Cooking machine

CN224723015UActive Publication Date: 2026-09-08ZHEJIANG SHENJIANG FISHING & FOOD MACHINERY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522009764.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2026-09-08
Estimated Expiration
2035-09-17

AI Technical Summary

Technical Problem

[0004]1、使用者需频繁对液体供料箱中的液体进行添换,这一操作导致供料箱上的封存结构经常被开启和关闭

Benefits of technology

[0039] 1. During the operation of the feeding device in this patent, the feeding chamber in the feeding bin is always opposite to the feeding port. Therefore, the cooking ingredients and the water remaining on the cooking ingredients will fall into the pot at the same time, or be carried out by the feeding partition as it slides, without splashing onto the machine casing. This effectively prevents cooking ingredients from remaining on the machine casing and effectively ensures the hygiene of the cooking machine casing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224723015U_ABST
    Figure CN224723015U_ABST
Patent Text Reader

Abstract

The utility model belongs to kitchen utensil technical field, especially points out a kind of cooking machine, casing;Stir-frying device is arranged in the casing;Stir-frying device includes cookware, the rotating component of driving cookware overturn and the stirring piece rotationally arranged in the cookware;Feeding device is located on the stir-frying device, for sending cooking raw materials to the stir-frying device;Dish receiving device is arranged in the casing and is located below the stir-frying device, for receiving dish from the cookware after cookware overturning;And seasoning device is located on the stir-frying device, for sending cooking seasoning to the stir-frying device;Feeding device in the utility model in the movement process, feeding cavity in feeding bin is always opposite to the feeding port, so cooking raw materials and residual water on cooking raw materials can be synchronously dropped into the cookware.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This patent belongs to the field of kitchen utensils technology, specifically referring to a stir-fry machine. Background Technology

[0002] A stir-fry machine is a household appliance used for cooking, mainly for automatically stir-frying ingredients to prepare various dishes, such as stir-fries and stews. It saves time and effort, is easy to operate, and is suitable for busy modern life. Referring to Chinese Invention Patent 2023102233965, a fully automatic stir-fry machine with front feeding and its control system includes: a rotating device, a stir-frying box, a feeding device, an oil fume purification device, a seasoning device, and a cleaning device; the stir-frying box has a drum-shaped wok inside; the seasoning device in the stir-fry machine includes a liquid feeding mechanism and a solid feeding mechanism, wherein the liquid feeding mechanism includes a liquid feeding tank located at the bottom of the machine casing, and the liquid feeding tank uses a water pump to deliver liquid into the drum-shaped wok.

[0003] This fully automatic cooking machine has the following defects:

[0004] 1. Users need to frequently add or replace the liquid in the liquid supply tank, which results in the sealing structure on the supply tank being frequently opened and closed. Frequent opening and closing operations reduce the stability of the sealing structure, thereby increasing the risk of liquid deterioration within the liquid supply tank.

[0005] 2. During the cooking process, users need to frequently check the liquid level in the liquid supply tank. Since the liquid supply tank is located on the lower side of the machine casing, it is not convenient to observe.

[0006] 3. Because the solid feeding mechanism can only be set on the upper side of the drum wok, the granular seasonings will melt and clump together during the feeding process, blocking the opening of the solid feeding mechanism and thus affecting the normal feeding of the solid feeding mechanism. Summary of the Invention

[0007] The purpose of this patent is to provide a cooking machine.

[0008] The purpose of this patent is achieved as follows:

[0009] The cooking machine includes:

[0010] chassis;

[0011] A stir-frying device is installed in the machine casing; the stir-frying device includes a pot, a rotating component that drives the pot to flip, and a stirring component that is rotatably installed inside the pot;

[0012] A feeding device, located on the stir-frying device, is used to feed cooking ingredients into the stir-frying device;

[0013] A food receiving device, disposed within the casing and located below the stir-frying device, is used to catch the food poured out of the pot after the pot is flipped; and

[0014] A seasoning device, located on the stir-frying device, is used to deliver cooking seasonings into the stir-frying device;

[0015] The seasoning device includes:

[0016] A seasoning rack is fixed to the machine housing; the seasoning rack is equipped with several hanging brackets.

[0017] A liquid seasoning container is hung on the rack, and one end of the liquid seasoning container is provided with a connection port;

[0018] A liquid delivery pipe is detachably fixed to the connection port; the liquid delivery pipe is connected to a liquid drive pump, and the other end of the liquid delivery pipe faces the stir-frying device, for delivering liquid seasonings from the liquid seasoning container to the stir-frying device through the liquid drive pump.

[0019] Furthermore, the hanger is equipped with a lever that swings, and the liquid seasoning container is hung on one end of the lever; the other end of the lever is equipped with a trigger. When the weight of the liquid seasoning in the liquid seasoning container changes, causing the lever to swing, the trigger is activated according to the swing of the lever to indicate that the weight of the liquid seasoning has changed.

