Food processor
By designing optional processing components and control modules in the food processor, the problem of limited functionality in commercial food processors has been solved, enabling proper processing of vegetables, meat, and seafood, thus improving user experience and safety.
Patent Information
- Application Number
- CN202010561775.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-06-18
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2040-06-18
AI Technical Summary
Existing commercial food processors and meat grinders have limited functions and cannot meet users' different processing needs for vegetables, meat and seafood, resulting in damage to vegetable fibers and reduced nutritional value, and poor taste for users.
A food processor has been designed, comprising first and second processing components for grinding vegetables and meat and seafood, respectively. The two modes are achieved by selectively installing different processing components. The motor speed is controlled by a magnetic proximity switch and a control module to ensure that the ingredients are properly processed in different modes.
The food processor features multiple operating modes for different ingredients, preventing over-grinding, improving the taste and user experience, and enhancing safety and ease of operation.
Smart Images

Figure CN111603075B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of kitchen utensils, in particular to a food processor. BACKGROUND
[0002] At present, the food processors sold on the market are generally commercial food processors and meat grinders.
[0003] However, the motor speed of the commercial food processor and the meat grinder is high, and whether the food material is vegetables or meat and aquatic products, it will be stirred into a paste, that is, the commercial food processor and the meat grinder only have one operation mode. In this way, when the commercial food processor and the meat grinder stir the vegetables, not only the fiber of the vegetables is damaged, the nutritional value of the vegetables is reduced, but also the user's taste is affected, resulting in that the function of the commercial food processor and the meat grinder is relatively single and cannot meet the user's use demand. SUMMARY
[0004] The main purpose of the present application is to provide a food processor to solve the problem that the function of the commercial food processor and the meat grinder in the prior art is relatively single and cannot meet the user's use demand.
[0005] In order to achieve the above-mentioned purpose, the present application provides a food processor, comprising: a base; a first containing structure arranged on the base; a first processing assembly arranged in the first containing structure, the first processing assembly comprising a first knife holder shaft and a first cutter and a second cutter arranged on the first knife holder shaft, the first cutter and the second cutter being arranged at intervals along the extension direction of the first knife holder shaft; a second processing assembly arranged in the first containing structure, the second processing assembly comprising a second knife holder shaft and a third cutter arranged on the second knife holder shaft; wherein the first processing assembly and the second processing assembly are selectively arranged in the first containing structure, the food processor has a vegetable stirring mode and a meat and aquatic product stirring mode, when the food processor is in the vegetable stirring mode, the first processing assembly is arranged in the first containing structure; when the food processor is in the meat and aquatic product stirring mode, the second processing assembly is arranged in the first containing structure.
[0006] Further, the food processor further comprises a driving device arranged on the base, the second processing assembly further comprises: a second containing structure, the second knife holder shaft and the third cutter are arranged in the second containing structure, and the driving shaft of the driving device is connected with the second knife holder shaft after penetrating through the first containing structure and the second containing structure, so as to drive the second knife holder shaft to rotate the third cutter.
[0007] Further, the third cutter comprises: a first blade; a second blade; a connecting frame sleeved on the second knife holder shaft, one side of the connecting frame being connected with the first blade, and the other side of the connecting frame being connected with the second blade; wherein the first blade and the second blade are arranged at intervals along the extension direction of the second knife holder shaft.
[0008] Further, the third cutter further comprises: a first protective sleeve body sleeved outside the first blade; and a second protective sleeve body sleeved outside the second blade.
[0009] Further, the first accommodating structure has a discharge opening, and the first processing assembly further comprises: a receiving box detachably connected with the base, when the receiving box is in the cooperating state with the base, a receiving opening of the receiving box is in communication with the discharge opening, and a surface of the base facing the receiving box is matched with an outer surface of the receiving box.
