Smoothie machine

By setting up a sealed connection between the ice-making component, the feeding component, and the ice-making chamber in the smoothie machine, the problem of insufficient sealing in traditional smoothie machines is solved, realizing the completely closed preparation of smoothies, improving hygiene standards and safety, and reducing raw material waste.

CN223873170UActive Publication Date: 2026-02-06NINGBO FENGYA ELECTRICAL APPLIANCES
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Patent Information

Application Number
CN202520176384.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-27
Publication Date
2026-02-06
Estimated Expiration
2035-01-27

AI Technical Summary

Technical Problem

Traditional smoothie machines cannot achieve a completely enclosed production environment, which causes the smoothie to be affected by external pollutants during the preparation process, resulting in the loss of aroma and flavor. Furthermore, the smoothie is prone to splashing, causing waste of raw materials and increasing the difficulty of cleaning.

Method used

An ice smoothie machine was designed, including an ice discharging component, a feeding component, and an ice-making chamber. The ice-making chamber is completely sealed by a first, second, and third sealing component. The drive component is connected to the outside of the ice-making chamber. Combined with the stirring component and the sealing connection component, power transmission and sealing are achieved to prevent contaminants from entering and ice smoothie from splashing out.

Benefits of technology

This achieves a completely enclosed preparation environment for the smoothie machine, preventing the intrusion of external contaminants, maintaining the hygienic quality and taste of the smoothie, reducing raw material waste, and improving the hygiene standards and safety of the equipment.

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Abstract

The utility model relates to the field of smoothie machines, in particular to a smoothie machine. The smoothie machine comprises a smoothie machine body, the smoothie machine body comprises an ice discharging assembly, a feeding assembly, an ice making cavity and a stirring assembly, the stirring assembly comprises a driving assembly and a first sealing assembly, the ice discharging assembly comprises a second sealing assembly, and the feeding assembly comprises a third sealing assembly. The first sealing assembly, the second sealing assembly and the third sealing assembly are matched, so that when the ice discharging assembly and the feeding assembly are in a closed state, the ice making cavity is in a sealed state. The stirring assembly comprises the driving assembly extending out of the ice-making cavity, the driving assembly is in sealed connection with the ice-making cavity through the first sealing assembly, the second sealing assembly and the third sealing assembly ensure that the ice outlet assembly and the feeding assembly are sealed with the ice-making cavity respectively, and complete sealing of the ice-making cavity is achieved; in addition, the smoothie is prevented from being splashed out in the stirring process, the sanitation and the safety of equipment are improved, and waste of raw materials is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of ice blender, concretely is a kind of ice blender. BACKGROUND

[0002] With the growth of healthy lifestyle and cold drink consumption trends, ice blender has become a common device in the kitchen and catering places of family. However, in the traditional ice slurry preparation process, due to the limitation of equipment structure and operation mode, it is difficult to realize a completely closed environment, which not only may cause ice slurry to be affected by external pollutants during preparation, thereby affecting the sanitary quality of ice slurry, but also under high-speed stirring, ice slurry is easy to splash out of container, causing raw material waste while also increasing the difficulty of cleaning. In addition, ice making in an incomplete closed environment may also cause the aroma and taste in ice slurry to escape, thereby affecting the taste and quality of the final product. Therefore, it is necessary to develop an ice blender to realize a completely closed ice making environment. SUMMARY

[0003] In view of the above-mentioned problem in the prior art that the ice blender is difficult to realize a completely closed ice making environment, the technical solution adopted by the utility model to solve its technical problem is:

[0004] An ice blender, comprising an ice blender main body, wherein the ice blender main body comprises an ice outlet assembly, a material inlet assembly, an ice making cavity communicating with the ice outlet assembly and the material inlet assembly, and a stirring assembly for stirring ice in the ice making cavity, the stirring assembly comprises a driving assembly located outside the ice making cavity, and a first sealing assembly for sealing connection with the ice making bucket, the ice outlet assembly comprises a second sealing assembly, the material inlet assembly comprises a third sealing assembly, and the first sealing assembly, the second sealing assembly and the third sealing assembly cooperate to make the ice making cavity in a sealed state when the ice outlet assembly and the material inlet assembly are in a closed state.

[0005] Further, wherein the ice blender main body further comprises an ice making bucket, the ice making cavity is arranged in the ice making bucket, the ice outlet assembly is provided with an end cover sealingly connected with the ice making bucket, the material inlet assembly is provided with a material inlet pipe sealingly connected with the ice making bucket, the material inlet pipe is provided with a material inlet passage communicating with the ice making cavity, the ice making bucket is provided with a connecting hole located at one side thereof and an ice making bucket opening located at the other side thereof and sealingly connected with the end cover through the second sealing assembly, the driving assembly is provided with a driving end extending into the connecting hole, the stirring assembly is further provided with a stirring end connected with the driving end, and the first sealing assembly comprises a sealing connection assembly connecting the driving end and the ice making bucket, and the stirring end is located in the ice making cavity.

[0006] Further, the sealing connection assembly is provided with a rotating support, and a first sealing member embedded in the rotating support and used for sealing between the driving end and the ice making barrel, the first sealing member is provided with a sealing groove matched in the connection hole, and a sealing end slidably connected with the driving end, the sealing end is provided with a plurality of sealing portions slidably connected with the driving end, and a lubricating groove used for storing lubricating oil is arranged between two sealing portions.

[0007] Further, the end cover is provided with an ice outlet, the ice outlet assembly further comprises a shielding assembly used for opening or closing the ice outlet, the shielding assembly comprises a handle rotatable relative to the end cover, and an opening and closing assembly connected with the handle and slidably or rotatably connected with the end cover, the second sealing assembly comprises a second sealing member arranged between the opening and closing assembly and the ice outlet and connected with the opening and closing assembly, and the handle controls the opening and closing assembly to slide or rotate, so that the opening and closing assembly or the second sealing member shields or opens the ice outlet.

[0008] Further, the ice outlet assembly further comprises an elastic assembly used for maintaining the second sealing member to shield the ice outlet, the handle is provided with a gear assembly, the opening and closing assembly is provided with a rack assembly matched with the gear assembly, the shielding assembly is arranged on a side of the end cover away from the ice making cavity, the ice outlet is arranged on a side of the end cover close to the shielding assembly, and the handle controls the opening and closing assembly to slide to shield or open the ice outlet through cooperation of the gear assembly and the rack assembly.

[0009] Further, the handle is provided with a connecting portion on a side close to the opening and closing assembly, the opening and closing assembly is provided with a rotating rod fixed on the end cover and a connecting groove in which the connecting portion extends and slides, the rotating rod is arranged between the connecting groove and the second sealing member, the ice outlet is arranged on a lower side of the end cover, and the handle is rotated to make the opening and closing assembly rotate around the rotating rod to shield or open the ice outlet.

