An automatic feeding device for mixing mesoporous raw materials of an efficacy toothpaste

By designing automatic feeding devices, including a stirring and cleaning mechanisms, the problems of low mixing efficiency of the median pore raw materials for traditional toothpaste production and difficulty in cleaning equipment are solved, and more efficient mixing and more convenient cleaning are achieved.

CN119281157BActive Publication Date: 2025-05-30上海鸿方网络科技有限公司
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Patent Information

Application Number
CN202411816029.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-05-30
Estimated Expiration
2044-12-11

AI Technical Summary

Technical Problem

In traditional toothpaste production, the mixing and feeding efficiency of mesoporous raw materials is low, and the mixing tank and stirring device are not easy to clean, resulting in waste of raw materials and uneven mixing.

Method used

Design an automatic feeding device for mixing mesoporous raw materials for effective toothpaste, including a mesoporous mixing tank, a stirring mechanism and a cleaning mechanism. The agitator drives the stirring rod to rotate by driving the motor to achieve effective mixing of mesoporous raw materials; the cleaning mechanism cleans the inner wall of the mixing tank through the nozzle and the scraper.

Benefits of technology

It improves the mixing efficiency of mesoporous raw materials, reduces waste of raw materials, ensures mixing uniformity, simplifies the equipment cleaning process, and extends the equipment service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an automatic feeding device for mixing mesoporous raw materials of an efficacy toothpaste, which relates to the technical field of mesoporous raw material mixing. It includes a mesoporous mixing tank. In the middle of the top of the top cover, there is a stirring mechanism for better mixing the mesoporous raw materials of the toothpaste and more convenient cleaning of the stirring rod. At one end of the top of the mesoporous mixing tank, there is a cleaning mechanism for facilitating the cleaning of the mixing tank. On one side of the mesoporous mixing tank, there is a feeding mechanism for improving the mixing ratio between solid and liquid raw materials. In the present invention, by setting the feeding mechanism and multiple sets of metering cylinders, the mesoporous liquid raw materials and mesoporous solid raw materials can be maintained at a certain ratio and can be put in simultaneously, so that the mixing ratio of solid and liquid can be mastered, the mixing efficiency of the device can be improved, and the mixed mesoporous raw materials are more convenient to use.
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Description

Technical Field

[0001] The present invention relates to the technical field of mesoporous raw material mixing, and specifically to an automatic feeding device for mixing mesoporous raw materials of functional toothpaste. Background Art

[0002] With the improvement of oral health awareness, functional toothpaste is increasingly favored by consumers in the market. However, in the traditional toothpaste production process, there are often many deficiencies in the mixing and feeding links of mesoporous liquid raw materials and mesoporous solid raw materials. In traditional toothpaste production, the mixing and feeding of mesoporous raw materials usually rely on manual feeding and mesoporous mixing tanks to mix the raw materials. However, the stirring devices of most mesoporous mixing tanks have poor effects, which easily cause waste and uneven mixing of raw materials, and the stirring devices are not easy to clean. Moreover, with manual feeding, it is difficult to master a fixed solid-liquid mixing ratio. When feeding, the solid and liquid raw materials are separately put in, resulting in low mixing efficiency. At the same time, after the mesoporous mixing tank is used, the inner wall of the mesoporous mixing tank will adhere to the mixed raw materials, and it is also too troublesome to clean.

[0003] Based on this, an automatic feeding device for mixing mesoporous raw materials of functional toothpaste is now provided, which can eliminate the drawbacks of existing devices. Summary of the Invention

[0004] The purpose of the present invention is to provide an automatic feeding device for mixing mesoporous raw materials of functional toothpaste to solve the problems of low mixing efficiency of mesoporous raw materials and the difficulty in cleaning the mesoporous mixing tank and the stirring device in the background art.

[0005] To achieve the above purpose, the present invention provides the following technical solutions:

[0006] An automatic feeding device for mixing mesoporous raw materials of functional toothpaste, including a mesoporous mixing tank, the top of the mesoporous mixing tank is slidably connected with a top cover, two feeding ports are opened on the surface of the top cover, a fixing mechanism for fixing the top cover is arranged around the top of the mesoporous mixing tank, a stirring mechanism for better mixing the mesoporous raw materials of toothpaste and facilitating the cleaning of the stirring rod is arranged in the middle of the top of the top cover, a cleaning mechanism for facilitating the cleaning of the mixing tank is arranged at one end of the top of the mesoporous mixing tank, and a feeding mechanism for improving the mixing ratio between solid and liquid raw materials is arranged on one side of the mesoporous mixing tank.