[0020] Furthermore, one end of the lever is provided with a hook portion, and the liquid seasoning container is provided with a hanging hole, through which the liquid seasoning container is hung on the hook portion.

[0021] Furthermore, the hanger is also provided with a trigger abutment located on the lever. When the weight of the liquid seasoning in the liquid seasoning container changes and causes the lever to swing, the trigger abutment swings with the lever and abuts or separates from the trigger abutment. This is used to determine the amount of liquid seasoning in the liquid seasoning container based on whether the trigger abuts or not.

[0022] Furthermore, the connection port on the liquid seasoning container is a threaded connection port, and one end of the liquid delivery pipe is provided with a threaded end cap for detachable connection with the threaded connection port.

[0023] Furthermore, the feeding device includes:

[0024] The feeding port is located on the machine casing and is opposite to the stir-frying device;

[0025] A feeding bin, slidably mounted on the feeding port, the feeding bin containing several feeding chambers for placing different cooking ingredients; and

[0026] A feeding baffle is slidably disposed at the bottom of the feeding bin, used to block or allow cooking ingredients in the feeding chamber to fall into the feeding port;

[0027] The feeding bin and the feeding partition slide in opposite directions.

[0028] Furthermore, the housing is provided with a feeding guide rail, and a first slider and a second slider are slidably mounted on the feeding guide rail. The first slider and the second slider are respectively connected to the feeding bin and the feeding partition.

[0029] The first slider and the second slider are also connected to a feeding drive assembly, which drives the first slider and the second slider to slide in opposite directions, so that the feeding bin and the feeding partition slide in opposite directions.

[0030] Furthermore, the seasoning support is also provided with a granular seasoning seat, which is provided with a plurality of granular seasoning containers, and the granular seasoning containers are provided with container discharge ports;

[0031] The granule seasoning container is equipped with a granule conveying assembly, which includes:

[0032] A pellet conveying cylinder, one end of which is connected to the inner cavity of the pellet seasoning container, and the other end is located on the discharge port of the container;

[0033] A spiral conveyor rod is rotatably disposed in the granule conveying cylinder. The outer diameter of the spiral conveyor rod is adapted to the inner diameter of the granule conveying cylinder. It is used to drive the granule seasoning to be conveyed along the spiral pattern on the spiral conveyor rod by rotating the spiral conveyor rod.

[0034] Furthermore, it also includes a pellet discharge sealing plate, which is slidably disposed below the container discharge port, for sealing the container discharge port by sliding the pellet discharge sealing plate, or allowing the container discharge port to connect to the outside.

[0035] The particle feeding sealing plate has several second particle outlets, which are used to slide the particle feeding sealing plate so that the several second particle outlets are aligned with several container discharge ports one by one.

[0036] Furthermore, the stir-frying device also includes a stir-frying box, inside which a pot is provided, and the two sides of the stir-frying box are rotatably connected to the housing via a flipping shaft. The rotating assembly includes a flipping motor that drives the flipping shaft to rotate.

[0037] The rotating shaft is hollow, with one end connected to the inner cavity of the stir-fry box and the other end connected to the outside of the machine casing.

[0038] The outstanding and beneficial technical effects of this patent compared to existing technologies are:

[0039] 1. During the operation of the feeding device in this patent, the feeding chamber in the feeding bin is always opposite to the feeding port. Therefore, the cooking ingredients and the water remaining on the cooking ingredients will fall into the pot at the same time, or be carried out by the feeding partition as it slides, without splashing onto the machine casing. This effectively prevents cooking ingredients from remaining on the machine casing and effectively ensures the hygiene of the cooking machine casing.

[0040] 2. The liquid seasoning container in this patent is made of plastic material, which can be quickly and detachably connected to the liquid delivery pipe and can be quickly hung on the rack. Since the liquid seasoning container is located on the top of the housing, the user can quickly observe the use of the liquid seasoning in the container, making it convenient for the user to quickly add or replace it. Moreover, during the replacement process, the threaded end cap structure can enhance the sealing of the liquid seasoning container after replacement, effectively preventing the liquid seasoning in the container from deteriorating.

[0041] 3. The spiral conveyor rod in this patent has a certain power during the conveying process. When the granular seasoning melts and remains on the container's discharge port due to heat, the spiral conveyor rod can push the granular seasoning to push away the melted granular seasoning remaining on the container's discharge port, thereby ensuring the normal supply of granular seasoning. Attached Figure Description

[0042] Figure 1 This is a structural diagram of a cooking machine.

[0043] Figure 2 This is a cross-sectional diagram of a cooking machine.

[0044] Figure 3 This is a schematic diagram of the internal structure of a cooking machine.

[0045] Figure 4 This is a structural diagram of the liquid seasoning container.

[0046] Figure 5 This is a structural diagram of the granular seasoning container.

[0047] Figure 6 This is a cross-sectional schematic diagram of the granular seasoning container.

[0048] Figure 7 This is a schematic diagram showing the disassembly of the granular seasoning container and the granular seasoning holder.

