An ice planer

CN224730875UActive Publication Date: 2026-09-08FOSHAN HUOLIYUAN ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202522029076.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2025-09-11
Filing Date
2025-09-19
Publication Date
2026-09-08
Estimated Expiration
2035-09-19

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,主机的输出端与连接轴通过螺丝连接,该连接方式装配不方便,且装配效率低;此外,该刨冰机每次使用时,都需要将玻璃杯与刀座组件连接,导致刨冰机的使用很不方便

Benefits of technology

[0016] This invention relates to an ice shaver that allows for the detachable and plug-in connection between the transmission base assembly and the ice pressing assembly. During installation, the ice pressing assembly's connector is simply aligned with the insertion hole, and the axial support of the limiting rib secures the ice pressing assembly to the transmission base assembly. This eliminates the need for screwdrivers or other tools, making assembly and disassembly much easier and significantly improving efficiency. Furthermore, the inclusion of a support assembly allows the ice shaver body to be suspended in mid-air. The receiving container is then placed under the ice shaver body through a slot, allowing the machine to start shaving ice. This floor-standing design further enhances user convenience, as there is no need to connect the ice shaver body and the receiving container during each use, greatly improving the user experience.

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Abstract

The utility model discloses an ice planer belongs to ice planer technical field, including ice planer main part, and ice planer main part includes host computer and planer ice cylinder, and the rotation of planer ice cylinder in is provided with ice pressing subassembly, and the host computer is sequentially assembled with transmission seat subassembly, electric control assembly, and transmission seat subassembly and ice pressing subassembly are detachable type and are inserted between each other, and the bottom of planer ice cylinder is provided with planer ice cutter subassembly and ice outlet, and planer ice cutter subassembly is located on the ice outlet, still including with the support subassembly of ice planer main part forms use state and storage state. The structure is through detachable type and is inserted between each other with transmission seat subassembly and ice pressing subassembly, and when host computer and ice pressing subassembly install, only need to make the plug of ice pressing subassembly align and insert into the plug hole, and through the axial resistance of spacing rib on spacing part, to make ice pressing subassembly fixed in transmission seat subassembly, need not use screwdriver and other tools to install, make host computer and ice pressing subassembly dismount more convenient, improve assembly efficiency greatly.
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Description

Technical Field

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

[0002] Chinese Patent Document No. CN214501820U, published on October 26, 2021, discloses an ice shaver, including a main unit, a blade holder assembly, and a glass. The blade holder has a base plate adjacent to the ice-lowering hole and an adjusting base. The blade holder plate has a guide groove with two guide posts inside. 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 part 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 part 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, and the output end of the main unit is connected to the connecting shaft by screws. This connection method is inconvenient and inefficient. Furthermore, the glass needs to be connected to the blade holder assembly each time the ice shaver is used, making its operation very inconvenient.

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

[0004] The present invention aims to provide an ice shaver that is simple in structure, easy to use, has high assembly efficiency, good user experience, and strong practicality, so as to overcome the shortcomings of the prior art.

[0005] An ice shaver designed for this purpose includes an ice shaver body, characterized in that: the ice shaver body includes a main unit and an ice shaver cylinder, an ice pressing component is rotatably arranged inside the ice shaver cylinder, a transmission seat component and an electrical control component are sequentially assembled inside the main unit, the transmission seat component and the ice pressing component are detachably plugged into each other, an ice shaver blade component and an ice outlet are provided at the bottom of the ice shaver cylinder, the ice shaver blade component is located on the ice outlet; it also includes a support component that forms a working state and a stored state with the ice shaver body, when the support component is in the working state, the ice shaver body is positioned and supported on the support component and is suspended, when the support component is in the stored state, the support component is positioned on the ice shaver body and the ice shaver body can be supported on a support.

[0006] The support assembly includes a leg assembly for supporting the material and a support base for positioning and supporting the material. The support base is fixedly or detachably mounted on the leg assembly. The leg assembly has a receiving space for placing the receiving container. The side of the leg assembly has a slot that connects to the receiving space. The support base is longitudinally extended, and the receiving space is located below the longitudinal extension of the support base. When the receiving container is placed in the receiving space, the receiving container is located below the ice outlet. The support leg assembly includes support legs respectively disposed on both sides of the support base, with a gap between the two support legs to form a receiving space and a slot; The two supporting legs tilt outwards from top to bottom to form a figure-eight supporting structure. Alternatively, the two support legs can be set vertically to form a vertical support structure.

[0007] The top of the support base is provided with positioning structures on both sides. The positioning structure includes two positioning ribs spaced apart from each other, and a positioning groove is formed between the two positioning ribs. The top of the support foot is provided with a positioning strip, which is inserted into the corresponding positioning groove. The top wall of the positioning groove forms a first support surface, and a second support surface is provided on the top side of the positioning strip. The support base is supported on the second support surface through the first support surface. The top of the support foot is provided with a support step, and the top of the support base is provided with a support flange. The support base is supported on the support step by the support flange. The support foot is equipped with a positioning plate, the bottom of the positioning plate is provided with a flange, the flange is provided with a rib, and a limiting groove is formed between the rib and the positioning plate. The bottom of the support base is provided with a limiting edge, which is inserted into the limiting groove and the bottom of the limiting edge is supported on the flange.

[0008] The support base is provided with a first positioning hole, and the lower end of the ice shaving cylinder is inserted into the first positioning hole; the bottom of the support base is provided with a supporting protrusion, and the bottom of the ice shaving cylinder is provided with a supporting step, and the main body of the ice shaving machine is supported on the supporting protrusion through the supporting step.

[0009] The leg assembly and the support base are detachably connected, and the two are in use and storage states when disassembled and assembled. When the support assembly is in use, the support base is positioned on the leg assembly, and the leg assembly can be supported on a support. When the support assembly is in storage state, the leg assembly is positioned on the support base, and the support base can be supported on a support.

