A hair strand deshading flusher for preparing hair with shape memory function
By designing a de-coloring rinser with a feeding spiral blade and a control ring, and combining hot water crosslinking and cold water rinsing, the problem of uneven color floating after wig dyeing was solved, and smooth hair strands with shape memory function were produced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-12
- Publication Date
- 2026-03-27
AI Technical Summary
In existing technologies, uneven removal of excess dye after wig dyeing affects the smoothness of the hair strands, and it is difficult to produce smooth hair strands with shape memory function.
Design a dye removal and rinsing device that includes a feeding spiral blade, a control ring, an auxiliary agent addition component, cold and hot water rinsing pipes, and a scraper ring. Through spiral dyeing, hot water cross-linking, and cold water rinsing, it achieves uniform dyeing and removal of floating dye.
The process achieved good uniformity in removing excess dye, resulting in hair strands with excellent shape memory and smoothness.
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Figure CN117211018B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of hair preparation technology, specifically to a hair removal and rinsing device for preparing hair with shape memory function. Background Technology
[0002] Wigs are accessories made from human hair, synthetic fibers, animal hair, etc., through a series of physical and chemical processing techniques. Wigs on the market have diverse uses, and human hair colors vary depending on age and region. Common colors include black, gold, yellow, gray, and white. After preparing the dye solution according to the desired wig color, the wig is placed in the dye solution and dyed according to the dyeing process. The dyeing process includes setting the dyeing temperature and time, as well as the order of adding auxiliaries. After the process is completed, the wig is washed with water and dried, and the dyeing step is finished. After the hair strands are dyed, floating dye will appear on the surface. During the process of rinsing off the floating dye, some wigs are soaked in a bucket with dyeing auxiliary oil, and after continuous stirring, salt is added. The wig is then washed with cold water and dried at a low temperature. Because the hair strands are concentrated together, it is difficult to ensure that the dye, auxiliary agents, and salt are evenly dispersed on the hair strands. If the distribution is uneven, it will easily affect the uniformity of the subsequent removal of floating dye, thus affecting the smoothness of the finished hair strands. Summary of the Invention
[0003] The purpose of this invention is to provide a hair dye removal rinser for preparing hair with shape memory function. By ensuring good uniformity of dye removal and preparing smooth hair with excellent shape memory function, the problems in the prior art can be effectively solved.
[0004] To achieve the above objectives, the present invention provides the following technical solution:
[0005] A rinsing device for preparing hair strands with shape memory function to remove excess dye includes a rinsing housing. An output shaft is rotatably connected inside the rinsing housing. A feeding spiral blade for controlling dye is fixedly connected to the outer wall of the output shaft. A control ring for controlling hair strands is fixedly connected to the outer side of the feeding spiral blade. A flipping movable shell is hinged to the outer side of the rinsing housing. An auxiliary agent addition component for saturating dye is provided on the flipping movable shell. A surface treatment component for removing excess dye is provided inside the rinsing housing. The surface treatment component includes a cold water rinsing pipe, a hot water rinsing pipe, and a scraping ring to enhance the smoothness and silkiness of the prepared hair strands.
[0006] As a further aspect of the present invention: a feeding hopper for controlling the discharge of dye is fixedly connected to the top of the outer side of the rinsing shell, and a discharge hopper for controlling the discharge of dye is fixedly connected to the bottom of the outer side of the rinsing shell; the dye used can enter the rinsing shell through the feeding hopper, and with the rotation of the output shaft, the liquid can generate a certain flow effect on the feeding spiral blades, so that the dye can be evenly applied to the hair strands. The dye is discharged through the feeding spiral blades and can be discharged through the discharge hopper for reuse.
[0007] As a further embodiment of the present invention: the length of the conveying spiral blade is the same as the length of the tilting movable shell, and an auxiliary adding pipe for conveying salt is fixedly connected to the tilting movable shell. One end of the auxiliary adding pipe is connected to the inside of the rinsing shell. When the tilting movable shell is opened, the conveying spiral blade and the control ring inside can be exposed. When closed, the rinsing shell can be sealed. The tilting movable shell can be connected to the rinsing shell by means of a locking buckle.
