Oil-control shampoo as well as processing system and processing method thereof
By using mechanical stirring and lateral movement components in the oil-control shampoo processing system, the problem of excessively long mixing time for shampoo raw materials has been solved, achieving rapid mixing and efficient production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 徐敬宏
- Filing Date
- 2023-12-08
- Publication Date
- 2026-04-21
AI Technical Summary
Existing shampoo processing technology results in excessively long mixing times for various raw materials, affecting production efficiency.
An oil-controlling shampoo processing system is adopted, including components such as a mixing cavity, a conical gear shaft, a cross-shaped stirring plate, and a spiral pusher plate. The system accelerates the mixing of raw materials through mechanical stirring and lateral movement, and achieves rapid mixing by combining a geared motor drive and a filtration device.
It significantly shortens the mixing time of shampoo ingredients and improves production efficiency.
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Figure CN121891972A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of shampoo processing technology, and more specifically to an oil-controlling shampoo and its processing system and method. Background Technology
[0002] Shampoo, also known as hair wash or hair lotion, is the most widely used hair care product and one of the most commonly used hair cosmetics. It 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. Based on their functions, shampoos are categorized into regular shampoos, conditioning shampoos, anti-dandruff and anti-itch shampoos, children's shampoos, and shampoo / dye shampoos. Therefore, consumers can choose different types of shampoos based on their hair type, such as those suitable for normal, dry, or oily hair; or products with different properties such as dandruff removal and nourishment. However, current technology allows for rapid mixing of multiple ingredients, leading to increased shampoo processing time. Summary of the Invention
[0003] The purpose of this invention is to provide an oil-controlling shampoo and its processing system and method. This system allows for the rapid mixing of various raw materials, further shortening the shampoo processing time.
[0004] An oil-control shampoo processing system includes a mixing cavity and a bearing seat fixedly connected within the mixing cavity. Two bevel gear shafts I are rotatably connected to the bearing seat, and both bevel gear shafts I are rotatably connected to the mixing cavity. Multiple cross-shaped stirring plates are fixedly connected to each of the two sets of multiple cross-shaped stirring plates, and spiral push plates are fixedly connected to each of the two sets of spiral push plates. Both spiral push plates are in contact with the inner wall of the mixing cavity. A discharge vertical pipe with a valve is fixedly connected to the center of the lower part of the mixing cavity. Two fixed support legs are fixedly connected to the mixing cavity.
[0005] Furthermore, a feeding vertical cavity is fixedly connected to the mixing cavity, a filter circular plate is fixedly connected inside the feeding vertical cavity, and a covering cavity I is slidably connected to the feeding vertical cavity.
[0006] Furthermore, a reduction motor I is fixedly connected to the filter disc, and a bevel gear shaft II is fixedly connected to the output shaft of the reduction motor I. The bevel gear shaft II is meshed and driven by the two bevel gear shafts I. A protective cavity is fixedly connected to the filter disc.
[0007] Furthermore, an inclined feeding slide cavity is fixedly connected to the feeding vertical cavity, an adding vertical pipe is fixedly connected to the inclined feeding slide cavity, and a covering cavity II is slidably connected to the adding vertical pipe.
[0008] Furthermore, a supporting sliding cover is fixedly connected to the inclined sliding cavity, a filter horizontal plate is fixedly connected to the supporting sliding cover, the filter horizontal plate is slidably connected in the inclined sliding cavity, a telescopic rod is fixedly connected to the supporting sliding cover, a pressing circular plate is fixedly connected to the telescopic rod, the pressing circular plate is slidably connected in the inclined sliding cavity and slidably connected to the filter horizontal plate.
[0009] Furthermore, two extending vertical pipes are fixedly connected to the mixing cavity.
[0010] Furthermore, two liquid storage cavities are fixedly connected to the mixing cavity, and a drain pipe with a valve is fixedly connected to the bottom of each of the two liquid storage cavities.
[0011] Furthermore, a horizontal storage cavity is fixedly connected to the discharge vertical pipe, a conical vertical pipe is fixedly connected below the horizontal storage cavity, an intermittent storage roller is rotatably connected inside the horizontal storage cavity, and a reduction motor II is fixedly connected to the horizontal storage cavity. The output shaft of the reduction motor II is fixedly connected to the intermittent storage roller.