[0010] When the support assembly is in use, the support legs are placed upright; when the support assembly is in storage, the support legs are placed upside down. When the support assembly is in use, the ice shaver body, support base and support leg components are arranged vertically in sequence. When the support assembly is in storage, the ice shaver body and the support leg assembly are at the same height, and the support base is located at the bottom of the ice shaver body and the support leg assembly. When the support assembly is in use, the support leg component is provided with a receiving space for placing the receiving container. The receiving space is located below the support base, and the side of the support leg assembly is provided with a slot that connects to the receiving space. When the support component is in use, the two support legs form a figure-eight shape; when the support component is in storage, the two support legs form an inverted figure-eight shape. The top of the support base is provided with a first positioning hole and a support surface. When the support assembly is in the retracted state, the protruding rib is inserted into the first positioning hole, the bottom of the flange is supported on the support surface, and the positioning plate abuts against the support flange inward.

[0011] The output end of the transmission base assembly is provided with a plug hole, and the ice pressing assembly is provided with a plug connector. One end of the plug hole is provided with a limiting part, and the plug connector is provided with a limiting rib. The plug connector and the plug hole can be detachably plugged into each other. When the plug connector and the plug hole are plugged in, the limiting rib abuts axially against the limiting part to fix the ice pressing assembly at the output end of the transmission base assembly. 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 an opening and closing gap between the two opening and closing parts. The opening and closing 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.

[0012] 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 connector hole through the connector. The connector and the connector hole are non-circular. 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 second positioning hole. The positioning post is inserted into the second 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. 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 second positioning hole. The positioning block is inserted into the second positioning hole, and the connector is provided at the other end of the connector.

[0013] 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 member. The elastic element is located on the first inner hole. The rotating shaft component is telescopically movable 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. 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 includes a housing, a transmission base assembly, an electronic control assembly, and a top cover assembly. The transmission base assembly includes a transmission base and a transmission component. The transmission component is pre-installed inside the transmission base. The top cover assembly is then assembled on top of the transmission base. The electronic control assembly is subsequently assembled outside the transmission base and is connected to the transmission component to form a drive unit. The housing is then fitted onto the outside of the drive unit and is connected to the transmission base. Finally, the top cover assembly is closed on top of the housing.

[0015] The electrical control component includes a motor, and the transmission component includes 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.

[0016] This invention relates to an ice shaver that allows for the detachable and plug-in connection between the transmission base assembly and the ice pressing assembly. During installation, the ice pressing assembly's connector is simply aligned with the insertion hole, and the axial support of the limiting rib secures the ice pressing assembly to the transmission base assembly. This eliminates the need for screwdrivers or other tools, making assembly and disassembly much easier and significantly improving efficiency. Furthermore, the inclusion of a support assembly allows the ice shaver body to be suspended in mid-air. The receiving container is then placed under the ice shaver body through a slot, allowing the machine to start shaving ice. This floor-standing design further enhances user convenience, as there is no need to connect the ice shaver body and the receiving container during each use, greatly improving the user experience. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of the ice shaver in use according to one embodiment of the present invention.

[0018] Figure 2 This is a schematic diagram of the overall structure of the ice shaver from another position in one embodiment of the present invention.

[0019] Figure 3 This is a cross-sectional view of the ice shaver in use according to one embodiment of the present invention.

[0020] Figure 4 for Figure 3 A magnified structural diagram at point C.

[0021] Figure 5 for Figure 3 A magnified structural diagram at point D.

[0022] Figure 6This is an exploded structural diagram of the support component in one embodiment of the present invention.

[0023] Figure 7 This is a cross-sectional view of the support component in one embodiment of the present invention.

[0024] Figure 8 This is a schematic diagram of the overall structure of the support base in one embodiment of the present invention.

[0025] Figure 9 This is a schematic diagram of the overall structure of the support foot in one embodiment of the present invention.

[0026] Figure 10 This is a schematic diagram of the overall structure of the ice shaver body in one embodiment of the present invention.

[0027] Figure 11 This is an exploded structural diagram of the ice shaver body in one embodiment of the present invention.

[0028] Figure 12 This is a partial structural diagram of an ice shaver in one embodiment of the present invention.

[0029] Figure 13 This is an exploded structural diagram of the ice shaver assembly and the bottom cover in one embodiment of the present invention.

[0030] Figure 14 This is a schematic diagram of the overall structure of the ice shaver in the storage state according to one embodiment of the present invention.

[0031] Figure 15 This is an exploded view of the ice shaver in its stowed state according to one embodiment of the present invention.

[0032] Figure 16 This is a cross-sectional view of the main body of the ice shaver in one embodiment of the present invention.

[0033] Figure 17 for Figure 16 A magnified structural diagram at point E in the middle.

[0034] Figure 18 for Figure 16 A magnified structural diagram at point F in the middle.

[0035] Figure 19 This is an exploded structural diagram of the connecting shaft component in one embodiment of the present invention.

[0036] Figure 20 This is a schematic diagram of the overall structure of the connector in one embodiment of the present invention.

[0037] Figure 21 This is a cross-sectional view of the connecting shaft component in one embodiment of the present invention.

[0038] Figure 22 This is a schematic diagram of the overall structure of the ice pressing tray component in one embodiment of the present invention.

[0039] Figure 23 This is an exploded structural diagram of the rotating shaft component in one embodiment of the present invention.

[0040] Figure 24 This is a cross-sectional view of the output gear in one embodiment of the present invention.

[0041] Figure 25 This is an exploded structural diagram of the upper cover assembly in one embodiment of the present invention.

[0042] Figure 26 This is an exploded view of the host computer in one embodiment of the present invention.

