Multifunctional cooker
By designing a solid feeding mechanism, liquid material box mechanism and mixing mechanism in the stir-frying machine, the problems of inconvenient addition of solid material, inconvenient addition of liquid material and insufficient mixing in the existing stir-frying machine are solved, and more efficient and convenient operation during the stir-frying process is achieved.
Patent Information
- Application Number
- CN202421570597.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-07-04
AI Technical Summary
When adding solid seasonings, existing stir-frying machines are prone to being unable to lose the material due to solidification of water vapor, which makes it inconvenient to add liquid material boxes and insufficient stirring, resulting in the inability to break up the meat.
A multi-functional stir-frying machine is designed, including a solid feeding mechanism, a liquid material box mechanism and a mixing mechanism. The solid feeding mechanism realizes uniform input of solid material through the flip box and the rotating block; the liquid material box mechanism facilitates the addition of liquid material through the rotatable material box structure; the agitator means rotates the stirring parts while rotating, ensuring sufficient stirring.
The uniform input of solid materials, convenient addition of liquid materials and sufficiency of stirring are achieved, and the problems of solidification and uneven stirring of materials are avoided.
Smart Images

Figure CN222840812U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to kitchen machinery, in particular to a multifunctional cooking machine. Background Art
[0002] At present, more and more restaurants are using cooking machines to replace manual labor and improve efficiency. Chinese patent 202322637593.X discloses a cooking machine. In actual use, it is found that this cooking machine still has the following shortcomings: 1) solid seasonings will always be condensed by water vapor when added and cannot fall into the material; 2) it is inconvenient to add liquid seasonings, and the liquid seasoning box must be taken out before adding; 3) the stirring is not sufficient, and the meat cannot be broken up. Utility Model Content
[0003] The utility model aims to solve the problems existing in the prior art and provide a multifunctional cooking machine with sufficient stirring and convenient material addition.
[0004] The technical solution of the utility model is achieved in this way:
[0005] The utility model provides a multifunctional cooking machine, comprising: a cabinet, a pot body part rotatably arranged on the cabinet, a material box displacement mechanism arranged on the cabinet and located above the pot body part, a stirring mechanism, a liquid material spraying mechanism, a solid material feeding mechanism and an electromagnet mechanism, a liquid material box mechanism arranged in the cabinet, a lard module, a liquid water pump assembly and an equipment electronic control assembly; the solid material feeding mechanism can be rotatably arranged on the cabinet, the material box displacement mechanism includes a plurality of material boxes movably arranged on the cabinet, and the electromagnet mechanism can be rotatably arranged on the cabinet and cooperate with the material box displacement mechanism through the electromagnet. The adsorption material box is tilted toward the pot body; the stirring mechanism is rotatably arranged on the cabinet body for stirring the food materials in the pot body part, the liquid material box mechanism is rotatably arranged in the cabinet body below the pot body part, the lard module is arranged below the liquid material box mechanism, the liquid spraying mechanism and the liquid material box mechanism, the lard module, and the liquid water pump assembly form a spraying system, and the equipment electronic control assembly is electrically connected to the pot body part, the material box displacement mechanism, the electromagnet mechanism, the stirring mechanism, the liquid spraying mechanism, the solid feeding mechanism, the liquid material box mechanism, the lard module and the liquid water pump assembly to control their operation.
[0006] The pot body part includes: a pot body, an outer cover fixed outside the pot body, one side of the outer cover is connected to the active rotating shaft on the first reduction motor, and the pot body is driven by the first reduction motor to realize the up and down rotation of the pot body; the outer cover below the pot body is equipped with a wire drum fixing seat and a cooling fan located below the wire drum fixing seat, and the electric heating wire drum is installed on the wire drum fixing seat.
[0007] The material box displacement mechanism includes: a displacement plate supported by a cabinet, a material box movably arranged on the displacement plate and provided with an iron sheet, a motor installed on the cabinet, a driving gear installed on the motor, a rack arranged at the bottom of the displacement plate and meshing with the driving gear, a roller arranged at the bottom of the displacement plate and cooperating with a guide groove on the cabinet, and the material box is placed in a limiting groove on the displacement plate for limiting position; the electromagnet mechanism includes: a second reduction motor installed on the cabinet through a mounting block, an electromagnet mounting block rotatably installed in the mounting block and connected to the rotating shaft of the second reduction motor, and an electromagnet and a buffer block cooperating with the iron sheet on the material box are fixed on the electromagnet mounting block.