[0007] On the basis of the above technical solutions, the present invention also provides the following optional technical solutions:

[0008] In an optional solution: the fixing mechanism includes a first connecting block, a second connecting block, a threaded rod and a rotating block. The first connecting blocks are fixedly connected around the top of the mesoporous mixing tank, the second connecting blocks are fixedly connected around the bottom of the top cover, the threaded rod is rotatably connected inside the first connecting block, and one end of the threaded rod is threadedly connected with the rotating block.

[0009] In an alternative embodiment: The stirring mechanism includes a first fixed block, a first driving motor, a connecting rod, a fixed sleeve, a first bevel gear, a second bevel gear, a fixed rod, a first stirring rod, a fixed groove, a first screw hole, a first screw, a second stirring rod, a connecting groove, a second screw hole, a second screw, and a scraping plate. The middle top of the top cover is fixedly connected to a first fixed block. The top of the first fixed block is fixedly connected to a first driving motor. One end of the first driving motor is fixedly connected to a connecting rod. The bottom of the top cover is fixedly connected to a fixed sleeve. The middle of the connecting rod is fixedly connected to a first bevel gear. The surface of the first bevel gear is meshed with two groups of second bevel gears. One end of the second bevel gear is fixedly connected to a fixed rod. The fixed rod is rotatably connected to the inside of the fixed sleeve. One end of the fixed rod is slidably connected to a first stirring rod. One end of the first stirring rod is provided with a fixed groove. One side of the first stirring rod is provided with a first screw hole. The inner wall of the first screw hole is threadedly connected to a first screw. One end of the first screw cooperates with the fixed rod. One end of the connecting rod is slidably connected to a second stirring rod. The surface of the second stirring rod is provided with a connecting groove. The inner wall of the connecting groove cooperates with the connecting rod. The bottom of the second stirring rod is provided with a second screw hole. The inner wall of the second screw hole is threadedly connected to a second screw. One end of the second screw cooperates with the connecting rod. Both sides of the second stirring rod are fixedly connected to scraping plates.

[0010] In an alternative embodiment: The inner wall size of the connecting groove matches the outer wall size of the connecting rod.

[0011] In an alternative embodiment: The surfaces of the first stirring rod and the second stirring rod are convex.

[0012] In an alternative embodiment: The cleaning mechanism includes a connecting sleeve, a connecting port, a fixing ring, and a spray head. One end of the top of the top cover is provided with a connecting sleeve. One side of the top of the connecting sleeve is provided with a connecting port. One side of the top of the connecting sleeve is sleeved with a fixing ring. The bottom of the connecting sleeve is fixedly connected to multiple spray heads.

[0013] In an alternative embodiment: The feeding mechanism includes a lifting frame, a support disk, a rotating shaft, a first rotating rod, a fixing frame, a metering cylinder, a first gear, a discharging cylinder, a storage cylinder, a second fixing block, a second driving motor, a second rotating rod, and a second gear. A lifting frame is provided on one side of the mesoporous mixing tank. Two groups of support disks are fixedly connected to the top side of the lifting frame. A rotating shaft is rotatably connected inside the support disk. One end of the rotating shaft is fixedly connected to a first rotating rod. One end of the first rotating rod is rotatably connected to the support disk. A fixing frame is fixedly connected to the surface of the first rotating rod. Multiple groups of metering cylinders are fixedly connected to the surface of the fixing frame. A first gear is fixedly connected to the surface of the metering cylinder. A discharging cylinder is fixedly connected to the bottom side of the support disk. One end of the discharging cylinder is adapted to the feeding port. A storage cylinder is fixedly connected to the top end of the support disk. A second fixing block is fixedly connected to the top side of the lifting frame. A second driving motor is fixedly connected inside the second fixing block. One end of the second driving motor is fixedly connected to a second rotating rod. One end of the second rotating rod is fixedly connected to a second gear. Two groups of first gears are meshed and connected to the surface of the second gear.

[0014] In an alternative embodiment: The first rotating rod and the support disk form a rotating structure through the rotating shaft.

[0015] In an alternative embodiment: Support frames are fixedly connected to the four peripheries of the bottom of the mesoporous mixing tank. A positioning hole is opened on one side of the bottom of the support frame.

