Toothpaste and processing method thereof

By coordinating the rotation of the grinding roller, mixing drum, and filtering drum in the toothpaste processing device, the low efficiency caused by the step-by-step processing of toothpaste raw materials is solved, and synchronous mixing, grinding, and filtering are achieved, thereby improving the toothpaste processing efficiency.

CN121797149APending Publication Date: 2026-04-07朱连平
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-02
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In the current toothpaste processing, the mixing, crushing and filtering of toothpaste raw materials are carried out in separate steps, resulting in low processing efficiency.

Method used

A toothpaste processing method and apparatus are adopted, which realizes the synchronous mixing, crushing and filtering of toothpaste raw materials through the coordinated rotation of crushing roller, stirring cylinder and filtering cylinder. Servo motor drives the rotation of each component and the motion path and state are adjusted by telescopic mechanism to improve processing efficiency.

Benefits of technology

It enables the simultaneous completion of the mixing, crushing and filtering processes of toothpaste raw materials, significantly improving processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of toothpaste, in particular to toothpaste and a processing method thereof.The method comprises the following steps that S1, toothpaste raw materials are placed in a processing barrel, and a grinding roller, a stirring barrel and a filtering barrel are driven to rotate; s2, a stirring barrel rotates to mix and stir the toothpaste raw materials, and a grinding roller and the stirring barrel are matched to grind the toothpaste raw materials; s3, the grinding roller and the filter cylinder are matched to filter and extract the toothpaste raw materials; the toothpaste comprises the following raw material components in parts by weight: 30-35 parts of a friction agent; 2-3 parts of a panax notoginseng extract; 15 to 16 parts of a wetting agent; 1-2.5 parts of a foaming agent; 1-2 parts of essence; 8 to 12 parts of deionized water; 0.5 to 1 part of an adhesive; and mixing, grinding and filtering of toothpaste raw materials can be synchronously completed, so that the processing efficiency is improved.
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Description

Technical Field

[0001] This invention relates to the field of toothpaste, and more specifically to a toothpaste and its processing method. Background Technology

[0002] Toothpaste is a paste-like product applied to the surface of human teeth through friction, primarily for cleaning. It is generally gel-like and is usually applied to a toothbrush. The mechanical friction of the toothbrush cleans the tooth surface and surrounding areas, leaving the mouth clean and refreshed. In current technology, the preparation of toothpaste often requires processing the raw materials in steps: first, mixing and stirring the raw materials, then crushing the mixed raw materials, and finally filtering the crushed raw materials. This preparation method is too inefficient. If the mixing, crushing, and filtering processes of the toothpaste raw materials could be completed simultaneously, the processing efficiency of toothpaste could be improved. Summary of the Invention

[0003] The purpose of this invention is to provide a toothpaste and its processing method, which can simultaneously complete the mixing, crushing and filtering of toothpaste raw materials, thereby improving processing efficiency.

[0004] The objective of this invention is achieved through the following technical solution:

[0005] A toothpaste processing method, the method comprising the following steps:

[0006] S1: Place the toothpaste raw material in the processing cylinder and drive the grinding roller, stirring cylinder and filter cylinder to rotate;

[0007] S2: The mixing drum rotates to mix and stir the toothpaste raw materials, and the grinding roller and the mixing drum work together to grind the toothpaste raw materials;

[0008] S3: The roller and filter cylinder work together to filter and extract the toothpaste raw materials;

[0009] S4: Drive the rotating disc to rotate, and the rotating disc drives the crushing roller, mixing cylinder and filter cylinder to rotate;

[0010] S5: While the rolling roller and the mixing drum revolve around the axis of the rotating disk, the rolling roller and the mixing drum rotate on their own axis, and the rolling roller and the mixing drum crush the toothpaste raw material on the path.

[0011] S6: While the crushing roller and the filter cylinder revolve around the axis of the rotating disk, the crushing roller and the filter cylinder rotate on their own axis, crushing the toothpaste raw material on the path.

[0012] S7: Drive telescopic mechanisms II and III to move;

[0013] S8: The telescopic end of telescopic mechanism II drives the rolling roller to move, and the telescopic end of telescopic mechanism III drives the filter cylinder or the mixing cylinder to move.

