Smoothie machine
Through the detachable connection and the rationally designed processing barrel matching part, the problem of inconvenient cleaning of the vertical smoothie machine is solved, deep cleaning and structural rationality are achieved, and the residue on the evaporator surface is ensured to be reduced.
Patent Information
- Application Number
- CN202422782193.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-11-15
AI Technical Summary
The processing barrel of the existing vertical smoothie machine cannot be disassembled, which makes cleaning inconvenient and poses a hygienic problem.
The processing barrel and the main unit are detachably connected. The mating part of the processing barrel contacts and fits with the outer wall of the evaporator. The mating part is designed as a slope with a higher inner side and a lower outer side to ensure that food residues cannot enter the barrel. The rational design of the mating structure enables reliable disassembly and sealing.
It is convenient for deep cleaning, reduces residue on the evaporator surface, improves cleaning efficiency, and avoids the host being troubled by food residue. The structural design is reasonable and easy to use.
Smart Images

Figure CN223310585U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of electrical products, in particular to a smoothie machine. Background Art
[0002] With the accelerating pace of life and rising consumer spending, people's demand for beverages is increasingly diverse. Smoothies, as a refreshing and flavorful beverage, are popular among consumers. To meet this market demand, a variety of smoothie-making equipment has emerged. These devices generally utilize a refrigeration cycle system, achieving cooling through components such as a compressor, condenser, evaporator (refrigeration heat exchanger), expander, or throttling mechanism. Simultaneously, a stirring mechanism is incorporated to cool and blend the ice-making liquid into a smoothie, which is then served through an outlet.
[0003] Currently, vertical smoothie machines on the market have been miniaturized through careful planning and layout, making them easy to transport and carry, meeting the needs of homes and small businesses. However, despite their optimized size, the processing barrel cannot be removed from the main unit, making it difficult for users to fully clean it and posing hygiene issues. Utility Model Content
[0004] In order to overcome the deficiencies in the prior art, the present invention provides a smoothie machine, wherein a processing barrel and a main unit are detachably connected, so that a user can completely remove the processing barrel from the main unit and expose the evaporator, thereby facilitating deep cleaning by the user.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0006] A smoothie machine includes: a main unit, an evaporator, and a processing barrel, the evaporator is arranged on the main unit, one side of the processing barrel is formed as a processing barrel installation side, and the side of the processing barrel opposite to the processing barrel installation side is formed as a processing barrel installation opposite side; the processing barrel installation side is provided with an evaporator matching hole for the evaporator to enter the interior of the processing barrel, the processing barrel is mounted outside the evaporator by relying on the evaporator matching hole, and the processing barrel installation side of the processing barrel is detachably connected to the main unit, and a refrigeration processing space for storing raw material liquid and performing refrigeration processing is formed between the processing barrel and the evaporator.
[0007] With the above structure, when in use, the processing barrel needs to be installed on the main unit, and raw liquid is added to the refrigeration processing space. The evaporator can absorb the heat of the raw liquid, so that the raw liquid gradually cools down and turns into a smoothie.
[0008] Since the processing barrel and the main unit are detachably connected in the above structure, the user can remove the processing barrel from the main unit when cleaning is required. This not only allows the processing barrel to be cleaned independently, but also fully exposes the evaporator provided on the main unit, facilitating comprehensive and thorough cleaning and maintenance by the user.
[0009] Specifically, the evaporator is cylindrical.
[0010] Furthermore, the processing barrel includes a processing barrel body portion surrounding the outside of the evaporator when the processing barrel is installed on the main unit, and a processing barrel matching portion provided on the side wall of the barrel body facing the installation side of the processing barrel, wherein one side of the processing barrel matching portion is connected to the inner wall of the processing barrel body portion, and the other side extends toward the axis side of the processing barrel body portion and forms the evaporator matching hole;
[0011] When the processing barrel is installed on the main unit, the side of the processing barrel matching portion away from the inner wall of the processing barrel body contacts and matches with the outer wall of the evaporator.
[0012] The above structure makes the structure of the processing barrel more reasonable; since the processing barrel fitting part is provided in the above structure, and the side of the processing barrel fitting part away from the inner wall of the processing barrel body contacts and fits with the outer wall of the evaporator, when the processing barrel is removed from the main unit, the side of the processing barrel fitting part that forms the evaporator fitting hole will scrape the outer wall of the evaporator and remain in the processing barrel, reducing the residue on the surface of the evaporator, avoiding the main unit from being troubled by food residue, and facilitating subsequent cleaning by the user.
[0013] Furthermore, the side of the processing barrel fitting part facing the opposite side of the processing barrel installation is formed as a processing barrel fitting surface, and along the direction from the side of the processing barrel fitting part away from the inner wall of the processing barrel body to the side facing the inner wall of the processing barrel body, the processing barrel fitting surface gradually tilts away from the opposite side of the processing barrel installation.
[0014] By adopting the above structure, the mating surface of the processing barrel forms a slope with a higher inner side and a lower outer side; when the processing barrel is removed from the main unit, the mating part of the processing barrel scrapes the outer wall of the evaporator, and under the guidance of the mating surface of the processing barrel, the residual food will flow to the side of the inner wall of the processing barrel body, thereby ensuring that the food remains in the processing barrel to the greatest extent, and further preventing the main unit from being troubled by food residue.
[0015] Furthermore, a side of the processing barrel fitting portion away from the inner wall of the processing barrel body portion is made of soft material.
[0016] The above structure can not only ensure the sealing effect between the processing barrel matching part and the outer wall of the evaporator, but also avoid damage to the outer wall of the evaporator when the processing barrel matching part scrapes away residual food on the outer wall of the evaporator.
[0017] Furthermore, the processing barrel fitting part includes a processing barrel fitting part body and a processing barrel soft fitting part. The processing barrel fitting part body is connected to the inner wall of the processing barrel body on one side facing the inner wall of the processing barrel body, and extends toward the axis side of the processing barrel body on the other side. The processing barrel soft fitting part is arranged on the side of the processing barrel fitting part body away from the inner wall of the processing barrel body, and the side of the processing barrel soft fitting part away from the processing barrel fitting part body is formed as the evaporator fitting hole.
[0018] The above structure makes the structure of the processing barrel matching part more reasonable and facilitates actual production.
[0019] Further, the processing barrel fitting portion is formed such that one side of the evaporator fitting hole is formed as an evaporator contact side, and the evaporator contact side has a height in a direction from the processing barrel installation side to the processing barrel installation opposite side.
[0020] The above structure can not only improve the sealing performance between the processing barrel matching part and the evaporator, but also enable the processing barrel matching part to more effectively scrape off residual food on the surface of the evaporator when the processing barrel is disassembled.
[0021] Furthermore, the evaporator contact side is raised toward the axis side of the processing barrel body to form an evaporator contact portion; along the raised direction of the evaporator contact portion, the evaporator contact portion gradually tilts toward the side opposite to the installation of the processing barrel;
[0022] There are multiple evaporator contact parts, and the multiple evaporator contact parts are distributed along the installation side of the processing barrel to the opposite installation side of the processing barrel.
[0023] By adopting the above structure, the sealing performance between the matching part of the processing barrel and the evaporator is further improved, and the residual food on the surface of the evaporator is further effectively scraped off.