[0016] In an alternative embodiment: A discharging pipe is fixedly connected to one side of the bottom of the mesoporous mixing tank. A valve is provided on the surface of the discharging pipe.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] 1. By setting the stirring mechanism, when it is necessary to mix the mesoporous raw materials and the solid-liquid raw materials inside the mesoporous mixing tank, the first driving motor is started. The first driving motor can drive the connecting rod to rotate. The connecting rod drives the second stirring rod to rotate, so that the second stirring rod can stir the mesoporous liquid raw materials and the mesoporous solid raw materials at the bottom of the mesoporous mixing tank. At the same time, the connecting rod drives the first bevel gear to rotate. When the first bevel gear rotates, it can drive the second bevel gear to rotate. The second bevel gear drives the first stirring rod on the fixing rod to rotate, so that the first stirring rod can stir the mesoporous raw materials and the solid-liquid raw materials in the middle of the mesoporous mixing tank in different directions, thereby enabling the mesoporous liquid raw materials and the mesoporous solid raw materials to be better mixed together.

[0019] 2. When the inner wall of the mesoporous mixing tank needs to be cleaned, the present invention sets up a cleaning mechanism. The water pipe is sleeved on the connecting port at one end of the connecting sleeve. By tightening the fixing ring, the water pipe is fixed on the connecting sleeve. The inner wall of the mesoporous mixing tank is rinsed through the nozzle. Then, the scraper on the second stirring rod is driven to rotate by the connecting rod. One end of the scraper contacts the inner wall of the mesoporous mixing tank, so that the mixed raw materials adhered to the inner wall can be more conveniently cleaned, avoiding the influence on the mixing of the next mesoporous raw materials due to the adhesion of the mixed raw materials on the inner wall.

[0020] 3. By setting up a feeding mechanism and multiple metering cylinders, the present invention enables the mesoporous liquid raw materials and mesoporous solid raw materials to maintain a certain ratio and can be put in simultaneously, so that the solid-liquid mixing ratio can be mastered, the mixing efficiency of the device can be improved, and the mixed mesoporous raw materials are more convenient to use. Brief Description of the Drawings

[0021] Figure 1 It is a schematic structural diagram of the present invention.

[0022] Figure 2 It is a schematic structural diagram of the mesoporous mixing tank and the top cover of the present invention in cooperation.

[0023] Figure 3 It is a schematic structural diagram of the fixing mechanism of the present invention.

[0024] Figure 4 It is a schematic structural diagram of the support frame and the positioning hole of the present invention in cooperation.

[0025] Figure 5 It is a schematic structural diagram of the stirring mechanism of the present invention.

[0026] Figure 6 It is a schematic structural diagram of the connecting rod and the connecting groove of the present invention in cooperation.

[0027] Figure 7 It is a schematic structural diagram of the fixing rod and the fixing groove of the present invention in cooperation.

[0028] Figure 8 It is a schematic structural diagram of the cleaning mechanism of the present invention.

[0029] Figure 9 It is a schematic structural diagram of the feeding mechanism of the present invention.

[0030] Figure 10 It is a schematic structural diagram of the support plate and the storage cylinder of the present invention in cooperation.

[0031] Figure 11 It is a schematic structural diagram of the rotating shaft and the first rotating rod of the present invention in cooperation.

[0032] Annotation of reference numerals: 1, mesoporous mixing tank; 2, top cover; 3, feed inlet; 4, fixing mechanism; 401, first connecting block; 402, second connecting block; 403, threaded rod; 404, rotating block; 5, support frame; 6, positioning hole; 7, stirring mechanism; 701, first fixing block; 702, first driving motor; 703, connecting rod; 704, fixing sleeve; 705, first bevel gear; 706, second bevel gear; 707, fixing rod; 708, first stirring rod; 709, fixing groove; 710, first screw hole; 711, first screw; 712, second stirring rod; 713, connecting groove; 714, second screw hole; 715, second screw; 716, scraper; 8, cleaning mechanism; 801, connecting sleeve; 802, connection port; 803, fixing ring; 804, spray head; 9, feeding mechanism; 901, lifting frame; 902, support plate; 903, rotating shaft; 904, first rotating rod; 905, fixing frame; 906, metering cylinder; 907, first gear; 908, discharge cylinder; 909, storage cylinder; 910, second fixing block; 911, second driving motor; 912, second rotating rod; 913, second gear; 10, discharge pipe; 11, valve. Detailed implementation manners

[0033] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments.

