Power output device and multifunctional food processing equipment
By designing gear transmission and multi-function output interfaces in the food processor, the existing cooking processor has solved the problems of single functions and low transmission efficiency, and achieved high-power output and multi-function use, improving the reliability and user experience of the equipment.
Patent Information
- Application Number
- CN202510350925.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-06-27
AI Technical Summary
The existing food processor has a single function and the traditional turbine transmission structure is inefficient, resulting in insufficient power of the motor and is prone to jamming or burning, limiting the user's functional scope and the reliability and life of the equipment.
A power output device is designed to transmit, distribute and convert the motor's power through gear transmission to achieve high power output, and connect cooking accessories with different functions through different triggering methods and output interfaces, increasing the versatility of the device.
It effectively improves transmission efficiency, increases torque, avoids the motor being stuck and burned due to insufficient power, ensures the stable operation of the power output device, and meets the diverse food and cuisine needs of users.
Smart Images

Figure CN120203429A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of cooking utensils, and particularly relates to a power output device and a multifunctional food processing device. Background Art
[0002] Common food processors on the market have relatively single functions. Products with a food processing cup usually do not have the function of pressing noodles or mincing meat, while a meat grinder lacks the function of a food processing cup. This greatly limits the range of functions that users can use and cannot meet the diverse food processing needs of users. Moreover, in terms of the transmission structure, the traditional turbine transmission structure has low efficiency and small torque, and it is difficult to achieve high-power output. When the food processor processes some relatively hard or large amounts of ingredients, the motor often gets stuck due to insufficient power, which may cause the motor to burn out. This not only increases the user's usage cost but also reduces the service life and reliability of the food processor.
[0003] Although some existing technologies have tried to improve the food processor. For example, the Chinese utility model patent with the publication number CN206567066U discloses a food processor that has the functions of mincing meat and shredding / slicing. It realizes function switching by installing or removing corresponding mechanisms on the meat mincing output. However, this food processor does not improve the transmission structure and still faces problems such as low efficiency and easy damage of the motor caused by the turbine transmission structure. Summary of the Invention
[0004] The purpose of the embodiments of the present application is to provide a power output device, including:
[0005] A housing, on which a first output interface and a second output interface with different orientations are provided;
[0006] A motor, which is arranged inside the housing and serves as a power source. The motor has a resetable power switch for controlling the power on and off of the motor;
[0007] A trigger component, which is arranged on the housing. The trigger component includes a first trigger part and a second trigger part;
[0008] A first gear assembly, which is arranged inside the housing and is connected to the motor shaft of the motor. The first gear assembly includes a first output shaft, and one end of the first output shaft is connected to the first output interface for outputting power;
[0009] A second gear assembly, which is arranged inside the housing and meshes with the first gear assembly. The second gear assembly includes a second output shaft, and one end of the second output shaft is connected to the second output interface for outputting power;
[0010] When an action member is provided on the first output interface, the action member acts on the first triggering part, and the first triggering part triggers the power switch to energize the motor, so that the motor shaft of the motor rotates and drives the first gear assembly and the second gear assembly to rotate, so that the second output shaft rotates and drives the second output interface to rotate and output power;
[0011] When a first cooking accessory is provided on the first output interface, the first cooking accessory acts on the second trigger part, and the second trigger part triggers the power switch to energize the motor, so that the motor shaft of the motor rotates and drives the first gear assembly and the second gear assembly to rotate, so that the first output shaft rotates and drives the first output interface to rotate and output power.
[0012] The present application transmits and distributes the power of the motor through gear transmission, which can effectively improve the transmission efficiency, increase the torque, achieve high-power output, avoid the motor from getting stuck and burning due to insufficient power, and ensure the stable operation of the power output device. In addition, by facing the first output interface and the second output interface in different directions, the power output device can output power from different directions, which is convenient for connecting external devices or accessories in different positions and directions, increasing the flexibility and adaptability of use, and meeting the diverse food cooking needs of users.
[0013] As an optional embodiment, the active member is a top cover, a groove is provided on the first side of the housing around the first output interface, and the top cover is detachably snapped onto the groove to cover the first output interface.
[0014] The top cover of the present application can be detachably snapped onto the groove to cover the first output interface, which not only prevents dust and debris from entering the interior of the casing and affecting the operation of the device, but also allows users to flexibly install and remove the top cover when using cooking accessories with different functions, thereby ensuring the reliability and durability of the equipment under multi-functional cooking needs.
[0015] As an optional embodiment, a top rod is provided on the inner wall of the top cover, the first trigger portion is provided in the groove and passes through the bottom of the groove, and the first trigger portion is connected to the connecting rod assembly;
[0016] When the top cover is clamped on the groove, the push rod pushes the first trigger part to move into the housing, and the first trigger part drives the connecting rod assembly to move toward the power switch to trigger the power switch to turn on.
[0017] When the top cover of this application is snap - connected to the groove, the ejector rod pushes the first trigger part to trigger the connecting rod assembly to turn on the power switch. Through the linkage design of the mechanical structure, the user can start the motor while performing the simple operation of installing the top cover. The operation is simple, and the trigger is reliable and stable, avoiding the inconvenience brought by the complex start - up steps of traditional cookers and improving the use efficiency.