[0049] Figure 8 This is a schematic diagram of the feeding device.

[0050] Figure 9 This is a schematic diagram of the sliding motion of the first and second sliders.

[0051] Figure 10 This is a structural diagram of the feeding hopper and feeding partition.

[0052] Figure 11 This is a schematic diagram of the sliding motion of the second slider.

[0053] Figure 12 This is a schematic diagram of the sliding motion of the first slider.

[0054] Figure 13 This is a schematic diagram of the rotating motor inside the stir-frying box.

[0055] Figure 14 This is a structural diagram of the stir-frying box of the cooking machine.

[0056] Figure 15 This is a schematic diagram of the rotating assembly on the stir-fry box.

[0057] Figure 16 This is a schematic diagram of the heating container of a cooking machine.

[0058] The meaning of the labels in the diagram:

[0059] 1. Housing; 11. Drive pump diaphragm; 12. Filter structure;

[0060] 2. Stir-frying device; 21. Pot; 22. Rotating assembly; 221. Tilting motor; 222. Tilting shaft; 23. Stirring component; 24. Stir-frying box body; 25. Rotating motor; 251. First rotating shaft; 26. Stirring motor; 261. Second rotating shaft; 27. Heating component;

[0061] 3. Feeding device; 31. Feeding port; 32. Feeding bin; 321. Feeding chamber; 322. Partition slot; 33. Feeding partition; 34. Feeding guide rail; 35. First slider; 36. Second slider; 37. Feeding drive assembly; 371. Feeding motor; 372. Feeding gear; 373. Feeding rack; 374. Belt pulley shaft; 375. Belt pulley;

[0062] 4. Food receiving device; 41. Food processor; 42. Food receiving guide rail; 43. Food receiving slide; 44. Food receiving tray; 45. Food receiving motor;

[0063] 5. Seasoning device; 51. Seasoning support; 511. Hanger; 512. Lever; 5121. Hook; 513. Trigger; 514. Trigger abutment; 52. Liquid seasoning container; 521. Connection port; 522. Hanging hole; 53. Liquid delivery pipe; 531. Threaded end cap; 54. Liquid drive pump;

[0064] 55. Granule seasoning holder; 551. Engaging groove; 552. First granule outlet; 56. Granule seasoning container; 561. Engaging boss; 57. Container discharge port; 58. Granule conveying assembly; 581. Granule conveying cylinder; 582. Screw conveyor rod; 59. Granule discharge sealing plate; 591. Second granule outlet; 592. Sealing plate drive motor;

[0065] 6. Heating container; 61. Heating element; Detailed Implementation

[0066] The present patent will be further described below with reference to specific embodiments:

[0067] A cooking machine includes a casing 1, a stirring device 2, a feeding device 3, a food receiving device 4, and a seasoning device 5, combined with... Figure 1 , 2 As shown, the casing 1 in this patent is square, and the stir-frying device 2 is provided inside. The stir-frying device 2 includes a pot 21, a rotating component 22 that drives the pot 21 to flip, and a stirring component 23 that is rotatably disposed inside the pot 21.

[0068] Specific combination Figure 2 , 13 As shown in -15, the stir-frying device 2 in this patent also includes a stir-frying box 24, which is generally square and has a pot 21 inside. A flipping shaft 222 is provided on both sides of the stir-frying box 24, and the stir-frying box 24 is rotatably connected to the housing 1 through the flipping shaft 222. The rotating component 22 includes a flipping motor 221 that drives the flipping shaft 222 to rotate.

[0069] Combination Figure 2 , 15 As shown, the flip shaft 222 is connected to the left and right sides of the stir-fry box 24. The end of the flip shaft 222 is provided with a flange, which is fixed to the stir-fry box 24 by fasteners. The stir-fry box 24 is fitted with bearing components, which are connected to the housing 1, allowing the flip shaft 222 to rotate within the housing 1. This, in turn, drives the flip box connected to the flip shaft 222 to rotate. The flip motor 221 is mounted on one of the flip shafts 222, as shown... Figure 15 As shown, the flipping motor 221 drives a gear, and the outer surface of the flipping shaft 222 is provided with an external tooth surface that meshes with the gear. The rotation of the flipping motor 221 drives the gear to rotate, and the rotation of the gear drives the flipping shaft 222 to rotate, thereby realizing the rotation of the stir-fry box 24.