[0010] Further, the ice making machine further comprises an ice making barrel, a driving end rotatably connected with the ice making barrel, and an ice outlet assembly arranged on a side of the ice making barrel away from the ice making cavity, the ice outlet assembly comprises an end cover, a second sealing assembly arranged on the end cover and used for sealing between the driving end and the ice making barrel, and an ice outlet arranged on a side of the end cover close to the ice making cavity, the second sealing assembly comprises a second sealing member arranged on the end cover and used for sealing between the driving end and the ice making barrel.

[0011] Further, the inlet bin further comprises a first inlet bin and a second inlet bin connected to the inner side of the first inlet bin, the inlet pipe is sealed and connected between the first inlet bin and the second inlet bin through the third sealing assembly, and the first inlet bin and the second inlet bin are detachably connected.

[0012] Further, the stirring end is provided with a stirring shaft, stirring blades arranged in a spiral shape around the stirring shaft, a lateral stirring part arranged on the stirring blades and in the axial direction of the stirring shaft, a flow area arranged between the stirring blades and the stirring shaft, and a flow guide end arranged at one end of the stirring blades close to the ice outlet, the flow guide end is arranged at an angle with the stirring blades, the cross section of the flow guide end is arranged in an arc shape, the stirring blades are arranged in a variable pitch, and the end of the stirring end away from the driving assembly is rotationally connected with the end cover.

[0013] Further, the ice slush machine body further comprises a refrigeration assembly for maintaining the temperature of the ice making cavity, and the refrigeration assembly has a temperature detection function.

[0014] The ice slush machine has the following beneficial effects:

[0015] The driving assembly of the stirring assembly is arranged outside the ice making cavity, the driving assembly and the ice making cavity are sealed and connected through the first sealing assembly, the second sealing assembly ensures that the ice outlet assembly and the ice making cavity are sealed, and the third sealing assembly ensures that the ice making cavity and the ice making cavity are sealed, so that when the ice outlet assembly and the ice making cavity are in a closed state, the ice making cavity can be completely sealed, which not only enables the driving assembly to effectively provide power outside the ice making cavity without affecting the internal stirring process, but also ensures the sealing of the ice making cavity and prevents the intrusion of external pollutants and the dissipation of the aroma and taste of the ice slush; in addition, the ice slush machine also prevents the ice slush from splashing from the connection during high-speed stirring of the stirring assembly in the ice making cavity, further improves the hygiene standard and use safety of the equipment, and reduces the waste of raw materials. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is an ice slush machine appearance schematic view of the utility model.

[0017] Figure 2 It is an ice slush machine explosion schematic view of the utility model.

[0018] Figure 3 It is an ice slush machine explosion schematic view of the utility model.

[0019] Figure 4 It is an ice slush machine cross section schematic view of the utility model.

[0020] Figure 5 It is a partial enlarged view of the ice slurry machine.

[0021] Figure 6 It is a partial view of the ice slurry machine.

[0022] Figure 7 It is a schematic view of the feeding assembly of the ice slurry machine.

[0023] Figure 8 It is a sectional view of the feeding assembly of the ice slurry machine.

[0024] Figure 9 It is a schematic view of the feeding assembly of the ice slurry machine.

[0025] Figure 10 It is an exploded schematic view of the feeding assembly of the ice slurry machine.

[0026] Figure 11 It is a sectional view of the feeding assembly of the ice slurry machine.

[0027] Figure 12 It is a schematic view of the ice outlet assembly of the ice slurry machine.

[0028] Figure 13 It is an exploded schematic view of the ice outlet assembly of the ice slurry machine.

[0029] Figure 14 It is an exploded schematic view of the ice outlet assembly of the ice slurry machine.

[0030] Figure 15 It is an exploded schematic view of the ice outlet assembly of the ice slurry machine.

[0031] Figure 16 It is a sectional view of the ice outlet assembly of the ice slurry machine.

[0032] Figure 17 It is a schematic view of the stirring end of the ice slurry machine. DETAILED DESCRIPTION

[0033] The embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0034] As Figures 1-17The illustrated slush machine includes a slush machine body 1, wherein the slush machine body 1 includes an ice outlet assembly 2, a material inlet assembly 3, an ice making cavity 41 communicating the ice outlet assembly 2 and the material inlet assembly 3, and a stirring assembly 5 for stirring ice making in the ice making cavity 41, the stirring assembly 5 includes a driving assembly 51 located outside the ice making cavity 41, and a first sealing assembly for sealing connection with the ice making barrel 4, the ice outlet assembly 2 includes a second sealing assembly, the material inlet assembly 3 includes a third sealing assembly, and the first sealing assembly, the second sealing assembly and the third sealing assembly cooperate so that when the ice outlet assembly 2 and the material inlet assembly 3 are in the closed state, the ice making cavity 41 is in the sealed state.

[0035] The stirring assembly 5 in the utility model is provided with the driving assembly 51 extending outside the ice making cavity 41, and the driving assembly 51 and the ice making cavity 41 are sealingly connected through the first sealing assembly, meanwhile, the second sealing assembly ensures that the ice outlet assembly 2 and the ice making cavity 41 are sealed, and the third sealing assembly ensures that the material inlet assembly 3 and the ice making cavity 41 are sealed, so that when the ice outlet assembly 2 and the material inlet assembly 3 are in the closed state, the ice making cavity 41 can achieve the completely sealed state, which not only enables the driving assembly 51 to effectively provide power outside the ice making cavity 41 without affecting the internal stirring process, but also ensures the sealing of the ice making cavity 41, avoids the invasion of external pollutants and the dissipation of slush aroma and taste; in addition, the utility model also prevents the slush from splashing from the connection during the high-speed stirring process of the stirring assembly 5 in the ice making cavity 41, further improves the hygiene standard and use safety of the equipment, and also reduces the waste of raw materials.

[0036] The utility model discloses a drive assembly 51 is arranged outside the ice making cavity 41, and the sealed connection between the two is ensured through the first sealing assembly, not only realizes the effective transmission of power, also greatly promotes the sanitary condition and security in the ice making process, specifically, this setting avoids the direct contact of drive assembly 51 and the environment in ice making cavity 41, thereby eliminating the risk of introducing pollutants due to mechanical component friction, heating or lubricating oil leakage, further, the sealed connection between drive assembly 51 and ice making cavity 41 is ensured through the first sealing assembly, the sealed between ice outlet assembly 2 and ice making cavity 41 is ensured through the second sealing assembly, the sealed between material inlet assembly 3 and ice making cavity 41 is ensured through the third sealing assembly, after the ice outlet assembly 2 and material inlet assembly 3 are closed, the whole ice making cavity 41 can form a completely closed space, this setting helps to maintain the temperature stability in ice making cavity 41, speeds up the preparation speed of slush, prevents the moisture and other impurities in external air from entering, guarantees the freshness and taste of slush, effectively prevents slush from splashing out of the equipment in the high-speed stirring process, reduces the cleaning difficulty and raw material waste, and helps to retain the aroma and taste of slush, further, in some embodiments, the first sealing assembly, the second sealing assembly and the third sealing assembly are sealing rings.

