28. A shaft hole 29 is provided on the gear set 27. The shaft hole 29 is located above the plug hole 3. The plug 4 passes through the plug hole 3 and extends into the shaft hole 29. A limiting part 5 is located at the bottom of the shaft hole 29. After the plug 4 extends into the shaft hole 29, the limiting rib 6 abuts against the limiting part 5 axially downward. The output gear 28 is the output end of the main unit 1. The motor 26 drives the ice pressing assembly 2 to rotate in sequence through the gear set 27 and the output gear 28.

[0044] The inner side of the output gear 28 is provided with a ring of protrusions 42, and the inner side of the protrusions 42 forms a insertion hole 3. The limiting part 5 is provided on the upper side of the protrusions 42.

[0045] The ice shaver also includes an ice shaver cylinder, which consists of an outer cylinder 36 and an inner cylinder 37. The outer cylinder 36 is connected to the main unit 1, and the inner cylinder 37 is located inside the outer cylinder 36. The ice pressing component 2 is rotatably disposed in the inner cavity 40 of the inner cylinder 37. A bottom cover 38 is fitted to the bottom of the ice shaver cylinder, and the bottom cover 38 is provided with ice shaver blades 39 and ice outlet holes 41. The user places ice blocks in the inner cavity 40 of the inner cylinder 37, and the ice blocks are supported on the bottom cover 38. Then, the ice shaver cylinder is connected to the main unit 1, and the ice pressing plate component moves upward under the pressure of the ice blocks, thereby driving the rotating shaft component. The retracting connecting shaft component moves upward, and the elastic element 23 is compressed and stores energy. The elastic force of the elastic element 23 pushes the ice pressing plate 24 to press the ice block tightly onto the bottom cover 38, so that the bottom of the ice block is in close contact with the ice shaving blade 39. The motor 26 drives the ice pressing assembly 2 to rotate through the gear set 27 and the output gear 28 in sequence. When the ice pressing plate 24 rotates, it drives the ice block to rotate, so that the ice block rotates while moving down to be in close contact with the ice shaving blade 39. The ice shaving blade 39 cuts the ice block, and the cut ice shavings fall into the receiving cup below the ice shaving cylinder through the ice outlet 41.

[0046] The above describes the preferred embodiments of this utility model, illustrating and describing its basic principles, main features, and advantages. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made without departing from the spirit and scope of this utility model, and all such changes and modifications fall within the scope of protection of this utility model as defined by the appended claims and their equivalents.

Claims

1. An assembly structure of an ice pressing assembly of an ice shaver, comprising a main machine (1) and an ice pressing assembly (2), characterized in that: The output end of the main unit (1) is provided with a plug hole (3), and the ice pressing assembly (2) is provided with a plug connector (4). One end of the plug hole (3) is provided with a limiting part (5), and the plug connector (4) is provided with a limiting rib (6). The plug connector (4) and the plug hole (3) are detachably plugged into each other. When the plug connector (4) is plugged into the plug hole (3), the limiting rib (6) abuts against the limiting part (5) axially so that the ice pressing assembly (2) is fixed at the output end of the main unit (1).

2. The assembly structure of the ice crushing assembly of the ice planer according to claim 1, wherein: The plug (4) is provided with elastic opening and closing parts (7) on both sides. The limiting ribs (6) are provided on the opening and closing parts (7) and the two limiting ribs (6) are arranged opposite to each other. There is a gap (11) between the two opening and closing parts (7). The gap (11) is located in the opposite direction of the two limiting ribs (6). When the plug (4) is inserted into the plug hole (3), the hole wall of the plug hole (3) acts on the limiting ribs (6) to make the two opening and closing parts (7) deform inward and close together, so that the limiting ribs (6) avoid the hole wall of the plug hole (3). After the limiting ribs (6) pass through the plug hole (3), the two opening and closing parts (7) elastically open outward so that the limiting ribs (6) axially abut against the limiting part (5).