[0043] Figure 27 This is an exploded view of a portion of the host structure in one embodiment of the present invention.

[0044] Figure 28 This is an exploded structural diagram of the transmission seat assembly in one embodiment of the present invention.

[0045] Figure 29 This is a partial structural diagram of the ice shaver from another position in one embodiment of the present invention.

[0046] Figure 30 This is a schematic diagram of the overall structure of the outer shell in one embodiment of the present invention.

[0047] Figure 31 This is an exploded view of the host unit from another position in one embodiment of the present invention.

[0048] Figure 32 This is a schematic diagram of the assembly structure of the trigger and the micro switch component in one embodiment of the present invention. Detailed Implementation

[0049] 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.

[0050] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0051] See Figures 1-32This ice shaver includes an ice shaver body 1, which includes a main unit 2 and an ice shaver cylinder 3. An ice pressing component 4 is rotatably installed inside the ice shaver cylinder 3. A transmission seat component 50 and an electrical control component are sequentially assembled inside the main unit 2. The transmission seat component 50 and the ice pressing component 4 are detachably plugged into each other. An ice shaver blade component 5 and an ice outlet 6 are provided at the bottom of the ice shaver cylinder 3. The ice shaver blade component 5 is located on the ice outlet 6. It also includes a support component 7 that forms a use state A and a storage state B with the ice shaver body 1. When the support component 7 is in use state A, the ice shaver body 1 is positioned and supported on the support component 7 and is suspended. When the support component 7 is in storage state B, the support component 7 is positioned on the ice shaver body 1 and the ice shaver body 1 can be supported on a support.

[0052] The support assembly 7 includes a leg assembly for supporting the object and a support base 10 for positioning and supporting the object. The support base 10 is fixedly or detachably mounted on the leg assembly. The leg assembly has a receiving space 8 for placing a receiving container. The side of the leg assembly has a slot 9 that communicates with the receiving space 8. The support base 10 is longitudinally penetrating, and the receiving space 8 is located below the longitudinal penetration of the support base 10. The slots 9 are located on both sides of the leg assembly. The receiving container is placed into the receiving space 8 through the slot 9, or the receiving container is taken out of the receiving space 8 through the slot 9. The receiving container is a receiving cup. When the receiving container is placed in the receiving space 8, it is located below the ice outlet 6. When the ice shaver body 1 is working, the ice shavings coming out of the ice outlet 6 fall into the receiving container.

[0053] The support leg assembly includes support legs 11 respectively disposed on both sides of the support base 10, with a gap between the two support legs 11 to form a receiving space 8 and a slot 9; and when the support assembly 7 is in use state A, a receiving space 3 and a slot 4 are formed between the two support legs 11.

[0054] The two support legs 11 are inclined outward from top to bottom so that the two support legs 11 form a figure-eight support structure; this structure makes the support assembly 7 more stably supported on the support. Alternatively, the two support legs 11 can be set vertically to form a vertical support structure, which can reduce the space occupied by the support assembly 7.

[0055] Positioning structures are provided on both sides of the top of the support base 10, and the positioning structures correspond one-to-one with the support feet 11. The positioning structure includes two positioning ribs 12 spaced apart from each other, and a positioning groove 13 is formed between the two positioning ribs 12. A positioning strip 14 is provided on the top of the support foot 11, and the positioning strip 14 is inserted into the corresponding positioning groove 13. This positions the top of the support base 10 to prevent the top of the support base 10 from swaying when the ice shaver is in use, and also prevents the support base 10 and the support foot assembly from rotating relative to each other. In addition, the positioning ribs 12 can improve the structural strength of the support base 10.

[0056] The top of the support base 10 is provided with a downward groove 58, and the positioning rib 12 is provided on the groove 58.

[0057] The top wall of the positioning groove 13 forms a first support surface 15, and the top side of the positioning strip 14 is provided with a second support surface 16. The support base 10 is supported on the second support surface 16 through the first support surface 15. The top of the support foot 11 is provided with a support step 17, and the top of the support base 10 is provided with a support flange 18. The support base 10 is supported on the support step 17 through the support flange 18. A positioning plate 19 is provided on the support foot 11, and a positioning strip 14 is provided on the top of the positioning plate 19. The bottom of the positioning plate 19 is provided with an inwardly turned flange 20, and a rib 21 is provided on the flange 20. A limiting groove 22 is formed between the rib 21 and the positioning plate 19. A limiting edge 23 is provided at the bottom of the support base 10. The limiting edge 23 is inserted into the limiting groove 22, and the bottom of the limiting edge 23 is supported on the flange 20, thereby positioning the bottom of the support base 10 and preventing the bottom of the support base 10 from swaying when the ice shaver is in use.

[0058] When disassembling the support component 7, simply pull the support foot 11 down from the support base 10.

[0059] The bottom of the support foot 11 is provided with an outward flange 59. The support foot 11 is supported on the support through the outward flange 59, so that the support foot 11 can more stably support the ice shaver body 1; the support is a table surface, etc.

[0060] Several reinforcing ribs 60 are provided between the positioning plate 19 and the support foot 11. The reinforcing ribs 60 can improve the structural strength of the support foot 11. The support foot 11 is provided with an opening 61. The opening 61 can reduce the material used in the support foot 11, thereby reducing material costs.

[0061] It also includes a cover 62, and the bottom of the ice shaving cylinder 3 is provided with an opening 63, which is located below the ice outlet 6 and at the bottom of the empty trough 64. When the ice shaving machine is stored, the cover 62 is closed on the opening 63. If ice shavings leak from the ice outlet 6, the cover 62 can catch the ice shavings and prevent them from leaking out of the ice shaving machine. The bottom outer side of the ice shaving cylinder 3 is provided with a rib 65. When the cover 62 is closed on the opening 63, the rib 65 abuts against the inner wall of the cover 62, thereby locking the cover 62 and preventing the cover 62 from falling off the ice shaving machine body 1.