[0018] As an alternative embodiment, the second trigger part is arranged outside the groove and penetrates through the casing, and the second trigger part is connected to the connecting rod assembly;
[0019] When the first cooking accessory is connected to the first output interface, the first cooking accessory pushes the second trigger part to move towards the inside of the casing, and the second trigger part drives the connecting rod assembly to move towards the power switch to trigger the power switch to turn on.
[0020] When the first cooking accessory of this application is connected to the first output interface, it pushes the second trigger part to trigger the connecting rod assembly to turn on the power switch, thus improving the trigger mechanism, enabling the motor to be accurately triggered when cooking accessories with different functions are installed, increasing the versatility and convenience of the device, and meeting the diverse usage needs of users.
[0021] As an alternative embodiment, the connecting rod assembly includes a base, a first connecting rod and a spring. The base is arranged inside the casing, the first connecting rod is arranged on the base, and a spring is arranged between the first connecting rod and the base. The spring is used to apply a force to the first connecting rod to make it move towards the trigger part;
[0022] The trigger part further includes a rod part. The first trigger part and the second trigger part are both arranged on the rod part. The first end of the first connecting rod corresponds to the power switch, and the second end of the first connecting rod is connected to the rod part;
[0023] When the actuator or the first cooking accessory is installed on the first output interface, the rod part is moved towards the power switch through the first trigger part or the second trigger part, and drives the first connecting rod to move and trigger the power switch, so that the motor is powered on;
[0024] When the actuator or the first cooking accessory is removed from the casing, the spring pushes the first connecting rod to move away from the power switch to release the trigger of the power switch and cut off the power supply of the motor.
[0025] When the acting part or the first cooking accessory of the present application is installed, it triggers the power switch. When it is removed, the spring pushes the first connecting rod to reset and cut off the power, making the triggering and resetting of the power switch sensitive and reliable, avoiding accidental power-on of the motor when it does not need to run, improving the safety and stability of the device, and reducing the risk of motor damage.
[0026] As an optional embodiment, the first gear assembly includes an output gear connected to the motor shaft of the motor, a first double gear, a second double gear, and a third double gear. The first tooth part of the first double gear meshes with the output gear, the second tooth part of the first double gear meshes with the first tooth part of the second double gear, the second tooth part of the second double gear meshes with the first tooth part of the third double gear, and the third double gear is arranged on the first output shaft.
[0027] Through multi-stage gear meshing transmission, the present application reasonably adjusts the motor speed and torque, meets the power requirements of the first output shaft in different cooking scenarios, improves the stability and efficiency of power output, and expands the application range of the device.
[0028] As an optional embodiment, the second gear assembly includes a connecting gear, a first bevel gear, and a second bevel gear. The connecting gear meshes with the second tooth part of the third double gear, the connecting gear is coaxial with the first bevel gear, the first bevel gear meshes with the second bevel gear, and the second bevel gear is arranged at the other end of the second output shaft.
[0029] By changing the power transmission direction through gear transmission, the present application enables the second output interface to output power in different directions, increases the flexibility and diversity of the device, can adapt to cooking accessories with different installation positions and usage methods, improves the user experience, and solves the problem of single power output of traditional cooking appliances.
[0030] As an optional embodiment, the power output device further includes a locking assembly for locking the second cooking accessory clamped to the second output interface.
[0031] The present application is provided with a locking assembly to lock the second cooking accessory, ensuring that the second cooking accessory will not loosen or fall off during operation, improving the safety and reliability of the device during operation, ensuring stable power output and cooking quality, and avoiding poor cooking effects or equipment damage caused by loose accessories.
[0032] As an optional embodiment, a connecting seat is provided on the housing, and the second output interface passing through it is arranged inside the connecting seat. A clamping groove is formed at one end of the second cooking accessory connected to the second output interface. The locking assembly includes a locking groove and a resetable locking shaft. The locking shaft is of an L-shaped structure, one end of which passes through the housing and the other end passes through the connecting seat;
[0033] When the second cooking accessory extends into the connection base and is snap - connected to the second output interface, the locking groove locks it in the circumferential direction of the second cooking accessory, and after the locking shaft is snapped into the card slot, it locks the second cooking accessory in the axial direction.
[0034] When the second cooking accessory of this application is snap - connected, the locking groove locks in the circumferential direction, and the locking shaft snaps into the card slot to lock in the axial direction. The double - locking method enhances the firm connection of the accessory, prevents its displacement or rotation during operation, and ensures the normal operation of the power output device and the cooking effect.
[0035] Another object of the embodiments of this application is to provide a multifunctional food processing device, which includes the aforementioned power output device, and further includes a first cooking accessory snap - connected to the first output interface and a second cooking accessory snap - connected to the second output interface, and the functions of the first cooking accessory and the second cooking accessory are different.
[0036] The device of this application has multiple processing functions. Users can select appropriate accessories for operation according to the ingredients and requirements, which improves the versatility and practicality of the device and meets the diverse needs of users.