[0037] Further, as shown in Figures 1-17 A slush machine, wherein the slush machine body 1 further comprises an ice making bucket 4, the ice making cavity 41 is arranged in the ice making bucket 4, the ice outlet assembly 2 is provided with an end cover 21 in sealed connection with the ice making bucket 4, the material inlet assembly 3 is provided with a material inlet pipe 31 in sealed connection with the ice making bucket 4, the material inlet pipe 31 is provided with a material inlet channel 311 in communication with the ice making cavity 41, the ice making bucket 4 is provided with a connecting hole 42 on one side thereof and an ice making bucket opening 43 on the other side thereof in sealed connection with the end cover 21 through the second sealing assembly, the drive assembly 51 is provided with a drive end 511 extending into the connecting hole 42, the stirring assembly 5 is further provided with a stirring end 52 connected with the drive end 511, the first sealing assembly comprises a sealing connection assembly 53 connecting the drive end 511 and the ice making bucket 4, and the stirring end 52 is located in the ice making cavity 41.

[0038] The utility model discloses a sealing connecting assembly 53 is arranged, and the dynamic sealing connection between the ice making barrel 4 and the driving end 511 is realized, and this setting not only guarantees power transmission, but also guarantees the sealing between the ice making barrel 4 and the driving end 511, prevents the slush from spilling from the connecting place in the stirring process, further, in some embodiments, the sealing connecting assembly 53 mainly consists of spring, spring seat, sealing ring, moving ring and static ring etc., the moving ring is installed on the driving end 511, and rotates along with the driving end 511, and the static ring is fixed at the connecting hole 42 of the ice making barrel 4, when the driving end 511 rotates, the moving ring is closely attached with the static ring under the pressure action of spring, forms a sealing surface, and the sealing ring is used for preventing medium from leaking from the connecting place of static ring and ice making barrel 4 and the connecting place of moving ring and driving end 511. The elasticity of spring can be automatically adjusted according to the abrasion condition of moving ring and static ring, ensures that always maintains good sealing effect, further, in another embodiment, the sealing connecting assembly 53 consists of packing gland, packing and gland etc. The packing gland is installed at the connecting hole 42 of the ice making barrel 4, and the packing usually selects the packing of graphite fiber or polytetrafluoroethylene etc. material, is wound on the driving end 511 and is put into the packing gland, and the gland is used for pressing the packing, and the packing is deformed in the packing gland by the pressure of the gland to the packing, fills the gap between the driving end 511 and the packing gland, thereby realizes sealing, when the driving end 511 rotates in the operation process of the slush machine, the packing will form certain friction with the surface of the driving end 511, but because the packing has good flexibility and self-lubricating, can guarantee sealing while allowing the driving end 511 to rotate smoothly, further, in some embodiments, the sealing connecting assembly 53 adopts the labyrinth sealing structure, and a plurality of annular protrusions or grooves are processed on the driving end 511, and the corresponding grooves or protrusions that cooperate with the protrusions or grooves on the driving end 511 are processed on the inner wall of the connecting hole 42 of the ice making barrel 4, forming the labyrinth type sealing channel, when the slush machine operates, the driving end 511 rotates, because of the existence of the labyrinth channel, the slush medium flows in the channel and is hindered and throttled repeatedly, thereby greatly reducing the leakage.

[0039] Further, as Figures 1-17As shown in one of the slush machines, the sealing connection assembly 53 is provided with a rotating support 531 and a first sealing element 532 embedded in the rotating support 531 and used for sealing between the driving end 511 and the ice making barrel 4, the first sealing element 532 is provided with a sealing groove 5321 clamped in the connecting hole 42 and a sealing end 5322 in sliding connection with the driving end 511, and the sealing end 5322 is provided with a plurality of sealing portions 5323 in sliding connection with the driving end 511, and a lubricating groove 5324 is arranged between two sealing portions 5323 for storing lubricating oil.

[0040] The rotating support 531 in the utility model is used for supporting the rotation of the driving end 511, thereby ensuring that the stirring assembly 5 can operate efficiently in the ice making cavity 41, and the first sealing element 532 embedded in the rotating support 531 is used for realizing the sealing connection between the driving end 511 and the ice making barrel 4, which helps to maintain the sealing property of the entire ice making cavity 41; further, the first sealing element 532 is provided with the sealing groove 5321 clamped in the connecting hole 42, thereby ensuring the sealing property between the sealing connection assembly 53 and the ice making barrel 4, and the sliding connection between the sealing end 5322 and the driving end 511 realizes the dynamic sealing connection of the two, thereby ensuring that the sealing effect is maintained well even under dynamic conditions; further, a plurality of sealing portions 5323 and the lubricating groove 5324 between the two sealing portions 5323 are arranged on the sealing end 5322, the first sealing element 532 adopts food-grade fluorine rubber in the embodiment, has good elasticity, corrosion resistance and sealing performance, and meets the food hygiene requirements, in addition, the lubricating oil is stored in the lubricating groove 5324 to reduce the friction of the driving end 511, and the sealing portions 5323 at both ends can effectively prevent the lubricating oil from entering the ice making cavity 41; further, the compression amount of the first sealing element 532 is between 15% and 30%, if the compression amount is too large, the first sealing element 532 will be excessively worn, thereby shortening the service life, and if the compression amount is too small, the sealing force cannot be provided enough.

[0041] Further, as shown in one of the slush machines, Figures 1-17 As shown in one of the slush machines, the end cover 21 is provided with an ice outlet 211, the ice outlet assembly 2 further includes a shielding assembly 22 used for opening or closing the ice outlet 211, the shielding assembly 22 includes a handle 221 rotationally connected to the end cover 21 and an opening and closing assembly 222 connected with the handle 221 and capable of sliding or rotating relative to the end cover 21, the second sealing assembly includes a second sealing element 223 located between the opening and closing assembly 222 and the ice outlet 211 and connected with the opening and closing assembly 222, and the handle 221 controls the opening and closing assembly 222 to slide or rotate, so that the opening and closing assembly 222 or the second sealing element 223 shields or opens the ice outlet 211.

