Antibacterial whitening toothpaste and preparation method thereof
By using multiple injection pipes and a servo motor-driven power mechanism in the toothpaste preparation process, the problem of insufficient mixing of powdered and paste-like raw materials was solved, enabling the rapid preparation of antibacterial and whitening toothpaste.
Patent Information
- Application Number
- CN202310813601.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-05
- Publication Date
- 2026-04-17
AI Technical Summary
The existing toothpaste preparation process suffers from insufficient and slow mixing of powdered and paste-like ingredients.
The powdered and paste-like raw materials are pre-mixed separately using multiple injection pipes, and then injected into the mixing drum through the injection pipes. The mixing is carried out by a servo motor-driven power mechanism and a hydraulic system to ensure that the raw materials are fully mixed.
It enables rapid and thorough mixing of powdered and paste-like ingredients to form a high-quality antibacterial and whitening toothpaste.
Smart Images

Figure CN121869133A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to toothpaste preparation, and more specifically to an antibacterial whitening toothpaste and its preparation method. Background Technology
[0002] Toothpaste is a paste-like product applied to the surface of human teeth by friction, with the primary purpose of cleaning. In the process of preparing toothpaste, a portion of the powdered raw materials need to be mixed first, then another portion of the paste-like raw materials need to be mixed, and then the mixed powdered and paste-like raw materials need to be mixed thoroughly and quickly. Summary of the Invention
[0003] The purpose of this invention is to provide an antibacterial whitening toothpaste and its preparation method, which can fully and quickly mix the toothpaste raw materials.
[0004] The objective of this invention is achieved through the following technical solution:
[0005] A method for preparing an antibacterial whitening toothpaste, the method comprising the following steps:
[0006] Step 1: Pre-mix and stir the powdered and paste-like ingredients of the antibacterial whitening toothpaste separately;
[0007] Step 2: Pass the mixed powdered raw materials into the injection pipe, and then inject them into the mixing drum through multiple injection pipes for mixing;
[0008] Step 3: Pass the mixed paste-like raw material into the injection pipe, and then inject it into the mixing drum through multiple injection pipes for mixing;
[0009] Step 4: The powdered and paste-like ingredients are mixed to form an antibacterial whitening toothpaste.
[0010] An antibacterial whitening toothpaste, the components of which are formulated in the following weight proportions: 50 to 55 parts gypsum powder; 12 to 15 parts thickener; 10 to 13 parts foaming agent; 10 to 12 parts herbal extract; 1 to 2 parts citric acid; 0.5 to 0.8 parts menthol; 8 to 15 parts purified water; 7 to 15 parts glycerin; 5 to 7 parts fragrance; 6 to 8 parts sodium saccharin; and 5 to 8 parts humectant.
[0011] An antibacterial whitening toothpaste preparation device includes a device support, a stirring cylinder fixedly connected to the device support, a plurality of discharge holes I on the stirring cylinder, elastic cylinders fixedly connected to both the front and rear sides of the stirring cylinder, a swing cylinder fixedly connected to the outer side of each of the two elastic cylinders, and two swing supports rotatably connected to the device support, with the two swing cylinders respectively fixedly connected to the two swing supports.
[0012] A power mechanism I for driving the swing bracket to rotate is fixedly connected to the device support. The power mechanism I is preferably a servo motor.
[0013] Both oscillating cylinders are slidably connected to extrusion discs, and both extrusion discs are rotatably connected to rotating discs. Both rotating discs have multiple sliding grooves I on their outer sides and multiple sliding grooves II on their inner sides. Both oscillating supports are fixedly connected to telescopic mechanisms I. The telescopic ends of the two telescopic mechanisms I are respectively fixedly connected to the two extrusion discs, and the two extrusion discs can slide into the mixing cylinder.
[0014] Each sliding groove II is slidably connected to a sliding block, and each sliding block is rotatably connected to a rotating ring;
[0015] Each extrusion disc is fixedly connected to a telescopic mechanism II, each telescopic mechanism II is fixedly connected to a hydraulic cavity at its telescopic end, each hydraulic cavity is fixedly connected to a telescopic mechanism III, each telescopic mechanism III is fixedly connected to a reciprocating plate at its telescopic end, the reciprocating plate is slidably connected to the hydraulic cavity, and each hydraulic cavity is fixedly connected to a communicating cavity.
[0016] Each connecting cavity is rotatably connected to a hydraulic pipe, each hydraulic pipe is fixedly connected to a hydraulic disc, and each hydraulic disc is provided with multiple sliding holes.
