Intelligent nutrition meal making device based on electronic timer
The intelligent nutritional meal preparation device based on an electronic timer enables automatic quantitative addition and uniform mixing of ingredients, solving the problems of low efficiency and unstable quality in nutritional meal preparation, and improving the efficiency and quality of nutritional meal preparation.
Patent Information
- Application Number
- CN202310850075.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-12
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2043-07-12
AI Technical Summary
Current nutritional meal preparation methods are inefficient, with inaccurate ingredient additions, resulting in food sticking together and reduced quality. Furthermore, manual operation makes it difficult to ensure balanced nutrition.
The intelligent nutritional meal preparation device, based on an electronic timer, utilizes a pouring component, a stirring component, and a metering component to automatically add and evenly mix ingredients, preventing sticking and ensuring the optimal cooking time for all types of ingredients.
It improved the efficiency of preparing nutritious meals, ensured accurate ingredient ratios, prevented ingredients from sticking together and burning, and enhanced the quality and taste of the meals.
Smart Images

Figure CN116807225B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of nutritional meal making, and particularly relates to an intelligent nutritional meal making device based on an electronic timer. BACKGROUND
[0002] People's quality of life is getting higher and higher, and people's demand for health is getting higher and higher, but many people are busy with work, in order to have a good life, day and night overtime, three meals have no rules, not to mention balanced nutrition, but such gradual erosion of health, only the body can guarantee the health of the body by balancing the nutrition every day. Therefore, people will supplement nutrition through nutritional meals to ensure their health.
[0003] Now the nutritional meal making is generally through the staff to manually pour the food materials for making nutritional meals into the cooking pot, then the staff manually times, then the subsequent materials to be added are sequentially added into the cooking pot, and then a period of time is waited until the making is completed and then taken out. However, manual timing and adding materials will make the efficiency of making nutritional meals lower, and the inactivity during the waiting process will cause the food materials to be adhered to the inner wall of the cooking pot, thereby causing the food materials to be burned. In addition, manual feeding is not convenient for accurately controlling the addition ratio of various raw materials, thereby causing the quality of the nutritional meals to be low. SUMMARY
[0004] In order to overcome the existing defects, the present application provides an intelligent nutritional meal making device based on an electronic timer, which can sequentially and quantitatively add different raw materials, has high efficiency of making nutritional meals, can stir and scrape the inner wall of the cooking pot, and has better quality of the made nutritional meals.
[0005] The technical scheme of the present application is: an intelligent nutritional meal making device based on an electronic timer, comprising a heating pot, a cooking pot, a feeding sealing cover, an electronic timer, a lifting frame, a driving motor, a pouring assembly and a stirring assembly, the heating pot is provided with the cooking pot, the cooking pot is provided with the feeding sealing cover, the feeding sealing cover is provided with a feeding opening, the feeding sealing cover is fixedly connected with the electronic timer, the feeding sealing cover is fixedly connected with the lifting frame, the lifting frame is fixedly connected with the driving motor, the pouring assembly is arranged on the feeding sealing cover and connected with the driving motor, and the stirring assembly is arranged on the feeding sealing cover.
[0006] Further, the pouring assembly comprises a discharging disc, a transmission gear and a gear ring, the discharging disc is rotatably connected to the feeding sealing cover, the discharging disc is provided with four discharging openings, the output shaft of the driving motor is fixedly connected with the transmission gear, the discharging disc is fixedly connected with the gear ring, and the gear ring is engaged with the transmission gear.
[0007] Further, the stirring assembly comprises a rotating rod, a driven gear, a fixed bevel gear, a stirring frame, a bevel gear and a protective frame, the rotating rod is rotatably connected to the feeding seal cover, the rotating rod penetrates the feeding seal cover, the upper part of the rotating rod is fixedly connected with the driven gear, the driven gear is engaged with the transmission gear, the rotating rod is fixedly connected with the fixed bevel gear, the rotating rod is slidably connected with the stirring frame, the stirring frame is fixedly connected with the bevel gear, the bevel gear is engaged with the fixed bevel gear, the rotating rod is fixedly connected with the protective frame, and the protective frame is rotatably connected with the rotating rod.
