Split type soybean milk machine
By setting the drive, heating and control components of the soymilk maker in the base, the mixing components are set at the bottom of the cup body, and adopting a surrounding cavity design, the problems of shaking and cleaning inconvenient during operation of the soymilk maker are solved, and safety and user experience are improved.
Patent Information
- Application Number
- CN202421578047.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-07-04
AI Technical Summary
During use, existing soy milk machines have problems such as unstable shaking of the head, inconvenient cleaning, and short circuits caused by electrical components being susceptible to water splashing.
A split soy milk maker is designed to enhance stability by placing the drive assembly, heating assembly and control assembly in the base, the stirring assembly at the bottom of the cup and adopting a surrounding cavity design.
It effectively solves the shaking problem of soy milk maker during operation, improves the convenience and safety of cleaning, reduces noise and vibration, and improves the user experience.
Smart Images

Figure CN222997777U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of soymilk makers, in particular to a split-type soymilk maker. Background Art
[0002] At present, the machine heads and their transmission parts of most commercially available soymilk maker products are arranged above the cup assembly, that is, they are covered on the cup in the shape of a lid, and the heating tube is installed on the machine head. In the process of using this installation method, after each pulping is completed, it is necessary to lift the heavy machine head to pour the pulp. At this time, the machine head is inconvenient to place because it is stained with residues; moreover, when cleaning the blade or heating tube installed on the machine head, water is likely to rush into or seep into the live parts on the machine head, causing potential problems such as short circuit or short service life.
[0003] There is a prior art motor-down-mounted soymilk maker, which includes a base and a cup fixed on the base. A motor is arranged in the base, and the cup is provided with a stirring assembly. After the cup and the base are combined, the motor drives the stirring assembly to operate. Although the motor of this soymilk maker is arranged in the base and the base and the cup are separable, it solves the problems that the motor and the cup are integrated, inconvenient to use and inconvenient to clean. However, since the cup and the base of this soymilk maker are split up and down, there is a problem of shaking when the cup runs on the base. Summary of the Utility Model
[0004] Aiming at the problems raised in the background art, the purpose of the present utility model is to provide a split-type soymilk maker, which solves the problems of shaking and instability during the operation of the existing separable soymilk maker with a base and a cup.
[0005] To achieve this purpose, the present utility model adopts the following technical solutions:
[0006] A split-type soymilk maker includes a base, a cup, a crushing and stirring assembly, a driving assembly, a heating assembly and a control assembly;
[0007] The crushing and stirring assembly is installed at the bottom of the cup, the driving assembly, the heating assembly and the control assembly are installed on the base, and the driving assembly and the heating assembly are respectively electrically connected to the control assembly;
[0008] The top of the base extends upward to form an enclosing wall, and the enclosing wall and the top of the base form an enclosing cavity for enclosing the outer wall of the cup. The cavity height of the enclosing cavity is at least half of the height of the outer wall of the cup, and the cup is detachably installed in the enclosing cavity;
[0009] When the cup is installed on the base, the heating assembly abuts against the bottom of the cup, the driving assembly is in transmission connection with the crushing and stirring assembly, and the driving assembly is used to drive the crushing and stirring assembly to rotate.
[0010] Preferably, the base includes a peripheral wall and a bottom plate. The peripheral wall is provided at the top of the bottom plate to form a receiving cavity with an open upper part.
[0011] An installation part is inwardly protruded on the inner wall of the peripheral wall. The heating component is arranged on the installation part. An electrical cavity is formed by the bottom of the peripheral wall, the bottom plate and the heating component. The surrounding wall extends upward from the top of the peripheral wall and forms the surrounding cavity directly above the electrical cavity.
[0012] The driving component and the control component are arranged in the electrical cavity. The driving end of the driving component passes through the heating component and protrudes out of the surrounding cavity.
[0013] When the cup body is installed with the base, it is located in the surrounding cavity.
[0014] Preferably, the heating component includes a heating disc, a heating tube and a thermostat. The heating disc is installed on the installation part. The heating tube is arranged in the heating disc. The thermostat is arranged at the bottom of the heating disc through a fixing piece. The thermostat is electrically connected to the control component.