[0070] The cookware 21 is housed within the tilting box. The cookware 21 in this patent is cylindrical, with an outward-opening opening on one side, facilitating the insertion of cooking ingredients. The tilting box 24 contains a rotating motor 25, which drives a first rotating shaft 251 connected to the cookware 21, causing it to rotate within the tilting box 24. The tilting box 24 also contains a stirring motor 26, which drives a second rotating shaft 261 connected to the stirring element 23. The first rotating shaft 251 is fitted over the second rotating shaft 261. (Specific details to follow.) Figure 2 , 13 As shown in Figure 14, a cover is provided on the rear side of the mixing box. The cover houses the rotary motor 25 and the stirring motor 26, which are positioned to the left and right respectively. The motor shafts of the rotary motor 25 and the stirring motor 26 are respectively driven by belts to a first rotating shaft 251 and a second rotating shaft 261. The first rotating shaft 251 is cylindrical, hollow inside, and extends towards the interior of the mixing box, connecting to the back of the pot 21. The first rotating shaft 251 supports the entire pot 21 within the stir-frying box 24, and its rotation drives the pot 21 to rotate. The second rotating shaft 261 passes through the first rotating shaft 251 and extends towards the interior of the mixing box and the pot 21. The stirring element 23 is forked and connected to the second rotating shaft 261, which drives the stirring element 23 to rotate. At this time, the pot 21 and the stirring element 23 move coaxially, and their rotation centers are the same, which makes their rotation more stable and makes the structure between the pot 21 and the stirring element 23 more compact, saving installation space.

[0071] Furthermore, the flipping shaft 222 is hollow, with one end connected to the inner cavity of the stir-fry box 24 and the other end connected to the outside of the casing 1. Combined with... Figure 1 , 14 As shown, the rotating shaft 222 in this patent is cylindrical and hollow inside. Correspondingly, the stir-frying box 24 has an opening opposite to the rotating shaft 222, and the housing 1 has a filter structure 12 that seals the hollow structure inside the rotating shaft 222. The hollow rotating shaft 222 facilitates the entry of outside air into the stir-frying box 24 through one side of the rotating shaft 222 and the exit through the other side of the rotating shaft 222, thereby achieving air circulation and providing a certain degree of heat dissipation. In addition, a heating element 27 is provided inside the rotating box, located below the cookware 21. The heating element 27 can be a heating tube.

[0072] like Figure 2As shown, the top casing 1 of the stir-fry device 2 is provided with a feeding port 31, and a feeding device 3 is provided on one side of the feeding port 31. When the rotating component 22 of the stir-fry device 2 rotates the pot 21 so that the opening of the pot 21 is opposite to the feeding port 31, the feeding device 3 will work to feed the cooking ingredients into the stir-fry device 2. The casing 1 on the lower side of the stir-fry device 2 is provided with a food receiving device 4, which specifically includes a food receiving tray 44. When the rotating component 22 of the stir-fry device 2 rotates the pot 21 downwards, the food in the pot 21 will fall into the food receiving tray 44 under the action of gravity. At this time, the user can take out the cooked food from the food receiving tray 44. Specifically, the user can set an openable window on the casing 1 in front of the food receiving device 4 to observe the situation in the food receiving device 4 and take out the cooked food by opening and closing the window. In order to cooperate with the above-mentioned feeding device 3 and receiving device 4, the pot 21 in this patent will rotate up to 180 degrees under the drive of the rotating component 22 to complete the stir-frying operation.

[0073] Specifically, combined Figure 2 , 3 As shown, the food receiving device 44 also includes a food receiving guide rail 42, on which a food receiving slide bar 43 is provided. The food receiving slide bar 43 is connected to the left and right sides of the food receiving tray 44. The food receiving tray 44 is connected to a food receiving motor 45, which drives the food receiving tray 44 to slide on the food receiving guide rail 42. Specifically, the food receiving slide bar 43 can be configured as a rack and pinion. The food receiving motor 45 drives a gear, which meshes with the food receiving slide bar 43. The rotation of the food receiving motor 45 drives the food receiving slide bar 43 to slide, thereby driving the food receiving tray 44 to slide. When the cooking is finished, the user opens the viewing window on the casing 1, and at the same time, the food receiving motor 45 moves, causing the food receiving tray 44 to slide outward, delivering the cooked food.

[0074] Furthermore, the food receiving device 44 also includes a food processor 41 disposed under the food receiving tray 44, with a flared top. After the user cleans the stir-frying device 2 with a water gun, any remaining oil or residue will fall into the food processor 41, where it will be pulverized and then discharged.

[0075] Furthermore, combined Figure 8-12As shown, the feeding device 3 in this patent includes a feeding bin 32 and a feeding partition 33. The feeding bin 32 is slidably disposed on the feeding port 31. The feeding bin 32 is divided into several feeding cavities 321 for placing different cooking ingredients. The feeding partition 33 is slidably disposed at the bottom of the feeding bin 32 and is used to block or allow the cooking ingredients in the feeding cavities 321 to fall into the feeding port 31. The sliding directions of the feeding bin 32 and the feeding partition 33 are opposite.

[0076] like Figure 10 As shown, the feeding bin 32 is a square bin formed by a panel surrounding it. The feeding bin 32 is open at both the top and bottom. Several partitions are integrally formed inside the feeding bin 32, dividing the feeding bin 32 into several feeding chambers 321. The feeding partitions 33 are slidably disposed at the bottom of the feeding bin 32, used to block or allow cooking ingredients in the feeding chambers 321 to fall into the feeding port 31. In fact, the feeding bin 32 has several partition slots 322 for placing the feeding partitions 33. The feeding partitions 33 are inserted into the partition slots 322 and slide along the partition slots 322.