[0062] The support base 10 is provided with a first positioning hole 24. The lower end of the ice shaver cylinder 3 is inserted into the first positioning hole 24 so that the ice shaver body 1 is positioned on the support base 10 to prevent the ice shaver body 1 from swaying when the ice shaver is in use. The bottom of the support base 10 is provided with a supporting protrusion 25, which is set on the hole wall of the first positioning hole 24. The bottom of the ice shaver cylinder 3 is provided with a supporting step 26. The ice shaver body 1 is supported on the supporting protrusion 25 through the supporting step 26, thereby enabling the support base 10 to support the ice shaver body 1. The supporting protrusion 25 is supported on the protruding rib 21.

[0063] The ice shaver assembly 5 includes an ice shaver 66 and an adjusting member 67 for adjusting the up and down position of the ice shaver 66. The support base 10 is provided with an adjusting opening 68 corresponding to the position of the adjusting member 67. The user can put his hand through the adjusting opening 68 into the bottom of the ice shaver tube 3 to easily rotate the adjusting member 67. The bottom of the ice shaver tube 3 is provided with a hollow groove 64, and the ice shaver assembly 5 is located in the hollow groove 64. The adjusting opening 68 is connected to the hollow groove 64.

[0064] Two ribs 65 are provided, and the supporting protrusion 25 is arc-shaped. The two ends of the supporting protrusion 25 are respectively provided with limiting surfaces 69. The limiting surfaces 69 correspond one-to-one with the ribs 65. When the ice shaver body 1 is placed on the support base 2, the ribs 65 abut against the limiting surfaces 32, which can prevent the ice shaver body 1 and the support base 10 from rotating relative to each other.

[0065] The bottom of the ice shaving cylinder 6 is provided with a support member 70 and a first bottom cover 71. The ice shaving cylinder 6 and the support member 70 are connected by a screw fastener. The first bottom cover 71 covers the bottom of the ice shaving cylinder 6 and is fixed to the support member 70 by a snap fastener. The ice shaving blade assembly 5 is fixed to the first bottom cover 71. The ice shaving blade 66 extends into the ice shaving cylinder 3. The support step 26 and the rib 65 are provided on the outer side of the bottom of the support member 70. The slot 64 is provided inside the support member 70. The opening 63 is provided at the bottom of the support member 70. The ice outlet 6 is provided on the first bottom cover 71.

[0066] The ice shaver assembly also includes a screw 72, a fixing sleeve 73, a mounting base 74, and a pressure plate 75. The mounting base 74 is fixed on the first bottom cover 71, and the fixing sleeve 73 is fixed on the mounting base 74. The fixing sleeve 73 has a threaded hole 76. The screw 72 passes through the threaded hole 76 and connects to the ice shaver 66. The ice shaver 66 is movably mounted on the mounting base 74. The pressure plate 75 is fixed on the mounting base 74. The ice shaver 66 is positioned between the mounting base 74 and the pressure plate 75. An adjusting element 67 is connected to the screw 72 and is a knob. When the adjusting element 67 rotates, it drives the screw 72 to rotate. The screw 72 is threaded into the threaded hole 76, allowing the screw 72 to move up and down. The screw 72 drives the ice shaver 66 to move up and down, thereby adjusting the up and down position of the ice shaver 66 and thus adjusting the length of the ice shaver 66 extending into the inner cavity 77 of the ice shaver cylinder 3.

[0067] The support leg assembly and the support base 10 are detachably connected, and the two are in use state A and storage state B when they are disassembled and assembled. When the support assembly 7 is in use state A, the support base 10 is positioned and supported on the support leg assembly, and the support leg assembly can be supported on the support. When the support assembly 7 is in storage state B, the support leg assembly is positioned on the support base 10, and the support base 10 can be supported on the support.

[0068] When the support component 7 is in use state A, the support leg assembly is placed upright. When the support component 7 is in storage state B, the support leg assembly is placed upside down. That is, when the support leg changes from use state A to storage state B, the support component 7 flips upward 180 degrees. When the support component 7 changes from storage state B to use state A, the support component 2 flips downward 180 degrees.

[0069] When the support assembly 7 is in use state A, the ice shaver body 1, support base 10 and support leg components are arranged vertically in sequence. When the support assembly 7 is in storage state B, the ice shaver body 1 and the support leg assembly are at the same height, and the support base 10 is located at the bottom of the ice shaver body 1 and the support leg assembly, which greatly reduces the vertical (longitudinal) dimensions of the ice shaver and thus greatly reduces the occupation of vertical (longitudinal) space, making it convenient to store the ice shaver.

[0070] When the support assembly 7 is in use state A, the support leg assembly is provided with a receiving space 8 for placing the receiving container. The receiving space 8 is located below the support base 10, and the two sides of the support leg assembly are provided with slots 9 that connect to the receiving space 8. When the support component 7 is in use state A, the two support legs 11 form a figure-eight shape, which makes the support component 7 more stably supported on the support; when the support component 7 is in storage state B, the two support legs 11 form an inverted figure-eight shape.

[0071] The top of the support base 10 is provided with a first positioning hole 27 and a support surface 28. When the support component 7 is in the retracted state B, the protruding rib 21 is inserted into the first positioning hole 27, the bottom of the flange 20 is supported on the support surface 28, and the positioning plate 12 abuts inward against the support flange 11, thereby positioning the support foot 6 on the support base 3.

[0072] When the support component 7 is in use state A, to disassemble the support component 7, simply pull the support leg 11 down from the support base 10.

[0073] When the support component 7 is in the retracted state B, to disassemble the support component 7, simply pull the support leg 11 upwards from the support base 3.