[0008] Further, the quantitative assembly is arranged on the discharging disc, and comprises a discharging frame, a storage cylinder, a baffle, an extension spring and a squeezing ring, four discharging frames are fixedly connected to the four discharging ports of the discharging disc, four discharge grooves are formed in each of the discharging frames, a storage cylinder is fixedly connected to each of the four discharging frames, a baffle is slidably connected to each of the four discharging frames, a discharging groove is formed in each of the baffles, two extension springs are arranged between the baffle and the discharging frame, the two extension springs are symmetrically arranged, the lifting frame is fixedly connected with the squeezing ring, and two inclined surfaces are arranged on the squeezing ring.
[0009] Further, the scraping device is arranged on the protective frame and connected with the feeding seal cover, and comprises a supporting frame, a scraping frame, a swing rod, a limiting ring frame, a return spring and a squeezing frame, the supporting frame is fixedly connected to the protective frame, the scraping frame is slidably connected to the rotating rod, a limiting groove is formed in the scraping frame, the swing rod is rotatably connected to the supporting frame, one end of the swing rod is located in the limiting groove of the scraping frame, the limiting ring frame is slidably connected to the feeding seal cover, a limiting ring groove is formed in the limiting ring frame, the other end of the swing rod is located in the limiting ring groove of the limiting ring frame, the return spring is connected between the feeding seal cover and the limiting ring frame, and the squeezing frame is fixedly connected to the discharging disc.
[0010] Further, the screw block and the adjusting screw are arranged, the screw block is fixedly connected to one side of each of the discharging frames away from the lifting frame, and the adjusting screw is threadedly connected to each of the screw blocks.
[0011] Further, the opening and closing cover is arranged, and the opening and closing cover is rotatably connected to each of the discharging frames.
[0012] Further, the stirring frame comprises a long rod and a stirring plate fixedly connected to the long rod.
[0013] Further, the bevel gear is located in the protective frame.
[0014] Further, each of the baffles is composed of a long plate and a top rod fixedly connected to the top of the long plate.
[0015] The beneficial effects are: 1. When making nutritional meals, the staff pours the food materials for making nutritional meals into the cooking pot, then the staff puts the subsequent food materials needed to be added into the four discharge ports on the discharge tray and starts the heating pot and the electronic timer, the heating pot heats the food materials in the cooking pot, when the electronic timer starts for a certain time, the electronic timer starts the driving motor, the food materials in the discharge ports on the discharge tray fall into the cooking pot in turn, at the same time, the stirring frame rotates around the rotating rod and rotates to stir the food materials in the cooking pot evenly, in this way, the four discharge ports on the discharge tray will all fall into the cooking pot, the continuous heating of the heating pot on the cooking pot will cook all the food materials, so that different food materials are added in turn, the cooking time of different food materials is different, and all food materials can be cooked to the best degree, so that the efficiency of making nutritional meals is higher and the taste is better.
[0016] 2. The rotation of the discharge tray drives the storage cylinder and the baffle to rotate, when one of the baffles moves to contact one of the inclined surfaces on the extrusion ring, the baffle blocks the storage cylinder, so that the food materials in one of the discharge ports fall into the cooking pot, when one of the baffles moves to contact another inclined surface on the extrusion ring, the material in the storage cylinder will re-enter one of the discharge ports on the discharge tray through the feeding groove and the falling groove, then the discharge tray drives the storage cylinder and the baffle to continue to rotate, the next baffle will block the storage cylinder, and the rotation of the discharge tray will make the food materials in the next discharge port on the discharge tray fall into the cooking pot, in this way, the food materials for making nutritional meals can be automatically and quantitatively poured into the cooking pot, so that the proportioning of various raw materials for making nutritional meals is more accurate, and the quality of the nutritional meals made is better.
