Rack assembly and cooking equipment
By adopting a hollow structure and a hoisting mechanism in the cooking equipment, the problem of poor coaxiality of the drum module shaft was solved, improving assembly accuracy and operational stability, and reducing production costs and maintenance difficulty.
Patent Information
- Application Number
- CN202423239242.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-12-26
AI Technical Summary
In existing cooking equipment, the coaxiality of the two ends of the roller module's rotating shaft in the frame assembly is poor, resulting in inaccurate assembly and affecting the stability of the roller module's operation and assembly efficiency.
The support frame and hoisting mechanism with a hollow structure provide operating space, enabling precise assembly of the roller module and the installation structure. The hoisting mechanism also drives the roller module to rotate, changing the traditional motor drive method and achieving flexible assembly.
It improves the assembly accuracy and efficiency of the roller module and support frame, ensures the coaxiality of both ends of the rotating shaft, reduces shaking and vibration, enhances the overall reliability and maintenance efficiency, and reduces production costs.
Smart Images

Figure CN223799657U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to kitchen equipment technical field especially a kind of rack assembly and cooking equipment. BACKGROUND
[0002] With the improvement of people's living standards, more and more human work has been replaced by automation equipment, robots. In the catering industry, cooking equipment, such as intelligent frying machine, can realize automatic cooking to improve the quality of life of users. The current cooking equipment, the workbench on both sides of the rack is usually a box structure welded by panel structure, and during the assembly of the drum module and the workbench on both sides, the one end of the shaft is first assembled and connected with the box structure on one side, and then the other end of the shaft is inserted into the other box for assembly. This assembly method has the problem of difference in coaxiality of the two ends of the shaft, which affects the stability of the drum module operation. SUMMARY
[0003] Therefore, the rack assembly and the cooking equipment are provided, so that the assembly precision and efficiency of the drum module and the support frame can be improved, the coaxiality of the two ends of the shaft of the drum module can be improved, and the stability of the drum module inverting operation can be improved.
[0004] In an embodiment of the first aspect of the utility model, a rack assembly is provided for a cooking equipment, the rack assembly comprising: a support frame, the support frame being provided in a hollow structure and forming a first space, the support frame being provided with a mounting structure, at least part of the mounting structure being exposed to the hollow structure, and a drum module of the cooking equipment being reversibly connected to the support frame through the mounting structure and being movable in the first space.
[0005] Further, the drum module comprises a shaft, the shaft being placed at the position of the mounting structure through the hollow structure; and / or at least the part of the mounting structure exposed to the hollow structure is above.
[0006] Further, the support frame is formed by bending a pipe body, and the hollow structure is formed between adjacent pipe bodies and / or between the pipe body and the surrounding environment.
[0007] Further, the rack assembly further comprises: a hoisting mechanism, the hoisting mechanism being installed on the support frame, the hoisting mechanism comprising a tension member connected to the drum module, and the hoisting mechanism being configured to drive the drum module to invert relative to the support frame through the tension member.
[0008] Further, the hoisting mechanism further comprises a fixed pulley and an electric winch, the fixed pulley being rotatably connected to the support frame, the electric winch being installed on the support frame, the tension member being wound around the electric winch, and the free end of the tension member being connected to the drum module around the fixed pulley.
[0009] Further, the support frame comprises two frame bodies arranged oppositely, and a connecting pipe connecting the two frame bodies, a first space being formed between the two frame bodies and the connecting pipe; the mounting structure is arranged on the frame body, and the hoisting mechanism is mounted on at least one of the frame bodies and / or the connecting pipe.
[0010] Further, the frame body comprises a first pipe portion located at the top, and two second pipe portions connected to two ends of the first pipe portion and supporting the first pipe portion, the connecting pipe being connected to the second pipe portions, and the mounting structure being arranged on the first pipe portion.
[0011] Further, the two second pipe portions in one frame body comprise a first sub-pipe extending above the first pipe portion, the first sub-pipe located above the first pipe portion being provided with a first connecting portion connected to the fixed pulley, and the first sub-pipe located below the first pipe portion and / or the connecting pipe being provided with a second connecting portion connected to the electric winch; wherein the first sub-pipe is located at the rear of the rack.
[0012] Further, the frame body further comprises at least one reinforcing pipe, the reinforcing pipe connecting the two second pipe portions, or the reinforcing pipe connecting the first pipe portion and the second pipe portions.
[0013] Further, the mounting structure comprises a connecting seat, the drum module comprises a rotating shaft and a rotating member, the rotating member connecting the rotating shaft and the connecting seat; or the mounting structure comprises a rotating member, and the drum module comprises a rotating shaft connected to the rotating member.
[0014] Further, the drum module is provided with a connecting structure connected to the tensioning member, a distance between the connecting structure and the rotating shaft being greater than a distance between the rotating shaft and the pot opening of the drum module; and / or the fixed pulley is located above the mounting structure.
[0015] Further, one of the support frame and a seasoning module of the cooking device is provided with a third connecting portion, the seasoning module being detachably connected to the support frame through the third connecting portion and located outside the first space.
[0016] Further, the seasoning module is provided with a nozzle located in the first space, and the relative positions of the drum module and the support frame comprise a first position and a second position, the nozzle being located directly above the pot opening of the drum module in the first position, and the nozzle being located outside a movement space of the drum module during switching between the first position and the second position.
[0017] Further, one of the support frame and a sink of the cooking device is provided with a fourth connecting portion, the sink being detachably connected to the support frame through the fourth connecting portion, at least part of the sink being located in the first space and located at the front of the support frame; one of the support frame and a spray gun of the cooking device is provided with a fifth connecting portion, the spray gun being detachably connected to the support frame through the fifth connecting portion, the fifth connecting portion being located at the front of the support frame.
[0018] The embodiment of the second aspect of the utility model provides a kind of cooking equipment, comprising: drum module, and the rack assembly of any of the preceding.
[0019] The rack assembly and the cooking equipment provided by the embodiment of the utility model, the rack assembly includes support frame, by being provided as openwork structure and forming first space, at least part of installation structure exposed to openwork structure is provided on support frame, whereby, the setting of openwork structure, for the assembly of drum module and installation structure provides operating space, facilitate to improve the assembly precision and assembly efficiency of drum module and support frame, improve the coaxiality of the both ends of rotating shaft of drum module, improve the stability of drum module overturning operation.
