A blender
Patent Information
- Application Number
- CN202522100183.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-10-09
- Estimated Expiration
- 2035-09-29
AI Technical Summary
但是,该现有技术仍存在结构上的不足,其食物会与蒸发器直接接触,蒸发器也需要清洗,而蒸发器无法拆卸,导致清洗不方便,使得用户体验不佳
[0018]本实用新型这样设置,将容器可拆卸地安装于主机上,方便容器拆卸清洗;且在容器内设有温度传导部,该温度传导部可拆卸地套设于蒸发器外部上,使食物不会与蒸发器直接接触,因此不需要清洗蒸发器,用户体验更好。
Smart Images

Figure CN224819458U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of smoothie machine technology, and specifically to a smoothie machine. Background Technology
[0002] With the fast pace of life and rising living standards, people's demands for beverages are becoming increasingly diversified. Among them, smoothies, as a refreshing and delicious drink, have become popular among consumers. To meet market demand, smoothie machines have emerged. Smoothie machines generally use a refrigeration cycle system, achieving a cooling effect through components such as compressors, condensers, and evaporators (refrigeration heat exchangers). At the same time, combined with a stirring mechanism, the ice-making liquid is cooled and stirred into a smoothie consistency.
[0003] Currently, the ice bucket of most vertical smoothie machines on the market cannot be detached from the main unit, making cleaning inconvenient and posing hygiene issues. A utility model patent with publication number CN223310585U discloses a smoothie machine including a main unit, an evaporator, and a processing bucket. The evaporator is mounted on the main unit, and the processing bucket has an mounting side and a opposite mounting side. The mounting side has an evaporator mating hole for the evaporator to enter the processing bucket. The processing bucket is fitted over the evaporator through the evaporator mating hole, and the mounting side of the processing bucket is detachably connected to the main unit. A refrigeration processing space for storing raw liquid materials and cooling them is formed between the processing bucket and the evaporator. In this prior art, the processing bucket is detachably connected to the main unit, allowing the user to remove it for cleaning. However, this prior art still has structural shortcomings. The food comes into direct contact with the evaporator, which also requires cleaning, but the inability to detach the evaporator makes cleaning inconvenient and results in a poor user experience.
[0004] Therefore, there is still room for improvement and development in existing technologies. Utility Model Content
[0005] To address the problems of existing technologies, this utility model provides a smoothie maker in which the container is detachably mounted on the main unit for easy disassembly and cleaning. Furthermore, a temperature conduction part is provided inside the container, which is detachably fitted onto the outside of the evaporator, preventing food from directly contacting the evaporator. Therefore, there is no need to clean the evaporator, resulting in a better user experience.
[0006] To achieve the above objectives, the technical solution applied in this utility model is as follows:
[0007] A smoothie maker includes a main unit with an evaporator and a container detachably mounted on the main unit. The container has a temperature-conducting part inside, which is detachably fitted onto the outside of the evaporator. This design allows for easy disassembly and cleaning of the container, as the temperature-conducting part inside the container and detachably fitted onto the outside of the evaporator prevents direct contact between food and the evaporator, thus eliminating the need for evaporator cleaning and providing a better user experience.
[0008] According to the above solution, the temperature conduction part and the container are integrated into one structure. When the container is assembled on the main unit, the inner wall of the temperature conduction part is fitted against the outer wall of the evaporator. This design makes the assembly and disassembly of the temperature conduction part and the container more convenient; when the container is removed from the main unit, the temperature conduction part is also removed from the evaporator, making disassembly convenient; and when the container is assembled on the main unit, the inner wall of the temperature conduction part is fitted against the outer wall of the evaporator, resulting in better temperature conduction.
[0009] According to the above scheme, the container has a food holding cavity and an evaporator holding cavity formed inside, and a temperature conduction part is located at the junction between the food holding cavity and the evaporator holding cavity; when the container is assembled on the main unit, the evaporator is located in the evaporator holding cavity. This arrangement divides the interior of the container into a food holding cavity and an evaporator holding cavity through the temperature conduction part. When the container is assembled on the main unit, the evaporator is located in the evaporator holding cavity, while the food in the food holding cavity does not come into contact with the evaporator.
[0010] According to the above scheme, a stirring device is provided inside the food containing cavity, and the stirring device is detachably mounted on the outside of the temperature conducting part; the main unit is equipped with a motor and a drive shaft, the first end of the drive shaft is connected to the output end of the motor, and the second end of the drive shaft passes through the evaporator and the temperature conducting part and is connected to the stirring device. The motor is used to drive the drive shaft to rotate the stirring device. With this configuration, when the motor is working, it drives the drive shaft to rotate, and when the drive shaft rotates, it drives the stirring device to rotate, thereby stirring the food in the food containing cavity.
