A hair comb with hair cleaning function
Patent Information
- Application Number
- CN202610369572.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2026-03-17
- Filing Date
- 2026-03-24
- Publication Date
- 2026-08-21
AI Technical Summary
[0006]为了解决现有的免洗干法产品难以均匀作用于发丝、清洁效果不佳、硬质梳齿易损伤头皮以及无法在梳理过程中同步实现清洁与护理的问题,本发明提供一种具有毛发清洁功能的洗发梳
[0028] The above-mentioned organic and inorganic powders are used as the powder components of the first and second shampoo and conditioner materials, and the mass ratio of organic to inorganic powders is controlled within the above-mentioned range. Firstly, the inorganic powder mainly plays a role in porous adsorption, which can quickly absorb excess oil and moisture from the hair, resulting in a matte and fluffy effect after combing. Secondly, in addition to assisting adsorption, the organic powder can also give the hair a silky feel and smooth combing under dry conditions. Moreover, the organic powder can form a smooth film on the surface of the hair, reducing friction and improving the excessive dryness and roughness that inorganic powder may cause. Thus, there is a synergistic effect between organic and inorganic powders. Inorganic powder absorbs oil, while organic powder achieves a smooth effect. The combination of the two makes the combed hair both clean and smooth, effectively solving the problem of single powder systems being more effective in cleaning than in conditioning.
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Abstract
Description
Technical Field
[0001] This invention relates to the field of daily necessities technology, specifically to a shampoo comb with hair cleaning function. Background Technology
[0002] As a daily hair styling tool, the function of a hairbrush is mainly limited to combing hair and massaging the scalp. When a deep clean is needed, the user needs to wet the hair with water, apply traditional liquid or cream shampoo, and then clean and rinse it—this is called "wet washing." This traditional shampooing method is cumbersome, requiring a considerable amount of time for wetting, applying, massaging, rinsing, and drying. This poses significant inconvenience for the elderly with limited mobility, people with physical disabilities, bedridden patients, and users who frequently travel, work outdoors, or live in water-scarce environments. Furthermore, frequent wet washing can cause the hair cuticles to repeatedly expand and contract, potentially exacerbating hair damage. Also, if the surfactants in traditional shampoos are not rinsed off completely, the residue may irritate the scalp.
[0003] To address the limitations of wet shampooing, dry shampoo products have gradually emerged on the market, such as dry shampoo sprays, volumizing powders, or talcum powders. These products are typically applied by first spraying the powder or mist onto the hair roots, then combing with a regular comb to absorb excess oil and achieve a temporary clean.
[0004] However, in practical applications, these dry-cleaning leave-in products have revealed numerous insurmountable technical flaws. First, when powder or spray formulations are applied directly to the hair, their distribution is highly random and uncontrollable, easily leading to excessive powder accumulation in certain areas, causing the hair to appear white and clumpy, creating a visually residual effect. Meanwhile, uncovered areas cannot effectively absorb oil, resulting in extremely uneven cleaning. Second, the surfaces of ordinary hairbrush teeth are typically made of smooth plastic, wood, or metal, which have extremely poor affinity for dry powder formulations, failing to effectively grasp and carry the powder, let alone achieve stable powder storage and continuous release on the teeth. During use, most of the powder tends to fall off upon initial contact with the hair, not only wasting it but also making it difficult to evenly transfer the powder to the hair and scalp surface through repeated combing. Furthermore, the hard teeth of existing hairbrushes, when in direct contact with the scalp, can easily cause a scratching or stinging sensation due to improper combing force. This discomfort is particularly noticeable for people with sensitive scalps, and long-term use may even damage the scalp barrier. In addition, existing dry shampoo products can only provide oil absorption, and cannot simultaneously cleanse the hair, smooth it, or soothe the scalp. Their functions are relatively limited.
[0005] Therefore, how to overcome the problems of uneven powder distribution, easy shedding, and difficulty in being effectively carried by comb teeth in the use of existing dry no-rinse products, and how to achieve uniform cleaning, oil absorption, and scalp care simultaneously through combing under no-rinse conditions, while improving the comfort of the combing process, has become a technical problem that urgently needs to be solved by those skilled in the art. Summary of the Invention
[0006] To address the problems of existing no-rinse dry hair products, such as difficulty in applying evenly to hair strands, poor cleaning effect, damage to the scalp from hard comb teeth, and inability to simultaneously clean and care for hair during combing, this invention provides a shampoo comb with hair cleaning function.
