Cooking equipment

The design of detachable connection between middleware and modules enables convenient debugging and testing of functional modules, solves the problem of low assembly efficiency of existing cooking equipment, and improves module qualification rate and assembly efficiency.

CN224125743UActive Publication Date: 2026-04-17ZHUHAI UNICOOK TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHUHAI UNICOOK TECHNOLOGY CO LTD
Filing Date
2025-03-12
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

When functional module problems are discovered during the final assembly and testing of existing cooking equipment, the entire machine needs to be disassembled and adjusted, which is cumbersome and results in low assembly efficiency.

Method used

The design adopts a middleware and multiple modules that can be detachably connected. The modules include support modules and functional modules, and the control boards communicate with each other. The detachable connection method simplifies module debugging and testing.

Benefits of technology

It improved the pass rate of functional modules and the overall assembly efficiency, simplified the rectification steps, and improved the convenience of module debugging and testing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses cooking equipment. The cooking equipment comprises middleware and a plurality of modules, the modules are detachably connected with the middleware, each module comprises a supporting module and a functional module, each functional module comprises a control panel and a functional assembly which are electrically connected, and the control panels of the multiple functional modules are in communication connection. Therefore, each functional module can be conveniently and independently debugged and detected, and the corresponding functional module can be debugged and detected through the control boards which are in communication connection with each other, so that compared with the prior art that the functional modules are subjected to complete machine test and detection on a general assembly line after being subjected to general assembly, the test efficiency is improved; and the qualification rate of the functional modules on the final assembly line can be improved, so that the final assembly efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of kitchen equipment technology, and in particular to a cooking device. Background Technology

[0002] Current cooking equipment, such as drum stir-fry machines, typically includes multiple functional modules, such as the drum module and the seasoning compartment module. Each module can usually only be tested after the machine head, worktable, and other parts of the machine are assembled. If a problem is found in a certain functional module after testing, the entire machine needs to be disassembled and adjusted, which is cumbersome, has low assembly efficiency, and increases the difficulty of final assembly and testing. Utility Model Content

[0003] In view of this, the present invention provides a cooking device that can improve the convenience of functional module debugging and testing. Compared with the related technology of assembling each functional module and then conducting whole machine testing on the assembly line, it is beneficial to improve the pass rate of functional modules on the assembly line, thereby improving the assembly efficiency.

[0004] The cooking device provided by this utility model includes: an intermediate component and multiple modules. The modules are detachably connected to the intermediate component. Each module includes a support module and a functional module. Each functional module includes an electrically connected control board and functional components. The control boards of the multiple functional modules are communicatively connected to each other.

[0005] Furthermore, the intermediate component is configured as a cavity structure with at least a partial opening, and the two side walls of the cavity structure are coaxially provided with mounting structures; the functional module includes a roller module, the roller module includes a rotating shaft, and the rotating shafts on both sides of the roller module are at least partially accommodated in the mounting structure, and the rotating shafts are flipped and connected to the side walls through the mounting structure.

[0006] Furthermore, the intermediate component includes a rear wall located at the rear and connecting the two side walls, the support module includes a support compartment module, and the functional modules include a low-voltage compartment module and a high-voltage compartment module. The support compartment module and the low-voltage compartment module are respectively connected to the outside of the two side walls, and the high-voltage compartment module is connected to the outside of the rear wall. The support compartment module, the low-voltage compartment module, and the high-voltage compartment module together form a box structure.

[0007] Furthermore, the cooking equipment also includes a seasoning compartment module, which is mounted above the support compartment module and the low-voltage compartment module; the functional module also includes a food dispensing module, which is connected to the top of the low-voltage compartment module and located below the seasoning compartment module; the support module also includes a worktable connected to the bottom of the intermediate component, with the support compartment module, the low-voltage compartment module, and the high-voltage compartment module located above the worktable.

[0008] Furthermore, a first positioning part is provided on the side wall, and a first limiting part is provided on the support compartment module and / or the low-voltage compartment module. The first positioning part and the first limiting part cooperate to limit the relative movement of the intermediate component and the support compartment module, and / or, the first positioning part and the first limiting part cooperate to limit the relative movement of the intermediate component and the low-voltage compartment module.

[0009] Furthermore, a first seal is provided between the side wall and the support compartment module; wherein, a sealing groove is provided on the side wall opposite to the support compartment module, the first seal is located at the sealing groove, and / or the first seal is located at at least a portion of the edge of the side wall.

[0010] Furthermore, a second positioning part and a first connecting part are provided on the rear wall, and a second limiting part and a first clearance opening are provided on the high-voltage compartment module. The second positioning part and the second limiting part cooperate to limit the relative movement of the intermediate component and the high-voltage compartment module. The intermediate component also includes a first connecting part, which is connected to the first connecting part passing through the first clearance opening. The intermediate component also includes a second sealing part sleeved around the first connecting part, which is used to seal the gap between the first connecting part and the first clearance opening.

[0011] Furthermore, the seasoning compartment module and the support compartment module are connected by at least one of the following: bolt structure, snap-fit ​​structure, plug-in structure, and mortise and tenon structure; and / or the seasoning compartment module and the low-voltage compartment module are connected by at least one of the following: bolt structure, snap-fit ​​structure, plug-in structure, and mortise and tenon structure.

[0012] Furthermore, grooves or protrusions are provided on the outer walls of the support compartment module and the low-voltage compartment module, which are far apart from each other.

[0013] Furthermore, the functional module also includes a first liquid seasoning module that is detachably installed inside the workbench. The control board of the first liquid seasoning module is connected to the control board of the low-voltage compartment module. The first liquid seasoning module includes a first material tank, a first pump head, and a first drive unit that is poweredly connected to the first pump head. The low-voltage compartment module or the support compartment module is provided with a first nozzle located inside the cavity structure. The first pump head is connected to the first nozzle and the first material tank.

[0014] Furthermore, the multiple functional modules include a low-voltage compartment module and an auxiliary module. The control board of the low-voltage compartment module is configured as a main control board, and the control board of the auxiliary module is communicatively connected to the main control board.

[0015] Furthermore, the drum module includes a drum body and a pot body located inside the drum body. The functional components of the drum module include a stirring component and / or a heating component. The stirring component is installed between the drum body and the pot body and extends into the pot body. The heating component is installed between the drum body and the pot body to heat the pot body. The support chamber module includes a first chamber body and a knob, an emergency stop switch, and a spray gun installed on the first chamber body. The high-voltage power chamber module includes a second chamber body and a junction box located inside the second chamber body. The functional components of the high-voltage power chamber module include an AC contactor, a filter board, a switching power supply, and a mechanism. The knob and the emergency stop switch are electrically connected to the junction box via a second connecting line. The low-voltage power chamber module includes a third chamber body. The functional components of the low-voltage power chamber module include a water circuit component, a GUI module, a recognition component, an indicator light, a voice prompt component, and a tilting pot drive component installed on the third chamber body. The seasoning chamber module includes a fourth chamber body. The functional components of the seasoning chamber module include a solid seasoning component and a liquid seasoning component installed on the fourth chamber body.