[0042] In the utility model, handle 221 is rotatably connected on end cover 21, and is connected with one side of opening and closing assembly 222, and second sealing piece 223 is connected on the other side of opening and closing assembly 222, so that handle 221 can drive opening and closing assembly 222 to slide or rotate relative to end cover through connecting rod or gear transmission mechanism, so as to realize the shielding or opening of ice outlet 211, and the sealing of ice outlet 211 is realized through second sealing piece 223; further, in some embodiments, second sealing piece 223 directly shields and seals ice outlet 211; further, the rotatable connection of handle 221 increases the flexibility of operation, so that the user can complete the opening and closing action of ice outlet by simply rotating handle, and the operation process is simplified; further, in some embodiments, in order to enhance the experience of the user, automatic locking device can also be added, and when handle reaches the predetermined position, it is automatically locked, prevents accidental opening or closing, and ensures the safety of operation.

[0043] Further, as shown in Figures 1-17 An ice slurry machine, wherein the ice outlet assembly 2 further comprises an elastic assembly 224 for maintaining the second sealing piece 223 shielding the ice outlet 211, the handle 221 is provided with a gear assembly 2211, the opening and closing assembly 222 is provided with a rack assembly 2221 cooperating with the gear assembly 2211, the shielding assembly 22 is located on the side of the end cover 21 away from the ice making cavity 41, and the ice outlet 211 is located on the side of the end cover 21 close to the shielding assembly 22, and the gear assembly 2211 and the rack assembly 2221 cooperate to enable the handle 221 to control the sliding of the opening and closing assembly 222 to shield or open the ice outlet 211.

[0044] In the utility model, the main role of elastic assembly 224 is to ensure that handle 221 maintains the position shielding ice outlet 211 in the non-operation state, when the user needs to open ice outlet 211, only needs to pull handle 221 to overcome the resistance of elastic assembly 224, and makes opening and closing assembly 222 move away from ice outlet 211, and once the user releases the handle, elastic assembly 224 will immediately cause handle 221 to reset, drive opening and closing assembly 222 to return to the shielding position, thereby ensuring the sealing property of ice making cavity 41; further, by providing gear assembly 2211 on handle 221, and letting opening and closing assembly 222 be provided with rack assembly 2221 cooperating with gear assembly 2211, since ice outlet 211 is located on the side of end cover 21, opening and closing assembly 222 is in the vertical sliding direction, and second sealing piece 223 is tightly pressed between opening and closing assembly 222 and end cover 21, through gear assembly 2211 and rack assembly 2221, not only the precision of the position of opening and closing assembly 222 shielding or opening ice outlet 211 is improved, but also the friction force between second sealing piece 223 and opening and closing assembly 222 and end cover 21 respectively when the user pulls handle 221 to make second sealing piece 223 slide can be effectively reduced.

[0045] Further, as shown in Figures 1-17 the ice blender, wherein the handle 221 is provided with a connecting part 2212 near one side of the opening and closing assembly 222, the opening and closing assembly 222 is provided with a rotating rod 2222 fixed to the end cover 21 and a connecting groove 2223 for the connecting part 2212 to extend into and slide, the rotating rod 2222 is located between the connecting groove 2223 and the second sealing element 223, and the ice outlet 211 is located on the lower side of the end cover 21, the handle 221 is rotated to make the opening and closing assembly 222 rotate around the rotating rod 2222 to block or open the ice outlet 211.

[0046] The utility model discloses a connecting part 2212 is arranged on one side of the handle 221 near the opening and closing assembly 222, the opening and closing assembly 222 is fixed with the rotating rod 2222 and the connecting groove 2223 for the connecting part 2212 to extend into and slide, and the ice outlet 211 is arranged on the lower side of the end cover 21, which makes the user pull or lift the handle 221 to make the opening and closing assembly 222 rotate around the rotating rod 2222, and then control the second sealing element 223 to extend into or exit the ice outlet 211 to complete the blocking and sealing action, further, the handle 221 is rotatably connected with the end cover 21 through the rotating rod 2213, when the handle 221 is in the blocking state, the connecting line of the connecting part 2212 and the rotating rod 2213 is perpendicular to the connecting line angle of the connecting part 2212 and the rotating rod 2222, so that the self-locking function of the handle 221 in the blocking state is realized, and only when the user applies sufficient external force can the handle 221 be unlocked, which ensures that the ice outlet 211 cannot be accidentally opened even in the case of ice blender vibration, and the safety of use is enhanced.

[0047] Further, as shown in Figures 1-17 the ice blender, wherein the inlet assembly 3 is further provided with an inlet bin 32 in sealing connection with the inlet pipe 31 and used for providing ice slurry raw materials for the ice making cavity 41, and a cover plate assembly 33 used for blocking the inlet bin 32, the third sealing assembly includes a third sealing element 331 arranged on the cover plate assembly 33 and used for extending into the inlet bin 32, the third sealing element 331 is used for sealing the inlet channel 311, the inlet assembly 3 is detachably connected to the upper side of the ice blender body 1, and the third sealing element 331 is provided in a flared shape near one side of the inlet pipe 31.

[0048] The utility model discloses a through setting up the feeding bin 32 of sealed connection with the feeding pipe 31 and the cover plate assembly 33 for shielding the feeding bin 32 at the feeding assembly 3, effectively avoid the ice sand raw material pollution problem of feeding assembly 3 in the daily operation process of outside impurity, further, through setting up third sealing piece 331 to seal the feeding channel 311 at the cover plate assembly 33, ensure that the ice making cavity 41 is always in the completely closed state in the whole ice making process, further, the feeding assembly 3 still is equipped with the feeding port 3221 of communication with the feeding channel 311, and third sealing piece 331 is close to the side of feeding port 3221 and is set up as a flared mouth, so that third sealing piece 331 can utilize the edge of flared mouth to compress the surrounding area of feeding port 3221, thereby better realize the sealing effect of feeding channel 311, further, through the setting of the feeding assembly 3 detachable connection on the upside of slurry machine main body 1, the user's daily cleaning and maintenance work of disassembling feeding assembly 3 is facilitated, further, feeding port 3221 is equipped with a plurality of parallelly arranged blocking parts 3222, can play the safety effect, prevent the user from accidentally putting tools and fingers into the feeding channel 311.

