Food processor
By designing an invertible first food container and a second food container with different volumes, and combining the installation groove structure of the second cup lid, the problem of the container occupying space when the food processor is idle is solved, and convenient storage and operation are achieved.
Patent Information
- Application Number
- CN202421554376.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-02
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-02
AI Technical Summary
When the existing food processor is not in use, the food container is idle, occupying space and inconvenient for storage.
A food processing machine including a host, a first food container, a second food container and a second cup lid is designed. The volume of the second food container is not equal to the first food container, the second cup lid includes a second mounting groove, the first food container may be inverted to the second cup lid, and a portion of the first food container is located in the second mounting groove.
The stacking and storage of containers in the idle state of the food processor is realized, reducing space occupied, and simplifying the splicing and separation of containers, reducing the difficulty of users' operation.
Smart Images

Figure CN222853724U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processors, in particular to a food processor. Background Art
[0002] At present, in the related art, a food processor is provided with a food container and a main machine. In order to prevent a single food container from processing different foods and affecting the flavor of the food, multiple food containers can be provided. When the user does not use the food processor, the food processor is in an idle state, which in turn causes the multiple food containers to be in an idle state. The multiple food containers will take up more space, which is inconvenient for the user to store the food processor. Utility Model Content
[0003] The utility model aims to solve at least one of the technical problems existing in the prior art or related technology.
[0004] To this end, a first aspect of the present invention provides a food processor.
[0005] In view of this, the first aspect of the utility model provides a food processor, including a main unit, a first food container, a second food container and a second cup cover, the first food container can be assembled with the main unit, the second food container can be assembled with the main unit, the volume of the second food container is not equal to the volume of the first food container, the second cup cover is arranged on the second food container, the second cup cover includes a second mounting groove, the first food container can be inverted on the second cup cover, and at least part of the first food container is located in the second mounting groove.
[0006] A food processor provided by the present application includes a host, a first food container, a second food container and a second cup cover. The user can complete the operation of the food processor by controlling the host, and the host can also facilitate the processing of the food in the first food container or the second food container, thereby improving the processing efficiency of the food processor. Since the first food container can be assembled with the host and the second food container can be assembled with the host, the user can choose to assemble the first food container with the host or the second food container with the host according to actual needs. At the same time, by setting the volume of the second food container to be unequal to the volume of the first food container, it is convenient for the user to select a food container of corresponding volume according to the amount of food to be processed, thereby enabling the user to select a suitable container according to his own needs, realize the classification and processing of food materials, facilitate user selection, and improve the practicality of the food processor. The second cup cover is arranged on the second food container, and the second cup cover includes a second mounting groove, the first food container can be inverted on the second cup cover, and at least part of the first food container is located in the second mounting groove. Furthermore, when the food processor is in an idle state, the user can buckle the first food container into the second mounting groove of the second cup cover and cover the second cup cover on the second food container to complete the stacking and storage of the first food container and the second food container, thereby improving the practicality of the food processor and reducing the occupied space. At the same time, since the first food container is inverted on the second cup cover and at least part of the first food container is located in the second mounting groove, the first food container and the second food container can be easily connected and separated, further reducing the user's operating difficulty and avoiding jamming caused by directly stacking the first food container and the second food container. This can reduce the risk of assembly jamming caused by the fit between the first food container and the second food container and facilitate storage.
[0007] In addition, the food processor in the above technical solution provided by the present invention may also have the following additional technical features:
[0008] In some technical solutions of the present invention, optionally, the first food container is buckled in the second mounting groove, and the cup mouth of the first food container abuts against the bottom wall of the second mounting groove.
[0009] In this technical solution, the first food container is buckled in the second mounting groove and can be used to accommodate food. When the first food container is in the storage state, the first food container is buckled in the second mounting groove, and the cup mouth of the first food container abuts against the bottom wall of the second mounting groove, thereby realizing the connection between the first food container and the second cover body, and also completing the storage of the first food container, thereby reducing the space occupied by the first food container when it is idle, and facilitating user use.
[0010] In some technical solutions of the utility model, optionally, the food processor also includes a first cup cover, which is arranged on the first food container. When the first cup cover is located in the second mounting groove, the side of the first cup cover away from the first food container abuts against the bottom wall of the second mounting groove.
[0011] In the technical solution, the food processor also includes a first cup cover, which can be convenient for protecting the food in the first food container, and can also be convenient for storing the first food container when the first food container is idle. When the first food container is in an idle state, the first cup cover is arranged on the first food container, and when the first cup cover is located in the second mounting groove, the side of the first cup cover away from the first food container abuts against the bottom wall of the second mounting groove, which can improve the connection strength between the first cup cover and the second cup cover, and improve the stability of the connection, and then through the cooperation of the first cup cover and the second mounting groove, the connection and fixation of the first food container and the second food container are realized, and the stacking and storage of the first food container and the second food container are completed, which improves the practicality of the food processor and reduces the occupied space. At the same time, because the first food container is buckled on the second cup cover, the splicing and separation of the first food container and the second food container can be facilitated, further reducing the difficulty of operation for users, and avoiding the first food container and the second food container directly stacked together to cause jamming, so that the risk of assembly jamming caused by the fit between the first food container and the second food container can be reduced, and it is convenient for storage.
[0012] In some technical solutions of the present invention, optionally, the side wall of the first cup cover abuts against the side wall of the second installation groove; or there is a gap between the side wall of the first cup cover and the side wall of the second installation groove.
[0013] In this technical solution, the side wall of the first cup cover abuts against the side wall of the second mounting groove, which can further improve the connection stability between the first cup cover and the second cup cover, and a gap can also be set between the side wall of the first cup cover and the side wall of the second mounting groove, which can avoid excessive contact between the first cup cover and the second cup cover and make it difficult to separate, reduce the risk of the first cup cover being stuck with the second cup cover after being installed in the second mounting groove, make it convenient for users to remove the first cup cover, and avoid jamming caused by directly stacking the first food container and the second food container, so as to reduce the risk of assembly jamming caused by the fit between the first food container and the second food container, and facilitate storage.
[0014] In some technical solutions of the utility model, optionally, the second cup cover is provided with a third mounting groove, the third mounting groove is provided on the bottom wall of the second mounting groove and is recessed toward the interior of the second food container; the first cup cover is provided with a first mounting groove, the diameter of the first mounting groove is the same as the diameter of the third mounting groove; the main unit can be assembled with the first mounting groove or the second mounting groove.
[0015] In this technical solution, the second cup cover is provided with a third mounting groove, which is provided on the bottom wall of the second mounting groove and is recessed into the interior of the second food container; the first cup cover is provided with a first mounting groove, and the diameter of the first mounting groove is the same as the diameter of the third mounting groove; the host can be assembled with the first mounting groove or the second mounting groove, thereby improving the compatibility of the host with the first food container and the second food container. By providing the first mounting groove and the third mounting groove with the same diameter, the compatibility of the first food container and the second food container can also be improved. When the food processor is idle, the combination of the first food container and the second food container can be conveniently installed for easy storage.
[0016] In some technical schemes of the utility model, optionally, the first cup cover includes a cover body and a convex rib, the cover body is arranged on the first food container, the convex rib is arranged on the side of the cover body away from the bottom wall of the first food container, and the convex rib and the cover body surround a first mounting groove; when the first cup cover is located in the second mounting groove, the convex rib abuts against the side of the second mounting groove close to the third mounting groove.
