Food processor

By installing a second control device and a heating device on the cylinder and controlling their connection or disconnection via a control switch, the problem of the cylinder being unable to be heated after the machine head is separated from the cylinder is solved, thus realizing the functional expansion of independent heating of the cylinder.

CN114886315BActive Publication Date: 2026-04-21SHENZHEN TRANSSION HLDG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN TRANSSION HLDG CO LTD
Filing Date
2022-05-06
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing food processors have limited functionality because the cylinder cannot be heated independently after the machine head is separated from the cylinder.

Method used

A second control device and a heating device are installed on the cylinder, and the connection or disconnection between them and the heating device is controlled by a control switch. When the machine head is combined with the cylinder, the control mode can be switched to achieve independent heating.

Benefits of technology

This allows the cylinder to be heated independently when separated from the machine head, expanding the application scenarios and functions of the food processor.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a food processor, characterized by comprising a machine head, on which a first control device is disposed; a cylinder, on which a second control device and / or a heating device are disposed; and a control switch for controlling the connection or disconnection between the second control device and the heating device. This food processor achieves the function of heating food through the cylinder.
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Description

Technical Field

[0001] This application relates to the field of food processing equipment technology, specifically to a food processing machine. Background Technology

[0002] Heating and stirring are two common functions found in food processors. Generally, for ease of operation, the control devices for these functions are located on the processor head, while the heating element is usually mounted on the drum. When the processor head is attached to the drum, the control devices on the head and the heating element form a complete control circuit, allowing control of the heating element. However, when the processor head is separated from the drum, the drum itself can no longer heat the food, which requires improvement.

[0003] The preceding description is intended to provide general background information and does not necessarily constitute prior art. Summary of the Invention

[0004] To address the aforementioned technical problems, this application provides a food processor that can heat food through a cylindrical body.

[0005] To solve the above-mentioned technical problems, this application provides a food processing machine, comprising:

[0006] The machine head is equipped with a first control device.

[0007] A cylindrical body, on which a second control device and / or a heating device are provided;

[0008] A control switch controls the connection or disconnection between the second control device and the heating device.

[0009] Optionally, when the machine head cover is placed on the cylinder, the first control device and the heating device form a first control circuit.

[0010] Optionally, the control switch includes a micro switch and a push rod for controlling the micro switch, wherein the movement of the push rod causes the micro switch to be in a first state and a second state.

[0011] Optionally, when the micro switch is in the first state, the second control device is connected to the heating device.

[0012] Optionally, when the micro switch is in the second state, the second control device is disconnected from the heating device.

[0013] Optionally, an assembly cavity is formed inside the cylinder, and the micro switch and the push rod are disposed in the assembly cavity. The push rod can move up and down in the assembly cavity. A guide slope is formed on the side of the push rod facing the micro switch, and the push rod is connected to the micro switch through the guide slope.

[0014] Optionally, a guide hole is formed on the side wall of the assembly cavity, and the control switch further includes an actuating plate located outside the cylinder. The actuating plate passes through the guide hole and is connected to the push rod. The actuating plate can move up and down within the guide hole.

[0015] Optionally, the push rod includes a guide portion having the guide slope and a push rod portion, and an assembly hole communicating with the top of the cylinder is formed in the assembly cavity. The push rod portion is connected to the upper part of the guide portion and passes through the assembly hole.

[0016] Optionally, a damping layer is provided on at least one of the sidewalls of the guide hole and the sidewalls of the portion of the actuating piece that extends into the guide hole, wherein the damping layer is provided so that the actuating piece remains stationary without external force.

[0017] Optionally, a protrusion is formed on the side wall of the guide hole, protruding into the guide hole, and the actuating piece is supported on the protrusion after being pushed upward.

[0018] Optionally, a first magnetic conductor is provided on the machine head, and a second magnetic conductor is provided on the control switch. The positions of the first magnetic conductor and the second magnetic conductor are adapted to each other, and the movement of the control switch is controlled by the magnetic force between the first magnetic conductor and the second magnetic conductor.

[0019] Optionally, a second magnetic conductor is provided on the push rod included in the control switch. The push rod also includes a guide portion with a guide slope. An assembly hole communicating with the top of the cylinder is formed in the cylinder body. The second magnetic conductor is connected to the upper part of the guide portion and passes through the assembly hole.

[0020] Optionally, the control switch further includes a reset spring, which is sleeved on the push rod, with one end of the reset spring pressed against the inner wall of the assembly cavity and the other end pressed against the push rod.

[0021] This application also provides a food processing machine, comprising:

[0022] A cylindrical body, on which a second control device and / or a heating device are provided;

[0023] A control switch is used to connect or disconnect the second control device from the heating device.

[0024] When the machine head is placed on the cylinder, the machine head restricts the state of the control switch to disconnect the connection between the second control device and the heating device.

[0025] Optionally, the control switch includes a micro switch and a push rod, the push rod being movably disposed inside the cylinder, and the machine head restricting the position of the push rod to disconnect the connection between the second control device and the heating device.

[0026] Optionally, an assembly cavity is formed inside the cylinder, and the push rod can move up and down inside the assembly cavity. A guide slope is formed on the side of the push rod facing the micro switch. The push rod is connected to the micro switch through the guide slope, and the guide slope controls the micro switch by sliding relative to the micro switch.

[0027] Optionally, the cylinder has an assembly hole communicating with the top of the cylinder, and the push rod passes through the assembly hole. When the machine head is placed on the cylinder, the machine head presses the push rod so that the push rod is always in the position of pressing the micro switch, and the connection between the second control device and the heating device is cut off through the micro switch.

[0028] Optionally, when the micro switch is in the first state that connects the second control device to the heating device, the push rod extends out of the mounting hole. When the machine head is placed on the cylinder, a gap is formed between the machine head and the cylinder at the control switch. The distance of the gap is less than the height of the push rod extending out of the mounting hole when the micro switch is in the first state.

[0029] Optionally, the machine head is provided with a first magnetic conductor, and the control switch includes a second magnetic conductor. The second magnetic conductor is disposed inside the cylinder. The first magnetic conductor and the second magnetic conductor are disposed opposite to each other, and the movement of the second magnetic conductor is restricted by magnetic force to disconnect the connection between the second control device and the heating device.

[0030] Optionally, the control switch includes a micro switch connected to the second magnetic conductor. The first magnetic conductor uses magnetic force to keep the second magnetic conductor in the position of pressing the micro switch, and the connection between the second control device and the heating device is cut off through the micro switch.

[0031] This application also provides a food processing machine, comprising:

[0032] Machine head;

[0033] A cylindrical body, on which a second control device and / or a heating device are provided;

[0034] A control switch is used to connect or disconnect the second control device from the heating device.

[0035] The selection module allows for switching between a first mode and a second mode when the head cover is placed on the cylinder.