[0010] Further, the food processor further comprises a driving device and a first magnetic proximity switch, the first magnetic proximity switch is connected with a first circuit for connecting the driving device and the power supply, so as to control the on-off state of the first circuit; the driving device is arranged on the base, a driving end of the driving device is connected with the first cutter shaft, so as to drive the first cutter shaft to drive the first cutter and the second cutter to rotate, the first processing assembly further comprises: a first magnetic guide structure, one of the base and the receiving box is provided with the first magnetic guide structure, and the other of the base and the receiving box is provided with the first magnetic proximity switch; wherein, when the first magnetic proximity switch senses the first magnetic guide structure, the first magnetic proximity switch controls the first circuit to be in the on state.
[0011] Further, the food processor further comprises a second magnetic proximity switch, the second magnetic proximity switch is connected with a second circuit for connecting the driving device and the power supply, so as to control the on-off state of the second circuit, the second processing assembly further comprises: a second magnetic guide structure, one of the base and the second accommodating structure is provided with the second magnetic guide structure, and the other of the base and the second accommodating structure is provided with the second magnetic proximity switch; wherein, when the second magnetic proximity switch senses the second magnetic guide structure, the second magnetic proximity switch controls the second circuit to be in the on state.
[0012] Further, the food processor further comprises a detection assembly and a control module, the control module is connected with the driving device, the detection assembly comprises: a detection structure arranged on the base and connected with the control module; and a detected piece arranged on an outer surface of the second accommodating structure, when the detection structure detects the detected piece, the detection structure sends a signal to the control module, and the control module controls the driving device to start after receiving the signal.
[0013] Further, the food processor further comprises a clamping assembly, the first processing assembly further comprises: a first cover body having a feeding opening, the first cover body is clamped with the base through the clamping assembly; and a pushing structure for pushing the food into the feeding opening, the second processing assembly further comprises: a second cover body clamped with the base through the clamping assembly.
[0014] Further, the food processor further comprises a control module connected with the driving device; when the food processor is in the vegetable chopping mode, the control module controls the driving device to rotate at a first preset rotating speed; when the food processor is in the meat and aquatic product chopping mode, the control module controls the driving device to rotate at a second preset rotating speed; wherein the first preset rotating speed is less than the second preset rotating speed.
[0015] By the technical scheme of the present application, the food processor comprises a base, a first accommodating structure, a first processing assembly and a second processing assembly, and the first processing assembly and the second processing assembly are selectively arranged in the first accommodating structure. The first processing assembly comprises a first knife holder shaft and first and second knives arranged on the first knife holder shaft, and the first and second knives are arranged at intervals along the extension direction of the first knife holder shaft. In this way, during the use of the food processor by a user, when the user needs to chop vegetables, the first processing assembly is operated to arrange the first processing assembly in the first accommodating structure, the food processor is in the vegetable chopping mode, the first knife cuts the vegetables into larger vegetable pieces, the vegetable pieces are gathered on the second knife under the action of centrifugal force, the second knife cuts the larger vegetable pieces into vegetable pieces of a required size (smaller), and the vegetable pieces of the required size fall into the first accommodating structure and are discharged to prevent the food from being excessively chopped, thereby improving the eating taste of the user. When the user needs to chop meat and aquatic products, the second processing assembly is operated to arrange the second processing assembly in the first accommodating structure, the food processor is in the meat and aquatic product chopping mode, and the third knife chops the meat and aquatic products into a paste for making stuffing food. Therefore, the food processor in the present application has at least two operating modes, and the user can select different operating modes for different food, thereby solving the problem that the commercial food processor and the meat grinder in the prior art have a single function and cannot meet the use requirements of the user, and improving the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0016] The accompanying drawings, which form a part of the present description, are included to provide a further understanding of the application and are incorporated in and constitute a part of this application. The embodiments of the present application, and their
[0017] Figure 1 An exploded view of the food processor in Embodiment One according to the present application is shown;
[0018] Figure 2 An exploded view of the food processor in Figure 1 is shown in the vegetable chopping mode; and
[0019] Figure 3 An exploded view of the second processing assembly of the food processor in Figure 1 is shown.