[0016] The above description is merely an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, and to make the above and other objects, features and advantages of this utility model more obvious and understandable, specific embodiments of this utility model are given below. Attached Figure Description

[0017] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of the invention. Furthermore, the same reference numerals denote the same parts throughout the drawings. Wherein:

[0018] Figure 1 A structural schematic diagram of the cooking device provided in an embodiment of the present invention is shown from one perspective;

[0019] Figure 2 It shows Figure 1 An exploded view of the embodiment shown;

[0020] Figure 3 This diagram illustrates a structural schematic of the middleware provided in an embodiment of the present invention from one perspective.

[0021] Figure 4 A schematic diagram of the structure of the roller module provided in an embodiment of the present invention is shown from one perspective;

[0022] Figure 5 A structural schematic diagram of the support chamber module provided in an embodiment of the present invention is shown from one perspective;

[0023] Figure 6A structural schematic diagram of the low-voltage compartment module provided in an embodiment of the present invention is shown from one perspective;

[0024] Figure 7 A structural schematic diagram of the high-voltage compartment module provided in an embodiment of the present invention is shown from one perspective.

[0025] Figure 8 This diagram shows a structural schematic of the seasoning bin module provided in an embodiment of the present invention from one perspective.

[0026] Figure 9 This diagram illustrates a structural schematic of the food feeding module provided in an embodiment of the present invention from one perspective.

[0027] Figure 10 A structural schematic diagram of the worktable provided in an embodiment of the present invention is shown from one perspective;

[0028] Figure 11 A schematic diagram of the internal structure of the workbench provided in an embodiment of the present invention is shown;

[0029] Figure 12 This diagram shows a structural schematic of the first liquid seasoning module provided in an embodiment of the present invention from one perspective.

[0030] Figure 13 An assembly diagram of the various modules of the cooking device provided in an embodiment of the present invention is shown;

[0031] Figure 14 This diagram illustrates a structural schematic of the middleware provided in an embodiment of the present invention from another perspective.

[0032] Figure 15 This diagram shows a structural schematic from another perspective after the middleware and high-voltage compartment module provided in an embodiment of the present invention are assembled.

[0033] Figure 16 It shows Figure 15 A magnified view of part A in the diagram;

[0034] Figure 17 It shows Figure 15 A magnified view of section B in the diagram;

[0035] Figure 18 This diagram shows a structural schematic from another perspective of the assembled middleware, high-voltage compartment module, support compartment module, and low-voltage compartment module provided in an embodiment of the present invention.

[0036] Figure 19 It shows Figure 18 A magnified view of part C in the diagram;

[0037] Figure 20It shows Figure 18 A magnified view of part D in the diagram;

[0038] Figure 21 It shows Figure 18 A magnified view of part E in the diagram;

[0039] Figure 22 A partial structural schematic diagram of the support chamber module provided in an embodiment of this utility model is shown;

[0040] Figure 23 It shows Figure 22 A magnified view of part F in the diagram;

[0041] Figure 24 This diagram shows a structural schematic from another perspective of the assembled middleware, high-voltage compartment module, support compartment module, low-voltage compartment module, and seasoning compartment module provided in an embodiment of the present invention.

[0042] Figure 25 It shows Figure 24 A magnified view of point G in the diagram.

[0043] in, Figures 1 to 25 The correspondence between the reference numerals and component names in the attached drawings is as follows:

[0044] 110 Intermediate component, 111 Side wall, 1111 First positioning part, 1112 Sealing groove, 112 Mounting structure, 113 Rear wall, 1131 Second positioning part, 1132 First connecting part, 114 First seal, 115 Second seal, 120 Support module, 130 Functional module, 140 Roller module, 141 Shaft, 142 Barrel body, 143 Pot body, 144 Stirring assembly, 145 Bearing, 150 Support chamber module, 151 First groove, 152 First nozzle, 153 First chamber body, 1531 First limiting part, 1532 First through hole, 1533 Second through hole, 154 Knob, 155 Emergency stop switch, 156 Spray gun, 160 Low voltage chamber module, 1601 Third chamber body, 161 Second groove, 162 Antenna, 163 Main Control board, 164 water circuit component, 165 GUI module, 166 recognition component, 167 indicator light, 168 voice prompt component, 169 wok tilting drive component, 170 high-voltage power compartment module, 171 junction box, 172 AC contactor, 173 filter board, 174 switching power supply, 175 mechanism, 176 second compartment, 1761 second limit part, 1762 first clearance opening, 180 seasoning compartment module, 181 fourth compartment, 182 solid seasoning component, 183 liquid seasoning component, 184 door, 185 support column, 1851 connecting plate, 186 second connector, 190 food feeding module, 200 workbench, 210 first liquid seasoning module, 211 first material tank, 212 first pump head, 213 first drive part, 214 first control board. Detailed Implementation

[0045] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments of this utility model and the features thereof can be combined with each other.

[0046] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0047] The following reference Figures 1 to 25 The present invention describes a cooking apparatus provided according to some embodiments of the present invention, wherein the cooking apparatus may be a stir-fry machine or other kitchen equipment.

[0048] like Figure 1 and Figure 2 As shown, the cooking device provided in this embodiment of the present invention includes: an intermediate component 110 and multiple modules. The modules are detachably connected to the intermediate component 110. Each module includes a support module 120 and a functional module 130. The functional module 130 includes an electrically connected control board and functional components. The control boards of the multiple functional modules 130 are communicatively connected to each other.

[0049] In this embodiment, multiple modules are detachably connected to the middleware 110. The middleware 110 can be regarded as a support structure. Multiple modules are installed on the middleware 110 through detachable connection, which can improve the assembly and disassembly efficiency of each module and the middleware 110, which is conducive to improving the overall assembly efficiency. It also makes it convenient to disassemble and separate each module from the middleware 110 for replacement and maintenance, which is conducive to improving maintenance efficiency and saving maintenance costs.

