Food processor with good operation experience

By incorporating heat dissipation channels and air vents into the food processing machine, the flow direction of water vapor is altered, solving the problem of high-temperature slurry water vapor affecting the control panel. This enhances user convenience and safety, while also improving the overall machine's compact structure and motor heat dissipation efficiency.

CN223516233UActive Publication Date: 2025-11-07HONGYANG HOME APPLIANCES
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Patent Information

Application Number
CN202423017368.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-11-07
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

In existing food processing machines, the high-temperature slurry steam rises to the control panel during the slurry receiving process, causing inconvenience for users to operate the touch screen and potentially affecting the electronic components of the panel, resulting in a poor user experience.

Method used

A heat dissipation channel and an air outlet are set inside the casing, with the air outlet facing the side of the receiving cup to change the direction of water vapor flow and prevent water vapor from rising to the control panel; at the same time, the control panel extends vertically above the receiving cup, and combined with the motor heat dissipation channel and air outlet design, it realizes integrated treatment of motor heat dissipation and water vapor.

Benefits of technology

It effectively prevents fogging on the control panel, protects electronic components, improves the user experience, shortens the slurry cooling time, simplifies the machine structure, and enhances the overall compactness of the machine.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The food processor comprises a machine body provided with a machine shell, a smashing cup arranged in the machine shell and provided with a smashing cavity, a smashing device arranged in the smashing cavity and a motor in transmission connection with the smashing device, the smashing cup is provided with a liquid discharging opening, a soybean milk discharging nozzle is arranged at the liquid discharging opening, and a soybean milk receiving cup is arranged below the soybean milk discharging nozzle; an operation panel is further arranged on the outer side of the machine shell, the operation panel is arranged above the soybean milk receiving cup and vertically extends, a heat dissipation channel which is communicated with the outside and conducts heat dissipation on the motor is arranged in the machine shell, a machine shell air outlet is formed in the tail end of the heat dissipation channel, and the machine shell air outlet is exposed out of the machine shell and faces one side of the soybean milk receiving cup. The motor radiates heat and blows air towards the soybean milk receiving cup, so that water vapor at the soybean milk receiving cup is prevented from rising to the operation panel, fogging caused by water vapor gathering at the operation panel is avoided, meanwhile, condensed water on the operation panel can be prevented from permeating into the panel, electronic elements in the operation panel can be protected, operation is kept accurate and sensitive, and the service life of the operation panel is prolonged. And the user operation experience is improved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of household appliances, and particularly relates to a food processor with good operation experience. BACKGROUND

[0002] The existing food processor generally comprises a machine body, a cup assembly provided in the machine body and internally provided with a stirring piece, and a motor provided below the cup assembly and driving the stirring piece to rotate. When a user uses the food processor to process food materials, the food materials are placed in the stirring cup, and the stirring piece is driven by the motor to rotate at high speed to process the food materials. However, most models do not have a heating function. After the food materials are processed, such as after the preparation of soybean milk is completed, the user needs to additionally heat the food materials before drinking. In order to meet the use requirements of the user, some manufacturers set a heating pipe below the stirring cup. During the processing of the food materials, the heating pipe is used to heat the stirring cup, so as to heat the food materials in the stirring cup. The user can drink the relatively hot liquid. However, the temperature of the heated liquid is relatively high, and the user cannot directly drink the liquid after the liquid is discharged to the outside. The user needs to wait until the liquid is naturally cooled to an appropriate temperature before drinking. The waiting time is relatively long. In particular, the user prepares soybean milk in the morning before going to work, and the soybean milk is relatively hot. However, the user cannot wait for a long time, which leads to a poor user experience. In order to solve the above problem, the applicant mentioned in the previously applied patent CN110876570A that a cooling device is arranged between the shell and the stirring cup. Specifically, the cooling device cools the outer wall of the inner cup above the water level mark. Therefore, the cooling device can take away a large amount of heat of the lower layer of liquid foam, so that the air in the lower layer of liquid foam bubble is not heated to expand. Therefore, the upper layer of liquid foam bubble can press the lower layer of liquid foam bubble under the action of gravity, so that the lower layer of liquid foam bubble is self-defoaming. The above scheme mainly plays a role in defoaming and preventing overflow. The scheme can also play a certain heat dissipation effect on the food materials, so that the user can drink the liquid with an appropriate temperature in time.

[0003] With the iteration of the food processor technology, food processors that are more convenient for users to use are emerging in an endless stream. For example, a self-cleaning type of a broken wall machine or a soybean milk machine is provided with a machine body. A crushing cup with a crushing cavity is arranged in the machine body. A crushing device is arranged in the crushing cavity. A motor is in transmission connection with the crushing device. In order to facilitate the user to control and operate the food processor, an operation panel for the user to operate is generally arranged. The operation panel is mostly in a flat type design and a viewing angle design arranged on the top. With the continuous progress of the market, the product is continuously optimized and reformed. The existing technology proposes a vertical operation panel to further improve the appearance of the food processor and meet the diverse use requirements of the user.