[0015] Preferably, the driving component includes a protective shell, a motor and a lower coupling.
[0016] The protective shell is installed on the bottom plate. The motor is arranged in the protective shell. The top end of the output shaft of the motor passes through the protective shell and the heating disc. The top end of the output shaft is connected to the lower coupling. The lower coupling is located in the surrounding cavity.
[0017] The crushing and stirring component includes a stirring knife, a knife shaft and an upper coupling. The knife shaft vertically penetrates the bottom of the cup body. The stirring knife is located in the cup body and is connected to the upper end of the knife shaft. The upper coupling is located outside the cup body and is connected to the lower end of the knife shaft.
[0018] The upper coupling and the lower coupling are detachably and cooperatively connected.
[0019] Preferably, the driving component further includes a motor bracket composed of an upper bracket and a lower bracket. The motor bracket is detachably installed on the protective shell and is used to fix the motor.
[0020] The heating component further includes a disc bracket. One end of the disc bracket is connected to the bottom of the heating disc. The other end of the disc bracket extends downward and passes through the protective shell. The other end of the disc bracket is installed and connected to the upper bracket.
[0021] Preferably, a trigger rod, a micro switch and a mounting bracket are further included in the base.
[0022] The microswitch is arranged outside the protective case through the mounting bracket. The trigger rod vertically penetrates through the mounting bracket and can reciprocate up and down relative to the mounting bracket. One end of the trigger rod abuts against the triggering part of the microswitch, and the other end of the trigger rod extends to the top of the surrounding cavity.
[0023] The microswitch is electrically connected to the control component.
[0024] Preferably, the cup body is provided with a handle. The handle includes a connecting section and a holding section. One end of the connecting section is connected to one end of the holding section to form a "7" shape. The other end of the connecting section is connected to the outer side wall of the cup body, and the other end of the holding section extends downward.
[0025] The surrounding cavity entirely surrounds the outer side wall of the cup body. There is a notch at the top of the surrounding wall. The notch matches the connecting section. The trigger rod and the microswitch are arranged on one side corresponding to the notch, and the other end of the trigger rod protrudes from the notch.
[0026] Preferably, the cup body is further provided with a cup cover for closing the top opening of the cup body.
[0027] A downwardly extending clamping block is provided at the edge of the cup cover, and a clamping groove is provided at the top of the connecting section. The clamping block cooperates with the clamping groove.
[0028] Preferably, a cooling fan is provided at the lower end of the output shaft.
[0029] Preferably, the top surface of the lower coupling is recessed to form a groove. The inner wall of the groove is evenly provided with four convex ribs. The upper coupling includes a shaft column and four convex blocks. The four convex blocks are evenly arranged along the outer side wall of the shaft column. When the upper coupling is connected to the lower coupling, the shaft column is located in the groove, and one convex block is clamped between two adjacent convex ribs.
[0030] Compared with the prior art, one of the above technical solutions has the following beneficial effects:
[0031] In the soybean milk machine of the present application, by arranging components such as the driving component, heating component, and control component with relatively heavy mass and high protection level in the base that does not need to be moved frequently, and by arranging the stirring component that needs to be frequently cleaned in the cup body, the problem that the blade of the traditional soybean milk machine head is prone to water ingress during cleaning and has low safety is effectively solved. In addition, by setting the base to have a relatively high surrounding wall that can surround and accommodate the cup body, the stability of the soybean milk machine during operation is further improved. Description of the Drawings
[0032] Figure 1It is a three-dimensional schematic diagram of the combined state of the base and the cup body of the present utility model;
[0033] Figure 2 It is a schematic diagram of the separated state of the base and the cup body of the present utility model;
[0034] Figure 3 It is Figure 2 a cross-sectional view of;
[0035] Figure 4 It is an exploded schematic diagram of the base of the present utility model (excluding the peripheral wall);
[0036] Figure 5 It is another exploded schematic diagram of the base of the present utility model (excluding the peripheral wall);
[0037] Figure 6 It is an exploded schematic diagram of the cup body of the present utility model;
[0038] Figure 7 It is Figure 6 a cross-sectional view of;
[0039] Figure 8 It is a structural schematic diagram of the upper coupling and the lower coupling of the present utility model ( Figure 5 at position A of Figure 6 and an enlarged schematic diagram at position B of
[0040] Among them: base 1, surrounding wall 11, surrounding cavity 101, electrical cavity 102, bottom plate 12, installation part 13, notch 14, cup body 2, handle 21, connecting section 211, holding section 212, cup cover 22, clamping block 23, clamping groove 24, crushing and stirring assembly 3, stirring blade 31, cutter shaft 32, upper coupling 33, shaft column 331, convex block 332, driving assembly 4, protective shell 41, motor 42, output shaft 43, lower coupling 44, groove 441, convex rib 442, upper bracket 451, lower bracket 452, heating assembly 5, heating plate 51, heating tube 52, temperature controller 53, plate bracket 54, control assembly 6, trigger rod 71, micro switch 72, mounting bracket 73 and heat dissipation fan 8. Detailed implementation manners
[0041] The following details the embodiments of the present utility model. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions from beginning to end. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation to the present utility model.