[0017] 3. The rotation of the discharge tray drives the extrusion frame to rotate, when the extrusion frame rotates to contact the limiting ring frame, the extrusion frame presses the limiting ring frame, the limiting ring frame moves downward, the return spring is compressed, the downward movement of the limiting ring frame drives the swing rod to move downward, the downward movement of the swing rod presses the scraping frame, the scraping frame moves downward and is attached to the inner wall of the cooking pot, at the same time, the rotation of the rotating rod drives the scraping frame to rotate, the rotation of the scraping frame scrapes the food materials adsorbed on the inner wall of the cooking pot, which can prevent the food materials adsorbed on the inner wall of the cooking pot from being burned due to high temperature, so that the quality of the nutritional meals made is further better. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a schematic diagram of the three-dimensional structure of the present application.
[0019] Figure 2 It is a partial schematic diagram of the three-dimensional structure of the scraping device of the present application.
[0020] Figure 3 This is a cross-sectional three-dimensional structural diagram of the stirring component of the present invention.
[0021] Figure 4 This is a three-dimensional structural diagram of the pouring component of the present invention.
[0022] Figure 5 This is a partial cross-sectional three-dimensional structural diagram of the quantitative component of the present invention.
[0023] Figure 6 This is a partial cross-sectional three-dimensional structural diagram of the quantitative component of the present invention.
[0024] Figure 7 This is a cross-sectional perspective view of the scraping device of the present invention.
[0025] Component names and serial numbers in the diagram: 1_Heating pot, 2_Cooking pot, 3_Feed sealing cover, 31_Electronic timer, 4_Lifting frame, 5_Drive motor, 61_Discharge plate, 62_Transmission gear, 63_Gear ring, 71_Rotating rod, 72_Driven gear, 73_Fixed bevel gear frame, 74_Agitator frame, 75_Bevel gear, 76_Protective frame, 81_Discharge frame, 82_Storage cylinder, 83_Baffle, 84_Telescopic spring, 85_Extrusion ring, 91_Support frame, 92_Scraper frame, 93_Swing rod, 94_Limit ring frame, 95_Reset spring, 96_Extrusion frame, 101_Threaded block, 102_Adjusting screw, 11_Opening and closing cover. Detailed Implementation
[0026] All standard parts used in this invention can be purchased from the market, and irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, welding, and bonding that are mature in the prior art, and will not be described in detail here.
[0027] Example 1: A smart nutritional meal preparation device based on an electronic timer, such as... Figures 1-7 As shown, the device includes a heating pot 1, a cooking pot 2, a feeding sealing cover 3, an electronic timer 31, a lifting frame 4, a drive motor 5, a pouring component, and a stirring component. The cooking pot 2 is placed on the heating pot 1, and the feeding sealing cover 3 covers the cooking pot 2. The feeding sealing cover 3 has a discharge port. The electronic timer 31 is bolted to the feeding sealing cover 3. The lifting frame 4 is bolted to the feeding sealing cover 3, and the drive motor 5 is bolted to the lifting frame 4. The pouring component is located on the feeding sealing cover 3 and is connected to the drive motor 5. The stirring component is located on the feeding sealing cover 3.
[0028] The pouring assembly comprises a discharge disc 61, a transmission gear 62 and a gear ring 63, the discharge disc 61 is rotatably connected to the feeding sealing cover 3, four discharge ports are formed in the discharge disc 61, the transmission gear 62 is connected to the output shaft of the driving motor 5 through a key, the gear ring 63 is welded to the discharge disc 61, and the gear ring 63 is engaged with the transmission gear 62.
[0029] The stirring assembly comprises a rotating rod 71, a driven gear 72, a fixed bevel gear rack 73, a stirring frame 74, a bevel gear 75 and a protection frame 76, the rotating rod 71 is rotatably connected to the feeding sealing cover 3, the rotating rod 71 penetrates through the feeding sealing cover 3, the driven gear 72 is connected to the upper portion of the rotating rod 71 through a key, the driven gear 72 is engaged with the transmission gear 62, the fixed bevel gear rack 73 is connected to the rotating rod 71 through bolts, the stirring frame 74 is slidably connected to the rotating rod 71, the stirring frame 74 is composed of a long rod and a stirring plate fixed to the long rod, the bevel gear 75 is connected to the stirring frame 74 through a key, the bevel gear 75 is engaged with the fixed bevel gear rack 73, the protection frame 76 is connected to the rotating rod 71 through bolts, the bevel gear 75 is located in the protection frame 76, and the protection frame 76 is rotatably connected to the rotating rod 71.
