Food processor with good operation experience

By setting up drain outlets and slurry nozzles in the food processing machine and using a steam barrier structure to change the direction of steam flow, the problem of high-temperature slurry water vapor adhering to the control panel is solved, improving the user experience and the reliability of the panel.

CN223773607UActive Publication Date: 2026-01-09HONGYANG HOME APPLIANCES
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520042291.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2026-01-09
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

In existing food processing machines, high-temperature slurry water vapor rises and adheres to the control panel during the slurry receiving process, causing user operation errors or accidental triggering, and may also lead to control panel failure or insensitivity.

Method used

The food processing machine is equipped with a drain outlet and a slurry outlet, and a vertically extending control panel is installed on the outside of the machine casing. The steam blocking structure changes the flow direction of the steam, preventing water vapor from rising to the control panel, protecting the control panel from fogging and reducing the seepage of condensate.

Benefits of technology

It effectively prevents fogging and condensation from seeping into the control panel, improving the user experience and extending the panel's lifespan, while reducing the risk of accidental triggering.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223773607U_ABST
    Figure CN223773607U_ABST
Patent Text Reader

Abstract

The utility model discloses a food processor with good operation experience, which relates to the field of life electric appliances and comprises a machine body with a casing, a crushing cup, a crushing device and a motor in transmission connection with the crushing device, the crushing cup is provided with a liquid outlet, a soybean milk discharge nozzle is arranged at the liquid outlet, a liquid receiving cup is arranged below the soybean milk discharge nozzle, and an operation panel is further arranged on the outer side of the casing. The operation panel is arranged above the liquid receiving cup and vertically extends, the liquid receiving cup is provided with a liquid receiving opening communicated with the soybean milk discharging nozzle, a steam blocking structure for isolating the operation panel from the liquid receiving opening is arranged between the operation panel and the liquid receiving opening, and the steam is blocked by the steam blocking structure in the rising process, so that the flowing direction of the steam is changed; the steam is prevented from directly rising to the operation panel above the soybean milk receiving cup from the soybean milk receiving cup, so that the steam is prevented from being gathered at the operation panel, the operation panel is prevented from fogging to influence user operation, the user operation experience is improved, and meanwhile, a large amount of condensate water on the operation panel can be prevented from permeating into the panel.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of life electric appliances, and particularly relates to a food processor with good operation experience. BACKGROUND

[0002] The existing food processor usually comprises a machine body, a cup assembly provided in the machine body and internally provided with a stirring element, and a motor provided below the cup assembly and driving the stirring element 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 element rotates at high speed under the driving of the motor to realize the processing of the food materials. However, most models do not have a heating function. After the processing of food materials is completed, such as the processing of soybean milk, the user needs to additionally heat the soybean milk before drinking it. In order to meet the use requirements of the user, some manufacturers set a heating pipe below the stirring cup. During the processing of 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 soybean milk. However, the temperature of the heated soybean milk is relatively high, and the user cannot directly drink the soybean milk after it is discharged to the outside. The user needs to wait until the soybean milk is naturally cooled to an appropriate temperature before drinking it. The waiting time is relatively long. In particular, the user prepares soybean milk in the morning before going to work, but 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 foam, so that the air in the lower layer of foam bubble is not heated to expand. Therefore, the upper layer of foam bubble can squeeze the lower layer of foam bubble under the action of gravity, so as to realize the self-defoaming of the lower layer of foam bubble, achieve the self-dissipation of the foam, and prevent overflow. 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 soybean milk at 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 blender or 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 designed in a flat type arranged on the top or a design with a viewing angle. With the continuous progress of the market, the product is continuously optimized and reformed. The existing technology provides an upright 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, the liquid discharge port is provided with a pulp discharge nozzle, and a pulp receiving cup is arranged below the pulp discharge nozzle. After the food material is processed in the crushing cavity, the food material 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 mist, 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, affecting the internal electronic components, causing the operation panel to fail or be unresponsive, and resulting in poor user operation experience. 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 and adheres to the operation panel during the pulp receiving process of the existing food processor with an upright operation panel, causing the user to easily make operation errors or trigger false touch.