[0042] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the present utility model.
[0043] In addition, the terms "first", "second", and "third" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", and "third" may explicitly or implicitly include one or more of such features.
[0044] It should be noted that unless otherwise clearly specified and defined, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0045] The following will further illustrate the technical solution of the present utility model in conjunction with the attached Figures 1 to 8 drawings and through specific embodiments.
[0046] The present utility model provides a split-type soybean milk machine, which includes a base 1, a cup body 2, a crushing and stirring assembly 3, a driving assembly 4, a heating assembly 5, and a control assembly 6;
[0047] The crushing and stirring assembly 3 is installed at the bottom of the cup body 2, the driving assembly 4, the heating assembly 5, and the control assembly 6 are installed on the base 1, and the driving assembly 4 and the heating assembly 5 are respectively electrically connected to the control assembly 6;
[0048] The top of the base 1 extends upward to form an enclosing wall 11, and the enclosing wall 11 and the top of the base 1 form an enclosing cavity 101. The enclosing cavity 101 is used to enclose the outer wall of the cup body 2. The cavity height of the enclosing cavity 101 is at least one-half of the height of the outer wall of the cup body 2, and the cup body 2 is detachably installed in the enclosing cavity 101;
[0049] When the cup body 2 is installed on the base 1, the heating assembly 5 abuts against the bottom of the cup body 2, the driving assembly 4 is in transmission connection with the crushing and stirring assembly 3, and the driving assembly 4 is used to drive the crushing and stirring assembly 3 to rotate.
[0050] By installing important head components of the soymilk blender, such as the drive assembly 4, the heating assembly 5, and the control assembly 6, on the base 1, and installing the crushing and stirring assembly 3 at the bottom of the cup body 2, and detachably installing and connecting the cup body 2 to the base 1, when pouring the soymilk, there is no need to lift the heavy head, and only the cup body 2 needs to be removed from the base 1, which greatly improves the operation convenience. In addition, since the cup body 2 is detachably separated from the base 1, and the crushing and stirring assembly 3 is arranged at the bottom of the cup body 2, the user can directly clean the blades for crushing beans when cleaning the cup body 2, without worrying about the risk of water splashing into the electrical components of the head when cleaning the crushing and stirring assembly 3, thus improving the safety performance of the product.
[0051] When the soymilk machine of the present application is in use, the cup body 2 is specifically installed in the surrounding cavity 101 formed by the top of the base 1 and the surrounding wall 11, and the cavity height of the surrounding cavity 101 is at least half of the height of the outer side wall of the cup body 2, effectively solving the problem that when the cup body 2 is arranged above the base 1, the center of gravity of the cup body 2 is relatively high, and the shaking during operation is likely to cause the cup body to tilt. When the cup body 2 performs stirring and crushing work on the base 1, the whole machine is more stable, reducing the noise and vibration that may be generated during operation and improving the user experience.