[0020] In the above drawings, the following reference signs are used:
[0021] 10, base; 11, first mounting portion; 20, first accommodating structure; 21, discharge port; 31, first tool holder shaft; 32, first cutter; 321, third blade; 33, second cutter; 331, cutter head; 332, fourth blade; 333, discharge opening; 40, driving device; 50, receiving box; 51, receiving opening; 60, first cover body; 61, feeding opening; 70, pushing structure; 80, clamping assembly; 90, switch knob; 100, first magnetically conductive structure; 110, second tool holder shaft; 120, third cutter; 121, first blade; 122, second blade; 123, connecting frame; 124, first protective sleeve body; 125, second protective sleeve body; 130, second accommodating structure; 140, second magnetically conductive structure; 150, second cover body; 151, window; 210, first magnetic proximity switch; 220, second magnetic proximity switch. DETAILED DESCRIPTION
[0022] It should be noted that the embodiments and features in the embodiments in the present application can be combined with each other without conflict. The present application will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.
[0023] It should be noted that, unless otherwise specified, all the technical and scientific terms used in the present application have the same meaning as that generally understood by the ordinary skilled person in the technical field to which the present application belongs.
[0024] In the present application, unless otherwise specified, the orientation words such as "up, down" are generally directed to the directions shown in the drawings, or are directed to the vertical, perpendicular or gravity directions; similarly, for the convenience of understanding and description, "left, right" are generally directed to the left and right shown in the drawings; "inner, outer" are directed to the inner and outer relative to the contour of each component, but the above orientation words are not used to limit the present application.
[0025] Embodiment One
[0026] In order to solve the problem that the functions of the commercial food processor and the meat grinder in the prior art are relatively single and cannot meet the use requirements of users, the present application provides a food processor.
[0027] As Figures 1 to 3As shown, the food processor comprises a base 10, a first containing structure 20, a first processing assembly and a second processing assembly. The first containing structure 20 is arranged on the base 10. The first processing assembly can be arranged in the first containing structure 20, and the first processing assembly comprises a first tool holder shaft 31 and a first tool 32 and a second tool 33 arranged on the first tool holder shaft 31, the first tool 32 and the second tool 33 are arranged in the extension direction of the first tool holder shaft 31. The second processing assembly can be arranged in the first containing structure 20, and the second processing assembly comprises a second tool holder shaft 110 and a third tool 120 arranged on the second tool holder shaft 110. Wherein, the first processing assembly and the second processing assembly can be selectively arranged in the first containing structure 20, and the food processor has a vegetable chopping mode and a meat and aquatic product chopping mode, when the food processor is in the vegetable chopping mode, the first processing assembly is arranged in the first containing structure 20; when the food processor is in the meat and aquatic product chopping mode, the second processing assembly is arranged in the first containing structure 20.
[0028] By applying the technical scheme of the embodiment, when the user needs to chop vegetables during using the food processor, the first processing assembly is operated to arrange the first processing assembly in the first containing structure 20, the food processor is in the vegetable chopping mode, the first tool 32 first cuts the vegetables into larger vegetable pieces, the vegetable pieces are collected on the second tool 33 under the action of centrifugal force, the second tool 33 further cuts the larger vegetable pieces into vegetable pieces of a required size (smaller), and the vegetable pieces of the required size fall into the first containing structure 20 and are discharged to prevent the food from being excessively chopped, thereby improving the eating experience of the user. When the user needs to chop meat and aquatic products, the second processing assembly is operated to arrange the second processing assembly in the first containing structure 20, the food processor is in the meat and aquatic product chopping mode, and the third tool 120 chops the meat and aquatic products into a paste for making stuffing food. Therefore, the food processor in the embodiment has at least two operating modes, the user can select different operating modes for different food, thereby solving the problem that the commercial food processor and the meat grinder in the prior art have a single function and cannot meet the use requirements of the user, and improving the user experience.
[0029] In the embodiment, different processing assemblies are arranged in the first containing structure 20 to realize chopping of different food by the food processor, realize one machine with multiple functions, and reduce the overall space occupied by the food processor.
[0030] As shown in the figure, Figure 2 The first tool 32 is located above the second tool 33, the first tool 32 comprises a third blade 321, and the second tool 33 comprises a tool disc 331 and a fourth blade 332 arranged on the edge of the tool disc 331. In this way, the above arrangement makes the structure of the first tool 32 and the second tool 33 more simple, easy to process and realize, and reduces the processing cost of the food processor.