[0037] The beneficial effects of the embodiments of this application are as follows:
[0038] The structure of this application is reasonably designed. Through gear transmission, the power of the motor is transmitted, distributed, and the direction is converted. It can effectively improve the transmission efficiency, increase the torque, achieve high - power output, avoid the motor from being stuck and burned out due to insufficient power, and ensure the stable operation of the power output device. Moreover, through the first output interface and the second output interface facing different directions, the power output device can output power from different directions, which is convenient for connecting external devices or accessories at different positions and directions, increases the flexibility and adaptability of use, and meets the diverse food cooking needs of users. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Figure 1 It is a schematic diagram of the whole machine of the power output device of the embodiments of this application;
[0040] Figure 2 It is a cross - sectional view of the power output device of the embodiments of this application;
[0041] Figure 3 It is an exploded view of the power output device of the embodiments of this application;
[0042] Figure 4 It is a schematic diagram of the structure of the power output device with an acting member of the embodiments of this application;
[0043] Figure 5Schematic diagram of the power output device provided with the first cooking accessory according to an embodiment of the present application;
[0044] Figure 6 Schematic diagram of the locking component locking the second cooking accessory according to an embodiment of the present application;
[0045] Figure 7 Schematic diagram of the locking component unlocking the second cooking accessory according to an embodiment of the present application;
[0046] Figure 8 Schematic diagram of the separation of the power output device and the second cooking accessory according to an embodiment of the present application;
[0047] Figure 9 Schematic diagram of the multifunctional food processing equipment and various cooking accessories according to an embodiment of the present application.
[0048] Among them,
[0049] 1. Housing; 11. Groove; 12. Connecting seat; 13. Start switch; 21. First output interface; 22. Second output interface; 3. Motor; 31. Power switch; 4. Trigger component; 41. First trigger part; 42. Second trigger part; 43. Rod part; 5. First gear assembly; 51. Output gear; 52. First double gear; 53. Second double gear; 54. Third double gear; 55. First output shaft; 6. Second gear assembly; 61. Connecting gear; 62. First bevel gear; 63. Second bevel gear; 64. Second output shaft; 71. Acting part; 711. Thumb rod; 72. First cooking accessory; 73. Second cooking accessory; 731. Card slot; 8. Connecting rod assembly; 81. Base; 82. First connecting rod; 83. Spring; 9. Locking component; 91. Locking groove; 92. Locking shaft. Detailed implementation manners
[0050] Reference is made herein to the various solutions and features of the present application with reference to the accompanying drawings.
[0051] It should be understood that various modifications can be made to the embodiments applied herein. Therefore, the above description should not be regarded as a limitation, but only as an example of the embodiments. Those skilled in the art will think of other modifications within the scope and spirit of the present application.
[0052] The accompanying drawings included in the specification and constituting a part of the specification illustrate the embodiments of the present application, and together with the general description of the present application given above and the detailed description of the embodiments given below are used to explain the principles of the present application.
[0053] These and other features of the present application will become apparent from the following description of the preferred forms of the embodiments given by way of non-limiting examples with reference to the accompanying drawings.
[0054] It should also be understood that although the present application has been described with reference to some specific examples, those skilled in the art can surely implement many other equivalent forms of the present application.
[0055] When combined with the accompanying drawings, the above and other aspects, features, and advantages of the present application will become more apparent in view of the following detailed description.
[0056] Hereinafter, specific embodiments of the present application will be described with reference to the accompanying drawings; however, it should be understood that the claimed embodiments are merely examples of the present application, which can be implemented in various ways. Well-known and / or repetitive functions and structures are not described in detail to avoid obscuring the present application with unnecessary or redundant details. Therefore, the specific structural and functional details claimed herein are not intended to be limiting, but are merely used as a basis and representative basis for the claims to teach those skilled in the art to use the present application in substantially any suitable detailed structure in a variety of ways.
[0057] This specification may use the phrases "in one embodiment", "in another embodiment", "in yet another embodiment", or "in other embodiments", which may each refer to one or more of the same or different embodiments according to the present application.
[0058] A power output device according to an embodiment of the present application, such as Figures 1-3 shown, includes a housing 1, a motor 3, a trigger member 4, a first gear assembly 5, and a second gear assembly 6.
[0059] The housing 1 is provided with a first output interface 21 and a second output interface 22 facing different directions. The housing 1 is an external protection structure of the power output device, which is used to accommodate and protect the internal components and is generally made of materials such as plastic and metal.
[0060] In this embodiment, the first output interface 21 is arranged along the vertical direction of the housing 1, the second output interface 22 is arranged along the horizontal direction of the housing 1, and the first output interface 21 and the second output interface 22 are perpendicular to each other in the arrangement direction. The first output interface 21 and the second output interface 22 are respectively used for clamping cooking accessories with different functions.
[0061] In this embodiment, a start switch 13 is arranged on the housing 1. When the power switch 31 is triggered to energize the motor 3, the user operates the start switch 13 to start the motor 3, and then drives the first output interface 21 or the second output interface 22 to output power through the first gear assembly 5 and the second gear assembly 6.