[0050] The multiple modules can be considered as multiple independent modules, each with its own function and role. For example, the multiple modules include a support module 120 and a functional module 130. The support module 120 can provide support to connect or support adjacent or connected modules or components. The functional module 130 includes a control board and functional components. The control board can control the functional components to achieve predetermined functions, including but not limited to the following: rotation of the pot body 143, heating of the pot body 143, rotation of the stirring component 144, opening and closing of the switch, opening and closing of the indicator light 167, opening and closing of the voice prompt component 168, opening and closing of the circuit, etc. In other words, the support module 120 and the functional module 130 can be independent modules. For the independent functional module 130, due to the inclusion of a control board and functional modules, each functional module 130 requires an external power supply and data communication interface to communicate with the control board. This enables testing and inspection of each functional module 130. For example, by establishing a communication connection with the control board of the functional module 130 to achieve data communication interaction, the corresponding functional components can be debugged and tested. This facilitates individual debugging and testing of each functional module 130. Compared to related technologies where each functional module 130 is assembled and then tested on the assembly line, this method simplifies the disassembly and reassembly of the entire machine to rectify problematic functional modules 130. This greatly simplifies the disassembly and reassembly steps, facilitating rectification and operation, improving the rectification efficiency of each functional module 130, and increasing the pass rate of the seasoning components on the assembly line, thereby improving overall assembly efficiency.

[0051] Furthermore, the control boards of multiple functional modules 130 are connected in communication. This arrangement ensures that after final assembly, i.e. after the complete machine is assembled, the multiple control boards can communicate and exchange data to control each functional module 130, thereby enabling functional control of the entire cooking equipment and improving the reliability and accuracy of the cooking equipment's functions. Meanwhile, this setup allows for the debugging and testing of corresponding functional modules 130 during the assembly of the cooking equipment using interconnected control boards. For example, during assembly, control boards for some functional modules 130 (such as two or more functional modules 130) installed on the intermediate component 110 can communicate with each other, enabling debugging and testing of those functional modules 130 (such as two or more functional modules 130). If a fault is found, those functional modules 130 (such as two or more functional modules 130) can be disassembled and rectified in a timely manner. Compared with related technologies that require assembling each functional module 130 and then testing the entire machine on the assembly line, this simplifies the operation of disassembling and assembling the entire machine to rectify problematic functional modules 130. It greatly simplifies the disassembly and assembly steps, facilitates rectification, and is easy to operate. This is conducive to improving the rectification efficiency of each functional module 130 and increasing the pass rate of functional modules 130 on the assembly line, thereby improving the overall assembly efficiency. In other words, through the communication connection between the control boards of multiple functional modules 130, the functional modules 130 can be jointly controlled, such as as a whole. Each functional module 130 is equipped with an individual control board, which can communicate with other interfaces to achieve individual control. Thus, each functional module 130 can achieve different control methods, such as overall control and individual control, which greatly improves the convenience of debugging and testing of the functional modules 130.

[0052] Furthermore, the module and the middleware 110 can be detachably connected in at least one of the following ways, such as threaded structure, plug-in structure, snap-fit ​​structure, tenon and mortise structure, magnetic structure, etc.

[0053] like Figure 2 , Figure 3 and Figure 4 As shown, in some possible embodiments provided by this utility model, the intermediate component 110 is configured as a cavity structure with at least a partial opening, and the two side walls 111 of the cavity structure are coaxially provided with an installation structure 112; the functional module 130 includes a roller module 140, the roller module 140 includes a rotating shaft 141, and after the rotating shafts 141 on both sides of the roller module 140 are at least partially accommodated in the installation structure 112, the rotating shafts 141 are flipped and connected to the side walls 111 through the installation structure 112.

[0054] The rotating shafts 141 of the roller module 140 are located on opposite sides of the roller module 140, that is, there is a rotating shaft 141 on each side of the roller module 140. The two rotating shafts 141 are connected to the intermediate component 110 respectively, so that the intermediate component 110 can provide good and stable support for the roller module 140.

[0055] In this embodiment, the intermediate component 110 is configured as a cavity structure with at least a partial opening. The opening provides an operating space for the assembly of the roller module 140 and the intermediate component 110. The cavity structure provides a accommodating space and a movement space for the roller module 140, so that the roller module 140 can be accommodated in the cavity structure and move within the cavity structure after being connected to the intermediate component 110. Mounting structures 112 are coaxially arranged on the two side walls 111 of the cavity structure, that is, each side wall 111 of the cavity structure has a mounting structure 112, and the mounting structures 112 on the two side walls 111 are coaxially arranged. At least a portion of the rotating shafts 141 on both sides of the roller module 140 are accommodated within the mounting structures 112. It can be understood that the rotating shafts 141 on both sides of the roller module 140 are respectively accommodated within the mounting structures 112 on the two side walls 111. Specifically, during the assembly process of the roller module 140 and the intermediate component 110, the rotating shafts 141 on both sides of the roller module 140 can be simultaneously accommodated within the mounting structures 112 on the two side walls 111, and then the rotating shafts 141 of the roller module 140 are flipped and connected to the intermediate component 110 through the mounting structures 112, thereby realizing the flipped connection between the roller module 140 and the intermediate component 110. It can be understood that, as Figure 4 As shown, the roller module 140 may also include a mating component. When the rotating shaft 141 of the roller module 140 is accommodated in the mounting structure 112 of the intermediate component 110, the rotating shaft 141 and the intermediate component 110 are connected by the mating component, thereby realizing the flip connection between the rotating shaft 141 and the intermediate component 110. The mating component can be a bearing 145 or other rotating components.

[0056] In other words, during the assembly process of the intermediate component 110 with the roller module 140, the rotating shafts 141 on both sides of the roller module 140 can be simultaneously accommodated within the mounting structure 112 of the intermediate component 110. That is, the intermediate component 110 can simultaneously support both rotating shafts 141. Then, a mating component can be used to achieve a flip-connection between the rotating shafts 141 and the intermediate component 110, thus realizing a flip-connection between the roller module 140 and the intermediate component 110. Compared with related technologies where the two rotating shafts on the roller module side need to be assembled with the box structures on both sides sequentially, this assembly method reduces the assembly difficulty of the roller module 140 and the intermediate component 110, improves assembly efficiency, and reduces overall cost. Furthermore, after the roller module 140 and the intermediate component 110 are assembled, the coaxiality of the rotating shafts 141 on both sides of the roller module 140 is improved, enhancing the stability of the roller module 140's flip-movement relative to the intermediate component 110, reducing damage to the roller module 140 and other structures of the cooking equipment, and contributing to extending the overall reliability of the cooking equipment.

[0057] The opening of the intermediate component 110 can be located at the top, and / or front, and / or rear of the intermediate component 110 to meet the needs of different structures of the intermediate component 110. Specifically, the intermediate component 110 is U-shaped. The U-shaped intermediate component 110 has more openings, which provides sufficient installation space for the roller module 140 and helps to improve the assembly efficiency of the roller module 140 and the intermediate component 110.