[0011] According to the above scheme, the drive shaft is provided with a fixing protrusion, and the stirring device is provided with a fixing recess, with the fixing protrusion and fixing recess being connected by a locking mechanism. This arrangement facilitates the assembly and disassembly of the drive shaft and the stirring device.
[0012] According to the above scheme, a slicing device is provided inside the food containing cavity, and the slicing device is detachably mounted above the temperature conduction part; the main unit is equipped with a motor and a drive shaft, the first end of the drive shaft is connected to the output end of the motor, and the second end of the drive shaft passes through the evaporator and the temperature conduction part and is connected to the slicing device. The motor is used to drive the drive shaft to rotate the slicing device. With this configuration, when the motor is working, it drives the drive shaft to rotate, and when the drive shaft rotates, it drives the slicing device to rotate, which can slice ice cubes and nuts, etc., and then mix the shaved ice and nuts with shaved ice to obtain food with different textures.
[0013] According to the above scheme, the slicing device includes an inner liner and an outer liner. The outer liner is detachably fixed inside the food containing cavity and has a slicing blade inside. The inner liner is rotatably installed inside the outer liner and is connected to a drive shaft. A pusher is provided inside the inner liner. With this configuration, when the motor is working, it drives the drive shaft to rotate. When the drive shaft rotates, it causes the inner liner to rotate inside the outer liner. Under the action of the pusher, food such as ice cubes or nuts are pushed to the position of the slicing blade for slicing. Specifically, food such as ice cubes or nuts are placed in the inner liner, and when the inner liner rotates, it drives the pusher to rotate and push.
[0014] According to the above scheme, the drive shaft is provided with a fixing protrusion, and the inner liner is provided with a fixing recess, which are connected by a locking mechanism. This arrangement facilitates the assembly and disassembly of the drive shaft and the inner liner.
[0015] According to the above scheme, the temperature conduction part is provided with a through hole to facilitate the passage of the transmission shaft.
[0016] According to the above scheme, the container is equipped with a high water level sensor, and the container has a detachable cover. A safety switch is installed between the cover and the main unit. This design ensures that the machine stops working when the cover is opened and resumes normal operation when the cover is properly reassembled, making it safer to use.
[0017] The beneficial effects of this utility model are:
[0018] This invention features a design that allows the container to be detachably mounted on the main unit, facilitating container disassembly and cleaning. Furthermore, a temperature conduction part is provided inside the container, which is detachably fitted onto the outside of the evaporator, preventing food from directly contacting the evaporator. Therefore, there is no need to clean the evaporator, resulting in a better user experience. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of the machine in Embodiment 1;
[0020] Figure 2 This is a cross-sectional view of the overall structure in Embodiment 1;
[0021] Figure 3 This is an exploded view of the overall structure in Embodiment 1;
[0022] Figure 4 This is a cross-sectional view of the overall structure in Embodiment 2.
[0023] In the picture:
[0024] 1. Cover; 2. Stirring device; 21. Fixed recess one; 3. Container; 31. Temperature conduction part; 32. Through hole; 33. Raw liquid chamber; 34. Containing cavity; 4. Main unit; 5. Motor; 51. Drive shaft; 511. Fixed protrusion; 6. Evaporator; 7. Condenser; 8. Compressor; 9. Planing device; 91. Inner liner; 911. Pushing part; 912. Fixed recess two; 92. Outer liner; 921. Planing blade. Detailed Implementation
[0025] The technical solution of this utility model will be described below with reference to the accompanying drawings and embodiments.
[0026] Example 1:
[0027] like Figures 1 to 3 As shown, the present invention provides a smoothie maker comprising a main unit 4, on which an evaporator 6 is mounted; and a container 3, which is detachably mounted on the main unit 4. The container 3 contains a temperature conducting part 31, which is detachably fitted onto the outside of the evaporator 6. This design allows for easy disassembly and cleaning of the container 3 by detaching it from the main unit 4. Furthermore, the presence of the temperature conducting part 31 within the container 3, detachably fitted onto the outside of the evaporator 6, prevents direct contact between the food and the evaporator 6, thus eliminating the need for cleaning the evaporator 6 and improving the user experience.
[0028] The main unit 4 is equipped with a condenser 7 and a compressor 8. The compressor 8 is connected to the condenser 7 through a pipeline, and the condenser 7 is connected to the evaporator 6 through a pipeline.