[0034] In one embodiment, as Figures 1-11 shown, an automatic feeding device for mixing mesoporous raw materials of an efficacy toothpaste includes a mesoporous mixing tank 1. A top cover 2 is slidably connected to the top of the mesoporous mixing tank 1. Two groups of feed inlets 3 are provided on the surface of the top cover 2 for adding solid-liquid and mesoporous raw materials. A fixing mechanism 4 for fixing the top cover 2 is provided around the top of the mesoporous mixing tank 1 to fix the top cover 2. A stirring mechanism 7 for better mixing the mesoporous raw materials of the toothpaste and facilitating the cleaning of the stirring rod is provided in the middle of the top of the top cover 2, so that the mesoporous raw materials and solid-liquid can be better mixed, and at the same time, it is convenient to disassemble the stirring rod for cleaning. A cleaning mechanism 8 for facilitating the cleaning of the mixing tank is provided at one end of the top of the mesoporous mixing tank 1 to better clean the inner wall of the mesoporous mixing tank 1. A feeding mechanism 9 for improving the mixing ratio between solid-liquid raw materials is provided on one side of the mesoporous mixing tank 1, so that the mesoporous liquid raw materials and mesoporous solid raw materials can be added into the mesoporous mixing tank 1 at the same time, and the mixing ratio of the mesoporous liquid raw materials and mesoporous solid raw materials is maintained during feeding, so as to improve the mixing efficiency.

[0035] In one embodiment, as Figure 3As shown in the figure, the fixing mechanism 4 includes a first connecting block 401, a second connecting block 402, a threaded rod 403 and a rotating block 404. The first connecting block 401 is fixedly connected to the periphery of the top of the mesoporous mixing tank 1, and the second connecting block 402 is fixedly connected to the periphery of the bottom of the top cover 2. The threaded rod 403 is rotatably connected to the inside of the first connecting block 401, and one end of the threaded rod 403 is threadedly connected to the rotating block 404. Place the top cover 2 on the mesoporous mixing tank 1, then rotate the threaded rod 403 into the inside of the second connecting block 402, and turn the rotating block 404 to make one end of the rotating block 404 press against the second connecting block 402, thereby fixing the mesoporous mixing tank 1 and the top cover 2 together.

[0036] In one embodiment, as Figures 4-7As shown in the figure, the stirring mechanism 7 includes a first fixing block 701, a first driving motor 702, a connecting rod 703, a fixing sleeve 704, a first bevel gear 705, a second bevel gear 706, a fixing rod 707, a first stirring rod 708, a fixing groove 709, a first screw hole 710, a first screw 711, a second stirring rod 712, a connecting groove 713, a second screw hole 714, a second screw 715 and a scraper 716. The middle top of the top cover 2 is fixedly connected with a first fixing block 701. The top of the first fixing block 701 is fixedly connected with a first driving motor 702. One end of the first driving motor 702 is fixedly connected with a connecting rod 703. The bottom of the top cover 2 is fixedly connected with a fixing sleeve 704. The middle of the connecting rod 703 is fixedly connected with a first bevel gear 705. The surface of the first bevel gear 705 is meshed with two groups of second bevel gears 706. One end of the second bevel gear 706 is fixedly connected with a fixing rod 707. The fixing rod 707 is rotatably connected inside the fixing sleeve 704. One end of the fixing rod 707 is slidably connected with a first stirring rod 708. One end of the first stirring rod 708 is provided with a fixing groove 709. One side of the first stirring rod 708 is provided with a first screw hole 710. The inner wall of the first screw hole 710 is threadedly connected with a first screw 711. One end of the first screw 711 is matched with the fixing rod 707. One end of the connecting rod 703 is slidably connected with a second stirring rod 712. The surface of the second stirring rod 712 is provided with a connecting groove 713. The inner wall of the connecting groove 713 is matched with the connecting rod 703. The bottom of the second stirring rod 712 is provided with a second screw hole 714. The inner wall of the second screw hole 714 is threadedly connected with a second screw 715. One end of the second screw 715 is matched with the connecting rod 703. Both sides of the second stirring rod 712 are fixedly connected with a scraper 716. Insert one end of the fixing rod 707 into the fixing groove 709, and turn the first screw 711. The first screw 711 passes through the first screw hole 710 and is threadedly connected with the fixing rod 707, so that the first stirring rod 708 is fixed on the fixing rod 707. Then insert one end of the connecting rod 703 into the connecting groove 713, and turn the second screw 715. The second screw 715 passes through the second screw hole 714 and is threadedly connected with the connecting rod 703, so that the second stirring rod 712 is fixed on the connecting rod 703. When it is necessary to mix the mesoporous raw materials and the solid-liquid raw materials inside the mesoporous mixing tank 1, start the first driving motor 702. The first driving motor 702 can drive the connecting rod 703 to rotate. The connecting rod 703 drives the second stirring rod 712 to rotate, so that the second stirring rod 712 can stir the mesoporous liquid raw materials and the mesoporous solid raw materials at the bottom of the mesoporous mixing tank 1. At the same time, the connecting rod 703 drives the first bevel gear 705 to rotate. When the first bevel gear 705 rotates, it can drive the second bevel gear 706 to rotate. The second bevel gear 706 drives the first stirring rod 708 on the fixing rod 707 to rotate, so that the first stirring rod 708 can stir the mesoporous raw materials and the solid-liquid raw materials in the middle of the mesoporous mixing tank 1 in different directions.Furthermore, the mesoporous liquid raw material and the mesoporous solid raw material can be better mixed together. When cleaning the stirring rod, open the top cover 2, unscrew the first screw 711 and the second screw 715, so that the first stirring rod 708 and the second stirring rod 712 can be detached for cleaning.