[0017] In this technical solution, the first cup cover includes a cover body and a convex rib. The cover body is arranged on the first food container. When the first food container contains food, the cover body can protect the food in the first food container. When the first food container is in an idle state, the cover body can also facilitate the connection between the first food container and the second cup cover for storage. The convex rib is arranged on the side of the cover body away from the bottom wall of the first food container. The convex rib and the cover body surround a first mounting groove to facilitate the assembly of the host and the first food container. When the first cup cover is located in the second mounting groove, the convex rib abuts against the side of the second mounting groove close to the third mounting groove. When the first food container and the second food container are stored, the connection stability of the first food container and the second cup cover can be improved by setting the convex rib, the structural strength can be improved, and the shaking of the first food container and the second food container after assembly can be avoided, so as to facilitate storage.
[0018] In some technical solutions of the present invention, optionally, the distance between the bottom wall of the third mounting groove and the first mounting groove is a third distance; the third distance is greater than or equal to the sum of the depth of the second mounting groove and the depth of the third mounting groove.
[0019] In this technical solution, the distance between the bottom wall of the third mounting groove and the first mounting groove is the third distance; the third distance is greater than or equal to the sum of the depth of the second mounting groove and the depth of the third mounting groove. When the first food container and the second food container are stacked and stored, the first cup cover installed on the first food container is installed in the second mounting groove, and then by setting the distance between the bottom wall of the third mounting groove and the first mounting groove to be greater than or equal to the sum of the depth of the second mounting groove and the depth of the third mounting groove, the first cup cover and the second cup cover can be ensured to be connected stably while avoiding the first cup cover and the second cup cover from getting stuck, so that the user can separate and assemble the first food container and the second food container from each other, thereby reducing the risk of assembly jamming caused by the fit between the first food container and the second food container, and facilitating storage.
[0020] In some technical solutions of the present invention, optionally, a ratio of a depth of the third mounting groove to a depth of the second mounting groove is greater than or equal to 2.
[0021] In this technical solution, since the second mounting groove is recessed toward the inside of the second food container, the first cup cover can be located in the second mounting groove, and the cooperation between the second mounting groove and the first cup cover can realize that the first food container can be installed in combination with the second food container when idle, thereby making the connection between the first food container and the second food container stable when the food processor is idle, improving the structural strength, and reducing the shaking of the food container when it is stored. The third mounting groove is arranged on the bottom wall of the second mounting groove, recessed toward the inside of the second food container, and when the second food container is used to process the food, the main machine can be located in the third mounting groove, and the third mounting groove can provide space for the assembly of the main machine and the second food container. By limiting the range of the ratio of the depth of the third mounting groove to the depth of the second mounting groove, the shaking of the main machine after assembly can be further reduced. At the same time, since the ratio of the third mounting groove to the second mounting groove is greater than or equal to 2, it can be ensured that the assembly depth of the main machine in the third mounting groove is greater than twice the depth of the second mounting groove, reducing the center of gravity of the overall food processor after assembly, improving the working stability, and also improving the stability of the device when it is placed on the desktop, and it can also facilitate the assembly of the main machine and the second food container, and improve the structural strength after assembly.
[0022] In some technical solutions of the present utility model, optionally, the diameter of the second mounting groove is greater than the diameter of the first cup cover.
[0023] In this technical solution, the diameter of the second mounting groove is larger than the diameter of the first cup cover. When the food processor is in an idle state, the user can combine and store the first food container and the second food container through the combined structure of the first cup cover and the second mounting groove. By setting the diameter of the second mounting groove larger than the diameter of the first cup cover, the operating difficulty can be reduced, and it is convenient to install the first cup cover into the second mounting groove, and it is also convenient to separate the first cup cover from the second mounting groove, avoiding excessive tight contact between the first cup cover and the inner wall of the second mounting groove, and reducing friction resistance, so that the user can assemble or separate the first food container and the second food container.
[0024] In some technical solutions of the present utility model, optionally, the diameter of the third mounting groove is greater than or equal to 16 mm and less than or equal to 70 mm.
[0025] In this technical solution, since the user can assemble the main unit on the second food container when the food processor is working, by setting the diameter of the third mounting groove to be greater than or equal to 16 mm and less than or equal to 70 mm, the combination and separation of the main unit and the second food container can be facilitated, thereby facilitating operation.
[0026] In some technical solutions of the present utility model, optionally, the diameter of the first mounting groove is greater than or equal to 16 mm and less than or equal to 70 mm.
[0027] In this technical solution, since the user can assemble the main unit on the first food container when the food processor is working, by setting the diameter of the first mounting groove to be greater than or equal to 16 mm and less than or equal to 70 mm, and then by limiting the diameter of the first mounting groove, the adaptability of the main unit to the first mounting groove can be improved while reducing costs and facilitating the stacking and storage of multiple first food containers after use.
[0028] In some technical schemes of the utility model, optionally, the food processor includes a support ring, the first food container includes a mounting portion, a cup shaft and a handle, the cup shaft is connected to the bottom wall of the first food container, the support ring is arranged on the side of the outer wall of the first food container close to the opening of the first food container, the mounting portion is connected to the first food container and extends to the side of the support ring away from the first food container to fix the support ring, and the handle is connected to the support ring and extends in a direction away from the first food container; the number of first food containers is at least two, and when at least two first food containers are stacked, the at least two first food containers include adjacent first containers and second containers, the support ring of the first container abuts against the opening of the second container, and there is a gap between the bottom wall of the second container and the bottom wall of the first container; the distance between the side of the support ring away from the mounting portion and the side of the mounting portion close to the opening of the first food container is a first distance, and the distance between the bottom walls of two adjacent first food containers in the at least two first food containers is a second distance, and the first distance is greater than the second distance.
[0029] In this technical solution, the food processor includes a support ring, the first food container includes a mounting portion, a cup shaft and a handle, the cup shaft is arranged in the first food container and connected to the bottom wall of the first food container, the support ring is arranged along the circumferential side of the first food container, the mounting portion is connected to the first food container and extends to a side of the support ring away from the first food container to fix the support ring; the distance between the side of the support ring away from the mounting portion and the side of the mounting portion close to the opening of the first food container is a first distance, the distance between the bottom walls of two adjacent first food containers in at least two first food containers is a second distance, and the first distance is greater than the second distance; the number of first food containers is at least two, and when at least two first food containers are stacked, the at least two first food containers include adjacent first containers and second containers, at least part of the first container is arranged in the second container, the support ring of the first container abuts against the mounting portion of the second container, and there is a gap between the cup shaft of the second container and the bottom wall of the first container. At least two first food containers can be stacked, that is, when the food processor is in an idle state, the user can stack and store at least two first food containers, which can save kitchen space. By stacking at least two first food containers, the containers can be compactly placed in the vertical direction without occupying too much space in the horizontal direction, which can optimize the kitchen space and further improve the practicality of the food processor. The first food container includes a mounting portion, a cup shaft and a support ring, which can improve the assembly efficiency of the first food container and thus improve the installation efficiency. The cup shaft is arranged in the first food container and connected to the bottom wall of the first food container. The support ring is arranged along the circumferential side of the first food container. The mounting portion is connected to the first food container and extends to a side of the support ring away from the first food container to fix the support ring. The design of the support ring and the mounting portion enhances the stability of multiple first food containers when stacked. The support ring abuts against the mounting portion of another container, which helps prevent the container from sliding or tipping over during operation. The distance between the side of the support ring away from the mounting portion and the side of the mounting portion close to the opening of the first food container is a first distance, and the distance between the bottom walls of two adjacent first food containers in the at least two first food containers is a second distance, and the first distance is greater than the second distance; in the case where at least two first food containers are stacked, the at least two first food containers include adjacent first containers and second containers, at least part of the first container is arranged in the second container, and the support ring of the first container abuts against the mounting portion of the second container. When the first container and the second container are stacked, due to the gap between the cup axis of the second container and the bottom wall of the first container, the cup axis of the second container and the bottom wall of the first container do not contact each other, thereby reducing the friction between the first container and the second container after stacking, avoiding jamming of the first container and the second container when taking out, and also avoiding the bottom wall of the container from squeezing the cup axis of the lower container, which is also convenient for users to separate the stacked at least two first food containers when using, facilitating user access and reducing the difficulty of operation.When multiple first food containers are stacked for storage, a support ring can be provided to provide support between any two adjacent first food containers, so that the bottoms of any two adjacent first food containers do not touch each other, reducing the risk of jamming between the two adjacent first food containers, thereby facilitating the storage of multiple first food containers.