[0024] Furthermore, the processing barrel is formed with a first mounting mating surface on the mounting side of the processing barrel, and the main unit is provided with a second mounting mating surface at the location where the processing barrel is installed, and when the processing barrel is installed on the main unit, the first mounting mating surface is opposite to the second mounting mating surface; a first detachable structure is provided on the first mounting mating surface, and correspondingly, a second detachable structure that is detachably matched with the first detachable structure is provided on the second mounting mating surface.
[0025] With the above structure, the processing barrel is detachably connected to the main machine through the cooperation of the first detachable structure and the second detachable structure.
[0026] Furthermore, the processing barrel mounting side of the processing barrel protrudes away from the opposite side of the processing barrel mounting to form a first mounting fitting portion, the main unit is formed as a processing barrel mounting surface where the processing barrel is installed, and the processing barrel mounting surface protrudes to form a second mounting fitting portion, and when the processing barrel is installed on the main unit, the first mounting fitting portion is located on the outside of the second mounting fitting portion, the side of the first mounting fitting portion facing the second mounting fitting portion is formed as the first mounting fitting surface, and the side of the second mounting fitting portion facing the first mounting fitting portion is formed as the second mounting fitting surface.
[0027] The above structure makes the formation of the first mounting mating surface and the second mounting mating surface more reasonable, so that the first mounting mating surface and the second mounting mating surface are aligned with each other when the processing cylinder is mounted on the main machine.
[0028] Further, one of the first detachable structure and the second detachable structure is configured as a card block, and the other of the first detachable structure and the second detachable structure is configured as a card slot that matches the card block to limit the separation of the processing barrel from the main machine.
[0029] By adopting the above structure, the structures of the first detachable structure and the second detachable structure are more reasonable.
[0030] Furthermore, the first detachable structure is configured as the card block, and correspondingly, the second detachable structure is configured as the card slot;
[0031] A disengagement limiting protrusion is provided on a side of the second mounting mating surface away from the processing barrel mounting surface, and the distance between the disengagement limiting protrusion and the processing barrel mounting surface matches the width of the card block to form the card slot.
[0032] The above structure makes the arrangement of the card block and the card slot more reasonable, and the formation of the card slot more reasonable;
[0033] During installation, the user needs to first misalign the clamping block with the disengagement limiting protrusion to facilitate pre-installation of the processing barrel on the main unit, and then rotate the processing barrel so that the clamping block slides under the disengagement limiting protrusion, thereby preventing the processing barrel from being separated from the main unit;
[0034] During disassembly, the user only needs to rotate the processing barrel in the opposite direction so that the card block slides out from under the disengagement limit protrusion, that is, the card block is misaligned with the disengagement limit protrusion, so that the processing barrel can be disassembled from the main machine.
[0035] Furthermore, the second mounting mating surface is provided with a locking limiting protrusion on one end of the disengagement limiting protrusion, and when the clamping block enters the clamping slot, the locking limiting protrusion abuts against one side of the clamping block.
[0036] With the above structure, the provision of the locking limit protrusion can prevent the card block from moving too far when it slides into the card slot, and can also remind the user to install it in place.
[0037] Furthermore, the clamping block and / or the disengagement limiting protrusion are provided with an installation guide surface for guiding the clamping block to enter the clamping slot. Specifically, the installation guide surface is an inclined surface or an arc surface.
[0038] With the above structure, the arrangement of the installation guide surface can facilitate the smooth entry of the clamping block into the clamping groove when the processing barrel is installed.
[0039] Furthermore, the first mounting surface is provided with a plurality of the first detachable structures, and correspondingly, the second mounting surface is provided with a plurality of the second detachable structures, and the plurality of the first detachable structures and the plurality of the second detachable structures are provided in a one-to-one correspondence;
[0040] The plurality of first detachable structures are distributed at equal intervals, and correspondingly, the plurality of second detachable structures are distributed at equal intervals.
[0041] By adopting the above structure, the cooperation of multiple first detachable structures and multiple second detachable structures can realize the connection between the processing barrel and the main unit more stably and reliably, that is, the processing barrel can be installed on the main unit more stably and reliably; specifically, three first detachable structures are provided, and correspondingly, three second detachable structures are provided.
[0042] Furthermore, the smoothie machine includes a stirring assembly, which includes a stirring paddle and a stirring drive member for driving the stirring paddle to rotate, and the stirring paddle is arranged in the refrigeration processing space; the stirring drive member is located in the evaporator, and the stirring drive shaft of the stirring drive member passes through the evaporator and is driven and connected to the stirring paddle.
[0043] With the above structure, when the smoothie machine is working, the stirring drive member drives the stirring paddle to rotate, so that the stirring paddle can continuously stir the food in the refrigeration processing space, thereby preventing the food in the refrigeration processing space from completely solidifying into ice cubes and keeping it in the smoothie shape.
[0044] Furthermore, the stirring paddle is provided with a stirring drive groove matching the stirring drive shaft, the stirring paddle is sleeved on the stirring drive shaft through the stirring drive groove, and the portion of the stirring drive shaft inserted into the stirring drive groove is non-circular with the cross-section of the stirring drive groove.
[0045] By adopting the above structure, the driving connection between the stirring paddle and the stirring drive shaft can be achieved stably and reliably.
[0046] Furthermore, the processing barrel is provided with a first opening on the side opposite to the installation of the processing barrel, and the first opening can allow the stirring paddle to enter and exit the refrigeration processing space.
[0047] The above structure makes the structure of the smoothie machine more reasonable and facilitates the disassembly of the processing barrel. When the user wants to disassemble the processing barrel, the user needs to first remove the stirring paddle from the stirring drive shaft and take it out from the first opening, and then remove the processing barrel from the main unit. The first opening can facilitate the user to put the raw liquid into the refrigeration processing space.
[0048] Furthermore, the smoothie machine includes a processing barrel cover that matches the first opening to seal the first opening, and a barrel cover sealing ring is provided on the outer periphery of the processing barrel cover.
[0049] The above structure makes the structure of the smoothie machine more reasonable. The arrangement of the processing barrel cover can protect the food in the refrigeration processing space and prevent the food from being contaminated by the external environment.
[0050] Furthermore, the processing barrel cover is provided with a first handle portion, and the stirring paddle is provided with a second handle portion.
[0051] With the above structure, the provision of the first handle portion can facilitate the user to disassemble and assemble the processing barrel cover, and the provision of the second handle portion can facilitate the user to disassemble and assemble the stirring paddle;
[0052] Specifically, both sides of the center position of the processing barrel cover are recessed and the first handle portion is formed between the recesses on both sides; the stirring paddle is protruded toward the first opening on the second handle portion.
[0053] Furthermore, the evaporator includes an evaporator outer cylinder and a cooling medium evaporation tube, and the cooling medium evaporation tube is spirally arranged in contact with the inner wall of the evaporator outer cylinder.
[0054] The above structure makes the structure of the evaporator more reasonable, and the cooling medium flows in the cooling medium evaporation tube to absorb the heat of the liquid in the refrigeration processing space to achieve cooling.
[0055] Furthermore, the evaporator further comprises an evaporator inner cylinder, the evaporator inner cylinder is arranged inside the evaporator outer cylinder and forms an evaporator tube installation cavity for installing the cooling medium evaporation tube between the evaporator inner cylinder and the evaporator outer cylinder, and a temperature insulation member is provided between the cooling medium evaporation tube and the evaporator inner cylinder;
[0056] The stirring driving member is arranged in the inner cylinder of the evaporator.