[0052] Due to the modular design of each component, the maintenance and servicing of the soymilk machine become more convenient. When a certain component fails, it can be replaced or repaired correspondingly without sending the whole soymilk machine for repair. In addition, the soymilk machine is divided into a cup body 2 and a base 1, and the user can choose different cup bodies or bases for matching use according to the usage requirements. For example, the user can choose cup bodies with different capacities to meet different needs, or choose bases with different functions to achieve more functions.
[0053] In summary, the soymilk machine of the present application effectively solves the problem that the blades of the head of the traditional soymilk machine are prone to water ingress and have low safety during cleaning by arranging components such as the drive assembly 4, the heating assembly 5, and the control assembly 6 with relatively heavy mass and high protection level in the base 1 that does not need to be moved frequently, and arranging the stirring assembly 3 that needs to be frequently cleaned in the cup body 2; in addition, a surrounding cavity 101 with a certain height is formed at the top of the base 1, which can surround and accommodate the cup body 2, further improving the stability of the soymilk machine during operation.
[0054] Further, the base 1 includes an outer peripheral wall and a bottom plate 12, and the outer peripheral wall is arranged on the top of the bottom plate 12 to form a receiving cavity with an open top;
[0055] The inner wall of the peripheral wall is convexly provided with a mounting portion 13 inwardly, and the heating assembly 5 is disposed on the mounting portion 13. The bottom of the peripheral wall, the bottom plate 12 and the heating assembly 5 enclose an electrical cavity 102. The surrounding wall 11 extends upward from the top of the peripheral wall and forms the surrounding cavity 101 directly above the electrical cavity 102;
[0056] The driving assembly 4 and the control assembly 6 are disposed in the electrical cavity 102, and the driving end of the driving assembly 4 passes through the heating assembly 5 and protrudes out of the surrounding cavity 101;
[0057] When the cup body 2 is installed on the base 1, it is located in the surrounding cavity 101.
[0058] Through the above specific design of the base 1, it is clearly divided into the upper surrounding cavity 101 and the lower electrical cavity 102. The heating assembly 5 is horizontally disposed on the mounting portion 13, ensuring the isolation of electrical components (such as the driving assembly 4 and the control assembly 6) from the stirring area (surrounding cavity 101), further avoiding the risk of electrical short - circuit caused by liquid splashing into the electrical cavity, and greatly enhancing the safety performance of the soymilk machine.
[0059] The heating assembly 5 is arranged on the mounting portion 13 and is in direct contact with the bottom of the cup body 2, enabling heat to be transferred to the soymilk inside the cup body more directly and efficiently.
[0060] Since the surrounding wall 11 surrounds the outer side wall of the cup body 2 when the cup body 2 is installed on the base 1, and the cup body 2 is located in the surrounding cavity when installed on the base 1, this design further enhances the stability of the soymilk machine during use, reduces the noise and vibration generated by shaking, and improves the user experience.
[0061] Furthermore, the heating assembly 5 includes a heating plate 51, a heating tube 52 and a thermostat 53. The heating plate 51 is installed on the mounting portion 13, the heating tube 52 is wound inside the heating plate 51, the thermostat 53 is disposed at the bottom of the heating plate 51 through a fixing piece, and the thermostat 53 is electrically connected to the control assembly 6.
[0062] Since the heating tube 52 is directly combined with the heating plate 51 for use, this combination method can quickly convert electrical energy into heat energy, accelerating the heating speed. Further, the heating tube 52 is wound inside the heating plate 51, and this design enables heat to be transferred more evenly to the entire heating plate 51. When the cup body 2 is installed on the base 1, the bottom of the cup body 2 abuts against the surface of the heating plate 51, better transferring heat to heat the slurry in the cup body 1, avoiding the problem of uneven heating in traditional soymilk machines, and thus improving the heating efficiency of the soymilk.
[0063] The thermostat 53 is provided at the bottom of the heating plate 51. On the one hand, it can accurately control the temperature without affecting the contact between the cup body 2 and the heating component 5. In addition to accurately controlling the temperature and providing temperature protection, when the temperature in the cup body 2 exceeds the preset upper limit value, the thermostat 53 can automatically cut off the power supply of the heating component 5, preventing the soybean milk from burning or overflowing due to overheating and improving the safety of use. Through the real-time monitoring and control of the thermostat 53, damage to the soybean milk machine or the surrounding environment caused by overheating can be avoided, and the service life of the soybean milk machine is extended.