[0017] The connecting cavity is connected to the hydraulic pipeline, and the hydraulic pipeline is connected to the sliding hole. A power mechanism II that drives the hydraulic pipeline to rotate is fixedly connected to the connecting cavity. The power mechanism II is preferably a servo motor.
[0018] Each sliding hole is slidably connected to a push block, and each push block is fixedly connected to an injection pipe. Multiple injection pipes are slidably connected to multiple rotating rings respectively.
[0019] Each hydraulic pipeline is fixedly connected to an injection pipeline, and each injection pipeline is fixedly connected to an injection cavity. The injection pipeline is slidably connected to the corresponding injection cavity, and the injection cavity and the injection pipeline are connected.
[0020] Each injection pipe is equipped with a one-way mechanism at one end;
[0021] A discharge chamber is rotatably connected to the mixing drum. Multiple discharge holes II are provided on the discharge chamber. The discharge holes II can be misaligned or coincident with the discharge holes I. A discharge pipe is fixedly connected to the discharge chamber.
[0022] A power mechanism Ⅲ for driving the discharge chamber to rotate is fixedly connected to the mixing drum. The power mechanism Ⅲ is preferably a servo motor. Attached Figure Description
[0023] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0024] Figure 1 This is a schematic diagram of the preparation method of the antibacterial whitening toothpaste of the present invention;
[0025] Figure 2 This is a schematic diagram of the antibacterial whitening toothpaste preparation device of the present invention;
[0026] Figure 3 This is a cross-sectional view of the antibacterial whitening toothpaste preparation apparatus of the present invention;
[0027] Figure 4 This is a schematic diagram of the device support structure of the present invention;
[0028] Figure 5 This is a schematic diagram of the extrusion disc structure of the present invention;
[0029] Figure 6 This is a schematic diagram of the rotating disk structure of the present invention;
[0030] Figure 7 This is a schematic diagram of the injection pipe structure of the present invention;
[0031] Figure 8 This is a schematic diagram of the injection pipe structure of the present invention;
[0032] Figure 9 This is a schematic diagram of the hydraulic disc structure of the present invention;
[0033] Figure 10 This is a schematic diagram of the hydraulic disc structure of the present invention;
[0034] Figure 11 This is a schematic diagram of the discharge cavity structure of the present invention;
[0035] Figure 12 This is a schematic diagram of the discharge chamber structure of the present invention.
[0036] In the picture:
[0037] Device support 11; stirring drum 12; discharge port I 13; elastic cylinder 14; swing cylinder 15; swing support 16;
[0038] Rotary disk 21; extrusion disk 22; sliding groove I 23; sliding groove II 24; telescopic mechanism I 25;
[0039] Sliding block 31; Rotating ring 32;
[0040] Injection pipe 41; Push block 42;
[0041] Hydraulic pipe 51; hydraulic plate 52; sliding hole 53;
[0042] Telescopic mechanism II 61; Hydraulic cavity 62; Telescopic mechanism III 63; Reciprocating plate 64; Connecting cavity 65;
[0043] Discharge chamber 71; Discharge hole II 72; Discharge pipe 73;
[0044] Injection cavity 81; Injection pipe 82. Detailed Implementation
[0045] The present invention will now be described in further detail with reference to the accompanying drawings.
[0046] like Figure 1 As shown below, the steps and functions of a method for preparing an antibacterial whitening toothpaste will be explained in detail.
[0047] A method for preparing an antibacterial whitening toothpaste, the method comprising the following steps:
[0048] Step 1: Pre-mix and stir the powdered and paste-like ingredients of the antibacterial whitening toothpaste separately;
[0049] Powdered ingredients: Mix 55 parts gypsum powder, 12 parts thickener, 10 parts foaming agent, 5 parts humectant, and 5 parts purified water.
[0050] Paste ingredients: Mix 10 parts herbal extract, 1 part citric acid, 0.5 parts menthol, 5 parts purified water, 7 parts glycerin, and 8 parts sodium saccharin.
[0051] Step 2: The mixed powdered raw materials are fed into the injection pipe 82 and then injected into the mixing drum 12 through multiple injection pipes 41 for mixing.
[0052] Step 3: Pass the mixed paste-like raw material into the injection pipe 82, and then inject it into the mixing drum 12 through multiple injection pipes 41 for mixing;
[0053] Step 4: The powdered and paste-like ingredients are mixed to form an antibacterial whitening toothpaste.