[0012] Furthermore, the processing method of the oil-control shampoo processing system includes the following steps:
[0013] Step 1: Add the various ingredients and orange peel juice into the mixing cavity through the notch;
[0014] Step 2: Rotate the two bevel gear shafts I, which will drive the two sets of multiple cross-shaped stirring plates and the two spiral push plates to rotate.
[0015] Step 3: The two sets of multiple cross-shaped stirring plates can stir the various ingredients and orange peel juice in the mixing cavity, allowing the various ingredients and orange peel juice to be mixed quickly;
[0016] Step 4: When the two spiral push plates rotate, they can drive various raw materials and orange peel juice to move laterally, assisting the two sets of multiple cross-shaped stirring plates to stir the various raw materials and orange peel juice.
[0017] Step 5: After the various ingredients and orange peel juice are mixed, open the valve of the discharge pipe, and the mixed ingredients can be discharged through the discharge pipe. Attached Figure Description
[0018] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0019] Figure 1 This is a schematic diagram of the overall structure of an oil-control shampoo processing system according to the present invention;
[0020] Figure 2 This is a partial structural diagram of an oil-control shampoo processing system;
[0021] Figure 3 This is a schematic diagram of an embodiment of mixing multiple raw materials;
[0022] Figure 4 This is a cross-sectional structural diagram of an embodiment of mixing multiple raw materials;
[0023] Figure 5 This is a schematic diagram of a specific structure for an embodiment of mixing multiple raw materials;
[0024] Figure 6 This is a schematic diagram of an embodiment of filtering multiple raw materials;
[0025] Figure 7 This is a cross-sectional structural diagram of an embodiment of filtering multiple raw materials;
[0026] Figure 8 This is a schematic diagram of an embodiment of squeezing orange peel;
[0027] Figure 9 This is a partial structural schematic diagram of an embodiment of squeezing orange peel;
[0028] Figure 10 This is a schematic diagram of an embodiment where an equal amount of shampoo is allowed to fall.
[0029] Figure 11 This is a cross-sectional structural diagram of an embodiment in which shampoo is dropped in equal amounts. Detailed Implementation
[0030] The following is in conjunction with the appendix Figure 1-11 The present invention will be described in further detail below.
[0031] The following is in conjunction with the appendix Figure 1-5 Detailed description of section 10: An oil-controlling shampoo processing system includes a mixing cavity 101 and a bearing seat 102 fixedly connected to the mixing cavity 101 by welding. Two bevel gear shafts I103 are rotatably connected to the bearing seat 102 through bearing holes. Both bevel gear shafts I103 are rotatably connected to the mixing cavity 101 through round holes. Multiple cross-shaped stirring plates 104 are fixedly connected to each of the two bevel gear shafts I103 by welding. Spiral push plates 105 are fixedly connected to each of the two sets of multiple cross-shaped stirring plates 104 by welding. Both spiral push plates 105 are in contact with the inner wall of the mixing cavity 101. A discharge vertical pipe 106 with a valve is fixedly connected to the center of the lower part of the mixing cavity 101 by welding. Two fixed support legs 107 are fixedly connected to the mixing cavity 101 by welding.
[0032] Furthermore, a notch is provided above the mixing cavity 101, through which various raw materials and orange peel juice are added into the mixing cavity 101. Orange peel juice has a good oil-controlling effect. The various raw materials and orange peel juice are added into the mixing cavity 101 in a specific ratio, and the mixing of the various raw materials and orange peel juice is completed within the mixing cavity 101. The bearing seat 102 provides rotation space for the two bevel gear shafts I103, and the two bevel gear shafts I103 provide fixed space for two sets of multiple cross-shaped stirring plates 104. When the two bevel gear shafts I103 rotate, they drive the two sets of multiple cross-shaped stirring plates 104 to rotate. The rotating two sets of multiple cross-shaped stirring plates 104 can be used to stir the various raw materials and orange peel juice in the mixing cavity 101, further accelerating the mixing process. The mixing speed of the raw materials and orange peel juice is controlled by the rotation of two sets of multiple cross-shaped stirring plates 104, which in turn drive the two spiral push plates 105 to rotate. When the two spiral push plates 105 rotate, they can drive the various raw materials and orange peel juice to move laterally, thereby changing the position of the various raw materials and orange peel juice and further accelerating the mixing speed of the various raw materials and orange peel juice. Moreover, the rotation of the two spiral push plates 105 can also drive the various raw materials and orange peel juice to move inward, pushing the mixed raw materials into the discharge vertical pipe 106 with a valve. By opening the valve on the discharge vertical pipe 106, the mixed raw materials can be discharged through the discharge vertical pipe 106. The two fixed support legs 107 play a supporting and fixing role, so that the mixing cavity 101 is firmly placed on the ground.