[0062] The motor 3 is disposed within the housing 1 and serves as a power source. The motor 3 has a resetable power switch 31, and the power switch 31 is used to control the energization and de-energization of the motor 3. The power switch 31 can control the energization and de-energization of the motor 3 and can return to its initial state after the triggering action is cancelled.
[0063] The triggering member 4 is disposed on the housing 1, and the triggering member 4 includes a first triggering portion 41 and a second triggering portion 42.
[0064] The first gear assembly 5 is disposed within the housing 1 and is connected to the motor shaft of the motor 3. The first gear assembly 5 includes a first output shaft 55, and one end of the first output shaft 55 is connected to the first output interface 21 for outputting power.
[0065] The second gear assembly 6 is disposed within the housing 1 and meshes with the first gear assembly 5. The second gear assembly 6 includes a second output shaft 64, and one end of the second output shaft 64 is connected to the second output interface 22 for outputting power.
[0066] When a working member 71 is provided on the first output interface 21, the working member 71 acts on the first triggering portion 41, and the first triggering portion 41 triggers the power switch 31 to energize the motor 3. The motor shaft of the motor 3 rotates and drives the first gear assembly 5 and the second gear assembly 6 to rotate, so that the second output shaft 64 rotates and drives the second output interface 22 to rotate to output power.
[0067] When a first cooking accessory 72 is provided on the first output interface 21, the first cooking accessory 72 acts on the second triggering portion 42, and the second triggering portion 42 triggers the power switch 31 to energize the motor 3. The motor shaft of the motor 3 rotates and drives the first gear assembly 5 and the second gear assembly 6 to rotate, so that the first output shaft 55 rotates and drives the first output interface 21 to rotate to output power. Among them, the first cooking accessory 72 is a cooking machine or a condiment machine.
[0068] When this application is in use, when the working member 71 is installed on the first output interface 21, the working member 71 acts on the first triggering portion 41, the first triggering portion 41 triggers the power switch 31, the motor 3 is energized, and the motor shaft rotates. The rotation of the motor shaft drives the first gear assembly 5 to rotate. The first gear assembly 5 meshes with the second gear assembly 6, thereby driving the second gear assembly 6 to rotate. The second output shaft 64 rotates and drives the second output interface 22 to rotate to output power.
[0069] When the first cooking accessory 72 is installed on the first output interface 21, the first cooking accessory 72 acts on the second trigger part 42, and the second trigger part 42 triggers the power switch 31, the motor 3 is powered on, the motor shaft drives the first gear assembly 5 and the second gear assembly 6 to rotate, the first output shaft 55 rotates and drives the first output interface 21 to rotate and output power.
[0070] In this application, the power of the motor 3 is transmitted and distributed through gear transmission, which can effectively improve the transmission efficiency, increase the torque, achieve high-power output, avoid the motor 3 from being stuck and burned out due to insufficient power, and ensure the stable operation of the power output device. And by connecting cooking accessories with different functions through different triggering methods and output interfaces, the versatility of the device is greatly increased, meeting the diverse needs of users.
[0071] In one embodiment, as Figure 1 and Figure 4 shown, the acting part 71 is a top cover, a groove 11 is formed around the first output interface 21 on the first side of the housing 1, and the top cover is detachably clamped on the groove 11 for covering the first output interface 21.
[0072] In this embodiment, the groove 11 is a circular groove, and the top cover is a circular cover for covering the first output interface 21, playing a role of protection and triggering.
[0073] Clamping the top cover onto the groove 11 around the first output interface 21 on the first side of the housing 1 realizes the covering of the first output interface 21. It is convenient for users to protect the first output interface 21, prevent dust and sundries from entering, and at the same time, the detachable design facilitates the replacement and maintenance of accessories.
[0074] In one embodiment, as Figure 2 and Figure 4 shown, a push rod 711 is provided on the inner wall of the top cover, the first trigger part 41 is arranged in the groove 11 and penetrates through the bottom of the groove 11, and the first trigger part 41 is connected to the connecting rod assembly 8.
[0075] When the top cover is clamped on the groove 11, the push rod 711 pushes the first trigger part 41 to move towards the inside of the housing 1, and the first trigger part 41 drives the connecting rod assembly 8 to move towards the power switch 31 to trigger the power switch 31 to turn on.
[0076] In this embodiment, the top cover is of an inverted U-shaped structure, a push rod 711 is provided on its inner wall, the push rod 711 pushes the first trigger part 41 to move towards the inside of the housing 1, and the first trigger part 41 drives the connecting rod assembly 8 to move towards the power switch 31, thereby triggering the power switch 31 to turn on, so that the motor 3 is powered on.
[0077] In this application, the linkage between the installation of the top cover and the start of the motor 3 is realized through a mechanical structure, which is simple and convenient to operate, and improves the convenience of using the device.