[0077] like Figure 9 As shown, the housing 1 is provided with a feeding guide rail 34, on which a first slider 35 and a second slider 36 slide. The first slider 35 and the second slider 36 are respectively connected to the feeding bin 32 and the feeding partition 33. The feeding guide rail 34 is located on the top of the housing 1 and on the left and right sides of the feeding port 31. The first slider 35 and the second slider 36 are also respectively connected to a feeding drive assembly 37. The feeding drive assembly 37 drives the first slider 35 and the second slider 36 to slide in opposite directions, so that the sliding directions of the feeding bin 32 and the feeding partition 33 are opposite.

[0078] The feeding drive assembly 37 includes a feeding motor 371, which drives a feeding gear 372. The feeding gear 372 meshes with a feeding rack 373, which is disposed on the first slider 35 and the second slider 36. Figure 8 , 11As shown, the second slider 36 is U-shaped. One end of the second slider 36 is connected to the feeding guide rail 34. One end of the second slider 36 is provided with a connecting pin, which connects it to the feeding partition 33. The feeding rack 373 is fixed to the side of the second slider 36 by fasteners. The feeding motor 371 is located below the second slider 36. The feeding motor 371 drives a pulley 375 with a belt. A pulley shaft 374 is driven by the belt, and the feeding gear 372 is coaxially mounted on the pulley shaft 374. The feeding gear 372 meshes with the feeding rack 373 on the second slider 36. The rotation of the feeding motor 371 drives the second slider 36 to slide. Figure 12 As shown, the second slider 36 is also equipped with a feeding motor 371. The feeding motor 371 drives a pulley shaft 374 through a pulley 375. There are two second sliders 36 in this patent, which are respectively connected to the feeding guide rail 34. The two second sliders 36 are respectively connected to the left and right sides of the feeding bin 32. Each second slider 36 is equipped with the feeding rack 373, and the feeding gears 372 are provided at both ends of the pulley shaft 374. The second slider 36 is moved on the feeding guide rail 34 by the rotation of the feeding motor 371.

[0079] The two feeding motors 371 rotate in different directions, causing the feeding bin 32 and the feeding partition 33 to slide in opposite directions. During the feeding process, the rotating component 22 first drives the pot 21 to face the feeding port 31. At this time, the first feeding chamber 321 in the feeding bin 32 faces the feeding port 31, and the feeding partition 33 slides in the forward direction to open the first feeding chamber 321, allowing the cooking ingredients in the first feeding chamber 321 to fall into the pot 21. Then, the feeding bin 32 slides in the opposite direction, making the second feeding chamber 321 face the feeding port 31, while the feeding partition 33 continues to slide in the forward direction to allow the cooking ingredients in the second feeding chamber 321 to fall into the pot 21. This process continues until all the cooking ingredients in the feeding bin 32 have fallen into the pot 21 and then return to their original position, thus completing the feeding action.

[0080] Because the feeding chamber 321 in the feeding bin 32 is always opposite to the feeding port 31 during the movement of the feeding device 3 in this patent, the cooking ingredients and the water remaining on the cooking ingredients will fall into the pot 21 at the same time, or be carried out by the feeding partition 33 as the feeding partition 33 slides, without splashing onto the casing 1, effectively preventing cooking ingredients from remaining on the casing 1 and effectively ensuring the hygiene of the casing 1 of the cooking machine.

[0081] Furthermore, both ends of the feeding baffle 33 are folded upwards. For example... Figure 10As shown, the slight folding at both ends of the feeding baffle 33 can better prevent some cooking ingredients and water residue on the cooking ingredients from falling onto the machine casing 1 after being carried out by the feeding baffle 33, thus further ensuring the hygiene of the machine casing 1 of the cooking machine.

[0082] Furthermore, the seasoning device 5 is located on top of the housing 1, and is used to deliver cooking seasonings to the stir-frying device 2. It should be noted that during normal cooking, there are liquid and solid seasonings. Liquid seasonings are generally cooking wine, soy sauce, vinegar, cooking oil, etc., while solid seasonings include salt, MSG, chicken essence, etc. Due to their different forms, liquid and solid seasonings are conveyed through different structures.

[0083] like Figure 2-4 As shown, the seasoning device 5 includes a seasoning support 51, a liquid seasoning container 52, and a liquid delivery pipe 53. The seasoning support 51 is Y-shaped, and a hanging bracket 511 is provided on one side of the seasoning support 51. The hanging bracket 511 is used to place the liquid seasoning container 52, and the liquid seasoning container 52 is hung on the hanging bracket 511. One end of the liquid seasoning container 52 is provided with a connection port 521. The liquid delivery pipe 53 is detachably fixed to the connection port 521. The liquid delivery pipe 53 is connected to a liquid drive pump 54, and the other end of the liquid delivery pipe 53 faces the stir-frying device 2, and is used to deliver the liquid seasoning in the liquid seasoning container 52 to the stir-frying device 2 through the liquid drive pump 54.