[0008] The stirring mechanism includes: a third reduction motor arranged in the cabinet, a stirring block mounting plate driven by the third reduction motor to rotate up and down, a fourth reduction motor arranged on the stirring block mounting plate, a stirring block driven to rotate by the fourth reduction motor through a gear mechanism, and a first stirring member and a second stirring member arranged on the stirring block and rotating while the stirring block revolves; the gear mechanism includes a central gear fixed on the stirring block mounting plate, a driving shaft rotatably arranged in the central gear and connected to the fourth reduction motor through an umbrella gear pair, a stirring block sleeved on the central gear and fixedly connected to the driving shaft, a first stirring gear rotatably arranged on the stirring block and meshed with the central gear, a bridge gear rotatably arranged on the stirring block and meshed with the central gear, and a second stirring gear rotatably arranged on the stirring block and meshed with the bridge gear, the first stirring member and the second stirring member are fixedly connected to the first stirring gear and the second stirring gear respectively; stirring blades are respectively provided at the lower ends of the first stirring member and the second stirring member.
[0009] The output shaft of the third reduction motor is arranged at the rear end of the stirring block mounting plate, and the output shaft of the fourth reduction motor is installed with a first transmission bevel gear, which is meshed with a second transmission bevel gear installed on the driving shaft to form the bevel gear pair; the stirring block is fixed on the mounting plate at the lower end of the driving shaft, and the bridge gear is rotatably arranged in the stirring block through a rotating shaft; the first stirring member and the second stirring member are respectively arranged on the stirring block through bearings; the central gear is fixed to the stirring block mounting plate through a fixing block.
[0010] The solid feeding mechanism includes: a fifth reduction motor arranged on the cabinet, a flip box driven by the fifth reduction motor to rotate up and down, a small reduction motor arranged in the flip box, and an inductor fixed on the small reduction motor, a gear is fixed to one end of the output shaft of the small reduction motor, and a baffle corresponding to the inductor that rotates with the output shaft is fixed to the other end of the output shaft of the small reduction motor; a plurality of feeding blocks are installed on the outside of the flip box, each of which is provided with a feeding channel that passes through from top to bottom, a discharge port connected to the feeding channel, and a rotating block that is transversely arranged in the feeding channel and fixed on the gear and meshes with the gear, the surface of the rotating block is evenly distributed with grooves corresponding to the feeding channel, and a solid material bottle is provided below the feeding block corresponding to the feeding channel.
[0011] The liquid material box mechanism includes: a support body composed of a front baffle, a bottom plate, a rear plate arranged between the front baffle and the bottom plate, and a plurality of transparent material boxes placed on the rear plate; a handle is fixed to the upper part of the front baffle, and an observation plate for observing the material box is installed in the hollow part below the front baffle; the support body is rotatably arranged on the cabinet body through axes arranged on the left and right sides behind the lower part of the front baffle, and a pipe clamp is installed under the bottom plate to fix the discharge pipe of the material box; a feeding port with a sealing cover is provided on the top of the material box, and a pipe joint connected to the straw in the material box is provided on the material box, and the discharge pipe is connected to the pipe joint.
[0012] The lard module comprises: a cabinet arranged in the cabinet body, a heating plate installed inside the cabinet, a lard box with a material extraction pipe installed on the heating plate, and a peristaltic pump connected with the material extraction pipe installed on the cabinet.
[0013] The liquid spraying mechanism comprises a spraying installation block arranged on the cabinet body and a plurality of discharge pipes fixed on the spraying installation block, and a one-way valve is arranged at the end of each discharge pipe.
[0014] The liquid material of the liquid material box mechanism is pumped out by the water pump of the liquid water pump assembly and then sent to the one-way valve of the liquid spraying mechanism for spraying through the discharge pipe. The lard module is sent by the peristaltic pump to the other one-way valve of the liquid spraying mechanism for spraying through the discharge pipe.
[0015] Beneficial effects of the utility model
[0016] In the utility model, the solid feeding mechanism is provided so that each time solid materials are added, the solid material bottle is turned over to cause the materials to roll over, thereby avoiding the solidification of the materials and bridging, and preventing the materials from being unable to be sprayed out. The liquid material box mechanism is provided so that when employees add liquid materials, they do not need to take out the material box, but only need to turn over the support body to add the liquid materials from the feeding port of the material box. The stirring mechanism can make the first stirring member and the second stirring member rotate at the same time as the revolution through the gear mechanism, so that the stirring is more complete.