[0036] Optionally, in the first mode, the control switch includes a first state that connects the second control device to the heating device.

[0037] Optionally, in the second mode, the control switch includes a second state in which the second control device is disconnected from the heating device.

[0038] Optionally, the control switch includes a micro switch and a push rod. The push rod is movably disposed inside the cylinder. The push rod is connected to the micro switch and controls the opening and closing of the micro switch by its own movement. In turn, the connection and disconnection between the second control device and the heating device are controlled by the micro switch.

[0039] Optionally, an assembly hole communicating with the upper end of the cylinder is formed inside the cylinder, and the end of the push rod away from the micro switch protrudes from the assembly hole.

[0040] Optionally, the selection module includes a clearance hole and a plug. The clearance hole is formed on the machine head at a position corresponding to the push rod, and the plug is detachably disposed in the clearance hole. When the selection module is in the first mode, the plug is removed from the clearance hole, and the push rod moves freely in the cylinder to make the control switch in the first state or the second state.

[0041] Optionally, when the selection module is in the second mode, the plug is disposed in the clearance hole, and the plug presses against the push rod to put the control switch in the second state.

[0042] Optionally, the control switch includes a micro switch and a second magnetic conductor. The second magnetic conductor is movably disposed inside the cylinder. A first magnetic conductor is formed on the machine head. The first magnetic conductor and the second magnetic conductor are disposed opposite to each other. The second magnetic conductor is driven to move by the magnetic force between the first magnetic conductor and the second magnetic conductor. The second magnetic conductor is connected to the micro switch and controls the opening and closing of the micro switch by its own movement. In turn, the connection and disconnection between the second control device and the heating device are controlled by the micro switch.

[0043] Optionally, the magnetic poles at opposite ends of the first and second magnetic conductors are opposite. The selection module includes a rotating shaft and a baffle. The rotating shaft is disposed on the cylinder or machine head, and the baffle is rotatably disposed on the rotating shaft. When the selection module is in the first mode, the baffle is located between the first and second magnetic conductors, and the baffle presses against the second magnetic conductor to make the control switch in the first state.

[0044] Optionally, when the selection module is in the second mode, the baffle is offset between the first magnetic conductor and the second magnetic conductor, and the first magnetic conductor attracts the second magnetic conductor, so that the control switch is in the second state.

[0045] This invention provides a food processing machine, comprising:

[0046] Machine head;

[0047] cylindrical body;

[0048] A stirring device, one end of which is connected to the machine head, and the other end of which is rotatably supported on the cylinder;

[0049] A stirring control device is installed on the cylinder to control the stirring device.

[0050] Preferably, the stirring device includes a motor mounted on the head and a stirring blade connected to the motor.

[0051] Preferably, the stirring device further includes a first power connection device, a second power connection device, and a power connection switch. The first power connection device is disposed between the stirring control device and the stirring blade, the second power connection device is disposed between the motor and the stirring blade, and the power connection switch is connected to the first power connection device and the second power connection device. The first power connection device controls the connection and disconnection of power between the stirring control device and the stirring blade, and the second power connection device controls the connection and disconnection of power between the motor and the stirring blade.

[0052] Preferably, the stirring control device includes a transmission device and a rocker arm, wherein the rocker arm is connected to the stirring device through the transmission device and drives the stirring device to rotate.

[0053] Preferably, the stirring device includes a motor disposed on the head and a stirring blade connected to the motor, and the transmission device includes a first bevel gear and a second bevel gear, the first bevel gear being connected to the stirring blade and the second bevel gear being connected to the crank handle, and the first bevel gear meshing with the second bevel gear.

[0054] Preferably, the machine head is provided with a first control device for controlling the stirring device.

[0055] As described above, the food processing machine provided in this application is applied in the field of food processing equipment. A second control device for controlling the heating device and a control switch are provided on the cylinder body to realize the control of the heating device by the second control device. Attached Figure Description

[0056] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application. To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, those skilled in the art can obtain other drawings based on these drawings without any creative effort.

[0057] Figure 1 This is a cross-sectional structural diagram of the food processing machine provided in the first embodiment of this application;

[0058] Figure 2 for Figure 1 A partial cross-sectional view of the cylinder of the food processor with the lever locked after the machine head is lifted.

[0059] Figure 3 for Figure 1 A partial cross-sectional view of the cylinder of the food processor with the lever in the open position after the machine head is lifted;

[0060] Figure 4 for Figure 1 A partial three-dimensional structural diagram of the handle of a food processor.

[0061] Figure 5 for Figure 4 Enlarged structural diagram of the area within the middle circle;

[0062] Figure 6 for Figure 1 A schematic diagram of the axial structure of the center toggle switch;

[0063] Figure 7 This is a schematic diagram of the guide hole structure in the food processing machine provided in the second embodiment of this application;

[0064] Figure 8 This is a cross-sectional structural diagram of the food processing machine provided in the third embodiment of this application;

[0065] Figure 9 for Figure 8 Enlarged view of the area circled in the middle;

[0066] Figure 10 This is a circuit connection block diagram of the food processor provided in the fourth embodiment of this application;

[0067] Figure 11 This is a partial cross-sectional view of the actuating plate of the food processor provided in the eighth embodiment of this application after the machine head and the cylinder are combined.

[0068] Figure 12 for Figure 11 A schematic diagram of the partial cross-section structure after the plug has been removed;

[0069] Figure 13 This is a cross-sectional structural diagram of the food processing machine provided in the ninth embodiment of this application;

[0070] Figure 14 This is a schematic diagram of the structure of the food processing machine provided in the eleventh embodiment of this application;

[0071] Figure 15 This is a circuit connection block diagram of the food processor provided in the eleventh embodiment of this application.

[0072] The realization of the objectives, functional features, and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. The accompanying drawings have illustrated specific embodiments of this application, which will be described in more detail below. These drawings and textual descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concepts of this application to those skilled in the art through reference to specific embodiments. Detailed Implementation

[0073] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0074] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, components, features, and elements with the same names in different embodiments of this application may have the same meaning or different meanings, the specific meaning of which must be determined by its interpretation in that specific embodiment or further in conjunction with the context of that specific embodiment.