[0057] The above structure makes the structure of the evaporator more reasonable, and the stirring drive component is arranged in the inner cylinder of the evaporator to more reasonably utilize the space; the arrangement of the insulation component can greatly improve the heat transfer efficiency, and the insulation component adopts a foam layer.
[0058] Furthermore, the processing barrel is provided with a discharge portion connected to the refrigeration processing space; the processing barrel is provided with a discharge valve at the discharge portion for controlling the opening and closing of the discharge portion.
[0059] The above structure makes the structure of the smoothie machine more reasonable. When the smoothie machine makes smoothies to the desired effect, the user can operate the discharge valve to open the discharge part, and the smoothies in the refrigeration processing space can flow out through the discharge part.
[0060] Furthermore, a discharge channel is provided in the discharge part, and the discharge channel is connected with the refrigeration processing space and forms a first discharge port on the processing barrel. The discharge channel is also connected with the outside world and forms a second discharge port on the discharge part; the discharge valve controls the opening and closing of the discharge part by opening and closing the first discharge port.
[0061] The above structure makes the structure of the discharge part more reasonable.
[0062] Furthermore, the discharge valve includes a valve stem, a valve matching hole is provided in the discharge portion opposite to the first discharge port, the valve stem is slidably arranged in the valve matching hole, and a discharge port sealing portion is provided at one end of the valve stem facing the first discharge port, which matches the first discharge port so as to be able to block the first discharge port when the valve stem is close to the first discharge port.
[0063] The above structure makes the structure of the discharge valve more reasonable, and can stably and reliably open and close the discharge part.
[0064] Furthermore, the discharge valve also includes a valve operating member and a valve connecting member, and the valve connecting member is provided at the end of the valve stem away from the first discharge port; the valve operating member is rotatably provided on the discharge part, and the valve connecting member is slidingly connected to the valve operating member and the two can rotate relative to each other.
[0065] The above structure makes the structure of the discharge valve more reasonable, and the arrangement of the valve operating member is convenient for user operation.
[0066] Furthermore, the discharge valve also includes a valve reset component, which acts on the valve stem to make it have a tendency to always move toward the first discharge port side to block the first discharge port; specifically, the valve reset component adopts a spring, and the valve reset component is sleeved on the valve stem and its two ends are respectively in contact with the discharge port blocking part and the inner wall of the discharge part.
[0067] The above structure makes the structure of the discharge valve more reasonable, and the valve reset member can automatically reset when the user opens the first discharge port, and ensures that the discharge port blocking part can stably and reliably block the first discharge port.
[0068] Furthermore, the smoothie machine includes a cooling assembly connected to the evaporator to drive a cooling medium to circulate between the cooling assembly and the evaporator and reduce the temperature of the cooling medium.
[0069] The above structure makes the structure of the smoothie machine more reasonable. The cooling component can drive the circulation of the cooling medium between the evaporator and the cooling component, and the heat absorbed by the cooling medium when it flows to the evaporator can be released when it flows to the cooling component, so as to achieve its stable and reliable long-term operation; of course, in some embodiments, the cooling component is in the form of an accessory.
[0070] Furthermore, the cooling assembly includes a condenser for reducing the temperature of the cooling medium, and a compressor for driving the cooling medium to circulate between the condenser and the evaporator.
[0071] The above structure makes the cooling assembly more reasonable.
[0072] Furthermore, the condenser and the compressor are arranged in the host, the host is provided with a cooling air duct for dissipating heat from the condenser, and an air inlet and a heat dissipation port connected to the cooling air duct are opened on the surface of the host.
[0073] The above structure makes the installation of the condenser and the compressor more reasonable, and the cooling air duct can dissipate heat for the condenser, so that it can have a better effect when working.
[0074] Furthermore, the cooling assembly includes a heat dissipation fan arranged near the condenser, and the blowing direction of the heat dissipation fan matches the direction of the cooling air duct.
[0075] With the above structure, the heat dissipation fan can dissipate heat from the condenser, so that the condenser has a better working effect.
[0076] Furthermore, a first installation cavity for installing the compressor and a second installation cavity for installing the condenser are provided in the main unit.
[0077] The above structure makes the main unit more reasonable and facilitates accommodating the condenser and the compressor.
[0078] Furthermore, the main machine has a protrusion on one side where the processing barrel is installed to form a heat dissipation portion, and the second installation cavity is formed in the heat dissipation portion; the heat dissipation portion is provided with the air inlet on the side facing the main machine where the processing barrel is installed, and the heat dissipation portion is provided with the heat dissipation port on the side away from the main machine where the processing barrel is installed, the air inlet and the heat dissipation port are connected to the second installation cavity, and the second installation cavity forms the cooling air duct.
[0079] The above structure makes the setting of the second installation cavity more reasonable, and when working, the temperature near the processing barrel is lower, so the cooling fan can draw in cooler air to dissipate heat for the condenser, so as to achieve better heat dissipation effect, so that the condenser has better effect when working.
[0080] Compared with the prior art, the present invention has the following beneficial effects:
[0081] (1) The smoothie machine of the present invention has a detachable connection between the processing barrel and the main unit, so the user can completely remove the processing barrel from the main unit and expose the evaporator, thereby facilitating deep cleaning by the user.
[0082] (2) The processing barrel mating portion of the smoothie machine of the present invention contacts and fits with the outer wall of the evaporator, so that the user can scrape off the residual food on the surface of the evaporator when disassembling the processing barrel, thereby reducing the residual food on the surface of the evaporator and facilitating subsequent cleaning; and the processing barrel mating surface on the processing barrel mating portion is a slope with a higher inner side and a lower outer side, which can guide the residual food to flow to the inner wall of the processing barrel body, thereby ensuring that the food remains in the processing barrel to the greatest extent, and further preventing the host from being troubled by food residue.
[0083] (3) The utility model has a smoothie machine with a reasonable detachable structure between the processing barrel and the main unit, which is convenient for users to use.