[0054] An antibacterial whitening toothpaste, the components of which are formulated in the following weight proportions: 50 to 55 parts gypsum powder; 12 to 15 parts thickener; 10 to 13 parts foaming agent; 10 to 12 parts herbal extract; 1 to 2 parts citric acid; 0.5 to 0.8 parts menthol; 8 to 15 parts purified water; 7 to 15 parts glycerin; 5 to 7 parts fragrance; 6 to 8 parts sodium saccharin; and 5 to 8 parts humectant.
[0055] like Figures 2 to 12 As shown below, the structure and function of an antibacterial whitening toothpaste preparation device will be described in detail.
[0056] An antibacterial whitening toothpaste preparation device includes a device support 11, a stirring cylinder 12 fixedly connected to the device support 11, a plurality of discharge holes I 13 provided on the stirring cylinder 12, elastic cylinders 14 fixedly connected to both the front and rear sides of the stirring cylinder 12, swing cylinders 15 fixedly connected to the outer sides of the two elastic cylinders 14, and two swing supports 16 rotatably connected to the device support 11, with the two swing cylinders 15 respectively fixedly connected to the two swing supports 16.
[0057] A power mechanism I for driving the swing bracket 16 to rotate is fixedly connected to the device bracket 11. The power mechanism I is preferably a servo motor.
[0058] Both oscillating cylinders 15 are slidably connected to extrusion discs 22, and both extrusion discs 22 are rotatably connected to rotating discs 21. Both rotating discs 21 have multiple sliding grooves I 23 on their outer sides and multiple sliding grooves II 24 on their inner sides. Both oscillating supports 16 are fixedly connected to telescopic mechanisms I 25. The telescopic ends of the two telescopic mechanisms I 25 are respectively fixedly connected to the two extrusion discs 22, and the two extrusion discs 22 can slide into the mixing cylinder 12.
[0059] Each sliding groove II24 is slidably connected to a sliding block 31, and each sliding block 31 is rotatably connected to a rotating ring 32;
[0060] Each extrusion disc 22 is fixedly connected to a telescopic mechanism II 61, each telescopic mechanism II 61 is fixedly connected to a hydraulic cavity 62, each hydraulic cavity 62 is fixedly connected to a telescopic mechanism III 63, each telescopic mechanism III 63 is fixedly connected to a reciprocating plate 64 at its telescopic end, the reciprocating plate 64 is slidably connected inside the hydraulic cavity 62, and each hydraulic cavity 62 is fixedly connected to a communicating cavity 65.
[0061] Each connecting cavity 65 is rotatably connected to a hydraulic pipe 51, each hydraulic pipe 51 is fixedly connected to a hydraulic disc 52, and each hydraulic disc 52 is provided with multiple sliding holes 53.
[0062] The connecting cavity 65 is connected to the hydraulic pipe 51, the hydraulic pipe 51 is connected to the sliding hole 53, and a power mechanism II for driving the hydraulic pipe 51 to rotate is fixedly connected to the connecting cavity 65. The power mechanism II is preferably a servo motor.
[0063] Each sliding hole 53 is slidably connected to a push block 42, and each push block 42 is fixedly connected to an injection pipe 41. Multiple injection pipes 41 are slidably connected to multiple rotating rings 32 respectively.
[0064] Each hydraulic pipe 51 is fixedly connected to an injection pipe 82, and each injection pipe 82 is fixedly connected to an injection cavity 81. The injection pipe 41 is slidably connected in the corresponding injection cavity 81, and the injection cavity 81 and the injection pipe 41 are connected.
[0065] A discharge chamber 71 is rotatably connected to the mixing drum 12. The discharge chamber 71 is provided with multiple discharge holes II 72. The discharge holes II 72 can be misaligned or coincide with the discharge holes I 13. A discharge pipe 73 is fixedly connected to the discharge chamber 71.
[0066] A power mechanism Ⅲ for driving the discharge chamber 71 to rotate is fixedly connected to the mixing drum 12. The power mechanism Ⅲ is preferably a servo motor.
[0067] When using, such as Figure 2 As shown, the raw materials for antibacterial whitening toothpaste are pre-sorted and mixed, and the two mixed raw materials are respectively introduced into two injection pipes 82;
[0068] like Figure 3 As shown, the injection pipe 82 and the injection cavity 81 are connected, so the antibacterial whitening toothpaste raw material enters the injection cavity 81. The injection cavity 81 and the injection pipe 41 are connected, so the antibacterial whitening toothpaste raw material enters the injection pipe 41. The antibacterial whitening toothpaste raw material enters the mixing drum 12 through the injection pipe 41.