[0020] The above description is only a summary of the technical scheme of the utility model, in order to more clearly understand the technical means of the utility model, it can be implemented according to the content of the specification, and in order to let the above and other purposes, characteristics and advantages of the utility model can be more obvious and easy to understand, the following specific embodiment of the utility model is described. BRIEF DESCRIPTION OF DRAWINGS
[0021] By reading the detailed description of the preferred embodiment below, various other advantages and benefits will become apparent to those of ordinary skill in the art. The drawings are for the purpose of illustrating the preferred embodiment only and are not to be considered as limiting of the utility model. Moreover, in the entire drawings, the same reference numerals designate the same parts. Among them:
[0022] Figure 1 A structure schematic view of one view angle of the cooking equipment provided by the embodiment of the utility model is shown;
[0023] Figure 2 Another view angle structure schematic view of the cooking equipment provided by the embodiment of the utility model is shown;
[0024] Figure 3 An explosion schematic view of one view angle of the cooking equipment provided by the embodiment of the utility model is shown;
[0025] Figure 4 Another view angle explosion schematic view of the cooking equipment provided by the embodiment of the utility model is shown.
[0026] Among them, Figures 1 to 4 The correspondence between reference signs and component names in the accompanying drawings is as follows:
[0027] 100 rack assembly, 110 support frame, 1101 hollow structure, 111 first space, 112 frame body, 1121 first pipe part, 1122 second pipe part, 1123 first sub-pipe, 1124 reinforcing pipe, 113 connecting pipe, 114 mounting structure, 115 first connecting part, 116 second connecting part, 117 third connecting part, 118 support frame, 120 hoisting mechanism, 121 tension member, 122 fixed pulley, 123 electric winch, 124 pin shaft, 130 support wheel, 200 cooking equipment, 210 drum module, 211 rotating shaft, 212 rotating member, 213 barrel body, 214 connecting structure, 215 pot opening, 220 seasoning module, 221 nozzle, 230 water tank, 231 fourth connecting part, 240 spray gun. DETAILED DESCRIPTION
[0028] In order to enable the above-mentioned purposes, features and advantages of the present application to be more clearly understood, the present application will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0029] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be practiced in other ways different from those described herein, therefore, the scope of protection of the present application is not limited by the specific embodiments disclosed below.
[0030] The following refers to Figures 1 to 4 The rack assembly 100 and the cooking equipment 200 provided according to some embodiments of the present application are described below. Among them, the rack assembly 100 is used for the cooking equipment 200, and the cooking equipment 200 can be a smart frying machine or other kitchen equipment.
[0031] Among them, the cooking equipment 200 includes a drum module 210, and the drum module 210 is reversible relative to the rack assembly 100, so that the drum module 210 can be switched between different stations, wherein the stations of the drum module 210 can include but are not limited to a cooking station, a dish output station, a blanching station, a hot pot station, a pot washing station, etc. That is, the cooking equipment 200 provided in the embodiments of the present application can be understood as a drum rotating pot, and the cooking equipment 200 can be a drum frying machine.
[0032] As Figure 1 , Figure 3 and Figure 4As shown, the first aspect of the embodiment of the utility model provides a rack assembly 100 for cooking equipment 200, rack assembly 100 includes: support frame 110, support frame 110 is set to openwork structure 1101, and is formed with first space 111, support frame 110 is provided with mounting structure 114, at least part mounting structure 114 is exposed to openwork structure 1101, and the drum module 210 of cooking equipment 200 is reversibly connected on support frame 110 through mounting structure 114 and can move in first space 111.
[0033] Wherein, the drum module 210 can include a rotating shaft 211, the rotating shaft 211 is connected with the mounting structure 114, can make the drum module 210 connect on the support frame 110, and can be turned over relative to the support frame 110. Further, the mounting structure 114 can be arranged in pairs, and the two ends of the rotating shaft 211 of the drum module 210 are assembled and connected through the mounting structure 114 arranged in pairs respectively, to ensure that the drum module 210 is smoothly turned over relative to the support frame 110 with the rotating shaft 211 as the axis.
[0034] The rack assembly 100 provided by the embodiment, by setting the support frame 110 as the openwork structure 1101, and setting the mounting structure 114 on the support frame 110, which is at least partially exposed to the openwork structure 1101, thereby, the setting of the openwork structure 1101 provides an operation space for the assembly of the drum module 210 and the mounting structure 114, which is conducive to improving the assembly precision and assembly efficiency of the drum module 210 and the support frame 110, to improve the coaxiality of the two ends of the rotating shaft 211 of the drum module 210, and improve the stability of the drum module 210 in the turning operation.
[0035] Because the rack assembly in the related art is usually a box structure welded by panels, sheet metals and the like, the product processing quality is difficult to guarantee, and in the assembly process of the drum module, one end of the rotating shaft is first assembled and connected with the box structure on one side, and then the other end of the rotating shaft is inserted into the other box structure for assembly. This assembly method needs to sequentially insert the two ends of the rotating shaft into the box structure to realize assembly, and the assembly efficiency is low. At the same time, due to the problems of the assembly method and the product processing quality being difficult to guarantee, the assembly precision is not easy to control, and there is a problem of the coaxiality difference of the two ends of the rotating shaft, which can cause the drum module to twist in the turning process, and the drum module can shake and vibrate in the turning process, which is unstable in operation, and long-term use can have a great impact on the structure and motor.
[0036] To this end, the rack assembly 100 provided by the embodiment of the utility model, through setting the support frame 110 as the hollow structure 1101, and making at least part of the mounting structure 114 arranged on the support frame 110 exposed to the hollow structure 1101, so that the both ends of the rotating shaft 211 of the roller module 210 can be assembled with the mounting structure 114 through the hollow structure 1101, such as the both ends of the rotating shaft 211 of the roller module 210 can be placed at the mounting structure 114 position of the support frame 110, after the both ends of the rotating shaft 211 are supported on the support frame 110, then the mounting structure 114 is assembled and connected with the rotating shaft 211, to realize the assembly of the roller module 210 and the rack assembly 100. This kind of assembly mode, can assemble the rotating shaft 211 and the mounting structure 114 in the hollow structure 1101, such as can make the both ends of the rotating shaft 211 exposed in the hollow structure 1101, at the same time, the mounting structure 114 and the rotating shaft 211 can be assembled after the both ends of the rotating shaft 211 are supported on the support frame 110, thereby, it is favorable to improve the assembly efficiency and assembly precision of the roller module 210 and the rack assembly 100, and improve the coaxiality of the both ends of the rotating shaft 211 of the roller module 210, and further improve the stability of the roller module 210 relative to the rack assembly 100 during the turnover operation, reduce the shaking and shaking phenomenon during the turnover movement of the roller module 210, and damage to the structure and motor, and improve the reliability of the whole machine.
