Anti-dandruff shampoo and preparation process thereof
By heating in a horizontal mixing tank and utilizing a design with multiple stirring shafts and plates, the intermittent small-volume addition and uniform stirring of anti-dandruff shampoo raw materials are achieved, solving the problem of low mixing efficiency in existing technologies and improving preparation speed and effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 徐敬宏
- Filing Date
- 2023-08-19
- Publication Date
- 2026-04-17
AI Technical Summary
In the preparation of anti-dandruff shampoo, the existing technology reduces the mixing efficiency by mixing multiple raw materials at once, and cannot guarantee that small amounts are mixed each time.
The design employs a horizontal mixing tank for heating and utilizes multiple mixing shafts and plates, combined with bevel gear transmission and a geared motor, to achieve intermittent, small-volume addition and uniform mixing of various raw materials, thus shortening the mixing time.
It improves the mixing efficiency of various raw materials, shortens the preparation time of anti-dandruff shampoo, and ensures uniform mixing of raw materials and anti-dandruff effect.
Smart Images

Figure CN121869157A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of shampoo preparation technology, and more specifically to an anti-dandruff shampoo and its preparation process. Background Technology
[0002] Shampoo is used to cleanse the scalp and hair of bodily oils, sweat, shed scalp cells, as well as external dust, microorganisms, styling product residue, and unpleasant odors, keeping the scalp and hair clean and beautiful. With social development, shampoo has also acquired more uses, such as inhibiting hair loss and removing dandruff. However, current technology cannot guarantee that multiple ingredients are mixed in small amounts each time when preparing anti-dandruff shampoo. Mixing multiple ingredients together at once will reduce the mixing efficiency of the ingredients. Summary of the Invention
[0003] The purpose of this invention is to provide an anti-dandruff shampoo and its preparation process. This method can ensure that multiple raw materials are mixed in small amounts each time, further accelerating the preparation speed of anti-dandruff shampoo.
[0004] The objective of this invention is achieved through the following technical solution:
[0005] A process for preparing an anti-dandruff shampoo, the process comprising the following steps:
[0006] Step 1: Add deionized water, detergent, additives, solid raw materials and multiple auxiliary raw materials to the mixing tank in proportion;
[0007] Step 2: Mix the various raw materials in the mixing tank.
[0008] Step 3: Cool the mixed ingredients and add the nutritional additives and spices into the mixing tank.
[0009] Step 4: Perform secondary mixing on the various raw materials in the mixing tank;
[0010] Step 5: Discharge and weigh the mixed raw materials;
[0011] Step 6: Allow the weighed raw materials to stand for a period of time.
[0012] Step 7: Fill the raw materials after they have been left to stand to complete the preparation of the anti-dandruff shampoo.
[0013] The auxiliary ingredients in step one include ginger juice, salicylic acid, ketoconazole, and selenium disulfide.
[0014] The mixing tank needs to be heated in step two.
[0015] The mixing horizontal tank has multiple main material storage chambers evenly and fixedly connected to it. A vertical cavity is also fixedly connected to the mixing horizontal tank. Multiple auxiliary material storage chambers are evenly and fixedly connected to the vertical cavity. A bearing seat is fixedly connected inside the mixing horizontal tank. Two mixing shafts are rotatably connected to the bearing seat. Multiple mixing plates are fixedly connected to each of the two mixing shafts. Each mixing plate has a notched ring plate fixedly connected to it. The multiple notched ring plates are rotatably connected inside the mixing horizontal tank.
[0016] Preferably, a linkage shaft is rotatably connected to the bearing housing, a bevel gear I is fixedly connected to the linkage shaft, and bevel gear II is fixedly connected to the inner ends of both stirring shafts. The bevel gear I meshes with the two bevel gear II for transmission. Multiple rotating plates are fixedly connected to the linkage shaft. The multiple rotating plates contact and rotatably connect to the vertical cavity. A reduction motor is fixedly connected to the vertical cavity, and the output shaft of the reduction motor is fixedly connected to the linkage shaft.
[0017] Preferably, a horizontal stirring plate is fixedly connected to the lower part of the bevel gear I, and the lower end of the horizontal stirring plate is rotatably connected to the stirring tank.
[0018] Preferably, the mixing tank is fixedly connected to an inclined cone cavity, and two sealing slide plates are slidably connected inside the inclined cone cavity. Each of the two sealing slide plates is fixedly connected to a telescopic rod, and each of the two telescopic rods is fixedly connected to the mixing tank.