[0030] In some technical solutions of the present invention, optionally, a distance between bottom walls of two adjacent first food containers of at least two first food containers is a second distance, and the second distance is greater than 0 and less than or equal to 20 mm.
[0031] In this technical solution, and / or the distance between the bottom walls of two adjacent first food containers among at least two first food containers is the second distance, and at least two first food containers are stacked together, wherein the distance between the bottom walls of two adjacent first food containers among at least two first food containers, i.e., the second distance, is greater than 0 and less than or equal to 20 mm, and further, by limiting the range of the second distance, it is possible to further ensure that there is a gap between the bottom of the first food containers and the cup axis and they do not contact each other, thereby avoiding assembly jams caused by excessive fit between the two first food containers, reducing the difficulty of operation, and facilitating users to access the first food containers.
[0032] In some technical solutions of the present invention, optionally, the distance between the side of the cup axis of the first container close to the second container and the side of the cup axis of the second container close to the first container is greater than 0 and less than or equal to 18 mm.
[0033] In this technical solution, the distance between the side of the cup axis of the first container close to the second container and the side of the cup axis of the second container close to the first container is greater than 0 and less than or equal to 18 mm. When the first container and the second container are stacked and stored, by limiting the range of the distance between the side of the cup axis of the first container close to the second container and the side of the cup axis of the second container close to the first container, the distance between the bottom of the cup axis of the first container after storage and the top of the cup axis of the second container can be set between 0 and 18 mm, so that a gap is left between the bottom wall of the first container and the cup axis of the second container, avoiding the cup axis of the first container and the second container from getting stuck after assembly, and also preventing damage to the cup axis, avoiding the stacked first container and the second container from getting stuck when being used, so that the user can separate the at least two stacked first food containers when using, which is convenient for the user to access and reduce the difficulty of operation.
[0034] After the first container and the second container are stacked, by setting the distance between the side of the cup axis of the first container close to the second container and the side of the cup axis of the second container close to the first container to be less than or equal to 18 mm, the height after stacking can be reduced while ensuring a gap between the bottom of the first container and the cup axis of the second container, thereby improving the stability of the first container and the second container after stacking, reducing shaking, and making it easier for users to store the first container and the second container after use.
[0035] In some technical solutions of the present invention, optionally, the distance between a side of the cup axis of the first container away from the second container and a side of the cup axis of the second container close to the first container is greater than or equal to 2 mm and less than or equal to 60 mm.
[0036] In this technical solution, the distance between the side of the cup axis of the first container away from the second container and the side of the cup axis of the second container close to the first container is greater than or equal to 2 mm and less than or equal to 60 mm. When the first container and the second container are stacked for storage, the distance between the side of the cup axis of the first container away from the second container and the side of the cup axis of the second container close to the first container does not affect the placement of the cup axis. When the first container and the second container are stacked for storage, a space for the cup axis can be reserved, and the length of the cup axis can be guaranteed. Thus, the first container and the second container are easy to store and access after storage, and the length of the cup axis of the first container and the second container is guaranteed, thereby ensuring the transmission efficiency after the first container and the second container are assembled with the body, and improving the working efficiency of the food processor.
[0037] In some technical solutions of the present utility model, optionally, the distance between the side wall of the first container and the side wall of the second container is greater than or equal to 0 and less than or equal to 10 mm.
[0038] In this technical solution, when the first container and the second container are stacked and stored, the friction between the side walls of the first container and the second container can be reduced by setting a gap between the side walls of the first container and the second container. When the first container and the second container are stored and accessed, the relative friction between the first container and the second container can be reduced, which can facilitate the relative movement of the first container and the second container, thereby facilitating storage and access. At the same time, by controlling the distance between the side walls of the first container and the second container to be greater than or equal to 0 and less than or equal to 10 mm, the range of the gap can be limited to 0 to 10 mm, thereby avoiding the first container and the second container after being stacked and stored from getting stuck when being taken out, and reducing the volume of the first container and the second container after being stacked and stored for easy storage. At the same time, it is convenient for users to separate the stacked first container and the second container when using, which is convenient for users to store and access, and reduces the difficulty of operation.
[0039] In some technical solutions of the utility model, optionally, the first food container also includes a handle, which is connected to the support ring and extends in a direction away from the first food container; the distance between the handles of two adjacent first food containers among at least two first food containers is greater than or equal to 8 mm and less than or equal to 60 mm.
[0040] In the technical solution, the first food container also includes a handle, which is connected to the support ring and extends in a direction away from the first food container; the distance between the handles of two adjacent first food containers in at least two first food containers is greater than or equal to 8 mm and less than or equal to 60 mm. When the user uses the food processor, the first food container can be removed by operating the handle and assembled with the main machine, which reduces the difficulty of operation and facilitates manual operation by the user. Since the handle is connected to the support ring, the stability of the handle can be improved, and the stability during operation can also be improved. When the at least two first food containers are stacked and stored, a distance is set between the handles of two adjacent first food containers in at least two first food containers, which can avoid the two adjacent first food containers in at least two first food containers from getting stuck when being used, and facilitate the separation of the two first food containers. At the same time, by setting the distance between the handles of two adjacent first food containers in at least two first food containers to be greater than or equal to 10 mm, the risk of the two adjacent first food containers getting stuck when being used can be further reduced, which facilitates the user to access the first food containers in the storage state and reduces the difficulty of operation.
[0041] Additional aspects and advantages of the present invention will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0043] Figure 1 One of the structural schematic diagrams of a food processor according to an embodiment of the utility model is shown;
[0044] Figure 2 One of the structural schematic diagrams of a first food container according to an embodiment of the utility model is shown;
[0045] Figure 3 A second structural schematic diagram of a food processor according to an embodiment of the utility model is shown;
[0046] Figure 4 A third structural schematic diagram of a food processor according to an embodiment of the utility model is shown;
[0047] Figure 5A fourth structural schematic diagram of a food processor according to an embodiment of the utility model is shown;
[0048] Figure 6 A fifth structural schematic diagram of a food processor according to an embodiment of the utility model is shown;
[0049] Figure 7 A sixth structural schematic diagram of a food processor according to an embodiment of the utility model is shown;
[0050] Figure 8 FIG7 shows a seventh structural schematic diagram of a food processor according to an embodiment of the utility model.
[0051] in, Figures 1 to 8 The corresponding relationship between the reference numerals and component names in the figure is:
[0052] 100 food processor, 110 host, 120 first food container, 121 cup mouth, 122 cup body, 123 mounting portion, 124 cup shaft, 126 support ring, 127 bottom wall of the first food container, 128 handle, 129 notch, 130 first container, 132 second container, 134 first cup shaft, 135 second cup shaft, 140 first wall surface, 142 third wall surface, 144 second wall surface, 150 second food container, 160 second cup cover, 162 second mounting groove, 164 third mounting groove, 170 first cup cover, 172 first mounting groove, 174 cover body, 176 rib, 180 blade, 182 opening of the first food container, 190 boss. DETAILED DESCRIPTION
[0053] In order to more clearly understand the above-mentioned purpose, features and advantages of the utility model, the utility model is further described in detail below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0054] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the protection scope of the present invention is not limited to the specific embodiments disclosed below.
[0055] Refer to the following Figures 1 to 8 A food processor 100 according to some embodiments of the present invention is described.