[0064] Further, the drive assembly 4 includes a protective housing 41, a motor 42, and a lower coupling 44;
[0065] The protective housing 41 is installed on the bottom plate 12. The motor 42 is disposed within the protective housing 41. The top end of the output shaft 43 of the motor 42 passes through the protective housing 41 and the heating plate 51, and the top end of the output shaft 43 is connected to the lower coupling 44. The lower coupling 44 is located within the surrounding cavity 101;
[0066] The crushing and stirring assembly 3 includes a stirring blade 31, a blade shaft 32, and an upper coupling 33. The blade shaft 32 vertically penetrates the bottom of the cup body 2. The stirring blade 31 is located within the cup body 2 and is connected to the upper end of the blade shaft 32. The upper coupling 33 is located outside the cup body 2 and is connected to the lower end of the blade shaft 32;
[0067] The upper coupling 33 and the lower coupling 44 are detachably and cooperatively connected.
[0068] By installing the protective housing 41 on the bottom plate 12 and disposing the motor 42 within the protective housing 41, direct contact between the motor 42 and the external environment is effectively avoided, thereby reducing the risk of damage to the motor 42 due to external impacts, water splashes, and other factors, extending the service life of the motor, and improving the overall reliability of the soybean milk machine.
[0069] The stirring blade 31 is located within the cup body 2 and is connected to the upper end of the blade shaft 32. The upper coupling 33 is located outside the cup body 2 and is connected to the lower end of the blade shaft 32, and the upper coupling 33 and the lower coupling 44 are detachably and cooperatively connected. The output shaft 43 of the motor 42 passes through the protective housing 41 and the heating plate 51 and is connected to the lower coupling 44, realizing effective power transmission from the motor to the stirring assembly. Through the detachable and cooperative connection of the upper coupling 33 and the lower coupling 44, not only is the installation and disassembly process simplified, but also the efficiency and stability of power transmission are improved.
[0070] It should be noted that the protective housing 41 can be composed of an upper shell and a lower shell that are installed and connected. Such a design allows the upper shell to be easily removed from the lower shell, enabling maintenance of the internal motor 42.
[0071] Furthermore, the driving assembly 4 further includes a motor bracket composed of an upper bracket 451 and a lower bracket 452. The motor bracket is detachably mounted on the protective shell 41 and is used to fix the motor 42.
[0072] The heating assembly 5 further includes a disc bracket 54. One end of the disc bracket 54 is connected to the bottom of the heating disc 51, and the other end of the disc bracket 54 extends downward and passes through the protective shell 41. The other end of the disc bracket 54 is mounted and connected to the upper bracket 451.
[0073] Through the motor bracket composed of the upper bracket 451 and the lower bracket 452, the motor 42 is firmly fixed inside the protective shell 41. This design effectively prevents the possible shaking or loosening of the motor during operation, improving the operating stability of the motor and the overall reliability of the soybean milk machine.
[0074] One end of the disc bracket 54 is connected to the bottom of the heating disc 51, and the other end passes through the protective shell 41 and is mounted and connected to the upper bracket 451. This design makes the connection between the heating assembly 5 and the driving assembly 4 more compact, effectively utilizing the space inside the soybean milk machine and reducing the overall volume of the product. In addition, in addition to being mounted and connected to the mounting portion 13, the heating disc 51 is also mounted and connected to the driving assembly 4 (the motor bracket that fixes the motor 42), further improving the stability of the heating assembly 5. When the heating disc 51 supports the cup body 2 for heating and pulverizing and stirring, it is more stable.
[0075] Preferably, the disc bracket 54 and the heating disc 51 are of an integral structure, further improving the overall strength and stability of the heating disc.
[0076] Furthermore, the base 1 further includes a trigger rod 71, a microswitch 72 and a mounting bracket 73.