[0084] (4) The smoothie machine of the present invention is reasonably designed. BRIEF DESCRIPTION OF THE DRAWINGS
[0085] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0086] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model smoothie machine;
[0087] Figure 2 This is a schematic diagram of the three-dimensional structure of the utility model smoothie machine from another angle;
[0088] Figure 3 This is a schematic diagram of the explosion structure of the utility model smoothie machine;
[0089] Figure 4 This is a schematic cross-sectional view of the utility model smoothie machine;
[0090] Figure 5 for Figure 4 Enlarged view of point A in the middle;
[0091] Figure 6 for Figure 4 Enlarged view of point B in the middle;
[0092] Figure 7 This is a schematic diagram of the structure of the processing barrel, discharge part and discharge valve in the utility model smoothie machine;
[0093] The names of the components corresponding to the reference numerals in the figure are: 1. Main unit; 101. Second mounting surface; 102. Second detachable structure; 103. Processing barrel mounting surface; 104. Second mounting portion; 105. Disengagement limit protrusion; 106. Locking limit protrusion; 107. Cooling air duct; 108. Air inlet; 109. Heat dissipation outlet; 1010. First mounting cavity; 1011. Second mounting cavity; 1012. Heat dissipation portion; 2. Evaporator; 201. Steam Evaporator outer cylinder; 202, cooling medium evaporation tube; 203, evaporator inner cylinder; 204, evaporation tube installation cavity; 205, thermal insulation; 3, processing barrel; 301, processing barrel installation side; 302, processing barrel installation opposite side; 303, evaporator matching hole; 304, processing barrel body; 305, processing barrel matching part; 3051, processing barrel matching surface; 3052, processing barrel matching part body; 3053, processing barrel soft matching part; 3054, evaporator contact side ; 3055, evaporator contact portion; 306, first mounting mating surface; 307, first detachable structure; 308, first mounting mating portion; 309, first opening; 4, refrigeration processing space; 5, clamping block; 6, clamping groove; 7, mounting guide surface; 8, stirring assembly; 801, stirring paddle; 8011, stirring drive groove; 8012, second handle portion; 802, stirring drive member; 8021, stirring drive shaft; 9, processing barrel cover; 901, barrel cover sealing ring ;902, first handle part; 10, discharge part; 1001, discharge channel; 1002, first discharge port; 1003, second discharge port; 1004, valve matching hole; 11, discharge valve; 1101, valve stem; 1102, discharge port sealing part; 1103, valve operating part; 1104, valve connecting part; 1105, valve reset part; 12, cooling assembly; 1201, condenser; 1202, compressor; 1203, cooling fan. DETAILED DESCRIPTION
[0094] The present application is described in detail below with reference to the accompanying drawings and specific embodiments.
[0095] The following describes the embodiments of the present application through specific examples, and those skilled in the art can easily understand other advantages and effects of the present application from the contents disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. The present application can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed in various ways based on different viewpoints and applications without departing from the spirit of the present application. It should be noted that, in the absence of conflict, the features in the following embodiments and embodiments can be combined with each other. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without making creative work are within the scope of protection of this application.
[0096] It should be noted that various aspects of the embodiments within the scope of the appended claims are described below. It should be apparent that the aspects described herein can be embodied in a wide variety of forms, and any specific structure and / or function described herein is merely illustrative. Based on this application, it should be understood by those skilled in the art that an aspect described herein can be implemented independently of any other aspect, and two or more of these aspects can be combined in various ways. For example, any number and aspect described herein can be used to implement an apparatus and / or practice a method. In addition, other structures and / or functionalities other than one or more of the aspects described herein can be used to implement this apparatus and / or practice this method.
[0097] It should also be noted that the illustrations provided in the following embodiments are only schematic illustrations of the basic concept of the present application. The illustrations only show components related to the present application and are not drawn according to the number, shape and size of components in actual implementation. In actual implementation, the type, quantity and proportion of each component can be changed at will, and the component layout type may also be more complicated.
[0098] Additionally, in the following description, specific details are provided to provide a thorough understanding of the examples, however, one skilled in the art will appreciate that the examples can be practiced without these specific details.
[0099] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0100] The following describes the technical solutions provided by various embodiments of the present application in conjunction with the accompanying drawings.
[0101] See Figures 1 to 7The utility model provides a smoothie machine, comprising: a main unit 1, an evaporator 2, and a processing barrel 3, the evaporator 2 being arranged on the main unit 1, one side of the processing barrel 3 being formed as a processing barrel installation side 301, and the side of the processing barrel 3 opposite to the processing barrel installation side 301 being formed as a processing barrel installation opposite side 302; the processing barrel installation side 301 is provided with an evaporator matching hole 303 for the evaporator 2 to enter the interior of the processing barrel 3, the processing barrel 3 is sleeved on the outside of the evaporator 2 by means of the evaporator matching hole 303, and the processing barrel installation side 301 of the processing barrel 3 is detachably connected to the main unit 1, and a refrigeration processing space 4 for storing raw material liquid and performing refrigeration processing is formed between the processing barrel 3 and the evaporator 2.
[0102] With the above structure, when in use, the processing barrel 3 needs to be installed on the main unit 1, and raw liquid is added to the refrigeration processing space 4. The evaporator 2 can absorb the heat of the raw liquid, so that the raw liquid gradually cools down and turns into a smoothie.
[0103] Since the processing barrel 3 and the main unit 1 are detachably connected in the above structure, the user can remove the processing barrel 3 from the main unit 1 when cleaning is required. This not only allows the processing barrel 3 to be cleaned independently, but also fully exposes the evaporator 2 provided on the main unit 1, facilitating comprehensive and thorough cleaning and maintenance by the user.
[0104] Specifically, the evaporator 2 is cylindrical.
[0105] See Figure 4 、 Figure 5 and Figure 7 Furthermore, the processing barrel 3 includes a processing barrel body portion 304 surrounding the outside of the evaporator 2 when the processing barrel 3 is installed on the main unit 1, and a processing barrel matching portion 305 provided on the side wall of the barrel body facing the processing barrel installation side 301, wherein one side of the processing barrel matching portion 305 is connected to the inner wall of the processing barrel body portion 304, and the other side extends toward the axis side of the processing barrel body portion 304 and forms the evaporator matching hole 303;
[0106] When the processing barrel 3 is installed on the main unit 1 , the side of the processing barrel matching portion 305 away from the inner wall of the processing barrel body 304 contacts and matches with the outer wall of the evaporator 2 .
[0107] The above structure makes the structure of the processing barrel 3 more reasonable; since the processing barrel fitting part 305 is provided in the above structure, and the side of the processing barrel fitting part 305 away from the inner wall of the processing barrel body 304 contacts and fits with the outer wall of the evaporator 2, when the processing barrel 3 is removed from the main unit 1, the side of the processing barrel fitting part 305 that forms the evaporator fitting hole 303 will scrape the outer wall of the evaporator 2 and remain in the processing barrel 3, reducing the residue on the surface of the evaporator 2, avoiding the main unit 1 from being troubled by food residue, and facilitating subsequent cleaning by the user.
[0108] See Figure 4 and Figure 5 Furthermore, the side of the processing barrel fitting portion 305 facing the opposite side 302 of the processing barrel installation is formed as a processing barrel fitting surface 3051, and along the direction from the side of the processing barrel fitting portion 305 away from the inner wall of the processing barrel body 304 to the side facing the inner wall of the processing barrel body 304, the processing barrel fitting surface 3051 gradually tilts away from the opposite side 302 of the processing barrel installation.
[0109] By adopting the above structure, the processing barrel mating surface 3051 forms a slope with a higher inner side and a lower outer side; when the processing barrel 3 is removed from the main unit 1, the processing barrel mating portion 305 scrapes the outer wall of the evaporator 2, and under the guidance of the processing barrel mating surface 3051, the residual food will flow to the side of the inner wall of the processing barrel body 304, thereby ensuring that the food remains in the processing barrel 3 to the greatest extent, and further preventing the main unit 1 from being troubled by food residue.
[0110] Furthermore, a side of the processing barrel fitting portion 305 away from the inner wall of the processing barrel body portion 304 is made of soft material.
[0111] The above structure can not only ensure the sealing effect between the processing barrel matching part 305 and the outer wall of the evaporator 2, but also avoid damage to the outer wall of the evaporator 2 when the processing barrel matching part 305 scrapes away residual food on the outer wall of the evaporator 2.