[0019] Preferably, a ring support plate is fixedly connected to the horizontal mixing tank, the ring support plate is slidably connected to the base support leg, a fixed sliding pipe is fixedly connected to the base support leg, and the inclined cone discharge cavity is slidably connected to the fixed sliding pipe.
[0020] Preferably, the outer ends of both stirring shafts are fixedly connected to polygonal rotating plates, and the two ends of the base legs are fixedly connected to solid contact plates, with the two polygonal rotating plates respectively contacting the two solid contact plates.
[0021] Preferably, the anti-dandruff shampoo is composed of deionized water, detergent, additives, solid raw materials, ginger juice, salicylic acid, ketoconazole and selenium disulfide. Attached Figure Description
[0022] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0023] Figure 1 This is a flowchart illustrating the manufacturing process of an anti-dandruff shampoo.
[0024] Figure 2 This is a schematic diagram of a preparation embodiment of an anti-dandruff shampoo;
[0025] Figure 3 This is a partial structural schematic diagram of an embodiment of the preparation of an anti-dandruff shampoo;
[0026] Figure 4 This is a schematic diagram of an embodiment of mixing multiple raw materials;
[0027] Figure 5 This is a schematic diagram of the structure of the horizontal mixing tank and the vertical cavity of the present invention;
[0028] Figure 6 This is a schematic diagram of a specific structure for an embodiment of mixing multiple raw materials;
[0029] Figure 7 This is a partial structural schematic diagram of an embodiment of mixing multiple raw materials;
[0030] Figure 8 This is a structural schematic diagram of an embodiment that ensures the intermittent falling of multiple raw materials;
[0031] Figure 9 This is a schematic diagram of a structure for controlling the mixing and falling of multiple raw materials in an embodiment.
[0032] Figure 10 This is a schematic diagram of an embodiment that drives the horizontal mixing tank to vibrate. Detailed Implementation
[0033] The present invention will now be described in further detail with reference to the accompanying drawings.
[0034] The following is in conjunction with the appendix Figure 1 Detailed description of a dandruff shampoo preparation process, the process including the following steps:
[0035] Step 1: Add deionized water, detergent, additives, solid raw materials and multiple auxiliary raw materials to the mixing tank 101 in proportion;
[0036] Step 2: Mix the various raw materials in the mixing tank 101;
[0037] Step 3: Cool the mixed raw materials and add the nutritional additives and spices into the mixing tank 101;
[0038] Step 4: Perform secondary mixing on the various raw materials in the mixing tank 101;
[0039] Step 5: Discharge and weigh the mixed raw materials;
[0040] Step 6: Allow the weighed raw materials to stand for a period of time.
[0041] Step 7: Fill the raw materials after they have been left to stand to complete the preparation of the anti-dandruff shampoo.
[0042] The following is in conjunction with the appendix Figure 1In detail, the auxiliary ingredients in step one include ginger juice, salicylic acid, ketoconazole and selenium disulfide.
[0043] Furthermore, ginger juice can promote hair growth, while salicylic acid, ketoconazole, and selenium sulfide can remove dandruff, ensuring that the processed shampoo has both hair growth and dandruff-removing effects.
[0044] The following is in conjunction with the appendix Figure 1 In detail, the stirring tank 101 in step two needs to be heated.
[0045] Furthermore, under heating conditions, the mixing speed of multiple raw materials can be accelerated, thereby further improving the efficiency of mixing multiple raw materials.
[0046] According to the instruction manual Figure 2-8 In detail, the mixing horizontal tank 101 is uniformly and fixedly connected with multiple main material storage chambers 102 by welding. The mixing horizontal tank 101 is also uniformly and fixedly connected with vertical cavities 103 by welding. Multiple auxiliary material storage chambers 104 are uniformly and fixedly connected to the vertical cavities 103 by welding. A bearing seat 105 is uniformly and fixedly connected to the mixing horizontal tank 101 by welding. Two mixing shafts 106 are rotatably connected to the bearing seat 105 through bearing holes. Multiple mixing plates 107 are uniformly and fixedly connected to the two mixing shafts 106 by welding. Each mixing plate 107 is uniformly and fixedly connected with a notched ring plate 108 by welding. The multiple notched ring plates 108 are rotatably connected to the mixing horizontal tank 101 through straight cavities.