[0008] As a further embodiment of the present invention: the auxiliary agent addition component includes a driving component and a storage box. The storage box is fixed inside the flip-up movable shell, and both sides of the storage box are sealed with discharge pipes. The driving component is used to control the auxiliary agent stored inside the storage box to be discharged from the discharge pipes. The driving component can be an electric telescopic rod, which can compress the internal space of the storage box at one end. As the hair moves, the dyeing agent inside the storage box can be gradually filled into the hair, and the dyeing agent is discharged into the flowable conveying spiral blade. During the dyeing process, the auxiliary dyeing agent is added to assist fiber swelling, promote dye diffusion, and further increase the diffusion due to the flowability.
[0009] As a further aspect of the present invention: the number of control rings is several, and the several control rings are evenly distributed on the feeding spiral blade at a certain interval; one end of the hair strand can gradually pass through the feeding spiral blade and through multiple control rings. The specific number of control rings can be set according to the length of the feeding spiral blade, so that the prepared hair strand can maintain a spiral state at one end. In this state, the dyeing time of the curved hair strand can be increased, and a uniform and saturated dyeing effect can be produced with the flow of dye, continuously dyeing the prepared hair strand and providing a basis for subsequent rinsing.
[0010] As a further embodiment of the present invention: the center line of the scraper ring coincides with the center line of the rinsing housing, and the scraper ring is fixedly installed inside the rinsing housing; the scraper ring can remove excess dye from the surface of the hair and keep the hair in a smooth state.
[0011] As a further embodiment of the present invention: both the cold water rinsing pipe and the hot water rinsing pipe have through holes for discharging liquid, and the hot water rinsing pipe has an addition pipe for adding a thermally reversible crosslinking agent; a pipe for discharging the thermally reversible crosslinking agent can be provided on the hot water rinsing pipe, which is then added into the interior of the hair strand to further enhance the strength and toughness of the hair strand and improve its shape memory function.
[0012] As a further embodiment of the present invention: the cold water rinsing pipe and the hot water rinsing pipe are provided with a leakage hole on the side near the scraper ring, and a collection box corresponding to the leakage hole is fixedly connected to the bottom of the rinsing housing; a collection box can be set outside the cold water rinsing pipe and the hot water rinsing pipe for collection. As the dye is scraped off, it can fall into the rinsing housing through the provided leakage hole and be collected inside the collection box.
[0013] As a further aspect of the present invention, a hair color removal rinser with shape memory function is provided, comprising the following usage methods:
[0014] A: The prepared hair strands are positioned so that one end is inside the rinsing shell and passes through the feeding spiral blades, gradually passing through the control ring so that a section of the hair strands is in a spiral state. Salt and dyeing agent are added through the auxiliary addition tube and the storage box respectively in this spiral state, so that the dye is saturated onto the prepared hair strands.
[0015] B: When the dyeing is completed and the section is straight, it first enters the hot water rinsing pipe, where hot water opens the scales and fills in the thermally reversible crosslinking agent. At this time, most of the excess dye can be rinsed off. Then, the excess dye is scraped off by the scraper ring, and then the cold water is sprayed through the cold water rinsing pipe to clean it.
[0016] Compared with the prior art, the beneficial effects of the present invention are:
[0017] One end of the prepared hair strand passes through a feeding spiral plate, gradually passing through a control ring. A section of the hair strand is in a spiral state. In this spiral state, salt and a dyeing agent are added through an auxiliary addition tube and a storage box, respectively, to saturate the prepared hair strand with dye. This state increases the dyeing time of the curved hair strand and produces a uniform and saturated dyeing effect with the flow of dye, continuously dyeing the prepared hair strand and providing a basis for subsequent rinsing. When the dyeing is completed and the strand is straight, it first enters the hot water rinsing tube. Hot water opens the scales and fills in the thermally reversible crosslinking agent, which can wash away most of the excess dye. Then, the excess dye is scraped off by a scraper ring, and then the hair strand is rinsed clean by spraying cold water through a cold water rinsing tube, ensuring good uniformity of floating color removal and producing smooth hair strands with excellent shape memory function. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of a structure for preparing a hair dye removal rinser with shape memory function;
[0020] Figure 2 This is a schematic diagram of the internal structure of the rinsing shell in a hair removal and color rinsing device for preparing a hair removal and color rinsing device with shape memory function;
[0021] Figure 3 This is a schematic diagram of the rotating movable shell in a hair removal and rinsing device with shape memory function;
[0022] Figure 4 This is a schematic diagram of a surface treatment component used in a hair removal and color rinsing device with shape memory function;
[0023] In the diagram: 1. Washing shell; 11. Feed hopper; 12. Discharge hopper; 13. Tilting movable shell; 2. Output shaft; 21. Feeding screw; 22. Control ring; 3. Auxiliary addition pipe; 4. Additive addition assembly; 41. Drive component; 42. Storage box; 43. Discharge pipe; 5. Surface treatment assembly; 51. Cold water rinsing pipe; 52. Hot water rinsing pipe; 53. Scraper ring; 54. Leakage hole; 6. Collection box. Detailed Implementation
[0024] To make the technical problems to be solved, the technical solutions, and the beneficial effects of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and are not intended to limit the present invention.