[0006] To achieve the above-mentioned purpose, the utility model provides a food processor with good operation experience, which comprises 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, the pulp discharge nozzle is provided below a liquid receiving cup, the machine shell is further provided with an operation panel, the operation panel is arranged above the liquid receiving cup and vertically extends, the liquid receiving cup is provided with a liquid receiving port communicated with the pulp discharge nozzle, and a steam blocking structure is arranged between the operation panel and the liquid receiving port to isolate them.

[0007] The present application sets the liquid discharge port and the pulp discharge nozzle, and sets the liquid receiving cup at the same time. After the slurry is processed, the slurry can be discharged into the liquid receiving cup through the liquid discharge port, without the user needing to remove the crushing cup to pour the slurry, thereby reducing the user's use burden. In addition, since the temperature of the processed slurry is relatively high, this method can avoid the user from being scalded when taking the slurry, which is conducive to further improving the user's use experience.

[0008] Meanwhile, the operation panel is arranged outside the machine housing and vertically extends above the liquid receiving cup, the liquid receiving cup is provided with a liquid receiving opening communicated with the slurry discharge nozzle, and a steam blocking structure is arranged between the operation panel and the liquid receiving opening to separate the two. Since the processed slurry and wastewater have high temperatures, water vapor will be generated when the slurry and wastewater are discharged from the slurry discharge nozzle to the liquid receiving cup, and the slurry or wastewater in the liquid receiving cup will also generate water vapor which rises upward through the liquid receiving opening. The water vapor is blocked by the steam blocking structure during the rising process, so that the flow direction of the water vapor is changed, avoiding the water vapor rising directly from the slurry receiving cup to the operation panel above the slurry receiving cup, thereby avoiding the accumulation of water vapor on the operation panel and the fogging of the operation panel which affects the user operation, improving the user operation experience, and avoiding a large amount of condensed water from penetrating into the panel, thereby protecting the electronic components in the operation panel, keeping the operation accurate and sensitive, and prolonging the service life, further improving the user operation experience.

[0009] In addition, the operation panel is arranged outside the machine housing above the slurry receiving cup. Compared with the arrangement of the operation panel on the top of the food processor, the area outside the machine housing is larger, and the vertically extending operation panel can meet the requirements of multi-functional and multi-key setting, and can also increase the size of the keys or set a larger gap between the keys, facilitating user operation, reducing accidental touch, and further improving the user operation experience.

[0010] In a preferred implementation of the food processor with good operation experience, the steam blocking structure is a flexible baffle arranged below the operation panel.

[0011] By arranging the steam blocking structure as a flexible baffle below the operation panel, the steam can be blocked by the flexible baffle during the rising process to avoid its continuous upward flow, change its flow path, and avoid floating and condensing on the operation panel. When the user places the liquid receiving cup, even if the liquid receiving cup collides with the flexible baffle due to the flexible collision, the liquid receiving cup will not be damaged, achieving the protection of the liquid receiving cup and improving the user experience.

[0012] In a preferred implementation of the food processor with good operation experience, the bottom end of the flexible baffle is flexibly abutted to the side of the liquid receiving opening away from the slurry discharge nozzle.

[0013] By setting the flexible baffle to be flexibly abutted at the bottom end to the side of the liquid receiving opening away from the steam discharge nozzle, the flexible baffle is directly abutted to the top wall of the liquid receiving cup. On the one hand, the horizontal outward path at the liquid receiving opening is blocked, so that the steam cannot pass between the flexible baffle and the top wall of the liquid receiving cup, further achieving the blocking of the steam, avoiding the situation that the steam can flow outward through the gap between the flexible baffle and the top wall of the liquid receiving cup and rise to the operation panel. On the other hand, the abutment of the flexible baffle to the liquid receiving cup can improve the stability of the position of the liquid receiving cup, ensure the reliability of the liquid receiving cup during food processing, and avoid the situation that the liquid receiving cup vibrates and generates noise.

[0014] In a preferred implementation of the food processor with good operation experience, the outer side wall of the housing is recessed to form a mounting cavity, the steam discharge nozzle protrudes from the top wall of the mounting cavity, and the liquid receiving cup is at least partially located in the mounting cavity. The flexible baffle extends downward from the top wall of the mounting cavity.