[0017] The technical solution of the utility model is further explained below in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a view of the utility model.
[0019] Figure 2 It is a view of the utility model from different directions.
[0020] Figure 3 It is a structural schematic diagram of the pot body part in the utility model.
[0021] Figure 4 It is a cross-sectional view of the pot body.
[0022] Figure 5 It is a schematic diagram of the material box displacement mechanism in the utility model.
[0023] Figure 6 It is a schematic diagram of the electromagnet mechanism in the utility model.
[0024] Figure 7 It is a schematic diagram of the stirring mechanism in the utility model.
[0025] Figure 8 It is a cross-sectional view of the stirring mechanism.
[0026] Fig. 9 yes Figure 8 Enlarged view of point A in the middle.
[0027] Fig.10 It is a schematic diagram of the solid feeding mechanism in the utility model.
[0028] Fig.11 yes Fig.10 Enlarged view of point B in the middle.
[0029] Fig.12 It is a cross-sectional view of the solid feeding mechanism.
[0030] Fig.13 It is a schematic diagram of the liquid material box mechanism in the utility model.
[0031] Fig.14 These are views of the liquid cartridge mechanism from different directions.
[0032] Fig.15 It is a schematic diagram of the lard module in the utility model.
[0033] Fig.16 It is a schematic diagram of the liquid spraying mechanism in the utility model.
[0034] Fig.17 It is a schematic diagram of the spraying system in the utility model. DETAILED DESCRIPTION
[0035] See Figure 1 , Figure 2 The multifunctional cooking machine provided by the utility model comprises: a cabinet 1, a pot body part 2 which is rotatably arranged on the cabinet 1, a material box displacement mechanism 3 which is arranged on the cabinet 1 and is located above the pot body part 2, a stirring mechanism 5, a liquid material spraying mechanism 6, a solid material feeding mechanism 7 and an electromagnet mechanism 4, a liquid material box mechanism 8 which is arranged in the cabinet 1, a lard module 9, a liquid water pump assembly 10 and an equipment electronic control assembly 11; a first mounting platform 101 is arranged on one side of the upper part of the cabinet 1, and a first mounting platform 101 is arranged on the other side relative to the first mounting platform 101 The second mounting platform 102 is provided with a cabinet door 105 at the lower front part of the cabinet body 1; the pot body part 2 is arranged between the first mounting platform 101 and the second mounting platform 102 so as to be rotatable up and down through a rotating shaft; the solid feeding mechanism 7 is arranged on the second mounting platform 102 so as to be rotatable up and down through a rotating shaft; the material box displacement mechanism 3 is arranged on the top of the first mounting platform 101 so as to be movable forward and backward; the electromagnet mechanism 4 is arranged on the first mounting platform 101 and can cooperate with the material box displacement mechanism 3 to move the material box 3 in the material box displacement mechanism 3 05 after electromagnetic adsorption, it is tilted toward the pot body part 2; a fourth mounting platform 104 is arranged at the rear of the upper part of the cabinet 1, the liquid spraying mechanism 6 is arranged on the fourth mounting platform 104, and the stirring mechanism 5 is arranged on the fourth mounting platform 104 by screws; the liquid material box mechanism 8 is arranged in the cabinet 1 below the pot body part 2 so as to be rotatable up and down through a rotating shaft, and a third mounting platform 103 is arranged on the cabinet 1 below the liquid material box mechanism 8, and the lard module 9 is arranged on the third mounting platform 103 by a support plate and screws ; The equipment electronic control component 11 is arranged in one side of the cabinet 1, and the liquid water pump component 10 is arranged in the lower part of the other side of the cabinet 1. The liquid spraying mechanism 6 and the liquid material box mechanism 8, the lard module 9, and the liquid water pump component 10 constitute a spraying system. The equipment electronic control component 11 is electrically connected to the pot body part 2, the material box displacement mechanism 3, the electromagnet mechanism 4, the stirring mechanism 5, the liquid spraying mechanism 6, the solid feeding mechanism 7, the liquid material box mechanism 8, the lard module 9 and the liquid water pump component 10 and controls their operation.