[0075] It should be understood that although the terms first, second, third, etc., may be used herein to describe various information, such information should not be limited to these terms. These terms are used only to distinguish information of the same type from one another. For example, without departing from the scope of this document, first information may also be referred to as second information, and similarly, second information may also be referred to as first information. Depending on the context, the word "if," as used herein, may be interpreted as "when," "when," or "in response to determination." Furthermore, as used herein, the singular forms "a," "an," and "the" are intended to also include the plural forms unless the context indicates otherwise. It should be further understood that the terms "comprising," "including," indicate the presence of the stated feature, step, operation, element, component, item, kind, and / or group, but do not exclude the presence, occurrence, or addition of one or more other features, steps, operations, elements, components, items, kinds, and / or groups. The terms "or," "and / or," "including at least one of the following," etc., as used in this application, may be interpreted as inclusive, or mean any one or any combination thereof. For example, "including at least one of the following: A, B, C" means "any one of the following: A; B; C; A and B; A and C; B and C; A and B and C." Similarly, "A, B, or C" or "A, B, and / or C" means "any one of the following: A; B; C; A and B; A and C; B and C; A and B and C." Exceptions to this definition only occur when the combination of elements, functions, steps, or operations is inherently mutually exclusive in some way.

[0076] It should be understood that although the steps in the flowcharts of this application's embodiments are shown sequentially according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some of the steps in the figures may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily completed at the same time, but can be executed at different times, and their execution order is not necessarily sequential, but can be performed alternately or in turn with other steps or at least a portion of the sub-steps or stages of other steps.

[0077] Depending on the context, the words “if” or “suppose” as used here can be interpreted as “when” or “in response to determination” or “in response to detection.” Similarly, depending on the context, the phrases “if determination” or “if detection (of the stated condition or event)” can be interpreted as “when determination” or “in response to determination” or “when detection (of the stated condition or event)” or “in response to detection (of the stated condition or event).”

[0078] It should be understood that the specific embodiments described herein are merely illustrative of this application and are not intended to limit this application.

[0079] In the following description, the use of suffixes such as "module," "part," or "unit" to denote elements is solely for the purpose of illustration and has no specific meaning in itself. Therefore, "module," "part," or "unit" may be used interchangeably.

[0080] Example 1

[0081] See Figures 1-6 This food processor includes a machine head 10, a cylinder 20, and a control switch 30. A first control device 12 (see [link to control device]) is installed on the machine head. Figure 10 ) and stirring device 11, and a second control device 24 (see) is provided on the cylinder 20. Figure 10 The second control device 24 and the heating device 21 are connected by a control switch 30, which controls the connection or disconnection between the second control device 24 and the heating device 21. When the control switch 30 connects the second control device 24 to the heating device 30, the second control device 24 can control the heating device 30; when the control device 30 disconnects the second control device 24 from the heating device 30, the second control device 24 no longer controls the heating device 21. It should be noted that in this embodiment, connection and disconnection can refer to the physical connection and disconnection of the circuit between the second control device 24 and the heating device 21, or it can refer to the connection and disconnection of the control signal between the second control device 24 and the heating device 21.

[0082] In this embodiment, when the machine head 10 is placed on the cylinder 20, one end of the stirring device 11 is connected to the machine head 10, and the other end extends into the cylinder 20 and is rotatably supported on the cylinder 20. The machine head 10 can control the stirring device 11 through the first control device 12. When the machine head 10 is placed on the cylinder 20, the first control device 12, such as a control panel, is formed on the food processor, and a first control circuit is formed between it and the heating device 21. The machine head 10 can control the heating device 21 through the first control circuit on the machine head 10; and when the machine head 10 is removed from the cylinder 20, the second control device 24 can be connected to the heating device 21 through the control switch 30, and the heating device 21 can be controlled through the second control device 24, so that the food processor can meet more needs when only the cylinder 20 is used.

[0083] Optionally, a first electrical coupler 14 is provided on the machine head 10, and a second electrical coupler 22 is provided on the cylinder 20. When the machine head 10 and the cylinder 20 are connected as a single unit, the first electrical coupler 14 and the second electrical coupler 22 are coupled together to achieve electrical conduction. The first control device 12 is electrically connected to the first electrical coupler 14, and the second electrical coupler 22 is electrically connected to the heating device 21. That is, the first control device 12 is connected to the heating device 21 in sequence through the first electrical coupler 14 and the second electrical coupler 22 to form a first control circuit.

[0084] Heating device 21 is located at the bottom of cylinder 20. Second control device 24, such as a switch or control panel, forms a second control circuit with heating device 21. Control switch 30 controls the connection or disconnection of the second control circuit.

[0085] Optionally, a handle 23 protrudes outward from the outer wall of the cylinder 20. An assembly cavity 231 is provided inside the handle 23, and an assembly hole 232 communicating with the assembly cavity 231 is provided at the top of the handle 23. The control switch 30 includes a push rod 31 and a micro switch 32. The push rod 31 is movable, particularly capable of vertical movement, and is disposed within the assembly cavity 231. One end of the push rod 31 extends upward through the assembly hole 232, and the other end of the push rod 31 is connected to the micro switch 32 located on the side of the push rod 31 via a guide bevel 33. The movement of the push rod 31 causes the micro switch 32 to have a first state and a second state. When the micro switch 32 is in the first state, the second control device 24 is connected to the heating device 21, and the second control device 24 can control the heating device 21. When the micro switch 32 is in the second state, the second control device 24 is disconnected from the heating device 21, and the second control device 24 no longer controls the heating device 21.

[0086] Optionally, the push rod 31 can press the button or pressure plate of the micro switch 32 by moving itself, thereby controlling the state of the micro switch 32.

[0087] In other embodiments, the push rod 31 can also drive the micro switch 32 to move by its own movement, so as to change the position of the micro switch 32 and thus make the micro switch 32 have different states.

[0088] like Figure 1 , Figure 5 and Figure 6 As shown, the control switch 30 of the food processor also includes a toggle piece 34 connected to the push rod 31. The toggle piece 34 is located outside the handle 23. A guide hole 233 is provided on the side wall of the assembly cavity 231. The toggle piece 34 passes through the guide hole 233 and connects to the push rod 31. The toggle piece 34 can move up and down in the guide hole 233. In use, the push rod 31 is driven to move by moving the toggle piece 34 up and down, thereby changing the state of the micro switch 32.

[0089] Optionally, from the lower part to the upper part of the push rod 31, the guide slope 33 gradually slopes towards the micro switch 32. In this structure, if the push rod 31 is lifted upward, it will move away from the micro switch 32; if the push rod 31 moves downward, it will push the micro switch 32.

[0090] For example, when the toggle switch 34 is lifted upwards, the push rod 31 moves upwards, and the guide slope 33 on the push rod 31 moves away from the button or pressure plate of the micro switch 32. At this time, the micro switch 32 is in the first state, and the second control device 24 can control the heating device 21, so that the cylinder 20 can be heated independently. When the toggle switch 34 moves downwards, the push rod 31 moves downwards, and the guide slope 33 on the push rod 31 presses the button or pressure plate of the micro switch 32. At this time, the micro switch 32 is in the second state, and the second control device 24 is disconnected from the heating device 21. At this time, the second control device 24 no longer controls the heating device 21, and the cylinder 20 cannot be heated independently.

