Food processor with good waterproof effect

By setting up installation grooves, flow blocking structures and drainage channels in the food processor, the problem of water stains entering the main machine is solved, and the double waterproof protection of electrical components such as motors is achieved, which improves the stability and service life of the machine.

CN223220346UActive Publication Date: 2025-08-15JOYOUNG CO LTD
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Patent Information

Application Number
CN202422217528.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-08-15
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

In existing food processors, water accumulation in the installation tank is prone to flow into the main machine through the avoidance port, causing the motor and other electrical components to be damp, affecting service life and stability.

Method used

The installation ring is arranged on the top of the main unit to form an installation groove. A connecting head connected to the motor transmission is provided in the installation groove. A flow barrier structure and a drainage channel communicating with the outside are provided at the avoidance port to prevent water stains from entering the main unit, and at the same time, it can achieve rapid discharge through the collection cavity and the flow channel.

Benefits of technology

Effectively prevent water stains from entering electrical components such as motors, extending service life, and improving the stability and user experience of food processors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a food processor with good waterproof effect, which relates to the field of life electric appliances and comprises a main machine and a detachable cup body arranged above the main machine, a motor is arranged in the main machine, the top of the main machine is provided with a mounting ring extending upwards, and the mounting ring and the top wall of the main machine form a mounting groove for mounting the cup body. A connector in transmission connection with the motor is arranged in the mounting groove, an avoiding opening allowing the connector to penetrate through is formed in the bottom wall of the mounting groove, and a flow blocking structure is arranged between the avoiding opening and the connector, so that water stains and the like at the avoiding opening are blocked, and the situation that the water stains and the like directly enter a main machine through the avoiding opening due to the fact that the water stains or slurry exists in the mounting groove is effectively avoided; the drainage channel communicated with the outside is arranged below the avoiding opening, double waterproof protection on electric appliance parts in the main machine is achieved through the flow blocking structure and the drainage channel, the situation that the electric appliance parts and the like work unstably due to damp is avoided, and the service life of the whole machine is prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of household electrical appliances, in particular to a food processing machine with good waterproof effect. Background Art

[0002] Existing food processors typically consist of a main unit and a removable cup mounted above the main unit. The main unit houses a motor, and the cup assembly houses a stirring element connected to the motor. When using the food processor, the user places ingredients into the cup, which is then driven by the motor to rotate at high speed to process the ingredients. Existing methods for mounting the cup typically involve a mounting platform formed above the main unit, on which the cup assembly is placed, with upper and lower connectors coupled for transmission connection. However, due to the limited spacing between the main unit and the cup assembly, the cup assembly is prone to vibration, noise, and even tipping over during processing.

[0003] In order to solve the above problem, some manufacturers set the cup body to include a cup body and a mounting portion provided at the lower end of the cup body, and the mounting portion is installed in the mounting groove formed by the host, thereby increasing the matching area between the cup body and the host, thereby improving the stability of the cup body. Although the above method can improve the stability of the cup body, due to the existence of the mounting groove, when the user cleans the mounting groove, the cleaning water is likely to remain in the mounting groove, and when the user adds excessive liquid to the cup body, overflow will occur during the food processing process, and the overflowed slurry will flow down along the cup body into the mounting groove. In order to make the cleaning water and slurry quickly At the same time, a drainage channel connecting the leakage hole and the outside world is provided in the main unit to realize the discharge of cleaning water and slurry. However, in actual use by users, it is found that some cleaning water and slurry cannot be drained in time. The connector exposed on the mounting groove will drive the water stains to move when it rotates at high speed, causing the water stains to flow downward into the main unit through the avoidance port set on the bottom wall of the mounting groove for the connector to pass through, causing the motor and other electrical components in the main unit to become damp, resulting in their insensitive operation or even failure, seriously affecting the consumer experience. Utility Model Content

[0004] The purpose of the utility model is to provide a food processing machine with good waterproof effect, so as to solve the problem that the accumulated water in the installation groove for installing the cup body in the existing food processing machine can easily flow downward into the main machine through the avoidance opening provided on the bottom wall of the installation groove for the connection head to pass through, causing damage to electrical components such as the motor.

[0005] To achieve the above-mentioned purpose, the utility model provides a food processing machine with good waterproof effect, including a main unit and a detachable cup body arranged above the main unit, a motor is provided in the main unit, and an upwardly extending mounting ring is provided on the top of the main unit. The mounting ring and the top wall of the main unit form an installation groove for installing the cup body, a connector connected to the motor transmission is provided in the installation groove, and an avoidance opening for the connector to pass through is provided on the bottom wall of the installation groove, a flow blocking structure is provided between the avoidance opening and the connector, and a drainage channel connected to the outside world is provided below the avoidance opening.