[0025] Please see Figures 1-4 In this embodiment of the invention, a hair dye removal rinser for preparing hair with shape memory function includes a rinsing shell 1. An output shaft 2 is rotatably connected inside the rinsing shell 1. A feeding spiral blade 21 for controlling dye is fixedly connected to the outer wall of the output shaft 2. A control ring 22 for controlling hair is fixedly connected to the outer side of the feeding spiral blade 21. A flipping movable shell 13 is hinged to the outer side of the rinsing shell 1. An auxiliary agent addition component 4 for saturating dye is provided on the flipping movable shell 13. A surface treatment component 5 for removing dye is provided inside the rinsing shell 1. The surface treatment component 5 includes a cold water rinsing pipe 51, a hot water rinsing pipe 52, and a scraping ring 53 to enhance the smoothness and silkiness of the prepared hair.
[0026] In this implementation scheme: the prepared hair strands can be ejected by a spinneret, allowing one end of the ejected hair strands to enter the rinsing housing 1. During hair preparation, one end can be controlled within the rinsing housing 1, allowing it to gradually pass through the feeding spiral blade 21 and multiple control rings 22. The specific number of control rings 22 can be set according to the length of the feeding spiral blade 21, ensuring the prepared hair strands maintain a spiral state at one end. One end then passes through the cold water rinsing pipe 51 and the hot water rinsing pipe 52, exiting the hair strands outside the rinsing housing 1. By controlling the forward movement of the hair strands, one end can be fixed to the winding equipment. As the take-up roller rotates, the movement of the hair strands can be controlled, allowing them to gradually enter the rinsing housing 1 and be uniformly dyed.
[0027] With the hair strands in a spiral state, salt and dyeing agent are added through the auxiliary addition tube 3 and storage box 42 respectively, saturating the hair strands with dye. Simultaneously, the dye enters the rinsing shell 1 through the feed hopper 11. With the rotation of the output shaft 2, the liquid flows on the feed spiral blades 21, ensuring even dye application to the hair strands. One end of the auxiliary addition tube 3 has a material storage box containing salt, which promotes dye fixation within the fiber, further enhancing dye application. Salt can be intermittently fed into the fluid feed spiral blades 21, adding auxiliary salt during the dyeing process. The auxiliary agent addition assembly 4 includes a drive unit 41 and a storage box 42. The storage box 42 is fixed inside the rotating shell 13, and both sides of the storage box 42 are sealed with discharge pipes 43. The drive unit 41 controls the discharge of the auxiliary agent stored inside the storage box 42 through the discharge pipes 43. The drive unit 41 can be an electric telescopic rod, capable of compressing the internal space of the storage box 42 at one end. As the hair strands move, the dyeing agent inside the storage box 42 is gradually injected into the hair strands and discharged from the discharge pipe 43. A one-way valve is installed on the discharge pipe 43 to discharge the dyeing agent into the flowable conveying spiral spool 21. Additional dyeing agent is added during the dyeing process. This aids in fiber swelling, promotes dye diffusion, and further increases diffusion due to the increased flowability. This ensures that most of the dye is applied to the hair strands, creating a saturated effect for easy rinsing. The dye is discharged through the conveying spiral spool 21 and can be discharged through the discharge hopper 12 for reuse.