[0014] S9: Increase the operating status of the crushing roller and the filter cylinder and the movement path in coordination with crushing, and increase the operating status of the crushing roller and the mixing cylinder and the movement path in coordination with crushing to improve the crushing and mixing efficiency of toothpaste raw materials.

[0015] A toothpaste processing device includes a device support, a processing cylinder rotatably connected to the device support, a power mechanism I for driving the processing cylinder to rotate fixedly connected to the device support, the power mechanism I preferably being a servo motor, a lead screw I rotatably connected to the device support, and a power mechanism II for driving the lead screw I to rotate fixedly connected to the device support, the power mechanism II preferably being a servo motor.

[0016] The device support is slidably connected to a telescopic mechanism I, which is threadedly connected to a lead screw I. A lifting bracket is fixedly connected to the telescopic end of the telescopic mechanism I, and a lead screw II is rotatably connected to the lifting bracket. A power mechanism III that drives the lead screw II to rotate is fixedly connected to the lifting bracket. The power mechanism III is preferably a servo motor.

[0017] A horizontal support is slidably connected to the lifting support, and the horizontal support is threadedly connected to the lead screw II. A filter disc is fixedly connected to the horizontal support.

[0018] A rotating disk is rotatably connected to the transverse support, and a power mechanism IV for driving the rotating disk to rotate is fixedly connected to the transverse support. The power mechanism IV is preferably a servo motor. Multiple telescopic mechanisms II are fixedly connected to the rotating disk, and a telescopic mechanism III is fixedly connected to each telescopic mechanism II.

[0019] Each telescopic mechanism II has a rolling roller rotatably connected to its telescopic end, and a power mechanism V for driving the rolling roller to rotate is fixedly connected to the telescopic end of the telescopic mechanism II. The power mechanism V is preferably a servo motor.

[0020] It also includes multiple filter cylinders and multiple stirring cylinders, which are rotatably connected to the telescopic ends of multiple telescopic mechanisms III. The telescopic ends of telescopic mechanisms III are fixedly connected to a power mechanism VI that drives the filter cylinders or stirring cylinders to rotate. The power mechanism VI is preferably a servo motor.

[0021] The filter cartridge is fixedly connected to an extraction pipe. The inside of the filter cartridge is hollowed out, and the bottom of the filter cartridge is open. The bottom of the filter cartridge is in contact with the filter disc.

[0022] The stirring drum is provided with multiple circulation holes, the interior of the stirring drum is hollowed out, the bottom of the stirring drum is open, a spiral shaft is rotatably connected inside the stirring drum, and a power mechanism VII for driving the spiral shaft to rotate is fixedly connected to the stirring drum. The power mechanism VII is preferably a servo motor, and the bottom of the stirring drum is located above the filter disc.

[0023] A toothpaste, wherein the raw material components are proportioned by weight as follows: 30 to 35 parts abrasive; 2 to 3 parts Panax notoginseng extract; 15 to 16 parts humectant; 1 to 2.5 parts foaming agent; 1 to 2 parts fragrance; 8 to 12 parts deionized water; and 0.5 to 1 part binder. Attached Figure Description

[0024] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.

[0025] Figure 1 This is a schematic diagram of the toothpaste processing method of the present invention;

[0026] Figure 2 This is a schematic diagram of the toothpaste processing method of the present invention;

[0027] Figure 3 This is a schematic diagram of the toothpaste processing method of the present invention;

[0028] Figure 4 This is a schematic diagram of the toothpaste processing device of the present invention;

[0029] Figure 5 This is a schematic diagram of the device support structure of the present invention;

[0030] Figure 6 This is a schematic diagram of the lifting support structure of the present invention;

[0031] Figure 7 This is a schematic diagram of the filter disc structure of the present invention;

[0032] Figure 8 This is a schematic diagram of the rotating disk structure of the present invention;

[0033] Figure 9 This is a schematic diagram of the rotating disk structure of the present invention;

[0034] Figure 10 This is a schematic diagram of the rotating disk structure of the present invention;

[0035] Figure 11 This is a schematic diagram of the connection structure between the rolling roller and the mixing cylinder of the present invention;

[0036] Figure 12 This is a schematic diagram of the connection structure between the rolling roller and the mixing cylinder of the present invention;

[0037] Figure 13 This is a schematic diagram of the connection structure between the crushing roller and the filter cylinder of the present invention;

[0038] Figure 14 This is a schematic diagram of the connection structure between the rolling roller and the filter cylinder of the present invention.

