Ice crusher
By designing the drive module and adjustment mechanism in the shaving machine, the same shaving machine can make scattered ice and granule ice, solving the problem of the single function of the existing shaving machine and improving the versatility of the shaving machine.
Patent Information
- Application Number
- CN202510628068.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2025-07-08
Smart Images

Figure CN120274475A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of ice making, and in particular relates to an ice shaving machine. Background Art
[0002] Currently, most of the shaved ice machines on the market can only make either shaved ice or granulated ice. It is impossible to make both shaved ice and granulated ice with the same shaved ice machine. Summary of the invention
[0003] In view of the above problems in the prior art, the purpose of the embodiment of the present invention is to provide an ice shaving machine that can make both shaved ice and granulated ice.
[0004] The technical solution adopted in the embodiment of the present invention is:
[0005] An ice shaving machine, comprising:
[0006] A driving module having a first output connection portion and a second output connection portion, wherein the first output connection portion and the second output connection portion can output different rotation speeds;
[0007] The body module at least comprises a body and an ice shaving bucket, an ice shaving knife and an adjustment mechanism arranged on the body; the adjustment mechanism comprises an adjustment member, an ice outlet passage is defined between the adjustment member and the ice shaving knife, and the adjustment member can move relative to the ice shaving knife to adjust the size of the ice outlet passage;
[0008] An ice shaving bucket is arranged on the body and is used to transport ice cubes. The ice shaving bucket can be selectively connected to the first output connection part and the second output connection part in a transmission manner, and can be rotated relative to the body under the drive of the two output connection parts respectively, so as to send the ice cubes contained in the bucket into the ice outlet channel, and shave ice bodies of different shapes through the ice shaving knife.
[0009] In some embodiments, the adjusting member can rotate relative to the ice shaver and has at least a first position and a second position in the rotation direction; the adjusting member has a first target surface and a second target surface;
[0010] When the adjusting member is in the first position, a first ice outlet channel is defined between the first target surface and the ice shaving blade, and the width of the first ice outlet channel is L1;
[0011] When the adjusting member is in the second position, a second ice outlet channel is defined between the second target surface and the ice shaving blade, and the width of the second ice outlet channel is L2;
[0012] The L1 is greater than or less than L2.
[0013] The width of the ice outlet channel can be adjusted by turning the adjusting piece, which is convenient for adjustment.
[0014] In some embodiments, the adjusting mechanism further includes a knob which is located outside the fuselage and rotatably connected to the fuselage. The knob is connected to the adjusting member, and the knob can rotate relative to the fuselage to drive the adjusting member to rotate synchronously. This structure facilitates the user to independently adjust the width of the ice outlet channel.
[0015] In some embodiments, the adjusting member is located on one side of the ice shaving knife, and the first target surface and the second target surface are respectively located on the outer peripheral wall of the adjusting member. The adjusting member can rotate relative to the ice shaving knife so that the first target surface and the second target surface alternately face the ice shaving knife. An ice outlet channel is formed by the outer peripheral surface of the adjusting member and the ice shaving knife, which simplifies the structure and is easy to implement.
[0016] In some embodiments, the ice shaver further includes a first connecting rod and a second connecting rod. The first connecting rod connects the ice shaving bucket and the first output connecting portion, and the second connecting rod connects the ice shaving bucket and the second output connecting portion;
[0017] The first connecting rod is detachably connected to the ice shaving bucket and the first output connecting portion respectively, and the second connecting rod is detachably connected to the ice shaving bucket and the second output connecting portion respectively. Different connecting rods can be connected as needed to adjust the rotation speed of the ice shaving bucket.
[0018] In some embodiments, the ice shaving bucket includes a barrel body, a paddle column arranged at the center of the barrel body, and a propeller blade arranged around the paddle column. During the rotation of the ice shaving bucket, the ice cubes are sent into the ice outlet channel through the propeller blade. The paddle column has a central channel penetrating through its opposite ends;
[0019] The first connecting rod and the second connecting rod can respectively pass through the central channel and are detachably connected to the barrel body. This structure not only realizes the rotation of the ice shaving bucket driven by the connecting rod, but also does not affect the ice shaving bucket to send the ice cubes into the ice outlet channel.