[0030] At the beginning, the feeding sealing cover 3 blocks the four discharge ports on the discharge disc 61, the feeding sealing cover 3 covers the cooking pot 2, when making the nutritious meal, the staff pulls up the lifting frame 4, the lifting frame 4 moves upwards, which drives the feeding sealing cover 3 to move upwards, the feeding sealing cover 3 no longer covers the cooking pot 2, then the staff pours the food materials for making the nutritious meal into the cooking pot 2, then the staff moves the lifting frame 4 downwards, the lifting frame 4 moves downwards, which drives the feeding sealing cover 3 to move downwards, the feeding sealing cover 3 moves downwards, which re-covers the cooking pot 2, then the staff puts the subsequent food materials to be added into the four discharge ports on the discharge disc 61 and starts the heating pot 1 and the electronic timer 31, the heating pot 1 heats the food materials in the cooking pot 2, when the electronic timer 31 starts for a certain time, the electronic timer 31 starts the driving motor 5, the driving motor 5 drives the transmission gear 62 to rotate one- half a circle through the output shaft, the transmission gear 62 rotates one- half a circle, which drives the gear ring 63 to rotate one- fourth of a circle, at the same time, the gear ring 63 rotates one- fourth of a circle, which drives the driven gear 72 to rotate one circle, the gear ring 63 rotates one- fourth of a circle, which drives the discharge disc 61 to rotate, the discharge disc 61 rotates, which makes one of the discharge ports on the discharge disc 61 coincide with the discharging port on the feeding sealing cover 3, the food materials in the discharge port fall into the cooking pot 2, at the same time, the driven gear 72 rotates, which drives the rotating rod 71 to rotate, the rotating rod 71 rotates, which drives the fixed bevel gear frame 73 to rotate, the fixed bevel gear frame 73 rotates, which drives the bevel gear 75 to rotate, the bevel gear 75 rotates, which drives the stirring frame 74 to rotate, the stirring frame 74 rotates around the rotating rod 71 and rotates by itself to stir the food materials in the cooking pot 2 evenly, then the heating pot 1 continues to heat the cooking pot 2, when the electronic timer 31 counts to a certain time, the electronic timer 31 starts the driving motor 5 again, so that the next discharge port on the discharge disc 61 coincides with the discharging port on the feeding sealing cover 3, the food materials in the next discharge port fall into the cooking pot 2, at the same time, the stirring frame 74 rotates, which stirs the food materials in the cooking pot 2 evenly again, then the heating pot 1 continues to heat, in this way, the four discharge ports on the discharge disc 61 fall into the cooking pot 2, the heating pot 1 continues to heat the cooking pot 2, which cooks all the food materials, in this way, the different food materials are added in turn, which makes the cooking time of different food materials different, so that all the food materials can be cooked to the best degree, so that the efficiency of making the nutritious meal is higher and the taste is better, after making the nutritious meal, the staff turns off the heating pot 1 and the electronic timer 31, then pulls up the lifting frame 4, the lifting frame 4 moves upwards, which drives the feeding sealing cover 3 to move upwards, then the staff takes out the cooked nutritious meal in the cooking pot 2.
[0031] Example 2: on the basis of example 1, as Figure 5 and Figure 6As shown, the quantitative assembly is arranged on the discharge tray 61, and comprises discharge frames 81, storage cylinders 82, baffles 83, extension springs 84 and extrusion rings 85. Four discharge frames 81 are bolted to the four discharge ports of the discharge tray 61, each of the discharge frames 81 is provided with four discharge slots, four storage cylinders 82 are bolted to the four discharge frames 81, four baffles 83 are slidingly connected to the four discharge frames 81, each of the baffles 83 is composed of a long plate and a top rod fixed to the top of the long plate, each of the baffles 83 is provided with a discharging slot, two extension springs 84 are connected between the baffles 83 and the discharge frames 81 through hooks, the two extension springs 84 are symmetrically arranged, and the extrusion ring 85 is bolted to the lifting frame 4, and the extrusion ring 85 is provided with two inclined surfaces.