[0036] See Figure 1 , Figure 3 , Figure 4The pot body part 2 includes: a pot body 201, an outer cover 202 arranged outside the pot body 201, and the pot body 201 is fixed to the outer cover 202 by screws; rotating blocks 208 are installed on the left and right sides of the outer cover 202, and a rotating block pressing block 209 is installed on the inner side, and the rotating block pressing block 209 fixes the rotating block 208 to the outer cover 202 by screws; the first reduction motor 203 is fixed on the first mounting platform 101 of the cabinet 1, and the driving shaft 204 on the first reduction motor 203 is connected to the rotating block 208 on one side of the outer cover 202, and the outer cover A driven rotating shaft 205 is provided on the rotating block 208 on the other side of 202; when the first reduction motor 203 is started, it drives the active rotating shaft 204 to rotate, thereby causing the pot body 201 and the outer cover 202 to rotate up and down; the outer cover 202 below the pot body 201 is equipped with a wire reel fixing seat 206 and a cooling fan 207 located below the wire reel fixing seat 206, and the electric heating wire reel is installed on the wire reel fixing seat 206. The electric heating wire reel heats the pot body 201 through the equipment electronic control component 11, and the cooling fan 207 blows air to the electric heating wire reel to keep it at an appropriate temperature.
[0037] See Figure 1 , Figure 5 The material box displacement mechanism 3 includes: a displacement plate 301 supported by the first mounting platform 101, a material box 305 movably arranged on the displacement plate 301 and provided with an iron sheet 408, a motor 303 installed on the first mounting platform 101, a driving gear 302 arranged on the motor 303, a rack 3011 arranged at the bottom of the displacement plate 301 and meshing with the driving gear 302, a roller 304 arranged at the bottom of the displacement plate 301 and cooperating with the guide groove 1011 on the first mounting platform 101, and the material box 305 is placed in a limiting groove on the displacement plate 301 for limiting position (not shown in the figure). When the motor 303 is started, the driving gear 302 rotates, and the displacement plate 301 and the material box 305 are driven to move forward and backward along the first mounting platform 101 through the rack 3011.
[0038] See Figure 1 , Figure 6The electromagnet mechanism 4 includes: a second reduction motor 407 mounted on the first mounting platform 101 through a mounting block 401, an electromagnet mounting block 403 mounted in the mounting block 401 and connected to a rotating shaft 4071 of the second reduction motor 407, the magnet mounting block 403 is rotatably connected to the mounting block 401 through a driven shaft 406, and the driven shaft 406 and the rotating shaft 4071 of the second reduction motor 407 are fixed in the mounting block 401 through a pressing block 405; an electromagnet 402 and a buffer block 404 are fixed to the electromagnet mounting block 403 by screws. When the electromagnet mechanism 4 is started, the electromagnet 402 is energized to generate magnetism, which absorbs the iron sheet 408 stuck on the material box 305 in the material box displacement mechanism 3, and at the same time the second reduction motor 407 is started, driving the magnet mounting block 403 to rotate, pulling the material box 305 out of the displacement plate 301 and rotating it to pour the material into the pot body 201 of the pot body part 2. After pouring the material, the second reduction motor 407 returns to its original position, the electromagnet 402 is powered off, and the material box 305 returns to its original position.
[0039] See Figure 1 , Figure 7 —— Fig. 9 The stirring mechanism 5 includes: a third reduction motor 505 arranged in the fourth mounting platform 104, a stirring block mounting plate 501 driven by the third reduction motor 505 to rotate up and down, a fourth reduction motor 502 arranged on the stirring block mounting plate 501, a stirring block 510 driven to rotate by the fourth reduction motor 502 through a gear mechanism, and a first stirring member 512 and a second stirring member 513 arranged on the stirring block 510 and rotating while the stirring block 510 revolves, and also includes a cover 504 covering the fourth reduction motor 502; the gear mechanism includes a central gear 508 fixed on the stirring block mounting plate 501, a central gear 508 rotatably arranged in the central gear 508 and driven by an umbrella gear pair A driving shaft 509 connected to the fourth reduction motor 502, a stirring block 510 sleeved on the central gear 508 and fixedly connected to the driving shaft 509, a first stirring gear 517 rotatably provided on the stirring block 510 and meshing with the central gear 508, a bridge gear 511 rotatably provided on the stirring block 510 and meshing with the central gear 508, and a second stirring gear 518 rotatably provided on the stirring block 510 and meshing with the bridge gear 511, the first stirring member 512 and the second stirring member 513 are respectively fixedly connected to the first stirring gear 517 and the second stirring gear 518; stirring blades 520 are respectively provided at the lower ends of the first stirring member 512 and the second stirring member 513.