[0004] In addition, the existing food processor usually comprises a machine body and a cup body provided on the machine body and having a crushing cavity, the cup body is provided with a liquid discharge port communicated with the crushing cavity, a pulp discharge nozzle is arranged at the liquid discharge port, and a pulp receiving cup is arranged below the pulp discharge nozzle. After the food material is processed in the crushing cavity, it is discharged outward through the pulp discharge nozzle and into the pulp receiving cup. However, the temperature of the slurry processed in the crushing cavity is relatively high, and the slurry is also maintained at a relatively high temperature when it is discharged outward through the liquid discharge port and into the pulp receiving cup. Therefore, when the liquid is discharged, the water vapor in the slurry discharged from the liquid discharge port and in the slurry in the pulp receiving cup will float upwards, causing the surface of the upright operation panel to fog, affecting the user's operation experience. When the indoor temperature is relatively low, the water vapor will condense into condensate water, which may seep into the operation panel and affect the internal electronic components, causing the operation panel to fail or be unresponsive, and the user's operation experience is poor. Utility model content

[0005] The present application provides a food processor with good operation experience, which solves the problem that the high-temperature slurry water vapor rises to the operation panel during the pulp receiving process of the existing food processor with an upright operation panel, causing inconvenience for user touch operation.

[0006] The technical scheme adopted by the present application is as follows:

[0007] A food processor with good operation experience, comprising a machine body provided with a machine shell, a crushing cup provided in the machine shell and having a crushing cavity, a crushing device arranged in the crushing cavity, and a motor in transmission connection with the crushing device. The crushing cup is provided with a liquid discharge port, the liquid discharge port is provided with a pulp discharge nozzle, and the pulp discharge nozzle is provided below a pulp receiving cup. The machine shell is further provided with an operation panel outside the machine shell, the operation panel is arranged above the pulp receiving cup and extends vertically, and the machine shell is provided with a heat dissipation channel in communication with the outside and for dissipating heat from the motor. The heat dissipation channel is provided with a machine shell air outlet at the end, the machine shell air outlet is exposed to the machine shell and faces the side of the pulp receiving cup.

[0008] In the present application, the food processor is provided with a liquid discharge port and a pulp discharge nozzle, and a pulp receiving cup is also provided. After the slurry is processed, the slurry can be discharged into the pulp receiving cup through the liquid discharge port, without the need for the user to remove the crushing cup to pour out the slurry, thereby reducing the user's use burden. In addition, since the temperature of the processed slurry is relatively high, this method can prevent the user from being scalded when taking out the slurry, which is beneficial to further improve the user's use experience.

[0009] In the scheme, the operation panel is arranged outside the shell and vertically extends above the receiving cup, the shell is provided with a heat dissipation channel, the air blown by the shell flows along the heat dissipation channel to the air outlet of the shell, and then blows towards the receiving cup. Since the processed slurry has a high temperature, water vapor will be generated when the slurry is discharged from the slurry discharge nozzle to the receiving cup, and water vapor will also be generated in the receiving cup. The air outlet of the shell faces the receiving cup, and the water vapor rising from one side of the receiving cup is changed in direction when the air is blown out, so as to avoid the water vapor rising directly from the receiving cup to the operation panel above the receiving cup, thereby avoiding the accumulation of water vapor on the operation panel and the fogging of the operation panel, which affects the user's operation and improves the user's operation experience. At the same time, it can also avoid a large amount of condensed water from seeping into the panel, thereby protecting the electronic components in the operation panel, keeping the operation accurate and sensitive, and helping to prolong the service life and further improve the user's operation experience. The air blown by the air outlet of the shell to one side of the receiving cup is beneficial to the cooling of the liquid in the receiving cup, so as to quickly cool the high-temperature slurry to a suitable drinking temperature, shorten the waiting time of the user, and further improve the user's experience.

[0010] At the same time, the heat dissipation channel provided in the scheme makes the shell inside the motor communicate with the outside after heat dissipation, changes the airflow circulation route of the motor air outlet, and realizes effective motor air cooling while avoiding water vapor floating to the operation panel by blowing air to the receiving cup through the heat dissipation channel and the air outlet of the shell. It realizes function integration, saves the need for another blowing structure to blow air to the water vapor, and helps to simplify the whole machine mechanism and improve the compactness of the whole machine structure.

[0011] In addition, in the scheme, the operation panel is arranged outside the shell above the receiving cup. Compared with the way of arranging the operation panel on the top of the food processor, on the one hand, the area outside the shell is larger, and the vertically extended operation panel can meet the needs of multi-functional and multi-key setting, and can also increase the size of the keys or set larger gaps between the keys, which is convenient for user operation, reduces the risk of accidental touch, and further improves the user's operation experience.

[0012] In a preferred implementation of a food processor with good operation experience, the motor includes a motor body and a motor shell accommodating the motor body, and the heat dissipation channel includes a heat dissipation cavity arranged in the motor shell and an air outlet air duct communicating the heat dissipation cavity with the air outlet of the shell.

[0013] The motor body is installed and protected by the motor shell, the motor body is cooled by the cooling cavity in the motor shell, the cooling airflow of the motor body is guided to the air outlet of the machine shell through the air outlet air duct, the motor air outlet blows out through the air outlet of the machine shell towards the side of the glue receiving cup, thereby changing the water vapor flow direction of the side of the glue receiving cup when the air outlet, avoiding the water vapor on the side of the glue receiving cup rising to the operation panel above the glue receiving cup, thereby protecting the operation panel, avoiding the operation panel from fogging, and avoiding the condensed water from entering the operation panel to damage the internal electronic components, which is beneficial to ensure the accurate operation of the operation panel and improve the user experience.