[0077] The microswitch 72 is disposed outside the protective shell 41 through the mounting bracket 73. The trigger rod 71 vertically penetrates the mounting bracket 73 and can reciprocate up and down relative to the mounting bracket 73. One end of the trigger rod 71 abuts against the trigger portion of the microswitch 72, and the other end of the trigger rod 71 extends to the top of the surrounding cavity 101.
[0078] The microswitch 72 is electrically connected to the control assembly 6.
[0079] By setting a trigger rod 71, a micro switch 72 and a mounting bracket 73 inside the base 1, a safety protection mechanism is formed. When the cup body 2 is installed on the base 1, the other end of the trigger rod 71 contacts the corresponding part (such as a linkage rod) on the cup body 2, and the trigger rod 71 moves downward, thereby closing the contacts of the micro switch 72, and the soybean milk machine starts to work. If the cup body 2 is accidentally removed or not properly installed, the trigger rod 71 will no longer be pressed by the cup body 2, so it moves upward, disconnecting the contacts of the micro switch 72, and the soybean milk machine stops working. This design effectively prevents safety hazards caused by the cup body not being installed or being improperly installed. The combined use of the trigger rod 71 and the micro switch 72 makes the operation of the soybean milk machine more convenient. The user only needs to correctly install the cup body 2 on the base 1, and the soybean milk machine can automatically start working without manually operating the switch. This design improves the user experience and makes the operation of the soybean milk machine more intelligent.
[0080] Further, the cup body 2 is provided with a handle 21, the handle 21 includes a connecting section 211 and a holding section 212, one end of the connecting section 211 is connected to one end of the holding section 212 to form a "7" shape, the other end of the connecting section 211 is connected to the outer side wall of the cup body 2, and the other end of the holding section 212 extends downward;
[0081] The surrounding cavity 101 entirely surrounds the outer side wall of the cup body 2. A notch 14 is provided at the top of the surrounding wall 11. The notch 14 matches the connecting section 211. The trigger rod 71 and the micro switch 72 are arranged on the side corresponding to the notch 14, and the other end of the trigger rod 71 protrudes from the notch 14.
[0082] The handle 21 is designed in a "7" shape. The connecting section 211 is connected to the cup body 2, and the holding section 212 extends downward. This design enables the user to hold the handle 21 more conveniently when operating the soybean milk machine, increasing the comfort of holding. In particular, the part where the holding section 212 extends downward can provide additional support for the user's hand, making it more stable and safe to lift and lower the cup body 2.
[0083] The notch 14 surrounding the top of the surrounding wall 11 matches the connecting section 211 of the handle. Such a design makes the placement of the cup body 2 on the base 1 more accurate and stable. When the cup body 2 is correctly placed on the base 1, the handle 21 will naturally align with the notch 14. At the same time, the trigger lever 71 and the micro switch 72 are arranged on the side corresponding to the notch 14, and the other end of the trigger lever 71 protrudes from the notch 14. This layout enables the trigger lever 71 to be pressed down by the connecting section 211 of the handle 21 when the cup body 2 is placed on the base 1, thereby triggering the micro switch 72 and starting the soybean milk machine. If the cup body 2 is not correctly placed or is missing, the trigger lever 71 will not be pressed down, the micro switch 72 remains in the off state, and the soybean milk machine will not work, thus improving safety.
[0084] Furthermore, the cup body 2 is also provided with a cup cover 22, and the cup cover 22 is used to close the top opening of the cup body 2;
[0085] The edge of the cup cover 22 is provided with a downwardly extending clamping block 23, and the top of the connecting section 211 is provided with a clamping groove 24, and the clamping block 23 cooperates with the clamping groove 24.
[0086] The cup cover 22 is used to close the top opening of the cup body 2, which can effectively prevent the soybean milk from splashing out or causing scalding accidents due to accidental touch or accidental tipping by the user during the operation of the soybean milk machine. This design improves the safety of using the soybean milk machine.