[0007] According to a first aspect of the present invention, a shampoo comb with hair cleaning function is provided, the shampoo comb including a comb head, the comb head including comb teeth, the surface of the comb teeth being at least partially covered with a first fiber layer, the length of the fibers in the first fiber layer being 0.1 to 10 mm, the first fiber layer containing a first shampoo and conditioner body, the first shampoo and conditioner body containing a first powder.
[0008] The shampoo comb provided by the present invention sets a first fiber layer with a fiber length between 0.1 and 10 mm on the surface of the comb teeth and attaches a first shampoo and conditioner containing a first powder onto the first fiber layer by spraying, soaking or electrostatic adsorption.
[0009] Firstly, the dense short fibers distributed in the first fiber layer have a large specific surface area and good powder adsorption properties, allowing the first shampoo and conditioner powder to be stored in the fiber gaps and surface of the first fiber layer. During the combing process, the first fiber layer comes into contact with and rubs against the hair and scalp, and the first powder is slowly and continuously released and evenly transferred to the surface of the hair and scalp as the comb moves. In this process, the first powder quickly grabs excess oil and dirt from the hair through physical adsorption, simultaneously achieving combing, cleaning (such as adsorbing oil / dirt), and conditioning functions for hair in a dry state, i.e., no-rinse condition. This avoids the problems of localized excessive application or uneven distribution caused by directly pouring traditional liquid shampoo, achieving uniform application of powder and deep cleaning, and simplifying the shampooing and conditioning process. It is especially suitable for people with mobility impairments, travelers, or application scenarios that seek high-efficiency care.
[0010] Secondly, the fiber length in the first fiber layer is controlled between 0.1 and 10 mm. This ensures that the fiber layer provides sufficient hair-grabbing force (if the fibers are too long, they tend to lie flat, the comb teeth cannot penetrate deep into the hair roots, and can only comb the surface hair, resulting in weak combing and uneven distribution of powder in the hair roots and hair), while also providing sufficient loading space for the first powder (if the fibers are too short, there is not enough powder loaded on the fibers, and insufficient cleaning ability is provided). In other words, the first fiber layer with fiber length within the above range achieves the best balance between the retention rate of the first powder and the cleaning effect on the hair.
[0011] Thirdly, the soft first fiber layer loaded with powder, supported by the comb teeth, can effectively contact the scalp to absorb excess oil and dirt, while also providing cushioning to prevent the hard comb teeth from directly scratching the scalp, bringing a comfortable massage experience, which is especially suitable for people with sensitive scalps.
[0012] In summary, this invention achieves uniform cleaning and conditioning of hair in a dry state by loading a fiber layer containing powdered shampoo and conditioner. Simultaneously, the fiber length is controlled between 0.1 and 10 mm to balance the gripping force on the hair and the powder loading space. The soft fiber layer provides cushioning to prevent scalp abrasion and delivers a comfortable massage experience. The shampoo comb provided by this invention can satisfy both human hair combing and cleaning needs, and is also suitable for combing, massaging, and cleaning pet hair.
[0013] Preferably, the comb also includes a comb tooth base for fixing the comb teeth. The surface of the comb tooth base is at least partially covered with a second fiber layer. The length of the fibers in the second fiber layer is 0.1 to 10 mm. The second fiber layer contains a second shampoo and conditioner material, which contains a second powder.
[0014] A second fiber layer with a fiber length between 0.1 and 10 mm is set on the surface of the comb base, and a second shampoo and conditioner containing a second powder is attached to the second fiber layer by spraying, soaking, or electrostatic adsorption. Firstly, the comb teeth can make large-area contact with the hair roots and scalp area, and the first fiber layer wrapped around its top can directly contact the scalp, achieving cleaning, dirt removal, and oil absorption functions. The comb base mainly acts on the middle and ends of the hair, and the second fiber layer wrapped on the surface of the comb base can achieve cleaning, dirt removal, and oil absorption functions during contact with the middle and ends of the hair. Secondly, the comb base provides a larger surface area. The second fiber layer on the comb base surface significantly increases the total powder load of the entire shampoo comb, extending the single-use cycle. Simultaneously, during combing, the powder loaded in the second fiber layer on the comb base surface also falls onto the scalp, further enhancing its cleansing and oil-absorbing functions. Thus, the combination of the first fiber layer on the comb teeth surface and the second fiber layer on the comb base surface makes comprehensive care from hair strands to scalp possible. Thirdly, the first and second powders can be designed with the same or different formulas (for example, the comb teeth focus on scalp oil control, while the base focuses on hair smoothness), providing a foundation for multi-functional hair and scalp care.