[0029] Furthermore, the temperature conduction part 31 and the container 3 are integrated into one structure. When the container 3 is assembled on the main unit 4, the inner wall of the temperature conduction part 31 is fitted against the outer wall of the evaporator 6. This integrated structure makes assembly and disassembly of the temperature conduction part 31 and the container 3 more convenient. When the container 3 is removed from the main unit 4, the temperature conduction part 31 is also removed from the evaporator 6, making disassembly convenient. Moreover, when the container 3 is assembled on the main unit 4, the inner wall of the temperature conduction part 31 is fitted against the outer wall of the evaporator 6, resulting in better temperature conduction by the temperature conduction part 31.
[0030] The temperature conduction part 31 is preferably made of metal, which has the effect of rapid and efficient temperature conduction.
[0031] Furthermore, the container 3 has a food-containing cavity 33 and an evaporator-containing cavity 34 formed inside, and a temperature conduction part 31 is provided at the junction between the food-containing cavity 33 and the evaporator-containing cavity 34. When the container 3 is assembled on the main unit 4, the evaporator 6 is located inside the evaporator-containing cavity 34. In this configuration, the interior of the container 3 is divided into the food-containing cavity 33 and the evaporator-containing cavity 34 by the temperature conduction part 31. When the container 3 is assembled on the main unit 4, the evaporator 6 is located inside the evaporator-containing cavity 34, and the food in the food-containing cavity 33 will not come into contact with the evaporator 6.
[0032] Furthermore, the food containing cavity 33 is equipped with a stirring device 2, which is detachably mounted on the outside of the temperature conducting part 31. The main unit 4 is equipped with a motor 5 and a drive shaft 51. The first end of the drive shaft 51 is connected to the output end of the motor 5, and the second end of the drive shaft 51 passes through the evaporator 6 and the temperature conducting part 31 and is connected to the stirring device 2. The motor 5 drives the drive shaft 51 to rotate the stirring device 2. With this configuration, when the motor 5 is working, it drives the drive shaft 51 to rotate, and when the drive shaft 51 rotates, it drives the stirring device 2 to rotate, thereby stirring the food in the food containing cavity 33.
[0033] The evaporator 6 is provided with bearings and sealing rings corresponding to the drive shaft 51. Specifically, the bearings and sealing rings are located at the top of the evaporator 6. A gearbox is provided between the first end of the drive shaft 51 and the output end of the motor 5.
[0034] Furthermore, the drive shaft 51 is provided with a fixing protrusion 511, and the stirring device 2 is provided with a fixing recess 21, with the fixing protrusion 511 and the fixing recess 21 being engaged and connected. This arrangement facilitates the assembly and disassembly of the drive shaft 51 and the stirring device 2.
[0035] The positions of the fixed protrusion 511 and the fixed recess 21 can also be interchanged; other connection methods can also be used between the drive shaft 51 and the stirring device 2, such as a flat shaft on the drive shaft 51 and a flat hole on the stirring device 2.
[0036] Furthermore, the temperature conduction part 31 is provided with a through hole 32 to facilitate the passage of the transmission shaft 51.
[0037] Furthermore, the container 3 is equipped with a high water level sensor, and the container 3 has a detachable cover 1. A safety switch is installed between the cover 1 and the main unit 4. With this configuration, the machine stops working when the cover 1 is opened, and can work normally when the cover 1 is reassembled, making it safer to use.
[0038] The high water level sensor is positioned below the through hole 32 on the temperature conduction part 31 to prevent food from entering the evaporator cavity 34 through the through hole 32.
[0039] Example 2:
[0040] like Figure 4 As shown, a shaving device 9 is provided inside the food containing cavity 33, and the shaving device 9 is detachably mounted above the temperature conduction part 31. The main unit 4 is equipped with a motor 5 and a drive shaft 51. The first end of the drive shaft 51 is connected to the output end of the motor 5, and the second end of the drive shaft 51 passes through the evaporator 6 and the temperature conduction part 31 and is connected to the shaving device 9. The motor 5 is used to drive the drive shaft 51 to rotate the shaving device 9. With this configuration, when the motor 5 is working, it drives the drive shaft 51 to rotate, and when the drive shaft 51 rotates, it drives the shaving device 9 to rotate, which can shave ice cubes and nuts and other ingredients. The shaved ice and nuts and other ingredients can then be mixed with shaved ice to obtain food with different textures.
[0041] Furthermore, the slicing device 9 includes an inner liner 91 and an outer liner 92. The outer liner 92 is detachably fixed inside the food receiving cavity 33, and a slicing blade 921 is provided inside the outer liner 92. The inner liner 91 is rotatably installed inside the outer liner 92 and is connected to the drive shaft 51. A pusher 911 is provided inside the inner liner 91. With this configuration, when the motor 5 is working, it drives the drive shaft 51 to rotate. When the drive shaft 51 rotates, it drives the inner liner 91 to rotate inside the outer liner 92. Under the action of the pusher 911, food such as ice cubes or nuts are pushed to the position of the slicing blade 921 for slicing. Specifically, food such as ice cubes or nuts are placed in the inner liner 91, and when the inner liner 91 rotates, it drives the pusher 911 to rotate and push.