[0091] Understandably, the tilt direction of the guide slope 33 can be set as needed, as long as it allows the push rod 31 to press or move away from the micro switch 32 when it moves. Correspondingly, the correspondence between the movement direction of the push rod 31 and the state of the micro switch 32 can also be set as needed.

[0092] Alternatively, since one end of the push rod 31 extends upward through the assembly hole 232, the guiding effect of the push rod 31 itself can be used to improve the stability of the internal displacement of the product.

[0093] The control switch 30 of the food processor also includes a return spring 35, which is sleeved on the push rod 31. One end of the return spring 35 is pressed against the inner wall of the assembly cavity 231, and the other end is pressed against the push rod 31. The return spring 35 is a compression spring, and it deforms when the actuating plate 34 is pushed upward.

[0094] Optionally, the push rod 31 can be reset by the elastic action of the return spring 35, thereby improving the stability of the product.

[0095] Optionally, a damping layer (not shown) is provided on at least one of the sidewalls of the guide hole 233 and the sidewall of the portion of the toggle piece 34 extending into the guide hole 233. The damping layer ensures that the toggle piece 34 remains stationary without external force. More specifically, the resistance generated by the damping layer needs to be greater than the sum of the weight of the toggle piece 34 and the push rod 31, and the restoring force of the return spring 35 acting on the toggle piece 34. With the above configuration, when the toggle piece 34 moves upward and puts the micro switch 32 in the first motion state, the toggle piece 34 can remain stationary within the guide hole 233, so that the micro switch 32 is stably in the first state.

[0096] Optionally, the control switch 30 of the food processor also includes a guide boss 234 disposed on the top of the handle 23 and extending into the assembly cavity 231. The inner cavity of the guide boss 234 is connected to the assembly hole 232, and one end of the push rod 31 is inserted into the inner cavity of the guide boss 234.

[0097] Optionally, an anti-detachment boss 311 is provided on the outer wall of the push rod 31, and the return spring 35 is located between the end face of the guide boss 234 and the anti-detachment boss 311.

[0098] Optionally, the push rod 31 includes a guide portion 312 with a guide ramp 33 and a push rod portion 313 located within the assembly cavity 231 and above the guide portion 312. One end of the push rod portion 313 abuts against the guide portion 312, and the other end is inserted into the inner cavity of the guide boss 234. The aforementioned actuating piece 34 is connected to the guide portion 312, and the anti-disengagement boss 311 is disposed on the push rod portion 313.

[0099] Optionally, the top rod portion 313 improves the stability of the guide portion 312 during movement, and the separate arrangement of the top rod portion 313 and the guide portion 312 makes the push rod 31 easier to assemble.

[0100] Understandably, in other embodiments, the top rod portion 313 and the guide portion 312 may be formed as an integral structure.

[0101] Optionally, two positioning posts 235 are provided on the inner wall of the assembly cavity 231. The positioning posts 235 are located next to the guide hole 233, and the micro switch 32 is provided with positioning holes corresponding to the positioning posts 235.

[0102] Optionally, the handle 23 is provided with an upwardly protruding guide rod 236, and the machine head 10 is provided with a downwardly opening guide groove 15, in which the guide rod 236 is inserted. In this embodiment, the guide rod 236 and the guide groove 15 enable quick positioning between the handle 23 and the machine head 10. The aforementioned mounting hole 232 is located on the outside of the guide rod 236.

[0103] In other embodiments, the micro switch 32 may also be located below the guide portion 312. When the micro switch 32 is located below the guide portion 312, the bottom of the push rod 31 can be set to a flat surface to facilitate triggering the button or pressure plate on the micro switch 32.

[0104] Example 2

[0105] Please refer to Figure 7 The second embodiment of this application is basically the same as the first embodiment, except that, in order to fix the toggle piece 34 after it is pushed upward, a protrusion 237 is formed on the side wall of the guide hole 233, which protrudes into the guide hole 233. When the toggle piece 34 is pushed upward, it can rest on the protrusion 237 to prevent the toggle piece 34 from moving downward.

[0106] Example 3

[0107] Please continue to refer to Figure 8 and Figure 9 The third embodiment of this application is basically the same as the above embodiments, except that the control switch 30 is no longer controlled by a toggle switch 34. The control switch 30 includes a first magnetic conductor 17 disposed on the machine head 10, and a second magnetic conductor 314 disposed on the control switch 30, specifically the push rod 31. The push rod 31 is movably disposed in the assembly cavity 231, and the second magnetic conductor 314 of the push rod 31 extends upward through the assembly hole 232 and can slide within the assembly hole 232. The position of the second magnetic conductor 314 corresponds to the position of the first magnetic conductor 17. The movement of the control switch 30 is controlled by the magnetic force between the first magnetic conductor 17 and the second magnetic conductor 314, specifically by adjusting the position of the push rod 31.

[0108] In this embodiment, the first magnetic conductor 17 and the second magnetic conductor 314 have opposite magnetic poles at their opposite ends. A return spring 35 is sleeved on the second magnetic conductor 314, with one end pressed against the inner wall of the cylinder 20 and the other end pressed against the second magnetic conductor 314. When the machine head 10 is mounted on the cylinder 20, the first magnetic conductor 17 drives the second magnetic conductor 314 upwards through magnetic force, causing the return spring 35 to compress and deform. When the machine head 10 is removed from the cylinder 20, the return spring 35 pushes the push rod 31 to reset. The guide slope 33 on the push rod 31 gradually tilts towards the location of the micro switch 32 from the direction near the machine head 10 to the direction away from the machine head 10.

[0109] That is, in this embodiment, the actuating piece 34 is replaced by the second magnetic conductor 314, and a first magnetic conductor 17 is added to the head 10. Through the magnetic force of the first magnetic conductor 17 and the second magnetic conductor 314, the micro switch 32 can be automatically adjusted when the head 10 is set on the cylinder 20, thus eliminating the need for the actuating piece 34. Optionally, the second magnetic conductor 314 is set at the position of the top rod 313, and the second magnetic conductor 314 also serves as a guide.

[0110] Optionally, the guide portion 312 on the push rod 31 can be fixed to one end of the second magnetic conductor 314 extending into the barrel 20 by adhesive bonding or grounding; the end of the second magnetic conductor 314 away from the guide portion 312 extends out from the assembly hole 232, and the assembly cavity 231 has sufficient space for the push block 31 to slide up and down.

[0111] The first magnetic conductor 17 can be encapsulated inside the head 10 or the end face of the first magnetic conductor 17 can be exposed on the surface of the head 10.

[0112] Optionally, the anti-detachment boss 311 can be disposed on one end of the second magnetic conductor 314 facing the guide portion 312, and the other end of the reset spring 35 is pressed against the anti-detachment boss 311.