[0056] In the embodiment of the present utility model, Figure 1 , Figure 2 and Figure 4As shown, a food processor 100 is provided, including a main unit 110, a first food container 120, a second food container 150 and a second cup cover 160. The first food container 120 can be assembled with the main unit 110, the second food container 150 can be assembled with the main unit 110, the volume of the second food container 150 is not equal to the volume of the first food container 120, the second cup cover 160 is covered on the second food container 150, the second cup cover 160 includes a second mounting groove 162, the first food container 120 can be inverted on the second cup cover 160, and at least part of the first food container 120 is located in the second mounting groove 162.
[0057] The food processor 100 provided in the present application includes a host 110, a first food container 120, a second food container 150, and a second cup cover 160. The user can complete the operation of the food processor 100 by controlling the host 110, and the host 110 can also facilitate the processing of the food in the first food container 120 or the second food container 150, thereby improving the processing efficiency of the food processor 100. Since the first food container 120 can be assembled with the host 110, and the second food container 150 can be assembled with the host 110, the user can choose to assemble the first food container 120 with the host 110 or the second food container 150 with the host 110 according to actual needs. At the same time, by setting the volume of the second food container 150 to be unequal to the volume of the first food container 120, it is convenient for the user to select a food container of corresponding volume according to the amount of food to be processed, thereby enabling the user to select a suitable container according to his own needs, realizing the classification and processing of food materials, facilitating the user's selection, and improving the practicality of the food processor 100. The second cup cover 160 is covered on the second food container 150 . The second cup cover 160 includes a second mounting groove 162 . The first food container 120 can be inverted on the second cup cover 160 , and at least a portion of the first food container 120 is located in the second mounting groove 162 . Furthermore, when the food processor 100 is in an idle state, the user can buckle the first food container 120 into the second mounting groove 162 of the second cup cover 160, and cover the second cup cover 160 on the second food container 150, so as to complete the stacking and storage of the first food container 120 and the second food container 150, thereby improving the practicality of the food processor 100 and reducing the occupied space. At the same time, since the first food container 120 is inverted on the second cup cover 160 and at least a portion of the first food container 120 is located in the second mounting groove 162, the first food container 120 and the second food container 150 can be easily connected and separated, further reducing the user's operating difficulty, and avoiding jamming caused by directly stacking the first food container 120 and the second food container 150, thereby reducing the risk of assembly jamming caused by the fit between the first food container 120 and the second food container 150, and facilitating storage.
[0058] Specifically, the axial direction of the host 110 is the direction indicated by the arrow F1.
[0059] Specifically, the radial direction of the host 110 is the direction F2.
[0060] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0061] The first food container 120 is buckled in the second installation groove 162 , and the cup mouth 121 of the first food container 120 abuts against the bottom wall of the second installation groove 162 .
[0062] In this embodiment, the first food container 120 can be used to contain food ingredients. When the first food container 120 is in the storage state, the first food container 120 is buckled in the second mounting groove 162, and the cup mouth 121 of the first food container 120 abuts against the bottom wall of the second mounting groove 162, thereby realizing the connection between the first food container 120 and the second cover body 174, and also completing the storage of the first food container 120, thereby reducing the space occupied by the first food container 120 when it is idle, which is convenient for users to use.
[0063] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0064] The food processor 100 further includes a first cup cover 170 , which is disposed on the first food container 120 . When the first cup cover 170 is located in the second mounting groove 162 , a side of the first cup cover 170 away from the first food container 120 abuts against a bottom wall of the second mounting groove 162 .
[0065] In this embodiment, the food processor 100 further includes a first cup cover 170. The first cup cover 170 can be used to protect the food in the first food container 120, and can also be used to store the first food container 120 when the first food container 120 is idle. When the first food container 120 is in an idle state, the first cup cover 170 is disposed on the first food container 120. When the first cup cover 170 is located in the second mounting groove 162, the side of the first cup cover 170 away from the first food container 120 abuts against the bottom wall of the second mounting groove 162, which can improve the connection strength between the first cup cover 170 and the second cup cover 160, and improve the stability of the connection. Then, through the cooperation between the first cup cover 170 and the second mounting groove 162, the first food container 120 and the second food container 150 are connected and fixed, completing the first food container 120. The stacking and storage of the first food container 120 and the second food container 150 improves the practicality of the food processor 100 while reducing the occupied space. At the same time, since the first food container 120 is buckled on the second cup cover 160, the first food container 120 and the second food container 150 can be easily connected and separated, further reducing the user's operating difficulty, and avoiding the first food container 120 and the second food container 150 being stuck when stacked directly together. This can reduce the risk of assembly jamming caused by the fit between the first food container 120 and the second food container 150, making storage easier.
[0066] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0067] The side wall of the first cup cover 170 abuts against the side wall of the second installation groove 162 ; or there is a gap between the side wall of the first cup cover 170 and the side wall of the second installation groove 162 .
[0068] In this embodiment, the side wall of the first cup cover 170 abuts against the side wall of the second mounting groove 162, which can further improve the connection stability between the first cup cover 170 and the second cup cover 160, and a gap can also be set between the side wall of the first cup cover 170 and the side wall of the second mounting groove 162, which can avoid excessive contact between the first cup cover 170 and the second cup cover 160 and make it difficult to separate, reduce the risk of the first cup cover 170 being stuck with the second cup cover 160 after being installed in the second mounting groove 162, and facilitate the user to remove the first cup cover 170, and avoid directly stacking the first food container 120 and the second food container 150 together to avoid jamming, which can reduce the risk of assembly jamming caused by the fit between the first food container 120 and the second food container 150, and facilitate storage.
[0069] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0070] The second cup cover 160 is provided with a third mounting groove 164, which is arranged on the bottom wall of the second mounting groove 162 and is recessed toward the interior of the second food container 150; the first cup cover 170 is provided with a first mounting groove 172, and the diameter of the first mounting groove 172 is the same as the diameter of the third mounting groove 164; the main unit 110 can be assembled with the first mounting groove 172 or the second mounting groove 162.
[0071] In this embodiment, the second cup cover 160 is provided with a third mounting groove 164, which is provided on the bottom wall of the second mounting groove 162 and is recessed into the interior of the second food container 150; the first cup cover 170 is provided with a first mounting groove 172, and the diameter of the first mounting groove 172 is the same as the diameter of the third mounting groove 164; the host 110 can be assembled with the first mounting groove 172 or the second mounting groove 162, thereby improving the compatibility of the host 110 with the first food container 120 and the second food container 150. By providing the first mounting groove 172 and the third mounting groove 164 with the same diameter, the compatibility of the first food container 120 and the second food container 150 can also be improved. When the food processor 100 is idle, the combination of the first food container 120 and the second food container 150 can be conveniently installed for easy storage.
[0072] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0073] The first cup cover 170 includes a cover body 174 and a convex rib 176. The cover body 174 is covered on the first food container 120. The convex rib 176 is arranged on a side of the cover body 174 away from the bottom wall 127 of the first food container. The convex rib 176 and the cover body 174 surround a first mounting groove 172. When the first cup cover 170 is located in the second mounting groove 162, the convex rib 176 abuts against a side of the second mounting groove 162 close to the third mounting groove 164.
[0074] In this embodiment, the first cup cover 170 includes a cover body 174 and a rib 176. The cover body 174 is covered on the first food container 120. When the first food container 120 contains food, the cover body 174 can protect the food in the first food container 120. When the first food container 120 is in an idle state, the cover body 174 also facilitates the connection between the first food container 120 and the second cup cover 160 for easy storage. The rib 176 is arranged on the side of the cover body 174 away from the bottom wall 127 of the first food container. The rib 176 and the cover body 174 surround a first mounting groove 172 to facilitate the assembly of the main unit 110 and the first food container 120; when the first cup cover 170 is located in the second mounting groove 162, the rib 176 abuts against the side of the second mounting groove 162 close to the third mounting groove 164. When the first food container 120 and the second food container 150 are stored, the connection stability of the first food container 120 and the second cup cover 160 can be improved by setting the rib 176, the structural strength is improved, and the shaking of the first food container 120 and the second food container 150 after assembly is avoided, which is convenient for storage.