[0031] Optionally, the third blade 321 has a preset distance A between the first surface of the cutter head 331 facing the third blade 321 and the second surface of the cutter head 331 facing the third blade 321. The preset distance A is greater than or equal to 10 mm and less than or equal to 30 mm. In this way, the above-mentioned arrangement of the preset distance A, on the one hand, avoids the first tool holder shaft 31 being too long to cause the first tool 32 to deflect, thereby improving the operation reliability of the first processing assembly; on the other hand, ensures that there is enough distance between the first tool 32 and the second tool 33, so that the food material cut by the first tool 32 is a food material block with a larger size, and the food material block cut by the second tool 33 is reduced to the required size, so that the particles of the food material discharged from the first containing structure 20 are clear, without damaging the fibers of the food material, preventing the loss of nutrients of the food material.
[0032] As shown in Figure 1 , the food processor further comprises a driving device 40 arranged on the base 10, and the second processing assembly further comprises a second containing structure 130. The second tool holder shaft 110 and the third tool 120 are arranged in the second containing structure 130, and the driving shaft of the driving device 40 passes through the first containing structure 20 and the second containing structure 130 and is connected with the second tool holder shaft 110 to drive the second tool holder shaft 110 to rotate the third tool 120. In this way, the driving device 40 drives the lower end of the second tool holder shaft 110 to rotate the third tool 120 through the second tool holder shaft 110 to stir and crush the food material, thereby making the rotation of the third tool 120 easier.
[0033] As shown in Figure 3 , the third tool 120 comprises a first blade 121, a second blade 122 and a connecting frame 123. The connecting frame 123 is sleeved on the second tool holder shaft 110, one side of the connecting frame 123 is connected with the first blade 121, and the other side of the connecting frame 123 is connected with the second blade 122. The first blade 121 and the second blade 122 are arranged in the extension direction of the second tool holder shaft 110. In this way, during the rotation of the second tool holder shaft 110, the first blade 121 and the second blade 122 rotate synchronously with the second tool holder shaft 110 to fully cut and stir the food material, so that the food material is stirred into a paste. At the same time, the above-mentioned arrangement makes the structure of the third tool 120 simpler, easier to process and realize, and reduces the processing cost of the food processor.
[0034] As shown in Figure 3As shown, the third cutter 120 further comprises a first protective sleeve 124 and a second protective sleeve 125. The first protective sleeve 124 is sleeved on the first blade 121. The second protective sleeve 125 is sleeved on the second blade 122. In this way, the first protective sleeve 124 and the second protective sleeve 125 can protect the first blade 121 and the second blade 122 respectively, so as to avoid accidental injury or scratch of the user by the first blade 121 and the second blade 122, and improve the use safety of the second processing assembly.
[0035] As shown in Figure 1 and Figure 2 The first accommodating structure 20 has a discharge port 21. The first processing assembly further comprises a receiving box 50. When the receiving box 50 is in cooperation with the base 10, the receiving port 51 of the receiving box 50 is in communication with the discharge port 21, and the surface of the base 10 facing the receiving box 50 is adapted to the outer surface of the receiving box 50. The knife disc 331 has a discharging port 333. After the food materials are crushed by the first cutter 32 and the second cutter 33, the food material blocks reaching the required size fall into the first accommodating structure 20 through the discharging port 333, and then pass through the discharge port 21 and the receiving port 51 to be discharged into the receiving box 50, so as to facilitate the user to store the food material blocks. At the same time, the above-mentioned arrangement makes the disassembly and assembly of the receiving box 50 and the base 10 easier and more convenient, reduces the disassembly and assembly difficulty, and also makes the user to clean the receiving box 50 more easily.