[0032] At the beginning, the material discharging groove on the baffle 83 coincides with the material falling groove on the discharging frame 81, the material in the material storage cylinder 82 enters the discharge disc 61 through the material discharging groove and the material falling groove, the rotation of the discharge disc 61 drives the rotation of the discharging frame 81, the rotation of the discharging frame 81 drives the rotation of the material storage cylinder 82 and the baffle 83, when one of the baffles 83 moves to contact one of the inclined surfaces on the extrusion ring 85, one of the inclined surfaces on the extrusion ring 85 extrudes one of the baffles 83 to move away from the lifting frame 4, the two extension springs 84 on one of the baffles 83 are compressed, so that the material discharging groove on one of the baffles 83 is misaligned with the material falling groove on the discharging frame 81, so that one of the baffles 83 blocks the material storage cylinder 82, the material in the material storage cylinder 82 no longer enters one of the discharge ports of the discharge disc 61 through the material discharging groove and the material falling groove, one of the discharge ports on the discharge disc 61 coincides with the material falling port on the feeding sealing cover 3 in the process of rotation, the food material in one of the discharge ports falls into the cooking pot 2, when one of the baffles 83 moves to contact the other inclined surface on the extrusion ring 85, one of the baffles 83 moves along the other inclined surface, the two extension springs 84 on one of the baffles 83 reset and drive one of the baffles 83 to reset, the material in the material storage cylinder 82 reenters one of the discharge ports on the discharge disc 61 through the material discharging groove and the material falling groove, then the discharge disc 61 drives the discharging frame 81 to continue to rotate, the rotation of the discharging frame 81 drives the rotation of the material storage cylinder 82 and the baffle 83, when the next baffle 83 moves to contact one of the inclined surfaces on the extrusion ring 85, one of the inclined surfaces on the extrusion ring 85 extrudes the next baffle 83 to move away from the lifting frame 4, the two extension springs 84 on the next baffle 83 are compressed, so that the material discharging groove on the next baffle 83 is misaligned with the material falling groove on the discharging frame 81, so that the next baffle 83 blocks the material storage cylinder 82, the material in the material storage cylinder 82 no longer enters the next discharge port of the discharge disc 61 through the material discharging groove and the material falling groove, the next discharge port on the discharge disc 61 coincides with the material falling port on the feeding sealing cover 3 in the process of rotation, the food material in the next discharge port falls into the cooking pot 2, when the next baffle 83 moves to contact the other inclined surface on the extrusion ring 85, the next baffle 83 moves along the other inclined surface, the two extension springs 84 on the next baffle 83 reset and drive the next baffle 83 to reset, the material in the material storage cylinder 82 reenters the next discharge port on the discharge disc 61 through the material discharging groove and the material falling groove, and so on, so as to automatically and quantitatively pour the food materials for making nutrition meals into the cooking pot 2, so that the ratio of various raw materials for making nutrition meals is more accurate, and the quality of the made nutrition meals is better.
[0033] Example 3: on the basis of example 2, as Figure 2 and Figure 7As shown, it also includes a scraping device, which is mounted on the protective frame 76 and connected to the feed sealing cover 3. The scraping device includes a support frame 91, a scraping frame 92, a swing rod 93, a limiting ring frame 94, a return spring 95, and an extrusion frame 96. The support frame 91 is bolted to the protective frame 76. The scraping frame 92 is slidably connected to the swing rod 71. The scraping frame 92 has a limiting groove. The swing rod 93 is rotatably connected to the support frame 91. One end of the swing rod 93 is located in the limiting groove of the scraping frame 92. The limiting ring frame 94 is slidably connected to the feed sealing cover 3. The limiting ring frame 94 has a limiting ring groove. The other end of the swing rod 93 is located in the limiting ring groove on the limiting ring frame 94. The return spring 95 is connected to the feed sealing cover 3 and the limiting ring frame 94 by a hook. The extrusion frame 96 is bolted to the discharge plate 61.