[0075] Specifically, Figure 7 As shown, the second cup cover 160 can be snap-fitted to the first food container 120 to reduce the difficulty of assembly operation.
[0076] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0077] The distance between the bottom wall of the third mounting groove 164 and the first mounting groove 172 is a third distance; the third distance is greater than or equal to the sum of the depth of the second mounting groove 162 and the depth of the third mounting groove 164 .
[0078] In this embodiment, the distance between the bottom wall of the third mounting groove 164 and the first mounting groove 172 is the third distance; the third distance is greater than or equal to the sum of the depth of the second mounting groove 162 and the depth of the third mounting groove 164. When the first food container 120 and the second food container 150 are stacked and stored, the first cup cover 170 installed on the first food container 120 is installed in the second mounting groove 162, and then by setting the distance between the bottom wall of the third mounting groove 164 and the first mounting groove 172 to be greater than or equal to the sum of the depth of the second mounting groove 162 and the depth of the third mounting groove 164, it is possible to ensure that the first cup cover 170 and the second cup cover 160 are connected stably while avoiding the first cup cover 170 and the second cup cover 160 from getting stuck, so that the user can separate and assemble the first food container 120 and the second food container 150 from each other, thereby reducing the risk of assembly stuck due to the fit between the first food container 120 and the second food container 150, and facilitating storage.
[0079] Specifically, the third distance between the bottom wall of the third mounting groove 164 and the first mounting groove 172 is L5, that is, L5 is greater than or equal to the sum of the depth H6 of the second mounting groove 162 and the depth H7 of the third mounting groove 164.
[0080] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0081] The ratio of the depth of the third mounting groove 164 to the depth of the second mounting groove 162 is greater than or equal to 2.
[0082] In this embodiment, since the second mounting groove 162 is recessed toward the interior of the second food container 150, the first cup cover 170 can be located in the second mounting groove 162. The cooperation between the second mounting groove 162 and the first cup cover 170 can realize that the first food container 120 can be installed in combination with the second food container 150 when idle, thereby making the connection between the first food container 120 and the second food container 150 stable when the food processor 100 is idle, improving the structural strength, and reducing the shaking of the food container when it is stored. The third mounting groove 164 is set on the bottom wall of the second mounting groove 162, recessed toward the interior of the second food container 150. When the second food container 150 is used to process food, the host 110 can be located in the third mounting groove 164, and the third mounting groove 164 can provide space for the assembly of the host 110 and the second food container 150. By limiting the ratio of the depth of the third mounting groove 164 to the depth of the second mounting groove 162, the shaking of the main unit 110 after assembly can be further reduced. At the same time, since the ratio of the third mounting groove 164 to the second mounting groove 162 is greater than or equal to 2, it can be ensured that the assembly depth of the main unit 110 in the third mounting groove 164 is greater than or equal to twice the depth of the second mounting groove 162, thereby lowering the center of gravity of the entire food processor 100 after assembly, improving the working stability, and also improving the stability of the equipment when placed on the desktop. It can also facilitate the assembly of the main unit 110 and the second food container 150, thereby improving the structural strength after assembly.
[0083] Specifically, Figure 6 As shown, the depth of the second mounting groove 162 is H6, and the depth of the third mounting groove 164 is H7, so the ratio of the depth of the third mounting groove 164 to the depth of the second mounting groove 162 is H7 / H6.
[0084] Specifically, the depth ratio H7 / H6 between the third mounting groove 164 and the second mounting groove 162 can be 2, the depth ratio H7 / H6 between the third mounting groove 164 and the second mounting groove 162 can be 8, the depth ratio H7 / H6 between the third mounting groove 164 and the second mounting groove 162 can be 12, and the depth ratio H7 / H6 between the third mounting groove 164 and the second mounting groove 162 can be 24.
[0085] Furthermore, the ratio of the depth of the third mounting groove 164 to the depth of the second mounting groove 162 is less than or equal to 50.
[0086] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0087] The diameter of the second mounting groove 162 is greater than the diameter of the first cup cover 170 .
[0088] In this embodiment, the diameter of the second mounting groove 162 is larger than the diameter of the first cup cover 170. When the food processor 100 is in an idle state, the user can combine and store the first food container 120 and the second food container 150 through the combined structure of the first cup cover 170 and the second mounting groove 162. By setting the diameter of the second mounting groove 162 to be larger than the diameter of the first cup cover 170, the difficulty of operation can be reduced, and the first cup cover 170 can be easily installed into the second mounting groove 162, and the first cup cover 170 and the second mounting groove 162 can be easily separated from each other, avoiding the first cup cover 170 from contacting the inner wall of the second mounting groove 162 too tightly, reducing friction resistance, and facilitating the user to assemble or separate the first food container 120 and the second food container 150.
[0089] Specifically, the diameter D2 of the second mounting groove 162 is greater than the diameter D3 of the first cup cover 170 .
[0090] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0091] The diameter of the third mounting groove 164 is greater than or equal to 16 mm and less than or equal to 70 mm.
[0092] In this embodiment, since the user can assemble the main unit 110 on the second food container 150 when the food processor 100 is working, by setting the diameter of the third mounting groove 164 to be greater than or equal to 16 mm and less than or equal to 70 mm, the combination and separation of the main unit 110 and the second food container 150 can be facilitated, thereby facilitating operation.
[0093] Specifically, Figure 5As shown, the diameter D4 of the third mounting groove 164 may be 16 mm, the diameter D4 of the third mounting groove 164 may be 20 mm, the diameter D4 of the third mounting groove 164 may be 50 mm, and the diameter D4 of the third mounting groove 164 may be 70 mm.
[0094] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0095] The diameter of the first mounting groove 172 is greater than or equal to 16 mm and less than or equal to 70 mm.
[0096] In this embodiment, since the user can assemble the main unit 110 on the first food container 120 when the food processor 100 is working, by setting the diameter of the first mounting groove 172 to be greater than or equal to 16 mm and less than or equal to 70 mm, and then by limiting the diameter of the first mounting groove 172, it is possible to improve the adaptability of the main unit 110 and the first mounting groove 172 while reducing costs and facilitating the stacking and storage of multiple first food containers 120 after use.
[0097] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0098] The food processor 100 includes a support ring 126, and the first food container 120 includes a mounting portion 123, a cup shaft 124 and a handle 128. The cup shaft 124 is connected to the bottom wall 127 of the first food container. The support ring 126 is arranged on the outer wall of the first food container 120 near the opening 182 of the first food container. The mounting portion 123 is connected to the first food container 120 and extends to the side of the support ring 126 away from the first food container 120 to fix the support ring 126; the handle 128 is connected to the support ring 126 and extends in a direction away from the first food container 120; the number of the first food containers 120 is at least two, and there are at least two first food containers 12 In the case of a stacked arrangement, at least two first food containers 120 include adjacent first containers 130 and second containers 132, the support ring 126 of the first container 130 abuts against the opening of the second container 132, and a gap is provided between the bottom wall 127 of the first food container of the second container 132 and the bottom wall 127 of the first food container of the first container 130; a distance between a side of the support ring 126 away from the mounting portion 123 and a side of the mounting portion 123 close to the opening 182 of the first food container is a first distance, a distance between the bottom walls 127 of two adjacent first food containers of the at least two first food containers 120 is a second distance, and the first distance is greater than the second distance.