[0020] In some embodiments, the fuselage includes a main body and a bottom cover. The main body is buckled on the bottom cover. A bucket cavity for placing the ice shaving bucket is provided on the main body. The bottom cover is provided with a ice supporting cavity and an ice outlet at the bottom of the ice supporting cavity. The ice shaving knife is fixed at the bottom of the ice supporting cavity and is located at the ice outlet. The adjusting member extends into the ice outlet;
[0021] The bottom of the ice shaving bucket is open, and the ice shaving bucket is buckled on the ice supporting cavity, and the ice cubes in the ice supporting cavity are sent into the ice outlet channel through the propeller blade.
[0022] In some embodiments, a connecting column is fixed inside the ice supporting cavity;
[0023] The first connecting rod and the second connecting rod can respectively pass through the central channel and be inserted on the connecting column.
[0024] In some embodiments, the driving module at least includes a driving motor, a first planetary gear set, and a second planetary gear set; the motor shaft of the driving motor is connected to the input end of the first planetary gear set, and the output end of the first planetary gear set is connected to a first output connecting portion;
[0025] The output end of the first planetary gear set is also connected to the input end of the second planetary gear set, and the output end of the second planetary gear set is connected to a second output connecting portion. Using two planetary gear sets to respectively achieve different rotational speeds of the two output connecting portions is easy to implement.
[0026] In some embodiments, the ice shaver further includes a base module, and the base module includes a base body and an ice cup. The body module is fixed to the base body and is located above the base body, and the ice outlet channel is opposite to the ice cup, and the driving module is located above the body module.
[0027] Compared with the prior art, the beneficial effects of the embodiments of the present invention are as follows:
[0028] The ice shaver according to the embodiments of the present invention can be configured with ice shaving barrels of different rotational speeds and cooperate with an adjusting mechanism capable of adjusting the size of the ice outlet channel, so that the ice shaver can make both fluffy ice and granular ice, improving the versatility of the ice shaver.
[0029] It should be understood that the foregoing general description and the following detailed description are merely exemplary and explanatory, and are not used to limit the present invention.
[0030] The overview of various implementations or examples of the technology described in the present invention is not a complete disclosure of the entire scope or all features of the disclosed technology. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] In the drawings which are not necessarily drawn to scale, the same reference numerals may describe similar components in different views. The drawings generally illustrate various embodiments by way of example and not limitation, and are used together with the description and the claims to explain the embodiments of the invention. Where appropriate, the same reference numerals are used throughout the drawings to refer to the same or similar parts.
[0032] Figure 1 It is a schematic structural diagram of the ice shaver according to the embodiment of the present invention;
[0033] Figure 2 It is an exploded view of the ice shaver according to the embodiment of the present invention;
[0034] Figure 3 Cross-sectional view of the drive module according to an embodiment of the present invention;
[0035] Figure 4 First perspective view of the drive module according to an embodiment of the present invention;
[0036] Figure 5 Cross-sectional view of the ice shaver installing the first connecting rod according to an embodiment of the present invention;
[0037] Figure 6 Cross-sectional view of the ice shaver installing the second connecting rod according to an embodiment of the present invention;
[0038] Figure 7 Schematic structural diagram of the bottom cover of the adjusting mechanism according to an embodiment of the present invention;
[0039] Figure 8 Cross-sectional view of the adjusting member in the first position according to an embodiment of the present invention;
[0040] Figure 9 Cross-sectional view of the adjusting member in the second position according to an embodiment of the present invention;
[0041] Figure 10 Schematic structural diagram of the ice bucket according to an embodiment of the present invention;
[0042] Figure 11 Schematic structural diagram of the first connecting rod according to an embodiment of the present invention.
[0043] In the figure:
[0044] 1. Drive module; 11. Housing assembly; 12. Transmission mechanism; 121. Fixed cover; 122. Driving gear; 123. First planet gear; 124. First bracket; 125. Second bracket; 126. Second planet gear; 127. Third bracket; 128. Gearbox;
[0045] 13. Driving motor;
[0046] 2. Body module; 21. Main body; 22. Bottom cover; 221. Ice holding cavity; 222. Connecting column; 223. Ice outlet; 23. Adjusting mechanism; 231. Adjusting member; 2311. First target surface; 2322. Second target surface; 232. Connecting member; 233. Knob; 24. Ice shaving knife; 25. Link rod module; 251. First connecting rod; 2511. Insertion hole; 2512. Spline; 252. Second connecting rod; 26. Ice outlet channel; 27. First output connection part; 28. Second output connection part;
[0047] 3. Base module; 31. Base body; 32. Ice loading cup;
[0048] 4. Ice bucket; 41. Bucket body; 42. Paddle column; 43. Propeller blade; 44. Central channel. Detailed implementation mode
[0049] In order to make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions of the embodiments of the present invention in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work belong to the scope of protection of the present invention.