[0034] The rotation of the discharge plate 61 will drive the extrusion frame 96 to rotate. When the extrusion frame 96 rotates to contact the limiting ring frame 94, the extrusion frame 96 will press against the limiting ring frame 94, causing the limiting ring frame 94 to move downward. The return spring 95 is compressed. The downward movement of the limiting ring frame 94 will drive the swing rod 93 to move downward. The downward movement of the swing rod 93 will press against the scraper 92, causing the scraper 92 to move downward and fit against the inner wall of the cooking pot 2. At the same time, the rotation of the rotating rod 71 will drive the scraper 92 to rotate. The rotation of the scraper 92 will scrape off the food adhering to the inner wall of the cooking pot 2, which can prevent the food adhering to the inner wall of the cooking pot 2 from being too hot and burning, thereby further improving the quality of the nutritious meal. When the extrusion frame 96 rotates to disengage from the limiting ring frame 94, the return spring 95 will return to its original position, thereby causing the limiting ring frame 94 to return to its original position.
[0035] Example 4: Based on Example 3, such as Figure 6 As shown, it also includes a threaded block 101 and an adjusting screw 102. Each of the discharge frames 81 has a threaded block 101 bolted to the side away from the lifting frame 4, and each of the threaded blocks 101 has an adjusting screw 102 threaded to it.
[0036] The worker rotates the adjusting screw 102, the adjusting screw 102 can be moved upward to drive the threaded block 101 to move upward, the threaded block 101 moves upward to drive the discharging frame 81 to move upward, the discharging frame 81 moves upward to drive the storage cylinder 82 and the baffle 83 to move upward, so that the quantitative food material is increased, when the quantitative food material needs to be reduced, the worker reversely rotates the adjusting screw 102, the adjusting screw 102 is driven to move downward to drive the threaded block 101 to move downward, the threaded block 101 moves downward to drive the discharging frame 81 to move downward, the discharging frame 81 moves downward to drive the storage cylinder 82 and the baffle 83 to move downward, so that the quantitative food material can be adjusted according to the requirement, so that the ratio of different raw materials for making different nutritional meals can be met, and the practicability is relatively high.
[0037] Example 5: on the basis of example 4, as shown in Figure 5 Each of the discharging frames 81 is rotatably connected with the opening and closing cover 11.
[0038] The opening and closing cover 11 can prevent dirt from falling into the storage cylinder 82, then falling into the discharging disc 61 and finally falling into the nutritional meal, so that the nutritional meal can be kept clean.
[0039] The basic principle and main features of the present application and the advantages of the present application are shown and described. It should be understood by those skilled in the art that the present application is not limited by the above examples, the above examples and the description in the specification are only to illustrate the principle of the present application, various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A smart nutritional meal preparation device based on an electronic timer, characterized in that: The device includes a heating pot (1), a cooking pot (2), a feeding sealing cover (3), an electronic timer (31), a lifting frame (4), a drive motor (5), a pouring component, and a stirring component. The heating pot (1) is placed on the cooking pot (2), and the cooking pot (2) is covered with a feeding sealing cover (3). The feeding sealing cover (3) has a discharge port. The feeding sealing cover (3) is fixedly connected to the electronic timer (31). The feeding sealing cover (3) is fixedly connected to the lifting frame (4), and the lifting frame (4) is fixedly connected to the drive motor (5). The pouring component is set on the feeding sealing cover (3) and is connected to the drive motor (5). The stirring component is set on the feeding sealing cover (3). The pouring assembly includes a discharge plate (61), a transmission gear (62), and a gear ring (63). The discharge plate (61) is rotatably connected to the feed sealing cover (3). The discharge plate (61) has four discharge ports. The transmission gear (62) is fixedly connected to the output shaft of the drive motor (5). The gear ring (63) is fixedly connected to the discharge plate (61). The gear ring (63) meshes with the transmission gear (62). The