[0040] The further structure of the stirring mechanism 5 is as follows: the third reduction motor 505 is mounted on the side of the fourth mounting platform 104, the output shaft 5051 of the third reduction motor 505 is arranged on the shaft mounting block 5011 at the rear end of the stirring block mounting plate 501, a part of the driven countershaft 506 is mounted in the shaft mounting block 5011, and the other part is mounted in the fourth mounting platform 104, the driven countershaft 506 and the output shaft 5051 are pressed on the shaft mounting block 5011 through the shaft pressure plate 503; the first transmission bevel gear 507 is mounted on the output shaft 5021 of the fourth reduction motor 502, and the first transmission bevel gear 507 is meshed with another second transmission bevel gear 507′ mounted on the driving shaft 509 to form the bevel gear pair; the stirring block 510 is fixed to the mounting plate 5091 at the lower end of the driving shaft 509 with screws; the bridge gear 511 is fixed by The rotating shaft 519 is rotatably arranged in the stirring block 510, and the rotating shaft 519 is fixed to the stirring block 510 through the bottom thread; a plurality of bearings 521 are installed on the upper part of the first stirring member 512, and a small retaining spring 516 and a large retaining spring 515 are respectively installed above and below the bearing 521 to fix the bearing 521 to the first stirring member 512, and the large retaining spring 515 also fixes the bearing 521 to the stirring block 510, and the first stirring member 512 is fixed to the stirring block 510 by two retaining springs, and the first stirring gear 517 is fixed to the upper part of the first stirring member 512 by screws; the fixing structure of the second stirring member 513 and the second stirring gear 518 is the same as that of the first stirring member 512 and the first stirring gear 517; the fixing block 514 is fixed to the mounting plate 501 by screws, and the center gear 508 is fixed to the fixing block 514.
[0041] When the stirring mechanism is started, the third reduction motor 505 rotates the stirring mechanism 5 as a whole toward the pot body 201 with the output shaft 5051. After the rotation is completed, the fourth reduction motor 502 is started, and its output shaft 5021 drives the first transmission bevel gear 507 to rotate, and drives the driving shaft 509 to rotate through the bevel gear pair, and the driving shaft 509 drives the stirring block 510 to rotate. Because the central gear 508 is fixed on the mounting plate 501 by the fixing block 514 and does not move, the stirring block 510 drives the first stirring gear 517 and the bridge gear 511 installed thereon to rotate around the central gear 508, and the bridge gear 511 drives the second stirring gear 518 to rotate. Due to the reversing effect of the bridge gear 511, the second stirring gear 518 and the first stirring gear 517 have the same rotation direction, and the stirring blade 520 connected to them by the first stirring member 512 and the second stirring member 513 keeps rotating in one direction, so that the two stirring blades 520 can avoid mutual interference when rotating.
[0042] See Figure 1 , Fig.10 —— Fig.12The solid feeding mechanism 7 comprises: a fifth reduction motor 702 mounted on the second mounting platform 102, the output shaft 7021 of which is fixed on one side of the flip box 701, and the other side of the flip box 701 is mounted on the second mounting platform 102 through a rotating shaft 704; a small reduction motor 703 is installed in the flip box 701, and a mounting plate 7034 is installed on the small reduction motor 703; an inductor 7032 is fixed on the mounting plate 7034, and a gear 707 is fixed at one end of the output shaft 7033 of the small reduction motor 703 by a screw 7071, and a baffle 7031 and an inductor 703 that rotate with the output shaft 7033 are fixed at the other end of the output shaft 7033 by a screw 7072. 2 corresponding to; a plurality of feeding blocks 709 are installed on the outer side of the flip box 701 through long screws 706, each feeding block 709 is provided with a feeding channel 7092 which passes through from top to bottom, a feeding port 7091 which communicates with the feeding channel 7092, and a rotating block 708 which is arranged horizontally in the feeding channel 7092 and is fixed on the gear 707 with screws 7082 and meshes with the gear 707, and grooves 7081 corresponding to the feeding channel 7092 are evenly distributed on the surface of the rotating block 708, each groove 7081 is counted as 1 grid, and a solid material bottle 705 is provided below the feeding block 709 corresponding to the feeding channel 7092, and the groove 7081 can be used to place the falling material of the solid material bottle 705 after flipping. When the solid feeding mechanism 7 is started, the output shaft 7021 of the fifth reduction motor 702 rotates, driving the flip box 701 to rotate to the specified position, so that the feeding port 7091 of the feeding block 709 and the solid material bottle 705 face downward, and the solid material in the bottle falls into the groove 7081 on the rotating block 708. At this time, the small reduction motor 703 rotates, and its output shaft 7033 drives the rotating block 708 to rotate, and the secondary shaft 7034 drives the baffle 7031 to rotate. Each time the baffle 7031 passes the sensor 7032, it is equivalent to the groove 7081 on the rotating block 708 rotating one grid, so that the solid material of the solid material bottle 705 falling into one groove 7081 falls into the feeding channel 7092, and then is fed out through the feeding port 7091. After rotating a certain number of grids according to the feeding demand, the motor 703 stops. The fifth reduction motor 702 restarts to rotate the flip box 701 back to its original position.