[0078] In one embodiment, as Figure 2 and Figure 4 shown, the second trigger part 42 is arranged outside the groove 11 and penetrates through the casing 1, and the second trigger part 42 is connected to the connecting rod assembly 8;
[0079] When the first cooking accessory 72 is connected to the first output interface 21, the first cooking accessory 72 pushes the second trigger part 42 to move into the casing 1, and the second trigger part 42 drives the connecting rod assembly 8 to move towards the power switch 31 to trigger the power switch 31 to turn on.
[0080] In this embodiment, when the first cooking accessory 72 is connected to the first output interface 21, the first cooking accessory 72 pushes the second trigger part 42 to move into the casing 1, and the second trigger part 42 drives the connecting rod assembly 8 to move towards the power switch 31 to trigger the power switch 31 to turn on, so that the motor 3 is powered on.
[0081] This application further improves the trigger mechanism of the device, enabling the installation of different cooking accessories to accurately trigger the operation of the motor 3, and increasing the versatility of the device.
[0082] In one embodiment, as Figure 2 and Figure 3 shown, the connecting rod assembly 8 includes a base 81, a first connecting rod 82 and a spring 83. The base 81 is arranged inside the casing 1. Among them, the base 81 is installed inside the casing 1 to provide support and an installation position for the first connecting rod 82.
[0083] The first connecting rod 82 is arranged on the base 81, and a spring 83 is arranged between the first connecting rod 82 and the base 81. The spring 83 is used to apply a force to the first connecting rod 82 to make it move towards the trigger part 4.
[0084] The trigger part 4 further includes a rod part 43. The first trigger part 41 and the second trigger part 42 are both arranged on the rod part 43. The first end of the first connecting rod 82 corresponds to the power switch 31, and the second end of the first connecting rod 82 is connected to the rod part 43.
[0085] Among them, the rod portion 43 is a Z-shaped structure, which includes a first horizontal section, a second horizontal section, and a vertical section for connecting the first horizontal section and the second horizontal section. Both the first contact portion and the second contact portion are long rod structures, and the length of the first contact portion is greater than that of the second contact portion.
[0086] The first contact portion is arranged on the first horizontal section, the second contact portion is arranged on one side of the second horizontal section, and the second end of the first connecting rod 82 is perpendicular to the other side of the second horizontal section.
[0087] When the actuating member 71 or the first cooking accessory 72 is installed on the first output interface 21, the rod portion 43 is moved in a direction close to the power switch 31 through the first trigger portion 41 or the second trigger portion 42, and the first connecting rod 82 is driven to move and trigger the power switch 31, so that the motor 3 is powered on.
[0088] When the actuating member 71 or the first cooking accessory 72 is removed from the housing 1, the spring 83 pushes the first connecting rod 82 to move in a direction away from the power switch 31, so as to release the trigger of the power switch 31 and cut off the power supply of the motor 3.
[0089] When this application is in use, when the actuating member 71 or the first cooking accessory 72 is installed on the first output interface 21, the rod portion 43 is moved in a direction close to the power switch 31 through the first trigger portion 41 or the second trigger portion 42, and the first connecting rod 82 is driven to move to trigger the power switch 31, and the motor 3 is powered on; when the actuating member 71 or the first cooking accessory 72 is removed from the housing 1, the spring 83 pushes the first connecting rod 82 to move in a direction away from the power switch 31, releases the trigger of the power switch 31, and the motor 3 is powered off.
[0090] This application realizes the automatic reset function of the power switch 31, improves the safety and reliability of the device, and avoids accidental power-on of the motor 3 when it does not need to work.
[0091] In one embodiment, as Figure 2 and Figure 3 shown, the first gear assembly 5 includes an output gear 51 connected to the motor shaft of the motor 3, a first double gear 52, a second double gear 53, and a third double gear 54. The first tooth portion of the first double gear 52 meshes with the output gear 51, the second tooth portion of the first double gear 52 meshes with the first tooth portion of the second double gear 53, the second tooth portion of the second double gear 53 meshes with the first tooth portion of the third double gear 54, and the third double gear 54 is arranged on the first output shaft 55.
[0092] In this embodiment, the output gear 51 is connected to the motor shaft of the motor 3, and transmits the power of the motor 3 to the first double gear 52. The first double gear 52, the second double gear 53, and the third double gear 54 are all integrated structures composed of two gears of different sizes, and are used to transmit and convert power. Among them, the diameter of the first tooth part of any double gear is larger than that of the second tooth part.
[0093] When this application is in use, the motor shaft drives the output gear 51 to rotate. The output gear 51 meshes with the first tooth part of the first double gear 52, driving the first double gear 52 to rotate. The second tooth part of the first double gear 52 meshes with the first tooth part of the second double gear 53, driving the second double gear 53 to rotate. The second tooth part of the second double gear 53 meshes with the first tooth part of the third double gear 54, driving the third double gear 54 to rotate. The third double gear 54 drives the first output shaft 55 to rotate.
[0094] Through multi-stage gear transmission, this application can reasonably adjust the speed and torque of the motor 3 to meet the power requirements of different cooking accessories.