[0037] At the same time, the hollow structure 1101 can be used to detach and separate the roller module 210 and the mounting structure 114 outside the support frame 110 to realize the detachment and separation of the support frame 110 and the roller module 210, which simplifies the operation of detaching the box body to detach and separate the roller module and the rack assembly in the related art, facilitates the maintenance of the roller module 210 and the rack assembly 100, and is favorable to improve the maintenance efficiency. Moreover, the setting of the hollow structure 1101 is favorable to reduce the material of the rack assembly 100, save the manufacturing cost of the rack assembly 100, at the same time, can reduce the weight of the rack assembly 100, facilitate the transportation and movement of the rack assembly 100, and is suitable for popularization and application.
[0038] As shown in Figure 3 and Figure 4 The support frame 110 of the rack assembly 100 is provided as the hollow structure 1101 and forms the first space 111, the first space 111 and the hollow structure 1101 can be different spaces, specifically, the first space 111 is used to accommodate the roller module 210, so that the roller module 210 can be turned over in the first space 111 relative to the support frame 110 to realize the switching of each station. The hollow structure 1101 can be located outside the first space 111, the hollow structure 1101 is arranged adjacent to the first space 111, and the hollow structure 1101 can communicate with the first space 111.
[0039] At least part of the mounting structure 114 is exposed in the hollow structure 1101, which can be the entire circumference of the mounting structure 114 exposed in the hollow structure 1101, or part of the circumference of the mounting structure 114 exposed in the hollow structure 1101. It can be understood that when part of the mounting structure 114 is exposed in the hollow structure 1101, part of the mounting structure 114 above can be exposed in the hollow structure 1101 to facilitate the shaft 211 of the drum module 210 to be placed on the mounting structure 114 of the support frame 110 from above to be assembled and connected with the mounting structure 114. Such arrangement makes the support frame 110 well support the drum module 210, improves the stability and reliability of the connection between the support frame 110 and the drum module 210, and facilitates the operation of the operator.
[0040] In some possible implementation examples provided in the present application, the support frame 110 is formed by bending a pipe body, and the hollow structure 1101 is formed between adjacent pipe bodies and / or between the pipe body and the circumferential environment.
[0041] Since the rack assembly in the related art is usually a box structure formed by welding panels and sheet metals, the process is complicated and the processing is troublesome, and the product processing quality is difficult to guarantee. Therefore, in the present application, the support frame 110 is formed by bending a pipe body, so that the hollow structure 1101 and the first space 111 can be machined during the bending process of the pipe body, the process is relatively simple, and the machining process can be simplified as much as possible. At the same time, since the pipe body bending has the advantages of strong flexibility, material saving, high processing efficiency, precise control of size and shape, etc., the precision of the support frame 110 can be highly guaranteed, such as the pair of mounting structures 114 arranged on the support frame 110 can have high dimensional accuracy. In this way, the two ends of the shaft 211 connected with the pair of mounting structures 114 can have high coaxiality, improving the stability of the drum module 210 relative to the support frame during the flipping operation, and improving the reliability of the whole machine.
[0042] At the same time, in the present application, the support frame 110 formed by bending a pipe body replaces the traditional sheet metal welded rack, which not only can reduce the processing difficulty, save the production cost, and improve the processing efficiency, but also can reduce the weight of the rack assembly 100, facilitating the carrying and moving of the equipment. At the same time, since the support frame 110 is formed by bending a pipe body, the mounting structure 114 is arranged on the pipe body, which can be exposed in the hollow structure 1101 formed between the pipe body and the circumferential environment or the hollow structure 1101 formed between the pipe bodies, thereby facilitating the assembly and disassembly of the mounting structure 114 and the drum module 210, and being beneficial to improve the assembly efficiency and the maintenance efficiency.
[0043] The first space 111 and the hollow structure 1101 can be formed in the process of bending the pipe body into the support frame 110, such as the space between the pipe body and the space between the pipe body forming the first space 111, the space between the pipe body and the space between the pipe body forming the hollow structure 1101, and the space between the pipe body and the space between the pipe body forming the hollow structure 1101. As shown in the top pipe body, the space above the top pipe body exposed to the environment can also be understood as the hollow structure 1101.
[0044] As shown in Figure 1 and Figure 2 In some possible embodiments provided by the utility model, the rack assembly 100 further comprises a hoisting mechanism 120, the hoisting mechanism 120 is installed on the support frame 110, the hoisting mechanism 120 comprises a tension member 121 connected with the drum module 210, and the hoisting mechanism 120 is configured to drive the drum module 210 to overturn relative to the support frame 110 through the tension member 121. The tension member 121 of the hoisting mechanism 120 can be understood as a pull rope, a sling and the like, and the tension member 121 has a certain flexibility. Specifically, the tension member 121 can be a steel wire rope or the like.
[0045] The cooking equipment in the related art usually sets a pot overturning driving device to drive the drum module to overturn relative to the rack assembly, and the pot overturning driving device usually comprises a motor or the like. The output end of the pot overturning driving device is used to drive the drum module to overturn relative to the rack assembly. The overturning driving device with this structure makes the drum module and the rack assembly usually have a rigid assembly relationship. The connecting member connecting the drum module and the rack assembly needs to be machined to ensure the machining precision, and accurate alignment is necessary during assembly, so as to ensure the assembly precision of the two, which is time-consuming and laborious and has high cost. If the tolerance of the connecting member is not controlled well, an assembly gap will be formed, which will cause the equipment to shake during operation and affect the reliability of the equipment after long-term use.