[0006] The present invention provides an upwardly extending mounting ring at the top of the main unit. The mounting ring and the main unit top wall form a mounting groove for the cup body. After the cup body is installed on the main unit, the mounting groove effectively limits its position, thereby improving the stability of the connection between the cup body and the main unit, thereby preventing the cup body from swinging significantly during food processing, which could cause noise or even interrupt food processing. Furthermore, a connector is provided within the mounting groove for transmission connection with the motor, and a relief opening is provided on the bottom wall of the mounting groove for the connector to pass through. This allows the connector to pass through the relief opening and achieve transmission connection with the stirring element in the upper cup body, thereby preventing interference and friction between the connector and the bottom wall of the mounting groove, which could lead to transmission instability. Furthermore, a flow-blocking structure is provided between the relief opening and the connector to block water stains at the relief opening, effectively preventing water stains or slurry in the mounting groove from directly entering the main unit through the relief opening, causing moisture to short-circuit or even damage electrical components such as the motor within the main unit. This provides protection for various components within the main unit, achieving a good waterproof effect. A drainage channel connected to the outside world is provided below the escape port. Even if some water stains or slurry flow down through the escape port into the main unit, the drainage channel can divert the water stains directly outward to the outside world, further preventing water stains from entering electrical components such as the motor, further enhancing waterproof protection. The flow-blocking structure and drainage channel provide dual waterproof protection for the electrical components within the main unit, preventing them from becoming unstable due to moisture, and helping to extend the service life of the entire unit.

[0007] In a preferred implementation of a food processor with good waterproof effect, the flow blocking structure includes a flow blocking surface extending upward at the avoidance opening.

[0008] By configuring the flow-blocking structure to include a flow-blocking surface extending upward from the escape opening, water stains flowing toward the escape opening are blocked by the flow-blocking surface, preventing them from flowing further toward the escape opening and entering the main unit, thereby achieving waterproof protection for all components within the main unit. Furthermore, the flow-blocking structure is simple and reliable to form, which helps reduce modifications to the original main unit, thus reducing modification costs and improving production efficiency.

[0009] In a preferred implementation of a food processor with good waterproof effect, the motor includes a motor housing, the motor housing is provided with a through hole for the connecting head to pass through, and the flow blocking structure includes an annular retaining rib extending downward from the outer periphery of the connecting head, and the bottom end of the annular retaining rib is lower than the through hole.

[0010] By setting the flow blocking structure to include an annular retaining rib extending downward from the outer periphery of the connecting head, and the bottom end of the annular retaining rib is lower than the through hole, water stains and the like that enter the main unit through the avoidance port are blocked by the annular retaining rib and continue to flow downward, effectively avoiding the situation where water stains and the like flow downward through the avoidance port and then flow into the motor housing through the through hole, causing the motor to malfunction, thereby further ensuring the stability of the food processor.

[0011] In a preferred implementation of a food processor with good waterproof effect, the drainage channel includes a collecting chamber provided in the main unit and connected to the avoidance port, and a diversion channel connecting the collecting chamber with the outside.

[0012] By setting the drainage channel to include a collecting chamber provided in the main unit and connected to the avoidance port, and a diversion channel connecting the collecting chamber with the outside world, the water stains flowing downward through the avoidance port can first be collected by the collecting chamber, and the collected water stains can be discharged outward through the diversion channel, so that the water stains can be discharged outward through one diversion channel, eliminating the need to set up multiple diversion channels for drainage, helping to simplify the structure of the entire machine, thereby improving production efficiency and reducing production costs, and at the same time helping to reduce the size of the entire machine, making it easier for users to take and place.

[0013] In a preferred implementation of a food processor with good waterproof effect, the motor includes a motor housing and a motor body arranged in the motor housing. The top wall of the motor housing is provided with an annular water receiving groove vertically aligned with the avoidance port, and the collecting chamber is provided with the side wall of the motor housing and connected to the annular water receiving groove.

[0014] By providing an annular water receiving groove on the top wall of the motor housing which is vertically aligned with the avoidance port, the collecting chamber is provided on the side wall of the motor housing and is connected with the annular water receiving groove, so that water stains etc. dripping downward from any position of the avoidance port can directly drip onto the annular water receiving groove, thereby collecting the water stains etc., and then discharge them outwards through the collecting chamber and the diversion channel, effectively avoiding the situation where water stains etc. drip directly onto the motor when dripping downward through the avoidance port.