[0095] In one embodiment, as Figure 2 and Figure 3 shown, the second gear assembly 6 includes a connecting gear 61, a first bevel gear 62, and a second bevel gear 63. The connecting gear 61 meshes with the second tooth part of the third double gear 54. The connecting gear 61 is coaxial with the first bevel gear 62. The first bevel gear 62 meshes with the second bevel gear 63. The second bevel gear 63 is provided at the other end of the second output shaft 64.
[0096] In this embodiment, the connecting gear 61 meshes with the second tooth part of the third double gear 54 and transmits the power to the first bevel gear 62. The first bevel gear 62 and the second bevel gear 63 are used to change the transmission direction of the power.
[0097] When this application is in use, the connecting gear 61 meshes with the second tooth part of the third double gear 54. The connecting gear 61 drives the coaxial first bevel gear 62 to rotate. The first bevel gear 62 meshes with the second bevel gear 63, driving the second bevel gear 63 to rotate. The second bevel gear 63 drives the second output shaft 64 to rotate.
[0098] This application changes the transmission direction of the power, enabling the second output interface 22 to output power in different directions, increasing the flexibility and applicability of the device.
[0099] In one embodiment, as Figure 3 、 Figures 6-8 shown, the power output device further includes a locking assembly 9. The locking assembly 9 is used to lock the second cooking accessory 73 that is snap-fitted with the second output interface 22.
[0100] In this embodiment, the locking assembly 9 is used to lock the second cooking accessory 73 that is snap-fitted to the second output interface 22 to prevent it from loosening or falling off. The second cooking accessory 73 is an accessory with a specific cooking function installed on the second output interface 22, such as a meat mincing accessory, a noodle sheet pressing accessory, or a noodle pressing accessory.
[0101] This application ensures the stable connection of the second cooking accessory 73 during operation, improving the working reliability of the device and the cooking effect.
[0102] In one embodiment, as Figure 3 、 Figures 6-8 shown, a connection seat 12 is provided on the housing 1. The second output interface 22 runs through the connection seat 12. A card slot 731 is formed at one end of the second cooking accessory 73 connected to the second output interface 22. The locking assembly 9 includes a locking slot 91 and a resetable locking shaft 92. The locking shaft 92 is an L-shaped structure. One end of it runs through the housing 1, and the other end runs through the connection seat 12.
[0103] Wherein, a gear box for installing the first gear assembly 5 and the second gear assembly 6 is provided in the housing 1. One end of the gear box running through the second side of the housing 1 forms the connection seat 12.
[0104] When the second cooking accessory 73 extends into the connection seat 12 and is snap-fitted to the second output interface 22, the locking slot 91 locks it in the circumferential direction of the second cooking accessory 73, and after the locking shaft 92 is inserted into the card slot 731, it locks the second cooking accessory 73 in the axial direction.
[0105] In this embodiment, a release button is provided at one end of the locking shaft 92 running through the housing 1. A reset member (such as a spring) is provided between the release button and the housing 1. When the release button is pressed, the release button moves downward to drive the locking shaft 92 to move downward, so that the locking shaft 92 cannot lock the second cooking accessory 73. At this time, the second cooking accessory 73 can be installed or disassembled from the connection seat 12.
[0106] When the release button is released, the release button moves upward under the action of the reset member to drive the locking shaft 92 to move upward. At this time, if the second cooking accessory 73 is in a connected state with the connection seat 12, the locking shaft 92 is inserted into the card slot 731 to lock it in the axial direction of the second cooking accessory 73.
[0107] In this embodiment, the cylinder body of the meat mincing fitting is connected to the second output interface 22. A boss is provided on the outer peripheral wall of the cylinder body, and the boss is arranged in a staggered manner with the clamping groove 731. A guiding inlet is formed on the connecting seat 12, and the guiding inlet communicates with the locking groove 91. A retaining wall is formed on one side of the connecting seat 12 away from the second output interface 22.
[0108] The second output interface 22 is rotationally clamped and fixed to the cylinder body. The boss is inserted through the guiding inlet and rotated into the locking groove 91, and the locking groove 91 locks the second cooking fitting 73 in the circumferential direction. The locking shaft 92 is inserted into the clamping groove 731 to lock the second cooking fitting 73 in the axial direction, and the cylinder body cannot be taken out. When the release button is pressed, the locking shaft 92 moves in a direction away from the second output interface 22, the locking shaft 92 disengages from the clamping groove 731, and the boss of the cylinder body can be rotated and taken out circumferentially.
[0109] Through the double locking in the circumferential and axial directions, the present application further enhances the firmness of the connection of the second cooking fitting 73 and prevents it from being displaced or loosened during the working process.
[0110] In summary, the working process of the present application during application is as follows:
[0111] The first output interface 21 and the second output interface 22 with different orientations are provided on the machine housing 1. At this time, no cooking fitting or top cover is connected, and the motor 3 is in a power-off state.
[0112] When it is necessary to use the second output interface 22 for power output, the second cooking fitting 73 is connected to the second output interface 22. When the second cooking fitting 73 extends into the connecting seat 12 and is clamped to the second output interface 22, the locking groove 91 locks the second cooking fitting 73 in the circumferential direction, and at the same time, the locking shaft 92 is clamped into the clamping groove 731 to lock the second cooking fitting 73 in the axial direction, ensuring the stable connection of the second cooking fitting 73 during the working process.