[0113] When the machine head 10 is engaged with the cylinder 20, the first magnetic conductor 17, through the attraction between itself and the second magnetic conductor 314, drives the push rod 31 upward. The guide slope 33 on the push rod 31 approaches the button or pressure plate of the micro switch 32. At this time, the micro switch 32 is in the second state, and the heating device 21 is disconnected from the second control device 24. At this time, the cylinder 20 cannot be heated independently. When the machine head 10 is separated from the cylinder 20, the return spring 35 pushes the second magnetic conductor 314 downward. The guide slope 33 on the push rod 31 moves away from the button or pressure plate of the micro switch 32. At this time, the micro switch 32 is in the first state, and the heating device 21 is connected to the second control device 24. The cylinder 20 can be heated independently.

[0114] Example 4

[0115] Please see Figure 10 In the fourth embodiment of this application, the micro switch 32 is located between the second control device 24 and the heating device 21. When the machine head 10 is combined with the cylinder 20, the first control device 12 is connected to the heating device 21 and the stirring device 11. This arrangement enables control of the connected circuit.

[0116] With the above settings, the heating device 21 can be controlled independently via the electronic control board 24 on the cylinder 20 when the machine head 10 is removed from the cylinder 20.

[0117] Example 5

[0118] The fifth embodiment provided in this application is basically the same as the above embodiments, except that the heating device 21 is no longer disposed on the cylinder 20, but is disposed on the head 10 together with the stirring device 11. At this time, the second control device 24 will form a second control circuit with the heating device 21 after the head 10 is placed on the cylinder 20.

[0119] That is, when the machine head 10 is placed on the cylinder 20, the second control device 24 on the cylinder 20 can control the heating device 21 by controlling the control switch 30.

[0120] When the first control device 12 on the machine head 10 is damaged, the second control device 24 can be used as a backup to control the heating device 21.

[0121] Alternatively, in this embodiment, the stirring device 11 can also be controlled by the second control device 24 on the cylinder 20 through the control switch 30.

[0122] The configuration of the control switch 30 can be referred to in the above embodiments.

[0123] Example 6

[0124] Please continue reading Figures 1 to 6 In this embodiment, similar to the embodiments described above, the food processor also includes a machine head 10, a cylinder 20, and a control switch 30. A second control device 24 and a heating device 21 are disposed on the cylinder 20. The control switch 30 can also control the connection or disconnection between the second control device 24 and the heating device 21. The difference is that when the machine head 10 is placed on the cylinder 20, the machine head 10 restricts the state of the control switch 30 to disconnect the connection between the second control device 24 and the heating device 21.

[0125] In this embodiment, the connection between the second control device 24 and the heating device 21 is disconnected by limiting the state of the control switch 30 at the machine head 10. When the mechanism 10 is placed on the cylinder 20, the connection between the second control device 24 and the heating device 21 can be blocked, so that the second control device 24 can no longer control the heating device 21.

[0126] Optionally, the control switch 30 includes a micro switch 32 and a push rod 31. The push rod 31 is movably disposed inside the cylinder 20. The machine head 10 can disconnect the connection between the second control device 24 and the heating device 21 by limiting the position of the push rod 31.

[0127] The configuration of the push rod 31 and the micro switch 32 can be referenced from the relevant structure in Embodiment 1. It is important to note that an assembly cavity 231 can be formed inside the cylinder 20, within which the push rod 31 can move up and down. A guide slope 33 is formed on the side of the push rod 31 facing the micro switch 32. The push rod 31 connects to the micro switch 32 via the guide slope 33, and the guide slope 33 controls the micro switch 32 by sliding relative to it.

[0128] The assembly cavity 231 also has an assembly hole 232 that communicates with the top of the cylinder. The push rod 31 can pass through the assembly hole. When the mechanism 10 is placed on the cylinder 20, the machine head 10 presses the push rod 31 so that the push rod 31 is always in the position of pressing the micro switch 32, and the connection between the second control device 21 and the heating device 24 is cut off through the micro switch 32.

[0129] Optionally, when the machine head 10 is engaged with the cylinder 20, a gap is formed between the machine head 10 and the cylinder 20 at the control switch 30. The distance of this gap is less than the height of the push rod 31 extending out of the mounting hole 232 when the micro switch 32 is in the first state. That is, the micro switch 32 can only be in the second state and cannot reach the position of the first state.

[0130] Example 7

[0131] Please continue to refer to Figure 8 and Figure 9 The basic concept of the seventh embodiment of this application is the same as that of the sixth embodiment, but the structure can refer to the relevant form of the third embodiment. It should be emphasized that in this embodiment, the machine head 10 is provided with a first magnetic conductor 17 and a control switch 30. Specifically, the push rod 31 includes a second magnetic conductor 314, which is disposed in the cylinder 20, specifically in the assembly cavity 231, and can pass through the assembly hole 232. The first magnetic conductor 17 and the second magnetic conductor 314 are disposed opposite to each other, and the movement of the second magnetic conductor 314 is restricted by magnetic force to disconnect the connection between the second control device 21 and the heating device 24.

[0132] The control switch 30 also includes a micro switch 32, which is connected to the second magnetic conductor 314. The first magnetic conductor 17 uses magnetic force to keep the second magnetic conductor 314 in the position of pressing the micro switch, and the connection between the second control device 21 and the heating device 24 is cut off through the micro switch 32.

[0133] Optionally, the magnetic poles of the opposite ends of the first magnetic conductor 17 and the second magnetic conductor 314 are opposite, that is, the first magnetic conductor 17 can use magnetic force to pull the second magnetic conductor 314 toward itself to keep it in a suitable position.

[0134] Understandably, in this embodiment, the magnetic poles at the opposite ends of the first magnetic conductor 17 and the second magnetic conductor 314 can also be opposite, that is, the first magnetic conductor 17 can use magnetic force to push the second magnetic conductor 314 away from itself in order to keep it in a suitable position.

[0135] Example 8

[0136] Please refer to Figure 11 and Figure 12 The food processor in this application can be adapted to any one of the structures in Embodiment 1, Embodiment 2, Embodiment 4, Embodiment 5 and Embodiment 6. The difference is that the food processor also includes a selection module. When the machine head 10 is covered on the cylinder 20, the first mode or the second mode can be selected by switching the selection module.

[0137] In the first mode, the control switch 30 includes a first state that connects the second control device 21 to the heating device 24, and in the second mode, the control switch 30 includes a second state that disconnects the second control device 21 from the heating device 24.

[0138] That is, in the above embodiment, when the machine head 10 is placed on the cylinder 20, in order to prevent the second control device 21 on the cylinder 20 from controlling the heating device 24, it is necessary to restrict the state of the control switch 30 through the machine head 10 so that the control switch 30 is in a state of disconnecting the connection between the second control device and the heating device.