[0112] Furthermore, the processing barrel fitting part 305 includes a processing barrel fitting part body 3052 and a processing barrel soft fitting part 3053. The processing barrel fitting part body 3052 is connected to the inner wall of the processing barrel body 304 on one side facing the inner wall of the processing barrel body 304, and extends toward the axis side of the processing barrel body 304 on the other side. The processing barrel soft fitting part 3053 is arranged on the side of the processing barrel fitting part body 3052 away from the inner wall of the processing barrel body 304, and the side of the processing barrel soft fitting part 3053 away from the processing barrel fitting part body 3052 is formed as the evaporator fitting hole 303.
[0113] The above structure makes the structure of the processing barrel matching portion 305 more reasonable and facilitates actual production.
[0114] Furthermore, the processing barrel fitting portion 305 is formed as an evaporator contact side 3054 on one side of the evaporator fitting hole 303, and the evaporator contact side 3054 has a height in the direction from the processing barrel installation side 301 to the processing barrel installation opposite side 302.
[0115] The above structure can not only improve the sealing performance between the processing barrel fitting part 305 and the evaporator 2, but also enable the processing barrel fitting part 305 to more effectively scrape off residual food on the surface of the evaporator 2 when the processing barrel 3 is disassembled.
[0116] Furthermore, the evaporator contact side 3054 is raised toward the axis side of the processing barrel body 304 to form an evaporator contact portion 3055; along the raised direction of the evaporator contact portion 3055, the evaporator contact portion 3055 gradually tilts toward the opposite side 302 of the processing barrel installation;
[0117] There are multiple evaporator contact parts 3055, and the multiple evaporator contact parts 3055 are distributed along the direction from the processing barrel installation side 301 to the processing barrel installation opposite side 302.
[0118] The above structure is adopted to further improve the sealing performance between the processing barrel matching portion 305 and the evaporator 2, and further effectively scrape off the residual food on the surface of the evaporator 2.
[0119] See Figure 3 and Figure 7 Furthermore, the processing barrel 3 is formed with a first mounting mating surface 306 on the processing barrel mounting side 301, and the main unit 1 is provided with a second mounting mating surface 101 at the location where the processing barrel 3 is mounted, and when the processing barrel 3 is installed on the main unit 1, the first mounting mating surface 306 is opposite to the second mounting mating surface 101; the first mounting mating surface 306 is provided with a first detachable structure 307, and correspondingly, the second mounting mating surface 101 is provided with a second detachable structure 102 that is detachably matched with the first detachable structure 307.
[0120] With the above structure, the processing barrel 3 is detachably connected to the main machine 1 through the cooperation of the first detachable structure 307 and the second detachable structure 102 .
[0121] Furthermore, the processing barrel installation side 301 of the processing barrel 3 protrudes away from the processing barrel installation opposite side 302 to form a first installation fitting portion 308, and the main unit 1 is formed as a processing barrel installation surface 103 at the location where the processing barrel 3 is installed, and the processing barrel installation surface 103 protrudes to form a second installation fitting portion 104, and when the processing barrel 3 is installed on the main unit 1, the first installation fitting portion 308 is located on the outside of the second installation fitting portion 104, and the side of the first installation fitting portion 308 facing the second installation fitting portion 104 is formed as the first installation fitting surface 306, and the side of the second installation fitting portion 104 facing the first installation fitting portion 308 is formed as the second installation fitting surface 101.
[0122] The above structure makes the formation of the first mounting mating surface 306 and the second mounting mating surface 101 more reasonable, so that the first mounting mating surface 306 and the second mounting mating surface 101 can be aligned with each other when the processing cylinder is mounted on the main machine 1.
[0123] Furthermore, one of the first detachable structure 307 and the second detachable structure 102 is configured as a card block 5, and the other of the first detachable structure 307 and the second detachable structure 102 is configured as a card slot 6 that matches the card block 5 to limit the separation of the processing barrel 3 from the main machine 1.
[0124] By adopting the above structure, the structures of the first detachable structure 307 and the second detachable structure 102 are more reasonable.
[0125] Furthermore, the first detachable structure 307 is configured as the card block 5 , and correspondingly, the second detachable structure 102 is configured as the card slot 6 ;
[0126] A disengagement limit protrusion 105 is provided on one side of the second mounting mating surface 101 away from the processing barrel mounting surface 103, and the distance between the disengagement limit protrusion 105 and the processing barrel mounting surface 103 matches the width of the block 5 to form the card slot 6.
[0127] With the above structure, the arrangement of the card block 5 and the card slot 6 is more reasonable, and the formation of the card slot 6 is more reasonable;
[0128] During installation, the user needs to first misalign the clamping block 5 with the disengagement limiting protrusion 105 to facilitate pre-installation of the processing barrel 3 on the main unit 1, and then rotate the processing barrel 3 so that the clamping block 5 slides under the disengagement limiting protrusion 105, thereby limiting the separation of the processing barrel 3 from the main unit 1;
[0129] During disassembly, the user only needs to rotate the processing barrel 3 in the opposite direction so that the block 5 slides out from under the disengagement limit protrusion 105, that is, the block 5 is misaligned with the disengagement limit protrusion 105, so that the processing barrel 3 can be disassembled from the main machine 1.
[0130] Furthermore, the second mounting mating surface 101 is provided with a locking limiting protrusion 106 on one end of the disengagement limiting protrusion 105 , and when the block 5 enters the slot 6 , the locking limiting protrusion 106 abuts against one side of the block 5 .
[0131] With the above structure, the setting of the locking limit protrusion 106 can prevent the card block 5 from moving too far when it slides into the card slot 6, and can also remind the user to install it in place.
[0132] Furthermore, the clamping block 5 and / or the disengagement limiting protrusion 105 are provided with an installation guide surface 7 for guiding the clamping block 5 to enter the clamping slot 6. Specifically, the installation guide surface 7 is an inclined surface or an arc surface.
[0133] With the above structure, the arrangement of the installation guide surface 7 can facilitate the smooth entry of the clamping block 5 into the clamping groove 6 when the processing barrel 3 is installed.
[0134] Furthermore, the first mounting surface 306 is provided with a plurality of first detachable structures 307 , and correspondingly, the second mounting surface 101 is provided with a plurality of second detachable structures 102 , and the plurality of first detachable structures 307 and the plurality of second detachable structures 102 are provided in a one-to-one correspondence;
[0135] The plurality of first detachable structures 307 are distributed at equal intervals, and correspondingly, the second detachable structures 102 are distributed at equal intervals.
[0136] By adopting the above structure, the cooperation of multiple first detachable structures 307 and multiple second detachable structures 102 can realize the connection between the processing barrel 3 and the main unit 1 more stably and reliably, that is, the processing barrel 3 can be more stably and reliably installed on the main unit 1; specifically, three first detachable structures 307 are provided, and correspondingly, three second detachable structures 102 are provided.
[0137] See Figure 3 and Figure 4Furthermore, the smoothie machine includes a stirring assembly 8, which includes a stirring paddle 801 and a stirring drive member 802 for driving the stirring paddle 801 to rotate, and the stirring paddle 801 is arranged in the refrigeration processing space 4; the stirring drive member 802 is located in the evaporator 2, and the stirring drive shaft 8021 of the stirring drive member 802 passes through the evaporator 2 and is driven and connected to the stirring paddle 801.