[0043] See Figure 1 , Fig.13 —— Fig.14The liquid material box mechanism 8 includes: a support body composed of a front baffle 801, a bottom plate 805, a rear plate 803 arranged between the front baffle 801 and the bottom plate 805, and a plurality of transparent material boxes 810 placed on the rear plate 803. The material boxes 810 are used to hold liquid materials and can be divided into two types of material boxes: ordinary material boxes and oil-filled material boxes. They have different sizes and the same structure; a partition plate 804 is also provided between the rear plate 803 between the front baffle 801 and the bottom plate 805 to limit the position of the material box 810; a handle 808 is fixed to the upper part of the front baffle 801 by screws, and an observation plate 802 is installed in the hollow space below the front baffle 801, through which the material box 810 can be observed Whether the liquid material inside is almost used up; the left and right sides of the lower back of the front baffle 801 are equipped with bearing seats 806 through screws, and the bearing seats 806 are sleeved with plug screws 809. The optical axis part of the plug screw 809 is in the bearing seats 806, and the threaded part of the plug screw 809 is fixed on the cabinet 1. The support body can rotate up and down with the plug screw 809 as a fulcrum through the bearing seat 806. A pipe clamp 807 is installed under the bottom plate 805 to fix the discharge pipe of the material box 810; the top of the material box 810 is provided with a feeding port with a sealing cover 811, and the material box 810 is provided with a pipe joint 812 connected to the suction pipe in the material box 810, and the discharge pipe is connected to the pipe joint 812. When liquid material needs to be added, the sealing cover 811 can be opened, and then the liquid material is put into the material box 810 from the feeding port.
[0044] See Figure 1 , Fig.15 The lard module 9 comprises: a cabinet 901 arranged on the third mounting platform 103, the cabinet 901 is provided with a cabinet door 902, a heating plate 905 is installed inside the cabinet 901, a lard box 904 provided with a material extraction pipe 906 is installed on the heating plate 905, and a peristaltic pump 903 connected with the material extraction pipe 906 is also installed on the cabinet 901. When lard is needed, the heating plate 905 is started to dissolve the lard in the lard box 904 into liquid, and then the lard is extracted by the peristaltic pump 903 and sent to the next process through the material extraction pipe 906.
[0045] See Figure 1 , Fig.16 The liquid spraying mechanism 6 includes a spraying mounting block 602 mounted on the fourth mounting platform 104, and a plurality of discharge pipes 601 fixed to the spraying mounting block 602 by means of a top screw. A one-way valve 603 is provided at the end of each discharge pipe 601 to prevent the liquid in the discharge pipe 601 from flowing back.
[0046] See Figure 1 , Fig.17The spraying system is composed of a liquid spraying mechanism 6, a liquid material box mechanism 8, a lard module 9, and a liquid water pump assembly 10; the liquid material in the liquid material box mechanism 8 is pumped out by the water pump of the liquid water pump assembly 10 and then sent to the one-way valve 603 of the liquid spraying mechanism 6 for spraying through the discharge pipe 601. The lard module 9 is sent to the other one-way valve 603 of the liquid spraying mechanism 6 by the peristaltic pump 903 and sprayed through the discharge pipe 601.