[0046] Therefore, in the embodiment, the hoisting mechanism 120 is arranged, and the tension member 121 of the hoisting mechanism 120 is used to drive the drum module 210 to overturn relative to the support frame 110, which changes the structure mode that the drum module is driven to overturn relative to the rack assembly through the output of the motor in the related art. Thus, the drum module 210 and the support frame 110 realize a flexible assembly relationship through the tension member 121 of the hoisting mechanism 120. The assembly relationship does not have requirements for the accuracy of the connecting position of the tension member 121 and the drum module 210, and does not have requirements for the accuracy of the matching position of the connecting position of the tension member 121 and the drum module 210, which reduces the machining requirements and assembly precision requirements, saves time and labor, is conducive to reducing the production cost, improves the assembly efficiency, and has little influence on the stability of the drum module 210 during overturning movement, and reduces or avoids the possibility of shaking or shaking of the drum module 210 during overturning operation.
[0047] Meanwhile, in the embodiment, the hoisting mechanism 120 is installed on the support frame 110, since the support frame 110 is bent from a pipe, the hoisting mechanism 120 can be installed outside the support frame, that is, the hoisting mechanism 120 can be exposed, compared with the pot overturning driving device in the prior art which needs to be installed in the box, the hoisting mechanism 120 is convenient to disassemble and assemble, and convenient to maintain.
[0048] As shown in Figure 2 and Figure 3 In some possible implementation examples provided by the utility model, the hoisting mechanism 120 further comprises a fixed pulley 122 and an electric winch 123, the fixed pulley 122 is rotatably connected to the support frame 110, the electric winch 123 is installed on the support frame 110, the tension member 121 is wound on the electric winch 123, and the free end of the tension member 121 is wound on the fixed pulley 122 and connected to the drum module 210.
[0049] The electric winch 123 can rotate forward and reverse, the tension member 121 can be retracted and released by rotating the electric winch 123 forward and reverse, that is, the length between the freedom of the tension member 121 and the electric winch 123 increases or decreases, since the free end of the tension member 121 passes through the fixed pulley 122 and is connected to the drum module 210, the drum module 210 can be swung up and down relative to the support frame 110, so as to realize the overturning movement of the drum module 210 relative to the support frame 110, and realize the switching of each station in the cooking process.
[0050] In the embodiment, the utility model drives the drum module 210 to overturn relative to the support frame by the electric winch 123, the fixed pulley 122 and the tension member 121, which has the advantages of simple structure, low cost and saving the manufacturing cost of the cooking equipment 200. Meanwhile, the fixed pulley 122 and the electric winch 123 are installed on the support frame 110, and the tension member 121 is wound on the electric winch 123, so that the whole hoisting mechanism 120 can be integrated on the support frame 110, that is, the hoisting mechanism and the support frame 110 are modularized, which has the advantages of simple structure, compact layout and saving the cost of the cooking equipment 200.
[0051] The fixed pulley 122 is detachably connected to the support frame 110, so that the fixed pulley 122 can be separated from the support frame 110 for maintenance and replacement.
[0052] The electric winch 123 is detachably connected to the support frame 110, so that the electric winch 123 and the support frame 110 can be separated for maintenance or replacement. Specifically, the electric winch 123 can be detachably connected to the support frame 110 by at least one of a bolt structure, a clamping structure, a plug-in structure and a magnetic structure. It can be understood that in other examples, the electric winch 123 can also be fixedly connected to the support frame 110 by welding or the like.
[0053] As Figure 2 and Figure 3 shown, in some possible embodiments provided by the utility model, the support frame 110 includes two frame bodies 112 arranged oppositely and a connecting pipe 113 connecting the two frame bodies 112, a first space 111 is formed between the two frame bodies 112 and the connecting pipe 113, and a mounting structure 114 is arranged on the frame body 112, and the hoisting mechanism 120 is mounted on at least one frame body 112 and / or the connecting pipe 113.
[0054] That is, the mounting structure 114 can be arranged on the two frame bodies 112 in pairs, and the first space 111 is located between the two frame bodies 112, so that when the two ends of the rotating shaft 211 of the drum module 210 are assembled with the two mounting structures 114 correspondingly, the two frame bodies 112 can provide stable and reliable support for the drum module 210, and at the same time, the drum module 210 can move smoothly in the first space 111 to be flipped relative to the support frame 110.
[0055] Among them, the connecting pipe 113 connects the two frame bodies 112, and the connecting pipe 113 plays a role in improving the strength and stability of the two frame bodies 112, thereby facilitating the improvement of the stability of the entire support frame 110. Specifically, the number of connecting pipes 113 can be one, two or more.
[0056] Among them, the hoisting mechanism 120 can be mounted on one frame body 112, or on two frame bodies 112, or on the connecting pipe 113, or on the connecting pipe 113 and one frame body 112, or on the connecting pipe 113 and two frame bodies 112.
[0057] Among them, the frame body 112 is bent from a pipe part, and the adjacent pipe parts of the frame body 112 can form a hollow structure 1101, and the pipe part of the frame body 112 located at the outer edge can form a hollow structure 1101 between the circumferential environment.
[0058] Among them, the two frame bodies 112 and the connecting pipe 113 can be bent from one pipe part, or can be connected together after being bent from different numbers of pipe parts.
[0059] As Figure 2 , Figure 3 and Figure 4 shown, in some possible embodiments provided by the utility model, the frame body 112 includes a first pipe part 1121 located at the top and two second pipe parts 1122 connected at both ends of the first pipe part 1121 and supporting the first pipe part 1121, and through the arrangement of the first pipe part 1121 and the second pipe part 1122, the reliability of the frame body 112 can be improved, so that the frame body 112 can reliably and stably support the drum module 210.
[0060] Wherein, since the second pipe part 1122 is located at both ends of the first pipe part 1121, the connecting pipe 113 is connected with the second pipe part 1122, so that the connecting pipe 113 is arranged close to the end of the first pipe part 1121, so that the first space 111 surrounded between the connecting pipe 113 and the frame 112 is larger, so that the roller module 210 can be smoothly turned in the first space 111 surrounded by the two frames 112 and the connecting pipe 113 to switch to different stations.
[0061] It can be understood that the connecting pipe 113 can be located on one side of the frame 112, that is, the connecting pipe 113 is connected with the two second pipe parts 1122 located on the same side of the two frames 112, at this time, the number of the connecting pipe 113 can be one, two or more. Or, the connecting pipe 113 can be located on both sides of the frame 112, that is, part of the connecting pipe 113 is connected with the two second pipe parts 1122 located on the same side of the two frames 112, and the other part of the connecting pipe 113 is connected with the two second pipe parts 1122 located on the other side of the two frames 112, wherein the number of the connecting pipe 113 located on each side of the frame 112 can be the same or different.