stirring assembly includes a rotating rod (71), a driven gear (72), a fixed bevel gear frame (73), a stirring frame (74), a bevel gear (75), and a protective frame (76). The rotating rod (71) is rotatably connected to the feed sealing cover (3). The rotating rod (71) passes through the feed sealing cover (3). The driven gear (72) is fixedly connected to the upper part of the rotating rod (71). The driven gear (72) meshes with the transmission gear (62). The fixed bevel gear frame (73) is fixedly connected to the rotating rod (71). The stirring frame (74) is slidably connected to the rotating rod (71). The bevel gear (75) is fixedly connected to the stirring frame (74). The bevel gear (75) meshes with the fixed bevel gear frame (73). The protective frame (76) is fixedly connected to the rotating rod (71). The protective frame (76) is rotatably connected to the rotating rod (71). It also includes a metering component, which is set on the discharge plate (61). The metering component includes a discharge frame (81), a storage cylinder (82), a baffle (83), a telescopic spring (84), and a squeezing ring (85). The discharge frame (81) is fixedly connected to the four discharge ports on the discharge plate (61). Each discharge frame (81) has four material dropping grooves. The storage cylinder (82) is fixedly connected to each of the four discharge frames (81). The baffle (83) is slidably connected to each of the four discharge frames (81). Each baffle (83) has a material dropping groove. Two telescopic springs (84) are connected between the baffle (83) and the discharge frame (81). The two telescopic springs (84) are symmetrically arranged. The squeezing ring (85) is fixedly connected to the lifting frame (4). The squeezing ring (85) has two inclined surfaces.
2. The intelligent nutritional meal preparation device based on an electronic timer according to claim 1, characterized in that: It also includes a scraping device, which is mounted on the protective frame (76) and connected to the feed sealing cover (3). The scraping device includes a support frame (91), a scraper (92), a swing rod (93), a limiting ring frame (94), a return spring (95), and a pressing frame (96). The support frame (91) is fixedly connected to the protective frame (76), and the scraper (92) is slidably connected to the swing rod (71). The scraper (92) has a limiting groove. The support frame (91) is fixedly connected to the protective frame (76), and the scraper (92) is slidably connected to the swing rod (71). The scraper (92) has a limiting groove. A swing rod (93) is rotatably connected to the feed sealing cover (3). One end of the swing rod (93) is located in the limiting groove of the scraper (92). A limiting ring frame (94) is slidably connected to the feed sealing cover (3). A limiting ring groove is opened on the limiting ring frame (94). The other end of the swing rod (93) is located in the limiting ring groove on the limiting ring frame (94). A return spring (95) is connected between the feed sealing cover (3) and the limiting ring frame (94). An extrusion frame (96) is fixedly connected to the discharge plate (61).
3. The intelligent nutritional meal preparation device based on an electronic timer according to claim 2, characterized in that: It also includes a threaded block (101) and an adjusting screw (102). Each of the discharge frames (81) is fixedly connected to a threaded block (101) on the side away from the lifting frame (4), and each of the threaded blocks (101) is connected to an adjusting screw (102) by threads.
4. The intelligent nutritional meal preparation device based on an electronic timer according to claim 3, characterized in that: It also includes a hinged cover (11), which is rotatably connected to each of the discharge frames (81).
5. The intelligent nutritional meal preparation device based on an electronic timer according to claim 1, characterized in that: The stirring frame (74) consists of a long rod and a stirring plate fixedly connected to the long rod.
6. The intelligent nutritional meal preparation device based on an electronic timer according to claim 1, characterized in that: The bevel gear (75) is located inside the protective frame (76).
7. The intelligent nutritional meal preparation device based on an electronic timer according to claim 1, characterized in that: Each of the baffles (83) consists of a long plate and a top rod fixedly connected to the top of the long plate.
Citation Information
Patent Citations
Household flour stirring device
CN113080728A
Food material feeding device, automatic feeding and cooking machine, and feeding, cooking and food distributing and conveying device
CN113647799A