[0074] When the support component 7 is in the retracted state B, the cover 62 is closed over the open opening 63, and the ice shaver body 1 is supported on the support by the cover 62, or the ice shaver is placed flat on the support. If ice shavings leak from the ice outlet 6, the cover 62 can catch the ice shavings and prevent them from leaking out of the ice shaver. The bottom outer side of the ice shaver body 1 is provided with a rib 31. When the cover 62 is closed over the open opening 63, the rib 31 abuts against the inner wall of the cover 62, thereby locking the cover 62 and preventing the cover 62 from falling off the ice shaver body 1.

[0075] The ice shaver body 1 is located above the ice pressing assembly 3. The output end of the transmission seat assembly 50 is provided with a plug hole 29. The top of the ice pressing assembly 4 is provided with a plug connector 30. The top of the plug hole 29 is provided with a limiting part 31. Limiting ribs 32 are provided on both sides of the plug connector 30. The plug connector 30 and the plug hole 29 can be detachably plugged into each other. When the plug connector 30 is plugged into the plug hole 29, the limiting ribs 32 axially abut against the limiting part 31 so that the ice pressing assembly 4 is fixed at the output end of the transmission seat assembly 50. The connector 30 has elastic opening and closing portions 33 on both sides, and limiting ribs 32 are provided on the opening and closing portions 33. The two limiting ribs 32 are arranged opposite each other, and there is an opening and closing gap 34 between the two opening and closing portions 33. The opening and closing gap 34 is located in the direction in which the two limiting ribs 32 are opposite each other. When the connector 30 is inserted into the insertion hole 29, the hole wall of the insertion hole 29 acts on the limiting ribs 32, so that the two opening and closing portions 33 deform inward and close, thereby allowing the limiting ribs 32 to avoid the hole wall of the insertion hole 29. After the limiting ribs 32 pass through the insertion hole 29, the two opening and closing portions 33 elastically open outward, so that the limiting ribs 32 axially abut against the limiting portion 31. This structure allows the connector 30 to be smoothly inserted into the insertion hole 29 without jamming.

[0076] The upper and lower sides of the limiting rib 32 are respectively provided with first guide slopes 78, and the upper and lower ends of the insertion hole 29 are respectively provided with guide edges 79. The limiting rib 32 enters the insertion hole 3 through the cooperation of the first guide slopes 78 and the guide edges 79. When the insertion connector 30 is inserted into the insertion hole 29, the first guide slope 78 on the upper side of the limiting rib 32 cooperates with the guide edge 79 at the lower end of the insertion hole 29. 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 29.

[0077] The upper end of the plug 30 (opening and closing part 33) is provided with a second guide slope 80. The plug 30 is inserted into the plug hole 29 through the cooperation of the second guide slope 80 and the guide edge 79. The second guide slope 80 cooperates with the guide edge 79 at the lower end of the plug hole 29.

[0078] The ice pressing assembly 4 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. A connector 30 is provided at the upper end of the connecting shaft component, and the connecting shaft component is connected to the insertion hole 29 through the connector 30. The connector 30 and the insertion hole 29 are non-circular. The connecting shaft component includes a connecting shaft 35 and a connecting member 36. A positioning post 37 is provided on the connecting shaft 35, and a second positioning hole 38 is provided on the connecting member 36. The positioning post 37 is inserted into the second positioning hole 38. A connecting part is provided between the connecting shaft 35 and the connecting member 36, and the connecting shaft 35 and the connecting member 36 are connected through the connecting part. One end of the connector 36 is provided with a non-circular positioning block 39, and one end of the connecting shaft 35 is provided with a non-circular second positioning hole 40. The positioning block 39 is inserted into the second positioning hole 40, and the connector 30 is provided on the upper end of the connector 36. The cooperation of the positioning block 39 and the second positioning hole 40, and the cooperation of the positioning post 37 and the second positioning hole 38, make the connector 36 drive the connecting shaft 35 to rotate more stably.

[0079] The connecting part includes a first fixing hole 81 provided on the connector 36 and a second fixing hole 82 provided on the connecting shaft 35. The fastener (screw) passes through the first fixing hole 81 and is fastened to the second fixing hole 82 so that the connecting shaft 35 and the connector 36 are connected to each other.

[0080] The rotating shaft component includes a rotating shaft 41 and a limiting block 42. The limiting block 42 is connected to the upper end of the rotating shaft 41. A first inner hole 43 and a second inner hole 44 are provided inside the connecting shaft 35, which are arranged in a stepped manner. A support part 45 is provided on the upper side of the second inner hole 44. The first inner hole 43 and the second inner hole 44 are distributed vertically in sequence. The rotating shaft 41 passes through the first inner hole 43 and is then mounted on the second inner hole 44. The limiting block 42 and the first inner hole 43 are non-circular. The limiting block 42 is positioned to limit the rotation of the first inner hole 44. 3. The limiting block 42 is supported on the support part 45 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 46 is provided between the limiting block 42 and the connecting member 36. The elastic element 46 is a spring and is located on the first inner hole 43. 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 46. The rotating shaft component extends out of the connecting shaft component under the elastic force of the elastic element 46. The upper end of the rotating shaft 41 is provided with a first threaded head 83, and the limiting block 42 is provided with a first threaded hole 84. The first threaded head 83 is threadedly connected to the first threaded hole 84.

[0081] The ice pressing tray component includes an ice pressing tray 47 and a fastening connector 48. The fastening connector 48 is fixed on the ice pressing tray 47. The lower end of the rotating shaft 41 is connected to the fastening connector 48 to connect the rotating shaft component and the ice pressing tray component. The fastening connector 48 is a nut. The fastening connector 48 is pressed into the ice pressing tray 47 by a machine so that the fastening connector 48 and the ice pressing tray 47 form an integral unit.