[0062] Wherein, the mounting structure 114 is arranged on the first pipe part 1121, which can be understood as that the mounting structure 114 is arranged in pairs on the first pipe part 1121 of the two frames 112, since the first pipe part 1121 is located at the top of the frame 112, so that the mounting structure 114 is located at the top of the frame 112, so that in the process of assembling the roller module 210 and the support frame 110, after the two ends of the rotating shaft 211 of the roller module 210 are directly placed on the two mounting structures 114 from the hollow structure 1101 above the first pipe part 1121, the support frame 110 supports the roller module 210, then the mounting structure 114 and the rotating shaft 211 are assembled, the assembly of the roller module 210 and the support frame 110 can be realized, which is simple in operation and convenient in assembly, at the same time, the coaxiality of the two ends of the rotating shaft 211 of the roller module 210 can be ensured, the stability of the roller module 210 in turning operation is improved, and the overall reliability of the equipment is improved.
[0063] As Figure 2 and Figure 3As shown in some possible embodiments provided by the utility model, two second pipe parts 1122 in a frame body 112 include a first sub-pipe 1123 extending above the first pipe part 1121, that is, the top end of the first sub-pipe 1123 is above the first pipe part 1121, the first sub-pipe 1123 above the first pipe part 1121 is provided with a first connecting part 115 connected with the fixed pulley 122, and the first sub-pipe 1123 below the first pipe part 1121 and / or the connecting pipe 113 is provided with a second connecting part 116 connected with the electric winch 123, so that the electric winch 123 and the fixed pulley 122 can be installed on the support frame 110 to install the hoisting mechanism 120 on the support frame 110. At the same time, the arrangement can ensure that the fixed pulley 122 is above the electric winch 123, and the fixed pulley 122 is above the mounting structure 114, so that the fixed pulley 122 can bear weight and have good bearing effect.
[0064] As shown in Figure 3 , the first connecting part 115 can be a connecting hole, the hoisting mechanism 120 further includes a pin shaft 124, the pin shaft 124 is connected with the connecting hole after passing through the fixed pulley 122, and the rotation connection of the fixed pulley 122 and the support frame 110 can be realized.
[0065] As shown in Figure 3 , the second connecting part 116 can be a mounting plate, the electric winch 123 is fixed on the mounting plate through a bolt structure, a plug-in structure, a clamping structure, a mortise and tenon structure, welding or the like, so that the reliability and stability of the connection between the electric winch 123 and the second connecting part 116 can be improved. Alternatively, the second connecting part 116 can be a connecting hole, and the electric winch 123 is directly fixed on the connecting hole through a bolt. Specifically, the second connecting part 116 can be located on the first sub-pipe 1123 or the connecting pipe 113, or simultaneously on the second sub-pipe and the connecting pipe 113.
[0066] As shown in Figure 1 , the first sub-pipe 1123 is located at the rear part of the rack assembly, and the front-rear direction of the rack assembly 100 is as Figure 4The lifting mechanism 120 can be arranged at the rear of the support frame 110, so that sufficient space is left for the side and front of the support frame 110 to arrange other structures. It can be understood that, during use of the cooking device 200, the pot opening 215 of the drum module 210 can be close to the front of the support frame 110, and when the drum module 210 is at the cooking station, the pot opening 215 can be directed obliquely upward to the front of the support frame 110, so that food materials or seasonings can enter the inside of the drum module 210 through the pot opening 215, and when the drum module 210 is at the dish outlet station, the pot opening 215 can be directed obliquely downward to the front of the support frame 110, so as to facilitate dish outlet. Therefore, arranging the lifting mechanism 120 at the rear of the support frame 110 facilitates cooking and dish outlet of the drum module 210.
[0067] Specifically, as Figure 1 and Figure 4 , the two frame bodies 112 of the support frame 110 can be distributed left and right, and the left-right direction of the rack assembly 100 is indicated by the arrow in Figure 1 and Figure 4 , the first pipe portion 1121 in one frame body 112 extends in the horizontal direction front and back, and the two second pipe portions 1122 extend in the vertical direction and are arranged front and back at both ends of the first pipe portion 1121. The connecting pipe 113 can connect the second pipe portions 1122 located in front in the two frame bodies 112, and / or the connecting pipe 113 can connect the second pipe portions 1122 located in the rear in the two frame bodies 112. One of the frame bodies 112, such as the frame body 112 located on the left side, the top end of the second pipe portion 1122 located in the rear protrudes from the first pipe portion 1121, and the second pipe portion 1122 located in the rear can be defined as a first sub-pipe 1123, a first connecting portion 115 is located on the first sub-pipe 1123 and above the first pipe portion 1121, a second connecting portion 116 is located on the first sub-pipe 1123 or on the connecting pipe 113 connected to the first sub-pipe 1123, and the second connecting portion 116 is located below the first pipe portion 1121, and the electric winch 123 is installed on the support frame 110 through the second connecting portion 116.
[0068] As shown in Figure 3 and Figure 4 , in some possible implemented embodiments of the present application, the frame body 112 further comprises at least one reinforcing pipe 1124, the reinforcing pipe 1124 connects the two second pipe portions 1122, or the reinforcing pipe 1124 connects the first pipe portion 1121 and the second pipe portion 1122, the arrangement of the reinforcing pipe 1124 can improve the strength and reliability of the frame body 112, so that the frame body 112 can provide reliable and stable support force for the drum module 210.
[0069] The reinforcing pipe 1124 can be arranged horizontally or obliquely, the horizontally arranged reinforcing pipe 1124 can be connected with two second pipe portions 1122, and the obliquely arranged reinforcing pipe 1124 can be connected with the second pipe portion 1122 and the first pipe portion 1121. The number of the reinforcing pipe 1124 can be one, two or more. The reinforcing pipe 1124 can be bent from the same pipe body as the first pipe portion 1121 and the second pipe portion 1122, or the reinforcing pipe 1124 can be fixed on the first pipe portion 1121 and / or the second pipe portion 1122 by welding.