[0028] The dyed hair strands pass through a hot water rinsing pipe 52, which is filled with hot water. As the hot water acts on the hair strands, it opens the scales and allows a thermally reversible cross-linking agent to be introduced. A channel for discharging the thermally reversible cross-linking agent can be installed on the hot water rinsing pipe 52, allowing it to be added into the interior of the hair strands, further enhancing the hair's strength and toughness, and improving its shape memory function. Simultaneously, the hot water washes away most of the excess dye. Next, a scraper ring 53 removes the remaining dye, followed by a cold water rinsing pipe 51 to rinse the hair thoroughly, and then low-temperature drying. After dyeing, the hair is thoroughly rinsed, resulting in a finished product with good shine, a smooth feel, and no roughness. Both the cold water rinsing pipe 51 and the hot water rinsing pipe 52 have through holes to drain the rinsing liquid, and collection boxes can be installed on the outside of the cold water rinsing pipe 51 and the hot water rinsing pipe 52 for collection. The cold water rinsing pipe 51 and the hot water rinsing pipe 52 have a drain hole 54 through them on the side near the scraper ring 53. The bottom of the rinsing housing 1 is fixedly connected to a collection box 6 corresponding to the drain hole 54. As the dye is scraped off, it can fall into the rinsing housing 1 through the drain hole 54 and be collected inside the collection box 6.
[0029] like Figures 1-4 As shown, the present invention also provides a method for using a hair color remover with shape memory function, the specific steps of which are as follows:
[0030] A: The prepared hair strands are positioned inside the rinsing shell 1 and pass through the feeding spiral blade 21, so that one end of the hair strands gradually passes through the control ring 22, making a section of the hair strands spiral. In this spiral state, salt and dyeing agent are added through the auxiliary addition tube 3 and the storage box 42 respectively, so that the dye is saturated onto the prepared hair strands.
[0031] B: When the dyeing is completed and the section is straight, it first enters the hot water rinsing pipe 52. The hot water opens the scales and fills in the thermally reversible crosslinking agent. At this time, most of the excess dye can be rinsed off. Then, the excess dye is scraped off by the scraper ring 53, and then the cold water is sprayed through the cold water rinsing pipe 51 to clean it.
[0032] The working principle of this invention is as follows: The integrally prepared hair strands can be ejected by a spinneret, allowing one end of the ejected hair strands to enter the rinsing housing 1. During hair preparation, one end can be controlled within the rinsing housing 1, allowing it to gradually pass through the feeding spiral blade 21 and multiple control rings 22. One end is then discharged outside the rinsing housing 1 through the cold water rinsing pipe 51 and the hot water rinsing pipe 52. By controlling the forward movement of the hair strands, one end can be fixed to the winding device. As the take-up roller rotates, the movement of the hair strands can be controlled, allowing them to gradually enter the rinsing housing 1 and be uniformly dyed. While the hair strands are in a spiral state, salt and a dyeing agent are added through the auxiliary addition pipe 3 and the storage box 42, respectively, to saturate the prepared hair strands with dye. Simultaneously, the dye enters the rinsing housing 1 through the feeding hopper 11. With the rotation of the output shaft 2, the liquid flows on the feeding spiral blade 21, ensuring uniform dye application to the hair strands. One end of the auxiliary addition tube 3 can store a material box containing salt, which promotes dye fixation within the fiber, allowing for further dyeing. Salt can be conveyed intermittently into the fluid feed screw 21, thus adding auxiliary salt during dyeing. The drive unit 41 can be an electrically operated telescopic rod, capable of compressing the internal space of the storage box 42 at one end. As the hair moves, the dyeing agent inside the storage box 42 is gradually introduced into the hair and discharged through the discharge tube 43, flowing into the fluid feed screw 21, where auxiliary dyeing agent is added during dyeing. This aids in fiber swelling, promotes dye diffusion, and further increases diffusion due to the fluidity of the dyeing agent. This ensures that most of the dye is applied to the hair, creating a saturated effect for easy rinsing. The dye discharged through the feed screw 21 can be discharged through the discharge hopper 12 for reuse. The dyed hair strands pass through a hot water rinsing pipe 52, which is filled with hot water. As the hot water acts on the hair strands, it opens the scales and allows a thermally reversible crosslinking agent to be introduced. A channel for discharging the thermally reversible crosslinking agent can be provided on the hot water rinsing pipe 52, allowing it to be added into the interior of the hair strands, further enhancing the hair's strength and toughness, and improving its shape memory function. Simultaneously, the hot water washes away most of the excess dye. Next, a scraper ring 53 scrapes away the remaining dye, and then the hair is rinsed clean with cold water sprayed through a cold water rinsing pipe 51, followed by low-temperature drying. Both the cold water rinsing pipe 51 and the hot water rinsing pipe 52 have through holes to drain the rinsing liquid. Collection boxes can be installed on the outside of the cold water rinsing pipe 51 and the hot water rinsing pipe 52 for collection. As the dye is scraped off, it falls through the drainage hole 54 into the rinsing housing 1 and is collected inside the collection box 6.