[0082] The bottom of the ice pressing tray 47 is provided with anti-slip teeth 115. When the ice pressing tray 47 presses the ice block tightly onto the first bottom cover 71, the anti-slip teeth 115 are inserted into the ice block, which can increase the friction between the ice pressing tray 47 and the ice block.

[0083] The lower end of the rotating shaft 41 is provided with a second threaded head 85, and the fastening connector 48 is provided with a second threaded hole 86. The second threaded head 85 is threadedly connected to the second threaded hole 86.

[0084] The main unit 2 includes a housing 49, a transmission base assembly 50, an electronic control assembly, and a top cover assembly 51. The transmission base assembly 50 includes a transmission base 52 and a transmission member 53. The transmission member 53 is pre-installed inside the transmission base 52. The top cover assembly 51 is then assembled on top of the transmission base 52. The electronic control assembly is subsequently assembled on the outside of the transmission base 52 and is connected to the transmission member 53 to form a drive device a. The housing 49 is then fitted onto the outside of the drive device a and is connected to the transmission base 52. The top cover assembly 51 is finally closed on top of the housing 49.

[0085] The electrical control assembly includes a motor 54, and the transmission component 53 includes a gear set 55 and an output gear 56. The motor 54 drives the gear set 55, and the gear set 55 drives the output gear 56. A plug hole 29 is provided on the output gear 56. A shaft hole 57 is provided on the gear set 55. A plug 30 passes through the plug hole 29 and extends into the shaft hole 57. A limiting part 31 is located at the bottom of the shaft hole 57. After the plug 30 extends into the shaft hole 57, the limiting rib 32 abuts against the limiting part 31 axially downward. The output gear 56 is the output end of the transmission seat assembly 50. The motor 54 drives the ice pressing assembly 4 to rotate in sequence through the gear set 55 and the output gear 56.

[0086] The transmission base 52 includes a base body 87 and a second bottom cover 88 that are connected to each other. A mounting cavity 89 is formed between the base body 87 and the second bottom cover 88. The transmission component 53 is installed in the mounting cavity 89. During installation, the transmission component 53 is first installed on the second bottom cover 88, then the base body 87 is put on, and finally the base body 87 and the second bottom cover 88 are connected. The base body 87 and the second bottom cover 88 are connected by screws.

[0087] The base 87 is provided with a first mounting position 90, and the motor 54 is mounted on the first mounting position 90. The output shaft of the motor 54 extends into the mounting cavity 89 and is connected to the gear set 55. The motor 54 is fixed on the first mounting position 90 by screws, and the gear set 55 consists of multiple meshing reduction gears.

[0088] The electronic control assembly also includes a battery pack 91. A second mounting position 92 is provided on the base 87, and the lower end of the battery pack 91 is mounted on the second mounting position 92. A third mounting position 94 is provided on the upper cover 93. When the upper cover assembly 4 is assembled above the transmission base 52, the third mounting position 94 is fitted onto the upper end of the battery pack 91. The second mounting position 92 and the third mounting position 94 position the battery pack 91. The battery pack 91 supplies power to the motor 54.

[0089] The electronic control assembly also includes a micro switch component, which includes a micro switch 95 and a mounting plate 96. A slot 97 is provided on the base 87, and the mounting plate 96 is snapped into the slot 97. The micro switch 95 is fixed on the mounting plate 96, and the mounting plate 96 is fixed to the base 87 by screws.

[0090] The mounting plate 96 is provided with a plug post 98, and the micro switch 95 is provided with a socket 99. The plug post 98 and the socket 99 are plugged into each other to fix the micro switch 95 on the mounting plate 96.

[0091] The electronic control assembly also includes an electronic control board 100. The base 87 is provided with two insertion ports 101. The bottom two ends of the electronic control board 100 are respectively inserted into the corresponding insertion ports 101. The electronic control board 100 is electrically connected to the motor 54, the battery pack 91 and the micro switch 95 respectively. The top cover 93 is provided with two fitting ports 102. The two fitting ports 102 are respectively fitted onto the top two ends of the electronic control board 100. The insertion ports 101 and the fitting ports 102 position the electronic control board 100.

[0092] The top cover assembly 51 includes a top cover 93, a power supply interface 103, and a push-button switch 104. The top cover 93 is fixed to the base 87 with screws. The power supply interface 103 and the push-button switch 104 are installed on the top cover 93. The electronic control board 100 is electrically connected to the power supply interface 103. The power supply interface 103 can be connected to an external power source to charge the battery pack 91. The power supply interface 20 is fixed to the top cover 19 with screws. The electronic control board 100 is equipped with a sensor 105. When the push-button switch 104 is pressed, it acts on the sensor 105, thereby starting or stopping the ice shaver.

[0093] A mounting hole 106 is provided on the other side of the top cover 93, and the push-button switch 104 is mounted on the mounting hole 106.

[0094] Before assembling the upper cover assembly 51 onto the transmission base 52, the power supply interface 103 and the push-button switch 104 are first installed on the upper cover 93.

[0095] The housing 49 and the transmission seat 52 are connected by screws.

[0096] The ice shaver 3 has several buckles 107 arranged in a ring on its surface, and the bottom of the outer casing 49 has several snap-fit ​​grooves 108 arranged in a ring on its surface. The buckles 107 are rotated and snapped into the snap-fit ​​grooves 108 to connect the main unit 2 and the ice shaver 3. During installation, the buckles 107 are aligned with the snap-fit ​​grooves 108, and then the ice shaver 3 is rotated so that the buckles 107 are snapped into the snap-fit ​​grooves 108.