[0058] Among them, such as Figure 3 As shown, the mounting structure 112 can be positioned close to the opening to facilitate the insertion of the rotating shaft 141 of the roller module 140 into the mounting structure 112. Furthermore, the mounting structure 112 communicates with the opening so that the rotating shaft 141 of the roller module 140 can be inserted into the mounting structure 112. Specifically, the mounting structure 112 includes a notch structure, which can be understood as a structure with a circumferential notch. The notch of the notch structure communicates with the opening of the cavity structure. Thus, the rotating shafts 141 on both sides of the roller module 140 can be simultaneously inserted into the notch structure, allowing the intermediate component 110 to simultaneously support the rotating shafts 141 on both sides of the roller module 140 during assembly of the roller module 140 and the intermediate component 110.

[0059] The intermediate component 110 is a die-cast part. If the intermediate component 110 is integrally formed by die casting, compared to the need for multiple sheet metal welds in related technologies, the welding operation is simplified, assembly and manufacturing are facilitated, production efficiency is improved, and costs are saved. Simultaneously, it helps improve the coaxiality of the mounting structures 112 on the two side walls 111, thereby improving the coaxiality of the rotating shafts 141 on both sides of the roller module 140. Specifically, the intermediate component 110 can be manufactured using processes such as low-pressure die casting, gravity casting, high-pressure die casting, and lost-wax casting.

[0060] like Figure 4 As shown, in some possible embodiments provided by this utility model, the drum module 140 includes a barrel body 142 and a pot body 143 located inside the barrel body 142. The functional components of the drum module 140 include a stirring assembly 144 and / or a heating assembly. The stirring assembly 144 is installed between the barrel body 142 and the pot body 143 and extends into the pot body 143. The heating assembly is installed between the barrel body 142 and the pot body 143 to heat the pot body 143. It is understood that the control board of the drum module 140 is connected to the stirring assembly 144 to control the stirring assembly 144, and / or the control board of the drum module 140 is connected to the heating assembly to control the heating assembly.

[0061] like Figure 2 , Figure 3 , Figure 5 , Figure 6 , Figure 7 As shown, in some possible embodiments provided by this utility model, the intermediate component 110 includes a rear wall 113 located at the rear and connecting two side walls 111, the support module 120 includes a support compartment module 150, and the functional module 130 includes a low-voltage compartment module 160 and a high-voltage compartment module 170. The support compartment module 150 and the low-voltage compartment module 160 are respectively connected to the outside of the two side walls 111, and the high-voltage compartment module 170 is connected to the outside of the rear wall 113. The support compartment module 150, the low-voltage compartment module 160, and the high-voltage compartment module 170 together form a box structure.

[0062] The support compartment module 150 and the low-voltage compartment module 160 are detachably connected to the outside of the two side walls 111. For example, the support compartment module 150 is connected to the outside of the left side wall, and the low-voltage compartment module 160 is connected to the outside of the right side wall. This facilitates the assembly and disassembly of the support compartment module 150 to the left side wall, the low-voltage compartment module 160 to the right side wall, and the high-voltage compartment module 170 to the rear wall 113, making maintenance and parts replacement easier. Furthermore, this configuration, using the support compartment module 150, low-voltage compartment module 160, high-voltage compartment module 170, and intermediate component 110 to assemble the box structure, reduces welding steps compared to welding assembly in related technologies. This lowers welding difficulty and production complexity, increases production efficiency, reduces the scrap rate of sheet metal welded box structures, and improves the overall reliability of the machine. It is understood that the support compartment module 150 can also be connected to the outside of the right side wall, and the low-voltage compartment module 160 to the outside of the left side wall.

[0063] like Figure 5As shown, in some possible embodiments provided by this utility model, the support chamber module 150 includes a first chamber body 153, and a knob 154, an emergency stop switch 155, and a spray gun 156 disposed on the first chamber body 153. It can be understood that the support chamber module 150 does not have a control board; the support chamber module 150, as a structural component, provides mounting positions for the knob 154, the emergency stop switch 155, and the spray gun 156.

[0064] like Figure 7 As shown, in some possible embodiments provided by this utility model, the high-voltage compartment module 170 includes a second compartment 176 and a junction box 171 located within the second compartment 176. The functional components of the high-voltage compartment module 170 include an AC contactor 172, a filter board 173, a switching power supply 174, and a mechanism 175. The knob 154 and emergency stop switch 155 of the support compartment module 150 are electrically connected to the junction box 171 via a second connecting line. In other words, the high-voltage compartment module 170 includes a high-voltage module such as an AC contactor 172, a filter board 173, a switching power supply 174, and a mechanism 175. The electrical connection between the junction box 171 of the high-voltage compartment module 170 and the knob 154 and emergency stop switch 155 of the support compartment module 150 ensures a short conduit path between the knob 154, emergency stop switch 155, and the junction box 171, with minimal or no intersecting connections. This improves the product's assemblability, maintainability, efficiency, and overall cost.

[0065] like Figure 6 As shown, in some possible embodiments provided by this utility model, the low-voltage compartment module 160 includes a third compartment 1601. The functional components of the low-voltage compartment module 160 include a water circuit component 164, a GUI module 165, an identification component 166, an indicator light 167, a voice prompt component 168, and a tilting pot drive component 169, all installed on the third compartment 1601. In other words, the low-voltage compartment module 160 includes a low-voltage module and components. Thus, through the low-voltage compartment module 160 and the high-voltage compartment module 170, the separation of strong and weak current components and functional separation are achieved, facilitating individual debugging and maintenance of each module. Furthermore, each module is relatively independent, and after assembly, the wiring and conduit paths between each module are short with minimal or no intersecting, improving the product's assemblability, maintainability, efficiency, and reducing overall costs. Further, the low-voltage compartment module 160 is also equipped with an antenna 162 for signal transmission.

[0066] like Figure 2 and Figure 8As shown, in some possible embodiments of this utility model, the cooking device further includes a seasoning compartment module 180, which is mounted above the support compartment module 150 and the low-voltage electrical compartment module 160. The seasoning compartment module 180 is detachably connected to the top of the support compartment module 150 and the low-voltage electrical compartment module 160 to facilitate disassembly and assembly, and to facilitate maintenance and replacement. The mounting of the seasoning compartment module 180 above the support compartment module 150 and the low-voltage electrical compartment module 160 places the roller module 140 below the seasoning compartment module 180.

[0067] The seasoning container module 180 includes a fourth container body 181. The functional components of the seasoning container module 180 include a solid seasoning component 182 and a liquid seasoning component 183 installed on the fourth container body 181. The seasoning container module 180 is used to feed ingredients into the pot body 143 of the drum module 140, such as using the solid seasoning component 182 to feed solid seasonings and using the liquid seasoning component 183 to feed liquid seasonings.