[0015] By recessing the outer side wall of the housing to form a mounting cavity, the steam discharge nozzle protrudes from the top wall of the mounting cavity, and the liquid receiving cup is at least partially located in the mounting cavity. The placement and installation of the liquid receiving cup can further ensure the stability of the position of the liquid receiving cup. At the same time, the steam discharge nozzle and the liquid discharge opening are both located in the mounting cavity, and the steam can also be blocked by the cavity wall of the mounting cavity during upward flow, so that a large amount of steam changes its flow path, thereby further avoiding the steam rising directly upward to the operation panel. Furthermore, the flexible baffle extends downward from the top wall of the mounting cavity to block the steam rising to the top wall of the mounting cavity and change the flow path of the steam to flow to both sides, so that the steam can avoid the operation panel even if it flows outside the mounting cavity during upward flow, thereby protecting the operation panel.

[0016] In a preferred implementation of the food processor with good operation experience, the projection of the liquid receiving opening in the vertical direction completely falls into the mounting cavity.

[0017] By making the projection of the liquid receiving opening in the vertical direction completely fall into the mounting cavity, the liquid receiving opening and the steam discharge nozzle can be completely accommodated in the mounting cavity. When the steam rises, the mounting cavity can completely block the steam, and in combination with the flexible baffle, the blocking effect of the steam can be further improved, further avoiding the situation that the steam flows directly upward to the operation panel.

[0018] In a preferred implementation of the food processor with good operation experience, the steam blocking structure further includes a flexible side plate provided on the side wall of the mounting cavity and extending inwardly, and the flexible side plate is abutted to the side wall of the liquid receiving cup.

[0019] By setting the steam blocking structure to further include flexible side plates arranged on the side wall of the mounting cavity and extending inward, the flexible side plates abut against the side wall of the liquid receiving cup, so that the cup body can not only achieve the blocking of steam above the liquid receiving cup through the flexible baffle, but also achieve the blocking of steam on the side of the liquid receiving cup through the flexible side plates, so that the steam can further move away from the location of the operation panel, and a large amount of steam can be left in the mounting cavity and condensed in the mounting cavity, effectively avoiding the outflow of steam.

[0020] In a preferred implementation of the food processor with good operation experience, the steam blocking structure is detachably connected to the cabinet.

[0021] By setting the steam blocking structure to be detachably connected to the cabinet, the user can detach the steam blocking structure according to the use condition of the steam blocking structure, and effectively clean the steam blocking structure after being detached, so that the user experience is improved, and the user can detach and replace the steam blocking structure when the steam blocking structure is seriously aged after long-term use, thereby ensuring the stability of the steam blocking structure.

[0022] In a preferred implementation of the food processor with good operation experience, the cabinet is provided with a mounting hole, and the steam blocking structure is provided with a buckle inserted into the mounting hole.

[0023] By setting the cabinet to be provided with a mounting hole, and the steam blocking structure to be provided with a buckle inserted into the mounting hole, the steam blocking structure can be installed and fixed by the simple buckle and mounting hole clamping cooperation, so that the installation structure is simple, the installation process is convenient and fast, and the production cost is reduced and the assembly efficiency is improved.

[0024] In a preferred implementation of the food processor with good operation experience, the liquid receiving cup includes a cup body and a cup cover covering the cup body, and the steam blocking structure is a flexible partition plate arranged on the top wall of the cup cover and located on the side of the liquid receiving port away from the steam discharge nozzle, and the flexible partition plate abuts against the cabinet below the operation panel.

[0025] In a preferred implementation of the food processor with good operation experience, the cabinet is provided with a mounting cavity formed by concave on the outer side wall, the steam discharge nozzle extends from the top wall of the mounting cavity, and the liquid receiving cup is at least partially located in the mounting cavity, and the flexible partition plate abuts against the top wall of the mounting cavity. BRIEF DESCRIPTION OF DRAWINGS

[0026] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application. The schematic embodiments of the present application and the description thereof are used to explain the present application, and do not constitute an improper limitation on the present application. In the drawings:

[0027] Figure 1 Figure 1 is a structural schematic diagram of a food processor according to an embodiment of the present application;

[0028] Figure 2 Figure 2 is a schematic diagram of a mounting cavity and a steam blocking structure according to an embodiment of the present application;

[0029] Figure 3 Figure 3 is a schematic diagram of the mounting cavity and the steam blocking structure according to an embodiment of the present application from another angle;

[0030] Figure 4 Figure 4 is a schematic diagram of the steam blocking structure according to an embodiment of the present application.