[0039] In the picture:

[0040] Device support 11; processing cylinder 12; lead screw I 13;

[0041] Telescopic mechanism I 21; Lifting bracket 22; Lead screw II 23;

[0042] Horizontal movement bracket 31; filter disc 32;

[0043] Rotating disk 41; Telescopic mechanism II 42; Telescopic mechanism III 43;

[0044] Roller roller 51;

[0045] Filter cartridge 61; extraction pipe 62;

[0046] 71. Stirring drum; 72. Circulation hole; 73. Spiral shaft. Detailed Implementation

[0047] The present invention will now be described in further detail with reference to the accompanying drawings.

[0048] like Figures 1 to 3 As shown below, the steps and functions of a toothpaste processing method are explained in detail.

[0049] A toothpaste processing method, the method comprising the following steps:

[0050] S1: Place the toothpaste raw material in the processing cylinder 12 and drive the rolling roller 51, the stirring cylinder 71 and the filter cylinder 61 to rotate;

[0051] S2: The mixing drum 71 rotates to mix and stir the toothpaste raw materials, and the rolling roller 51 and the mixing drum 71 cooperate to roll the toothpaste raw materials;

[0052] S3: The roller 51 and the filter cylinder 61 work together to filter and extract the toothpaste raw materials;

[0053] S4: Drive the rotating disk 41 to rotate, and the rotating disk 41 drives the rolling roller 51, the mixing drum 71 and the filter drum 61 to rotate;

[0054] S5: While the rolling roller 51 and the mixing drum 71 revolve around the axis of the rotating disk 41, the rolling roller 51 and the mixing drum 71 rotate on their own axis, and the rolling roller 51 and the mixing drum 71 crush the toothpaste raw material on the path.

[0055] S6: While the crushing roller 51 and the filter cylinder 61 revolve around the axis of the rotating disk 41, the crushing roller 51 and the filter cylinder 61 rotate on their own axis, and the crushing roller 51 and the filter cylinder 61 crush the toothpaste raw material on the path.

[0056] S7: Drive telescopic mechanism II 42 and telescopic mechanism III 43 to move;

[0057] S8: The telescopic end of telescopic mechanism II 42 drives the rolling roller 51 to move, and the telescopic end of telescopic mechanism III 43 drives the filter cylinder 61 or the mixing cylinder 71 to move.

[0058] S9: Increase the operating state of the crushing roller 51 and the filter cylinder 61 and the movement path for crushing, increase the operating state of the crushing roller 51 and the mixing cylinder 71 and the movement path for crushing, and improve the crushing and mixing efficiency of toothpaste raw materials.

[0059] like Figures 1 to 3 As shown, the toothpaste raw materials can be continuously stirred by the continuous movement of the crushing roller 51, the stirring cylinder 71 and the filter cylinder 61. At the same time, the crushing roller 51 and the filter cylinder 61 cooperate to continuously crush the toothpaste raw materials on the path. The filter cylinder 61 can also cooperate with the filter disc 32 to filter and separate the toothpaste raw materials after stirring and crushing. Thus, the mixing, crushing and filtering of toothpaste raw materials are completed simultaneously, thereby improving the processing efficiency.

[0060] A toothpaste, wherein the raw material components are proportioned by weight as follows: 30 to 35 parts abrasive; 2 to 3 parts Panax notoginseng extract; 15 to 16 parts humectant; 1 to 2.5 parts foaming agent; 1 to 2 parts fragrance; 8 to 12 parts deionized water; and 0.5 to 1 part binder.

[0061] like Figures 4 to 14 As shown, in order to facilitate the implementation of a toothpaste processing method, a toothpaste processing device is designed. The structure and function of the toothpaste processing device are described in detail below.