[0014] In a preferred implementation of the food processor with good operation experience, a communication pipe is further arranged in the machine shell, the communication pipe communicates the cooling cavity and the air outlet of the machine shell, and the air outlet air duct is formed in the communication pipe.

[0015] The communication pipe forms the air outlet air duct in the machine shell, and the form of the communication pipe is beneficial to the flow of the motor air outlet along the pipeline, has a good flow gathering effect on the motor air outlet, guides the motor air outlet to flow along the air outlet air duct to the air outlet of the machine shell through the communication pipe, blows the water vapor rising at the glue receiving cup, and avoids the motor air outlet airflow from being scattered in the machine shell, thereby facilitating the motor air outlet to be completely discharged through the communication pipe, realizing the flow gathering and guiding effect of the communication pipe on the motor air outlet, and thereby facilitating to strengthen the air outlet intensity at the air outlet of the machine shell and having a better blowing effect on the water vapor on the side of the glue receiving cup.

[0016] In a preferred implementation of the food processor with good operation experience, the air outlet is arranged above the motor, the communication pipe comprises a transverse segment communicated with the cooling cavity and extending transversely, a bent segment communicated with the end of the transverse segment and extending upward and then bending transversely, and an air outlet support communicated with the end of the bent segment and forming the air outlet of the machine shell.

[0017] The transverse segment preliminarily guides the motor air outlet airflow in the cooling cavity, so that the motor air outlet airflow converges in the transverse segment, and then flows along the transverse segment to the bent segment communicated with the transverse segment, and flows along the bent segment to the air outlet of the machine shell, thereby realizing the airflow converging and guiding effect of the communication pipe on the motor air outlet. The air outlet support forms the air outlet of the machine shell, and the support of the air outlet support is beneficial to ensuring the structure and position stability of the air outlet of the machine shell, avoiding deformation or displacement of the air outlet of the machine shell when the airflow intensity is large, thereby facilitating to ensure that the motor air outlet blows stably to the side of the glue receiving cup after being guided, changes the flow direction of the water vapor rising at the glue receiving cup, and protects the operation panel above the glue receiving cup.

[0018] In a preferred implementation of the food processor with good operation experience, the motor shell is provided with a motor air inlet communicated with the cooling cavity and a motor air outlet, and the communication pipe is a flexible hose communicating the motor air outlet and the air outlet of the machine shell.

[0019] The motor outflow is gathered in the heat dissipation cavity through the motor air inlet and the motor air outlet, and the outflow airflow in the heat dissipation cavity is communicated with the machine shell air outlet through the communication pipe to guide the outflow of the motor outflow airflow, so that the motor heat dissipation is realized. When the communication pipe is a flexible hose, the sealing communication effect of the communication pipe with the motor air outlet and the machine shell air outlet is better, and the airflow overflow can be avoided. The airflow is guided from the motor air outlet to the machine shell air outlet for exhaust, so that the steam blowing effect of the side of the docking cup realized by the heat dissipation airflow during the motor heat dissipation process is improved, and the communication pipe can be installed and arranged according to the space of the machine shell, so that the installation interference between the communication pipe and other components in the machine shell is avoided.

[0020] In a preferred implementation manner of the food processor with good operation experience, the communication pipe is provided with a reduced diameter section with a gradually reduced inner diameter from the side of the heat dissipation cavity to the side of the machine shell air outlet.

[0021] By providing the necked section, the flow space is reduced when the airflow converges at the necked section, so that the airflow passing through the necked section has greater air pressure and stronger outflow intensity. On the one hand, it is beneficial to realize the rapid flow of the airflow, and on the other hand, it is beneficial to strengthen the blowing intensity of the motor outflow to the steam on the side of the docking cup, so that the steam rising direction at the docking cup is changed more effectively, the condensation influence on the operation panel above the docking cup is avoided, and the accurate and sensitive operation of the operation panel is ensured.

[0022] In a preferred implementation manner of the food processor with good operation experience, a support seat is arranged below the crushing cup, the motor is installed on the support seat, an installation cavity accommodating the docking cup is formed below the support seat, the support seat is provided with a ventilation part, and an outflow air duct is formed in the ventilation part.

[0023] By forming the installation cavity below the support seat and arranging the docking cup in the installation cavity, the overall structural compactness is improved. By directly forming the outflow air duct in the ventilation part of the support seat, additional installation is not required, the installation difficulty is reduced, the overall structural compactness is further improved, and the position deviation of the outflow air duct is avoided, thereby facilitating the stable transmission of the outflow air duct to the motor heat dissipation outflow. When the motor is installed in place, smooth communication is realized between the heat dissipation cavity, the outflow air duct and the machine shell air outlet, the installation difficulty is further reduced, and the stable outflow effect is realized.

[0024] In a preferred implementation manner of the food processor with good operation experience, the outflow air duct includes a first air duct and a second air duct, and the machine shell is further provided with a machine body air outlet. The first air duct is in communication with the machine shell air outlet, and the second air duct is in communication with the machine body air outlet.