[0049] Further, as shown in Figures 1-17 A slurry machine, wherein the feeding bin 32 further comprises a first feeding bin 321 and a second feeding bin 322 connected to the inner side of the first feeding bin 321, and the feeding pipe 31 is sealed and connected between the first feeding bin 321 and the second feeding bin 322 through the third sealing assembly, and the first feeding bin 321 and the second feeding bin 322 are detachably connected. The utility model splits the feeding bin 32 into the first feeding bin 321 and the second feeding bin 322 connected to the inner side of the first feeding bin 321, and makes the feeding pipe 31 sealed and connected between the first feeding bin 321 and the second feeding bin 322 through the third sealing assembly, sets a sealing piece between the feeding pipe 31 and the first feeding bin 321, and also sets a sealing piece between the feeding pipe 31 and the second feeding bin 322, further ensures the complete sealing of the slurry raw material transmission process, and the double sealing setting further improves the sealing effect, effectively prevents the slurry raw material from leaking or being contaminated by the outside during the transmission process, and further, the first feeding bin 321 and the second feeding bin 322 are detachably connected, and the slurry raw material is stored in the second feeding bin 322, so that the user can easily disassemble and clean the second feeding bin 322, and the maintenance convenience of the equipment is improved.

[0050] Further, as shown in Figures 1-17The illustrated one kind of ice blender, wherein the stirring end 52 is equipped with stirring shaft 521, the stirring blade 522 that is spirally arranged around stirring shaft 521, the lateral stirring portion 523 that is located stirring blade 522 and is arranged along the axial direction of stirring shaft 521, the flow area 524 that is located between stirring blade 522 and stirring shaft 521, and the flow guide end 525 that is located at one end of stirring blade 522 close to ice outlet 211, the flow guide end 525 is arranged at an angle with stirring blade 522, the cross section of flow guide end 525 is arranged in arc shape, stirring blade 522 is arranged in variable pitch, and the end of stirring end 52 away from driving assembly 51 is rotationally connected with end cover 21.

[0051] The utility model discloses a stirring end 52 can be stripped and reblended into the slush main body to the ice slurry that adheres on the inner wall of ice making cavity 41, has ensured the mixing homogeneity and slush quality, has further strengthened the stirring effect, further, through setting flow area 524 between stirring vane 522 and stirring shaft 521, has provided the additional flow space for the slush, has promoted the sufficient contact and fusion between the slush raw material, makes the slush can flow to the ice outlet 211 more smoothly, has reduced the possibility of jam, further, stirring vane 522 is variable pitch setting, and the pitch is gradually smaller from the one side of feeding pipe 31 to the one side of ice outlet 211, through the one side of stirring vane 522 pitch greater is close to feeding pipe 31, makes the raw material just enter ice making cavity 41 to have the space of preliminary mixing, and the smaller pitch is located the one side close to ice outlet 211, can effectively compress the slush further and refine, further improve the taste of slush, further, the setting of stirring vane 522 variable pitch can automatically adjust the stirring effect according to different rotating speed and load condition, adapts multiple types of ingredients, guarantees the best stirring efficiency and quality, further, the one end of stirring end 52 away from drive assembly 51 is rotationally connected with end cover 21, this setting better ensures the stability of stirring end 52 in the whole stirring rotation process, reduces the vibration and noise, also helps to improve the stirring precision and efficiency, further, through setting the two drainage ends 525 of symmetrical setting at the one end of stirring vane 522 close to ice outlet 211, drainage end 525 is set along the axial direction of stirring shaft 521, makes drainage end 525 and stirring vane 522 be angle setting, when the slurry reaches the one side of ice outlet 211 along stirring vane 522, can be pushed along the circumferential direction of ice making bucket 4 to the ice outlet 211 at the lower side of stirring vane 522 by drainage end 525, further, the cross section of drainage end 525 is curved arc setting to the inner wall side of ice making bucket 4, makes drainage end 525 and the inner wall of ice making bucket 4 form a space, when the slurry is pushed along the circumferential direction of ice making bucket 4 by drainage end 525, because the cross section of drainage end 525 is curved arc setting to the inner wall side of ice making bucket 4, makes the slurry be pushed into the space formed by drainage end 525 and the inner wall of ice making bucket 4, when stirring vane 522 rotates to the ice outlet 211 at the lower side, the space is communicated with ice outlet 211, thereby better driving the slurry extrusion ice outlet 211.

[0052] Further, as Figures 1-17The ice slush machine shown, wherein the ice slush machine body 1 further comprises a refrigeration assembly 6 for maintaining the temperature of the ice making cavity 41, the refrigeration assembly 6 has temperature detection function. The utility model discloses a refrigeration assembly 6 is arranged in the ice slush machine body 1 to maintain the temperature of the ice making cavity 41, this setting directly solves the situation that the traditional ice slush machine cannot maintain the temperature when stirring ice slush raw materials and storing ice slush, causes ice slush raw materials and ice slush to melt;Further, the refrigeration assembly 6 is provided with temperature detection function, can monitor and adjust the temperature in the ice making cavity 41 in real time, ensure that ice slush raw materials and ice slush always keep in a stable frozen state to freeze raw materials;Further, in some embodiments, in order to realize more efficient refrigeration effect, the ice making bucket 4 is wrapped by adopting multilayer heat insulation material, so that the freezing temperature of the ice making cavity 41 is further maintained;Further, in some embodiments, the refrigeration assembly 6 also cooperates with the control system, and can automatically adjust the most suitable temperature parameter according to the preset ice slush formula.

[0053] As Figures 1-17 The embodiments of the utility model are as follows:

[0054] In this embodiment, an ice slush machine is provided, mainly composed of ice outlet assembly 2, feeding assembly 3, ice making cavity 41 and stirring assembly 5, wherein the ice making cavity 41 as the core component plays the role of connecting the ice outlet assembly 2 and the feeding assembly 3, and is the key to input and output ice slush raw materials. At the same time, in order to ensure the effective ice making process, we set a stirring assembly 5 in the ice making cavity 41, which includes a driving assembly 51 that drives it to rotate, wherein the driving assembly 51 is arranged outside the ice making cavity 41, and the stirring part connected with the driving assembly 51 extends to the inside of the ice making cavity 41.

[0055] In addition, the driving assembly 51 ensures the sealed connection between the ice making cavity 41 through the first sealing assembly, not only realizes the effective transmission of power, but also greatly improves the hygiene condition and safety in the ice making process. In addition, the sealed connection between the driving assembly 51 and the ice making cavity 41 is ensured through the first sealing assembly, the sealed connection between the ice outlet assembly 2 and the ice making cavity 41 is ensured through the second sealing assembly, and the sealed connection between the feeding assembly 3 and the ice making cavity 41 is ensured through the third sealing assembly, so that the ice making cavity 41 can form a completely closed space after the ice outlet assembly 2 and the feeding assembly 3 are closed. In addition, in some embodiments, the first sealing assembly, the second sealing assembly and the third sealing assembly are sealing rings.

[0056] When starting to make the smoothie, the user first puts the ice and the ingredients to be crushed into the ice-making cavity 41 through the feeding assembly 3. Then, the feeding assembly 3 and the ice outlet assembly 2 are closed to ensure that the ice-making cavity 41 is in a sealed state, which is crucial to maintaining the hygiene of the internal environment, preventing external impurities from entering the ice-making cavity 41, and locking the aroma and flavor of the food being processed, making the final product more delicious. In addition, this sealed setting effectively prevents the smoothie from splashing during the operation of the high-speed rotating stirring assembly 5, not only improving the hygiene standard, but also increasing the safety of use and reducing the loss of raw materials.