[0050] Unless otherwise defined, the technical terms or scientific terms used in the present invention should have the ordinary meaning understood by those of ordinary skill in the art within the field to which the present invention pertains. The "first", "second", and similar terms used in the present invention do not denote any order, quantity, or importance, but are only used to distinguish different components. The terms such as "including" or "comprising" mean that the elements or objects appearing before this word cover the elements or objects listed after this word and their equivalents, without excluding other elements or objects. The terms such as "connected" or "coupled" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. The terms such as "upper", "lower", "left", "right", etc. are only used to represent relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may also change accordingly. In order to keep the following description of the embodiments of the present invention clear and concise, the detailed descriptions of known functions and known components are omitted.
[0051] As Figure 1 and Figure 2 shown, an embodiment of the present invention provides an ice shaver, which mainly includes a drive module 1, a body module 2, and an ice shaving bucket 4.
[0052] The drive module 1 has a first output connection part 27 and a second output connection part 28, and the first output connection part 27 and the second output connection part 28 can output different rotational speeds. The two output connection parts can be connected to different driving parts and drive the driving parts to rotate synchronously. Moreover, one of the two output connection parts can output high speed, and the other outputs low speed.
[0053] Among them, taking the rotational speed output by the first output connection part 27 as high speed and the rotational speed output by the second output connection part 28 as low speed as an example for illustration.
[0054] The body module 2 at least includes a body and an ice shaving bucket 4, an ice shaving knife 24, and an adjustment mechanism 23 provided on the body. The adjustment mechanism 23 includes an adjustment part 231. An ice outlet channel 26 is defined between the adjustment part 231 and the ice shaving knife 24, and the adjustment part 231 can move relative to the ice shaving knife 24 to adjust the size of the ice outlet channel 26.
[0055] The size of the ice outlet passage 26 may be determined according to the shape of the ice outlet passage 26. For example, when the shape of the ice outlet passage 26 is a rectangle, the size of the ice outlet passage 26 may be adjusted by the width.
[0056] The shaved ice bucket 4 is provided on the machine body for conveying ice cubes. The shaved ice bucket 4 can be selectively connected to the first output connection part 27 and the second output connection part 28, and can be driven by the two output connection parts to rotate relative to the machine body to deliver the ice cubes into the ice outlet channel 26, and finally shave at least different forms of ice bodies through the shaved ice blade 24. Among them, the ice body can be granular ice or shaved ice.
[0057] Among them, it can be understood that the shaved ice bucket 4 can only be connected to one output connection part, and cannot be connected to two output connection parts at the same time.
[0058] The shaved ice machine of this embodiment can be used to make shaved ice and granulated ice. For example, when the rotating speed of the shaved ice bucket 4 is slow, such as 120rpm, the width of the ice outlet channel 26 can be reduced, thereby achieving slow and thin shaving, and shaved ice can be made.
[0059] When the rotation speed of the shaved ice bucket 4 is relatively fast, such as 200 rpm, the width of the ice outlet channel 26 can be increased to achieve fast thick shaving, so that shaved ice can be made.
[0060] The shaved ice machine of the embodiment of the present invention can be equipped with shaved ice buckets 4 of different rotation speeds and cooperate with an adjustment mechanism 23 that can adjust the size of the ice outlet channel 26, so that the shaved ice machine can make both shaved ice and granular ice, thereby improving the versatility of the shaved ice machine.
[0061] There are many ways for the adjusting member 231 of this embodiment to move relative to the ice shaver 24 to adjust the ice outlet channel 26. For example, the adjusting member 231 moves relative to the ice shaver 24 to adjust the size of the ice outlet channel 26 by getting closer to or farther away from the ice shaver 24, or the adjusting member 231 rotates relative to the ice shaver 24 to adjust the size of the ice outlet channel 26 by having different target surfaces on the adjusting member 231 relative to the ice shaver 24.
[0062] For example, Figure 2 , Figures 7 to 9 As shown, the adjusting member 231 can rotate relative to the ice shaver 24 and has at least a first position and a second position in the rotation direction. The adjusting member 231 has a first target surface 2311 and a second target surface 2322 .