[0070] As shown in Figure 3 In some possible implementation examples provided by the present application, the mounting structure 114 comprises a connecting seat, the roller module 210 comprises a rotating shaft 211 and a rotating piece 212, the rotating piece 212 is connected with the rotating shaft 211 and the connecting seat, thereby realizing the rotating connection between the support frame 110 and the roller module 210. The rotating piece 212 can be a bearing, for example, the rotating piece 212 can be a bearing with a seat. In this embodiment, the rotating piece 212 is mounted on the rotating shaft 211 of the roller module 210. Specifically, during assembly, the bearing can be sleeved on both ends of the rotating shaft 211, then the roller module 210 is moved so that the rotating shaft 211 of the roller module 210 is supported on the support frame 110, and the bearing is placed on the mounting seat from top to bottom, then the mounting seat and the bearing are assembled, which is simple to operate and convenient to disassemble and assemble. This arrangement can ensure good coaxiality of both ends of the rotating shaft 211.
[0071] In some possible implementation examples provided by the present application, the mounting structure 114 comprises a rotating piece 212, and the roller module 210 comprises a rotating shaft 211 connected with the rotating piece 212, thereby realizing the rotating connection between the support frame 110 and the roller module 210. The rotating piece 212 can be rotatably connected with the mounting frame, or at least part of the structure of the rotating piece 212 can be rotatably connected with the support frame 110. During assembly, the roller module 210 is moved so that both ends of the rotating shaft 211 of the roller module 210 are placed on the rotating piece 212 from top to bottom, and then the rotating shaft 211 and the rotating piece 212 are assembled and connected, which is simple to operate and convenient to disassemble and assemble. This arrangement can ensure good coaxiality of both ends of the rotating shaft 211.
[0072] As shown in Figure 2 In some possible implementation examples provided by the present application, the roller module 210 is provided with a connecting structure 214 connected with the tension member 121, and the distance between the connecting structure 214 and the rotating shaft 211 is greater than the distance between the rotating shaft 211 and the pot opening 215 of the roller module 210.
[0073] The drum module 210 further comprises a barrel body 213, the pot opening 215 is located at the opening of the barrel body 213, and the connecting structure 214 is located outside the barrel body 213. Specifically, the connecting structure 214 can be provided as a lifting point shaft, a connecting lug or the like. The tension member 121 is connected to the connecting structure 214. For example, the free end of the tension member 121 can be tied to the connecting structure 214 or clamped to the connecting structure 214. The connecting structure 214 can be arranged on the outer side wall of the barrel body and away from the pot opening 215. For example, the connecting structure 214 is arranged near the rear or bottom of the barrel body 213. The rear of the barrel body 213 is driven to swing by the lifting mechanism 120 to adjust the position of the pot opening 215, thereby realizing the overturning movement of the drum module 210 relative to the support frame 110 and realizing the switching of each work station.
[0074] The barrel body 213 comprises a central axis passing through the pot opening 215. The distance between the connecting structure 214 and the rotating shaft 211 can be understood as the distance between the projections of the connecting structure 214 and the rotating shaft 211 on the central axis of the barrel body 213. The distance between the rotating shaft 211 and the pot opening 215 of the drum module 210 can be understood as the distance between the projections of the rotating shaft 211 and the pot opening 215 on the central axis. By making the distance between the connecting structure 214 and the rotating shaft 211 greater than the distance between the rotating shaft 211 and the pot opening 215 of the drum module 210, a long lever structure can be formed to save effort, thereby reducing the load of the lifting mechanism 120 and improving the reliability and stability of the overturning movement of the drum module 210.
[0075] As shown in Figure 2 The fixed pulley 122 is located above the mounting structure 114, i.e. above the rotating shaft 211 of the drum module 210. In this way, the fixed pulley 122 can bear the weight, and the fixed pulley 122, the connecting structure 214 and the electric winch 123 form a triangular bearing structure through the tension member 121, which can achieve a good bearing effect.
[0076] As shown in Figure 1 and Figure 4As shown, in some possible implemented embodiments of the utility model, the cooking equipment 200 includes the seasoning module 220, one of the support frame 110 and the seasoning module 220 of the cooking equipment 200 is provided with the third connecting part 117, and the seasoning module 220 is detachably connected with the support frame 110 through the third connecting part 117, which is conducive to improving the assembly efficiency and maintenance efficiency of the seasoning module 220 and the support frame 110. By arranging the seasoning module 220 outside the first space 111, the possibility of collision between the drum module 210 and the seasoning module 220 during the overturning process can be reduced, that is, the possibility of interference of the seasoning module 220 with the overturning movement of the drum module 210 can be avoided, so that the drum module 210 can be smoothly overturned in the first space 111 to realize the switching of different stations.
[0077] The third connecting part 117 can be provided on the support frame 110, for example, the third connecting part 117 can be a clamping structure, a plug-in structure or the like, by setting part of the outer edge of the seasoning module 220 to be matched with the clamping structure or the plug-in structure, the seasoning module 220 can be detachably connected with the support frame 110 through the third connecting part 117. Alternatively, the third connecting part 117 can be a connecting hole, by cooperating with the connecting hole through a bolt, the seasoning module 220 can be detachably connected with the support frame 110. It can be understood that the third connecting part 117 can also be other structures, which are not listed here.
[0078] The third connecting part 117 can be provided on the seasoning module 220, for example, the third connecting part 117 can be a buckle, and the buckle is matched with part of the pipe body of the support frame 110 which is bent, in this way, by matching the buckle with the pipe body of the support frame 110, the seasoning module 220 can be detachably connected with the support frame 110, in this way, the support frame 110 does not need to be structurally improved, the structure is simple, the cost is low, and the operation is convenient.
[0079] In some possible implemented embodiments of the utility model, the seasoning module 220 is provided with a nozzle 221 located in the first space 111, the relative positions of the drum module 210 and the support frame 110 include a first position and a second position, the nozzle 221 is located directly above the pot opening 215 of the drum module 210 in the first position, and the nozzle 221 is located outside the movement space of the drum module 210 during the switching process between the first position and the second position.