[0033] Multiple ingredients and orange peel juice are added into the mixing cavity 101 through the notch. The two conical rotating shafts I103 rotate, driving two sets of multiple cross-shaped stirring plates 104 and two spiral push plates 105 to rotate. The rotating sets of multiple cross-shaped stirring plates 104 can stir the multiple ingredients and orange peel juice in the mixing cavity 101, allowing them to mix quickly. When the two spiral push plates 105 rotate, they can drive the multiple ingredients and orange peel juice to move laterally, assisting the two sets of multiple cross-shaped stirring plates 104 in stirring the multiple ingredients and orange peel juice. After the multiple ingredients and orange peel juice are mixed, the valve of the discharge vertical pipe 106 is opened, and the mixed ingredients can be discharged through the discharge vertical pipe 106.
[0034] The following is in conjunction with the appendix Figure 1 , 2 Detailed descriptions of sections 6 and 7: A feeding vertical cavity 201 is fixedly connected to the mixing cavity 101 by welding; a filter circular plate 202 is fixedly connected to the feeding vertical cavity 201 by multiple screws; and a covering cavity I203 is slidably connected to the feeding vertical cavity 201 via a straight cavity.
[0035] Furthermore, various raw materials and orange peel juice are added to the mixing cavity 101 through the feeding vertical cavity 201, and the filter disc 202 can filter the various raw materials to prevent impurities and large pieces of raw materials from entering the mixing cavity 101. The covering cavity 1203 can cover the opening above the feeding vertical cavity 201.
[0036] The following is in conjunction with the appendix Figure 1 , 2 Detailed descriptions of sections 6 and 7: A reduction motor I301 is fixedly connected to the filter disc 202 via a flange plate. A bevel gear shaft II302 is fixedly connected to the output shaft of the reduction motor I301 via a keyway and a snap ring. The bevel gear shaft II302 is meshed with two bevel gear shafts I103 for transmission. A protective cavity 303 is fixedly connected to the filter disc 202 via threads.
[0037] Furthermore, after starting the geared motor I301, it can drive the bevel gear shaft II302 to rotate. When the bevel gear shaft II302 rotates, it can drive the two bevel gear shafts I103 to rotate in opposite directions, thereby causing the two sets of multiple cross-shaped stirring plates 104 to rotate in opposite directions, enhancing the mixing speed of various raw materials and orange peel juice in the mixing cavity 101. The geared motor I301 is located inside the protective cavity 303. The protective cavity 303 can be used to protect the geared motor I301, preventing various raw materials from falling directly onto the geared motor I301 and causing irreversible damage to the geared motor I301.
[0038] According to the instruction manual Figure 1 , 2 Detailed descriptions of sections 6 and 8: The feeding vertical cavity 201 is fixedly connected to the inclined feeding slide cavity 401 by welding. The inclined feeding slide cavity 401 is fixedly connected to the feeding vertical pipe 402 by welding. The feeding vertical pipe 402 is slidably connected to the covering cavity II 403 through a straight cavity.
[0039] Furthermore, orange peel juice is added to the feeding vertical cavity 201 through the inclined feeding cavity 401. Orange peels can be placed into the inclined feeding cavity 401 through the feeding vertical tube 402. The orange peels are squeezed in the inclined feeding cavity 401 to squeeze out the orange peel juice. The covering cavity II 403 can be used to cover and seal the opening above the feeding vertical tube 402.
[0040] According to the instruction manual Figure 1 , 2Detailed descriptions of sections 6, 8, and 9: A supporting slide cover 501 is fixedly connected to the inclined sliding cavity 401 by threads; a filter cross plate 502 is fixedly connected to the supporting slide cover 501 by welding; the filter cross plate 502 is slidably connected to the inclined sliding cavity 401 through a straight cavity; a telescopic rod 503 is fixedly connected to the supporting slide cover 501 by a flange plate; a pressing round plate 504 is fixedly connected to the telescopic rod 503 by a flange plate; the pressing round plate 504 is slidably connected to the inclined sliding cavity 401 through a straight cavity and is slidably connected to the filter cross plate 502 through multiple round holes.