[0087] The clamping block 23 at the edge of the cup cover 22 cooperates with the clamping groove 24 at the top of the connecting section 211 of the handle 21. This design makes the opening and closing of the cup cover 22 more convenient and fast. The user only needs to simply align the clamping block 23 with the clamping groove 24 and press or lift it to complete the opening or closing operation of the cup cover. The cooperative design of the clamping block 23 and the clamping groove 24 not only facilitates the user's operation but also improves the sealing performance between the cup cover 22 and the cup body 2. This design can effectively prevent the soybean milk from overflowing or splashing during the preparation process, and also reduces the evaporation and oxidation of the soybean milk during storage.
[0088] Furthermore, a cooling fan 8 is provided at the lower end of the output shaft 43.
[0089] The cooling fan 8 is directly arranged at the lower end of the output shaft 43, making full use of the rotational power of the motor without the need to additionally add a motor for driving the cooling fan to operate, thus simplifying the structural design of the soybean milk machine and reducing the production cost. When the motor 42 drives the output shaft 43 to rotate, the cooling fan 8 will also rotate accordingly, thereby generating an air flow, which helps to accelerate the dissipation of heat inside the soybean milk machine. By enhancing the heat dissipation effect, the working temperature of the motor 42 is reduced, thereby reducing the risk of damage to the motor 42 caused by high temperature. This helps to extend the service life of the motor and improve the overall reliability of the soybean milk machine.
[0090] Furthermore, the top surface of the lower coupling 44 is recessed downward and provided with a groove 441, and the inner wall of the groove 441 is evenly provided with four convex ribs 442. The upper coupling 33 includes a shaft column 331 and four protrusions 332, and the four protrusions 332 are evenly arranged along the outer wall of the shaft column 331. When the upper coupling 33 is connected to the lower coupling 44, the shaft column 331 is located in the groove 441, and one of the protrusions 332 is clamped between two adjacent protrusions 442.
[0091] The top surface of the lower coupling 44 is provided with a groove 441, and four convex ribs 442 are evenly distributed on the groove wall of the groove. This design can form a stable engagement structure with the block 332 of the upper coupling 33. When the shaft column 331 of the upper coupling 33 is placed in the groove 441, each block 332 can be just stuck between two adjacent convex ribs 442, ensuring a stable connection between the upper coupling and the lower coupling. This design effectively prevents the connection from loosening or falling off due to vibration or impact during use, and improves the overall stability and reliability of the soybean milk machine. By optimizing the connection structure of the coupling, the risk of failure caused by connection problems is reduced, and the durability and safety of the soybean milk machine are enhanced. At the same time, the stable connection structure also helps to reduce damage to other parts of the soybean milk machine due to vibration or impact, further improving the reliability and safety of the whole machine. Since the connection between the upper and lower couplings is more stable and compact, the energy loss caused by loose connection or excessive gap is reduced, thereby improving the transmission efficiency. This is of great significance for ensuring the normal working state of the soybean milk machine and extending its service life.
[0092] The technical principle of the present invention is described above in combination with specific embodiments. These descriptions are only for explaining the principle of the present invention and cannot be interpreted as limiting the protection scope of the present invention in any way. Based on the explanations here, technicians in this field can think of other specific implementation methods of the present invention without creative work, and these methods will fall within the protection scope of the present invention.
Claims
1. A split type soybean milk machine, characterized in that: It includes a base, a cup body, a crushing and stirring component, a driving component, a heating component and a control component; The crushing and stirring assembly is installed at the bottom of the cup body, the driving assembly, the heating assembly and the control assembly are installed at the base, and the driving assembly and the heating assembly are electrically connected to the control assembly respectively; A surrounding wall is extended upward from the top of the base, and the surrounding wall and the top of the base form a surrounding cavity, and the surrounding cavity is used to surround the outer wall of the cup body, and the cavity height of the surrounding cavity is at least half of the height of the outer wall of the cup body, and the cup body is detachably mounted in the surrounding cavity; When the cup body is mounted on the base, the heating component abuts against the bottom of the cup body, the driving component is transmission-connected with the crushing and stirring component, and the driving component is used to drive the crushing and stirring component to rotate.