[0015] Preferably, the thickness of the first fiber layer is 0.2 to 20 mm, and / or the thickness of the second fiber layer is 0.2 to 20 mm.
[0016] Preferably, the thickness of the first fiber layer is 0.2 to 2 mm, and / or the thickness of the second fiber layer is 0.2 to 2 mm.
[0017] The thickness of both the first and second fiber layers is controlled within the range of 0.2 to 2 mm. Firstly, the fiber layers within this thickness range can accommodate sufficient powder and have a good cushioning effect, preventing the hard substrate from being exposed and causing discomfort when combing. Secondly, it gives both the comb teeth and the comb base surface a certain degree of softness, reducing combing resistance and preventing the powder from being trapped deep in the fiber roots due to excessively thick fiber layers. Thirdly, it gives the first fiber layer on the comb teeth sufficient support to straighten the hair strands, while the second fiber layer on the base has a soft padding effect, preventing the hard base from directly hitting the scalp and improving the comfort of combing.
[0018] Preferably, an adhesive layer is provided between the comb teeth and the first fiber layer, and / or, an adhesive layer is provided between the comb teeth and the second fiber layer. By providing an adhesive layer (e.g., various types of glue) on the comb teeth, and then using electrostatic attraction to cause the short fibers to adhere to the adhesive layer on the comb teeth, the short fibers can be evenly distributed on the comb teeth and firmly bonded to them, making them less prone to falling off. Furthermore, this method also enables the shampoo comb of this application to be mass-produced industrially.
[0019] Preferably, the thickness of the first fiber layer is less than the thickness of the second fiber layer.
[0020] The thickness of the first fiber layer on the comb teeth surface is less than that of the second fiber layer on the comb tooth base surface. Firstly, the thinner first fiber layer on the comb teeth surface allows the comb teeth to retain some rigidity, ensuring that when combing thick or tangled hair, the comb teeth can effectively separate hair strands without collapsing excessively due to an overly thick first fiber layer, resulting in weak combing. Furthermore, the thinner first fiber layer allows the tips or ends of the comb teeth to clearly transmit tactile sensation, providing a certain massage effect. Simultaneously, the fibers in the first fiber layer act as a buffer, preventing stinging. Secondly, the thicker second fiber layer on the comb tooth base can better support the surface-level massage and hair retention functions. During combing, when hair is drawn to the base area by the comb teeth, the thicker second fiber layer provides soft support. The comb base acts as a support and cushion, preventing the hard base from directly impacting the scalp, thus improving the smoothness and comfort of combing. The thicker second fiber layer has a larger specific surface area, which can hold more of the second shampoo and conditioner ingredients (such as scalp oil-control powder or nourishing essence). During repeated combing, these ingredients are released slowly and continuously, achieving long-lasting scalp care and extending the product's lifespan per use. Thirdly, free dirt or residual ingredients that fall off during combing are more easily transferred from the thinner first fiber layer on the comb teeth surface and absorbed into the thicker second fiber layer on the comb base surface. This helps keep the comb teeth area relatively clean and continue to perform its combing function, while dirt is collected in the comb base area for easy cleaning later.
[0021] Preferably, the first fiber layer includes at least one of polyester fiber, nylon fiber, acrylic fiber, and viscose fiber, and / or the second fiber layer includes at least one of polyester fiber, nylon fiber, acrylic fiber, and viscose fiber.
[0022] Using the above materials as the materials for the first and second fiber layers can give the first and second fiber layers good pile formation (more pile makes it easier to adsorb and contain powder) and processability (it can be attached to the comb tooth surface by spraying, soaking or electrostatic adsorption).
[0023] Preferably, the first fiber layer comprises nylon fibers, and / or the second fiber layer comprises nylon fibers.