[0068] Furthermore, the seasoning compartment module 180 and the support compartment module 150 are connected by at least one of the following methods: bolted connection, snap-fit ​​connection, plug-in connection, and mortise and tenon joint. The seasoning compartment module 180 and the low-voltage compartment module 160 are connected by at least one of the following methods: bolted connection, snap-fit ​​connection, plug-in connection, and mortise and tenon joint.

[0069] Furthermore, such as Figure 8 As shown, the solid seasoning component 182 and liquid seasoning component 183 of the seasoning compartment module 180 are installed inside the fourth compartment 181. The door 184 opens or closes the opening of the fourth compartment 181 to facilitate replenishment or maintenance of the solid seasoning component 182 and liquid seasoning component 183. Specifically, the door 184 component can be a glass door.

[0070] The seasoning compartment module 180 also includes a support column 185 and a second connector 186. A connecting plate 1851 is provided at the bottom of the support column 185. The second connector 186 passes through the top of the support compartment module 150 and connects to the connecting plate 1851. The second connector 186 passes through the top of the low-voltage compartment module 160 and connects to the connecting plate 1851. Thus, the seasoning compartment module 180 is connected to the support compartment module 150 and the low-voltage compartment module 160.

[0071] Furthermore, such as Figure 22 , Figure 23 , Figure 24 , Figure 25As shown, the seasoning bin module 180 has a connecting plate 1851 at its bottom. The seasoning bin module 180 includes a support column 185, and the bottom of the support column 185 is provided with the connecting plate 1851. The top of the support bin module 150 has a first through hole 1532. The seasoning bin module 180 also includes a second connector 186. The second connector 186 passes through the first through hole 1532 from the inside of the support bin module 150 and connects to the connecting plate 1851 to realize the connection between the support column 185 and the first bin body 153. Similarly, the top of the third compartment 1601 of the low-voltage compartment module 160 is provided with a first through hole 1532. The second connector 186 passes through the first through hole 1532 and connects to the connecting plate 1851 of the support column 185 of the seasoning compartment module 180, so as to realize the connection between the support column 185 and the third compartment 1601. Thus, the two support columns 185 of the seasoning compartment module 180 are connected to the support compartment module 150 and the low-voltage compartment module 160 respectively, so as to realize the assembly of the three. Specifically, the first through hole 1532 is a flanged hole. The flanged hole serves to prevent scratching hands and improves the safety of the operator.

[0072] Furthermore, such as Figure 23 and Figure 25 As shown, the top of the first compartment 153 of the support compartment module 150 is provided with a second through hole 1533, which is a flanged hole. The connecting plate 1851 is provided with a mating hole that mates with the flanged structure of the second through hole 1533. Thus, by the mating hole and the second through hole 1533 of the flanged structure engaging, such as the mating hole being embedded around the second through hole 1533 of the flanged structure, the connecting plate 1851 and the first compartment 153 are limited and pre-positioned, which helps to improve the assembly efficiency and assembly accuracy of the two. It can be understood that the top of the second compartment 176 of the weak current compartment module 160 can also be provided with a second through hole 1533, with the same structure and function, which will not be described in detail here.

[0073] like Figure 2 and Figure 9 As shown, in some possible embodiments provided by this utility model, the functional module 130 further includes a food feeding module 190. The food feeding module 190 is connected to the top of the low-voltage compartment module 160 and located below the seasoning compartment module 180. The food feeding module 190 is used to place food ingredients and can feed food ingredients into the pot body 143 of the drum module 140. It is understood that the food feeding module 190 and the low-voltage compartment module 160 are detachably connected for easy disassembly and assembly, and for easy maintenance and replacement of parts.

[0074] like Figure 2 and Figure 10As shown, in some possible embodiments provided by this utility model, the support module 120 further includes a workbench 200 connected to the bottom of the intermediate component 110, and the support compartment module 150, the low-voltage compartment module 160, and the high-voltage compartment module 170 are located above the workbench 200. That is, the workbench 200 is located at the bottom of the intermediate component 110. For example, the intermediate component 110 includes a bottom wall connecting two side walls 111 and located at the bottom, and the bottom wall is connected to the top of the workbench 200, so that the workbench 200 provides good support for the intermediate component 110 and the various modules connected to the intermediate component 110. It is understood that the workbench 200 and the intermediate component 110 are detachably connected for easy disassembly and assembly, and for convenient maintenance and parts replacement. Specifically, the workbench 200 is a structural component, mainly used to support the entire machine and place oil drums, toolboxes, etc.

[0075] like Figure 14 , Figure 18 , Figure 19 , Figure 20 , Figure 21 As shown, in some possible embodiments provided by this utility model, a first positioning part 1111 is provided on the side wall 111, and a first limiting part 1531 is provided on the support compartment module 150. For example, a first limiting part 1531 is provided on the first compartment body 153. The first positioning part 1111 and the first limiting part 1531 cooperate to limit the relative movement of the intermediate component 110 and the support compartment module 150. Thus, by cooperating with the first positioning part 1111 and the first limiting part 1531, the assembly of the support compartment module 150 and the intermediate component 110 can be pre-positioned to improve the assembly efficiency of the support compartment module 150 and the intermediate component 110.

[0076] In some possible embodiments provided by this utility model, a first positioning part 1111 is provided on the side wall 111, and a first limiting part 1531 is provided on the low-voltage compartment module 160, such as the first limiting part 1531 provided on the third compartment 1601. The first positioning part 1111 and the first limiting part 1531 cooperate to limit the relative movement of the intermediate component 110 and the low-voltage compartment module 160. Thus, by cooperating with the first positioning part 1111 and the first limiting part 1531, the assembly of the low-voltage compartment module 160 and the intermediate component 110 can be pre-positioned, thereby improving the assembly efficiency of the low-voltage compartment module 160 and the intermediate component 110.

[0077] Specifically, the first positioning part 1111 may include a protrusion, and the first limiting part 1531 may include a corresponding recess; alternatively, the first positioning part 1111 may include a recess, and the first limiting part 1531 may include a corresponding protrusion; or the first positioning part 1111 may include both a recess and a protrusion, and the first limiting part 1531 may include both a protrusion and a recess. It is understood that the number of first positioning parts 1111 on the same sidewall 111 can be one or more, and multiple first positioning parts 1111 are distributed at different positions on the sidewall 111. The number of first limiting parts 1531 on the support compartment module 150 may be equal to the number of first positioning parts 1111 on its opposite sidewall 111, and the number of first limiting parts 1531 on the weak current compartment module 160 may be equal to the number of first positioning parts 1111 on its opposite sidewall 111. It is understood that the more matching first positioning parts 1111 and first limiting parts 1531 there are, the better the limiting effect. The larger the area of ​​the graphic formed by the multiple first positioning parts 1111 on the side wall 111, the better the limiting effect.