[0057] Next, the driving assembly 51 located outside the ice-making cavity 41 is started, wherein the driving assembly 51 is in sealed connection with the ice-making cavity 41. The sealed connection between the driving assembly 51 and the ice-making cavity 41 ensures that the equipment can maintain good sealing even in a high-intensity working environment, avoiding direct contact between the driving assembly 51 and the internal environment of the ice-making cavity 41, thereby eliminating the risk of introducing pollutants due to mechanical component friction, heating, or lubricating oil leakage, and avoiding any possible leakage problems.

[0058] Finally, under the action of the rapid rotation of the stirring assembly 5, the ice and the ingredients in the ice-making cavity 41 are crushed into fine smoothie, and the smoothie is discharged from the ice outlet assembly 2 by opening the ice outlet assembly 2.

[0059] In some embodiments, the sealing connection assembly 53 mainly comprises a spring, a spring seat, a sealing ring, a dynamic ring and a static ring. The dynamic ring is installed on the driving end 511 and rotates with the driving end 511. The static ring is fixed at the connecting hole 42 of the ice making barrel 4. When the driving end 511 rotates, the dynamic ring tightly abuts against the static ring under the pressure of the spring to form a sealing surface. The sealing ring is used to prevent medium from leaking from the connecting hole of the static ring and the ice making barrel 4 and the connecting hole of the dynamic ring and the driving end 511. The spring force can be automatically adjusted according to the wear condition of the dynamic ring and the static ring to ensure that the sealing effect is always good. In other embodiments, the sealing connection assembly 53 is composed of a packing gland, packing and a gland. The packing gland is installed at the connecting hole 42 of the ice making barrel 4. The packing is usually made of graphite fiber or polytetrafluoroethylene and is wound on the driving end 511 and put into the packing gland. The gland is used to compress the packing. By applying pressure to the packing through the gland, the packing is deformed in the packing gland to fill the gap between the driving end 511 and the packing gland, thereby achieving sealing. During the operation of the smoothie maker, the packing will form a certain friction with the surface of the driving end 511 when the driving end 511 rotates. However, due to the good flexibility and self-lubricating property of the packing, the driving end 511 can rotate smoothly while ensuring sealing. In addition, in some embodiments, the sealing connection assembly 53 adopts a labyrinth sealing structure. A plurality of annular protrusions or grooves are machined on the driving end 511. The inner wall of the connecting hole 42 of the ice making barrel 4 is correspondingly machined with grooves or protrusions matched with the protrusions or grooves on the driving end 511 to form a labyrinth sealing channel. When the smoothie maker operates, the driving end 511 rotates. Due to the existence of the labyrinth channel, the medium such as smoothie will be hindered and throttled multiple times when flowing in the channel, thereby greatly reducing the leakage.

[0060] In some embodiments, the rotating support 531 is configured to support the rotation of the driving end 511, thereby ensuring that the stirring assembly 5 can operate efficiently within the ice making cavity 41. The first sealing member 532 embedded in the rotating support 531 is configured to achieve a sealed connection between the driving end 511 and the ice making barrel 4, thereby helping to maintain the closed nature of the entire ice making cavity 41. In addition, the first sealing member 532 is provided with a sealing groove 5321 that is engaged in the connecting hole 42, thereby ensuring the sealing between the sealing assembly 53 and the ice making barrel 4. The sliding connection between the sealing end 5322 and the driving end 511 achieves dynamic sealing connection between the two, thereby ensuring that the sealing effect is maintained even under dynamic conditions. In addition, the first sealing member 532 in this embodiment is made of food-grade fluorine rubber, which has good elasticity, corrosion resistance, and sealing performance, and meets the requirements of food hygiene. In addition, the lubricating oil is stored in the lubricating groove 5324 between the two sealing portions 5323 to reduce the friction of the driving end 511. The sealing portions 5323 at both ends can effectively prevent the lubricating oil from entering the ice making cavity 41. The compression amount of the first sealing member 532 is between 15% and 30%. If the compression amount is too large, the first sealing member 532 will be excessively worn, thereby shortening its service life. If the compression amount is too small, it will not provide sufficient sealing force. In addition, the compression amount of the first sealing member 532 in this embodiment is 15%.

[0061] In some embodiments, the handle 221 is rotatably connected to the end cover 21 and connected to one side of the opening and closing assembly 222. The second sealing member 223 is connected to the other side of the opening and closing assembly 222, so that the handle 221 can drive the opening and closing assembly 222 to slide or rotate relative to the end cover 21 through a transmission mechanism such as a connecting rod or a gear, so as to achieve the blocking or opening of the ice outlet 211, and the second sealing member 223 is used to seal the ice outlet 211. In some embodiments, the second sealing member 223 directly blocks and seals the ice outlet 211. In addition, the rotatable connection of the handle 221 increases the flexibility of the operation, so that the user only needs to simply rotate the handle to complete the opening and closing of the ice outlet, thereby simplifying the operation process. In addition, in some embodiments, in order to enhance the user experience, an automatic locking device can be added, which automatically locks when the handle reaches a predetermined position, thereby preventing accidental opening or closing and ensuring the safety of the operation.

[0062] In the fifth embodiment, the elastic component 224 is mainly used to ensure that the handle 221 is kept in a position to shield the ice outlet 211 in a non-operation state. When the user needs to open the ice outlet 211, the user only needs to pull the handle 221 to overcome the resistance of the elastic component 224, so that the opening and closing component 222 is moved away from the ice outlet 211. Once the user releases the handle 221, the elastic component 224 will immediately return the handle 221 to the shielding position, so as to ensure the sealing of the ice making cavity 41. In addition, the gear assembly 2211 is arranged on the handle 221, and the opening and closing component 222 is provided with the rack assembly 2221 matched with the gear assembly 2211. Since the ice outlet 211 is located on the side of the end cover 21, the opening and closing component 222 is in a vertical sliding direction, and the second sealing member 223 is tightly pressed between the opening and closing component 222 and the end cover 21. Through the gear assembly 2211 and the rack assembly 2221, the precision of the position of the opening and closing component 222 shielding or opening the ice outlet 211 is improved, and the frictional force between the second sealing member 223 and the opening and closing component 222 and the end cover 21 when the user pulls the handle 221 to make the second sealing member 223 slide is effectively reduced.