[0037] In one embodiment, as Figure 6 shown, the inner wall dimensions of the connecting groove 713 match the outer wall dimensions of the connecting rod 703. When the connecting rod 703 slides inside the connecting groove 713, the connecting groove 713 can limit the sliding of the connecting rod 703 to prevent the connecting rod 703 from shaking inside the connecting groove 713.

[0038] In one embodiment, as Figure 5 shown, the surfaces of the first stirring rod 708 and the second stirring rod 712 are convex, which can better mix the mesoporous liquid raw material and the mesoporous solid raw material together.

[0039] In one embodiment, as Figure 8 shown, the cleaning mechanism 8 includes a connecting sleeve 801, a connecting port 802, a fixing ring 803 and a spray head 804. One end of the top of the top cover 2 is provided with a connecting sleeve 801. A connecting port 802 is opened on one side of the top of the connecting sleeve 801. A fixing ring 803 is sleeved on one side of the top of the connecting sleeve 801. The bottom of the connecting sleeve 801 is fixedly connected with multiple groups of spray heads 804. When it is necessary to clean the inner wall of the mesoporous mixing tank 1, put the water pipe on the connecting port 802 at one end of the connecting sleeve 801, tighten the fixing ring 803 to fix the water pipe on the connecting sleeve 801, flush the inner wall of the mesoporous mixing tank 1 through the spray heads 804, and then drive the scraper 716 on the second stirring rod 712 to rotate through the connecting rod 703. One end of the scraper 716 is in contact with the inner wall of the mesoporous mixing tank 1, which can more conveniently clean the mixed raw materials adhered to the inner wall, avoiding the influence of the adhered mixed raw materials on the inner wall on the next mixing of the mesoporous raw materials.

[0040] In one embodiment, as Figure 9 - Figure 11As shown in the figure, the feeding mechanism 9 includes a lifting frame 901, a support disk 902, a rotating shaft 903, a first rotating rod 904, a fixing frame 905, a metering cylinder 906, a first gear 907, a discharge cylinder 908, a storage cylinder 909, a second fixing block 910, a second driving motor 911, a second rotating rod 912 and a second gear 913. A lifting frame 901 is provided on one side of the mesoporous mixing tank 1. On one side of the top of the lifting frame 901, two groups of support disks 902 are fixedly connected. The rotating shaft 903 is rotatably connected inside the support disk 902. One end of the rotating shaft 903 is fixedly connected with a first rotating rod 904. One end of the first rotating rod 904 is rotatably connected with the support disk 902. A fixing frame 905 is fixedly connected to the surface of the first rotating rod 904. Multiple groups of metering cylinders 906 are fixedly connected to the surface of the fixing frame 905. A first gear 907 is fixedly connected to the surface of the metering cylinder 906. On one side of the bottom of the support disk 902, a discharge cylinder 908 is fixedly connected. One end of the discharge cylinder 908 is matched with the feed inlet 3. On one end of the top of the support disk 902, a storage cylinder 909 is fixedly connected. On one side of the top of the lifting frame 901, a second fixing block 910 is fixedly connected. A second driving motor 911 is fixedly connected inside the second fixing block 910. One end of the second driving motor 911 is fixedly connected with a second rotating rod 912. One end of the second rotating rod 912 is fixedly connected with a second gear 913. The surface of the second gear 913 is meshed with two groups of first gears 907. When it is necessary to add mesoporous liquid raw materials and mesoporous solid raw materials into the mesoporous mixing tank 1, start the lifting frame 901 so that one end of the discharge cylinder 908 can be inserted into the feed inlet 3, and conveniently add the mesoporous liquid raw materials and mesoporous solid raw materials into the two storage cylinders 909. Start the second driving motor 911 to drive the second gear 913 on the second rotating rod 912 to rotate. The second gear 913 drives the two groups of first gears 907 to rotate. The first gear 907 drives the fixing frame 905 and the metering cylinder 906 to rotate through the first rotating rod 904. When the opening at the top of the metering cylinder 906 coincides with the bottom of the storage cylinder 909, the mesoporous liquid raw materials and mesoporous solid raw materials inside the storage cylinder 909 can be conveniently added into the corresponding metering cylinders 906. After the solid-liquid raw materials inside the metering cylinder 906 are filled, start the second driving motor 911 again to make the bottom opening of the metering cylinder 906 coincide with the opening of the discharge cylinder 908, so that the solid-liquid raw materials inside the metering cylinder 906 are filled into the mesoporous mixing tank 1 through the discharge cylinder 908 and the feed inlet 3. Multiple groups of metering cylinders 906 enable the mesoporous liquid raw materials and mesoporous solid raw materials to be maintained in a certain proportion and can be put in at the same time, so that the solid-liquid mixing ratio can be mastered and the mixing efficiency can be improved.