[0042] The inner liner 91 is coaxially mounted inside the outer liner 92; the pusher 911 is preferably a spiral pusher; the outer liner 92 is provided with a discharge port to facilitate the dropping of shaved ice, nuts and other ingredients into the food holding cavity 33 to mix with the shaved ice.
[0043] Furthermore, the drive shaft 51 is provided with a fixing protrusion 511, and the inner liner 91 is provided with a fixing recess 912, with the fixing protrusion 511 and the fixing recess 912 being connected by a locking mechanism. This arrangement facilitates the assembly and disassembly of the drive shaft 51 and the inner liner 91.
[0044] The positions of the fixed protrusion 511 and the fixed recess 912 can also be interchanged; other connection methods can also be used between the drive shaft 51 and the inner liner 91, such as a flat shaft on the drive shaft 51 and a flat hole on the inner liner 91.
[0045] The embodiments of the present utility model have been described above with reference to the accompanying drawings. However, the present utility model is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of the present utility model without departing from the spirit and scope of the claims, and all of these forms are within the scope of protection of the present utility model.
Claims
1. A smoothie maker, characterized in that, include: The host (4) is equipped with an evaporator (6); The container (3) is detachably installed on the host (4). The container (3) is provided with a temperature conduction part (31) inside the container (3). The temperature conduction part (31) is detachably sleeved on the outside of the evaporator (6).
2. The smoothie machine according to claim 1, characterized in that: The temperature conduction part (31) and the container (3) are an integral structure. When the container (3) is assembled on the host (4), the inner wall of the temperature conduction part (31) is fitted to the outer wall of the evaporator (6).
3. A smoothie machine according to claim 2, characterized in that: The container (3) has a food holding cavity (33) and an evaporator holding cavity (34) formed inside. The temperature conduction part (31) is located at the connection between the food holding cavity (33) and the evaporator holding cavity (34). When the container (3) is assembled on the host (4), the evaporator (6) is located inside the evaporator holding cavity (34).
4. A smoothie machine according to claim 3, characterized in that: The food container (33) is equipped with a stirring device (2), which is detachably mounted on the outside of the temperature conduction part (31). The main unit (4) is equipped with a motor (5) and a drive shaft (51). The first end of the drive shaft (51) is connected to the output end of the motor (5), and the second end of the drive shaft (51) passes through the evaporator (6) and the temperature conduction part (31) and is connected to the stirring device (2). The motor (5) is used to drive the drive shaft (51) to rotate the stirring device (2).
5. A smoothie machine according to claim 4, characterized in that: The drive shaft (51) is provided with a fixed protrusion (511), and the stirring device (2) is provided with a fixed recess (21). The fixed protrusion (511) and the fixed recess (21) are connected by a locking mechanism.
6. A smoothie machine according to claim 3, characterized in that: The food container (33) is provided with a slicing device (9), which is detachably located above the temperature conduction part (31). The main unit (4) is provided with a motor (5) and a drive shaft (51). The first end of the drive shaft (51) is connected to the output end of the motor (5), and the second end of the drive shaft (51) passes through the evaporator (6) and the temperature conduction part (31) and is connected to the slicing device (9). The motor (5) is used to drive the drive shaft (51) to rotate the slicing device (9).
7. A smoothie machine according to claim 6, characterized in that: The slicing device (9) includes an inner liner (91) and an outer liner (92). The outer liner (92) is detachably fixed in the food receiving cavity (33). A slicing blade (921) is provided inside the outer liner (92). The inner liner (91) is rotatably installed inside the outer liner (92). The inner liner (91) is connected to the drive shaft (51) by a locking mechanism. A pusher (911) is provided inside the inner liner (91).
8. A smoothie machine according to claim 7, characterized in that: The drive shaft (51) is provided with a fixed protrusion (511), and the inner liner (91) is provided with a fixed recess (912). The fixed protrusion (511) and the fixed recess (912) are connected by a locking mechanism.
9. A smoothie machine according to any one of claims 4 or 6, characterized in that: The temperature conduction part (31) is provided with a through hole (32) to facilitate the passage of the transmission shaft (51).
10. A smoothie machine according to claim 2, characterized in that: The container (3) is equipped with a high water level sensor, and the container (3) is equipped with a detachable cover (1). A safety switch is provided between the cover (1) and the main unit (4).
Citation Information
Patent Citations
Smoothie machine
CN223310585U