[0047] Furthermore, a heating plate is installed inside the mixing tank 101. When multiple raw materials are being mixed, the heating plate inside the mixing tank 101 will be activated to ensure that the multiple raw materials are mixed under heating, further shortening the mixing time. The mixing tank 101 can provide storage space for multiple raw materials and can be used for mixing and stirring within the mixing tank 101. Deionized water, detergents, additives, solid raw materials, nutritional additives, and spices can be stored in multiple main material storage chambers 102, and all of the main material storage chambers 102 are connected to the mixing tank 101. The vertical cavity 103 can provide fixed space for multiple auxiliary material storage chambers 104, which can store ginger juice, salicylic acid, ketoconazole, and selenium disulfide. The raw materials in the multiple main material storage chambers 102 and the auxiliary materials in the multiple auxiliary material storage chambers 104 can be added to the mixing tank 101 and stirred within the mixing tank 101. In the mixing process, the bearing housing 105 provides space for the rotation of the two stirring shafts 106, and the two stirring shafts 106 provide fixed space for the two sets of multiple stirring plates 107. The rotation of the two sets of multiple stirring plates 107 is used to mix the various raw materials and auxiliary materials in the mixing tank 101. The multiple notched ring plates 108 are all provided with notches. When the two sets of multiple stirring plates 107 rotate, they can drive the two sets of multiple notched ring plates 108 to rotate. When the notches of the two sets of multiple notched ring plates 108 rotate to the top, the various main materials in the multiple main material storage cavities 102 will leak out and enter the mixing tank 101. When the notches of the two sets of multiple notched ring plates 108 are not at the top, the various main materials in the multiple main material storage cavities 102 will not leak out. The advantage of this is that the various main materials are added to the mixing tank 101 in small amounts each time, which can reduce the stirring force on the various raw materials and further shorten the stirring time of the various raw materials.
[0048] First, various main ingredients are stored in multiple main ingredient storage chambers 102. Then, various auxiliary ingredients are added to multiple auxiliary ingredient storage chambers 104. At this time, the various raw materials will fall into the mixing tank 101, causing the two stirring shafts 106 to rotate, thereby driving the two sets of multiple stirring plates 107 to rotate, realizing the stirring treatment of the various raw materials in the mixing tank 101, and completing the uniform mixing treatment of the various raw materials. When the two sets of multiple stirring plates 107 rotate, they can drive the two sets of multiple notched ring plates 108 to rotate. When the two sets of multiple notched ring plates 108 rotate, they will drive multiple notches to rotate, thereby allowing the various auxiliary ingredients in the multiple main ingredient storage chambers 102 to be intermittently and slowly added into the mixing tank 101, ensuring that the various raw materials are stirred in small amounts each time. This can shorten the mixing time of the various raw materials and increase the mixing efficiency of the various raw materials.
[0049] According to the instruction manual Figure 2-4As detailed in section 6-8, a linkage shaft 201 is rotatably connected to the bearing housing 105 via a bearing hole. A bevel gear I202 is fixedly connected to the linkage shaft 201 by welding. Bevel gears II203 are fixedly connected to the inner ends of the two stirring shafts 106 by welding. The bevel gears I202 mesh with the two bevel gears II203 for transmission. Multiple rotating plates 401 are fixedly connected to the linkage shaft 201 by welding. The multiple rotating plates 401 contact and rotatably connect to the vertical cavity 103. A reduction motor 402 is fixedly connected to the vertical cavity 103 via a flange plate. The output shaft of the reduction motor 402 is fixedly connected to the linkage shaft 201 by a keyway and a snap ring.
[0050] Furthermore, the linkage shaft 201 can drive the bevel gear I202 to rotate. When the bevel gear I202 rotates, it can drive the two bevel gears II203 to rotate in the opposite direction, thereby driving the two stirring shafts 106 to rotate in the opposite direction. This completes the uniform mixing of various raw materials in the mixing tank 101. After starting the reduction motor 402, it can drive the linkage shaft 201 to rotate, which in turn drives the bevel gear I202 to rotate. It can also drive the multi-plate rotating plate 401 to rotate. The multi-plate rotating plate 401 can be used to seal multiple auxiliary material storage cavities 104. When the multi-plate rotating plate 401 rotates, it can intermittently seal multiple auxiliary material storage cavities 104, further ensuring that various auxiliary materials in the multiple auxiliary material storage cavities 104 can intermittently fall into the mixing tank 101. Ultimately, it ensures that various main materials and various auxiliary materials are intermittently added to the mixing tank 101 in small amounts.