[0025] By setting the first air duct and the machine shell air outlet in communication, a part of the motor outflow is discharged through the first air duct and the machine shell air outlet, so that this part of the outflow air flow blows towards the side of the slurry receiving cup, blows the water vapor rising at the slurry receiving cup, changes the rising direction of the water vapor, avoids the water vapor from condensing on the operation panel, and protects the operation panel. By setting the second air duct and the machine body air outlet in communication, the part of the motor heat dissipation outflow is directly discharged through the machine body air outlet at the machine shell. This setting can use the existing motor heat dissipation outflow mode, the outflow path is short, and it is beneficial to realize the rapid heat dissipation of the motor, so as to ensure the stable work of the motor.

[0026] In a preferred implementation of the food processor with good operation experience, the projection of the machine shell air outlet in the vertical plane at least partially falls between the slurry receiving cup and the operation panel.

[0027] By limiting the setting range of the machine shell air outlet, the motor outflow blown out by the machine shell air outlet can directly blow to the slurry receiving cup and the operation panel, so that the water vapor rising in the slurry receiving cup is changed in direction by the airflow before reaching the operation panel, further avoiding the water vapor from rising to the operation panel, realizing the direct and rapid blowing away of the water vapor, and improving the action efficiency of the outflow air duct.

[0028] In addition, since the slurry discharging nozzle is located above the slurry receiving cup, i.e. the slurry discharging nozzle is located between the operation panel and the slurry receiving cup, the projection of the machine shell air outlet in the vertical plane is set to at least partially fall between the slurry receiving cup and the operation panel, so that the motor outflow can blow the water vapor generated during the slurry discharging process of the slurry discharging nozzle and the water vapor generated by the slurry in the slurry receiving cup, change the water vapor dispersion direction, prevent the water vapor from dispersing to the operation panel, thereby avoiding the operation panel from fogging and generating condensed water, and further improving the user operation experience.

[0029] In a preferred implementation of the food processor with good operation experience, the machine shell includes a shell and a base fixed to the bottom of the shell, the base is provided with a support portion extending transversely outward for supporting the slurry receiving cup, the top surface of the support portion and the outer wall of the shell enclose an installation cavity, the slurry discharging nozzle extends from the top wall of the installation cavity, and the machine shell air outlet is arranged on the side wall of the installation cavity.

[0030] The support part and the shell enclose a mounting cavity for placing the slurry receiving cup, improving the compactness of the overall structure. The slurry discharge nozzle extends from the top wall of the mounting cavity and is located above the slurry receiving cup, facilitating the rapid discharge of slurry to the slurry receiving cup. The air outlet of the machine shell is arranged on the side wall of the mounting cavity, which is closer to the slurry receiving cup located in the mounting cavity and the slurry discharge nozzle located on the top wall of the mounting cavity, facilitating the rapid blowing of the air blown by the motor from the air outlet of the machine shell to the slurry discharge nozzle and the slurry receiving cup, realizing the rapid blowing of water vapor and avoiding the rising of water vapor to the operation panel. At the same time, the slurry discharge nozzle, the slurry receiving cup and the air outlet of the machine shell are integrated in the mounting cavity, which is conducive to maintaining a large air pressure of the air blown by the motor from the air outlet of the machine shell to the slurry discharge nozzle and the slurry receiving cup, thereby realizing the powerful blowing of water vapor. BRIEF DESCRIPTION OF DRAWINGS

[0031] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application, and do not constitute improper limitations on the present application. In the drawings:

[0032] Figure 1 It is a structural schematic diagram of a food processor in an embodiment of the present application;

[0033] Figure 2 It is an exploded view of Figure 1

[0034] Figure 3 It is an assembly structure schematic diagram of an air outlet channel in an embodiment of the present application;

[0035] Figure 4 It is an exploded view of Figure 3

[0036] Figure 5 It is a cross-sectional view of the assembly structure of the air outlet channel in an embodiment of the present application;

[0037] Figure 6 It is a structural schematic diagram of a motor shell in an embodiment of the present application;

[0038] Figure 7 It is a structural schematic diagram of the motor shell from another angle in an embodiment of the present application;

[0039] Figure 8 It is a structural schematic diagram of a horizontal section in an embodiment of the present application;

[0040] Figure 9 It is a structural schematic diagram of a bent section in an embodiment of the present application;

[0041] Figure 10 It is a structural schematic diagram of an air outlet support in an embodiment of the present application.

[0042] ​​Reference numerals:

[0043] 1 - housing, 2 - body air outlet, 3 - support seat, 31 - support column, 4 - base, 41 - support part, 42 - mounting cavity, 5 - operation panel, 6 - discharge nozzle, 7 - receiving cup, 8 - motor, 81 - motor body, 9 - motor housing, 91 - motor air inlet, 92 - motor air outlet, 93 - heat dissipation cavity, 10 - air outlet duct, 101 - first air duct, 102 - second air duct, 11 - communication pipe, 111 - horizontal section, 112 - bending section, 12 - air outlet support, 13 - housing air outlet, 14 - necked section. DETAILED DESCRIPTION

[0044] In order to more clearly illustrate the overall concept of the present application, the following will be described in detail with reference to the accompanying drawings.

[0045] In the following description, a lot of specific details are set forth in order to fully understand the present application, but the present application can also be implemented in other ways different from those described herein, therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below. It should be noted that the embodiments of the present application and the features in each embodiment can be combined with each other without conflict.

[0046] In addition, in the description of the present application, it should be understood that the terms "top", "bottom", "inner", "outer", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation to the present application.