[0138] With the above structure, when the smoothie machine is working, the stirring drive member 802 drives the stirring paddle 801 to rotate, so that the stirring paddle 801 can continuously stir the food in the refrigeration processing space 4, thereby preventing the food in the refrigeration processing space 4 from completely solidifying into ice cubes and keeping it in the smoothie shape.
[0139] Furthermore, the stirring paddle 801 is provided with a stirring drive groove 8011 matching the stirring drive shaft 8021, the stirring paddle 801 is sleeved on the stirring drive shaft 8021 through the stirring drive groove 8011, and the part of the stirring drive shaft 8021 inserted into the stirring drive groove 8011 is non-circular with the cross-section of the stirring drive groove 8011.
[0140] By adopting the above structure, the driving connection between the stirring paddle 801 and the stirring drive shaft 8021 can be achieved stably and reliably.
[0141] Furthermore, the processing barrel 3 is provided with a first opening 309 on the side 302 opposite to the processing barrel installation, and the first opening 309 can allow the stirring paddle 801 to enter and exit the refrigeration processing space 4.
[0142] The above structure makes the structure of the smoothie machine more reasonable and facilitates the disassembly of the processing barrel 3; when the user wants to disassemble the processing barrel 3, the user needs to first remove the stirring paddle 801 from the stirring drive shaft 8021 and take it out from the first opening 309, and then remove the processing barrel 3 from the main unit 1; and the first opening 309 can facilitate the user to put the raw material liquid into the refrigeration processing space 4.
[0143] Furthermore, the smoothie machine includes a processing barrel cover 9 that matches the first opening 309 to seal the first opening 309 , and a barrel cover sealing ring 901 is provided on the outer periphery of the processing barrel cover 9 .
[0144] The above structure makes the structure of the smoothie machine more reasonable. The arrangement of the processing barrel cover 9 can protect the food in the refrigeration processing space 4 and prevent the food from being contaminated by the external environment.
[0145] Furthermore, the processing barrel cover 9 is provided with a first handle portion 902 , and the stirring paddle 801 is provided with a second handle portion 8012 .
[0146] With the above structure, the first handle 902 is provided to facilitate the user to disassemble and assemble the processing barrel cover 9, and the second handle 8012 is provided to facilitate the user to disassemble and assemble the stirring paddle 801;
[0147] Specifically, both sides of the center position of the processing barrel cover 9 are recessed and the first handle portion 902 is formed between the recesses on both sides; the stirring paddle 801 is protruded toward one side of the first opening 309 and is provided at the second handle portion 8012 .
[0148] See Figure 4 and Figure 5 Furthermore, the evaporator 2 includes an evaporator outer tube 201 and a cooling medium evaporation tube 202 , and the cooling medium evaporation tube 202 is spirally arranged in contact with the inner wall of the evaporator outer tube 201 .
[0149] The above structure makes the structure of the evaporator 2 more reasonable, and the cooling medium flows in the cooling medium evaporation tube 202 to absorb the liquid heat in the refrigeration processing space 4 to achieve cooling.
[0150] Furthermore, the evaporator 2 further includes an evaporator inner cylinder 203, which is arranged inside the evaporator outer cylinder 201 and forms an evaporator tube installation cavity 204 for installing the cooling medium evaporation tube 202 between the evaporator inner cylinder 203 and the evaporator outer cylinder 201, and a temperature insulation member is provided between the cooling medium evaporation tube 202 and the evaporator inner cylinder 203;
[0151] The stirring driving member 802 is disposed in the evaporator inner cylinder 203 .
[0152] The above structure makes the structure of the evaporator 2 more reasonable, and the stirring drive member 802 is set in the evaporator inner tube 203 to make more reasonable use of space; the setting of the insulation member can greatly improve the heat transfer efficiency, and the insulation member adopts a foam layer.
[0153] See Figure 1 、 Figure 2 、 Figure 4 and Figure 6 Furthermore, the processing barrel 3 is provided with a discharge portion 10 connected to the refrigeration processing space 4; the processing barrel 3 is provided with a discharge valve 11 at the discharge portion 10 for controlling the opening and closing of the discharge portion 10.
[0154] The above structure makes the structure of the smoothie machine more reasonable. When the smoothie machine makes smoothies to the desired effect, the user can operate the discharge valve 11 to open the discharge part 10. At this time, the smoothie in the refrigeration processing space 4 can flow out through the discharge part 10.
[0155] Furthermore, a discharge channel 1001 is provided in the discharge part 10, and the discharge channel 1001 is connected to the refrigeration processing space 4 and forms a first discharge port 1002 on the processing barrel 3. The discharge channel 1001 is also connected to the outside and forms a second discharge port 1003 on the discharge part 10; the discharge valve 11 controls the opening and closing of the discharge part 10 by opening and closing the first discharge port 1002.
[0156] The above structure makes the structure of the discharge portion 10 more reasonable.
[0157] See Figure 1 、 Figure 2 、 Figure 4 and Figure 6 Furthermore, the discharge valve 11 includes a valve stem 1101, and a valve matching hole 1004 is opened at the discharge part 10 opposite to the first discharge port 1002. The valve stem 1101 is slidably set in the valve matching hole 1004, and the end of the valve stem 1101 facing the first discharge port 1002 is provided with a discharge port blocking part 1102 that matches the first discharge port 1002 so that the first discharge port 1002 can be blocked when the valve stem 1101 is close to the first discharge port 1002.
[0158] The above structure makes the structure of the discharge valve 11 more reasonable, and can stably and reliably open and close the discharge part 10.
[0159] Furthermore, the discharge valve 11 also includes a valve operating member 1103 and a valve connecting member 1104. The valve connecting member 1104 is provided at one end of the valve stem 1101 away from the first discharge port 1002; the valve operating member 1103 is rotatably provided on the discharge part 10, and the valve connecting member 1104 is slidably connected to the valve operating member 1103 and the two can rotate relative to each other.
[0160] The above structure makes the structure of the discharge valve 11 more reasonable, and the arrangement of the valve operating member 1103 is convenient for the user to operate.
[0161] Furthermore, the discharge valve 11 also includes a valve reset component 1105, which acts on the valve stem 1101 to make it have a tendency to always move toward the first discharge port 1002 to block the first discharge port 1002; specifically, the valve reset component 1105 adopts a spring, and the valve reset component 1105 is sleeved on the valve stem 1101 and its two ends are respectively in contact with the discharge port blocking part 1102 and the inner wall of the discharge part 10.
[0162] The above structure makes the structure of the discharge valve 11 more reasonable, and the valve reset member 1105 can automatically reset when the user opens the first discharge port 1002, and ensures that the discharge port blocking part 1102 can stably and reliably block the first discharge port 1002.
[0163] See Figure 4 Furthermore, the smoothie machine includes a cooling component 12, which is connected to the evaporator 2 to drive the cooling medium to circulate between the cooling component 12 and the evaporator 2 and reduce the temperature of the cooling medium.
[0164] The above structure makes the structure of the smoothie machine more reasonable. The cooling component 12 can drive the circulation of the cooling medium between the evaporator 2 and the cooling component 12, and the heat absorbed by the cooling medium when it flows to the evaporator 2 can be released when it flows to the cooling component 12, so as to achieve its stable and reliable long-term operation; of course, in some embodiments, the cooling component 12 is in the form of an accessory.