[0063] When the adjusting member 231 is in the first position, the first target surface 2311 is opposite to the ice shaving blade 24, and a first ice outlet channel 26 is defined between the first target surface 2311 and the ice shaving blade 24. The width of the first ice outlet channel 26 is L1.Figure 8 as shown
[0064] When the adjusting member 231 is in the second position, the second target surface 2322 faces the shaved ice cutter 24, and a second ice outlet passage 26 is defined between the second target surface 2322 and the shaved ice cutter 24. Among them, the width of the second ice outlet passage 26 is L2, as shown in Figure 9 as shown
[0065] Among them, L1 is not equal to L2. One of the first ice outlet passage 26 and the second ice outlet passage 26 can be used to shave fluffy ice, and the other ice outlet passage 26 can be used to shave granular ice.
[0066] This application takes L1 less than L2 as an example for illustration, where the first ice outlet passage 26 is used to shave fluffy ice and the second ice outlet passage 26 is used to shave granular ice.
[0067] By rotating the adjusting member 231 so that the two target surfaces thereon face the shaved ice cutter 24 respectively and form ice outlet passages 26 with different sizes, this structure is simple to operate and convenient to switch back and forth between the fluffy ice processing mode and the granular ice processing mode.
[0068] Such as Figure 2 and Figure 7 as shown, in some embodiments, the adjusting mechanism 23 may further include a knob 233 provided outside the body, and the knob 233 can be connected to the adjusting member 231 through a connecting member 232.
[0069] The knob 233 can be rotatably connected to the body, and during the rotation of the knob 233, the adjusting member 231 can be driven to rotate synchronously through the connecting member 232.
[0070] Exemplarily, as Figure 7 shown, the knob 233 can be a cylindrical member. When the user holds the knob 233 and rotates it counterclockwise, the first target surface 2311 can face the shaved ice cutter 24, so that the ice shaver can shave fluffy ice, as shown in Figure 8 shown. When the user holds the knob 233 and rotates it clockwise, the second target surface 2322 can face the shaved ice cutter 24, so that granular ice can be shaved, as shown in Figure 9 shown.
[0071] In addition, corresponding reminder slogans can be set on the outer peripheral wall of the body. For example, two reminder words, fluffy ice and granular ice, can be set around the knob 233. An arrow can be set on the knob 233, and fluffy ice and granular ice are located on both sides of the knob 233. When the knob 233 rotates counterclockwise until the arrow points to fluffy ice, the ice shaver is in the fluffy ice making mode at this time; when the knob 233 rotates clockwise until the arrow points to granular ice, the ice shaver is in the granular ice making mode at this time.
[0072] As Figure 8 and Figure 9 shown, in some embodiments, the adjusting member 231 may be located on one side of the shaved ice cutter 24, and the adjusting member 231 is disposed opposite to the shaved ice cutter 24. The first target surface 2311 and the second target surface 2322 may be respectively located on the outer peripheral wall of the adjusting member 231 and are adjacently arranged. During the rotation of the adjusting member 231, the first target surface 2311 and the second target surface 2322 can be alternately opposite to the shaved ice cutter 24.
[0073] The first target surface 2311 and the second target surface 2322 may be integral with the adjusting member 231, that is, the first target surface 2311 and the second target surface 2322 may be respectively part of the outer peripheral surface of the adjusting member 231. For example, the first target surface 2311 and the second target surface 2322 may be two surfaces with different curvatures on the outer peripheral surface of the adjusting member 231.
[0074] In some embodiments, the shaved ice cutter 24 may be formed by a plurality of cutter bodies arranged in sequence along the axial direction of the rotation axis of the adjusting member 231, or the shaved ice cutter 24 is a long strip cutter body, and the length direction of the long strip cutter body is consistent with the axial direction of the rotation axis.
[0075] Correspondingly, the adjusting member 231 may be a shaft member, and the length of the axial member is equal to that of the shaved ice cutter 24.
[0076] As Figure 2 、 Figure 5 and Figure 6 shown, in some embodiments, the shaved ice machine may further include a first connecting rod 251 and a second connecting rod 252. Among them, the first connecting rod 251 may be used to connect the shaved ice bucket 4 and the first output connection part 27, and the first output connection part 27 may drive the shaved ice bucket 4 to rotate synchronously through the first connecting rod; the second connecting rod 252 may be used to connect the shaved ice bucket 4 and the second output connection part 28, and the second output connection part 28 may drive the shaved ice bucket 4 to rotate synchronously through the second connecting rod 252.