[0047] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected, or it can be communicated; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication or interaction relationship between two elements. For those skilled in the art, the specific meaning of the above-mentioned terms in the present application can be understood according to the specific circumstances.

[0048] In this application, unless specifically defined otherwise, a first feature "on" or "under" a second feature can be directly on or under the second feature, or can be indirectly on or under the second feature through an intermediate medium. In the description of the specification, the description of the terms "one embodiment", "some embodiments", "example", "specific example" or "some examples" etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the application. In the description of the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples.

[0049] The application provides a food processor with good operation experience, which comprises a machine body provided with a machine shell 1, a crushing cup provided in the machine shell 1 and having a crushing cavity, a crushing device provided in the crushing cavity and a motor 8 in transmission connection with the crushing device. Figures 1 to 10 As shown, the machine body is provided with the machine shell 1, the crushing cup provided in the machine shell 1 and having the crushing cavity, the crushing device provided in the crushing cavity and the motor 8 in transmission connection with the crushing device. The crushing cup is provided with a liquid discharge port, the liquid discharge port is provided with a pulp discharge nozzle 6, the pulp discharge nozzle 6 is provided below a pulp receiving cup 7, the machine shell 1 is further provided with an operation panel 5, the operation panel 5 is provided above the pulp receiving cup 7 and vertically extends, the machine shell 1 is provided with a heat dissipation channel in communication with the outside and for dissipating heat of the motor 8, the heat dissipation channel is provided with a machine shell air outlet 13 at the end, the machine shell air outlet 13 is exposed to the machine shell 1 and faces the side of the pulp receiving cup 7.

[0050] In the application, the food processor is provided with the liquid discharge port and the pulp discharge nozzle 6, and the pulp receiving cup 7 is also provided. After the pulp liquid is processed, the pulp liquid can be discharged into the pulp receiving cup 7 through the liquid discharge port, so that the user does not need to take down the crushing cup to pour out the pulp liquid, thereby reducing the use burden of the user. In addition, since the temperature of the processed pulp liquid is relatively high, this method can avoid the user from being scalded when taking the pulp liquid, and is beneficial to further improve the use experience of the user.

[0051] In the scheme, the operation panel 5 is arranged outside the casing 1 and vertically extends above the glue receiving cup 7, the casing 1 is provided with a heat dissipation channel, the air blown by the casing 1 flows along the heat dissipation channel to the casing air outlet 13, and then blows towards the glue receiving cup 7. Since the temperature of the processed glue is relatively high, water vapor will be generated when the glue is discharged from the glue discharging nozzle 6 to the glue receiving cup 7 and the glue in the glue receiving cup 7. The casing air outlet 13 faces the glue receiving cup 7, and the water vapor rising from one side of the glue receiving cup 7 is changed in flow direction when the air is blown out, so as to avoid the water vapor rising directly from the glue receiving cup 7 to the operation panel 5 above the glue receiving cup 7, thereby avoiding the accumulation of water vapor on the operation panel 5 and the fogging of the operation panel 5, which affects the user operation and improves the user operation experience. At the same time, the operation panel 5 can be protected from a large amount of condensed water seeping into the panel, thereby protecting the electronic components in the operation panel 5, keeping the operation accurate and sensitive, and prolonging the service life, which further improves the user operation experience. The air blown by the casing air outlet 13 to one side of the glue receiving cup 7 can help to cool the liquid in the glue receiving cup 7, so as to quickly cool the high-temperature glue to a suitable drinking temperature, shorten the waiting time of the user, and further improve the user experience.

[0052] At the same time, the heat dissipation channel arranged in the scheme makes the casing inside communicate with the outside after the heat dissipation of the motor, changes the air flow circulation route of the motor air outlet, and realizes effective air exhaust and heat dissipation of the motor. At the same time, the air blown by the casing air outlet to the glue receiving cup can avoid the water vapor floating to the operation panel, realizes the function integration, saves the separately arranged air blowing structure to blow the water vapor, and helps to simplify the whole machine mechanism and improve the compactness of the whole machine structure.

[0053] In addition, in the scheme, the operation panel 5 is arranged outside the casing 1 above the glue receiving cup 7. Compared with the way of arranging the operation panel 5 on the top of the food processor, on the one hand, the area outside the casing 1 is larger, and the vertically extended operation panel 5 can meet the multi-functional and multi-key setting, and can also increase the size of the keys or set larger gaps between the keys, which is convenient for user operation, reduces the misoperation, and further improves the user operation experience.

[0054] In one embodiment, as shown in Figures 3 to 7 the motor 8 includes a motor body 81 and a motor shell 9 accommodating the motor body 81, and the heat dissipation channel includes a heat dissipation cavity 93 arranged in the motor shell 9 and an air outlet air duct 10 communicating the heat dissipation cavity 93 with the casing air outlet 13.

[0055] The motor body 81 is installed and protected by the motor shell 9, the motor body 81 is cooled by the heat dissipation cavity 93 in the motor shell 9, the heat dissipation airflow of the motor body 81 is guided to the machine shell air outlet 13 through the air outlet air duct 10, the air outlet of the motor 8 blows out through the machine shell air outlet 13 towards the side of the glue receiving cup 7, thereby changing the water vapor flow direction of the side of the glue receiving cup 7 when the air outlet, avoiding the water vapor on the side of the glue receiving cup 7 rising to the operation panel 5 above the glue receiving cup 7, thereby protecting the operation panel 5, avoiding the operation panel 5 from fogging, and avoiding the condensed water from entering the operation panel 5 to damage the internal electronic components, which is beneficial to ensure the accurate operation of the operation panel 5 and improve the user experience.