[0080] The first position and the second position can be understood as two limit positions in the overturning movement of the drum module 210, for example, the first position can be understood as a cooking station of the drum module 210, and the second position can be understood as a dish outlet station of the drum module 210, the pot opening 215 of the cooking station can be inclined upward, the pot opening 215 of the dish outlet station can be inclined downward, and the nozzle 221 of the seasoning module 220 is located directly above the pot opening 215 of the drum module 210 at the first position, so that when the drum module 210 is at the cooking station, the seasoning sprayed by the nozzle 221 can fall into the pot opening 215 under the action of gravity, thereby realizing the seasoning operation.
[0081] The nozzle 221 is arranged outside the movement space of the drum module 210 during switching between the first position and the second position, so that the possibility of collision between the drum module 210 and the nozzle 221 during overturning can be avoided, that is, the nozzle 221 can be prevented from interfering with the overturning movement of the drum module 210, so as to ensure that the drum module 210 can be smoothly overturned to realize the switching of positions, and the nozzle 221 will not be damaged.
[0082] It can be understood that the overturning positions of the drum module 210 relative to the support frame 110 can also include other stations, such as a blanching station, a hot pot station, a pot washing station, etc., and each station is distributed between the first position and the second position.
[0083] Specifically, as shown in Figure 2 and Figure 3 The support frame 110 further forms a support frame 118 outside the first space 111, and the support frame 118 can be horizontally arranged on one side of the first space 111, that is, the support frame 118 can be located on the side of the first frame body 112 away from the first space 111. The seasoning module 220 can be installed on the support frame 118 through the third connecting part 117, so that the support frame 118 can support the seasoning module 220, and the seasoning module 220 and the drum module 210 are combined as a whole. At the same time, the nozzle 221 of the seasoning module 220 can extend into the first space 111 through the hollow structure 1101 on the frame body 112 adjacent to the second frame body 112.
[0084] As shown in Figure 1 and Figure 3 In some possible embodiments of the present application, one of the support frame 110 and the sink 230 of the cooking device 200 is provided with a fourth connecting part 231, and the sink 230 is detachably connected with the support frame 110 through the fourth connecting part 231, which is beneficial to improve the assembly efficiency and maintenance efficiency of the sink 230 and the support frame 110, and facilitates cleaning or sewage treatment after the sink 230 is detached from the support frame 110.
[0085] By locating at least part of the water tank 230 in the first space 111 and at the front of the support frame 110, the drum module 210 does not collide with the water tank 230 during the overturning movement, that is, the water tank 230 can be prevented from interfering with the overturning movement of the drum module 210, so as to ensure that the drum module 210 can be smoothly overturned to switch between positions. At the same time, when the drum module 210 is at the washing pot station, the liquid in the barrel body 213 can flow into the water tank 230 through the pot opening 215, so as to collect the sewage after the drum module 210 is washed.
[0086] The fourth connecting part 231 can be provided on the support frame 110, for example, the fourth connecting part 231 can be a clamping structure, a plug-in structure, etc. By setting part of the outer shape of the water tank 230 to match the clamping structure or the plug-in structure, the water tank 230 can be detachably connected to the support frame 110 through the fourth connecting part 231. Alternatively, the fourth connecting part 231 can be a connecting hole, and the water tank 230 can be detachably connected to the support frame 110 by cooperating with the connecting hole through a bolt. It can be understood that the fourth connecting part 231 can also be other structures, which are not listed here. Specifically, the fourth connecting part 231 can be located on the second pipe body in front of the two frame bodies 112.
[0087] Alternatively, as shown in Figure 3 , the fourth connecting part 231 can be provided on the water tank 230, for example, the fourth connecting part 231 can be a buckle, which cooperates with part of the pipe body of the support frame 110. In this way, the water tank 230 can be detachably connected to the support frame 110 by using the buckle and the pipe body of the support frame 110, without the need to improve the structure of the support frame 110, which is simple in structure and low in cost.
[0088] As shown in Figure 1 and Figure 3 , in some possible embodiments provided by the present application, one of the support frame 110 and the spray gun 240 of the cooking device 200 is provided with a fifth connecting part, and the spray gun 240 is detachably connected to the support frame 110 through the fifth connecting part, which is beneficial to improve the assembly efficiency and maintenance efficiency of the spray gun 240 and the support frame 110, and facilitates the spray gun 240 to be detached from the support frame 110 for water spraying and maintenance, which is convenient to operate. The fifth connecting part is located at the front of the support frame 110, which is convenient for a user to operate the spray gun 240 from the front of the support frame 110.
[0089] The fifth connecting part can be arranged on the support frame 110, and can be a clamping structure, a plug-in structure, etc. By arranging part of the shape of the spray gun 240 to match the clamping structure or the plug-in structure, the spray gun 240 can be detachably connected to the support frame 110 through the fifth connecting part. It can be understood that the fifth connecting part can also be other structures, which are not listed here. Specifically, the fifth connecting part can be located on the second pipe body in front of the frame body 112 and above the fourth connecting part 231, to facilitate user operation and conform to ergonomics.
[0090] The fifth connecting part can be arranged on the spray gun 240, and can be a buckle that cooperates with part of the pipe body of the support frame 110. In this way, the spray gun 240 and the support frame 110 can be detachably connected by using the buckle and the pipe body of the support frame 110, without the need to improve the structure of the support frame 110, which is simple in structure and low in cost.
[0091] As shown in Figures 1 to 4 In some possible embodiments of the present application, the rack assembly 100 further comprises a support wheel 130 connected to the bottom of the support frame 110. The support wheel 130 facilitates the movement and transportation of the support frame 110, and thus facilitates the movement and transportation of the entire spraying device, simplifies the user's carrying operation, and improves the user's experience.
[0092] Specifically, the number of support wheels 130 can be multiple, to improve the smoothness and flexibility of the movement and transportation of the rack assembly 100. For example, Figure 1 As shown in the figure, the number of support wheels 130 is four, which are distributed at the bottom of the support frame 110.
[0093] As shown in Figure 1 and Figure 4 The embodiment of the second aspect of the present application provides a cooking device 200, which comprises a roller module 210 and the rack assembly 100 of any of the preceding embodiments. Since the cooking device 200 comprises the rack assembly 100 of any of the preceding embodiments, it has all the technical effects of the rack assembly 100, which are not repeated here.
[0094] The roller module 210 is reversibly connected to the support frame 110 of the rack assembly 100, so that the roller module 210 can reversibly move relative to the rack assembly 100 to switch between different stations.