[0015] In a preferred implementation of a food processor with good waterproof effect, the collecting chamber is arranged below the annular water receiving trough, and the bottom wall of the collecting chamber is provided with a first water leakage hole connected to the diversion channel.

[0016] By positioning the collection chamber below the annular water receiving trough, water collected by the annular water receiving trough flows directly into the collection chamber through the first water leakage hole under the action of gravity, effectively preventing the accumulation of liquid in the annular water receiving trough for a long time, which may cause it to generate odor or even mold. At the same time, a first water leakage hole is provided on the bottom wall of the collection chamber, which is connected to the diversion channel. Water entering the collection chamber drips downward through the first water leakage hole into the diversion channel and is discharged outward from the diversion channel, thus achieving a top-down drainage path for water stains, thereby ensuring smooth drainage and preventing water stains from accumulating.

[0017] In a preferred implementation of a food processing machine with good waterproof effect, the motor includes a motor housing and a motor body arranged in the motor housing, the motor housing is provided with a guide tube connected to the collecting chamber and extending downward, the guide channel is formed in the guide tube, and the main housing of the main machine is provided with a second water leakage hole vertically aligned with the guide tube.

[0018] By placing the guide tube on the motor housing and forming the guide channel within the guide tube, the guide channel is integrated into the motor housing, eliminating the need for separate accessories to form the guide channel. This helps simplify the internal structure of the main unit, achieves functional integration of the motor housing, improves the compactness of the internal structure, and further helps to reduce the size of the entire unit. At the same time, the main unit housing is equipped with a second drainage hole vertically aligned with the guide tube, allowing water stains discharged downward through the guide channel to drip directly into the second drainage hole and be discharged outward, further ensuring smooth drainage.

[0019] In a preferred implementation of a food processor with good waterproof effect, the motor housing includes a motor upper shell and a motor lower shell, the collecting cavity is formed on the motor upper shell, and the guide tube is formed on the motor lower shell.

[0020] By forming the collecting cavity on the upper shell of the motor and the guide tube on the lower shell of the motor, the functional integration of the motor housing is further achieved, which can further simplify the internal structure of the main unit and improve the compactness of the internal structure.

[0021] In a preferred implementation of a food processor with good waterproof effect, a micro switch is also provided in the main unit, and the micro switch includes a switch top rod that can be exposed from the main unit, and the switch top rod includes a top rod and a bracket provided below the top rod, and the bracket is provided with a guide groove connected to the drainage channel.

[0022] By installing a microswitch inside the main unit, the microswitch is triggered only when the cup is properly installed, which in turn activates the motor and ensures stable food processing. The bracket also features a diversion groove connected to the drainage channel, allowing water stains on the switch top rod to be directly drained out through the diversion groove and drainage channel. This effectively prevents water stains from dripping onto the microswitch, causing it to become insensitive or even malfunction. This protects the microswitch and helps extend its service life. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:

[0024] Figure 1 This is a structural diagram of a food processing machine in one embodiment of the present invention;

[0025] Figure 2 This is a cross-sectional view of a host in one embodiment of the present invention;

[0026] Figure 3 for Figure 2 Enlarged view of part A in the middle;

[0027] Figure 4 This is an exploded view of the host in one embodiment of the present invention;

[0028] Figure 5 This is a structural diagram of the upper housing of the motor in one embodiment of the present utility model;

[0029] Figure 6 This is a cross-sectional view of the host at another angle in one embodiment of the present invention;

[0030] Figure 7 This is a schematic structural diagram of a switch push rod in one embodiment of the present invention.

[0031] List of parts and reference numerals:

[0032] 1-cup body; 2-main unit, 21-mounting ring, 22-mounting groove, 221-flow blocking surface, 23-second water leakage hole, 24-avoidance port; 3-connector, 31-annular retaining rib; 4-motor, 41-motor housing, 411-motor upper shell, 412-motor lower shell, 42-motor body, 43-annular water receiving trough, 44-collecting chamber, 441-first water leakage hole, 45-guide tube; 5-micro switch, 51-switch push rod, 511-pull rod, 512-bracket, 513-guide groove, 5131-first trough body, 5132-second trough body. DETAILED DESCRIPTION

[0033] In order to more clearly illustrate the overall concept of the present invention, a detailed description is given below in combination with the accompanying drawings by way of examples.