[0165] Furthermore, the cooling assembly 12 includes a condenser 1201 for reducing the temperature of the cooling medium, and a compressor 1202 for driving the cooling medium to circulate between the condenser 1201 and the evaporator 2 .
[0166] The above structure makes the cooling assembly 12 more reasonable.
[0167] Furthermore, the condenser 1201 and the compressor 1202 are arranged in the host 1, and the host 1 is provided with a cooling air duct 107 for dissipating heat from the condenser 1201, and an air inlet 108 and a heat dissipation port 109 connected to the cooling air duct 107 are opened on the surface of the host 1.
[0168] The above structure makes the installation of the condenser 1201 and the compressor 1202 more reasonable, and the cooling air duct 107 can dissipate heat for the condenser 1201, so that it can have a better effect when working.
[0169] Furthermore, the cooling assembly 12 includes a heat dissipation fan 1203 disposed near the condenser 1201 , and the blowing direction of the heat dissipation fan 1203 matches the direction of the cooling air duct 107 .
[0170] With the above structure, the heat dissipation fan 1203 can dissipate heat from the condenser 1201, so that it has a better effect when working.
[0171] Furthermore, a first installation cavity 1010 for installing the compressor 1202 and a second installation cavity 1011 for installing the condenser 1201 are provided in the host 1 .
[0172] The above structure makes the main unit 1 more reasonable and facilitates its accommodation of the condenser 1201 and the compressor 1202 .
[0173] Furthermore, the main unit 1 has a protrusion on one side where the processing barrel 3 is installed to form a heat dissipation portion 1012, and the second installation cavity 1011 is formed in the heat dissipation portion 1012; the heat dissipation portion 1012 is provided with the air inlet 108 on the side facing the main unit 1 where the processing barrel 3 is installed, and the heat dissipation portion 1012 is provided with the heat dissipation port 109 on the side away from the main unit 1 where the processing barrel 3 is installed, the air inlet 108 and the heat dissipation port 109 are connected to the second installation cavity 1011, and the second installation cavity 1011 is formed as the cooling air duct 107.
[0174] The above structure makes the setting of the second installation cavity 1011 more reasonable, and when working, the temperature near the processing barrel 3 is lower, so the cooling fan 1203 can suck in cooler air to dissipate heat for the condenser 1201, so as to achieve better heat dissipation effect, so that the condenser 1201 has better effect when working.
[0175] The same or similar parts between the various embodiments in this specification can be referred to each other, and each embodiment focuses on the differences from other embodiments.
[0176] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present application should be included in the scope of protection of the present application. Therefore, the scope of protection of the present application should be based on the scope of protection of the claims.
Claims
1. A smoothie machine, characterized in that: include: A main unit (1), an evaporator (2), and a processing barrel (3), wherein the evaporator (2) is arranged on the main unit (1), one side of the processing barrel (3) is formed as a processing barrel installation side (301), and a side of the processing barrel (3) opposite to the processing barrel installation side (301) is formed as a processing barrel installation opposite side (302); the processing barrel installation side (301) is provided with an evaporator matching hole (303) for allowing the evaporator (2) to enter the interior of the processing barrel (3), the processing barrel (3) is sleeved outside the evaporator (2) by means of the evaporator matching hole (303), and the processing barrel installation side (301) of the processing barrel (3) is detachably connected to the main unit (1), and a refrigeration processing space (4) for storing raw material liquid and performing refrigeration processing is formed between the processing barrel (3) and the evaporator (2).
2. The smoothie machine according to claim 1, characterized in that: The processing barrel (3) comprises a processing barrel body portion (304) surrounding the outside of the evaporator (2) when the processing barrel (3) is installed on the main unit (1), and a processing barrel matching portion (305) arranged on the side wall of the barrel body facing the processing barrel installation side (301), wherein one side of the processing barrel matching portion (305) is connected to the inner wall of the processing barrel body portion (304) and the other side extends toward the axial side of the processing barrel body portion (304) to form the evaporator matching hole (303); When the processing barrel (3) is mounted on the main unit (1), the side of the processing barrel matching portion (305) away from the inner wall of the processing barrel body (304) contacts and matches the outer wall of the evaporator (2).
3. The smoothie machine according to claim 2, characterized in that: The side of the processing barrel fitting portion (305) facing the opposite side (302) of the processing barrel installation is formed as a processing barrel fitting surface (3051), and along the direction from the side of the processing barrel fitting portion (305) away from the inner wall of the processing barrel body portion (304) to the side facing the inner wall of the processing barrel body portion (304), the processing barrel fitting surface (3051) gradually tilts away from the opposite side (302) of the processing barrel installation.
4. The smoothie machine according to claim 2 or 3, characterized in that: The side of the processing barrel matching portion (305) away from the inner wall of the processing barrel body (304) is made of soft material; The processing barrel fitting part (305) comprises a processing barrel fitting part body (3052) and a processing barrel soft fitting part (3053); the processing barrel fitting part body (3052) is connected to the inner wall of the processing barrel body (304) on one side thereof facing the inner wall of the processing barrel body (304), and extends toward the axis of the processing barrel body (304) on the other side thereof; the processing barrel soft fitting part (3053) is arranged on a side of the processing barrel fitting part body (3052) away from the inner wall of the processing barrel body (304); and the side of the processing barrel soft fitting part (3053) away from the processing barrel fitting part body (3052) forms the evaporator fitting hole (303); The processing barrel fitting portion (305) is formed such that one side of the evaporator fitting hole (303) is formed as an evaporator contact side (3054), and the evaporator contact side (3054) has a height in a direction from the processing barrel installation side (301) to the processing barrel installation opposite side (302); The evaporator contact side (3054) protrudes toward the axial side of the processing barrel body (304) to form an evaporator contact portion (3055); along the protruding direction of the evaporator contact portion (3055), the evaporator contact portion (3055) gradually tilts toward the opposite side (302) of the processing barrel installation; There are multiple evaporator contact parts (3055), and the multiple evaporator contact parts (3055) are distributed along the direction from the processing barrel installation side (301) to the processing barrel installation opposite side (302).
5. The smoothie machine according to claim 1, characterized in that: The processing barrel (3) is formed with a first mounting mating surface (306) on the processing barrel mounting side (301); the main machine (1) is provided with a second mounting mating surface (101) at the location where the processing barrel (3) is mounted; and when the processing barrel (3) is mounted on the main machine (1), the first mounting mating surface (306) is opposite to the second mounting mating surface (101); the first mounting mating surface (306) is provided with a first detachable structure (307), and correspondingly, the second mounting mating surface (101) is provided with a second detachable structure (102) detachably matched with the first detachable structure (307).
6. The smoothie machine according to claim 5, characterized in that: The processing barrel installation side (301) of the processing barrel (3) is raised away from the processing barrel installation opposite side (302) to form a first installation fitting portion (308); the main machine (1) is formed as a processing barrel installation surface (103) at the location where the processing barrel (3) is installed, and the processing barrel installation surface (103) is raised to form a second installation fitting portion (104); and when the processing barrel (3) is installed on the main machine (1), the first installation fitting portion (308) is located outside the second installation fitting portion (104); the side of the first installation fitting portion (308) facing the second installation fitting portion (104) is formed as the first installation fitting surface (306), and the side of the second installation fitting portion (104) facing the first installation fitting portion (308) is formed as the second installation fitting surface (101); One of the first detachable structure (307) and the second detachable structure (102) is configured as a card block (5), and the other of the first detachable structure (307) and the second detachable structure (102) is configured as a card slot (6) that matches the card block (5) to limit the separation of the processing barrel (3) from the main machine (1).