[0041] In one embodiment, as Figure 11As shown, the first rotating rod 904 forms a rotating structure with the support disk 902 through the rotating shaft 903. When the first rotating rod 904 rotates, the rotating shaft 903 can support one end of the first rotating rod 904 and at the same time prevent the first rotating rod 904 from shaking during rotation.

[0042] In one embodiment, as Figure 2 shown, the four sides of the bottom of the mesoporous mixing tank 1 are fixedly connected with a support frame 5 for supporting the mesoporous mixing tank 1. A positioning hole 6 is opened on one side of the bottom of the support frame 5 so that a bolt can pass through the positioning hole 6 and be threadedly connected to the ground, enabling the mesoporous mixing tank 1 to be fixed on the ground through the support frame 5 and preventing the mesoporous mixing tank 1 from sliding during use.

[0043] In one embodiment, as Figure 2 shown, a discharge pipe 10 is fixedly connected to one side of the bottom of the mesoporous mixing tank 1. A valve 11 is provided on the surface of the discharge pipe 10. After the mesoporous liquid raw material and the mesoporous solid raw material are mixed, they are discharged through the discharge pipe 10. The valve 11 provided on the surface of the discharge pipe 10 is used to open or close the discharge pipe 10.

[0044] The above embodiment discloses an automatic feeding device for mixing mesoporous raw materials of an efficacy toothpaste. When in use, one end of the fixing rod 707 is inserted into the fixing groove 709, and the first screw 711 is screwed. The first screw 711 passes through the first screw hole 710 and is threadedly connected to the fixing rod 707, so that the first stirring rod 708 is fixed on the fixing rod 707. Then, one end of the connecting rod 703 is inserted into the connecting groove 713, and the second screw 715 is screwed. The second screw 715 passes through the second screw hole 714 and is threadedly connected to the connecting rod 703, so that the second stirring rod 712 is fixed on the connecting rod 703. The top cover 2 is placed on the mesoporous mixing tank 1, and then the threaded rod 403 is rotated into the inside of the second connecting block 402. The rotating block 404 is screwed, so that one end of the rotating block 404 presses the second connecting block 402, and thus the mesoporous mixing tank 1 and the top cover 2 are fixed together. The mesoporous liquid raw material and the mesoporous solid raw material are conveniently added into the two storage cylinders 909. The second driving motor 911 is started to drive the second gear 913 on the second rotating rod 912 to rotate. The second gear 913 drives the two first gears 907 to rotate. The first gear 907 drives the fixing frame 905 and the metering cylinder 906 to rotate through the first rotating rod 904. When the opening at the top of the metering cylinder 906 coincides with the bottom of the storage cylinder 909, the mesoporous liquid raw material and the mesoporous solid raw material inside the storage cylinder 909 are conveniently added into the corresponding metering cylinder 906. After the solid-liquid raw materials inside the metering cylinder 906 are filled, the second driving motor 911 is started again, and the bottom opening of the metering cylinder 906 is made to coincide with the opening of the discharge cylinder 908, so that the solid-liquid raw materials inside the metering cylinder 906 are filled into the mesoporous mixing tank 1 through the discharge cylinder 908 and the feed port 3. The multiple metering cylinders 906 enable the mesoporous liquid raw material and the mesoporous solid raw material to be maintained at a certain ratio and can be put in at the same time, so that the mixing ratio of the solid and liquid can be controlled and the mixing efficiency can be improved. When it is necessary to mix the mesoporous raw materials and the solid-liquid raw materials inside the mesoporous mixing tank 1, the first driving motor 702 is started. The first driving motor 702 can drive the connecting rod 703 to rotate. The connecting rod 703 drives the second stirring rod 712 to rotate, so that the second stirring rod 712 can stir the mesoporous liquid raw material and the mesoporous solid raw material at the bottom of the mesoporous mixing tank 1. At the same time, the connecting rod 703 drives the first bevel gear 705 to rotate. When the first bevel gear 705 rotates, it can drive the second bevel gear 706 to rotate. The second bevel gear 706 drives the first stirring rod 708 on the fixing rod 707 to rotate, so that the first stirring rod 708 can stir the mesoporous raw materials and the solid-liquid raw materials in the middle of the mesoporous mixing tank 1 in different directions, and thus the mesoporous liquid raw material and the mesoporous solid raw material can be better mixed together. When cleaning the stirring rod, the top cover 2 is opened, and the first screw 711 and the second screw 715 are unscrewed, so that the first stirring rod 708 and the second stirring rod 712 can be disassembled for cleaning. When it is necessary to clean the inner wall of the mesoporous mixing tank 1,Slip the water pipe over the connection port 802 at one end of the connecting sleeve 801. By tightening the fixing ring 803, fix the water pipe on the connecting sleeve 801. Flush the inner wall of the mesoporous mixing tank 1 through the spray head 804. Then drive the scraper 716 on the second stirring rod 712 to rotate through the connecting rod 703. One end of the scraper 716 contacts the inner wall of the mesoporous mixing tank 1, which can more conveniently wash off the mixed raw materials adhered to the inner wall, avoiding the influence of the adhered mixed raw materials on the inner wall on the next mixing of mesoporous raw materials.