[0139] In this embodiment, by setting the selection module, when the selection module is in the second mode, when the machine head 10 is placed on the cylinder 20, the machine head 10 will still restrict the state of the control switch 30, causing it to disconnect the connection between the second control device 21 and the heating device 24; while when the selection module is in the first mode, the machine head 10 can no longer restrict the state of the control switch 30, so that the second control module 21 can control the heating module 24.

[0140] With the above settings, even if the first control device 11 on the machine head 10 is damaged or can no longer control the heating device 24, the second control device 21 can still control the heating device 24 when the machine head 10 is covered by the cylinder 20.

[0141] Optionally, the selection module includes a clearance hole 161 formed on the head 10 at a position corresponding to the push rod 31, and a removable plug 162 disposed within the clearance hole 161. In the first mode, when the plug 162 is removed from the clearance hole 161, the push rod 31 moves freely within the cylinder 20, thereby placing the control switch 30 in either the first or second state. Since the plug 162 is removed from the clearance hole 161, the head 10 no longer needs to limit the push rod 31, and the push rod 31 can directly extend into the clearance hole 161 when raised.

[0142] In the second state, the plug 162 is placed inside the clearance hole 161, and the plug 162 can press the push rod 31 to put the control switch 30 in the second state.

[0143] More specifically, the distance between the plug 162 and the cylinder 20 can be less than the height of the push rod 31 extending out of the assembly hole 232.

[0144] Example 9

[0145] Please see Figure 13 The basic structure of the nine embodiments of this application is basically the same as that of the third and seventh embodiments. In this embodiment, the opposite ends of the first magnetic conductor 17 and the second magnetic conductor 314 need to have different magnetic properties. The difference is that in this embodiment, the control switch 30 can also include a selection module. The function of the selection module is roughly the same as that of the eighth embodiment, that is, it also has a first mode and a second mode.

[0146] In the first mode, the control switch 30 includes a first state that connects the second control device 21 to the heating device 24, and in the second mode, the control switch 30 includes a second state that disconnects the second control device 21 from the heating device 24.

[0147] Optionally, the selection module includes a rotating shaft 371 and a baffle 372. The rotating shaft 371 is mounted on the machine head 10 or the cylinder 20, and the baffle 372 is rotatably mounted on the rotating shaft 371. When the selection module is in the first mode, the baffle 372 is located between the first magnetic conductor 17 and the second magnetic conductor 314. At this time, the baffle 372 can compress the second magnetic conductor 314, specifically preventing the second magnetic conductor 314 from extending sufficiently beyond the cylinder 20, so that the control switch 30 is in the first state. When the selection module is in the second state, the baffle 372 is displaced from between the first magnetic conductor 17 and the second magnetic conductor 314, and the baffle 372 no longer obstructs the second magnetic conductor 314. At this time, the control switch 30 is in the second state.

[0148] Example 10

[0149] The tenth embodiment of this application is basically the same as the eighth or ninth embodiment, except that in this embodiment, the heating device 21 may not be disposed on the cylinder 20, but may be disposed on the head 10 together with the stirring device 11. In this case, the second control device 24 will form a second control circuit with the heating device 21 after the head 10 is placed on the cylinder 20.

[0150] That is, when the head cover is installed on the cylinder 20, the second control device 24 on the cylinder 20 can control the heating device 21 by controlling the control switch 30.

[0151] The food processor may also include the selection module shown in Embodiment 8 or 9. By setting the selection module, if the first control device 12 on the machine head 10 fails, the second control device 24 can act as a backup to control the heating device 21. Even if the machine head 10 is covered by the cylinder 20, the machine head 10 can prevent interference with the connection between the second control device 24 and the heating device 21, allowing the second control device 24 to control the heating device 21 to heat.

[0152] Example 11

[0153] like Figure 14 and Figure 15 As shown, the food processor provided in the eleventh embodiment of this application is adapted to a structure in which one end of the stirring device 11 is connected to the machine head 10 and the other end is rotatably supported on the cylinder 20. The remaining structures can be adapted to the relevant structures of the above embodiments. The difference is that in this embodiment, it also includes a stirring control device 40 for controlling the stirring device 11. The stirring control device 40 is disposed on the cylinder 20 and includes a transmission device 41 and a crank handle 42. When the machine head 10 is placed on the cylinder 20, the crank handle 42 is connected to the stirring device 11 through the transmission device 41 and drives the stirring device 11 to rotate.

[0154] In this embodiment, by providing a stirring control device 40 on the cylinder 10, the user can drive the stirring device 11 to rotate by turning the crank handle 42, thereby stirring the contents of the cylinder 10. That is, even if the first control device 12 on the machine head 10 is damaged, or the power source driving the stirring device 11 is damaged, the user can still manually drive the stirring device 11 to maintain the stirring function of the food processor.

[0155] Preferably, the stirring device 11 includes a motor 111 mounted on the head 10 and a stirring blade 112 connected to the motor 111. The stirring control device 40 further includes a first power connection device 43, a second power connection device 44, and a power connection switch 45. The first power connection device 43 is located between the stirring blade 112 and the stirring control device 40, specifically between the stirring blade 112 and the crank handle 42. The second power connection device 44 is located between the motor 111 and the stirring blade 112. The power connection switch 45 is connected to both the first power connection device 43 and the second power connection device 44, and controls the connection or disconnection of power between the stirring control device 40 and the stirring blade 112 through the first power connection device 43, specifically by connecting or disconnecting the power between the crank handle 42 and the stirring blade 112, and by connecting or disconnecting the power between the motor 111 and the stirring blade 112 through the second power connection device 44.

[0156] In this embodiment, in one mode, when the machine head 10 is placed on the cylinder 20, the motor 111 can be connected to the stirring blade 112 via the power connection switch 45, and the power connection between the stirring blade 112 and the crank handle 42 can be disconnected. In this mode, the motor 111 can drive the stirring blade 112 to perform stirring. In another mode, when the machine head 10 is placed on the cylinder 20, the stirring blade 112 can be connected to the crank handle 42 via the power connection switch 45, and the power connection between the stirring blade 112 and the motor 111 can be disconnected. In this mode, the user can control the rotation of the stirring blade 112 via the crank handle 42.

[0157] That is, when some structures on the machine head 10 are damaged or there is no power, the user can choose to manually control the stirring device 11 through the crank 42 on the cylinder 10 to stir the food in the cylinder 20.

[0158] Preferably, the crank handle 42 is detachably mounted on the cylinder 20.

[0159] Preferably, the transmission device 41 can be a first bevel gear 411 and a second bevel gear 412. The first bevel gear 411 is connected to the stirring blade 112, and the second bevel gear 412 is connected to the crank handle 42. The first bevel gear 411 and the second bevel gear 412 mesh to complete the power transmission.