[0047] When cooking, the utility model first turns the pot body 201 to the cooking position through the first reduction motor 203 of the pot body part 2. Then the third reduction motor 505 of the stirring mechanism 5 turns the stirring block mounting plate 501 into the pot body 201. At this time, the electric heating coil on the coil fixing seat 206 heats the pot body 201 to a predetermined temperature, and the fourth reduction motor 502 of the stirring mechanism 5 rotates, driving the first stirring member 512 and the second stirring member 513 to rotate. Next, the liquid water pump assembly 10 is started, and the oil in the liquid material box mechanism 8 is extracted and sprayed into the pot body 201 through the liquid spraying mechanism 6. At the same time, the material box displacement mechanism 3 moves the material box 305 to a predetermined position, and then sucks the material box 305 through the electromagnet mechanism 4, and pours the material in the material box 305 into the pot body 201 through the second reduction motor 407. Then the solid feeding mechanism 7 adds solid material into the pot body 201 by turning, and at the same time, the liquid material box mechanism 8 adds other liquid materials into the pot body 201. The fourth reduction motor 502 rotates for different times according to different dishes. When the set time is reached, the third reduction motor 505 of the stirring mechanism 5 takes the stirring block mounting plate 501, the first stirring member 512 and the second stirring member 513 out of the pot body 201, and then the first reduction motor 203 turns the pot body 201 to the pouring position. After the employee takes the dishes away, the cooking action is complete. The cabinet door 105 can be opened when adding liquid materials and lard.
[0048] In the present invention, a solid feeding mechanism 7 is provided so that the material is turned over each time solid material is added, which can avoid the material solidification and bridging, and prevent the situation where the material cannot be sprayed out. A liquid material box mechanism 8 is provided so that when employees add liquid materials, they do not need to take out the material box 810, but only need to turn over the support body to add liquid materials from the feeding port of the material box 810. The stirring mechanism 5 can make the first stirring member 512 and the second stirring member 513 rotate while revolving through the gear mechanism, so that the stirring is more complete.
Claims
1. A multifunctional cooking machine, characterized by include: A cabinet, a pot body part rotatable up and down on the cabinet, a material box displacement mechanism arranged on the cabinet and located above the pot body part, a stirring mechanism, a liquid spraying mechanism, a solid feeding mechanism and an electromagnet mechanism, a liquid material box mechanism arranged in the cabinet, a lard module, a liquid water pump assembly and an equipment electronic control assembly; the solid feeding mechanism can be rotatable up and down on the cabinet, the material box displacement mechanism includes a plurality of material boxes movably arranged on the cabinet, the electromagnet mechanism can be rotatable up and down on the cabinet and cooperates with the material box displacement mechanism to electromagnetically adsorb the material box to the pot body part Pour; the stirring mechanism can be rotatably arranged on the cabinet to stir the food materials in the pot body part, the liquid material box mechanism can be rotatably arranged in the cabinet below the pot body part, the lard module is arranged below the liquid material box mechanism, the liquid spraying mechanism and the liquid material box mechanism, the lard module, and the liquid water pump assembly form a spraying system, and the equipment electronic control assembly is electrically connected to the pot body part, the material box displacement mechanism, the electromagnet mechanism, the stirring mechanism, the liquid spraying mechanism, the solid feeding mechanism, the liquid material box mechanism, the lard module and the liquid water pump assembly to control their operation.
2. The multifunctional cooking machine according to claim 1, characterized in that The pot body part includes: a pot body, an outer cover fixed outside the pot body, one side of the outer cover is connected to the active rotating shaft on the first reduction motor, and the pot body is driven by the first reduction motor to realize the up and down rotation of the pot body; the outer cover below the pot body is equipped with a wire drum fixing seat and a cooling fan located below the wire drum fixing seat, and the electric heating wire drum is installed on the wire drum fixing seat.
3. The multifunctional cooking machine according to claim 1 is characterized in that The material box displacement mechanism includes: a displacement plate supported by a cabinet, a material box movably arranged on the displacement plate and provided with an iron sheet, a motor installed on the cabinet, a driving gear installed on the motor, a rack arranged at the bottom of the displacement plate and meshing with the driving gear, a roller arranged at the bottom of the displacement plate and cooperating with a guide groove on the cabinet, and the material box is placed in a limiting groove on the displacement plate for limiting position; the electromagnet mechanism includes: a second reduction motor installed on the cabinet through a mounting block, an electromagnet mounting block rotatably installed in the mounting block and connected to the rotating shaft of the second reduction motor, and an electromagnet and a buffer block cooperating with the iron sheet on the material box are fixed on the electromagnet mounting block.