[0045] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of changes or substitutions, which should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.

Claims

1. An automatic feeding device for mixing mesoporous raw materials for functional toothpaste, comprising a mesoporous mixing tank (1), a top cover (2) being slidably connected to the top of the mesoporous mixing tank (1), and two groups of feed ports (3) being provided on the surface of the top cover (2), characterized in that: The top of the mesoporous mixing tank (1) is provided with fixing mechanisms (4) for fixing the top cover (2) around its periphery; a stirring mechanism (7) for better mixing of the toothpaste mesoporous raw materials and more convenient cleaning of the stirring rod is provided in the middle of the top of the top cover (2); a cleaning mechanism (8) for facilitating cleaning of the mixing tank is provided at one end of the top of the mesoporous mixing tank (1); and a feeding mechanism (9) for increasing the mixing ratio between solid and liquid raw materials is provided on one side of the mesoporous mixing tank (1); The stirring mechanism (7) comprises a first fixed block (701), a first drive motor (702), a connecting rod (703), a fixing sleeve (704), a first bevel gear (705), a second bevel gear (706), a fixing rod (707), a first stirring rod (708), a fixing groove (709), a first screw hole (710), a first screw (711), a second stirring rod (712), a connecting groove (713), a second screw hole (714), a second screw (715) and a scraper (716). The top middle portion of the top cover (2) A first fixing block (701) is fixedly connected, a first drive motor (702) is fixedly connected to the top of the first fixing block (701), one end of the first drive motor (702) is fixedly connected to a connecting rod (703), a fixing sleeve (704) is fixedly connected to the bottom of the top cover (2), a first bevel gear (705) is fixedly connected to the middle of the connecting rod (703), two sets of second bevel gears (706) are meshingly connected to the surface of the first bevel gear (705), and one end of the second bevel gear (706) is fixedly connected to a fixing sleeve (704). The fixing sleeve (704) is rotatably connected to the fixing rod (707), one end of the fixing rod (707) is slidably connected to the first stirring rod (708), one end of the first stirring rod (708) is provided with a fixing groove (709), one side of the first stirring rod (708) is provided with a first screw hole (710), the inner wall of the first screw hole (710) is threadedly connected to a first screw (711), one end of the first screw (711) cooperates with the fixing rod (707), and the connecting rod (703) One end of the second stirring rod (712) is slidably connected to the second stirring rod (712), a connection groove (713) is provided on the surface of the second stirring rod (712), the inner wall of the connection groove (713) cooperates with the connecting rod (703), a second screw hole (714) is provided at the bottom of the second stirring rod (712), a second screw (715) is threadedly connected to the inner wall of the second screw hole (714), one end of the second screw (715) cooperates with the connecting rod (703), and scrapers (716) are fixedly connected to both sides of the second stirring rod (712); The feeding mechanism (9) comprises a lifting frame (901), a support plate (902), a rotating shaft (903), a first rotating rod (904), a fixed frame (905), a metering cylinder (906), a first gear (907), a discharging cylinder (908), a storage cylinder (909), a second fixed block (910), a second driving motor (911), a second rotating rod (912) and a second gear (913). A lifting frame (901) is provided on one side of the mesoporous mixing tank (1); two groups of support plates (902) are fixedly connected to one side of the top of the lifting frame (901); the interior of the support plate (902) is rotatably connected to the rotating shaft (903); one end of the rotating shaft (903) is fixedly connected to the first rotating rod (904); one end of the first rotating rod (904) is rotatably connected to the support plate (902); and the surface of the first rotating rod (904) is fixedly connected to the fixed frame. (905), a plurality of groups of metering cylinders (906) are fixedly connected to the surface of the fixed frame (905), a first gear (907) is fixedly connected to the surface of the metering cylinder (906), a discharging cylinder (908) is fixedly connected to one side of the bottom of the support plate (902), one end of the discharging cylinder (908) cooperates with the feed port (3), a storage cylinder (909) is fixedly connected to one end of the top of the support plate (902), a second fixed block (910) is fixedly connected to one side of the top of the lifting frame (901), a second driving motor (911) is fixedly connected to the inside of the second fixed block (910), one end of the second driving motor (911) is fixedly connected to a second rotating rod (912), one end of the second rotating rod (912) is fixedly connected to a second gear (913), and the surface of the second gear (913) is meshingly connected to two groups of first gears (907).