[0078] Specifically, such as Figure 14 , Figure 18 , Figure 19 , Figure 20 , Figure 21 As shown, there are three first positioning parts 1111 on the left side wall and three first limiting parts 1531 on the support module 150. By cooperating with the three first positioning parts 1111 and the first limiting parts 1531, the assembly of the support module 150 and the intermediate part 110 can be realized quickly and accurately, which is conducive to improving the reliability and stability of their relative positions.

[0079] Specifically, such as Figure 18 As shown, the first positioning part 1111 is a positioning shaft, and the first limiting part 1531 is a limiting hole. The limiting hole is a flanged hole, which serves to prevent the hand from being scratched and helps to improve the operator's safety.

[0080] like Figure 14As shown, in some possible embodiments provided by this utility model, a first sealing element 114 is provided between the side wall 111 and the support chamber module 150. The provision of the first sealing element 114 is beneficial to improving the sealing performance between the side wall 111 of the intermediate component 110 and the support chamber module 150, avoiding the possibility of liquids flowing into the interior of the support chamber module 150 and damaging the components inside the support chamber module 150, and preventing liquids from flowing into the workbench 200 located at the bottom of the intermediate component 110 and the support chamber module 150 through the gap between the side wall 111 and the support chamber module 150, thus contaminating and damaging the workbench surface. This is beneficial to improving the cleanliness and reliability of the internal components of the support chamber module 150, as well as the cleanliness and reliability of the workbench 200. Specifically, the first sealing element 114 may include, but is not limited to, a sealing strip, sealant, or other sealing structures. Understandably, the sealant not only seals the gap between the intermediate component 110 and the support chamber module 150, but also connects the side wall 111 of the intermediate component 110 and the support chamber module 150. For example, the sealant can reliably connect the side wall 111 and the first chamber body 153. After the intermediate component 110 and the support chamber module 150 are pre-positioned using the first positioning part 1111 and the first limiting part 1531, the sealant can achieve the connection and sealing between the intermediate component 110 and the support chamber module 150, thus diversifying the function of the sealant, simplifying the setting of the connector, and helping to save costs. Specifically, the sealant can be expanding foam, etc.

[0081] like Figure 3 As shown, in the above embodiment, a sealing groove 1112 is provided on the side wall 111 opposite to the support chamber module 150, and the first sealing element 114 is located in the sealing groove 1112. In this embodiment, the sealing groove 1112 provides installation space and accommodating space for the first sealing element 114. For example, when the first sealing element 114 is a sealing strip, the sealing strip can be installed in the sealing groove 1112. When the first sealing element 114 is a sealant, such as foam, the sealing groove 1112 is used to accommodate the foam. Thus, the reliability of the installation of the first sealing element 114 can be improved, the sealing performance of the first sealing element 114 can be improved, and a good sealing effect can be achieved between the intermediate component 110 and the support chamber module 150.

[0082] Furthermore, the first seal 114 may be located on at least a portion of the edge of the side wall 111, such as a portion of the edge of the side wall 111 opposite to the support chamber module 150, or the entire edge of the side wall 111 opposite to the support chamber module 150. The position of the first seal 114 relative to the side wall 111 may be reasonably set according to the type of the first seal 114 and the sealing level requirements between the support chamber module 150 and the intermediate component 110.

[0083] Specifically, such as Figure 3 As shown, the sealing groove 1112 includes a first sealing groove surrounding the edge of the side wall 111, and a second sealing groove opened at the top and bottom of the side wall 111. The first sealing element 114 located in the first sealing groove can be foam, and the first sealing element 114 located in the second sealing groove can be a sealing strip. Thus, by combining the foam and the sealing strip, the sealing performance between the intermediate part 110 and the support compartment module 150 can be greatly improved.

[0084] It is understandable that in some examples, a first seal 114 may also be provided between the low-voltage compartment module 160 and the side wall 111. The method of setting can be referred to the method of setting between the support compartment module 150 and the side wall 111, and will not be described again here.

[0085] like Figure 14 , Figure 15 , Figure 16 , Figure 17 As shown, in some possible embodiments provided by this utility model, a second positioning part 1131 and a first connecting part 1132 are provided on the rear wall 113, and a second limiting part 1761 and a first clearance opening 1762 are provided on the high-voltage compartment module 170. For example, a second limiting part 1761 and a first clearance opening 1762 are provided on the second compartment 176. The second positioning part 1131 and the second limiting part 1761 cooperate to limit the relative movement of the intermediate part 110 and the high-voltage compartment module 170. The intermediate part 110 also includes a first connecting part, which is connected to the first connecting part 1132 passing through the first clearance opening 1762. Therefore, by cooperating with the second positioning part 1131 and the second limiting part 1761, the assembly of the high-voltage compartment module 170 and the rear wall 113 of the intermediate part 110 can be pre-positioned, which is beneficial to improving the assembly efficiency and assembly accuracy of the high-voltage compartment module 170 and the rear wall 113. By connecting the first connecting part 1132 through the first clearance opening 1762 with the first connecting part, a reliable connection between the high-voltage compartment module 170 and the rear wall 113 can be realized, thereby realizing the assembly of the high-voltage compartment module 170 and the intermediate part 110. The assembly and disassembly are convenient, and the maintenance and replacement of parts are convenient.

[0086] The second positioning part 1131 may include a protrusion, and the second limiting part 1761 may include a corresponding recess; alternatively, the second positioning part 1131 may include a recess, and the second limiting part 1761 may include a corresponding protrusion; or the second positioning part 1131 may include both a recess and a protrusion, and the second limiting part 1761 may include both a protrusion and a recess. It is understood that there may be one or more second positioning parts 1131, distributed at different positions on the rear wall 113. It is understood that the more matching second positioning parts 1131 and second limiting parts 1761 there are, the better the limiting effect. The larger the area of ​​the pattern formed by the multiple second positioning parts 1131 on the rear wall 113, the better the limiting effect.

[0087] The first connecting part 1132 can be a connecting rod with a threaded structure, and the first connecting member can be a nut. The nut cooperates with the threaded structure, making assembly and disassembly convenient. Specifically, there can be one or more first connecting parts 1132, which can be distributed at different positions on the rear wall 113. It is understood that the more matching first connecting parts 1132 and first connecting members there are, the better the limiting effect. The larger the area of ​​the pattern formed by the multiple first connecting parts 1132 on the rear wall 113, the better the limiting effect.