[0041] Furthermore, the supporting sliding cover 501 provides a fixed space for the filter plate 502, which is located below the adding vertical tube 402. The filter plate 502 provides a space for placing orange peels, and the orange peels are squeezed on the filter plate 502 to squeeze out the juice from the orange peels. The filter plate 502 can also filter out orange peel fragments to prevent them from entering the feeding vertical cavity 201. After the telescopic rod 503 is activated, the squeezing disc 504 can be moved downward to squeeze the orange peels falling on the filter plate 502 and squeeze out the juice from the orange peels.
[0042] According to the instruction manual Figure 1-4 In detail, the mixing cavity 101 has two extended vertical tubes 601 fixedly connected to it by a plurality of screws.
[0043] Furthermore, the two extended vertical tubes 601 are made of transparent material and are connected to the mixing cavity 101. Depending on the material of the communicating vessel, the volume of various raw materials and orange peel juice added to the mixing cavity 101 can be observed through the two extended vertical tubes 601, preventing the addition of too many raw materials and orange peel juice to the mixing cavity 101.
[0044] According to the instruction manual Figure 1-3 In detail, the mixing cavity 101 has two liquid storage cavities 701 fixedly connected by welding, and each of the two liquid storage cavities 701 has a drain pipe 702 with a valve fixedly connected by welding below it.
[0045] Furthermore, water can be added to the two liquid storage cavities 701, and heating plates are installed in the two liquid storage cavities 701. The heating plates can be used to heat the water in the two liquid storage cavities 701. The hot water in the two liquid storage cavities 701 can be used to heat the mixing cavity 101, thereby acting on the various raw materials and orange peel juice in the mixing cavity 101. The heat can make the various raw materials and orange peel juice mix quickly. The water in the two liquid storage cavities 701 can be drained using two drain pipes 702 with valves.
[0046] According to the instruction manual Figure 1 ,10 In detail with reference to 11, a horizontal storage cavity 801 is fixedly connected to the discharge vertical pipe 106 by welding. A conical vertical pipe 802 is fixedly connected to the lower part of the horizontal storage cavity 801 by welding. An intermittent storage roller 803 is rotatably connected to the horizontal storage cavity 801 by a shaft. A reduction motor II 804 is fixedly connected to the horizontal storage cavity 801 by a flange plate. The output shaft of the reduction motor II 804 is fixedly connected to the intermittent storage roller 803 by a keyway and a retaining spring.
[0047] Furthermore, the shampoo discharged through the discharge vertical pipe 106 can enter the horizontal storage cavity 801, while the intermittent storage roller 803 can block the horizontal storage cavity 801. The intermittent storage roller 803 is provided with multiple grooves, all of which are identical, allowing the shampoo to enter the multiple grooves separately, thus realizing the shampoo dispensing process. After starting the reduction motor II 804, it can drive the intermittent storage roller 803 to rotate intermittently, and the shampoo will enter the groove at the top. When the groove rotates to the bottom, it can be discharged through the conical vertical pipe 802. Bottles can be placed directly below the conical vertical pipe 802 to ultimately add an equal amount of shampoo into the bottles.
[0048] According to the instruction manual Figure 1-11 Detailed description of the processing method for the oil-control shampoo processing system, the processing method includes the following steps:
[0049] Step 1: Add various ingredients and orange peel juice into the mixing cavity 101 through the notch;
[0050] Step 2: Rotate the two bevel gear shafts I103 to drive the two sets of multiple cross-shaped stirring plates 104 and the two spiral push plates 105 to rotate.
[0051] Step 3: The two sets of multiple cross-shaped stirring plates 104 can stir the various raw materials and orange peel juice in the mixing cavity 101, allowing the various raw materials and orange peel juice to be mixed quickly;
[0052] Step 4: When the two spiral push plates 105 rotate, they can drive various raw materials and orange peel juice to move laterally, assisting the two sets of multiple cross-shaped stirring plates 104 to stir the various raw materials and orange peel juice.
[0053] Step 5: After the various ingredients and orange peel juice are mixed, open the valve of the discharge vertical pipe 106, and the mixed ingredients can be discharged through the discharge vertical pipe 106.