[0097] The bottom of the outer casing 49 is provided with a trigger 109 that moves up and down, and the top of the shaved ice tube 3 is provided with a protrusion 110. A swivel 107 is provided on the protrusion 110. The trigger 109 is provided with a first inclined surface 111, and the protrusion 110 is provided with a second inclined surface 112. When the swivel 107 rotates and engages with the fastening groove 108, the first inclined surface 111 and the second inclined surface 112 cooperate with each other to drive the trigger 109 to move upward. When the trigger 109 moves upward, it acts on the micro switch 95, thereby connecting the circuit of the main unit 2. At this time, the main unit 2 can start working. When the swivel 107 rotates and disengages from the fastening groove 108, the first inclined surface 111 and the second inclined surface 112 disengage from each other, and the trigger 109 moves downward under the action of gravity to disengage from the micro switch 95. That is, when the main unit 2 and the shaved ice tube 3 are disassembled, the circuit of the main unit 2 is disconnected. After the trigger 109 moves downward under the action of gravity, the bottom of the trigger 109 is supported on the bottom wall of the outer casing 49.

[0098] The trigger 109 is provided with an action post 113, and the micro switch 95 is provided with a trigger part 114. When the trigger 109 moves upward, the action post 113 acts on the trigger part 114, thereby connecting the main unit 2 circuit.

[0099] The working principle of the ice shaver: The user places ice blocks in the inner cavity 77 of the ice shaver cylinder 3, and the ice blocks are supported on the first bottom cover 71. Then, the ice shaver cylinder 3 is connected to the main unit 2. The ice pressing plate 47 is squeezed upward by the ice blocks, which in turn drives the rotating shaft 41 to move upward and retract into the connecting shaft 35. The elastic element 46 is compressed and stored energy. The elastic force of the elastic element 46 pushes the ice pressing plate 47 to press the ice blocks tightly on the first bottom cover 71, so that the bottom of the ice blocks is in close contact with the ice shaver blade 66. The main body 1 of the ice shaver is placed on the support base 10, and the receiving container is placed into the receiving space 8. Then, the machine is started. The motor 54 drives the ice pressing component 4 to rotate through the transmission component 53. When the ice pressing plate 47 rotates, it drives the ice blocks to rotate, so that the ice blocks rotate and move downward to be in close contact with the ice shaver blade 66. The ice shaver blade 66 cuts the ice blocks. The cut ice shavings fall into the receiving container in the receiving space 8 through the ice outlet 6.

[0100] 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. A ice crusher comprising an ice crusher body (1), characterized in that: The ice shaver body (1) includes a main unit (2) and an ice shaver cylinder (3). An ice pressing component (4) is rotatably installed inside the ice shaver cylinder (3). A transmission seat component (50) and an electrical control component are sequentially assembled inside the main unit (2). The transmission seat component (50) and the ice pressing component (4) are detachably plugged into each other. An ice shaver blade component (5) and an ice outlet (6) are provided at the bottom of the ice shaver cylinder (3). The ice shaver blade component (5) is located on the ice outlet (6). It also includes a support component (7) that forms a working state (A) and a storage state (B) with the ice shaver body (1). When the support component (7) is in the working state (A), the ice shaver body (1) is positioned and supported on the support component (7) and suspended. When the support component (7) is in the storage state (B), the support component (7) is positioned on the ice shaver body (1) and the ice shaver body (1) can be supported on a support.

2. The ice planer of claim 1, wherein: The support assembly (7) includes a leg assembly for supporting and a support base (10) for positioning and supporting. The support base (10) is fixed or detachable on the leg assembly. The leg assembly has a receiving space (8) for placing the receiving container. The side of the leg assembly has a slot (9) for communicating with the receiving space (8). The support base (10) is longitudinally through and the receiving space (8) is located below the longitudinal through of the support base (10). When the receiving container is placed in the receiving space (8), the receiving container is located below the ice outlet (6). The support leg assembly includes support legs (11) respectively disposed on both sides of the support base (10), with a gap between the two support legs (11) to form a receiving space (8) and a slot (9). The two supporting legs (11) are tilted outward from top to bottom so that the two supporting legs (11) form a figure-eight support structure; Alternatively, the two support legs (11) can be set vertically so that the two support legs (11) form a vertical support structure.

3. The ice planer of claim 2, wherein: The support base (10) has positioning structures on both sides of its top. The positioning structures include two positioning ribs (12) spaced apart from each other. A positioning groove (13) is formed between the two positioning ribs (12). The support foot (11) has a positioning strip (14) on its top. The positioning strip (14) is inserted into the corresponding positioning groove (13). The top wall of the positioning groove (13) forms a first support surface (15), and the top side of the positioning strip (14) is provided with a second support surface (16). The support base (10) is supported on the second support surface (16) through the first support surface (15). The top of the support foot (11) is provided with a support step (17), and the top of the support base (10) is provided with a support flange (18). The support base (10) is supported on the support step (17) through the support flange (18). A positioning plate (19) is provided on the support foot (11). A flange (20) is provided at the bottom of the positioning plate (19). A rib (21) is provided on the flange (20). A limiting groove (22) is formed between the rib (21) and the positioning plate (19). A limiting edge (23) is provided at the bottom of the support base (10). The limiting edge (23) is inserted into the limiting groove (22), and the bottom of the limiting edge (23) is supported on the flange (20).

4. The ice planer of claim 3, wherein: The support base (10) is provided with a first positioning hole (24), and the lower end of the ice shaving cylinder (3) is inserted into the first positioning hole (24); the support base (10) is provided with a supporting protrusion (25) at the bottom, and the ice shaving cylinder (3) is provided with a supporting step (26) at the bottom, and the ice shaving machine body (1) is supported on the supporting protrusion (25) through the supporting step (26).