[0088] Specifically, such as Figure 14 As shown, the second positioning part 1131 is a positioning post, and the second limiting part 1761 is a limiting hole. The limiting hole is a flanged hole, which serves to prevent the hand from being scratched and helps to improve the operator's safety.

[0089] In the above embodiments, such as Figure 14 As shown, the intermediate component 110 also includes a second sealing element 115 sleeved around the first connecting portion 1132. The second sealing element 115 is used to seal the gap between the first connecting portion 1132 and the first clearance opening 1762. The provision of the second sealing element 115 can reduce or prevent dust, liquid, and other impurities from flowing into the interior of the high-voltage compartment module 170 through the first clearance opening 1762 and contaminating or damaging the components inside the high-voltage compartment module 170, thereby reducing the failure rate of the high-voltage compartment module 170, improving the overall reliability of the high-voltage compartment module, and extending the service life of the high-voltage compartment module 170. Specifically, the second sealing element 115 can be a sealing ring, a sealing ring, or other sealing structure.

[0090] In some possible embodiments provided by this utility model, grooves or protrusions are provided on the outer walls of the support compartment module 150 and the low-voltage compartment module 160 away from each other. Since the support compartment module 150 and the low-voltage compartment module 160 are distributed outside the two side walls 111 of the intermediate component 110, the grooves or protrusions on their outer walls allow the user to easily move or transport them by holding the grooves or protrusions, facilitating user operation. In other words, the grooves or protrusions act as handles, making it convenient for the user to move them. Specifically, the grooves or protrusions on the support compartment module 150 are located on the outer wall of the first compartment 153 away from the low-voltage compartment module 160, and the grooves or protrusions on the low-voltage compartment module 160 are located on the outer wall of the third compartment 1601 away from the support compartment module 150. Specifically, the support compartment module 150 is provided with a first groove 151 as a handle, and the number of first grooves 151 can be one or more. The low-voltage compartment module 160 is provided with a second groove 161 as a handle position, and the number of second grooves 161 can be one or more.

[0091] like Figure 11 , Figure 12 As shown, in some possible embodiments provided by this utility model, the functional module 130 further includes a first liquid seasoning module 210 detachably installed inside the workbench 200, and the control board of the first liquid seasoning module 210 is connected to the control board of the low voltage compartment module 160.

[0092] In this embodiment, an independent functional module 130 is added inside the workbench 200. This functional module 130 is the first liquid seasoning module 210. It can be understood that the control board of the first liquid seasoning module 210 communicates and interacts with the external interface, enabling debugging and testing of the first liquid seasoning module 210. Therefore, the first liquid seasoning module 210 can be assembled onto the workbench 200 after it has passed the debugging and testing. Compared with the related technology, which assembles each functional module and then performs whole-machine testing on the assembly line, this simplifies the operation of disassembling and assembling the whole machine to rectify the problematic functional module 130. It greatly simplifies the disassembly and assembly steps, facilitates rectification, and is easy to operate. It is conducive to improving the rectification efficiency of each functional module 130 and improving the pass rate of seasoning components on the assembly line, thereby improving the overall assembly efficiency.

[0093] Furthermore, such as Figure 12As shown, the control board of the first liquid seasoning module 210 can be a first control board 214. The first control board 214 is connected to the control board of the low-voltage compartment module 160. Thus, the control board of the low-voltage compartment module can communicate with the first control board 214 of the first liquid seasoning module 210 to control the first liquid seasoning module 210. It is understood that during the assembly process, the control board of the low-voltage compartment module 160 can also communicate with the control board of the first liquid seasoning module 210 for debugging and testing. Specifically, the first control board 214 and the control board of the low-voltage compartment module 160 can be connected via a connector.

[0094] In the above embodiment, the first liquid seasoning module 210 includes a first material tank 211, a first pump head 212, and a first drive unit 213 poweredly connected to the first pump head 212. A first nozzle 152 located within the cavity structure is provided on the low-voltage compartment module 160 or the support compartment module 150. The first pump head 212 connects the first nozzle 152 and the first material tank 211. The first material tank 211 is used to contain liquid seasoning, and the first drive unit 213 is used to drive the first pump head 212 to operate, so as to transport the liquid seasoning in the first material tank 211 to the interior of the pot body 143 via the first nozzle 152. By providing the first nozzle 152 on the low-voltage compartment module 160 or the support compartment module 150, the spray direction of the first nozzle 152 can be towards the opening of the pot body 143, facilitating the dispensing operation of the first liquid seasoning module 210.

[0095] It is understandable that the first nozzle 152 can be set on the weak current chamber module 160 or on the support chamber module 150.

[0096] like Figure 2 As shown, in some possible embodiments provided by this utility model, multiple functional modules 130 include a low-voltage compartment module 160 and auxiliary modules. The control board of the low-voltage compartment module 160 is configured as a main control board 163, and the control boards of the auxiliary modules are communicatively connected to the main control board 163. That is to say, the control board of the low-voltage compartment module 160, as the main control board 163, can uniformly control the control boards of the auxiliary modules. Specifically, the drum module 140, the high-voltage compartment module 170, and the food feeding module 190 can be regarded as auxiliary modules. It is understood that in some embodiments, the seasoning compartment module 180 and the first liquid seasoning module 210 can also be regarded as auxiliary modules. By using the control board of the low-voltage compartment module 160 as the main control board 163, the drum module 140, the high-voltage compartment module 170, the food feeding module 190, the seasoning compartment module 180, and the first liquid seasoning module 210 can be uniformly controlled. Thus, unified control of all functional modules 130 of the entire cooking equipment can be achieved to realize the corresponding functions.

[0097] like Figure 13 As shown, in a specific embodiment, the assembly sequence of the cooking equipment is as follows:

[0098] like Figure 13 As shown in 'a', first assemble intermediate component 110, as follows: Figure 13 As shown in b, the roller module 140 is placed on the intermediate part 110 from top to bottom, as... Figure 13 As shown in c, the high-voltage compartment module 170 is fixed to the rear of the intermediate component 110 from back to front, as shown in Figure c. Figure 13 As shown in d, the support module 150 is fixed to the left side wall of the intermediate component 110 from left to right, as shown in d. Figure 13 As shown in e, the low-voltage compartment module 160 is fixed to the right side wall of the intermediate component 110 from right to left, as shown in the figure. Figure 13 As shown in f, the seasoning compartment module 180 is fixed from top to bottom above the support compartment module 150 and the low-voltage compartment module 160, as shown in f. Figure 13 As shown in g, the food dispensing module 190 is fixed above the low-voltage compartment module 160 and below the seasoning compartment module 180, as shown in the figure. Figure 13 As shown in h, the entire machine is finally moved onto the workbench 200, and the workbench 200 is connected to the bottom wall of the intermediate part 110, thus completing the assembly of the entire cooking equipment.