[0063] In the sixth embodiment, the handle 221 is provided with a connecting portion 2212 on the side close to the opening and closing component 222, the opening and closing component 222 is fixed with a rotating rod 2222 and a connecting groove 2223 in which the connecting portion 2212 extends and slides, and the ice outlet 211 is arranged on the lower side of the end cover 21. Therefore, the user can rotate the opening and closing component 222 around the rotating rod 2222 by pulling or lifting the handle 221, so as to control the second sealing member 223 to extend into or exit from the ice outlet 211 to complete the shielding and sealing action. In addition, the handle 221 is rotationally connected with the end cover 21 through the rotating rod 2213. When the handle 221 is in the shielding state, the connecting line between the connecting portion 2212 and the rotating rod 2213 is perpendicular to the connecting line between the connecting portion 2212 and the rotating rod 2222, so as to realize the self-locking function of the handle 221 in the shielding state. Only when the user applies sufficient external force can the handle 221 be unlocked, so as to ensure that the ice outlet 211 will not be accidentally opened even in the case of vibration of the smoothie maker, and the safety of use is enhanced.

[0064] Embodiment seven, this embodiment includes the features of embodiment six, and is different from embodiment six in that this embodiment effectively avoids the problem of contamination of the smoothie raw materials in the feeding assembly 3 by the external impurities during daily operation by providing a feeding bin 32 in sealing connection with the feeding pipe 31 and a cover plate assembly 33 for shielding the feeding bin 32. In addition, by providing a third sealing member 331 on the cover plate assembly 33 to seal the feeding channel 311, it is ensured that the ice making cavity 41 is always in a completely closed state during the entire ice making process. In addition, the feeding assembly 3 is also provided with a feeding port 3221 in communication with the feeding channel 311, and the third sealing member 331 is provided in a flared shape near the side of the feeding port 3221, so that the third sealing member 331 can use the edge of the flared opening to compress the area around the feeding port 3221, thereby better achieving the sealing effect of the feeding channel 311. Then, by detachably connecting the feeding assembly 3 on the upper side of the smoothie machine main body 1, it is convenient for the user to disassemble the feeding assembly 3 for daily cleaning and maintenance work. In addition, the feeding port 3221 is provided with a plurality of parallelly arranged blocking portions 3222, which can achieve a safety effect and prevent the user from accidentally inserting tools and fingers into the feeding channel 311.

[0065] Embodiment eight, this embodiment includes the features of embodiment seven, and is different from embodiment seven in that this embodiment further improves the sealing effect by splitting the feeding bin 32 into a first feeding bin 321 and a second feeding bin 322 connected inside the first feeding bin 321, and sealingly connecting the feeding pipe 31 between the first feeding bin 321 and the second feeding bin 322 through the third sealing assembly, and by providing a sealing member between the feeding pipe 31 and the first feeding bin 321, and also providing a sealing member between the feeding pipe 31 and the second feeding bin 322, further ensuring the complete sealing during the transmission of the smoothie raw materials, which further improves the sealing effect and effectively prevents the smoothie raw materials from leaking or being contaminated during the transmission process. In addition, the first feeding bin 321 and the second feeding bin 322 are detachably connected, and the smoothie raw materials are stored in the second feeding bin 322, so that the user can easily disassemble the second feeding bin 322 for cleaning, and the maintenance convenience of the equipment is improved.

[0066] Example nine, this embodiment includes the features of example eight, distinguished from example eight in that this embodiment enables the stirring end 52 to peel off the ice slush adhering to the inner wall of the ice making cavity 41 and re-mix it into the ice slush body, ensuring uniformity of mixing and quality of the ice slush, further enhancing the stirring effect. In addition, by providing a flow area 524 between the stirring blade 522 and the stirring shaft 521, additional flow space is provided for the ice slush, promoting sufficient contact and fusion between the ice slush ingredients, enabling the ice slush to flow more smoothly to the ice outlet 211, reducing the likelihood of blockage. Furthermore, the stirring blade 522 is provided with a variable pitch, and the pitch gradually decreases from the side of the material inlet pipe 31 to the side of the ice outlet 211, by placing the side of the stirring blade 522 with a larger pitch close to the material inlet pipe 31, so that the ingredients have sufficient space for preliminary mixing as soon as they enter the ice making cavity 41, while the smaller pitch is located close to the ice outlet 211, which can effectively further compress and refine the ice slush, further improving the taste of the ice slush. Then, the variable pitch of the stirring blade 522 can automatically adjust the stirring effect according to different rotation speeds and load conditions, adapt to various types of ingredients, and ensure the best stirring efficiency and quality. Then, the end of the stirring end 52 away from the driving assembly 51 is rotationally connected with the end cover 21, which better ensures the stability of the stirring end 52 during the entire stirring rotation process, reduces vibration and noise, and also helps to improve stirring precision and efficiency. In addition, by providing two symmetrical flow guide ends 525 at the end of the stirring blade 522 close to the ice outlet 211, the flow guide ends 525 are arranged in the axial direction of the stirring shaft 521, so that the flow guide ends 525 are arranged at an angle with the stirring blade 522, when the ice slush reaches the side of the ice outlet 211 along the stirring blade 522, it can be pushed by the flow guide end 525 to the ice outlet 211 located on the lower side of the stirring blade 522 in the circumferential direction of the ice making bucket 4. Finally, the cross section of the flow guide end 525 is curved towards the inner wall of the ice making bucket 4, so that the flow guide end 525 and the inner wall of the ice making bucket 4 form a space, when the ice slush is pushed by the flow guide end 525 to rotate in the circumferential direction of the ice making bucket 4, due to the curved cross section of the flow guide end 525 towards the inner wall of the ice making bucket 4, the ice slush is pushed into the space formed by the flow guide end 525 and the inner wall of the ice making bucket 4, when the stirring blade 522 rotates to the lower ice outlet 211, the space communicates with the ice outlet 211, thereby better driving the ice slush to extrude out of the ice outlet 211.

[0067] Embodiment ten, this embodiment includes the features of embodiment nine, and is different from embodiment nine in that this embodiment maintains the temperature of the ice-making cavity 41 by providing a refrigeration assembly 6 in the blender main body 1, directly solving the problem that the traditional blender cannot maintain the temperature when blending the ice slush raw materials and storing the ice slush, resulting in the melting of the ice slush raw materials and the ice slush. In addition, the refrigeration assembly 6 is provided with a temperature detection function, which can monitor and adjust the temperature in the ice-making cavity 41 in real time, ensuring that the ice slush raw materials and the ice slush always remain in a stable frozen state to freeze the raw materials. In addition, in some embodiments, in order to achieve a more efficient refrigeration effect, the ice-making bucket 4 is wrapped with multiple layers of thermal insulation materials, thereby further maintaining the freezing temperature of the ice-making cavity 41. In addition, in some embodiments, the refrigeration assembly 6 also cooperates with the control system, which can automatically adjust the most suitable temperature parameters according to the preset ice slush formula.