[0036] As shown in Figure 2 The food processor further comprises a driving device 40 and a first magnetic proximity switch 210. The first magnetic proximity switch 210 is connected with a first circuit for connecting the driving device 40 and a power supply, so as to control the on-off state of the first circuit. The driving device 40 is arranged on the base 10. The driving end of the driving device 40 is connected with the first blade holder shaft 31, so as to drive the first blade holder shaft 31 to rotate and drive the first cutter 32 and the second cutter 33 to rotate. The first processing assembly further comprises a first magnetic guide structure 100. One of the base 10 and the receiving box 50 is provided with the first magnetic guide structure 100, and the other of the base 10 and the receiving box 50 is provided with the first magnetic proximity switch 210. When the first magnetic proximity switch 210 senses the first magnetic guide structure 100, the first magnetic proximity switch 210 controls the first circuit to be in the on state. In this way, only when the receiving box 50 is in cooperation with the base 10, the driving device 40 can be started, so as to prevent the first cutter 32 and the second cutter 33 from rotating when they are not needed to be crushed and from injuring the user, and improve the use safety of the food processor.
[0037] Specifically, a first magnetic proximity switch 210 is provided on the base 10, and a first magnetically conductive structure 100 is provided on the receiving box 50. When vegetables need to be chopped, the user installs the first processing component in the first receiving structure 20 and assembles the receiving box 50 and the base 10. When the receiving box 50 and the base 10 are engaged, the first magnetic proximity switch 210 senses the first magnetically conductive structure 100, the drive device 40 is connected to the power supply, and the drive shaft of the drive device 40 drives the first blade 32 and the second blade 33 to rotate to chop the vegetables. When the base 10 is disengaged from the receiving box 50, the drive device 40 is disconnected from the power supply and stops rotating, so that the first blade 32 and the second blade 33 stop operating.
[0038] It should be noted that the positions of the first magnetic proximity switch 210 and the first magnetically conductive structure 100 are not limited to this. In other embodiments not shown in the accompanying drawings, the first magnetically conductive structure is provided on the base, and the first magnetic proximity switch is provided on the receiving box. When vegetables need to be chopped, the user installs the first processing component in the first receiving structure and assembles the receiving box and the base. When the receiving box and the base are in a mating state, the first magnetic proximity switch senses the first magnetically conductive structure, the drive device is connected to the power supply, and the drive shaft of the drive device drives the first and second blades to rotate to chop the vegetables. When the base is disengaged from the receiving box, the drive device is disconnected from the power supply and stops rotating, so that the first and second blades stop operating.
[0039] like Figure 1 As shown, the food processor also includes a second magnetic proximity switch 220, which is connected to a second circuit for connecting the drive unit 40 and the power supply to control the on / off state of the second circuit. The second processing component also includes a second magnetically conductive structure 140. The second magnetically conductive structure 140 is disposed on one of the base 10 and the second housing structure 130, and the second magnetic proximity switch 220 is disposed on the other. When the second magnetic proximity switch 220 senses the second magnetically conductive structure 140, it controls the second circuit to be in an on / off state. Thus, the drive unit 40 can only be activated when the second housing structure 130 and the first housing structure 20 are in a mating state, preventing the third blade 120 from rotating when not needed and potentially injuring the user, thereby improving the safety of using the food processor.
[0040] Specifically, a second magnetic proximity switch 220 is provided on the base 10, and a second magnetically conductive structure 140 is provided on the second receiving structure 130. When it is necessary to mince meat and seafood, the user installs the second processing component inside the first receiving structure 20 and assembles the second receiving structure 130 and the first receiving structure 20. When the second receiving structure 130 and the first receiving structure 20 are in a mating state, the second magnetic proximity switch 220 senses the second magnetically conductive structure 140, the drive device 40 is connected to the power supply, and the drive shaft of the drive device 40 drives the third blade 120 to rotate, thereby mincing the meat and seafood. When the second receiving structure 130 is disengaged from the first receiving structure 20, the drive device 40 is disconnected from the power supply and stops rotating, so that the third blade 120 stops operating.