[0069] When it is necessary to stir the raw materials for antibacterial whitening toothpaste, the power mechanism II is started. The output shaft of the power mechanism II starts to rotate, which drives the hydraulic pipe 51 to rotate. The hydraulic pipe 51 drives the hydraulic disc 52 to rotate, which drives the injection pipe 82 to rotate. The injection pipe 82 drives the injection chamber 81 to rotate, which drives multiple injection pipes 41 to rotate. This causes the multiple injection pipes 41 to rotate inside the mixing drum 12. Thus, while injecting raw materials into the mixing drum 12, the injection pipes 41 can also stir the raw materials, thereby making the raw materials stir quickly.
[0070] Furthermore, hydraulic oil is pre-circulated between the hydraulic cavity 62 and the hydraulic plate 52, and the telescopic mechanism III 63 is activated. The telescopic mechanism III 63 can be a hydraulic cylinder or an electric push rod. The telescopic end of the telescopic mechanism III 63 drives the reciprocating plate 64 to move, so that the reciprocating plate 64 slides in the hydraulic cavity 62, thereby squeezing the hydraulic oil. The hydraulic oil pushes the push block 42 to slide in the sliding hole 53, thereby causing the multiple injection pipes 41 to expand or contract, thereby improving the stirring effect.
[0071] When the injection pipe 41 moves, the sliding block 31 slides on the sliding groove II 24, and the sliding block 31 blocks the sliding groove I 23, so that the antibacterial whitening toothpaste raw material will not flow out of the mixing drum 12.
[0072] Furthermore, the telescopic mechanism II 61 is activated. The telescopic mechanism II 61 can be a hydraulic cylinder or an electric push rod. The telescopic end of the telescopic mechanism II 61 drives the hydraulic cavity 62 to move. The hydraulic cavity 62 drives the hydraulic pipe 51 to move. The hydraulic pipe 51 drives the hydraulic disc 52 to move. The hydraulic disc 52 drives the injection pipe 41 to move, so that the injection pipe 41 moves laterally, thereby further improving the movement of the injection pipe 41 and improving the stirring effect.
[0073] Furthermore, the power mechanism I is started, and the output shaft of the power mechanism I begins to rotate. The output shaft of the power mechanism I drives the swing bracket 16 to swing, and the swing bracket 16 drives the swing cylinder 15 to move, so that the swing cylinder 15 swings and drives the injection pipe 41 to swing, further improving the stirring effect. The elastic cylinder 14 is preferably made of an elastic material, such as rubber.
[0074] After the antibacterial whitening toothpaste raw materials are mixed, when it is necessary to discharge the antibacterial whitening toothpaste, the telescopic mechanism I25 is activated. The telescopic mechanism I25 can be a hydraulic cylinder or an electric push rod. The telescopic end of the telescopic mechanism I25 drives the extrusion plate 22 to move, so that the extrusion plate 22 slides in the swing cylinder 15, the elastic cylinder 14 and the mixing cylinder 12. The two extrusion plates 22 approach each other and extrude the antibacterial whitening toothpaste.
[0075] Simultaneously, the telescopic mechanism II 61 is activated. The telescopic end of the telescopic mechanism II 61 drives multiple injection pipes 41 to move, so that the multiple injection pipes 41 move into the rotating ring 32. Each injection pipe 41 is equipped with a one-way mechanism at its end. The one-way mechanism is used to restrict the flow of antibacterial whitening toothpaste raw materials, ensuring that the antibacterial whitening toothpaste raw materials can only enter the mixing drum 12 from the injection pipe 41, and cannot enter the injection pipe 41 from the mixing drum 12. Thus, the multiple injection pipes 41 block the rotating ring 32.
[0076] When the power mechanism III is started, the output shaft of the power mechanism III begins to rotate. The output shaft of the power mechanism III drives the discharge chamber 71 to rotate, so that the discharge hole II 72 and the discharge hole I 13 coincide, and the antibacterial whitening toothpaste in the mixing drum 12 is discharged.
[0077] Furthermore, the two extrusion discs 22 come close together and fit together, thereby expelling all the antibacterial whitening toothpaste from the mixing drum 12, ensuring that there is no residue in the mixing drum 12, making it convenient for the next processing.