[0077] The first connecting rod 251 may be detachably connected to the shaved ice bucket 4 and the first output connection part 27 respectively, and the second connecting rod 252 may be detachably connected to the shaved ice bucket 4 and the second output connection part 28 respectively. If the customer wants to make fluffy ice or granular ice, the corresponding connecting rod can be installed.
[0078] For example, when a customer wants to make granular ice with the ice shaver, the first connecting rod 251 can be installed first. The high rotational speed output by the drive module 1 is transmitted to the ice shaving bucket 4 through the first connecting rod. Then, the adjusting member 231 is rotated to adjust the width of the ice outlet channel 26, which can be adjusted to L2. At this time, the ice body produced by the ice shaver is granular ice. When the customer wants the ice shaver to make fluffy ice again, the first connecting rod 251 can be removed, and then the second connecting rod can be installed, and the width of the ice outlet channel 26 can be adjusted to L1.
[0079] To facilitate the connection of the two connecting rods to the ice shaving bucket 4 respectively, as Figure 10 shown, in some embodiments, the ice shaving bucket 4 may include a bucket body 41, a blade column 42 provided at the center of the bucket body 41, and a propeller blade 43 arranged around the blade column 42.
[0080] The ice shaving bucket 4 can be located above the ice outlet channel 26, and the drive module 1 can be located above the fuselage. During the rotation of the ice shaving bucket 4, the ice can be continuously pushed downward through the propeller blade 43, so as to send the ice into the ice outlet channel 26 below, and then the ice is shaved into ice bodies of different shapes by the ice shaving knife 24.
[0081] Further, the blade column 42 has a central channel that penetrates its opposite ends, and here the two ends can be understood as the two ends along the axial direction of the blade column 42. The first connecting rod 251 and the second connecting rod 252 can be respectively inserted into the central channel and detachably connected to the whole body, and the tops of the two connecting rods can be respectively connected to the output connecting parts of the corresponding drive module 1, so as to realize the synchronous rotation of the connecting rod driving the ice shaving bucket 4.
[0082] The first connecting rod 251 and the second connecting rod 252 can drive the ice shaving bucket 4 to rotate synchronously through the connection with the blade column 42. The connection manner of the two connecting rods and the blade column 42 is not specifically limited, and it can be a spline 2512 connection or a bolt connection, etc.
[0083] As Figure 11 shown, in some embodiments, splines 2511 can be respectively provided at the tops of the first connecting rod 251 and the second connecting rod 252. Correspondingly, spline grooves can be respectively provided at the first output connecting part 27 and the second output connecting part 28, so as to facilitate the connection between the connecting rod and the connecting part.
[0084] As for the connection manner of the first connecting rod 251 and the second connecting rod 252 to the ice shaving bucket 4, the present application also does not make specific limitations. The two connecting rods can be connected to the ice shaving bucket 4 through a cooperation manner similar to that of a spline and a spline groove or a cooperation manner of a convex point and a concave point, so as to realize that the two connecting rods can drive the ice shaving bucket 4 to rotate during the rotation process.
[0085] In some embodiments, the fuselage may include two parts: a bottom cover 22 and a main body 21 buckled on the bottom cover 22.
[0086] A bucket cavity for placing the shaved ice bucket 4 is provided on the main body 21. The bucket cavity penetrates the upper surface of the main body 21, thus facilitating the installation of the shaved ice bucket 4.
[0087] The bottom cover 22 is provided with an ice holding cavity 221 and an ice outlet 223 located at the bottom of the ice holding cavity. The bottom of the shaved ice bucket 4 is open, and the shaved ice bucket 4 is buckled on the ice holding cavity 221, so as to jointly form a cavity for holding ice cubes with the ice holding cavity 221.
[0088] The shaved ice knife 24 can be fixed on the bottom cover 22 through bolts or other connecting structures and is located within the ice outlet 223. Correspondingly, the knob 233 of the adjusting mechanism 23 can be assembled on the main body 21, and the connecting member 232 extends into the ice outlet 223 and is located on one side of the shaved ice knife 24. The ice outlet channel 26 defined by the shaved ice knife 24 and the adjusting member 231 is located within the ice outlet 223. As the shaved ice bucket 4 rotates, the ice cubes are continuously fed into the ice outlet channel 26 and then discharged through the ice outlet channel 26.