[0031] Component and figure mark list:

[0032] 1 - body, 11 - machine shell, 111 - mounting cavity, 112 - mounting hole; 2 - operation panel; 3 - liquid receiving cup, 31 - cup cover, 32 - cup body; 4 - steam blocking structure, 41 - buckle. DETAILED DESCRIPTION

[0033] In order to more clearly illustrate the overall concept of the present application, the following will be described in detail in an exemplary manner in combination with the accompanying drawings.

[0034] It should be noted that in the following description, many specific details are set forth in order to provide a thorough understanding of the present application, however, the present application can also be implemented in other manners different from those described herein, therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.

[0035] As shown in Figures 1 to 4 The present application provides a food processor with good operation experience, which comprises a body 1 provided with a machine shell 11, a crushing cup provided in the machine shell 11 and having a crushing cavity, a crushing device provided 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, the pulp discharge nozzle is provided below with a liquid receiving cup 3, the machine shell 11 is further provided on the outside with an operation panel 2, the operation panel 2 is provided above the liquid receiving cup 3 and extends vertically, the liquid receiving cup 3 is provided with a liquid receiving port in communication with the pulp discharge nozzle, and the operation panel 2 and the liquid receiving port are provided with a steam blocking structure 4 for isolating the two. It should be noted that the structure of the liquid receiving cup 3 is not specifically limited in the present application, which can be only a pulp receiving cup for receiving pulp liquid, or a pulp receiving cup and a waste water box for receiving waste water, which will not be described here.

[0036] The application sets the liquid outlet and the slurry outlet, and sets the liquid receiving cup 3. After the slurry is processed, the slurry can be discharged into the liquid receiving cup 3 through the liquid outlet, without the user taking down the crushing cup to pour the slurry, thereby reducing the user's use burden. In addition, since the processed slurry has a high temperature, this method can avoid burns when the user takes the slurry, and is beneficial to further improve the user experience.

[0037] Meanwhile, the operation panel 2 is arranged outside the shell 11, and vertically extends above the liquid receiving cup 3. The liquid receiving cup 3 is provided with a liquid receiving opening communicated with the slurry outlet. The operation panel 2 and the liquid receiving opening are provided with a steam blocking structure 4 for isolating them. Since the processed slurry and wastewater have a high temperature, the slurry and wastewater will generate upward rising steam when being discharged from the slurry outlet to the liquid receiving cup 3. Meanwhile, the slurry or wastewater in the liquid receiving cup 3 will also generate upward rising steam and rise upward through the liquid receiving opening. The steam rising is blocked by the steam blocking structure 4, so that the steam changes its flow direction, avoiding the steam rising directly from the slurry receiving cup to the operation panel 2 above the slurry receiving cup, thereby avoiding the operation panel 2 gathering steam, avoiding the operation panel 2 fogging and affecting the user operation, improving the user operation experience, and avoiding a large amount of condensed water in the operation panel 2 from seeping into the panel, thereby being beneficial to protecting the electronic elements in the operation panel 2, keeping the operation accurate and sensitive, helping to prolong the service life, and further improving the user operation experience.

[0038] In addition, the operation panel 2 is arranged outside the shell 11 above the slurry receiving cup. Compared with the method of arranging the operation panel 2 on the top of the food processor, on the one hand, the area outside the shell 11 is large, and the vertically extending operation panel 2 can meet the multi-functional and multi-key setting, and can also increase the size of the keys or set a large gap between the keys, thereby being beneficial to the user operation, reducing the misoperation, and further improving the user operation experience.

[0039] It should be noted that the steam blocking structure 4 is not limited in the application, and can be any one of the following embodiments:

[0040] Embodiment 1: as shown in Figure 1 , Figure 2 , Figure 4 In this embodiment, the steam blocking structure 4 is a flexible baffle arranged below the operation panel 2.

[0041] By setting the steam blocking structure 4 as a flexible baffle arranged below the operation panel 2, the steam can be prevented from flowing upward continuously by the blocking of the flexible baffle during the upward rising process, the flow path of the steam is changed, and the situation that the steam floats and condenses on the operation panel 2 is avoided. Moreover, when the user places the liquid receiving cup 3, even if the liquid receiving cup 3 collides with the flexible baffle due to the flexible collision, no damage is caused to the liquid receiving cup 3, the protection of the liquid receiving cup 3 is realized, and the user experience is improved.