3. The assembly structure of the ice crushing assembly of the ice planer according to claim 2, wherein: The limiting rib (6) is provided with a first guide slope (8) on both sides, and the two ends of the insertion hole (3) are provided with guide edges (9). The limiting rib (6) enters the insertion hole (3) through the cooperation of the first guide slope (8) and the guide edge (9).

4. The assembly structure of the ice press assembly of the ice flaker according to claim 3, characterized in that: The end of the connector (4) is provided with a second guide slope (10), and the connector (4) is inserted into the plug hole (3) through the cooperation of the second guide slope (10) and the guide edge (9).

5. The assembly structure of the ice crushing assembly of the ice flaker according to claim 2, wherein: The ice pressing assembly (2) includes a connecting shaft component, a rotating shaft component and an ice pressing plate component. One end of the rotating shaft component is connected to the connecting shaft component, and the other end of the rotating shaft component is connected to the ice pressing plate component. A plug (4) is provided on the connecting shaft component, and the connecting shaft component is connected to the plug hole (3) through the plug (4). The plug (4) and the plug hole (3) are non-circular.

6. The assembly structure of the ice press assembly of the ice flaker according to claim 5, wherein: The connecting shaft component includes a connecting shaft (12) and a connector (13). A positioning post (14) is provided on the connecting shaft (12), and a positioning hole (15) is provided on the connector (13). The positioning post (14) is inserted into the positioning hole (15). A connecting part is provided between the connecting shaft (12) and the connector (13), and the connecting shaft (12) and the connector (13) are connected through the connecting part.

7. The assembly structure of the ice crushing assembly of the ice planer according to claim 6, wherein: One end of the connector (13) is provided with a non-circular positioning block (16), and one end of the connecting shaft (12) is provided with a non-circular positioning hole (17). The positioning block (16) is positioned and inserted into the positioning hole (17), and the plug (4) is provided at the other end of the connector (13).

8. The assembly structure of the ice crushing assembly of the ice planer according to claim 6, wherein: The rotating shaft component includes a rotating shaft (18) and a limiting block (19). The limiting block (19) is connected to one end of the rotating shaft (18). A first inner hole (20) and a second inner hole (21) are provided in the connecting shaft (12) and are arranged in a stepped manner. A support part (22) is provided on the upper side of the second inner hole (21). The rotating shaft (18) passes through the first inner hole (20) and is then mounted on the second inner hole (21). The limiting block (19) and the first inner hole (20) are non-circular, and the limiting block (19) limits the rotation. The first inner hole (20) is provided, and the limiting block (19) is supported on the support part (22) to connect the rotating shaft component and the connecting shaft component; an elastic element (23) is provided between the limiting block (19) and the connecting member (13). The elastic element (23) is located on the first inner hole (20). The rotating shaft component is telescopically movably provided on the connecting shaft component. When the rotating shaft component retracts into the connecting shaft component, it compresses the elastic element (23). The rotating shaft component extends out of the connecting shaft component under the elastic force of the elastic element (23).

9. The assembly structure of the ice crushing assembly of the ice planer according to claim 8, wherein: The ice pressing plate component includes an ice pressing plate (24) and a fastening connector (25). The fastening connector (25) is fixed on the ice pressing plate (24), and the other end of the rotating shaft (18) is connected to the fastening connector (25) to connect the rotating shaft component and the ice pressing plate component.

10. The assembly structure of the ice crushing assembly of the ice flaker according to claim 1, wherein: The main unit (1) is equipped with a drive device, which includes a motor (26), a gear set (27) and an output gear (28). The motor (26) drives the gear set (27), and the gear set (27) drives the output gear (28). The insertion hole (3) is provided on the output gear (28). The gear set (27) is provided with a shaft hole (29). The plug (4) passes through the insertion hole (3) and extends into the shaft hole (29). The limiting part (5) is located at the bottom of the shaft hole (29).

Citation Information

Patent Citations

  • Ice crusher

    CN214501820U