[0034] It should be noted that many specific details are set forth in the following description to facilitate a full understanding of the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific implementation methods disclosed below.

[0035] like Figures 1 to 7 As shown, the utility model provides a food processing machine with good waterproof effect, including a main body 2 and a detachable cup body 1 arranged above the main body 2, a motor 4 is arranged in the main body 2, and a mounting ring 21 extending upward is provided on the top of the main body 2, the mounting ring 21 and the top wall of the main body 2 form a mounting groove 22 for mounting the cup body 1, a connector 3 connected to the motor 4 is provided in the mounting groove 22, and a bypass port 23 for the connector 3 to pass through is provided on the bottom wall of the mounting groove 22, a flow blocking structure is provided between the bypass port 23 and the connector 3, and a drainage channel connected to the outside is provided below the bypass port 23. It should be noted that the mounting ring 21 is used to limit and install the cup body 1. Preferably, the mounting ring 21 forms a closed ring in the circumferential direction. Of course, the mounting ring 21 can also be a non-closed ring, with a notch provided in a part of the mounting ring 21.

[0036] The present application provides an upwardly extending mounting ring 21 on the top of the main unit 2. The mounting ring 21 and the top wall of the main unit 2 form a mounting groove 22 for mounting the cup body 1. This allows the cup body 1 to be effectively limited in position by the receiving groove after being mounted on the main unit 2, thereby improving the stability of the connection between the cup body 1 and the main unit 2, thereby preventing the cup body 1 from swinging significantly during food processing, which could cause noise or even interrupt food processing. At the same time, a connector 3 is provided within the mounting groove 22 for transmission connection with the motor 4. The bottom wall of the mounting groove 22 is provided with an avoidance opening 23 for the connector 3 to pass through. This allows the connector 3 to pass through the avoidance opening 23 to achieve transmission connection with the stirring element in the upper cup body 1, avoiding interference and friction between the connector 3 and the bottom wall of the mounting groove 22, which could cause transmission instability. A flow-blocking structure is provided between the avoidance opening 23 and the connector 3 to block water stains and the like at the avoidance opening 23, effectively preventing water stains or slurry in the mounting groove 22 from directly entering the main unit 2 through the avoidance opening 23, causing short circuits or even damage to electrical components such as the motor 4 in the main unit 2 due to moisture, thereby protecting the various components in the main unit 2 and achieving a good waterproof effect. Furthermore, a drainage channel connected to the outside world is provided below the avoidance opening 23, so that even if some water stains or slurry flow downward through the avoidance opening 23 into the main unit 2, the drainage channel can divert the water stains and the like to flow directly outward to the outside world, thereby further preventing water stains and the like from entering electrical components such as the motor 4, further achieving a waterproof protection effect. The flow-blocking structure and the drainage channel provide dual waterproof protection for the electrical components in the main unit 2, preventing the electrical components from becoming unstable due to moisture, and helping to extend the service life of the entire device.

[0037] It should be noted that the present application does not specifically limit the flow blocking structure, which can be any one of the following embodiments:

[0038] Example 1: Figure 2 、 Figure 3 As shown, in this embodiment, the flow blocking structure includes a flow blocking surface 221 extending upward from the avoidance opening 23 .

[0039] By configuring the flow-blocking structure to include a flow-blocking surface 221 extending upward from the avoidance opening 23, water stains and the like flowing toward the avoidance opening 23 are blocked by the flow-blocking surface 221 to prevent the water stains and the like from flowing further toward the avoidance opening 23 and entering the main unit 2, thereby achieving waterproof protection for various components within the main unit 2. Furthermore, the flow-blocking structure is simple and reliable to form, which helps reduce modifications to the existing main unit 2, helps reduce modification costs, and improves production efficiency.

[0040] Preferably, if Figure 3 As shown, the baffle surface 221 extends obliquely upward and inward. Of course, it can also extend vertically upward or obliquely outward, which will not be described in detail here.

[0041] Example 2: Figure 3 As shown, in this embodiment, the motor 4 includes a motor housing 41, which is provided with a through hole for the connector 3 to pass through, and the flow blocking structure includes an annular retaining rib 31 extending downward from the periphery of the connector 3, and the bottom end of the annular retaining rib 31 is lower than the through hole.