[0099] In this embodiment, the food processor 100 includes a support ring 126, and the first food container 120 includes a mounting portion 123, a cup shaft 124 and a handle 128. The cup shaft 124 is disposed in the first food container 120 and connected to the bottom wall 127 of the first food container. The support ring 126 is arranged along the circumference of the first food container 120. The mounting portion 123 is connected to the first food container 120 and extends to a side of the support ring 126 away from the first food container 120 to fix the support ring 126. The distance between the side of the support ring 126 away from the mounting portion 123 and the side of the mounting portion 123 close to the opening 182 of the first food container is a first distance The distance between the bottom walls 127 of two adjacent first food containers in the at least two first food containers 120 is the second distance, and the first distance is greater than the second distance; the number of the first food containers 120 is at least two, and when the at least two first food containers 120 are stacked, the at least two first food containers 120 include adjacent first containers 130 and second containers 132, at least part of the first container 130 is arranged in the second container 132, the support ring 126 of the first container 130 abuts against the mounting portion 123 of the second container 132, and there is a gap between the cup axis 124 of the second container 132 and the bottom wall of the first container 130. The at least two first food containers 120 can be stacked, that is, when the food processor 100 is in an idle state, the user can stack and store the at least two first food containers 120, which can save kitchen space. By stacking the at least two first food containers 120, the containers can be compactly placed in the vertical direction without occupying too much space in the horizontal direction, which can optimize the kitchen space and further improve the practicality of the food processor 100. The first food container 120 includes a mounting portion 123, a cup shaft 124 and a handle, which can improve the assembly efficiency of the first food container 120, thereby improving the installation efficiency. The cup shaft 124 is disposed in the first food container 120 and connected to the bottom wall of the first food container. The support ring 126 is arranged along the circumference of the first food container. The mounting portion 123 is connected to the first food container 120 and extends to the side of the support ring 126 away from the first food container 120 to fix the support ring 126. The design of the support ring 126 and the mounting portion 123 enhances the stability of multiple first food containers 120 when stacked. The support ring 126 abuts against the mounting portion 123 of another container, which helps prevent the container from sliding or tipping over during operation.The distance between the side of the support ring 126 away from the mounting portion 123 and the side of the mounting portion 123 close to the opening 182 of the first food container is a first distance, and the distance between the bottom walls 127 of two adjacent first food containers in the at least two first food containers 120 is a second distance, and the first distance is greater than the second distance; in the case where the at least two first food containers 120 are stacked, the at least two first food containers 120 include adjacent first containers 130 and second containers 132, at least part of the first container 130 is arranged in the second container 132, and the support ring 126 of the first container 130 abuts against the mounting portion 123 of the second container 132. When the first container 130 and the second container 132 are stacked, there is a gap between the cup axis 124 of the second container 132 and the bottom wall of the first container 130, so that the cup axis 124 of the second container 132 and the bottom wall of the first container 130 do not contact each other, thereby reducing the friction between the stacked first container 130 and the second container 132, avoiding the first container 130 and the second container 132 from getting stuck when taking, and also avoiding the bottom wall of the container from squeezing the cup axis 124 of the lower container, and also facilitating the user to separate the at least two stacked first food containers 120 when using, facilitating the user to access and reducing the difficulty of operation. When multiple first food containers 120 are stacked and stored, the support ring 126 can provide support between any two adjacent first food containers 120, so that the bottoms of any two adjacent first food containers 120 do not contact each other, reducing the risk of getting stuck between the two adjacent first food containers 120, and facilitating the storage of multiple first food containers 120.
[0100] Furthermore, when the user uses the food processor 100 to process and process food, since any of the at least two first food containers 120 can be assembled with the host 110, the user can place food in any of the first food containers 120 and assemble the first food container 120 on the host 110 to process the food. When processing different types of food separately, the user can place the different types of food in the at least two first food containers 120 respectively, and then assemble the at least two first food containers 120 with the host 110 respectively according to the order of food processing, so that the user can select a suitable container according to actual needs, and the operational efficiency of food processing can also be improved.
[0101] Furthermore, by setting a plurality of first food containers 120 at the same time, the user can use different containers according to the type of food, thereby achieving classified processing of food ingredients, facilitating user selection, and improving the practicality of the food processor 100.
[0102] Furthermore, since the multiple first food containers 120 are relatively independent, and the appropriate first food container 120 can be selected to be assembled or separated from the main machine 110 according to actual needs, the first food container 120 can be cleaned and maintained separately, which reduces the difficulty of maintenance and cleaning, and also achieves maintenance without affecting the operation of the food processor 100.
[0103] Furthermore, by replacing different first food containers 120 , the same food processor 100 can be used to process different types of food, such as vegetables, fruits, meat, etc., which can improve the practicality and flexibility of the food processor 100 .
[0104] Furthermore, the main unit 110 of the food processor 100 can provide power for processing food ingredients, thereby facilitating the food processor 100 to process food ingredients and improving the processing efficiency of the food processor 100 .
[0105] Furthermore, the first food container 120 may be an integrally formed structure, which reduces production costs and also reduces assembly steps during assembly, thereby improving installation efficiency.
[0106] Specifically, a distance between a side of the support ring 126 away from the mounting portion 123 and a side of the mounting portion 123 close to the opening 182 of the first food container is a first distance L1.
[0107] Specifically, the food processor 100 further includes a blade 180 . The driving device inside the main unit 110 can drive the blade 180 to rotate. The blade 180 can process food, thereby improving the working efficiency of the food processor 100 .
[0108] Specifically, the first food container 120 further includes a cup body 122 , and the mounting portion 123 can be mounted on the cup body 122 .
[0109] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0110] The distance between the bottom walls 127 of two adjacent first food containers of the at least two first food containers 120 is a second distance, and the second distance is greater than 0 and less than or equal to 20 mm.
[0111] In this embodiment, at least two first food containers 120 are stacked together, wherein the distance between the bottom walls 127 of two adjacent first food containers in the at least two first food containers 120, i.e., the second distance, is greater than 0 and less than or equal to 20 mm. Furthermore, by limiting the range of the second distance, a gap can be further created between the bottom of the first food containers 120 and the cup axis 124 so that they do not contact each other, thereby avoiding assembly jams caused by excessive fit between the two first food containers 120, reducing the difficulty of operation, and facilitating the user's access to the first food containers 120.
[0112] Specifically, the second distance L2 between the bottom walls 127 of two adjacent first food containers 120 among at least two first food containers 120 may be 1 mm, the second distance L2 between the bottom walls 127 of two adjacent first food containers 120 among at least two first food containers 120 may be 5 mm, the second distance L2 between the bottom walls 127 of two adjacent first food containers 120 among at least two first food containers 120 may be 10 mm, the second distance L2 between the bottom walls 127 of two adjacent first food containers among at least two first food containers 120 may be 15 mm, and the second distance L2 between the bottom walls 127 of two adjacent first food containers among at least two first food containers 120 may also be 20 mm.
[0113] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0114] The distance between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 is greater than 0 and less than or equal to 18 mm.
[0115] In this embodiment, the distance between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 is greater than 0 and less than or equal to 18 mm. When the first container 130 and the second container 132 are stacked for storage, by limiting the distance between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130, the distance between the bottom of the cup axis 124 of the first container 130 and the top of the cup axis 124 of the second container 132 after storage can be set between 0 and 18 mm, so that a gap is left between the bottom wall of the first container 130 and the cup axis 124 of the second container 132, thereby avoiding the cup axis 124 of the first container 130 and the second container 132 from getting stuck after assembly, and also avoiding damage to the cup axis 124, thereby avoiding the first container 130 and the second container 132 from getting stuck when being used, so that the user can separate the at least two stacked first food containers 120 when using, which is convenient for the user to access and reduces the difficulty of operation.
[0116] After the first container 130 and the second container 132 are stacked, by setting the distance between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 to be less than or equal to 18 mm, it is possible to reduce the stacking height while ensuring that there is a gap between the bottom of the first container 130 and the cup axis 124 of the second container 132, thereby improving the stability of the first container 130 and the second container 132 after stacking, reducing shaking, and making it easier for users to store the first container 130 and the second container 132 after use.