[0099] In the description of this utility model, the term "multiple" refers to two or more. Unless otherwise explicitly defined, the terms "upper," "lower," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. The terms "connection," "installation," "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0100] In the description of this utility model, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this utility model. In this utility model, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0101] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A cooking apparatus, characterized by, include: The middleware (110) and multiple modules are detachably connected to the middleware (110). Each module includes a support module (120) and a functional module (130). Each functional module (130) includes an electrically connected control board and functional components. The control boards of the multiple functional modules (130) are communicatively connected to each other.

2. The cooking apparatus according to claim 1, characterized in that, The intermediate component (110) is configured as a cavity structure with at least a partial opening, and the two side walls (111) of the cavity structure are coaxially provided with mounting structures (112); The functional module (130) includes a roller module (140), the roller module (140) includes a rotating shaft (141), and after the rotating shafts (141) on both sides of the roller module (140) are at least partially accommodated in the mounting structure (112), the rotating shafts (141) are flipped and connected to the side wall (111) through the mounting structure (112).

3. The cooking apparatus according to claim 2, characterized in that, The intermediate component (110) includes a rear wall (113) located at the rear and connecting the two side walls (111). The support module (120) includes a support compartment module (150). The functional module (130) includes a low-voltage compartment module (160) and a high-voltage compartment module (170). The support compartment module (150) and the low-voltage compartment module (160) are respectively connected to the outside of the two side walls (111). The high-voltage compartment module (170) is connected to the outside of the rear wall (113). The support compartment module (150), the low-voltage compartment module (160), and the high-voltage compartment module (170) together form a box structure.

4. The cooking apparatus according to claim 3, characterized in that, The cooking equipment also includes a seasoning compartment module (180), which is mounted above the support compartment module (150) and the low-voltage compartment module (160); The functional module (130) also includes a food dispensing module (190), which is connected to the top of the low-voltage compartment module (160) and located below the seasoning compartment module (180). The support module (120) also includes a workbench (200) connected to the bottom of the intermediate component (110), and the support compartment module (150), the weak current compartment module (160), and the strong current compartment module (170) are located above the workbench (200).

5. The cooking apparatus according to claim 4, characterized in that, A first positioning part (1111) is provided on the side wall (111), and a first limiting part (1531) is provided on the support compartment module (150) and / or the weak current compartment module (160). The first positioning part (1111) and the first limiting part (1531) cooperate to limit the relative movement of the intermediate component (110) and the support compartment module (150), and / or, the first positioning part (1111) and the first limiting part (1531) cooperate to limit the relative movement of the intermediate component (110) and the weak current compartment module (160).

6. The cooking apparatus according to claim 4, characterized in that, A first sealing element (114) is provided between the side wall (111) and the support chamber module (150); A sealing groove (1112) is provided on the side wall (111) opposite to the support chamber module (150), and the first sealing element (114) is located at the sealing groove (1112), and / or The first seal (114) is located at at least a portion of the edge of the sidewall (111).

7. The cooking apparatus according to claim 4, characterized in that, The rear wall (113) is provided with a second positioning part (1131) and a first connecting part (1132), and the high-voltage compartment module (170) is provided with a second limiting part (1761) and a first clearance opening (1762). The second positioning part (1131) and the second limiting part (1761) cooperate to limit the relative operation of the intermediate component (110) and the high-voltage compartment module (170). The intermediate component (110) also includes a first connecting part, which is connected to the first connecting part (1132) passing through the first clearance opening (1762). The intermediate component (110) further includes a second sealing member (115) sleeved around the first connecting portion (1132), the second sealing member (115) being used to seal the gap between the first connecting portion (1132) and the first clearance opening (1762).

8. The cooking apparatus according to claim 4, characterized in that, The seasoning bin module (180) and the support bin module (150) are connected by at least one of the following: bolt structure, snap-fit ​​structure, plug-in structure, and tenon and mortise structure; and / or The seasoning compartment module (180) and the low-voltage compartment module (160) are connected by at least one of the following: bolt structure, snap-fit ​​structure, plug-in structure, and tenon and mortise structure.

9. The cooking apparatus according to claim 3, characterized in that, The support compartment module (150) and the low-voltage compartment module (160) have grooves or protrusions on their outer walls away from each other.

10. The cooking apparatus according to claim 4, characterized in that, The functional module (130) further includes a first liquid seasoning module (210) detachably installed inside the workbench (200), and the control board of the first liquid seasoning module (210) is connected to the control board of the weak current compartment module (160). The first liquid seasoning module (210) includes a first material tank (211), a first pump head (212), and a first drive unit (213) that is poweredly connected to the first pump head (212). The weak current compartment module (160) or the support compartment module (150) is provided with a first nozzle (152) located in the cavity structure. The first pump head (212) connects the first nozzle (152) and the first material tank (211).

11. The cooking apparatus according to claim 2, characterized in that, The multiple functional modules (130) include a low-voltage compartment module (160) and an auxiliary module. The control board of the low-voltage compartment module (160) is configured as a main control board (1692), and the control board of the auxiliary module is communicatively connected to the main control board (1692).

12. The cooking apparatus according to claim 4, characterized in that, The roller module (140) includes a barrel body (142) and a pot body (143) located inside the barrel body (142). The functional components of the roller module (140) include a stirring component (144) and / or a heating component. The stirring component (144) is installed between the barrel body (142) and the pot body (143) and extends into the pot body (143). The heating component is installed between the barrel body (142) and the pot body (143) for heating the pot body (143). The support chamber module (150) includes a first chamber body (153), and a knob (154), an emergency stop switch (155), and a spray gun (156) disposed on the first chamber body (153); The high-voltage compartment module (170) includes a second compartment (177) and a junction box (171) located inside the second compartment (177). The functional components of the high-voltage compartment module (170) include an AC contactor (172), a filter board (173), a switching power supply (174), and a mechanism (175). The knob (154) and the emergency stop switch (155) are electrically connected to the junction box (171) via a second connecting line. The weak current compartment module (160) includes a third compartment (1601), and the functional components of the weak current compartment module (160) include a water circuit component (164), a GUI module (165), a recognition component (166), an indicator light (167), a voice prompt component (168), and a pot-twisting drive component (169) installed on the third compartment (1601). The seasoning compartment module (180) includes a fourth compartment (181), and the functional components of the seasoning compartment module (180) include a solid seasoning component (182) and a liquid seasoning component (183) installed on the fourth compartment (181).