[0042] By setting the flow blocking structure to include an annular retaining rib 31 extending downward from the outer periphery of the connecting head 3, and the bottom end of the annular retaining rib 31 is lower than the through hole, water stains and the like that enter the main unit 2 through the avoidance opening 23 are blocked by the annular retaining rib 31 and continue to flow downward, effectively avoiding the situation where water stains and the like flow downward through the avoidance opening 23 and then flow into the motor housing 41 through the through hole, causing the motor 4 to fail to work normally, thereby further ensuring the stability of the food processor.

[0043] As a preferred embodiment of the present application, Figure 4 、 Figure 5 As shown, the drainage channel includes a collecting chamber 44 provided in the main unit 2 and communicating with the avoidance port 23 , and a diversion channel communicating with the collecting chamber 44 and the outside.

[0044] By setting the drainage channel to include a collecting chamber 44 provided in the main unit 2 and connected to the avoidance port 23, and a diversion channel connecting the collecting chamber 44 with the outside world, the water stains flowing downward through the avoidance port 23 can first be collected by the collecting chamber 44, and the collected water stains are then discharged outward through the diversion channel, so that the water stains can be discharged outward through one diversion channel, eliminating the need to set up multiple diversion channels for drainage, helping to simplify the structure of the entire machine, thereby improving production efficiency and reducing production costs, and at the same time helping to reduce the size of the entire machine, making it easier for users to take and place.

[0045] As a preferred embodiment of the present invention, Figure 4 As shown, the motor 4 includes a motor housing 41 and a motor body 42 arranged in the motor housing 41. The top wall of the motor housing 41 is provided with an annular water receiving groove 43 vertically aligned with the avoidance opening 23, and the collecting chamber 44 is provided on the side wall of the motor housing 41 and connected to the annular water receiving groove 43.

[0046] By providing an annular water receiving groove 43 on the top wall of the motor housing 41 which is vertically aligned with the avoidance opening 23, a collecting chamber 44 is provided on the side wall of the motor housing 41 and is connected to the annular water receiving groove 43, so that water stains dripping downward from any position of the avoidance opening 23 can directly drip onto the annular water receiving groove 43, thereby collecting the water stains, and then discharge them outward through the collecting chamber 44 and the diversion channel, effectively avoiding the situation where water stains, etc. dripping downward through the avoidance opening 23 directly drip onto the motor 4.

[0047] Furthermore, if Figure 4As shown, the collecting chamber 44 is provided below the annular water receiving groove 43 , and a first water leakage hole 441 communicating with the diversion channel is provided on the bottom wall of the collecting chamber 44 .

[0048] By positioning the collection chamber 44 below the annular water receiving trough 43, water collected by the annular water receiving trough 43 flows directly into the collection chamber 44 through the first water leakage hole 441 under the action of gravity, effectively preventing the accumulation of liquid in the annular water receiving trough 43 for a long time, which may cause the liquid to generate odor or even mold. Furthermore, the bottom wall of the collection chamber 44 is provided with a first water leakage hole 441 that communicates with the diversion channel, allowing water entering the collection chamber 44 to drip downward through the first water leakage hole 441 into the diversion channel and be discharged outward from the diversion channel, thus achieving a top-down drainage path for water, thereby ensuring smooth drainage and preventing water accumulation.

[0049] As a preferred embodiment of the present invention, Figure 4 As shown, the motor 4 includes a motor housing 41 and a motor body 42 arranged in the motor housing 41. The motor housing 41 is provided with a guide tube 45 that is connected to the collecting chamber 44 and extends downward. The guide channel is formed in the guide tube 45, and the main unit 2 housing of the main unit 2 is provided with a second water leakage hole 23 vertically aligned with the guide tube 45.

[0050] By disposing the guide tube 45 on the motor housing 41 and forming the guide channel within the guide tube 45, the guide channel is integrated into the motor housing 41, eliminating the need for separate accessories to form the guide channel. This helps simplify the internal structure of the main unit 2, achieves functional integration of the motor housing 41, improves the compactness of the internal structure, and further helps to reduce the size of the entire machine. At the same time, the main unit 2 housing is provided with a second drainage hole 23 vertically aligned with the guide tube 45, so that water stains discharged downward through the guide channel can directly drip downward into the second drainage hole 23 and be discharged outward, further ensuring smooth drainage.

[0051] Furthermore, if Figure 4 As shown, the motor housing 41 includes a motor upper shell 411 and a motor lower shell 412 , the collecting chamber 44 is formed in the motor upper shell 411 , and the guide tube 45 is formed in the motor lower shell 412 .

[0052] By forming the collecting chamber 44 on the motor upper shell 411 and the guide tube 45 on the motor lower shell 412, the functional integration of the motor housing 41 is further achieved, which can further simplify the internal structure of the main unit 2 and improve the compactness of the internal structure.