[0033] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A hair de-coloring flusher with shape memory function, comprising a flusher shell (1), a output shaft (2) is rotatably connected inside the flusher shell (1), characterized in that, The output shaft (2) outer wall fixedly connected with a control dye conveying spiral piece (21), the conveying spiral piece (21) outside fixedly connected with a control position ring (22) for controlling hair, the flush shell (1) outside hinged with a turnover activity shell (13), the turnover activity shell (13) is equipped with an additive assembly (4) for saturated dye, and the flush shell (1) is internally provided with a surface treatment assembly (5) for removing the color, the surface treatment assembly (5) includes a cold water flushing pipe (51), a hot water flushing pipe (52) and a scraping ring (53), the softness and smoothness of the prepared hair are enhanced; The length of the conveying spiral piece (21) is consistent with the length of the turnover activity shell (13), the turnover activity shell (13) is fixedly connected with an auxiliary adding pipe (3) for conveying salt, one end of the auxiliary adding pipe (3) communicates into the flush shell (1); the center line of the scraping ring (53) coincides with the center line of the flush shell (1), and the scraping ring (53) is fixedly installed inside the flush shell (1); the cold water flushing pipe (51) and the hot water flushing pipe (52) both have through holes for discharging liquid, and the hot water flushing pipe (52) has an adding pipe for adding a heat reversible crosslinking agent; the cold water flushing pipe (51) and the hot water flushing pipe (52) are provided with a liquid leakage hole (54) near one side of the scraping ring (53), and the flush shell (1) is fixedly connected with a concentration box (6) corresponding to the liquid leakage hole (54).
2. A hair decoloring rinse for preparing hair having a shape memory function according to claim 1, wherein The flush shell (1) is fixedly connected with a conveying inlet hopper (11) for controlling dye discharge on the outside top, and is fixedly connected with a discharge outlet hopper (12) for controlling dye discharge on the outside bottom.
3. A hair decoloring flusher with shape memory function according to claim 2, characterized in that, The additive assembly (4) includes a driving member (41) and a storage box (42), the storage box (42) is fixed inside the turnover activity shell (13), and discharge pipes (43) are sealingly connected to both sides of the storage box (42), and the driving member (41) is used for controlling the additives stored in the storage box (42) to be discharged from the discharge pipes (43).
4. A hair decoloring rinse for preparing hair having a shape memory function according to claim 3, wherein The number of the control position rings (22) is several, and the several control position rings (22) are uniformly distributed on the conveying spiral piece (21) at a certain interval.
5. A method of using a hair decoloring flusher with shape memory function according to claim 4, characterized in that: The use method includes the following cases: A: one end of the prepared hair can be located in the flush shell (1), pass through the conveying spiral piece (21), make one end of the hair gradually pass through the control position ring (22), make the hair in a spiral state, and add salt and dyeing agent through the auxiliary adding pipe (3) and the storage box (42) respectively, so that the dye is saturated and dyed on the prepared hair; B: when the dyed hair is in a straight section, first enter the hot water flushing pipe (52) inside, fill the heat reversible crosslinking agent by hot water, at this time, most of the excess dye can be washed, then remove the excess dye through the scraping ring (53), and then clean through the cold water flushing pipe (51).
Citation Information
Patent Citations
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