5. The ice planer of claim 3, wherein: The leg assembly and the support base (10) are detachably connected, and the two are in a working state (A) and a storage state (B) when they are disassembled and assembled. When the support assembly (7) is in the working state (A), the support base (10) is positioned on the leg assembly and the leg assembly can be supported on the support. When the support assembly (7) is in the storage state (B), the leg assembly is positioned on the support base (10) and the support base (10) can be supported on the support.

6. The ice planer of claim 5, wherein: When the support assembly (7) is in use (A), the leg assembly is placed upright; when the support assembly (7) is in storage (B), the leg assembly is placed upside down. When the support assembly (7) is in use (A), the ice shaver body (1), support base (10) and support leg assembly are arranged vertically in sequence. When the support assembly (7) is in storage (B), the ice shaver body (1) and support leg assembly are at the same height, and the support base (10) is located at the bottom of the ice shaver body (1) and support leg assembly. When the support component (7) is in use (A), the two support legs (11) form a figure-eight shape; when the support component (7) is in storage (B), the two support legs (11) form an inverted figure-eight shape. The support base (10) has a first positioning hole (27) and a support surface (28) at the top. When the support assembly (7) is in the retracted state (B), the rib (21) is inserted into the first positioning hole (27), the bottom of the flange (20) is supported on the support surface (28), and the positioning plate (19) abuts against the support flange (18).

7. The ice planer of claim 1, wherein: The output end of the transmission seat assembly (50) is provided with a plug hole (29), and the ice pressing assembly (4) is provided with a plug connector (30). One end of the plug hole (29) is provided with a limiting part (31), and the plug connector (30) is provided with a limiting rib (32). The plug connector (30) and the plug hole (29) are detachably plugged into each other. When the plug connector (30) is plugged into the plug hole (29), the limiting rib (32) abuts against the limiting part (31) axially so that the ice pressing assembly (4) is fixed at the output end of the transmission seat assembly (50). The plug (30) is provided with elastic opening and closing parts (33) on both sides. The limiting ribs (32) are provided on the opening and closing parts (33) and the two limiting ribs (32) are arranged opposite to each other. There is an opening and closing gap (34) between the two opening and closing parts (33). The opening and closing gap (34) is located in the opposite direction of the two limiting ribs (32). When the plug (30) is inserted into the plug hole (29), the hole wall of the plug hole (29) acts on the limiting ribs (32) to make the two opening and closing parts (33) deform inward and close together, so that the limiting ribs (32) avoid the hole wall of the plug hole (29). After the limiting ribs (32) pass through the plug hole (29), the two opening and closing parts (33) elastically open outward so that the limiting ribs (32) axially abut against the limiting part (31).

8. The ice planer of claim 7, wherein: The ice pressing assembly (4) 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 (30) is provided on the connecting shaft component, and the connecting shaft component is connected to the plug hole (29) through the plug (30). The plug (30) and the plug hole (29) are non-circular. The connecting shaft component includes a connecting shaft (35) and a connector (36). A positioning post (37) is provided on the connecting shaft (35), and a second positioning hole (38) is provided on the connector (36). The positioning post (37) is inserted into the second positioning hole (38). A connecting part is provided between the connecting shaft (35) and the connector (36), and the connecting shaft (35) and the connector (36) are connected through the connecting part. One end of the connector (36) is provided with a non-circular positioning block (39), and one end of the connecting shaft (35) is provided with a non-circular second positioning hole (40). The positioning block (39) is positioned and inserted into the second positioning hole (40), and the plug (30) is provided at the other end of the connector (36). The rotating shaft component includes a rotating shaft (41) and a limiting block (42). The limiting block (42) is connected to one end of the rotating shaft (41). A first inner hole (43) and a second inner hole (44) are provided in the connecting shaft (35) and are arranged in a stepped manner. A support part (45) is provided on the upper side of the second inner hole (44). The rotating shaft (41) passes through the first inner hole (43) and is then mounted on the second inner hole (44). The limiting block (42) and the first inner hole (43) are non-circular. The limiting block (42) limits the rotation. The first inner hole (43) is provided, and the limiting block (42) is supported on the support part (45) to connect the rotating shaft component and the connecting shaft component; an elastic element (46) is provided between the limiting block (42) and the connecting member (36). The elastic element (46) is located on the first inner hole (43). 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 (46). The rotating shaft component extends out of the connecting shaft component under the elastic force of the elastic element (46). The ice pressing plate component includes an ice pressing plate (47) and a fastening connector (48). The fastening connector (48) is fixed on the ice pressing plate (47), and the other end of the rotating shaft (41) is connected to the fastening connector (48) to connect the rotating shaft component and the ice pressing plate component.

9. The ice planer of claim 8, wherein: The main unit (2) includes a housing (49), a transmission seat assembly (50), an electronic control assembly, and a top cover assembly (51). The transmission seat assembly (50) includes a transmission seat (52) and a transmission member (53). The transmission member (53) is pre-installed inside the transmission seat (52). The top cover assembly (51) is then assembled on top of the transmission seat (52). The electronic control assembly is then assembled outside the transmission seat (52) and connected to the transmission member (53) to form a drive unit (a). The housing (49) is then fitted onto the outside of the drive unit (a) and connected to the transmission seat (52). The top cover assembly (51) is finally closed on top of the housing (49).

10. The ice planer of claim 9, wherein: The electrical control component includes a motor (54), and the transmission component (53) includes a gear set (55) and an output gear (56). The motor (54) drives the gear set (55), and the gear set (55) drives the output gear (56). A plug hole (29) is provided on the output gear (56), and a shaft hole (57) is provided on the gear set (55). A plug (30) passes through the plug hole (29) and extends into the shaft hole (57). A limiting part (31) is located at the bottom of the shaft hole (57).

Citation Information

Patent Citations

  • Ice crusher

    CN214501820U