[0089] In some embodiments, a connecting column 222 for fixing the first connecting rod 251 and the second connecting rod 252 and arranged vertically may further be provided within the ice holding cavity 221 of the bottom cover 22. The two connecting rods can be respectively inserted into the connecting column 222 to position the connecting rods. Then the shaved ice bucket 4 is assembled, and finally the drive module 1 is respectively connected to the two connecting rods.
[0090] In some embodiments, the drive module 1 may further at least include a drive motor 13, a first planetary gear set, and a second planetary gear set. The drive motor 13, the first planetary gear set, and the second planetary gear set may be arranged in sequence from top to bottom.
[0091] The motor shaft of the motor is connected to the input end of the first planetary gear set, and the output end of the first planetary gear set is connected to the first output connecting portion 27.
[0092] The drive module 1 may further include a fixed cover 121 and a gearbox 128. The fixed cover 121 and the gearbox 128 are assembled together to form a cavity structure for holding the first planetary gear set and the second planetary gear set. A connection port for exposing the first output connecting portion 27 and the second output connecting portion 28 is further provided at the bottom of the gearbox 128. The drive module 1 may further include a housing assembly 11 for wrapping the drive module 1.
[0093] The output end of the first planetary gear set is further connected to the input end of the second planetary gear set, and the output end of the second planetary gear set is connected to the second output connecting portion 28.
[0094] Exemplarily, such as Figure 3As shown, the first planetary gear set may at least include a driving gear 122 and a plurality of first planet gears 123 disposed around the driving gear 122 and respectively meshing with the driving gear 122. When the driving gear 122 rotates, it can drive the plurality of first planet gears 123 to revolve around the driving gear 122.
[0095] The driving gear 122 forms the input end of the first planet gears 123 and is connected to the motor shaft of the driving motor 13, and the driving gear 122 is directly driven by the driving motor 13 to rotate.
[0096] The plurality of first planet gears 123 may be assembled on the first bracket 124, and at the same time, the plurality of first planet gears 123 are connected to the second bracket 125. When the plurality of first planet gears 123 rotate, they can drive the second bracket 125 to rotate. The first output connection portion 27 may be connected to the second bracket 125.
[0097] Further, a driving gear meshing with the plurality of second planet gears 126 may be assembled or machined on the second bracket 125 itself, that is, the second bracket 125 forms the input end of the second planetary gear set. The plurality of second planet gears 126 are simultaneously connected to the third bracket 127 and drive the third bracket 127 to rotate during rotation. The second output connection portion 28 may be connected to the third bracket 127.
[0098] As Figure 1 and Figure 2 shown, in some embodiments, the ice shaver further includes a base module 3. The base module 3 may include a base body 31 and an ice cup 32. A cup holder for placing the ice cup 32 may be provided on the base body 31.
[0099] The body module 2 may be fixed on the base body 31 and located above the base body 31, and the drive module 1 may be installed above the body module 2. When the body module 2 is installed on the base body 31, the ice outlet passage 26 may be exactly above the ice cup 32, and the ice body shaved by the ice shaver may directly fall into the ice cup 32.
[0100] The above description is intended to be illustrative rather than restrictive, and those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present disclosure. Moreover, the above examples (or one or more of their solutions) can be used in combination with each other, and considering these embodiments, they can be combined with each other in various combinations or arrangements.
Claims
1. An ice shaver, characterized in that, Comprising: A driving module (1) having a first output connection portion (27) and a second output connection portion (28), the first output connection portion (27) and the second output connection portion (28) being capable of outputting different rotational speeds; A body module (2) including at least a fuselage and an ice shaving bucket (4), an ice shaving knife (24) and an adjustment mechanism (23) provided on the fuselage; the adjustment mechanism (23) includes an adjustment member (231), and an ice outlet passage (26) is defined between the adjustment member (231) and the ice shaving knife (24), and the adjustment member (231) is capable of moving relative to the ice shaving knife (24) to adjust the size of the ice outlet passage (26); An ice shaving bucket (4) provided on the fuselage for conveying ice cubes, the ice shaving bucket (4) being capable of selectively drivingly connecting with the first output connection portion (27) and the second output connection portion (28), and being capable of rotating relative to the fuselage under the drive of the two output connection portions respectively, so as to feed the contained ice cubes into the ice outlet passage (26), and shave ice bodies of different forms through the ice shaving knife (24).