[0160] In other embodiments, the transmission device 41 may also be a worm gear to complete the power transmission.

[0161] Preferably, both the first power connection device 43 and the second power connection device 44 can be clutches, and the power connection switch 45 controls the connection and disconnection of power by controlling the engagement and disengagement of the clutches.

[0162] Understandably, the configuration and control method of the power switch 45 can be the same as those of the control switch 30 in the above embodiments. That is, the state of the power switch 45 can also be controlled by the push rod 11 that is compatible with the power switch 45. The structure of the push rod 11 that is compatible with the power switch 45, and the structure that cooperates with the push rod 11, can be found in the above embodiments and will not be repeated here.

[0163] Preferably, when the head 10 is placed on the cylinder 20, the head 10 can also restrict the state of the power connection switch 45 to disconnect the stirring control device 40 from the stirring device 11. For details on how the head 10 restricts the power connection switch 45 to achieve the above-mentioned effect, please refer to the above embodiments, which will not be repeated here.

[0164] Preferably, it can also be equipped with a selection module to switch between a first mode and a second mode. In the first mode, the power connection switch 45 includes a third state where the stirring control device 40 is connected to the stirring device 11. That is, in this mode, the restriction on the position of the power connection switch 45 by the machine head 10 can be lifted. In the second mode, the power connection switch 45 includes a fourth state where the stirring device 40 is disconnected from the stirring device 11. That is, in this mode, the machine head 10 will still restrict the state of the power connection switch 45. For the specific configuration of the selection module and the configuration of other cooperating components, please refer to the above embodiments, which will not be repeated here.

[0165] Preferably, the power switch 45 can be located in the handle 23 on the opposite side of the control switch 30 to reduce the impact on the control switch 30.

[0166] In summary, in this application, by providing an electronic control board 24 inside the cylinder 20 to independently control the heating device 21, and by providing a control switch 30 between the machine head 10 and the cylinder 20 to control the connection state between the electronic control board 24 and the heating device 21, the user can switch between controlling the heating device 21 independently through the electronic control board 24 on the cylinder 20 and controlling the heating device 21 through the control panel 12 on the machine head 10 as needed.

[0167] The examples listed above are for reference only. To avoid redundancy, they will not be listed one by one here. In actual development or application, they can be flexibly combined according to actual needs. However, any combination belongs to the technical solution of this application and is covered by the protection scope of this application.

[0168] It is understood that the above scenarios are merely examples and do not constitute a limitation on the application scenarios of the technical solutions provided in the embodiments of this application. The technical solutions of this application can also be applied to other scenarios. For example, as those skilled in the art will know, with the evolution of system architecture and the emergence of new business scenarios, the technical solutions provided in the embodiments of this application are also applicable to similar technical problems.

[0169] The sequence numbers of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.

[0170] The steps in the method of this application embodiment can be adjusted, combined, or deleted according to actual needs.

[0171] The units in the device of this application embodiment can be merged, divided, and deleted according to actual needs.

[0172] In this application, the same or similar terms, concepts, technical solutions and / or application scenario descriptions are generally described in detail only when they appear for the first time. When they appear again, they are generally not repeated for the sake of brevity. When understanding the technical solutions and other contents of this application, the same or similar terms, concepts, technical solutions and / or application scenario descriptions that are not described in detail later can be referred to their previous relevant detailed descriptions.

[0173] In this application, the descriptions of the various embodiments have different focuses. For parts that are not described in detail or recorded in a certain embodiment, please refer to the relevant descriptions of other embodiments.

[0174] The technical features of the present application can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of the present application.

[0175] Through the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of software plus necessary general-purpose hardware platforms. Of course, they can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) as described above, and includes several instructions to cause a terminal device (which may be a mobile phone, computer, server, controlled terminal, or network device, etc.) to execute the methods of each embodiment of this application.

[0176] In the above embodiments, implementation can be achieved, in whole or in part, through software, hardware, firmware, or any combination thereof. When implemented in software, it can be implemented, in whole or in part, as a computer program product. A computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, all or part of the flow or function according to the embodiments of this application is generated. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer instructions can be stored in a computer-readable storage medium or transmitted from one computer-readable storage medium to another. For example, computer instructions can be transmitted from one website, computer, server, or data center to another website, computer, server, or data center via wired (e.g., coaxial cable, fiber optic, digital subscriber line) or wireless (e.g., infrared, wireless, microwave, etc.) means. The computer-readable storage medium can be any available medium that a computer can access or a data storage device such as a server or data center that integrates one or more available media. The available medium can be a magnetic medium (e.g., floppy disk, storage disk, magnetic tape), an optical medium (e.g., DVD), or a semiconductor medium (e.g., solid-state disk (SSD)).

[0177] The above are merely preferred embodiments of this application and do not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.

Claims

1. A food processing machine, characterized in that, include: The machine head is equipped with a first control device. A cylindrical body, on which a second control device and / or a heating device are provided, and an assembly cavity is formed inside the cylindrical body; A control switch is used to connect or disconnect the second control device from the heating device. The control switch includes a micro switch and a push rod for controlling the micro switch. The movement of the push rod causes the micro switch to be in a first state and a second state. The micro switch and the push rod are disposed in the assembly cavity, and the push rod can move up and down in the assembly cavity; A guide hole is formed on the side wall of the assembly cavity. The control switch also includes a toggle piece located outside the cylinder. The toggle piece passes through the guide hole and is connected to the push rod. The toggle piece can move up and down within the guide hole. And, including at least one of the following: A damping layer is provided on at least one of the sidewalls of the guide hole and the sidewalls of the portion of the actuating piece that extends into the guide hole. The damping layer enables the actuating piece to remain stationary without external force. A protrusion is formed on the side wall of the guide hole, protruding into the guide hole, and the actuating piece is supported on the protrusion after being pushed upward.

2. The food processing machine as described in claim 1, characterized in that, An assembly cavity is formed inside the cylinder, and a guide slope is formed on the side of the push rod facing the micro switch. The push rod is connected to the micro switch through the guide slope.

3. The food processing machine as described in claim 2, characterized in that, Includes at least one of the following: The push rod includes a guide portion having the guide slope and a push rod portion. An assembly hole communicating with the top of the cylinder is formed in the assembly cavity. The push rod portion is connected to the upper part of the guide portion and extends out from the assembly hole. The control switch also includes a reset spring, which is sleeved on the push rod. One end of the reset spring is pressed against the inner wall of the assembly cavity, and the other end is pressed against the push rod.