[0056] In an embodiment, the machine shell 1 is also provided with a communication pipe 11, the communication pipe 11 communicates the heat dissipation cavity 93 and the machine shell air outlet 13, and the air outlet air duct 10 is formed in the communication pipe 11.

[0057] The communication pipe 11 forms the air outlet air duct 10 in the machine shell 1, the form of the communication pipe 11 is beneficial to the airflow of the motor 8 outlet flowing along the pipeline, has a good airflow gathering effect on the air outlet of the motor 8, guides the air outlet of the motor 8 to flow along the air outlet air duct 10 to the machine shell air outlet 13 through the communication pipe 11, blows the water vapor rising at the glue receiving cup 7, and can avoid the air outlet airflow of the motor 8 from being scattered in the machine shell 1, thereby facilitating the air outlet of the motor 8 to be completely discharged through the communication pipe 11, realizing the airflow gathering and guiding effect of the air outlet of the motor 8, and thereby facilitating to strengthen the air outlet intensity at the machine shell air outlet 13 and having a better blowing effect on the water vapor on the side of the glue receiving cup 7.

[0058] Further, as shown in Figures 5 to 10 The air outlet is arranged above the motor 8, the communication pipe 11 includes a transverse segment 111 communicating with the heat dissipation cavity 93 and extending transversely, a bent segment communicating with the end of the transverse segment 111 and extending upward and then extending transversely, and an air outlet support 12 communicating with the end of the bent segment and forming the machine shell air outlet 13.

[0059] The air outlet airflow of the motor 8 in the heat dissipation cavity 93 is preliminarily guided by the transverse segment 111, the air outlet of the motor 8 is gathered in the transverse segment 111, and then flows along the transverse segment 111 to the bent segment communicating with the transverse segment 111, and flows along the bent segment to the machine shell air outlet 13, thereby realizing the airflow gathering and guiding effect of the communication pipe 11 on the air outlet of the motor 8. The air outlet support 12 is arranged to form the machine shell air outlet 13, which is beneficial to guarantee the structure and position stability of the machine shell air outlet 13, avoids deformation or displacement of the machine shell air outlet 13 when the airflow intensity is large, thereby facilitating to guarantee that the air outlet of the motor 8 blows stably to the side of the glue receiving cup 7 after being guided, changes the flow direction of the water vapor rising at the glue receiving cup 7, and protects the operation panel 5 above the glue receiving cup 7.

[0060] Further, the bottom of the communication pipe 11 is provided with a support column 31 to form a limiting support for the communication pipe 11 in the shell 1. Preferably, a bending section is provided with a portion extending transversely, and the bottom of the portion is provided with the support column 31. One end of the support column 31 is connected with the bending section, and the other end is connected with the shell 1. The bending section is lifted and limited compared with the transverse section 111, so as to avoid the position deviation of the air outlet air duct 10 in the air outlet process, thereby facilitating the stable transmission of the air outlet air duct 10 to the motor 8. Moreover, the vertical portion of the bending section can pre-slow down a large amount of airflow in the heat dissipation cavity 93, so as to avoid the excessive airflow at the shell air outlet 13, thereby preventing the splashing of the slurry in the slurry cup 7 when the airflow blows to the slurry cup 7.

[0061] Preferably, the support column 31 and the shell 1 are connected in the form of insertion, which is simple in structure and convenient for processing and setting.

[0062] In an embodiment, as shown in Figure 1 , Figure 2 the motor housing 9 is provided with a motor air inlet 91 and a motor air outlet 92 which are in communication with the heat dissipation cavity 93, and the communication pipe 11 is a flexible hose which communicates the motor air outlet 92 with the shell air outlet 13.

[0063] The motor 8 is arranged in the heat dissipation cavity 93 through the motor air inlet 91 and the motor air outlet 92, so as to concentrate the air outlet of the motor 8 in the heat dissipation cavity 93 for concentrated heat dissipation. The communication pipe 11 is arranged to communicate and guide the air flow in the heat dissipation cavity 93 with the shell air outlet 13, so as to discharge the air flow of the motor 8, thereby achieving the heat dissipation of the motor 8. When the communication pipe 11 is a flexible hose, the sealing communication effect of the communication pipe 11 with the motor air outlet 92 and the shell air outlet 13 is better, so as to avoid the overflow of the air flow, and the air flow is guided from the motor air outlet 92 to the shell air outlet 13 for discharge, thereby facilitating the use of the heat dissipation airflow to achieve the water vapor blowing effect on one side of the slurry cup 7 in the heat dissipation process of the motor 8, and facilitating the installation and arrangement of the communication pipe 11 according to the space of the shell 1, so as to avoid the installation interference with other components in the shell 1.

[0064] In addition, only part of the communication pipe 11 is a flexible hose, for example, only the transverse section 111 is a flexible hose, which is in communication with the motor air outlet 92, so as to facilitate the circumferential sealing effect of the transverse section 111 when the transverse section 111 is connected with the heat dissipation cavity 93, and the flexible hose is convenient for installation and arrangement according to the space of the motor housing 9, so as to effectively avoid the installation interference with other components.