[0068] Embodiment eleven, this embodiment includes the features of embodiment ten, and is different from embodiment ten in that in this embodiment, the compression amount of the first sealing member 532 is 30%.

[0069] Embodiment twelve, this embodiment includes the features of embodiment ten, and is different from embodiment ten in that in this embodiment, the compression amount of the first sealing member 532 is 23%.

Claims

1. A smoothie maker comprising a smoothie maker body (1) characterised in that: The ice slurry machine body (1) comprises an ice outlet assembly (2), an ice inlet assembly (3), an ice making cavity (41) connecting the ice outlet assembly (2) and the ice inlet assembly (3), and a stirring assembly (5) for stirring the ice making cavity (41), the stirring assembly (5) comprises a driving assembly (51) outside the ice making cavity (41), and a first sealing assembly for sealing connection with the ice making cavity (41), the ice outlet assembly (2) comprises a second sealing assembly, the ice inlet assembly (3) comprises a third sealing assembly, and the first sealing assembly, the second sealing assembly and the third sealing assembly cooperate so that when the ice outlet assembly (2) and the ice inlet assembly (3) are in a closed state, the ice making cavity (41) is in a sealed state.

2. The smoothie machine of claim 1, wherein: The ice slurry machine body (1) further comprises an ice making bucket (4), the ice making cavity (41) is arranged in the ice making bucket (4), the ice outlet assembly (2) is provided with an end cover (21) sealingly connected with the ice making bucket (4), the ice inlet assembly (3) is provided with an ice inlet pipe (31) sealingly connected with the ice making bucket (4), the ice inlet pipe (31) is provided with an ice inlet channel (311) communicating with the ice making cavity (41), the ice making bucket (4) is provided with a connecting hole (42) on one side and an ice making bucket opening (43) on the other side and sealingly connected with the end cover (21) through the second sealing assembly, the driving assembly (51) is provided with a driving end (511) extending into the connecting hole (42), the stirring assembly (5) is further provided with a stirring end (52) connected with the driving end (511), and the first sealing assembly comprises a sealing connection assembly (53) connecting the driving end (511) and the ice making bucket (4), and the stirring end (52) is located in the ice making cavity (41).

3. The smoothie machine of claim 2, wherein: The sealing connection assembly (53) is provided with a rotating support (531) and a first sealing member (532) embedded in the rotating support (531) and used for sealing between the driving end (511) and the ice making bucket (4), the first sealing member (532) is provided with a sealing groove (5321) fitted in the connecting hole (42) and a sealing end (5322) slidingly connected with the driving end (511), the sealing end (5322) is provided with a plurality of sealing portions (5323) slidingly connected with the driving end (511), and a lubricating groove (5324) for storing lubricating oil is arranged between two sealing portions (5323).

4. The smoothie machine of claim 2, wherein: The end cover (21) is provided with an ice outlet (211), the ice outlet assembly (2) further comprises a shielding assembly (22) for opening or closing the ice outlet (211), the shielding assembly (22) comprises a handle (221) rotatable relative to the end cover (21), and an opening and closing assembly (222) connected with the handle (221) and slidable or rotatable relative to the end cover (21), a second sealing assembly comprises a second sealing element (223) located between the opening and closing assembly (222) and the ice outlet (211) and connected with the opening and closing assembly (222), the handle (221) controls the opening and closing assembly (222) to slide or rotate, so that the opening and closing assembly (222) or the second sealing element (223) shields or opens the ice outlet (211).

5. The smoothie machine of claim 4, wherein: The ice outlet assembly (2) further comprises an elastic assembly (224) for maintaining the second sealing element (223) shielding the ice outlet (211), the handle (221) is provided with a gear assembly (2211), the opening and closing assembly (222) is provided with a rack assembly (2221) matched with the gear assembly (2211), the shielding assembly (22) is located on the side of the end cover (21) away from the ice making cavity (41), the ice outlet (211) is located on the side of the end cover (21) close to the shielding assembly (22), the gear assembly (2211) and the rack assembly (2221) are matched, so that the handle (221) controls the opening and closing assembly (222) to slide to shield or open the ice outlet (211).

6. The smoothie machine of claim 4, wherein: The handle (221) is provided with a connecting portion (2212) on the side close to the opening and closing assembly (222), the opening and closing assembly (222) is provided with a rotating rod (2222) fixed on the end cover (21) and a connecting groove (2223) for the connecting portion (2212) to extend into and slide, the rotating rod (2222) is located between the connecting groove (2223) and the second sealing element (223), the ice outlet (211) is located on the lower side of the end cover (21), the handle (221) is rotated, so that the opening and closing assembly (222) is rotated around the rotating rod (2222) to shield or open the ice outlet (211).

7. The smoothie maker of claim 2, wherein: The feeding assembly (3) is further provided with a feeding bin (32) in sealing connection with the feeding pipe (31) and for providing ice sand raw materials to the ice making cavity (41), and a cover plate assembly (33) for shielding the feeding bin (32), the third sealing assembly comprises a third sealing element (331) provided on the cover plate assembly (33) and for extending into the feeding bin (32), the third sealing element (331) is used for sealing the feeding channel (311), the feeding assembly (3) is detachably connected on the upper side of the ice sand machine body (1), and the third sealing element (331) is provided in a flared shape on the side close to the feeding pipe (31).

8. The smoothie machine of claim 7, wherein: The feeding bin (32) further comprises a first feeding bin (321) and a second feeding bin (322) connected inside the first feeding bin (321), the feeding pipe (31) is sealed and connected between the first feeding bin (321) and the second feeding bin (322) through the third sealing assembly, and the first feeding bin (321) and the second feeding bin (322) are detachably connected.

9. The smoothie maker of claim 4, wherein: The stirring end (52) is provided with a stirring shaft (521), stirring blades (522) arranged in a spiral shape around the stirring shaft (521), a lateral stirring part (523) arranged on the stirring blades (522) and in the axial direction of the stirring shaft (521), a flow area (524) between the stirring blades (522) and the stirring shaft (521), and a flow guide end (525) arranged on one end of the stirring blades (522) close to the ice outlet (211), the flow guide end (525) is arranged at an angle with the stirring blades (522), the cross section of the flow guide end (525) is arranged in an arc shape, the stirring blades (522) are arranged in a variable pitch, and one end of the stirring end (52) away from the driving assembly (51) is rotationally connected with the end cover (21).

10. The smoothie machine of claim 1, wherein: The ice slush machine body (1) further comprises a refrigeration assembly (6) for maintaining the temperature of the ice making cavity (41), and the refrigeration assembly (6) has a temperature detection function.