2. The automatic feeding device for mixing mesoporous raw materials for functional toothpaste according to claim 1, characterized in that: The fixing mechanism (4) comprises a first connecting block (401), a second connecting block (402), a threaded rod (403) and a rotating block (404); the first connecting block (401) is fixedly connected to the top of the mesoporous mixing tank (1) around the periphery; the second connecting block (402) is fixedly connected to the bottom of the top cover (2) around the periphery; the threaded rod (403) is rotatably connected inside the first connecting block (401); and one end of the threaded rod (403) is threadedly connected to the rotating block (404).

3. The automatic feeding device for mixing mesoporous raw materials for functional toothpaste according to claim 1, characterized in that: The inner wall size of the connecting groove (713) matches the outer wall size of the connecting rod (703).

4. The automatic feeding device for mixing mesoporous raw materials for functional toothpaste according to claim 1, characterized in that: The surfaces of the first stirring rod (708) and the second stirring rod (712) are convex.

5. The automatic feeding device for mixing mesoporous raw materials for functional toothpaste according to claim 1, characterized in that: The cleaning mechanism (8) comprises a connecting sleeve (801), a connecting port (802), a fixing ring (803) and a nozzle (804); a connecting sleeve (801) is provided at one end of the top of the top cover (2); a connecting port (802) is provided at one side of the top of the connecting sleeve (801); a fixing ring (803) is sleeved at one side of the top of the connecting sleeve (801); and a plurality of nozzles (804) are fixedly connected to the bottom of the connecting sleeve (801).

6. The automatic feeding device for mixing mesoporous raw materials for functional toothpaste according to claim 1, characterized in that: The first rotating rod (904) forms a rotating structure with the supporting plate (902) via the rotating shaft (903).

7. The automatic feeding device for mixing mesoporous raw materials for functional toothpaste according to claim 1, characterized in that: A support frame (5) is fixedly connected to the periphery of the bottom of the mesoporous mixing tank (1), and a positioning hole (6) is provided on one side of the bottom of the support frame (5).

8. The automatic feeding device for mixing mesoporous raw materials for functional toothpaste according to claim 1, characterized in that: A discharge pipe (10) is fixedly connected to one side of the bottom of the mesoporous mixing tank (1), and a valve (11) is provided on the surface of the discharge pipe (10).

Citation Information

Patent Citations

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