[0042] Further, the bottom end of the flexible baffle is flexibly abutted against the side of the liquid receiving opening away from the steam discharge nozzle.

[0043] By setting the flexible baffle as a flexible baffle with the bottom end flexibly abutted against the side of the liquid receiving opening away from the steam discharge nozzle, the flexible baffle is directly abutted against the top wall of the liquid receiving cup 3. On the one hand, the horizontal outward path at the liquid receiving opening is blocked, so that the steam cannot pass between the flexible baffle and the top wall of the liquid receiving cup 3, further realizing the blocking of the steam, and avoiding the situation that the steam can flow outward through the gap between the flexible baffle and the top wall of the liquid receiving cup 3 and rise to the operation panel 2. On the other hand, the abutment of the flexible baffle to the liquid receiving cup 3 can improve the stability of the position of the liquid receiving cup 3, ensure the reliability of the liquid receiving cup 3 during the food material processing process, and avoid the situation that the liquid receiving cup 3 vibrates and generates noise.

[0044] As a preferred embodiment of the present application, as shown in Figure 2 The outer side wall of the machine shell 11 is concave to form a mounting cavity 111, the steam discharge nozzle protrudes from the top wall of the mounting cavity 111, and the liquid receiving cup 3 is at least partially located in the mounting cavity 111, and the flexible baffle extends downward from the top wall of the mounting cavity 111.

[0045] By concavely forming the mounting cavity 111 in the outer side wall of the machine shell 11, and protruding the steam discharge nozzle from the top wall of the mounting cavity 111, and at least partially locating the liquid receiving cup 3 in the mounting cavity 111, the placement and installation of the liquid receiving cup 3 are realized, the stability of the position of the liquid receiving cup 3 can be further ensured, and at the same time, the steam discharge nozzle and the liquid discharge opening are located in the mounting cavity 111, the steam can be blocked by the cavity wall of the mounting cavity 111 during the upward flowing process, a large amount of steam changes its flow path, so that the steam can be further prevented from directly rising upward to the operation panel 2. Moreover, the flexible baffle extends downward from the top wall of the mounting cavity 111, the steam rising to the top wall of the mounting cavity 111 is blocked, the steam changes its flow path to flow to both sides, and the steam can avoid the operation panel 2 even if it flows to the outside of the mounting cavity 111 during the upward flowing process, and the protection of the operation panel 2 is realized.

[0046] It should be noted that the present application does not specifically limit the relative relationship between the liquid receiving opening and the mounting cavity 111 in this embodiment. As a preferred embodiment of the present application, the projection of the liquid receiving opening in the vertical direction completely falls into the mounting cavity 111.

[0047] By projecting the liquid inlet completely into the installation cavity 111 in the vertical direction, the liquid inlet and the steam discharge nozzle can be completely accommodated in the installation cavity 111, and the installation cavity 111 can completely block the steam when the steam rises upward. In combination with the flexible baffle, the blocking effect of the steam can be further improved, and the steam can be further prevented from flowing directly upward to the operation panel 2.

[0048] As a preferred embodiment, the steam blocking structure 4 further comprises a flexible side plate arranged on the side wall of the installation cavity 111 and extending inward, and the flexible side plate abuts against the side wall of the liquid receiving cup 3.

[0049] By arranging the steam blocking structure 4 to further comprise a flexible side plate arranged on the side wall of the installation cavity 111 and extending inward, and the flexible side plate abuts against the side wall of the liquid receiving cup 3, the cup body 32 can not only block the steam above the liquid receiving cup 3 through the flexible baffle, but also block the steam on the side of the liquid receiving cup 3 through the flexible side plate. Thus, the steam can be further away from the position of the operation panel 2, and a large amount of steam can be kept in the installation cavity 111 and condensed therein, thereby effectively preventing the steam from overflowing.

[0050] Embodiment 2: In this embodiment, the liquid receiving cup 3 comprises a cup body 32 and a cup cover 31 covering the cup body 32, and the steam blocking structure 4 is a flexible partition plate arranged on the top wall of the cup cover 31 and located on the side of the liquid inlet away from the steam discharge nozzle, and the flexible partition plate abuts against the chassis 11 below the operation panel 2.