[0095] In the description of the utility model, the term "a plurality of" refers to two or more than two, unless otherwise explicitly limited, the term "up", "down" and other indicated orientation or position relationship is based on the orientation or position relationship described in the drawing, only for the convenience of describing the utility model and simplifying the description, and is not indicative or implied that the device or element must have a particular orientation, a particular orientation and operation, therefore, cannot be understood as a limitation on the utility model; The terms "connection", "installation", "fixing" and the like should be understood broadly, for example, "connection" can be fixed connection, can also be detachable connection, or integrally connected; It can be directly connected, or indirectly connected through an intermediate medium. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0096] In the description of the utility model, the terms "one embodiment", "some embodiments", "a specific embodiment" and the like mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In the utility model, 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.
[0097] The above is only the preferred embodiment of the utility model, and is not used to limit the utility model. For those skilled in the art, the utility model can have various changes and changes. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the utility model should be included in the protection scope of the utility model.
Claims
1. A rack assembly (100) for a cooking apparatus (200), characterized in that, The rack assembly (100) comprises: a support frame (110) provided as a hollow structure (1101) and formed with a first space (111), the support frame being provided with a mounting structure (114), at least part of the mounting structure (114) being exposed to the hollow structure (1101), a drum module (210) of the cooking device (200) being reversibly connected to the support frame (110) through the mounting structure (114) and movable in the first space (111).
2. The rack assembly (100) according to claim 1, wherein the drum module (210) comprises a rotating shaft (211) placed at a position of the mounting structure (114) through the hollow structure (1101); and / or the mounting structure (114) is at least partially exposed to the hollow structure (1101).
3. The rack assembly (100) according to claim 1, wherein the support frame (110) is formed by bending a pipe body, the hollow structure (1101) being formed between adjacent pipe bodies and / or between the pipe body and the surrounding environment.
4. The rack assembly (100) of claim 1, wherein, Further comprising: a hoisting mechanism (120) mounted on the support frame (110), the hoisting mechanism (120) comprising a tension member (121) connected to the drum module (210), the hoisting mechanism (120) being configured to drive the drum module (210) to reverse relative to the support frame (110) through the tension member (121).
5. The rack assembly (100) according to claim 4, wherein the hoisting mechanism (120) further comprises a fixed pulley (122) and an electric winch (123), the fixed pulley (122) being rotatably connected to the support frame (110), the electric winch (123) being mounted on the support frame (110), the tension member (121) being wound around the electric winch (123), a free end of the tension member (121) being wound around the fixed pulley (122) and connected to the drum module (210).
6. The rack assembly (100) according to claim 5, wherein the support frame (110) comprises two frame bodies (112) arranged oppositely and a connecting pipe (113) connecting the two frame bodies (112), the first space (111) being formed between the two frame bodies (112) and the connecting pipe (113); the mounting structure (114) is arranged on the frame bodies (112), and the hoisting mechanism (120) is mounted on at least one of the frame bodies (112) and / or the connecting pipe (113).
7. The rack assembly (100) according to claim 6, wherein The frame (112) comprises a first pipe portion (1121) at the top, and two second pipe portions (1122) connected to both ends of the first pipe portion (1121) and supporting the first pipe portion (1121), the connecting pipe (113) is connected with the second pipe portion (1122), and the mounting structure (114) is arranged on the first pipe portion (1121).
8. The rack assembly (100) according to claim 7, characterized in that, The two second pipe portions (1122) in one of the frames (112) comprise a first sub-pipe (1123) extending above the first pipe portion (1121), the first sub-pipe (1123) above the first pipe portion (1121) is provided with a first connecting portion (115) connected with the fixed pulley (122), and the first sub-pipe (1123) below the first pipe portion (1121) and / or the connecting pipe (113) is provided with a second connecting portion (116) connected with the electric winch (123); The first sub-pipe (1123) is located at the rear of the rack.
9. The rack assembly (100) according to claim 7, characterized in that, The frame (112) further comprises at least one reinforcing pipe (1124), the reinforcing pipe (1124) is connected with the two second pipe portions (1122), or the reinforcing pipe (1124) is connected with the first pipe portion (1121) and the second pipe portion (1122).
10. The rack assembly (100) according to claim 6, characterized in that, The mounting structure (114) comprises a connecting seat, the drum module (210) comprises a rotating shaft (211) and a rotating piece (212), and the rotating piece (212) is connected with the rotating shaft (211) and the connecting seat; or The mounting structure (114) comprises a rotating piece (212), and the drum module (210) comprises a rotating shaft (211) connected with the rotating piece (212).
11. The rack assembly (100) according to claim 10, characterized in that, The drum module (210) is provided with a connecting structure (214) connected with the tensioning piece (121), and the distance between the connecting structure (214) and the rotating shaft (211) is greater than the distance between the rotating shaft (211) and a pot opening (215) of the drum module (210); and / or The fixed pulley (122) is located above the mounting structure (114).
12. The rack assembly (100) according to claim 1, characterized in that, One of the support frame (110) and a seasoning module (220) of the cooking device (200) is provided with a third connecting portion (117), the seasoning module (220) is detachably connected with the support frame (110) through the third connecting portion (117) and is located outside the first space (111).
13. The rack assembly (100) according to claim 12, characterized in that, The seasoning module (220) is provided with a nozzle (221) located in the first space (111), the relative positions of the drum module (210) and the support frame (110) include a first position and a second position, the nozzle (221) is located directly above the pot opening (215) of the drum module (210) in the first position, and the nozzle (221) is located outside the movement space of the drum module (210) during switching between the first position and the second position.
14. The rack assembly (100) according to claim 1, characterized in that, One of the support frame (110) and a sink (230) of the cooking device (200) is provided with a fourth connecting part (231), the sink (230) is detachably connected with the support frame (110) through the fourth connecting part (231), at least part of the sink (230) is located in the first space (111) and located at the front of the support frame (110); One of the support frame (110) and a spray gun (240) of the cooking device (200) is provided with a fifth connecting part, the spray gun (240) is detachably connected with the support frame (110) through the fifth connecting part, and the fifth connecting part is located at the front of the support frame (110).
15. A cooking apparatus (200), characterized in that, Comprise: The drum module (210) and the rack assembly (100) according to any one of claims 1 to 14.