[0084] Combination Figure 2 , 3 As shown, the housing 1 contains a drive pump chamber 11 separated by a partition. The drive pump chamber 11 is located below the liquid seasoning container 52. The liquid drive pump 54 is fixed inside the drive pump chamber 11 by fasteners. The liquid delivery pipe 53 on the liquid drive pump 54 passes through the housing and connects to the liquid seasoning container 52. The liquid seasoning container 52 in this patent is generally flat and square, with a hanging hole 522 on its top.

[0085] like Figure 4 As shown, a lever 512 is oscillating on the hanger 511. The lever 512 is an equal-arm lever, and one end of the lever 512 has a hook portion 5121. The liquid seasoning container 52 is hung on the hook portion 5121 through the hanging hole 522. Moreover, the connection port 521 of the liquid seasoning container 52 is arranged downwards opposite to the drive pump cavity 11. At this time, the liquid delivery pipe 53 on the liquid drive pump 54 is connected to the connection port 521. The liquid delivery pipe 53 extends in the housing 1 and faces the pot 21 on the drive pump cavity 11.

[0086] like Figure 2As shown, the connection port 521 on the liquid seasoning container 52 is a threaded connection port 521, and one end of the liquid delivery pipe 53 is provided with a threaded end cap 531 for detachable connection with the threaded connection port 521. The threaded end cap 531 is integrally formed with the liquid delivery pipe 53 to connect with the connection port 521, and the threaded structure on the connection port 521 and the threaded end cap 531 enhance the seal of the liquid seasoning container 52.

[0087] The liquid seasoning container 52 in this patent is made of plastic and can be quickly and detachably connected to the liquid delivery pipe 53 and can be quickly hung on the hanger 511. Since the liquid seasoning container 52 is located on the top of the housing 1, the user can quickly observe the use of the liquid seasoning in the liquid seasoning container 52, making it convenient for the user to quickly add or replace it. Moreover, during the replacement process, the threaded end cap 531 structure can enhance the sealing of the liquid seasoning container 52 after replacement, effectively preventing the liquid seasoning in the liquid seasoning container 52 from deteriorating.

[0088] Furthermore, the other end of the lever 512 is provided with a trigger 513. When the weight of the liquid seasoning in the liquid seasoning container 52 changes, causing the lever 512 to swing, the trigger 513 triggers to indicate the change in the weight of the liquid seasoning based on the swing of the lever 512. In this patent, the hanger 511 is also provided with a trigger abutment 514 located on the lever 512. The trigger abutment 514 is specifically a panel fixed on the top of the seasoning bracket 51. When the weight of the liquid seasoning in the liquid seasoning container 52 changes, causing the lever 512 to swing, the trigger 513 swings with the lever and abuts or separates from the trigger abutment 514, used to determine the amount of liquid seasoning in the liquid seasoning container 52 based on whether the trigger 513 abuts or separates from the trigger abutment 514.

[0089] Specifically, this can be achieved through a circuit. The trigger 513 and the trigger abutment 514 are connected to a circuit. When there is a lot of liquid seasoning in the liquid seasoning container 52, the overall weight of the container increases, causing the lever 512 to swing. This causes the trigger 513 on the lever 512 to move upward and contact the trigger abutment 514. At this time, the circuit between the trigger 513 and the trigger abutment 514 is connected, indicating that there is enough liquid seasoning in the liquid seasoning container 52 and it does not need to be replaced. As the liquid seasoning in the liquid seasoning container 52 is used, the overall weight of the container decreases, and the trigger 513 gradually moves downward until it separates from the trigger abutment 514. At this time, the circuit between the trigger 513 and the trigger abutment 514 is disconnected. The program can then indicate that there is not enough liquid seasoning in the liquid seasoning container 52 and it needs to be replaced, thus achieving an automatic alarm for the liquid seasoning container 52.

[0090] Furthermore, the seasoning support 51 is also provided with a granular seasoning seat 55, which is located on the other side of the seasoning support 51. The granular seasoning seat 55 is provided with a plurality of granular seasoning containers 56, and each granular seasoning container 56 is provided with a container discharge port 57. The granular seasoning container 56 is provided with a granular conveying assembly 58, which includes a granular conveying cylinder 581 and a spiral conveying rod 582. One end of the granular conveying cylinder 581 is connected to the inner cavity of the granular seasoning container 56, and the other end is located on the container discharge port 57. The spiral conveying rod 582 is rotatably disposed in the granular conveying cylinder 581, and the outer diameter of the spiral conveying rod 582 is adapted to the inner diameter of the granular conveying cylinder 581. It is used to drive the granular seasoning along the spiral pattern on the spiral conveying rod 582 by the rotation of the spiral conveying rod 582.