Claims
1. A method for preparing an antibacterial whitening toothpaste, characterized in that: The method includes the following steps: Step 1: Pre-mix and stir the powdered and paste-like ingredients of the antibacterial whitening toothpaste separately; Step 2: Pass the mixed powdered raw materials into the injection pipe (82), and inject them into the mixing drum (12) through multiple injection pipes (41) for mixing; Step 3: Pass the mixed paste-like raw material into the injection pipe (82), and inject it into the mixing drum (12) through multiple injection pipes (41) for mixing; Step 4: The powdered and paste-like ingredients are mixed to form an antibacterial whitening toothpaste.
2. The method of preparing an antibacterial whitening toothpaste according to claim 1, characterized in that: A device support (11) is fixedly connected to the stirring drum (12). Multiple discharge holes I (13) are provided on the stirring drum (12). Elastic cylinders (14) are fixedly connected to both the front and rear sides of the stirring drum (12). Swing cylinders (15) are fixedly connected to the outer sides of the two elastic cylinders (14). Two swing supports (16) are rotatably connected to the device support (11). The two swing cylinders (15) are fixedly connected to the two swing supports (16) respectively.
3. The method for preparing an antibacterial whitening toothpaste according to claim 2, characterized in that: Both swing cylinders (15) are slidably connected to extrusion discs (22), and both extrusion discs (22) are rotatably connected to rotating discs (21). Both rotating discs (21) have multiple sliding grooves I (23) on their outer sides and multiple sliding grooves II (24) on their inner sides. Both swing supports (16) are fixedly connected to telescopic mechanisms I (25). The telescopic ends of the two telescopic mechanisms I (25) are fixedly connected to the two extrusion discs (22) respectively. Both extrusion discs (22) can slide into the mixing cylinder (12).
4. The method for preparing an antibacterial whitening toothpaste according to claim 3, characterized in that: Each sliding groove II (24) is slidably connected to a sliding block (31), and each sliding block (31) is rotatably connected to a rotating ring (32).
5. The method for preparing an antibacterial whitening toothpaste according to claim 4, characterized in that: Each extrusion disc (22) is fixedly connected to a telescopic mechanism II (61), and each telescopic mechanism II (61) is fixedly connected to a hydraulic cavity (62) at its telescopic end. Each hydraulic cavity (62) is fixedly connected to a telescopic mechanism III (63), and each telescopic mechanism III (63) is fixedly connected to a reciprocating plate (64) at its telescopic end. The reciprocating plate (64) is slidably connected inside the hydraulic cavity (62), and each hydraulic cavity (62) is fixedly connected to a communicating cavity (65).
6. The method for preparing an antibacterial whitening toothpaste according to claim 5, characterized in that: Each connecting cavity (65) is rotatably connected to a hydraulic pipe (51), each hydraulic pipe (51) is fixedly connected to a hydraulic disc (52), and each hydraulic disc (52) is provided with multiple sliding holes (53). The connecting cavity (65) and the hydraulic pipe (51) are connected, and the hydraulic pipe (51) and the sliding hole (53) are connected.
7. The method for preparing an antibacterial whitening toothpaste according to claim 6, characterized in that: Each sliding hole (53) is slidably connected to a push block (42), and each push block (42) is fixedly connected to an injection pipe (41). Multiple injection pipes (41) are slidably connected to multiple rotating rings (32). Each hydraulic pipe (51) is fixedly connected to an injection pipe (82), and each injection pipe (82) is fixedly connected to an injection cavity (81). The injection pipe (41) is slidably connected to the corresponding injection cavity (81), and the injection cavity (81) and the injection pipe (41) are connected.
8. The method for preparing an antibacterial whitening toothpaste according to claim 7, characterized in that: Each injection pipe (41) is equipped with a one-way mechanism at its end.
9. The method for preparing an antibacterial whitening toothpaste according to claim 2, characterized in that: The mixing drum (12) is rotatably connected to a discharge chamber (71), and the discharge chamber (71) is provided with multiple discharge holes II (72). The discharge holes II (72) can be misaligned or overlapped with the discharge holes I (13). The discharge chamber (71) is fixedly connected to a discharge pipe (73).
10. An antibacterial whitening toothpaste prepared using the method for preparing antibacterial whitening toothpaste according to claim 1, characterized in that: The components of this antibacterial whitening toothpaste are formulated in the following weight proportions: 50 to 55 parts gypsum powder; 12 to 15 parts thickener; 10 to 13 parts foaming agent; 10 to 12 parts herbal extract; 1 to 2 parts citric acid; 0.5 to 0.8 parts menthol; 8 to 15 parts purified water; 7 to 15 parts glycerin; 5 to 7 parts fragrance; 6 to 8 parts sodium saccharin; and 5 to 8 parts humectant.