2. A split type soybean milk machine according to claim 1, characterized in that: The base comprises an outer wall and a bottom plate, wherein the outer wall is arranged on the top of the bottom plate to form a receiving cavity with an upper opening; The inner wall of the peripheral wall protrudes inwardly to form a mounting portion, the heating component is arranged on the mounting portion, the peripheral wall, the bottom plate and the bottom of the heating component enclose an electrical cavity, the surrounding wall extends upward from the top of the peripheral wall and forms the surrounding cavity directly above the electrical cavity; The driving component and the control component are arranged in the electrical cavity, and the driving end of the driving component passes through the heating component and protrudes out of the surrounding cavity; The cup body and the base are located in the surrounding cavity when installed.
3. A split type soybean milk machine according to claim 2, characterized in that: The heating component includes a heating plate, a heating tube and a thermostat. The heating plate is installed on the installation part, the heating tube coil is arranged in the heating plate, the thermostat is arranged on the bottom of the heating plate through a fixing plate, and the thermostat is electrically connected to the control component.
4. A split type soybean milk machine according to claim 3, characterized in that: The driving assembly includes a protective shell, a motor and a lower coupling; The protective shell is mounted on the bottom plate, the motor is arranged in the protective shell, the top end of the output shaft of the motor passes through the protective shell and the heating plate, the top end of the output shaft is connected to the lower coupling, and the lower coupling is located in the surrounding cavity; The crushing and stirring assembly includes a stirring blade, a blade shaft and an upper coupling, wherein the blade shaft vertically passes through the bottom of the cup body, the stirring blade is located inside the cup body and connected to the upper end of the blade shaft, and the upper coupling is located outside the cup body and connected to the lower end of the blade shaft; The upper coupling and the lower coupling are detachably connected.
5. The split type soybean milk machine according to claim 4, characterized in that: The driving assembly further comprises a motor bracket consisting of an upper bracket and a lower bracket, wherein the motor bracket is detachably mounted on the protective shell and is used to fix the motor; The heating component also includes a disc support, one end of which is connected to the bottom of the heating disc, the other end of which extends downward and passes through the protective shell, and the other end of which is installed and connected to the upper support.
6. The split type soybean milk machine according to claim 5, characterized in that: The base also includes a trigger rod, a micro switch and a mounting frame; The micro switch is mounted on the outer side of the protective shell through the mounting frame, the trigger rod vertically penetrates the mounting frame and can reciprocate up and down relative to the mounting frame, one end of the trigger rod abuts against the trigger part of the micro switch, and the other end of the trigger rod extends to the top of the surrounding cavity; The micro switch is electrically connected to the control component.
7. The split type soybean milk machine according to claim 6, characterized in that: The cup body is provided with a handle, the handle comprising a connecting section and a gripping section, one end of the connecting section is connected to one end of the gripping section in a "7" shape, the other end of the connecting section is connected to the outer side wall of the cup body, and the other end of the gripping section extends downward; The surrounding cavity surrounds the outer wall of the cup body as a whole, a notch is provided on the top of the surrounding wall, the notch matches the connecting section, the trigger rod and the micro switch are arranged on a side corresponding to the notch, and the other end of the trigger rod protrudes from the notch.
8. The split type soybean milk machine according to claim 7, characterized in that: The cup body is also provided with a cup cover, and the cup cover is used to close the top opening of the cup body; A clamping block extending downward is provided at the edge of the cup cover, and a clamping slot is provided at the top of the connecting section, and the clamping block cooperates with the clamping slot.
9. The split type soybean milk machine according to claim 8, characterized in that: A cooling fan is provided at the lower end of the output shaft.
10. The split type soybean milk machine according to claim 9, characterized in that: The top surface of the lower coupling is recessed downward to form a groove, and the inner wall of the groove is evenly provided with four convex ribs. The upper coupling includes a shaft column and four protrusions, and the four protrusions are evenly arranged along the outer wall of the shaft column. When the upper coupling is connected to the lower coupling, the shaft column is located in the groove, and one of the protrusions is clamped between two adjacent convex ribs.
Citation Information
Cited By
Leakage-proof sealed soybean milk machine capable of laterally discharging soybean milk
CN121369947A