[0091] Specifically, such as Figure 5-7 As shown, the granular seasoning seat 55 is platform-shaped, and the granular seasoning container 56 in this patent is T-shaped with an opening at the top for adding granular seasoning. A container discharge port 57 is located on the lower side of the granular seasoning container 56. The granular conveying cylinder 581 is integrally formed at the bottom of the granular seasoning container 56 and is arranged horizontally. The spiral conveying rod 582 is rotatably disposed within the granular conveying cylinder 581. A drive motor is located on one side of the spiral conveying rod 582, which drives the spiral conveying rod 582 to rotate within the granular conveying cylinder 581.

[0092] The granular seasoning holder 55 is located above the feeding port 31. During feeding, the spiral conveyor rod 582 rotates, driving the granular seasoning along the spiral pattern on the spiral conveyor rod 582. Since the spiral conveyor rod 582 has a certain power during the conveying process, when the granular seasoning melts and remains on the container's discharge port 57, the spiral conveyor rod 582 can push the granular seasoning aside the melted granular seasoning remaining on the container's discharge port 57, thereby ensuring the normal supply of granular seasoning.

[0093] Furthermore, it also includes a pellet discharge sealing plate 59, which is slidably disposed below the container discharge port 57, used to seal the container discharge port 57 or to allow the container discharge port 57 to connect to the outside by sliding the pellet discharge sealing plate 59. Combined with Figure 7 As shown, the granular seasoning holder 55 actually has several first granule outlets 552. When the granular seasoning container 56 is installed on the granular seasoning holder 55, the container discharge port 57 on the granular seasoning container 56 corresponds one-to-one with the first granule outlets 552. The granule discharge sealing plate 59 is slidably disposed below the granular seasoning holder 55, and a sealing plate drive motor 592 for driving the granule discharge sealing plate 59 to slide is provided on one side of the granular seasoning holder 55.

[0094] like Figure 7 As shown, the granule feeding sealing plate 59 has a plurality of second granule outlets 591. When the granule feeding sealing plate 59 is moved to slide, the plurality of second granule outlets 591 on the granule feeding sealing plate 59 correspond one-to-one with the plurality of first granule outlets 552 and the container feeding port 57, so that the granule seasoning in the granule seasoning container 56 can enter the pot 21 for seasoning by passing through the container feeding port 57, the second granule outlets 591 and the first granule outlets 552 in sequence.

[0095] Furthermore, the granular seasoning container 56 is provided with engaging protrusions 561, and the granular seasoning seat 55 is provided with a plurality of engaging grooves 551 corresponding to the engaging protrusions 561. For example... Figure 7 As shown, the engaging boss 561 and engaging groove 551 are circular, and quick installation can be achieved through the engaging boss 561 and engaging groove 551.

[0096] Furthermore, such as Figure 16As shown, a heating container 6 is also provided inside the housing 1. The heating container 6 is located below the receiving device 4. A heating tube 61 is provided outside the heating container 6. The heating tube 61 is used to heat the seasonings located inside the heating container 6. The heating container 6 is connected to a seasoning conveying pipe, which is set inside the housing and connected to a drive pump. The heated seasonings are sent to the stir-frying device 2 through the seasoning conveying pipe. The heating container 6 in this patent is square. The heating tube 61 is attached to the outer wall of the heating container 6. The heating container 6 can be used to hold some seasonings that will solidify at low temperatures, such as lard. The heating tube 61 heats the heating container 6 to melt the lard, and then the melted lard is sent to the pot 21 for stir-frying through the seasoning conveying pipe.

[0097] The above embodiments are merely preferred embodiments of this patent and are not intended to limit the scope of protection of this patent. Therefore, all equivalent changes made to the structure, shape, and principle of this patent should be included within the scope of protection of this patent.

[0098] It should be understood that the structures, proportions, sizes, etc., depicted in the accompanying drawings of this specification are merely for illustrative purposes to aid those skilled in the art and are not intended to limit the scope of this patent. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, provided they do not affect the efficacy or purpose of this patent, should still fall within the scope of the technical content disclosed in this patent. Furthermore, the terms such as "upper," "lower," "left," "right," "middle," and "one" used in this specification are merely for clarity and are not intended to limit the scope of this patent. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of this patent's implementation.

[0099] It should also be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on the other component or may be connected to an intermediary component. When a component is referred to as being "connected to" another component, it can be directly connected to the other component or indirectly connected to the other component through an intermediary component.

[0100] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed in this application.