[0065] In a preferred embodiment, as shown in Figures 5 to 8 the communication pipe 11 is provided with a reduced diameter section which gradually reduces in diameter from the side of the heat dissipation cavity 93 to the side of the shell air outlet 13.

[0066] Figure 5The direction of the arrow indicates the direction of the gas flow. By setting the necked section 14, the flow space decreases when the gas flow converges at the necked section 14, so that the gas flow through the necked section 14 has greater gas pressure, and the air outlet force is stronger. On the one hand, it is beneficial to realize the rapid flow of the gas flow, and on the other hand, it is beneficial to strengthen the blowing intensity of the motor 8 air outlet to the side of the steam cup 7, so as to more effectively change the steam rising direction at the steam cup 7, avoid the condensation influence on the operation panel 5 above the steam cup 7, and ensure the accurate and sensitive operation of the operation panel 5.

[0067] Further, the necked section 14 is arranged at the transverse section 111, that is, the transverse section 111 partially forms the necked section 14. After the transverse section 111 is connected with the motor air outlet 92, the necked section 14 is formed along the direction extending to the bent section 112. Since the heat dissipation cavity 93 has a certain volume, the gas flow in the heat dissipation cavity 93 has a larger flow space and a smaller gas pressure. Therefore, after the gas flow passes through the motor air outlet 92 and flows to the transverse section 111, the gas flow continues to flow after passing through the necked section 14. At this time, the pressure of the gas flow increases, which is beneficial to strengthen the flow speed and blowing intensity of the gas flow, so as to realize a better air outlet blowing effect. In addition, since the machine shell 1 usually also has a support frame for fixing the crushing cup, by arranging the necked section 14 at the transverse section 111, the alignment installation fixing point of the support frame and the machine shell 1 can be avoided, so as to avoid assembly interference, and the overall structure compactness is also beneficial.

[0068] In an embodiment, as shown in Figure 1 , Figure 2 , a support seat 3 is arranged below the crushing cup, the motor 8 is installed on the support seat 3, the support seat 3 is formed with a mounting cavity 42 accommodating the steam cup 7 below, and the support seat 3 is provided with a ventilation part, and the ventilation part is formed with an air outlet air duct 10.

[0069] By forming the mounting cavity 42 below the support seat 3 and arranging the steam cup 7 in the mounting cavity 42, the overall structure compactness can be improved. By arranging the air outlet air duct 10 in the ventilation part of the support seat 3, additional installation is not required, the installation difficulty is reduced, the overall structure compactness is further improved, and the position deviation of the air outlet air duct 10 can be avoided, so as to realize stable transmission of the air outlet air duct 10 to the heat dissipation of the motor 8. When the motor 8 is installed in place, smooth communication between the heat dissipation cavity 93, the air outlet air duct 10 and the machine shell air outlet 13 can be realized, the installation difficulty is further reduced, and stable air outlet effect can be realized.

[0070] In an embodiment, as shown in Figure 1 , the air outlet air duct 10 includes a first air duct 101 and a second air duct 102, the machine shell 1 is also provided with a machine body air outlet 2, the first air duct 101 is in communication with the machine shell air outlet 13, and the second air duct 102 is in communication with the machine body air outlet 2.

[0071] By setting the first air duct 101 and the machine shell air outlet 13 in communication, a portion of the motor 8 air is discharged through the first air duct 101 and the machine shell air outlet 13, so that the air flow is blown towards the side of the slurry receiving cup 7, and the water vapor rising at the slurry receiving cup 7 is blown, the rising direction of the water vapor is changed, the water vapor is prevented from condensing on the operation panel 5, and the operation panel 5 is protected. By setting the second air duct 102 and the machine body air outlet 2 in communication, the motor 8 heat dissipation air is directly discharged through the machine body air outlet 2 at the machine shell 1. This setting can use the existing motor 8 heat dissipation air method, the air outlet path is short, and the rapid heat dissipation of the motor 8 is beneficial to ensure the stable operation of the motor 8.

[0072] In a preferred implementation of a food processor with good operation experience, the projection of the machine shell air outlet 13 in the vertical plane at least partially falls between the slurry receiving cup 7 and the operation panel 5.

[0073] By limiting the setting range of the machine shell air outlet 13, the motor 8 air blown out by the machine shell air outlet 13 can be directly blown to between the slurry receiving cup 7 and the operation panel 5, so that the water vapor rising in the slurry receiving cup 7 is changed in direction by the airflow before reaching the operation panel 5, further preventing the water vapor from rising to the operation panel 5, directly and quickly blowing away the water vapor, and improving the efficiency of the air outlet duct 10.

[0074] In addition, since the slurry discharge nozzle 6 is located above the slurry receiving cup 7, i.e. the slurry discharge nozzle 6 is located between the operation panel 5 and the slurry receiving cup 7, the projection of the machine shell air outlet 13 in the vertical plane is set to at least partially fall between the slurry receiving cup 7 and the operation panel 5, so that the motor 8 air can blow the water vapor generated during the slurry discharge process of the slurry discharge nozzle 6 and the water vapor generated by the slurry in the slurry receiving cup 7, change the water vapor dispersion direction, prevent the water vapor from escaping to the operation panel 5, thereby avoiding the operation panel 5 from fogging and producing condensed water, and further improving the user operation experience.