[0041] It should be noted that the positions of the second magnetic proximity switch 220 and the second magnetically conductive structure 140 are not limited to this. In other embodiments not shown in the accompanying drawings, the second magnetically conductive structure is provided on the base, and the second magnetic proximity switch is provided on the second receiving structure. When it is necessary to mince meat and seafood, the user installs the second processing component inside the first receiving structure and assembles the second receiving structure and the first receiving structure. When the second receiving structure and the first receiving structure are in a mating state, the second magnetic proximity switch senses the second magnetically conductive structure, the drive device is connected to the power supply, and the drive shaft of the drive device drives the third blade to rotate to mince the meat and seafood. When the second receiving structure is disengaged from the first receiving structure, the drive device is disconnected from the power supply, the drive device stops rotating, and the third blade stops operating.
[0042] In this embodiment, the second magnetically conductive structure 140 is disposed on the outer surface of the second receiving structure 130, and the first receiving structure 20 is made of plastic, which will not affect the mutual induction between the second magnetic proximity switch 220 and the second magnetically conductive structure 140.
[0043] like Figure 1 and Figure 2 As shown, the food processor also includes a snap-fit assembly 80, and the first processing assembly includes a first cover 60 and a feeding structure 70. The first cover 60 has a feed inlet 61 and is snapped onto the base 10 via the snap-fit assembly 80. The feeding structure 70 is used to push food into the feed inlet 61. The second processing assembly also includes a second cover 150, which is snapped onto the base 10 via the snap-fit assembly 80. Thus, while the user is using the first processing assembly to blend food, the user can continuously add food to the first receiving structure 20 according to their needs. While the user is using the second processing assembly to blend food, a certain space is formed between the second cover 150 and the base 10, preventing the user from adding food to the second receiving structure 130, thus satisfying different user needs.
[0044] Specifically, when the food processor is in the vegetable chopping mode, the first cover body 60 is clamped with the base 10 through the clamping assembly 80 to form a chopping chamber, and the food material enters the first containing structure 20 through the feeding port 61 under the pushing of the pushing structure 70. When the food processor is in the meat and aquatic product chopping mode, the second cover body 150 is clamped with the base 10 through the clamping assembly 80 to form a chopping chamber between the second cover body 150 and the second containing structure 130. In addition, the above arrangement makes it easier and more convenient to disassemble the first cover body 60 or the second cover body 150 from the base 10, and reduces the difficulty of disassembly.
[0045] As shown in Figure 1 and Figure 2 , the base 10 is provided with a switch knob 90. Among them, the user can control the running state (jog, off, chop) of the food processor by rotating the switch knob 90, so that the user's operation of the food processor is easier and more convenient, and the operation difficulty is reduced.
[0046] In this embodiment, the food processor further comprises a control module. Among them, the control module is connected with the driving device 40; when the food processor is in the vegetable chopping mode, the control module controls the driving device 40 to rotate at a first preset speed; when the food processor is in the meat and aquatic product chopping mode, the control module controls the driving device 40 to rotate at a second preset speed. Among them, the first preset speed is less than the second preset speed. In this way, when the food processor is in different running modes, the speed of the driving device 40 is different, so as to improve the chopping efficiency in different modes and improve the user experience.
[0047] In this embodiment, the driving device 40 is a motor.
[0048] Optionally, the first preset speed is greater than or equal to 10000 rpm and less than or equal to 15000 rpm. In this way, the motor shaft drives the first knife holder shaft 31 to rotate at the above speed, so as to prevent the first knife 32 and the second knife 33 from damaging the fibers of the food material, retain the nutritional value of the food material, and improve the user's taste.
[0049] As shown in Figure 1 and Figure 3 , the second cover body 150 is provided with a window 151, and the user can observe the chopping condition of the food processor through the window 151, which facilitates the user to operate the food processor and improves the user experience.
[0050] As shown in Figure 1As shown, the base 10 has a first mounting portion 11, and the receiving box 50 has a second mounting portion, the first mounting portion 11 is connected with the second mounting portion to realize the cooperation of the base 10 and the receiving box 50. In this way, the user operates the receiving box 50 to connect the first mounting portion 11 with the second mounting portion, and then the base 10 and the receiving box 50 are in the cooperation state, so that the disassembly and assembly of the base 10 and the receiving box 50 are more easy and convenient, and the difficulty of disassembly and assembly is reduced. In addition, when the base 10 and the receiving box 50 are in the cooperation state, the above-mentioned arrangement makes the connection of the base 10 and the receiving box 50 more stable, and prevents the two from being separated from each other to affect the normal operation of the driving device 40.