[0062] A toothpaste processing device includes a device support 11, a processing cylinder 12 rotatably connected to the device support 11, a power mechanism I for driving the processing cylinder 12 to rotate fixedly connected to the device support 11, the power mechanism I preferably being a servo motor, a lead screw I 13 rotatably connected to the device support 11, and a power mechanism II for driving the lead screw I 13 to rotate fixedly connected to the device support 11, the power mechanism II preferably being a servo motor.

[0063] A telescopic mechanism I21 is slidably connected to the device bracket 11. The telescopic mechanism I21 is threadedly connected to the lead screw I13. A lifting bracket 22 is fixedly connected to the telescopic end of the telescopic mechanism I21. A lead screw II23 is rotatably connected to the lifting bracket 22. A power mechanism III that drives the lead screw II23 to rotate is fixedly connected to the lifting bracket 22. The power mechanism III is preferably a servo motor.

[0064] A horizontal support 31 is slidably connected to the lifting support 22. The horizontal support 31 is threadedly connected to the lead screw II 23. A filter disc 32 is fixedly connected to the horizontal support 31.

[0065] A rotating disk 41 is rotatably connected to the transverse support 31. A power mechanism IV for driving the rotating disk 41 to rotate is fixedly connected to the transverse support 31. The power mechanism IV is preferably a servo motor. Multiple telescopic mechanisms II 42 are fixedly connected to the rotating disk 41. Each telescopic mechanism II 42 is fixedly connected to a telescopic mechanism III 43.

[0066] Each telescopic mechanism II42 has a rolling roller 51 rotatably connected to its telescopic end. A power mechanism V for driving the rolling roller 51 to rotate is fixedly connected to the telescopic end of the telescopic mechanism II42. The power mechanism V is preferably a servo motor.

[0067] It also includes multiple filter cylinders 61 and multiple stirring cylinders 71, which are rotatably connected to the telescopic ends of multiple telescopic mechanisms III 43. The telescopic ends of the telescopic mechanisms III 43 are fixedly connected to a power mechanism VI that drives the filter cylinders 61 or stirring cylinders 71 to rotate. The power mechanism VI is preferably a servo motor.

[0068] The filter cylinder 61 is fixedly connected to the extraction pipe 62. The filter cylinder 61 is hollow inside and the bottom of the filter cylinder 61 is open. The bottom of the filter cylinder 61 is in contact with the filter plate 32.

[0069] The stirring drum 71 is provided with multiple circulation holes 72. The interior of the stirring drum 71 is hollowed out and the bottom of the stirring drum 71 is open. A spiral shaft 73 is rotatably connected inside the stirring drum 71. A power mechanism VII for driving the spiral shaft 73 to rotate is fixedly connected to the stirring drum 71. The power mechanism VII is preferably a servo motor. The bottom of the stirring drum 71 is located on the upper side of the filter disc 32.

[0070] When using, such as Figure 4As shown, toothpaste raw materials are placed in processing cylinder 12. Power mechanisms V and VI are started. The output shaft of power mechanism V starts to rotate, driving the grinding roller 51 to rotate. The output shaft of power mechanism VI starts to rotate, driving the filter cylinder 61 or the stirring cylinder 71 to rotate. Power mechanism IV is started, and its output shaft starts to rotate, driving the rotating disk 41 to rotate. The rotating disk 41 drives the telescopic mechanism II 42 to rotate, which in turn drives the telescopic mechanism III 43 to rotate. The telescopic mechanism II 42 drives the grinding roller 51 to rotate, and the telescopic mechanism III 43 drives the filter cylinder 61 or the stirring cylinder 71 to rotate. This causes the grinding roller 51, filter cylinder 61, and stirring cylinder 71 to rotate, and they rotate within processing cylinder 12, thereby mixing and stirring the toothpaste raw materials within processing cylinder 12.

[0071] At the same time, the crushing roller 51 and the corresponding filter cylinder 61 rotate simultaneously. The crushing roller 51 and the filter cylinder 61 rotate in coordination. The crushing roller 51 and the filter cylinder 61 rotate in opposite directions. As the rotating disk 41 drives the crushing roller 51 and the filter cylinder 61 to revolve around the center, the crushing roller 51 and the filter cylinder 61 rotate on their own axis. The crushing roller 51 and the filter cylinder 61 crush the toothpaste raw material on the path.