4. The multifunctional cooking machine according to claim 1, characterized in that The stirring mechanism includes: a third reduction motor arranged in the cabinet, a stirring block mounting plate driven by the third reduction motor to rotate up and down, a fourth reduction motor arranged on the stirring block mounting plate, a stirring block driven to rotate by the fourth reduction motor through a gear mechanism, and a first stirring member and a second stirring member arranged on the stirring block and rotating while the stirring block revolves; the gear mechanism includes a central gear fixed on the stirring block mounting plate, a driving shaft rotatably arranged in the central gear and connected to the fourth reduction motor through an umbrella gear pair, a stirring block sleeved on the central gear and fixedly connected to the driving shaft, a first stirring gear rotatably arranged on the stirring block and meshed with the central gear, a bridge gear rotatably arranged on the stirring block and meshed with the central gear, and a second stirring gear rotatably arranged on the stirring block and meshed with the bridge gear, the first stirring member and the second stirring member are fixedly connected to the first stirring gear and the second stirring gear respectively; stirring blades are respectively provided at the lower ends of the first stirring member and the second stirring member.
5. The multifunctional cooking machine according to claim 4 is characterized in that The output shaft of the third reduction motor is arranged at the rear end of the stirring block mounting plate, and the output shaft of the fourth reduction motor is installed with a first transmission bevel gear, which is meshed with a second transmission bevel gear installed on the driving shaft to form the bevel gear pair; the stirring block is fixed on the mounting plate at the lower end of the driving shaft, and the bridge gear is rotatably arranged in the stirring block through a rotating shaft; the first stirring member and the second stirring member are respectively arranged on the stirring block through bearings; the central gear is fixed to the stirring block mounting plate through a fixing block.
6. The multifunctional cooking machine according to claim 1, characterized in that The solid feeding mechanism includes: a fifth reduction motor arranged on the cabinet, a flip box driven by the fifth reduction motor to rotate up and down, a small reduction motor arranged in the flip box, and an inductor fixed on the small reduction motor, a gear is fixed to one end of the output shaft of the small reduction motor, and a baffle corresponding to the inductor that rotates with the output shaft is fixed to the other end of the output shaft of the small reduction motor; a plurality of feeding blocks are installed on the outside of the flip box, each of which is provided with a feeding channel that passes through from top to bottom, a discharge port connected to the feeding channel, and a rotating block that is transversely arranged in the feeding channel and fixed on the gear and meshes with the gear, the surface of the rotating block is evenly distributed with grooves corresponding to the feeding channel, and a solid material bottle is provided below the feeding block corresponding to the feeding channel.
7. The multifunctional cooking machine according to claim 1 is characterized in that The liquid material box mechanism includes: a support body composed of a front baffle, a bottom plate, a rear plate arranged between the front baffle and the bottom plate, and a plurality of transparent material boxes placed on the rear plate; a handle is fixed to the upper part of the front baffle, and an observation plate for observing the material box is installed in the hollow part below the front baffle; the support body is rotatably arranged on the cabinet body through axes arranged on the left and right sides behind the lower part of the front baffle, and a pipe clamp is installed under the bottom plate to fix the discharge pipe of the material box; a feeding port with a sealing cover is provided on the top of the material box, and a pipe joint connected to the straw in the material box is provided on the material box, and the discharge pipe is connected to the pipe joint.
8. The multifunctional cooking machine according to claim 1 is characterized in that The lard module comprises: a cabinet arranged in the cabinet body, a heating plate installed inside the cabinet, a lard box with a material extraction pipe installed on the heating plate, and a peristaltic pump connected with the material extraction pipe installed on the cabinet.
9. The multifunctional cooking machine according to claim 8, characterized in that The liquid spraying mechanism comprises a spraying installation block arranged on the cabinet body and a plurality of discharge pipes fixed on the spraying installation block, and a one-way valve is arranged at the end of each discharge pipe.
10. The multifunctional cooking machine according to claim 9, characterized in that The liquid material of the liquid material box mechanism is pumped out by the water pump of the liquid water pump assembly and then sent to the one-way valve of the liquid spraying mechanism for spraying through the discharge pipe. The lard module is sent by the peristaltic pump to the other one-way valve of the liquid spraying mechanism for spraying through the discharge pipe.
Citation Information
Patent Citations
A multifunctional cooking machine
CN220988441U