[0113] Moreover, it is necessary to detachably clamp the top cover to the groove 11 of the machine housing 1. The ejector rod 711 on the inner wall of the top cover will push the first trigger part 41 to move it into the machine housing 1, and the first trigger part 41 drives the connecting rod assembly 8 connected thereto to move in a direction close to the power switch 31. The movement of the first trigger part 41 will drive the rod part 43 to move, and further cause the first connecting rod 82 to move and trigger the power switch 31 to turn on. After the motor 3 is powered on, the motor 3 is started through the start switch 13 to make the motor shaft rotate, and the output gear 51 connected to the motor shaft rotates accordingly.
[0114] The output gear 51 drives the first double gear 52 meshed therewith to rotate. The second tooth part of the first double gear 52 meshes with the first tooth part of the second double gear 53 to drive the second double gear 53 to rotate. The second tooth part of the second double gear 53 meshes with the first tooth part of the third double gear 54 to drive the third double gear 54 to rotate. The connecting gear 61 meshes with the second tooth part of the third double gear 54, and the connecting gear 61 drives the first bevel gear 62 coaxial therewith to rotate. The first bevel gear 62 meshes with the second bevel gear 63 to drive the second bevel gear 63 to rotate. The second bevel gear 63 is arranged on the second output shaft 64, and finally the second output shaft 64 rotates and drives the second output interface 22 to rotate to output power.
[0115] When the first output interface 21 is required to output power, the first cooking accessory 72 is connected to the first output interface 21. The first cooking accessory 72 pushes the second trigger part 42 to move it into the casing 1. The second trigger part 42 drives the connecting rod assembly 8 to move in the direction close to the power switch 31, triggering the power switch 31 to turn on so that the motor 3 is powered on. After the motor 3 is powered on, the motor 3 is started through the start switch 13 to make the motor shaft rotate. At this time, through the multi-stage gear transmission of the first gear assembly 5, the first output shaft 55 rotates and drives the first output interface 21 to rotate to output power, and its transmission process is the same as that of the first gear assembly 5 during the power output of the second output interface 22.
[0116] When the cooking work is completed and the top cover or the first cooking accessory 72 is removed, the spring 83 pushes the first connecting rod 82 to move in the direction away from the power switch 31, releasing the trigger of the power switch 31, and the motor 3 is powered off and stops working. If the second cooking accessory 73 needs to be replaced, the locking shaft 92 can be reset to release the locking of the second cooking accessory 73 for replacement operation.
[0117] A multifunctional food processing device according to an embodiment of the present application, as Figure 9 shown, includes the aforementioned power output device, and further includes a first cooking accessory 72 clamped to the first output interface 21 and a second cooking accessory 73 clamped to the second output interface 22. The functions of the first cooking accessory 72 and the second cooking accessory 73 are different.
[0118] In this embodiment, the first cooking accessory 72 is provided with a structure capable of triggering the second trigger part 42. Among them, the first output interface 21 is used to connect a cooking cup or a seasoning cup. The cooking cup has functions such as shredding, slicing, crushing food, liquid stirring or solid stirring, etc. The seasoning cup has functions such as food cooking or stirring and cutting. The second output interface 22 is used for pressing noodles or mincing meat, meeting the user's requirements for various cooking functions, improving the use value and practicability of the device, and reducing the cost for the user to purchase multiple single-function devices.
[0119] The above embodiments are only exemplary embodiments of the present application and are not used to limit the present application. The protection scope of the present application is defined by the claims. Those skilled in the art can make various modifications or equivalent replacements within the essence and protection scope of the present application, and such modifications or equivalent replacements should also be regarded as falling within the protection scope of the present application.
Claims
1. A power output device, characterized in that: include: A housing (1) provided with a first output interface (21) and a second output interface (22) facing in different directions; A motor (3) is arranged in the housing (1) and serves as a power source. The motor (3) has a resettable power switch (31). The power switch (31) is used to control the on and off of power to the motor (3); A trigger component (4) disposed on the housing (1), the trigger component (4) comprising a first trigger portion (41) and a second trigger portion (42); a first gear assembly (5), which is arranged in the housing (1) and connected to the motor shaft of the motor (3), the first gear assembly (5) comprising a first output shaft (55), one end of the first output shaft (55) being connected to the first output interface (21) for outputting power; a second gear assembly (6), which is disposed in the housing (1) and meshes with the first gear assembly (5), the second gear assembly (6) comprising a second output shaft (64), one end of the second output shaft (64) being connected to the second output interface (22) for outputting power; When an action member (71) is provided on the first output interface (21), the action member (71) acts on the first triggering portion (41), and the first triggering portion (41) triggers the power switch (31) to energize the motor (3), so that the motor shaft of the motor (3) rotates and drives the first gear assembly (5) and the second gear assembly (6) to rotate, so that the second output shaft (64) rotates and drives the second output interface (22) to rotate to output power; When the first cooking accessory (72) is arranged on the first output interface (21), the first cooking accessory (72) acts on the second triggering part (42), and the second triggering part (42) triggers the power switch (31) to energize the motor (3), so that the motor shaft of the motor (3) rotates and drives the first gear assembly (5) and the second gear assembly (6) to rotate, so that the first output shaft (55) rotates and drives the first output interface (21) to rotate and output power.