[0117] Specifically, the distance between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 is L3, the distance L3 between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 can be 1 mm, the distance L3 between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 can be 5 mm, the distance L3 between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 can be 10 mm, and the distance L3 between the side of the cup axis 124 of the first container 130 close to the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 can also be 18 mm.
[0118] Furthermore, the distance between the bottom of the cup axis 124 of the first container 130 and the top of the cup axis 124 of the second container 132 after storage can also be controlled within a range greater than 0 and less than or equal to 5 mm, which can further ensure that there is a gap between the bottom of the first container 130 and the cup axis 124 of the second container 132, while reducing the height after stacking, improving the stability after storage, and reducing the axial height for easy storage.
[0119] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0120] The distance between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 is greater than or equal to 2 mm and less than or equal to 60 mm.
[0121] In this embodiment, the distance between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 is greater than or equal to 2 mm and less than or equal to 60 mm. When the first container 130 and the second container 132 are stacked and stored, the distance between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 does not affect the placement of the cup axis 124. When the first container 130 and the second container 132 are stacked and placed, a space for the cup axis 124 can be reserved, and the length of the cup axis 124 can be guaranteed. Therefore, the first container 130 and the second container 132 are easy to access after being stored, and the length of the cup axis 124 of the first container 130 and the second container 132 is guaranteed, so as to ensure the transmission efficiency after the first container 130 and the second container 132 are assembled with the body, thereby improving the working efficiency of the food processor 100.
[0122] Specifically, the distance between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 is H1. The distance H1 between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 may be 2 mm, the distance H1 between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 may be 20 mm, the distance H1 between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 may be 30 mm, and the distance H1 between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 may be 60 mm.
[0123] Specifically, a third container may be further disposed within the plurality of first food containers 120 , and a distance between a side of the cup axis 124 of the third container away from the first container 130 and a side of the cup axis 124 of the first container 130 close to the third container is H2 , and H2 is equal to H1 .
[0124] This embodiment provides a food processor 100. In addition to the technical features of the above-mentioned embodiment, this embodiment further includes the following technical features.
[0125] The distance between the side wall of the first container 130 and the side wall of the second container 132 is greater than or equal to 0 and less than or equal to 10 mm.
[0126] In this embodiment, when the first container 130 and the second container 132 are stacked and stored, the friction between the side walls of the first container 130 and the second container 132 can be reduced by setting a gap between the side walls of the first container 130 and the second container 132. When the first container 130 and the second container 132 are stored and accessed, the relative friction between the first container 130 and the second container 132 can be reduced, so that the relative movement of the first container 130 and the second container 132 can be facilitated, thereby facilitating storage and access. At the same time, by controlling the distance between the side walls of the first container 130 and the second container 132 to be greater than or equal to 0 and less than or equal to 10 mm, the gap can be limited to a range of 0 to 10 mm, thereby avoiding the stacked first container 130 and the second container 132 from getting stuck when being taken out, and reducing the volume of the stacked first container 130 and the second container 132 for easy storage. At the same time, it is convenient for users to separate the stacked first container 130 and the second container 132 when using, so as to facilitate user access and reduce the difficulty of operation.
[0127] Specifically, the distance L4 between the side wall of the first container 130 and the side wall of the second container 132 is L4, the distance L4 between the side wall of the first container 130 and the side wall of the second container 132 may be 0, the distance L4 between the side wall of the first container 130 and the side wall of the second container 132 may be 4 mm, the distance L4 between the side wall of the first container 130 and the side wall of the second container 132 may be 8 mm, and the distance L4 between the side wall of the first container 130 and the side wall of the second container 132 may be 10 mm.
[0128] Furthermore, when the first container 130 and the second container 132 are stacked together, the distance between the side wall of the first container 130 and the side wall of the second container 132 can be set to be greater than or equal to 0 and less than or equal to 6 mm, so as to avoid the first container 130 and the second container 132 being stuck when being taken out after being stacked, and to reduce the space occupied by the entire container part after being stored, so as to facilitate storage. This embodiment provides a food processor 100, which, in addition to the technical features of the above-mentioned embodiment, further includes the following technical features.
[0129] The first food container 120 also includes a handle 128, which is connected to the support ring 126 and extends in a direction away from the first food container 120; the distance between the handles 128 of two adjacent first food containers 120 in at least two first food containers 120 is greater than or equal to 8 mm and less than or equal to 60 mm.
[0130] In this embodiment, the first food container 120 further includes a handle 128, which is connected to the support ring 126 and extends in a direction away from the first food container 120; the distance between the handles 128 of two adjacent first food containers 120 of at least two first food containers 120 is greater than or equal to 8 mm and less than or equal to 60 mm. When the user uses the food processor 100, the first food container 120 can be removed by operating the handle 128 and assembled with the main unit 110, which reduces the difficulty of operation and facilitates manual operation by the user. Since the handle 128 is connected to the support ring 126, the stability of the handle 128 can be improved, and the stability during operation can also be improved. When at least two first food containers 120 are stacked for storage, a distance is set between the handles 128 of two adjacent first food containers 120 among the at least two first food containers 120, so that jamming of two adjacent first food containers 120 among the at least two first food containers 120 when they are stacked and taken out again can be avoided, thereby facilitating the separation of the two first food containers. Meanwhile, by setting the distance between the handles 128 of two adjacent first food containers 120 among the at least two first food containers 120 to be greater than or equal to 10 mm, the risk of jamming of two adjacent first food containers 120 when they are stacked and taken out again can be further reduced, thereby facilitating the user to access the first food containers 120 in the stored state and reducing the difficulty of operation.
[0131] Specifically, by providing the notch 129 , when at least two first food containers 120 are stacked, a gap can be provided between the two handles 128 of two adjacent first food containers 120 , thereby facilitating the user to hold the first food containers 120 .
[0132] Specifically, Figure 8 As shown, the size of the notch 129 can be selected according to the actual size of the support ring 126 .
[0133] Specifically, Figure 4 As shown, the distance between the handles 128 of two adjacent first food containers 120 in at least two first food containers 120 may be H3 and H4, wherein the distance between the handles 128 of two adjacent first food containers 120 in at least two first food containers 120 is greater than or equal to 8 mm and less than or equal to 60 mm, the distance between the handles 128 of two adjacent first food containers 120 in at least two first food containers 120 may be 8 mm, the distance between the handles 128 of two adjacent first food containers 120 in at least two first food containers 120 may be 20 mm, the distance between the handles 128 of two adjacent first food containers 120 in at least two first food containers 120 may be 40 mm, and the distance between the handles 128 of two adjacent first food containers 120 in at least two first food containers 120 may be 60 mm.
[0134] Specifically, the distances between the handles 128 of two adjacent first food containers 120 among the at least two first food containers 120 are H3 and H4.
[0135] Specifically, the cup axis 124 of the first container 130 may be a first cup axis 134, and the cup axis 124 of the second container 132 may be a second cup axis 135. By setting a sufficient gap between the first cup axis 134 of the first container 130 and the second cup axis 135 of the second container 132, the risk of the first container 130 and the second container 132 getting stuck when they are separated again after stacking can be reduced.
[0136] Specifically, the third distance between the bottom wall of the third mounting groove 164 and the first mounting groove 172 is L5, that is, L5 is greater than or equal to the sum of the depth H6 of the second mounting groove 162 and the depth H7 of the third mounting groove 164.
[0137] Specifically, the diameter D2 of the second mounting groove 162 is greater than the diameter D3 of the first cup cover 170 .
[0138] Specifically, Figure 5 As shown, the diameter D4 of the third mounting groove 164 may be 16 mm, the diameter D4 of the third mounting groove 164 may be 20 mm, the diameter D4 of the third mounting groove 164 may be 50 mm, and the diameter D4 of the third mounting groove 164 may be 70 mm.