Claims

1. A cooking machine, characterized in that, include: Casing (1); A stir-frying device (2) is installed in the casing (1); The stir-frying device (2) includes a pot (21), a rotating component (22) for driving the pot (21) to flip, and a stirring component (23) rotatably disposed inside the pot (21); A feeding device (3) is installed on the top of the casing (1) for feeding cooking ingredients into the stir-frying device (2); The food receiving device (4) is installed in the housing (1) and located below the stir-frying device (2), and is used to receive the food poured out of the pot (21) after the pot (21) is turned over; as well as A seasoning device (5) is located on the stir-frying device (2) and is used to deliver cooking seasonings to the stir-frying device (2); The seasoning device (5) includes: A seasoning rack (51) is fixed on the housing (1); the seasoning rack (51) is provided with several hanging racks (511); A liquid seasoning container (52) is hung on the bracket (511), and one end of the liquid seasoning container (52) is provided with a connection port (521); A liquid delivery pipe (53) is detachably fixed to the connection port (521); the liquid delivery pipe (53) is connected to a liquid drive pump (54), and the other end of the liquid delivery pipe (53) faces the stir-frying device (2) for delivering liquid seasoning in the liquid seasoning container (52) to the stir-frying device (2) through the liquid drive pump (54).

2. The cooking machine according to claim 1, characterized in that: The hanger (511) is equipped with a lever (512) that swings, and the liquid seasoning container (52) is hung on one end of the lever (512); the other end of the lever (512) is equipped with a trigger (513). When the weight of the liquid seasoning in the liquid seasoning container (52) changes and causes the lever (512) to swing, the trigger (513) is triggered according to the swing of the lever (512) to indicate that the weight of the liquid seasoning has changed.

3. The cooking machine according to claim 2, characterized in that: One end of the lever (512) is provided with a hook (5121), and the liquid seasoning container (52) is provided with a hanging hole (522), through which the liquid seasoning container (52) is hung on the hook (5121).

4. The cooking machine according to claim 2, characterized in that: The hanger (511) is also provided with a trigger abutment (514) located on the lever (512). When the weight of the liquid seasoning in the liquid seasoning container (52) changes and the lever (512) swings, the trigger (513) swings with the lever (512) and abuts or separates from the trigger abutment (514). This is used to determine the amount of liquid seasoning in the liquid seasoning container (52) based on whether the trigger (513) abuts or not.

5. The cooking machine according to claim 1, characterized in that: The connection port (521) on the liquid seasoning container (52) is a threaded connection port (521), and one end of the liquid delivery pipe (53) is provided with a threaded end cap (531) for detachable connection with the threaded connection port (521).

6. The cooking machine according to claim 1, characterized in that, The feeding device (3) includes: The feeding port (31) is located on the machine casing (1) and is opposite to the stir-frying device (2); A feeding bin (32) is slidably disposed on the feeding port (31), and the feeding bin (32) is divided into several feeding chambers (321) for placing different cooking ingredients; and A feeding baffle (33) is slidably disposed at the bottom of the feeding bin (32) to block or allow cooking ingredients in the feeding chamber (321) to fall into the feeding port (31); The feeding bin (32) slides in the opposite direction to the feeding partition (33).

7. The cooking machine according to claim 6, characterized in that: The housing (1) is provided with a feeding guide rail (34), and a first slider (35) and a second slider (36) are slidably provided on the feeding guide rail (34). The first slider (35) and the second slider (36) are respectively connected to the feeding bin (32) and the feeding partition (33). The first slider (35) and the second slider (36) are also connected to a feeding drive assembly (37). The feeding drive assembly (37) drives the first slider (35) and the second slider (36) to slide in opposite directions, so that the feeding bin (32) and the feeding partition (33) slide in opposite directions.

8. The cooking machine according to claim 1, characterized in that, The seasoning support (51) is also provided with a granular seasoning seat (55), and the granular seasoning seat (55) is provided with a number of granular seasoning containers (56), and the granular seasoning containers (56) are provided with container discharge ports (57). The granular seasoning container (56) is provided with a granular conveying assembly (58), which includes: The pellet conveying cylinder (581) has one end connected to the inner cavity of the pellet seasoning container (56) and the other end located on the container discharge port (57). A spiral conveyor rod (582) is rotatably disposed in the granule conveying cylinder (581). The outer diameter of the spiral conveyor rod (582) is adapted to the inner diameter of the granule conveying cylinder (581). It is used to drive the granule seasoning along the spiral pattern on the spiral conveyor rod (582) by rotating the spiral conveyor rod (582).

9. The cooking machine according to claim 8, characterized in that: It also includes a pellet discharge sealing plate (59), which is slidably disposed below the container discharge port (57) for sealing the container discharge port (57) by sliding the pellet discharge sealing plate (59), or for connecting the container discharge port (57) to the outside. The particle feeding sealing plate (59) is provided with a plurality of second particle outlets (591), which are used to slide the particle feeding sealing plate (59) so that the plurality of second particle outlets (591) are aligned with a plurality of container discharge ports (57).

10. The cooking machine according to claim 1, characterized in that: The stir-frying device (2) also includes a stir-frying box (24), which is equipped with a pot (21). The two sides of the stir-frying box (24) are rotatably connected to the housing (1) via a rotating shaft (222). The rotating assembly (22) includes a rotating motor (221) that drives the rotating shaft (222) to rotate. The rotating shaft (222) is hollow, with one end connected to the inner cavity of the stir-fry box (24) and the other end connected to the outside of the casing (1).