Three-way output transmission structure and cutting and matching power platform
By adopting a new transmission structure that integrates the output units of three different speed levels, the problem of existing technologies being unable to meet various cooking needs has been solved, and the foundation for various food preparation operations has been realized.
Patent Information
- Application Number
- CN202423236953.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing food preparation equipment cannot integrate multiple cooking power output speeds together, failing to meet the requirements of multiple speed levels. This is a problem that cannot be solved by existing technologies.
A new transmission structure and a new technical solution were adopted, which solved the problems that were not solved in the existing technology.
It integrates the output units of three different speed levels, providing an operational basis for food preparation operations such as grinding, kneading and extruding dough, cutting vegetables, and cutting meat.
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Figure CN223627387U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of household appliances, specifically relates to a three -way output transmission structure and cut and allocate power platform. BACKGROUND
[0002] For various operations of the kitchen, the meal preparation before cooking is always an indispensable link, and for Chinese cooking with various cooking methods and various food materials, the meal preparation link is more diverse, which puts forward the requirement that various functions are integrated together for the dish preparation equipment, however, various functions have different requirements for the rotational speed of power output, for example, the requirement for the rotational speed of power output for the chopping operation is relatively high, and the requirement for the rotational speed of power output for the noodle extrusion operation is relatively low, therefore, the meal preparation equipment urgently needs to provide a transmission structure integrating power output of multiple levels of rotational speed. SUMMARY
[0003] To solve the above technical problems, the transmission related structure of the power platform in the cutting and allocating equipment is further improved in the application, so as to integrate power output of multiple levels of rotational speed together to adapt to various meal preparation requirements. One of the purposes of the utility model is to provide a three-way output transmission structure, and the second purpose is to provide a corresponding cutting and allocating power platform.
[0004] The specific technical scheme is described below:
[0005] The three-way output transmission structure comprises:
[0006] The double-output motor comprises a first output part and a shaft coupling output part;
[0007] The variable shaft coupling provided with power by the shaft coupling output part comprises a second output part and a third output part;
[0008] The rotational speed corresponding to the first output part is greater than the rotational speed corresponding to the second output part, and the rotational speed corresponding to the second output part is greater than the rotational speed corresponding to the third output part.
[0009] In the above technical scheme, the combination of the double-output motor and the variable shaft coupling is used to realize the integration of three levels of rotational speed output parts, and provide an operation basis for various meal preparation operations.
[0010] Preferably, the output direction of the first output part is vertically upward, the output direction of the second output part is vertically upward, and the output direction of the third output part is horizontally arranged.
[0011] Further preferably, the first output part is arranged at one side of the dual-output motor, the third output part is arranged at an end of the variable coupling far from the dual-output motor, and the second output part is arranged above the third output part.
[0012] Further preferably, a gap is arranged between the first output part and the second output part to avoid interference of the clamping structure, so that the first output part powered food preparation module can obtain the space for clamping installation and prevent the second output part from causing installation interference.
[0013] Further preferably, the second output part and the third output part have coplanar rotating output shafts, so that the second output part and the third output part can be used as the power input part of the food preparation module, facilitating the internal structure arrangement of the food preparation module.
[0014] The food preparation module, such as a dough kneading and dough extruding module, the second output part is responsible for the power input of dough kneading, and the third output part is responsible for the power input of dough extruding, and since the rotating output shafts of the second output part and the third output part are coplanar, the dough kneading operation can be directly converted to the dough extruding operation.
[0015] Preferably, the output power of the first output part is at least used for the module for stirring and crushing food materials.
[0016] Preferably, the output power of the second output part is at least used for the module for cutting vegetables or kneading dough.
[0017] Preferably, the output power of the third output part is at least used for the module for cutting meat or extruding dough.
[0018] Preferably, the first output part outputs power through a spline structure.
[0019] Preferably, the coupling output part obtains the output directions of the second output part and the third output part through a bevel gear connection structure and adjusts the rotating speeds of the second output part and the third output part respectively.
[0020] The cutting and preparation power platform is provided with the transmission structure of any one of the above technical solutions.
[0021] In summary, the technical solution of the utility model has the following main beneficial effects:
[0022] Compared with the prior art, the technical solution of the utility model integrates three levels of rotating speed output parts together, and provides an operation basis for food preparation operations such as stirring, dough kneading and extruding, cutting vegetables, and cutting meat.
[0023] Further or more detailed beneficial effects will be described in the specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 is a schematic diagram of the three-dimensional structure of the power platform according to an embodiment;
[0025] Figure 2 is a schematic diagram of the internal component structure of the power platform according to an embodiment;
[0026] Figure 3 is a schematic diagram of the structure of a cutting and processing machine equipped with a noodle extruding module according to an embodiment;
[0027] Figure 4 is a schematic diagram of the structure of a cutting and processing machine equipped with a vegetable cutting module according to an embodiment;
[0028] Figure 5 is a schematic diagram of the structure of a cutting and processing machine equipped with a meat cutting module according to an embodiment;
[0029] Figure 6 is a schematic diagram of the structure of a cutting and processing machine equipped with a mincing module according to an embodiment.