[0072] At the same time, the crushing roller 51 and the corresponding mixing drum 71 rotate simultaneously. The crushing roller 51 and the mixing drum 71 rotate in coordination. The crushing roller 51 and the mixing drum 71 rotate in opposite directions. As the rotating disk 41 drives the crushing roller 51 and the mixing drum 71 to revolve, the crushing roller 51 and the mixing drum 71 rotate on their own axis. The crushing roller 51 and the mixing drum 71 crush the toothpaste raw material on the path.

[0073] Simultaneously, telescopic mechanisms II 42 and III 43 are activated. These mechanisms can be hydraulic cylinders or electric push rods. The telescopic ends of these mechanisms drive the corresponding compaction rollers 51, filter cylinders 61, and mixing cylinders 71 to move, thereby adjusting their positions, increasing their movement, and extending their movement paths. This improves the mixing and compaction effect.

[0074] Furthermore, depending on different usage requirements, the telescopic mechanism II 42 or the telescopic mechanism III 43 can be activated separately to adjust the relative distance between the rolling roller 51 and the filter cylinder 61 or the relative distance between the rolling roller 51 and the mixing cylinder 71, thereby meeting different processing requirements.

[0075] Furthermore, the power mechanism VII is activated, and the output shaft of the power mechanism VII begins to rotate. The output shaft of the power mechanism VII drives the spiral shaft 73 to rotate. The rotation of the spiral shaft 73 generates a downward pushing force, which causes the toothpaste raw material in the mixing drum 71 to move downward. The toothpaste raw material continuously enters the mixing drum 71 from the circulation hole 72, thus forming a circulation and increasing the mixing effect.

[0076] Furthermore, when the extraction pipe 62 is activated, the lower end of the filter cylinder 61 is attached to the filter plate 32. When the extraction pipe 62 extracts the toothpaste raw material, the toothpaste raw material first passes through the filter plate 32 and then enters the filter cylinder 61, thereby completing the filtration of the toothpaste raw material.

[0077] Furthermore, the filter cylinder 61 moves continuously while the filter disc 32 remains stationary. During the filtration process, some larger toothpaste materials may become trapped in the filter holes of the filter disc 32 due to suction, preventing the filter disc 32 from effectively filtering. Since both the filter cylinder 61 and the stirring cylinder 71 are constantly rotating, after the filter cylinder 61 has moved, the stirring cylinder 71 will also move to the same position as the filter cylinder 61. The rotation of the spiral shaft 73 inside the stirring cylinder 71 causes the toothpaste materials to move downwards, impacting the filter holes of the filter disc 32 and causing any trapped toothpaste materials to detach from the filter holes, thus ensuring effective filtration by the filter disc 32.

[0078] Furthermore, the telescopic mechanism I21 is activated. Telescopic mechanism I21 can be a hydraulic cylinder or an electric push rod. The telescopic end of telescopic mechanism I21 drives the lifting bracket 22 to move, thereby increasing the movement of the compaction roller 51, filter cylinder 61, and mixing cylinder 71, and increasing their movement paths. This improves the mixing and compaction effect.

[0079] Furthermore, power mechanisms II and III are activated. The output shaft of power mechanism II drives lead screw I13 to rotate, and the output shaft of power mechanism III drives lead screw II23 to rotate. When lead screw I13 rotates, it drives telescopic mechanism I21 to move through the thread. When lead screw II23 rotates, it drives transverse support 31 to move through the thread. This increases the movement of the compaction roller 51, filter cylinder 61, and mixing cylinder 71, and increases the movement path of the compaction roller 51, filter cylinder 61, and mixing cylinder 71, thereby improving the mixing effect and the compaction effect.

Claims

1. A toothpaste processing method, characterized in that: The method includes the following steps: S1: Place the toothpaste raw material in the processing cylinder (12) and drive the rolling roller (51), stirring cylinder (71) and filter cylinder (61) to rotate; S2: The mixing drum (71) rotates to mix and stir the toothpaste raw materials, and the rolling roller (51) and the mixing drum (71) work together to roll the toothpaste raw materials; S3: The roller (51) and filter cylinder (61) work together to filter and extract the toothpaste raw materials.