Claims
1. A processing system for oil-controlling shampoo, characterized in that: The mixture includes a mixing cavity (101) and a bearing seat (102) fixedly connected inside the mixing cavity (101). Two bevel gear shafts I (103) are rotatably connected to the bearing seat (102). Both bevel gear shafts I (103) are rotatably connected to the mixing cavity (101). Multiple cross-shaped stirring plates (104) are fixedly connected to both bevel gear shafts I (103). Spiral push plates (105) are fixedly connected to both sets of multiple cross-shaped stirring plates (104). Both spiral push plates (105) are in contact with the inner wall of the mixing cavity (101). A discharge vertical pipe (106) with a valve is fixedly connected to the center below the mixing cavity (101). Two fixed support legs (107) are fixedly connected to the mixing cavity (101).
2. The oil-control shampoo processing system according to claim 1, characterized in that: A feeding vertical cavity (201) is fixedly connected to the mixing cavity (101), a filter circular plate (202) is fixedly connected inside the feeding vertical cavity (201), and a covering cavity I (203) is slidably connected to the feeding vertical cavity (201).
3. The oil-control shampoo processing system according to claim 2, characterized in that: A geared motor I (301) is fixedly connected to the filter disc (202). A bevel gear shaft II (302) is fixedly connected to the output shaft of the geared motor I (301). The bevel gear shaft II (302) is meshed with two bevel gear shafts I (103) for transmission. A protective cavity (303) is fixedly connected to the filter disc (202).
4. The oil-control shampoo processing system according to claim 2, characterized in that: An inclined feeding slide cavity (401) is fixedly connected to the feeding vertical cavity (201), an adding vertical pipe (402) is fixedly connected to the inclined feeding slide cavity (401), and a covering cavity II (403) is slidably connected to the adding vertical pipe (402).
5. The oil-control shampoo processing system according to claim 4, characterized in that: A supporting slide cover (501) is fixedly connected to the inclined sliding cavity (401), and a filter cross plate (502) is fixedly connected to the supporting slide cover (501). The filter cross plate (502) is slidably connected in the inclined sliding cavity (401). A telescopic rod (503) is fixedly connected to the supporting slide cover (501), and a pressing round plate (504) is fixedly connected to the telescopic rod (503). The pressing round plate (504) is slidably connected in the inclined sliding cavity (401) and slidably connected to the filter cross plate (502).
6. The oil-control shampoo processing system according to claim 1, characterized in that: Two extension vertical tubes (601) are fixedly connected to the mixing cavity (101).
7. The oil-control shampoo processing system according to claim 1, characterized in that: Two liquid storage cavities (701) are fixedly connected to the mixing cavity (101), and a drain pipe (702) with a valve is fixedly connected to the bottom of each of the two liquid storage cavities (701).
8. The oil-control shampoo processing system according to claim 1, characterized in that: A horizontal storage cavity (801) is fixedly connected to the discharge vertical pipe (106), a conical vertical pipe (802) is fixedly connected below the horizontal storage cavity (801), an intermittent storage roller (803) is rotatably connected inside the horizontal storage cavity (801), a reduction motor II (804) is fixedly connected to the horizontal storage cavity (801), and the output shaft of the reduction motor II (804) is fixedly connected to the intermittent storage roller (803).
9. The oil-control shampoo processed by the oil-control shampoo processing system according to claim 8, characterized in that: This oil-control shampoo contains orange peel juice.
10. A processing method using the water-based paint processing system according to claim 1, characterized in that, The processing method includes the following steps: Step 1: Add various ingredients and orange peel juice into the mixing cavity (101) through the notch; Step 2: Rotate the two bevel gear shafts I (103) to drive the two sets of multiple cross-shaped stirring plates (104) and the two spiral push plates (105) to rotate. Step 3: The two sets of multiple cross-shaped stirring plates (104) can be rotated to stir the various raw materials and orange peel juice in the mixing cavity (101), so that the various raw materials and orange peel juice can be quickly mixed; Step 4: When the two spiral push plates (105) rotate, they can drive various raw materials and orange peel juice to move laterally, assisting the two sets of multiple cross stirring plates (104) to stir the various raw materials and orange peel juice. Step 5: After the various raw materials and orange peel juice are mixed, open the valve of the discharge vertical pipe (106) and the mixed raw materials can be discharged through the discharge vertical pipe (106).