[0053] As a preferred embodiment of the present application, Figure 6 、 Figure 7As shown, a micro switch 5 is further provided in the host 2. The micro switch 5 includes a switch top rod 51 that can be exposed from the host 2. The switch top rod 51 includes a top rod 511 and a bracket 512 provided below the top rod 511. The bracket 512 is provided with a guide groove 513 connected to the drainage channel.

[0054] By installing a microswitch 5 within the main unit 2, the microswitch 5 is triggered only when the cup body 1 is properly installed, thereby starting the motor 4 and ensuring stable food processing. Furthermore, the bracket 512 is provided with a guide groove 513 connected to the drainage channel, allowing water stains on the switch top rod 51 to be directly discharged outward through the guide groove 513 and the drainage channel, effectively preventing water stains from dripping onto the microswitch 5, causing it to work insensitively or even fail. This protects the microswitch 5 and helps extend its service life.

[0055] Furthermore, if Figure 7 As shown, the guide groove 513 includes a first groove body 5131 extending laterally and a second groove body 5132 communicating with the first groove body 5131 and extending vertically downward.

[0056] The technical solutions protected by this utility model are not limited to the above-described embodiments. It should be noted that the combination of the technical solutions of any one embodiment with the technical solutions of one or more other embodiments falls within the scope of protection of this utility model. Although the above description of this utility model has been provided in detail using general instructions and specific embodiments, it is obvious to those skilled in the art that modifications or improvements can be made based on this utility model. Therefore, such modifications or improvements made without departing from the spirit of this utility model are within the scope of protection claimed by this utility model.

Claims

1. A food processor with good waterproof effect, comprising a main unit and a detachable cup body arranged above the main unit, characterized in that: A motor is provided in the main unit, and an upwardly extending mounting ring is provided on the top of the main unit. The mounting ring and the top wall of the main unit form a mounting groove for mounting the cup body. A connector that is transmission-connected to the motor is provided in the mounting groove, and a avoidance opening for the connector to pass through is provided on the bottom wall of the mounting groove. A flow-blocking structure is provided between the avoidance opening and the connector, and a drainage channel connected to the outside world is provided below the avoidance opening.

2. A food processing machine with good waterproof effect according to claim 1, characterized in that: The flow blocking structure includes a flow blocking surface extending upward from the avoidance opening.

3. A food processor with good waterproof effect according to claim 1, characterized in that: The motor includes a motor housing, which is provided with a through hole for the connector to pass through. The flow blocking structure includes an annular retaining rib extending downward from the outer periphery of the connector, and the bottom end of the annular retaining rib is lower than the through hole.

4. A food processing machine with good waterproof effect according to claim 1, characterized in that: The drainage channel includes a collecting chamber provided in the main unit and communicating with the avoidance port, and a diversion channel communicating with the collecting chamber and the outside.

5. A food processing machine with good waterproof effect according to claim 4, characterized in that: The motor includes a motor housing and a motor body arranged in the motor housing. The top wall of the motor housing is provided with an annular water receiving groove vertically aligned with the avoidance port. The collecting chamber is provided on the side wall of the motor housing and communicates with the annular water receiving groove.

6. A food processing machine with good waterproof effect according to claim 5, characterized in that: The collecting chamber is arranged below the annular water receiving groove, and the bottom wall of the collecting chamber is provided with a first water leakage hole communicated with the diversion channel.

7. A food processing machine with good waterproof effect according to claim 4, characterized in that: The motor includes a motor housing and a motor body arranged in the motor housing. The motor housing is provided with a guide tube connected to the collecting chamber and extending downward. The guide channel is formed in the guide tube, and the main body housing of the main body is provided with a second water leakage hole vertically aligned with the guide tube.

8. A food processing machine with good waterproof effect according to claim 7, characterized in that: The motor housing includes a motor upper shell and a motor lower shell. The collecting cavity is formed on the motor upper shell, and the guide tube is formed on the motor lower shell.

9. The food processing machine with good waterproof effect according to claim 1, characterized in that: A micro switch is also provided in the host, and the micro switch includes a switch top rod that can be exposed from the host, and the switch top rod includes a top rod and a bracket provided below the top rod, and the bracket is provided with a guide groove connected to the drainage channel.

10. A food processor with good waterproof effect according to claim 9, characterized in that: The guide groove includes a first groove body extending laterally and a second groove body connected to the first groove body and extending vertically downward.