[0051] According to the instruction manual Figure 2-4 Detailed descriptions in sections 6 and 7: A horizontal stirring plate 301 is fixedly connected to the lower part of the bevel gear I202 by welding, and the lower end of the horizontal stirring plate 301 is rotatably connected to the stirring tank 101 through a round hole.
[0052] Furthermore, when the bevel gear I202 rotates, it can drive the horizontal stirring plate 301 to rotate. When the horizontal stirring plate 301 rotates, it can stir the various raw materials in the middle of the stirring tank 101, ensuring that there are no dead corners in the stirring tank 101 and that all the various raw materials in the stirring tank 101 are stirred, thus achieving uniform mixing of the various raw materials.
[0053] According to the instruction manual Figure 2-4 In detail in section 9, the horizontal mixing tank 101 is fixedly connected to an inclined cone cavity 501 by welding. Two sealing slide plates 502 are slidably connected inside the inclined cone cavity 501 through notches. Each of the two sealing slide plates 502 is fixedly connected to a telescopic rod 503 by a flange plate. Both telescopic rods 503 are fixedly connected to the horizontal mixing tank 101 by a flange plate.
[0054] Furthermore, the mixing tank 101 has multiple discharge holes at its bottom. The inclined cone discharge cavity 501 covers the multiple discharge holes on the mixing tank 101. After the mixed raw materials are discharged through the multiple discharge holes on the mixing tank 101, they fall into the inclined cone discharge cavity 501 and are finally discharged through the inclined cone discharge cavity 501. Two sealing slide plates 502 can be used to seal the multiple discharge holes on the mixing tank 101. Two telescopic rods 503 can drive the two sealing slide plates 502 to slide. After the mixed raw materials in the mixing tank 101 are finished, the two telescopic rods 503 are retracted. At this time, the two sealing slide plates 502 will slide outward, thereby exposing the multiple discharge holes on the mixing tank 101. At this time, the mixed raw materials in the mixing tank 101 will be discharged through the multiple discharge holes on the mixing tank 101 and fall into the inclined cone discharge cavity 501. Finally, the mixed raw materials are discharged through the inclined cone discharge cavity 501.
[0055] According to the instruction manual Figure 2 , 3 In detail with reference to 10, the mixing horizontal tank 101 is fixedly connected to a ring support plate 601 by welding. The ring support plate 601 is slidably connected to the base support leg 602 by multiple square rods and multiple square cavities. The base support leg 602 is fixedly connected to a fixed sliding pipe 603 by welding. The inclined cone cavity 501 and the fixed sliding pipe 603 are slidably connected by a straight cavity.
[0056] Furthermore, the ring-fixed support plate 601 provides a fixed space for the mixing horizontal tank 101, while the base support leg 602 provides a sliding space for the ring-fixed support plate 601. The base support leg 602 can be used to fix the ring-fixed support plate 601 stably on the ground, completing the stable placement of the entire device. The ring-fixed support plate 601 can slide on the base support leg 602, thereby acting on the mixing horizontal tank 101, causing the mixing horizontal tank 101 to vibrate, further accelerating the mixing speed of various raw materials in the mixing horizontal tank 101. When the ring-fixed support plate 601 slides up and down, it will also drive the inclined cone discharge cavity 501 to rise and fall. When the inclined cone discharge cavity 501 rises and falls, the inclined cone discharge cavity 501 will slide within the fixed sliding pipe 603, but the fixed sliding pipe 603 is fixed, thereby ensuring that the raw material discharge position remains unchanged.
[0057] According to the instruction manual Figure 2 , 3 In detail in section 10, the outer ends of the two stirring shafts 106 are fixedly connected to polygonal rotating plates 701 by welding, and the two ends of the base support legs 602 are fixedly connected to solid contact support plates 702 by welding. The two polygonal rotating plates 701 are in contact with the two solid contact support plates 702 respectively.
[0058] Furthermore, both fixed contact plates 702 are equipped with support legs, the bottom surface of which is on the same plane as the bottom surface of the base support leg 602. This ensures that the two fixed contact plates 702 are firmly fixed. When the two stirring shafts 106 rotate, they can drive the two polygonal rotating plates 701 to rotate. When the two polygonal rotating plates 701 rotate, they will contact the two fixed contact plates 702. When the corners of the two polygonal rotating plates 701 contact the two fixed contact plates 702, they can drive the stirring horizontal tank 101 to move upward. When the plane of the two polygonal rotating plates 701 contacts the two fixed contact plates 702, the stirring horizontal tank 101 will fall back. This cycle can drive the stirring horizontal tank 101 to vibrate, ensuring that the various raw materials in the stirring horizontal tank 101 are stirred and vibrated at the same time. This can further accelerate the mixing speed of the various raw materials in the stirring horizontal tank 101 and shorten the preparation time of anti-dandruff shampoo.