2. The shaved ice machine according to claim 1, characterized in that, The adjustment member (231) is capable of rotating relative to the ice shaving knife (24), and at least has a first position and a second position in the rotation direction; the adjustment member (231) has a first target surface (2311) and a second target surface (2312); When the adjustment member (231) is in the first position, a first ice outlet passage (26) is defined between the first target surface (2311) and the ice shaving knife (24), and the width of the first ice outlet passage (26) is L1; When the adjustment member (231) is in the second position, a second ice outlet passage (26) is defined between the second target surface (2312) and the ice shaving knife (24), and the width of the second ice outlet passage (26) is L2; The L1 is greater than or less than L2.
3. An ice shaver according to claim 2, wherein, The adjustment mechanism (23) further includes a knob (233), the knob (233) is located outside the fuselage and is rotationally connected to the fuselage, the knob (233) is connected to the adjustment member (231), and the knob (233) is capable of rotating relative to the fuselage to drive the adjustment member (231) to rotate synchronously.
4. An ice shaver as claimed in claim 3, wherein The adjustment member (231) is located on one side of the ice shaving knife (24), the first target surface (2311) and the second target surface (2312) are respectively located on the outer peripheral wall of the adjustment member (231), and the adjustment member (231) is capable of rotating relative to the ice shaving knife (24) so that the first target surface (2311) and the second target surface (2312) alternately face the ice shaving knife (24).
5. An ice shaver according to claim 1, wherein, The ice shaver further includes a first connecting rod (251) and a second connecting rod (252), the first connecting rod (251) connects the ice shaving bucket (4) and the first output connection portion (27), and the second connecting rod (252) connects the ice shaving bucket (4) and the second output connection portion (28); The first connecting rod (251) is detachably connected to the shaved ice bucket (4) and the first output connecting part (27) respectively, and the second connecting rod (252) is detachably connected to the shaved ice bucket (4) and the second output connecting part (28) respectively.
6. An ice shaver according to claim 5, characterized in that, The shaved ice bucket (4) includes a bucket body (41), a paddle column (42) disposed at the center of the bucket body (41), and a propeller blade (43) disposed around the paddle column (42). During the rotation of the shaved ice bucket (4), the ice cubes are sent into the ice outlet channel (26) through the propeller blade (43). The paddle column (42) has a central channel (44) penetrating through its opposite ends. The first connecting rod (251) and the second connecting rod (252) can respectively pass through the central channel (44) and are detachably connected to the bucket body (41).
7. The shaved ice machine according to claim 6, characterized in that, The body of the machine includes a main body (21) and a bottom cover (22). The main body (21) is buckled on the bottom cover (22). A bucket cavity for placing the shaved ice bucket (4) is provided on the main body (21). The bottom cover (22) is provided with an ice supporting cavity (221) and an ice outlet (223) located at the bottom of the ice supporting cavity (221). The ice shaving knife (24) is fixed at the bottom of the ice supporting cavity (221) and is located at the ice outlet (223). The adjusting member (231) extends into the ice outlet (223). The bottom of the shaved ice bucket (4) is open. The shaved ice bucket (4) is buckled on the ice supporting cavity (221), and the ice cubes in the ice supporting cavity (221) are sent into the ice outlet channel (26) through the propeller blade (43).
8. An ice shaver according to claim 7, wherein A connecting column (222) is fixed inside the ice supporting cavity (221). The first connecting rod (251) and the second connecting rod (252) can respectively pass through the central channel (44) and be inserted on the connecting column (222).
9. An ice shaver according to claim 1, characterized in that, The driving module (1) at least includes a driving motor (13), a first planetary gear set, and a second planetary gear set. The motor shaft of the driving motor (13) is connected to the input end of the first planetary gear set, and the output end of the first planetary gear set is connected to the first output connecting part (27). The output end of the first planetary gear set is also connected to the input end of the second planetary gear set, and the output end of the second planetary gear set is connected to the second output connecting part (28).
10. An ice shaver as claimed in claim 1, wherein, The shaved ice machine further includes a base module (3). The base module (3) includes a base body (31) and an ice loading cup (32). The machine body module (2) is fixed on the base body (31) and is located above the base body (31). The ice outlet channel (26) is opposite to the ice loading cup (32), and the driving module (1) is located above the machine body module (2).
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Ice crusher
CN121025690A