4. A food processing machine, characterized in that, include: A cylindrical body, on which a second control device and / or a heating device are provided, and an assembly cavity is formed inside the cylindrical body; A control switch is used to connect or disconnect the second control device from the heating device. When the machine head is placed on the cylinder, the machine head restricts the state of the control switch to disconnect the connection between the second control device and the heating device; The control switch includes a micro switch and a push rod for controlling the micro switch. The movement of the push rod causes the micro switch to be in a first state and a second state. The micro switch and the push rod are disposed in the assembly cavity, and the push rod can move up and down in the assembly cavity; A guide hole is formed on the side wall of the assembly cavity. The control switch also includes a toggle piece located outside the cylinder. The toggle piece passes through the guide hole and is connected to the push rod. The toggle piece can move up and down within the guide hole. And, including at least one of the following: A damping layer is provided on at least one of the sidewalls of the guide hole and the sidewalls of the portion of the actuating piece that extends into the guide hole. The damping layer enables the actuating piece to remain stationary without external force. A protrusion is formed on the side wall of the guide hole, protruding into the guide hole, and the actuating piece is supported on the protrusion after being pushed upward.

5. The food processing machine as described in claim 4, characterized in that, The control switch includes a micro switch and a push rod. The push rod is movably disposed inside the cylinder. The machine head restricts the position of the push rod to disconnect the connection between the second control device and the heating device.

6. The food processing machine as described in claim 5, characterized in that, Includes at least one of the following: An assembly cavity is formed inside the cylinder, and the push rod can move up and down inside the assembly cavity. A guide slope is formed on the side of the push rod facing the micro switch. The push rod is connected to the micro switch through the guide slope. The guide slope controls the micro switch by sliding relative to the micro switch. The cylinder has an assembly hole that communicates with the top of the cylinder. The push rod passes through the assembly hole. When the machine head is placed on the cylinder, the machine head presses the push rod so that the push rod is always in the position of pressing the micro switch, and the connection between the second control device and the heating device is cut off through the micro switch.

7. The food processing machine as described in claim 6, characterized in that: When the micro switch is in the first state that connects the second control device to the heating device, the push rod extends out of the assembly hole. When the machine head is placed on the cylinder, a gap is formed between the machine head and the cylinder at the control switch. The distance of the gap is less than the height of the push rod extending out of the assembly hole when the micro switch is in the first state.

8. A food processing machine, characterized in that, include: Machine head; A cylindrical body, on which a second control device and / or a heating device are provided, and an assembly cavity is formed inside the cylindrical body; A control switch is used to connect or disconnect the second control device from the heating device. The selection module allows for switching between a first mode and a second mode when the machine head cover is placed on the cylinder. The control switch includes a micro switch and a push rod for controlling the micro switch. The movement of the push rod causes the micro switch to be in a first state and a second state. The micro switch and the push rod are disposed in the assembly cavity, and the push rod can move up and down in the assembly cavity; A guide hole is formed on the side wall of the assembly cavity. The control switch also includes a toggle piece located outside the cylinder. The toggle piece passes through the guide hole and is connected to the push rod. The toggle piece can move up and down within the guide hole. And, including at least one of the following: A damping layer is provided on at least one of the sidewalls of the guide hole and the sidewalls of the portion of the actuating piece that extends into the guide hole. The damping layer enables the actuating piece to remain stationary without external force. A protrusion is formed on the side wall of the guide hole, protruding into the guide hole, and the actuating piece is supported on the protrusion after being pushed upward.

9. The food processing machine according to claim 8, characterized in that, Includes at least one of the following: When in the first mode, the control switch includes a first state that connects the second control device to the heating device; In the second mode, the control switch includes a second state in which the second control device is disconnected from the heating device.

10. The food processing machine according to claim 9, characterized in that, Includes at least one of the following: The control switch includes a micro switch and a push rod. The push rod is movably disposed inside the cylinder. The push rod is connected to the micro switch and controls the opening and closing of the micro switch by its own movement. In turn, the micro switch controls the connection and disconnection between the second control device and the heating device.

11. The food processing machine as described in claim 10, characterized in that, An assembly hole communicating with the upper end of the cylinder is formed inside the cylinder, and the end of the push rod away from the micro switch protrudes from the assembly hole.

12. The food processing machine as described in claim 11, characterized in that, The selection module includes a clearance hole and a plug. The clearance hole is formed on the machine head at a position corresponding to the push rod, and the plug is detachably disposed in the clearance hole. When the selection module is in the first mode, the plug is removed from the clearance hole, and the push rod moves freely within the cylinder to place the control switch in either the first or second state. When the selection module is in the second mode, the plug is disposed in the clearance hole, and the plug presses against the push rod to place the control switch in the second state.

13. A food processing machine, characterized in that, include: Machine head; A cylindrical body, wherein an assembly cavity is formed within the cylindrical body; A stirring device, one end of which is connected to the machine head, and the other end of which is rotatably supported on the cylinder; A stirring control device is installed on the cylinder to control the stirring device; A control switch includes a micro switch and a push rod for controlling the micro switch, wherein the movement of the push rod causes the micro switch to be in a first state and a second state; The micro switch and the push rod are disposed in the assembly cavity, and the push rod can move up and down in the assembly cavity; A guide hole is formed on the side wall of the assembly cavity. The control switch also includes a toggle piece located outside the cylinder. The toggle piece passes through the guide hole and is connected to the push rod. The toggle piece can move up and down within the guide hole. And, including at least one of the following: A damping layer is provided on at least one of the sidewalls of the guide hole and the sidewalls of the portion of the actuating piece that extends into the guide hole. The damping layer enables the actuating piece to remain stationary without external force. A protrusion is formed on the side wall of the guide hole, protruding into the guide hole, and the actuating piece is supported on the protrusion after being pushed upward.

14. The food processing machine as described in claim 13, characterized in that, The stirring device further includes at least one of the following: The motor and the stirring blade connected to the motor are mounted on the machine head; First power connection device, second power connection device and power connection switch; Transmission device and crank handle.

15. The food processing machine as described in claim 14, characterized in that, It also includes at least one of the following: The first power connection device is disposed between the stirring control device and the stirring blade, the second power connection device is disposed between the motor and the stirring blade, the power connection switch is connected to the first power connection device and the second power connection device, and controls the connection and disconnection of the power between the stirring control device and the stirring blade through the first power connection device, and controls the connection and disconnection of the power between the motor and the stirring blade through the second power connection device; The crank handle is connected to the stirring device via the transmission device and drives the stirring device to rotate; The stirring device includes a motor mounted on the head and a stirring blade connected to the motor. The transmission device includes a first bevel gear and a second bevel gear. The first bevel gear is connected to the stirring blade, and the second bevel gear is connected to the crank handle. The first bevel gear and the second bevel gear mesh.

Citation Information

Patent Citations

  • High -efficient mixer is used in food processing

    CN205321177U

  • Food processor

    CN212996002U

  • Switch structure of food processor

    CN216754274U

  • Control device for food processor

    CN216797418U

  • Food processor

    CN217852576U