Claims
1. A process for the preparation of an anti-dandruff shampoo characterized in that, The process includes the following steps: Step 1: Add deionized water, detergent, additives, solid raw materials and multiple auxiliary raw materials to the mixing tank (101) in proportion; Step 2: Stir the various raw materials in the mixing tank (101); Step 3: Cool the mixed raw materials and add the nutritional additives and spices into the mixing tank (101); Step 4: Perform secondary mixing on the various raw materials in the mixing tank (101); Step 5: Discharge and weigh the mixed raw materials; Step 6: Allow the weighed raw materials to stand for a period of time. Step 7: Fill the raw materials after they have been left to stand to complete the preparation of the anti-dandruff shampoo.
2. The process as claimed in claim 1, wherein the process is characterized by: The auxiliary ingredients in step one include ginger juice, salicylic acid, ketoconazole, and selenium disulfide.
3. The process as claimed in claim 1, wherein the process is characterized by: In step two, the mixing tank (101) needs to be heated.
4. The process as claimed in claim 1, wherein the process is characterized by: Multiple main material storage cavities (102) are uniformly fixedly connected to the horizontal mixing tank (101). A vertical cavity (103) is fixedly connected to the horizontal mixing tank (101). Multiple auxiliary material storage cavities (104) are uniformly fixedly connected to the vertical cavity (103). A bearing seat (105) is fixedly connected inside the horizontal mixing tank (101). Two mixing shafts (106) are rotatably connected to the bearing seat (105). Multiple mixing plates (107) are fixedly connected to each of the two mixing shafts (106). A notched ring plate (108) is fixedly connected to each mixing plate (107). Multiple notched ring plates (108) are rotatably connected inside the horizontal mixing tank (101).
5. The preparation process of an anti-dandruff shampoo according to claim 4, characterized in that: A linkage shaft (201) is rotatably connected to the bearing housing (105). A bevel gear I (202) is fixedly connected to the linkage shaft (201). A bevel gear II (203) is fixedly connected to the inner end of each of the two stirring shafts (106). The bevel gear I (202) meshes with the two bevel gears II (203) for transmission. A multi-plate rotating plate (401) is fixedly connected to the linkage shaft (201). The multi-plate rotating plate (401) contacts and is rotatably connected to the vertical cavity (103). A reduction motor (402) is fixedly connected to the vertical cavity (103). The output shaft of the reduction motor (402) is fixedly connected to the linkage shaft (201).
6. The preparation process of an anti-dandruff shampoo according to claim 5, characterized in that: A horizontal stirring plate (301) is fixedly connected below the bevel gear I (202), and the lower end of the horizontal stirring plate (301) is rotatably connected to the stirring tank (101).
7. The preparation process of an anti-dandruff shampoo according to claim 1, characterized in that: The horizontal mixing tank (101) is fixedly connected to an inclined cone cavity (501), and two sealing slide plates (502) are slidably connected inside the inclined cone cavity (501). Each of the two sealing slide plates (502) is fixedly connected to a telescopic rod (503), and both telescopic rods (503) are fixedly connected to the horizontal mixing tank (101).
8. The preparation process of an anti-dandruff shampoo according to claim 7, characterized in that: A ring support plate (601) is fixedly connected to the horizontal mixing tank (101). The ring support plate (601) is slidably connected to the base support leg (602). A fixed sliding pipe (603) is fixedly connected to the base support leg (602). The inclined cone discharge cavity (501) is slidably connected to the fixed sliding pipe (603).
9. The preparation process of an anti-dandruff shampoo according to claim 8, characterized in that: Both of the two stirring shafts (106) are fixedly connected to the outer ends of the multi-angled rotating plates (701), and both ends of the base support legs (602) are fixedly connected to the solid contact support plates (702). The two multi-angled rotating plates (701) are in contact with the two solid contact support plates (702) respectively.
10. An anti-dandruff shampoo prepared using the anti-dandruff shampoo preparation process according to claim 1, characterized in that: This anti-dandruff shampoo is composed of deionized water, detergent, additives, solid ingredients, ginger juice, salicylic acid, ketoconazole, and selenium disulfide.