[0139] Specifically, Figure 3 As shown, the diameter of the first mounting groove 172 is D1, wherein the diameter D1 of the first mounting groove 172 may be 16 mm, the diameter D1 of the first mounting groove 172 may be 20 mm, the diameter D1 of the first mounting groove 172 may be 50 mm, and the diameter D1 of the first mounting groove 172 may be 70 mm.
[0140] Specifically, the mounting portion 123 includes a first wall surface 140 , which is disposed along the axial direction of the host 110 , and the inner side of the support ring 126 is in contact with the first wall surface 140 .
[0141] Specifically, the mounting portion 123 includes a third wall surface 142, the third wall surface 142 is in contact with the side of the support ring 126 away from the first food container, and the distance between the third wall surface 142 and the first wall surface 140 decreases from the side away from the bottom wall 127 of the first food container to the side close to the bottom wall 127 of the first food container. The mounting portion 123 also includes a second wall surface 144, which is connected to the first wall surface 140 and extends in the radial direction of the main unit 110 in a direction away from the first wall surface 140; the side of the support ring 126 away from the bottom wall 127 of the first food container abuts against the second wall surface 144.
[0142] Specifically, the distance between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 is the sum of the height of the boss 190 and the height of the cup axis 124 and the distance between the side of the cup axis 124 of the second container 132 close to the first container 130 and the bottom wall of the first container, wherein the gap between the side of the cup axis 124 of the second container 132 close to the first container 130 and the bottom wall of the first container is greater than 0, which can avoid contact and reduce the risk of jamming.
[0143] Specifically, when the cup axis 124 is not provided, the distance between the side of the cup axis 124 of the first container 130 away from the second container 132 and the side of the cup axis 124 of the second container 132 close to the first container 130 can be made the sum of the height of the boss 190 and the distance between the side of the cup axis 124 of the second container 132 close to the first container 130 and the bottom wall of the first container.
[0144] Specifically, the distance between the handle 128 and the second cup cover 160 can be greater than or equal to 1 mm and less than or equal to 10 mm. The distance H5 between the handle 128 and the second cup cover 160 can be 1 mm, the distance H5 between the handle 128 and the second cup cover 160 can be 2 mm, the distance H5 between the handle 128 and the second cup cover 160 can be 5 mm, and the distance H5 between the handle 128 and the second cup cover 160 can be 10 mm.
[0145] In the claims, specification and drawings of the present invention, the term "multiple" refers to two or more than two. Unless otherwise clearly defined, the orientation or positional relationship indicated by the terms "upper" and "lower" is based on the orientation or positional relationship shown in the drawings, which is only for the purpose of more conveniently describing the present invention and making the description process easier, rather than for indicating or implying that the device or element referred to must have the specific orientation described, be constructed and operated in a specific orientation, so these descriptions cannot be understood as limitations on the present invention; the terms "connect", "install", "fix" and the like should be understood in a broad sense. For example, "connection" can be a fixed connection between multiple objects, or a detachable connection between multiple objects, or an integral connection; it can be a direct connection between multiple objects, or an indirect connection between multiple objects through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood based on the specific circumstances of the above data.
[0146] In the claims, specification and drawings of the present invention, the description of the terms "one embodiment", "some embodiments", "specific embodiments" and the like means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In the claims, specification and drawings of the present invention, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in any one or more embodiments or examples in a suitable manner.
[0147] The above description is only the preferred embodiment of the utility model, and is not intended to limit the utility model. For those skilled in the art, the utility model can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A food processor, characterized in that: include: Host; a first food container, the first food container being capable of being assembled with the host; a second food container, the second food container being capable of being assembled with the host, the volume of the second food container being unequal to the volume of the first food container; The second cup cover is arranged on the second food container, the second cup cover comprises a second mounting groove, the first food container can be inverted on the second cup cover, and at least a part of the first food container is located in the second mounting groove.
2. The food processor according to claim 1, characterized in that The first food container is buckled in the second installation groove, and the cup mouth of the first food container abuts against the bottom wall of the second installation groove.
3. The food processor according to claim 2, characterized in that: Also includes: a first cup cover, wherein the first cup cover is disposed on the first food container; When the first cup cover is located in the second installation groove, a side of the first cup cover away from the first food container abuts against a bottom wall of the second installation groove.
4. The food processor according to claim 3, characterized in that: The side wall of the first cup cover abuts against the side wall of the second mounting groove; or There is a gap between the side wall of the first cup cover and the side wall of the second mounting groove.
5. The food processor according to claim 3, characterized in that: The second cup cover is provided with a third mounting groove, and the third mounting groove is provided on the bottom wall of the second mounting groove and is recessed toward the inside of the second food container; The first cup cover is provided with a first mounting groove, and the diameter of the first mounting groove is the same as the diameter of the third mounting groove; The host can be assembled with the first installation slot or the second installation slot.
6. The food processor according to claim 5, characterized in that The first cup cover comprises: a cover body, the cover body being arranged to cover the first food container; A convex rib, the convex rib being arranged on a side of the cover body away from the bottom wall of the first food container, the convex rib and the cover body enclosing the first mounting groove; When the first cup cover is located in the second mounting groove, the convex rib abuts against a side of the second mounting groove close to the third mounting groove.
7. The food processor according to claim 5, characterized in that The distance between the bottom wall of the third mounting groove and the first mounting groove is a third distance; The third distance is greater than or equal to the sum of the depth of the second mounting groove and the depth of the third mounting groove.
8. The food processor according to claim 5, characterized in that A ratio of a depth of the third mounting groove to a depth of the second mounting groove is greater than or equal to 2.
9. The food processor according to claim 5, characterized in that The diameter of the second mounting groove is greater than the diameter of the first cup cover.
10. The food processor according to claim 5, characterized in that The diameter of the third mounting groove is greater than or equal to 16 mm and less than or equal to 70 mm.
11. The food processor according to claim 5, characterized in that The diameter of the first mounting groove is greater than or equal to 16 mm and less than or equal to 70 mm.
12. The food processor according to any one of claims 1 to 11, characterized in that: The food processor comprises a support ring, the first food container comprises a mounting portion, a cup shaft and a handle, the cup shaft is connected to the bottom wall of the first food container, the support ring is arranged on a side of the outer wall of the first food container close to the opening of the first food container, the mounting portion is connected to the first food container and extends to a side of the support ring away from the first food container to fix the support ring, and the handle is connected to the support ring and extends in a direction away from the first food container; The number of the first food containers is at least two. When at least two of the first food containers are stacked, the at least two first food containers include adjacent first containers and second containers, the support ring of the first container abuts against the opening of the second container, and a gap is formed between the bottom wall of the second container and the bottom wall of the first container; A distance between a side of the support ring away from the mounting portion and a side of the mounting portion close to the opening of the first food container is a first distance, a distance between bottom walls of two adjacent first food containers of at least two of the first food containers is a second distance, and the first distance is greater than the second distance; and / or a distance between bottom walls of two adjacent first food containers of at least two of the first food containers is a second distance, and the second distance is greater than 0 and less than or equal to 20 mm; and / or The distance between the side of the cup axis of the first container close to the second container and the side of the cup axis of the second container close to the first container is greater than 0 and less than or equal to 18 mm; and / or The distance between the side of the cup axis of the first container away from the second container and the side of the cup axis of the second container close to the first container is greater than or equal to 2 mm and less than or equal to 60 mm; and / or The distance between the side wall of the first container and the side wall of the second container is greater than or equal to 0 and less than or equal to 10 mm; and / or The distance between the handles of two adjacent first food containers of at least two of the first food containers is greater than or equal to 8 mm and less than or equal to 60 mm.