[0030] Reference signs:
[0031] 1: power platform, 1.1: double-output motor, 1.11: first output, 1.12: shaft coupling output, 1.2: phase conversion shaft coupling, 1.21: second output, 1.22: third output;
[0032] 2: noodle extruding module, 3: vegetable cutting module, 4: meat cutting module, 5: mincing module. DETAILED DESCRIPTION
[0033] The utility model is further explained in combination with the embodiments as follows:
[0034] The core technical problem faced by the technical solution of the embodiments is derived from the inventor's accurate understanding of the prior art. Therefore, how to provide a transmission structure that integrates power outputs of multiple levels of rotational speed is a technical problem that the inventor urgently needs to solve.
[0035] It should be noted that the embodiments do not constitute a limitation on the protection scope of the claims of the utility model. According to the technical concepts provided / proved by the embodiments, the technical solutions that can be reasonably expected by those skilled in the art should be covered within the protection scope of the claims of the utility model.
[0036] The embodiments are described in detail as follows:
[0037] Please refer to the accompanying Figure 1 and 2 The present embodiment relates to a three-way output transmission structure and a cutting and processing power platform.
[0038] The three-way output transmission structure takes the double-output motor 1.1 and the variable coupling 1.2 as the core components, the double-output motor 1.1 selects a large-torque worm reducer motor with two output shafts, two output parts are used for the two output shafts, one of which is a first output part 1.11 with a vertical upward output direction, and the other is a coupling output part 1.12 with a horizontal output direction, and the first output part 1.11 outputs power through a spline structure;
[0039] The coupling output part 1.12 provides power, the input end of the variable coupling 1.2 is connected to the coupling output part 1.12, and the variable coupling 1.2 also includes two output parts, one of which is a second output part 1.21 with a vertical upward output direction, and the other is a third output part 1.22 with a horizontal output direction, in this embodiment, the first output part 1.11 is arranged on one side of the double-output motor 1.1, the third output part 1.22 is arranged at the end of the variable coupling 1.2 away from the double-output motor 1.1, and the second output part 1.21 is arranged above the third output part 1.22;
[0040] The second output part 1.21 and the third output part 1.22 have different output directions and corresponding rotating speeds through the bevel gear connection structure in the coupling output part 1.12.
[0041] In the technical solution of this embodiment, in order to adapt to the needs of different cutting modules, the first output part 1.11, the second output part 1.21 and the third output part 1.22 have different output rotating speeds, specifically, the rotating speed of the first output part 1.11 is greater than that of the second output part 1.21, and the rotating speed of the second output part 1.21 is greater than that of the third output part 1.22;
[0042] By combining the motor with two output parts and the variable coupling, the integration of three-level rotating speed output parts is realized, and the operation basis is provided for the operation of various requirements;
[0043] For example, after being set in this way in the embodiment:
[0044] The rotating speed of the first output part 1.11 is the fastest, and the output power thereof can be used for the chopping module for chopping food materials;
[0045] The second output part 1.21 has a medium rotating speed, and the output power thereof can be used for the module for cutting vegetables or mixing noodles;
[0046] The output rotating speed of the third output part 1.22 is the slowest, and can be used for driving the noodle extruding module.
[0047] In the preferred embodiment, the first output part 1.11 and the second output part 1.21 are spaced apart to avoid interference with the clamping structure of the second output part 1.21 when the chopping module is clamped to the first output part.
[0048] In the preferred embodiment, the second output part 1.21 and the third output part 1.22 have co-planar rotary output axes. In this embodiment, the second output part 1.21 and the third output part 1.22 can be used together as a power input part of a combined dough mixing and dough extruding module, which facilitates the internal structure of the module. Specifically, the second output part 1.21 is responsible for the power input for dough mixing, and the third output part 1.22 is responsible for the power input for dough extruding. Since the rotary output axes of the second output part 1.21 and the third output part 1.22 are co-planar, the dough mixing operation can be directly followed by the dough extruding operation.
[0049] The embodiment also includes a chopping power platform 1, which is provided with the transmission structure of any of the above embodiments.
[0050] The power platform 1 of the embodiment can be assembled with various chopping modules with different functions to achieve the function of preparing food:
[0051] Please refer to the accompanying drawings Figure 3 The dough extruding module 2 can be assembled with the power platform 1 to achieve the functions of dough mixing and dough extruding. The dough extruding module 2 includes a dough flocculation stirring structure and a dough flocculation extruding structure. The dough flocculation stirring structure includes a stirring rod, and the dough flocculation extruding structure includes an extruding screw with a driving end and an extruding end arranged oppositely.