2. The power output device according to claim 1, characterized in that: The action member (71) is a top cover, and a groove (11) is provided on the first side of the housing (1) around the first output interface (21). The top cover is detachably snapped onto the groove (11) to cover the first output interface (21).
3. The power output device according to claim 2, characterized in that: A top rod (711) is provided on the inner wall of the top cover, the first trigger portion (41) is provided in the groove (11) and passes through the bottom of the groove (11), and the first trigger portion (41) is connected to the connecting rod assembly (8); When the top cover is snapped onto the groove (11), the push rod (711) pushes the first trigger portion (41) to move into the housing (1), and the first trigger portion (41) drives the connecting rod assembly (8) to move in a direction close to the power switch (31) to trigger the power switch (31) to turn on.
4. The power output device according to claim 3, characterized in that: The second triggering portion (42) is arranged on the outside of the groove (11) and passes through the housing (1), and the second triggering portion (42) is connected to the connecting rod assembly (8); When the first cooking accessory (72) is connected to the first output interface (21), the first cooking accessory (72) pushes the second trigger portion (42) to move into the housing (1), and the second trigger portion (42) drives the connecting rod assembly (8) to move in a direction close to the power switch (31), so as to trigger the power switch (31) to turn on.
5. The power output device according to claim 4, characterized in that: The connecting rod assembly (8) comprises a base (81), a first connecting rod (82) and a spring (83); the base (81) is arranged in the housing (1); the first connecting rod (82) is arranged on the base (81); a spring (83) is arranged between the first connecting rod (82) and the base (81); the spring (83) is used to apply a force to the first connecting rod (82) to make it move in a direction close to the trigger component (4); The trigger component (4) further comprises a rod portion (43), the first trigger portion (41) and the second trigger portion (42) are both arranged on the rod portion (43), the first end of the first connecting rod (82) corresponds to the power switch (31), and the second end of the first connecting rod (82) is connected to the rod portion (43); When the action member (71) or the first cooking accessory (72) is installed on the first output interface (21), the first triggering portion (41) or the second triggering portion (42) causes the rod portion (43) to move toward the power switch (31), and drives the first connecting rod (82) to move and trigger the power switch (31), so that the motor (3) is powered on; When the action member (71) or the first cooking accessory (72) is removed from the housing (1), the spring (83) pushes the first connecting rod (82) to move in a direction away from the power switch (31) to release the trigger of the power switch (31) and cut off the power to the motor (3).
6. The power output device according to claim 1, characterized in that: The first gear assembly (5) comprises an output gear (51) connected to the motor shaft of the motor (3), a first double gear (52), a second double gear (53) and a third double gear (54); the first tooth portion of the first double gear (52) meshes with the output gear (51); the second tooth portion of the first double gear (52) meshes with the first tooth portion of the second double gear (53); the second tooth portion of the second double gear (53) meshes with the first tooth portion of the third double gear (54); and the third double gear (54) is arranged on the first output shaft (55).
7. The power output device according to claim 6, characterized in that: The second gear assembly (6) comprises a connecting gear (61), a first bevel gear (62) and a second bevel gear (63); the connecting gear (61) is meshed with the second tooth portion of the third double gear (54); the connecting gear (61) is coaxial with the first bevel gear (62); the first bevel gear (62) is meshed with the second bevel gear (63); and the second bevel gear (63) is arranged on the other end of the second output shaft (64).
8. The power output device according to claim 1, characterized in that: The power output device further comprises a locking assembly (9), wherein the locking assembly (9) is used to lock the second cooking accessory (73) engaged with the second output interface (22).
9. The power output device according to claim 8, characterized in that: The housing (1) is provided with a connecting seat (12), the connecting seat (12) is provided with the second output interface (22) penetrating therethrough, a card slot (731) is provided on one end of the second cooking accessory (73) connected to the second output interface (22), the locking assembly (9) comprises a locking slot (91) and a resettable locking shaft (92), the locking shaft (92) is an L-shaped structure, one end of which penetrates the housing (1) and the other end of which penetrates the connecting seat (12); When the second cooking accessory (73) extends into the connecting seat (12) and is engaged with the second output interface (22), the locking groove (91) locks the second cooking accessory (73) in the circumferential direction thereof, and the locking shaft (92) locks the second cooking accessory (73) in the axial direction thereof after being engaged in the locking groove (731).
10. A multifunctional food processing equipment, characterized in that: The power output device comprises the power output device as claimed in any one of claims 1 to 9, and further comprises a first cooking accessory (72) connected to the first output interface (21) and a second cooking accessory (73) connected to the second output interface (22), wherein the function of the first cooking accessory (72) is different from the function of the second cooking accessory (73).
Citation Information
Patent Citations
Food cooking machine
CN206567066U