[0075] In a preferred implementation of a food processor with good operation experience, the machine shell 1 includes a shell and a base 4 fixed to the bottom of the shell, the base 4 is provided with a support portion 41 extending transversely outward for supporting the slurry receiving cup 7, the top surface of the support portion 41 and the outer wall of the shell form an installation cavity 42, the slurry discharge nozzle 6 extends from the top wall of the installation cavity 42, and the machine shell air outlet 13 is arranged on the side wall of the installation cavity 42.

[0076] The base 4 is extended to form a support part 41, and the support part 41 and the shell form a mounting cavity 42 for placing the slurry receiving cup 7, so as to improve the compactness of the overall structure. The slurry discharge nozzle 6 extends from the top wall of the mounting cavity 42 and is located above the slurry receiving cup 7, so as to facilitate the rapid discharge of slurry to the slurry receiving cup 7. The machine shell air outlet 13 is arranged on the side wall of the mounting cavity 42, which is closer to the slurry receiving cup 7 located in the mounting cavity 42 and the slurry discharge nozzle 6 located on the top wall of the mounting cavity 42, so as to facilitate the air blown by the motor 8 to be quickly blown from the machine shell air outlet 13 to the slurry discharge nozzle 6 and the slurry receiving cup 7, so as to realize the rapid dispersion of water vapor and avoid the water vapor rising to the operation panel 5. At the same time, the slurry discharge nozzle 6, the slurry receiving cup 7 and the machine shell air outlet 13 are integrated at the mounting cavity 42, which is conducive to maintaining a large air pressure of the air blown by the motor 8 when the air is blown from the machine shell air outlet 13 to the slurry discharge nozzle 6 and the slurry receiving cup 7, so as to realize the strong dispersion of water vapor.

[0077] The places not described in the present application can be realized by using or referring to the existing technology.

[0078] Each of the embodiments in the specification is described in a progressive manner, and the same or similar parts between the embodiments can be referred to each other. Each embodiment mainly describes the differences from other embodiments.

[0079] The above only describes the embodiments of the present application and is not used to limit the present application. The present application can have various modifications and changes for those skilled in the art. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the scope of claims of the present application.

Claims

1. A food processor with good operation experience, comprising a machine body provided with a machine shell, a crushing cup provided in the machine shell and having a crushing cavity, a crushing device arranged in the crushing cavity, and a motor in driving connection with the crushing device, the crushing cup is provided with a liquid discharge port, a pulp discharge nozzle is arranged at the liquid discharge port, and a pulp receiving cup is arranged below the pulp discharge nozzle, characterized in that, The machine shell is further provided with an operation panel, which is arranged above the glue receiving cup and vertically extends, and a heat dissipation passage is arranged in the machine shell and communicates with the outside and dissipates heat for the motor, and the heat dissipation passage is provided with a machine shell air outlet, which is exposed to the outside of the machine shell and faces the glue receiving cup.

2. A food processor of the type defined in claim 1, wherein The motor comprises a motor body and a motor shell accommodating the motor body, and the heat dissipation passage comprises a heat dissipation cavity arranged in the motor shell and an air outlet air duct communicating the heat dissipation cavity and the machine shell air outlet.

3. A food processor of the type defined in claim 2, wherein, The machine shell is further provided with a communication pipe, which communicates the heat dissipation cavity and the machine shell air outlet, and the air outlet air duct is formed in the communication pipe.

4. A food processor of the type defined in claim 3, wherein, The air outlet is arranged above the motor, and the communication pipe comprises a transverse section communicating the heat dissipation cavity and transversely extending, a bent section communicating the end of the transverse section and upwardly extending and then transversely extending after being bent, and an air outlet support communicating the end of the bent section and forming the machine shell air outlet.

5. A food processor of the type defined in claim 3, wherein, The motor shell is provided with a motor air inlet communicating the heat dissipation cavity and a motor air outlet, and the communication pipe is a flexible hose communicating the motor air outlet and the machine shell air outlet.

6. A food processor of the type defined in claim 3, wherein, The communication pipe is provided with a diameter reducing section, which gradually reduces in diameter from the side of the heat dissipation cavity to the side of the machine shell air outlet.

7. The food processor of claim 2, wherein the processor is configured to: A supporting seat is arranged below the crushing cup, the motor is mounted on the supporting seat, the supporting seat is formed with a mounting cavity accommodating the glue receiving cup below, and the supporting seat is provided with a ventilation part, and the ventilation part is formed with the air outlet air duct.

8. The food processor of claim 2, wherein, The air outlet air duct comprises a first air duct and a second air duct, the machine shell is further provided with a machine body air outlet, the first air duct communicates the machine shell air outlet, and the second air duct communicates the machine body air outlet.

9. The food processor of claim 1, wherein, The projection of the machine shell air outlet in the vertical plane at least partially falls between the glue receiving cup and the operation panel.

10. The food processor of claim 1, wherein, The machine shell comprises a shell and a base fixed to the bottom of the shell, the base is provided with a support part extending laterally and outwardly for supporting the glue receiving cup, the top surface of the support part and the outer wall of the shell enclose to form a mounting cavity, the glue discharging nozzle extends from the top wall of the mounting cavity, and the machine shell air outlet is arranged on the side wall of the mounting cavity.

Citation Information

Patent Citations

  • Food processor

    CN110876570A