[0051] Further, the outer side wall of the chassis 11 is concave to form an installation cavity 111, the steam discharge nozzle extends from the top wall of the installation cavity 111, and the liquid receiving cup 3 is at least partially located in the installation cavity 111, and the flexible partition plate abuts against the top wall of the installation cavity 111.

[0052] It should be noted that the relative relationship between the steam blocking structure 4 and the chassis 11 is not limited in the present application. As a preferred embodiment, as shown in Figure 3 、 Figure 4 , the steam blocking structure 4 is detachably connected to the chassis 11.

[0053] By arranging the steam blocking structure 4 to be detachably connected to the chassis 11, the user can detach the steam blocking structure 4 according to the use condition, and can effectively clean it after being detached. Thus, the user experience can be improved, and the situation that the steam blocking structure 4 produces odor or even mildew due to a large amount of dirt after being used for a long time can be avoided. In addition, the steam blocking structure 4 can be replaced when it is seriously aged after being used for a long time, thereby ensuring the stability of the steam blocking structure 4.

[0054] Further need to be explained, the steam blocking structure 4 and the shell 11 detachable structure of the application is not specifically limited, as the application of a preferred, as shown in Figure 3 、 Figure 4 The shell 11 is provided with mounting hole 112, and the steam blocking structure 4 is provided with buckle 41 inserted into the mounting hole 112.

[0055] By the shell 11 is provided with mounting hole 112, and the steam blocking structure 4 is provided with buckle 41 inserted into the mounting hole 112, so that the steam blocking structure 4 through the simple buckle 41 and mounting hole 112 card joint cooperation mode can be installed and fixed, the installation structure is simple and the installation process is convenient and fast, help to reduce the production cost and improve the assembly efficiency.

[0056] The technical scheme of the utility model is not limited to the above embodiment, it should be pointed out that the technical scheme of any one embodiment and the technical scheme of one or more other embodiments are combined in the protection scope of the utility model. Although the utility model has been described in detail by general description and specific embodiments in the foregoing, some modifications or improvements can be made on the basis of the utility model, which is obvious to those skilled in the art. Therefore, these modifications or improvements made on the basis of not deviating from the spirit of the utility model, all belong to the scope of the utility model claimed.

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 liquid receiving cup is arranged below the pulp discharge nozzle, characterized in that, The outer side of the machine cabinet is further provided with an operation panel, which is vertically extended above the liquid receiving cup.

2. A food processor of the type defined in claim 1, wherein The steam blocking structure is a flexible baffle provided below the operation panel.

3. A food processor of the type defined in claim 2, wherein, The bottom end of the flexible baffle is flexibly abutted against one side of the liquid receiving opening away from the slurry discharging nozzle.

4. A food processor of the type defined in claim 2, wherein, The outer side wall of the machine cabinet is recessed to form a mounting cavity, the slurry discharging nozzle extends from the top wall of the mounting cavity, and the liquid receiving cup is at least partially located in the mounting cavity, and the flexible baffle extends downward from the top wall of the mounting cavity.

5. A food processor of the type defined in claim 4, wherein, The projection of the liquid receiving opening in the vertical direction completely falls into the mounting cavity.

6. A food processor of the type defined in claim 4, wherein, The steam blocking structure further comprises a flexible side plate provided on the side wall of the mounting cavity and extending inward, and the flexible side plate is abutted against the side wall of the liquid receiving cup.

7. The food processor of claim 1, wherein, The steam blocking structure is detachably connected to the machine cabinet.

8. A food processor of the type defined in claim 7, wherein, The machine cabinet is provided with a mounting hole, and the steam blocking structure is provided with a buckle inserted into the mounting hole.

9. The food processor of claim 1, wherein, The liquid receiving cup comprises a cup body and a cup cover covering above the cup body, the steam blocking structure is a flexible partition plate provided on the top wall of the cup cover and located on one side of the liquid receiving opening away from the slurry discharging nozzle, and the flexible partition plate is abutted against the machine cabinet below the operation panel.

10. A food processor of the type defined in claim 9, wherein, The outer side wall of the machine cabinet is recessed to form a mounting cavity, the slurry discharging nozzle extends from the top wall of the mounting cavity, and the liquid receiving cup is at least partially located in the mounting cavity, and the flexible partition plate is abutted against the top wall of the mounting cavity.

Citation Information

Patent Citations

  • Food processor

    CN110876570A