2. The toothpaste processing method according to claim 1, characterized in that: The method also includes the following steps: S4: Drive the rotating disk (41) to rotate, and the rotating disk (41) drives the rolling roller (51), the mixing drum (71) and the filter drum (61) to rotate; S5: While the rolling roller (51) and the mixing drum (71) revolve around the axis of the rotating disk (41), the rolling roller (51) and the mixing drum (71) rotate on their own axis, and the rolling roller (51) and the mixing drum (71) crush the toothpaste raw material on the path. S6: While the rolling roller (51) and the filter cylinder (61) revolve around the axis of the rotating disk (41), the rolling roller (51) and the filter cylinder (61) rotate on their own axis, and the rolling roller (51) and the filter cylinder (61) crush the toothpaste raw material on the path.

3. The toothpaste processing method according to claim 1, characterized in that: The method also includes the following steps: S7: Drive telescopic mechanism II (42) and telescopic mechanism III (43) to move; S8: The telescopic end of telescopic mechanism II (42) drives the rolling roller (51) to move, and the telescopic end of telescopic mechanism III (43) drives the filter cylinder (61) or the stirring cylinder (71) to move. S9: Increase the operating state of the rolling roller (51) and the filter cylinder (61) and the movement path for rolling, increase the operating state of the rolling roller (51) and the mixing cylinder (71) and the movement path for rolling, and improve the rolling and mixing efficiency of toothpaste raw materials.

4. The toothpaste processing method according to claim 1, characterized in that: The processing cylinder (12) is rotatably connected to the device support (11). A lead screw I (13) is rotatably connected to the device support (11). A telescopic mechanism I (21) is slidably connected to the device support (11). The telescopic mechanism I (21) is threadedly connected to the lead screw I (13). A lifting bracket (22) is fixedly connected to the telescopic end of the telescopic mechanism I (21). A lead screw II (23) is rotatably connected to the lifting bracket (22).

5. A toothpaste processing method according to claim 4, characterized in that: The lifting bracket (22) is slidably connected to a transverse support (31), which is threadedly connected to the lead screw II (23). A filter disc (32) is fixedly connected to the transverse support (31).

6. A toothpaste processing method according to claim 5, characterized in that: A rotating disk (41) is rotatably connected to the transverse support (31), and multiple telescopic mechanisms II (42) are fixedly connected to the rotating disk (41). Each telescopic mechanism II (42) is fixedly connected to a telescopic mechanism III (43).

7. A toothpaste processing method according to claim 6, characterized in that: Each telescopic mechanism II (42) has a rolling roller (51) rotatably connected to its telescopic end, and also includes multiple filter cylinders (61) and multiple stirring cylinders (71). The multiple filter cylinders (61) and multiple stirring cylinders (71) are rotatably connected to the telescopic ends of multiple telescopic mechanisms III (43).

8. A toothpaste processing method according to claim 7, characterized in that: The filter cylinder (61) is fixedly connected to an extraction pipe (62). The filter cylinder (61) is hollowed out inside and the bottom of the filter cylinder (61) is open. The bottom of the filter cylinder (61) is in contact with the filter plate (32).

9. A toothpaste processing method according to claim 8, characterized in that: The stirring cylinder (71) is provided with multiple circulation holes (72), the interior of the stirring cylinder (71) is hollowed out, the bottom of the stirring cylinder (71) is open, a spiral shaft (73) is rotatably connected inside the stirring cylinder (71), and the bottom of the stirring cylinder (71) is located above the filter plate (32).

10. Toothpaste processed using the toothpaste processing method according to claim 1, characterized in that: The toothpaste contains the following raw materials in the following weight proportions: 30 to 35 parts abrasive; 2 to 3 parts Panax notoginseng extract; 15 to 16 parts humectant; 1 to 2.5 parts foaming agent; 1 to 2 parts fragrance; and 8 to 12 parts deionized water. 0.5 to 1 part adhesive.