7. The smoothie machine according to claim 6, characterized in that: The first detachable structure (307) is configured as the card block (5), and correspondingly, the second detachable structure (102) is configured as the card slot (6); A disengagement limiting protrusion (105) is provided on a protrusion on one side of the second mounting mating surface (101) away from the processing barrel mounting surface (103), and the distance between the disengagement limiting protrusion (105) and the processing barrel mounting surface (103) matches the width of the clamping block (5) to form the clamping slot (6); The second mounting mating surface (101) is provided with a locking limit protrusion (106) on one end of the disengagement limit protrusion (105), and when the clamping block (5) enters the clamping slot (6), the locking limit protrusion (106) abuts against one side of the clamping block (5); The clamping block (5) and / or the disengagement limiting protrusion (105) are provided with a mounting guide surface (7) for guiding the clamping block (5) into the clamping slot (6); The first mounting mating surface (306) is provided with a plurality of the first detachable structures (307), and correspondingly, the second mounting mating surface (101) is provided with a plurality of the second detachable structures (102), and the plurality of the first detachable structures (307) and the plurality of the second detachable structures (102) are provided in a one-to-one correspondence; The plurality of first detachable structures (307) are distributed at equal intervals, and correspondingly, the second detachable structures (102) are distributed at equal intervals.
8. The smoothie machine according to claim 1, characterized in that: The stirring assembly (8) comprises a stirring paddle (801) and a stirring drive member (802) for driving the stirring paddle (801) to rotate, wherein the stirring paddle (801) is arranged in the refrigeration processing space (4); the stirring drive member (802) is located in the evaporator (2), and a stirring drive shaft (8021) of the stirring drive member (802) passes through the evaporator (2) and is drivingly connected to the stirring paddle (801); The stirring paddle (801) is provided with a stirring drive groove (8011) matching the stirring drive shaft (8021); the stirring paddle (801) is sleeved on the stirring drive shaft (8021) through the stirring drive groove (8011); and the portion of the stirring drive shaft (8021) inserted into the stirring drive groove (8011) and the cross section of the stirring drive groove (8011) are non-circular; The processing barrel (3) is provided with a first opening (309) on the side (302) opposite to the processing barrel installation, and the first opening (309) is capable of allowing the stirring paddle (801) to enter and exit the refrigeration processing space (4); The smoothie machine comprises a processing barrel cover (9) that matches the first opening (309) to seal the first opening (309), and a barrel cover sealing ring (901) is provided on the outer periphery of the processing barrel cover (9); The processing barrel cover (9) is provided with a first handle portion (902), and the stirring paddle (801) is provided with a second handle portion (8012); The evaporator (2) comprises an evaporator outer cylinder (201) and a cooling medium evaporation tube (202), wherein the cooling medium evaporation tube (202) is arranged in a spiral manner in contact with the inner wall of the evaporator outer cylinder (201); The evaporator (2) further comprises an evaporator inner cylinder (203), the evaporator inner cylinder (203) being arranged inside the evaporator outer cylinder (201) and forming an evaporator tube installation cavity (204) for installing the cooling medium evaporation tube (202) between the evaporator inner cylinder (203) and the evaporator outer cylinder (201), and a temperature insulating member being arranged between the cooling medium evaporation tube (202) and the evaporator inner cylinder (203); The stirring driving member (802) is arranged in the evaporator inner cylinder (203).
9. The smoothie machine according to claim 1, characterized in that: The processing barrel (3) is provided with a discharge portion (10) that is in communication with the refrigeration processing space (4); the processing barrel (3) is provided with a discharge valve (11) at the discharge portion (10) for controlling the opening and closing of the discharge portion (10); A discharge channel (1001) is provided in the discharge portion (10), and the discharge channel (1001) is in communication with the refrigeration processing space (4) and forms a first discharge port (1002) on the processing barrel (3). The discharge channel (1001) is also in communication with the outside and forms a second discharge port (1003) on the discharge portion (10); the discharge valve (11) controls the opening and closing of the discharge portion (10) by opening and closing the first discharge port (1002); The discharge valve (11) includes a valve stem (1101), a valve matching hole (1004) is provided at a position of the discharge portion (10) opposite to the first discharge port (1002), the valve stem (1101) is slidably arranged in the valve matching hole (1004), and a discharge port blocking portion (1102) is provided at one end of the valve stem (1101) facing the first discharge port (1002) so as to match the first discharge port (1002) and be able to block the first discharge port (1002) when the valve stem (1101) is close to the first discharge port (1002); The discharge valve (11) further comprises a valve operating member (1103) and a valve connecting member (1104), wherein the valve connecting member (1104) is provided at one end of the valve stem (1101) away from the first discharge port (1002); the valve operating member (1103) is rotatably provided on the discharge portion (10), and the valve connecting member (1104) is slidably connected to the valve operating member (1103) and the two can rotate relative to each other; The discharge valve (11) further comprises a valve reset member (1105), which acts on the valve stem (1101) to cause the valve stem to always move toward the first discharge port (1002) to block the first discharge port (1002); the valve reset member (1105) is a spring, and the valve reset member (1105) is sleeved on the valve stem (1101) with its two ends respectively contacting the discharge port blocking portion (1102) and the inner wall of the discharge portion (10).
10. The smoothie machine according to claim 1, characterized in that: The cooling device comprises a cooling component (12), wherein the cooling component (12) is connected to the evaporator (2) to drive a cooling medium to circulate between the cooling component (12) and the evaporator (2) and to reduce the temperature of the cooling medium; The cooling assembly (12) includes a condenser (1201) for lowering the temperature of a cooling medium, and a compressor (1202) for driving the cooling medium to circulate between the condenser (1201) and the evaporator (2); The condenser (1201) and the compressor (1202) are arranged in the main unit (1); the main unit (1) is provided with a cooling air duct (107) for dissipating heat from the condenser (1201); and an air inlet (108) and a heat dissipation port (109) communicating with the cooling air duct (107) are provided on the surface of the main unit (1); The cooling assembly (12) includes a cooling fan (1203) arranged near the condenser (1201), and the blowing direction of the cooling fan (1203) matches the direction of the cooling air duct (107); The main unit (1) is provided with a first installation cavity (1010) for installing the compressor (1202), and a second installation cavity (1011) for installing the condenser (1201); The main unit (1) is provided with a protrusion on one side where the processing barrel (3) is installed to form a heat dissipation portion (1012), and the second installation cavity (1011) is formed in the heat dissipation portion (1012); the heat dissipation portion (1012) is provided with the air inlet (108) on the side facing the main unit (1) where the processing barrel (3) is installed, and the heat dissipation portion (1012) is provided with the heat dissipation port (109) on the side away from the main unit (1) where the processing barrel (3) is installed, the air inlet (108) and the heat dissipation port (109) are in communication with the second installation cavity (1011), and the second installation cavity (1011) forms the cooling air duct (107).