[0051] In the embodiment, the first mounting portion 11 is a recess, and the second mounting portion is a protrusion, the protrusion extends into the recess and is limited and stopped by the recess. In this way, the above-mentioned arrangement makes the structure of the first mounting portion 11 and the second mounting portion more simple, easy to process and realize, and reduces the processing cost of the food processor.
[0052] Embodiment Two
[0053] The food processor in Embodiment Two is different from that in Embodiment One in that the structure of the food processor is different.
[0054] In the embodiment, the food processor further comprises a detection assembly and a control module, the control module is connected with the driving device, and the detection assembly comprises a detection structure and a detected piece. The detection structure is arranged on the base and connected with the control module. The detected piece is arranged on the outer surface of the second containing structure. When the detection structure detects the detected piece, the detection structure sends a signal to the control module, and the control module controls the driving device to start after receiving the signal. In this way, only when the detection structure detects the detected piece, the driving device can start to prevent the third cutter from rotating without need of stirring and misinjuring the user, and the use safety of the food processor is improved.
[0055] Specifically, when the second containing structure is in the cooperation state with the first containing structure, the detection structure detects the detected piece, the detection structure sends a signal to the control module, the control module controls the driving device to start after receiving the signal, and the driving shaft of the driving device drives the third cutter to rotate to stir the food material. When the second containing structure is separated from the first containing structure, the detection structure does not detect the detected piece, and the driving device is stopped to stop the third cutter from running.
[0056] From the above description, it can be seen that the above-mentioned embodiments of the present application achieve the following technical effects:
[0057] In the process of using the food processor, when the user needs to chop the vegetables, the first processing assembly is operated to be arranged in the first containing structure, the food processor is in the chopping vegetable mode, the first cutter cuts the vegetables into larger vegetable pieces, the larger vegetable pieces are gathered on the second cutter under the action of centrifugal force, and the second cutter cuts the larger vegetable pieces into vegetable pieces of a required size (smaller), and the vegetable pieces of the required size are discharged after falling into the first containing structure, so that the food materials are prevented from being excessively chopped, and the eating feeling of the user is improved. When the user needs to chop the meat and seafood, the second processing assembly is operated to be arranged in the first containing structure, the food processor is in the chopping meat and seafood mode, and the third cutter chops the meat and seafood into a paste for making stuffing food. Therefore, the food processor has at least two operation modes, and the user can select different operation modes for different food materials, thereby solving the problem that the commercial food processor and the meat grinder in the prior art have a single function and cannot meet the use requirements of the user, and improving the use experience of the user.
[0058] Obviously, the above-described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should belong to the protection scope of the present application.
[0059] It should be noted that the terms used herein are only intended to describe specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form, unless the context clearly indicates otherwise, and it should also be understood that, when the terms "comprise" and / or "include" are used in the specification, it means that there is a feature, step, work, device, component and / or combination thereof.
[0060] It should be noted that the terms "first", "second", and the like used in the specification and claims of the present application and the above-described drawings are used to distinguish similar objects, and do not necessarily indicate a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein.