[0052] In this embodiment, the stirring rod of the dough extruding module 2 is drivingly connected to the second output part 1.21, and the driving end of the extruding screw is drivingly connected to the third output part 1.22, which realizes the assembly and use of the dough chopping and extruding machine. The second output part 1.21 has a moderate rotational speed, which can provide sufficient power during dough mixing without damaging the toughness of the dough flocculation due to excessive rotational speed. The third output part 1.22 has the slowest output rotational speed, which is suitable for slow extrusion of dough material and further compacts the dough during extrusion to obtain a more intense taste.
[0053] Please refer to the accompanying drawings Figure 4The cutting module 3 can be assembled with the power platform 1 to realize the cutting function, wherein the bottom of the cutting module 3 is provided with an input port of the second output part 1.21, and the inside of the cutting module 3 is provided with a cutting structure connected with the second output part 1.21, in the embodiment, the cutting structure is driven by the second output part 1.21 to rotate the cutter disc to cut and process the input vegetables, the second output part 1.21 has a moderate rotating speed, which is suitable for slicing or shredding the general vegetables, so as to ensure the cutting efficiency and prevent the cutter disc from rotating too fast to make the cut vegetables too fine.
[0054] Please refer to the accompanying drawings of the specification Figure 5 The cutting module 3 can be assembled with the power platform 1 to realize the cutting function, wherein the bottom of the cutting module 3 is provided with an input port of the second output part 1.21, and the inside of the cutting module 3 is provided with a cutting structure connected with the second output part 1.21, in the embodiment, the cutting structure is driven by the second output part 1.21 to rotate the cutter disc to cut and process the input vegetables, the second output part 1.21 has a moderate rotating speed, which is suitable for slicing or shredding the general vegetables, so as to ensure the cutting efficiency and prevent the cutter disc from rotating too fast to make the cut vegetables too fine.
[0055] Please refer to the accompanying drawings of the specification Figure 6 The cutting module 3 can be assembled with the power platform 1 to realize the cutting function, wherein the bottom of the cutting module 3 is provided with an input port of the second output part 1.21, and the inside of the cutting module 3 is provided with a cutting structure connected with the second output part 1.21, in the embodiment, the cutting structure is driven by the second output part 1.21 to rotate the cutter disc to cut and process the input vegetables, the second output part 1.21 has a moderate rotating speed, which is suitable for slicing or shredding the general vegetables, so as to ensure the cutting efficiency and prevent the cutter disc from rotating too fast to make the cut vegetables too fine.
[0056] In the description of the present specification, the description of the terms "embodiment", "basic embodiment", "preferred embodiment", "other embodiment", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are contained in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0057] Although the preferred embodiments of the present application have been described, those skilled in the art can make further changes and modifications to the embodiments once they know the basic creative concept. Therefore, the appended claims are intended to include the preferred embodiments and all changes and modifications falling within the scope of the present application.
[0058] It will be apparent to those skilled in the art that various modifications and variations can be made to the present application without departing from the spirit or scope of the application. Thus, it is intended that the present application cover modifications and variations of this application provided they come within the scope of the appended claims and their equivalents.
Claims
1. A three-way output transmission structure, characterized by, Including have: Double output motor (1.1) including first output (1.11) and shaft output (1.12); With the shaft output (1.12) power phase coupling (1.2), the phase coupling (1.2) including second output (1.21) and third output (1.22); The first output (1.11) corresponding speed is greater than the second output (1.21) corresponding speed, the second output (1.21) corresponding speed is greater than the third output (1.22) corresponding speed.
2. The transmission arrangement of claim 1, wherein: The output direction of the first output (1.11) is vertically upward, the output direction of the second output (1.21) is vertically upward, and the output direction of the third output (1.22) is horizontally arranged.
3. The transmission arrangement of claim 2, wherein: The first output (1.11) is arranged on one side of the double output motor (1.1).
4. The transmission arrangement of claim 3, wherein: The third output (1.22) is arranged at one end of the phase coupling (1.2) away from the double output motor (1.1), and the second output (1.21) is arranged above the third output (1.22).
5. The transmission arrangement of claim 2, wherein: The first output (1.11) and the second output (1.21) are provided with a spacing of avoiding clamping structure.
6. The transmission arrangement of claim 5, wherein: The second output (1.21) and the third output (1.22) have a common rotating output axis.
7. The transmission arrangement of claim 5, wherein: The output power of the first output (1.11) at least acts on the module of crushing food materials, the output power of the second output (1.21) at least acts on the module of cutting vegetables or noodles, and the output power of the third output (1.22) at least acts on the module of cutting meat or noodles.
8. The transmission arrangement of claim 2, wherein: The first output (1.11) outputs power through spline structure.
9. The transmission arrangement of claim 2, wherein: The shaft output (1.12) obtains the output direction of the second output (1.21) and the third output (1.22) through bevel gear connection structure, and adjusts the corresponding speed of the second output (1.21) and the third output (1.22) respectively.
10. A tailored power platform characterized by: The transmission structure of any one of claims 1-9 is provided.