[0061] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A food processor, characterized in that, include: Base (10); A first receiving structure (20) is disposed on the base (10); A first processing component may be disposed within the first receiving structure (20). The first processing component includes a first tool post shaft (31) and a first tool (32) and a second tool (33) disposed on the first tool post shaft (31). The first tool (32) and the second tool (33) are spaced apart along the extension direction of the first tool post shaft (31). The second processing component may be disposed within the first receiving structure (20). The second processing component includes a second tool post shaft (110) and a third tool (120) disposed on the second tool post shaft (110). The first processing component and the second processing component are selectively disposed within the first receiving structure (20). The food processor has a vegetable grinding mode and a meat grinding mode. When the food processor is in the vegetable grinding mode, the first processing component is disposed within the first receiving structure (20); when the food processor is in the meat grinding mode, the second processing component is disposed within the first receiving structure (20). The food processor also includes a drive unit (40) disposed on the base (10), and the second processing component further includes: The second receiving structure (130) is provided with the second tool holder shaft (110) and the third tool (120) inside the second receiving structure (130). The drive shaft of the drive device (40) passes through the first receiving structure (20) and the second receiving structure (130) and is connected to the second tool holder shaft (110) to drive the second tool holder shaft (110) to rotate the third tool (120). The first receiving structure (20) has a discharge port (21), and the first processing component further includes: The receiving box (50) is detachably connected to the machine base (10). When the receiving box (50) and the machine base (10) are in a mating state, the receiving port (51) of the receiving box (50) is connected to the discharge port (21), and the surface of the machine base (10) facing the receiving box (50) is adapted to the outer surface of the receiving box (50). The food processor also includes a drive unit (40) and a first magnetic proximity switch (210). The first magnetic proximity switch (210) is connected to a first circuit for connecting the drive unit (40) and a power supply to control the on / off state of the first circuit. The drive unit (40) is mounted on the base (10). The drive end of the drive unit (40) is connected to the first blade holder shaft (31) to drive the first blade holder shaft (31) to rotate the first blade (32) and the second blade (33). The first processing assembly also includes: The first magnetic structure (100) is provided on one of the base (10) and the receiving box (50), and the first magnetic proximity switch (210) is provided on the other of the base (10) and the receiving box (50). When the first magnetic proximity switch (210) senses the first magnetic structure (100), the first magnetic proximity switch (210) controls the first circuit to be in a closed state.
2. The food processor according to claim 1, characterized in that, The third cutting tool (120) includes: First blade (121); Second blade (122); A connecting bracket (123) is sleeved on the second tool holder shaft (110). One side of the connecting bracket (123) is connected to the first blade (121), and the other side of the connecting bracket (123) is connected to the second blade (122). The first blade (121) and the second blade (122) are spaced apart along the extension direction of the second tool holder shaft (110).
3. The food processor according to claim 2, characterized in that, The third cutting tool (120) also includes: The first protective sleeve (124) is fitted over the first blade (121); The second protective sleeve (125) is fitted over the second blade (122).
4. The food processor according to claim 1, characterized in that, The food processor also includes a second magnetic proximity switch (220), which is connected to a second circuit for connecting the drive unit (40) and the power supply to control the on / off state of the second circuit. The second processing component also includes: The second magnetic structure (140) is provided on one of the base (10) and the second receiving structure (130), and the second magnetic proximity switch (220) is provided on the other of the base (10) and the second receiving structure (130). When the second magnetic proximity switch (220) senses the second magnetic structure (140), the second magnetic proximity switch (220) controls the second circuit to be in the open state.
5. The food processor according to claim 1, characterized in that, The food processor also includes a detection component and a control module, the control module being connected to the drive device (40), and the detection component including: The detection structure is mounted on the base (10) and connected to the control module; The object to be tested is disposed on the outer surface of the second receiving structure (130). When the detection structure detects the object to be tested, the detection structure sends a signal to the control module. After receiving the signal, the control module controls the drive device (40) to start.
6. The food processor according to claim 1, characterized in that, The food processor also includes a snap-fit assembly (80), and the first processing assembly further includes: The first cover (60) has a feed inlet (61) and is snapped into the base (10) by the snap-fit assembly (80); The pusher structure (70) is used to push the food into the feed inlet (61); The second processing component further includes: The second cover (150) is snapped into the base (10) by the snap-fit assembly (80).
7. The food processor according to claim 1, characterized in that, The food processor also includes: The control module is connected to the drive device (40); when the food processor is in the vegetable grinding mode, the control module controls the drive device (40) to rotate at a first preset speed; when the food processor is in the meat and seafood grinding mode, the control module controls the drive device (40) to rotate at a second preset speed; wherein, the first preset speed is less than the second preset speed.
Citation Information
Patent Citations
Food processor
CN208957846U
Food processer
CN212394696U