[0024] Compared to other materials, nylon has a lower modulus and higher resilience. First, the softness of nylon provides excellent skin-friendly feel when the comb teeth and base come into contact with the scalp, making it especially suitable for people with sensitive scalps. Second, the high resilience of nylon allows the fibers to quickly return to their upright position after repeated bending, which helps maintain combing effect and powder adsorption capacity. Third, nylon has a better powder loading capacity than most synthetic fibers, which helps to increase the powder loading on the fiber layer formed by nylon.
[0025] Preferably, the first powder and / or the second powder comprises organic powder, inorganic powder, and plant-derived powder; the organic powder comprises at least one of organosilicon powder, starch, modified starch, plant fiber, and modified plant fiber; the inorganic powder comprises at least one of silica, kaolin, talc, mineral mud, carbon powder, zeolite, diatomaceous earth, expanded vermiculite, silica, and carbon powder.
[0026] Preferably, the organosilicon powder includes at least one of polymethylsilsesquioxane, vinyl polydimethylsiloxane / polymethylsilsesquioxane crosslinked polymer, polydimethylsiloxane / vinyl polydimethylsiloxane crosslinked polymer, and diphenyl polydimethylsiloxane / vinyl diphenyl polydimethylsiloxane / silsesquioxane crosslinked polymer.
[0027] Preferably, in both the first and second washing and conditioning materials, the mass ratio of organic powder to inorganic powder is (5-15):(0.1-1).
[0028] The above-mentioned organic and inorganic powders are used as the powder components of the first and second shampoo and conditioner materials, and the mass ratio of organic to inorganic powders is controlled within the above-mentioned range. Firstly, the inorganic powder mainly plays a role in porous adsorption, which can quickly absorb excess oil and moisture from the hair, resulting in a matte and fluffy effect after combing. Secondly, in addition to assisting adsorption, the organic powder can also give the hair a silky feel and smooth combing under dry conditions. Moreover, the organic powder can form a smooth film on the surface of the hair, reducing friction and improving the excessive dryness and roughness that inorganic powder may cause. Thus, there is a synergistic effect between organic and inorganic powders. Inorganic powder absorbs oil, while organic powder achieves a smooth effect. The combination of the two makes the combed hair both clean and smooth, effectively solving the problem of single powder systems being more effective in cleaning than in conditioning.
[0029] Preferably, the shampoo comb also includes a handle, which is detachably connected to the comb head.
[0030] The comb handle and comb head are detachable, making it easy for users to change to different comb heads with different functions (such as massage comb head, styling comb head) according to the usage scenario. It is also easy to store and carry, which improves the flexibility and expandability of the product. In addition, the comb head can be disposable after use.
[0031] Preferably, the shampoo comb further includes a ventilation device, which is detachably connected to the comb head.
[0032] By introducing detachable ventilation devices (such as small fans or blower interfaces), the shampoo comb can achieve both dry cleaning and auxiliary drying / styling effects at the same time. The airflow provided by the ventilation device can help blow away powder and dirt that falls off during the combing process, keeping the fiber layer clean, and allowing for quick drying and styling during the combing process.
[0033] Preferably, the comb base is provided with a first ventilation hole.
[0034] A first ventilation hole is set in the base of the comb teeth, so that the airflow from the ventilation device can be evenly diffused to the entire combing area through the base of the comb teeth, drying the fiber layer and keeping it dry and hygienic, while also blowing on the scalp, bringing a cool and refreshing user experience.
[0035] Preferably, the comb teeth are hollow, and the surface of the comb teeth is provided with a second ventilation hole.
[0036] The comb teeth are designed to be hollow with a second ventilation hole on their surface, allowing airflow to reach the roots and inside of the hair strands. Firstly, hot / cold air blows from the roots to the ends, making drying more efficient. Secondly, the airflow from the ventilation device can blow away powder and dirt tangled at the base of the comb teeth, helping to clean the fiber layer. Thirdly, in conjunction with combing, the airflow from the ventilation device can help the hair strands form a fluffy or straight style more quickly.
[0037] Preferably, the shampoo comb further includes a vibration device (e.g., an ultrasonic vibration element, a small vibration motor), which is detachably connected to the comb head. By introducing a detachable vibration device, the powder on the shampoo comb can be more evenly distributed onto the hair / scalp, and a scalp massage effect can be achieved while combing the hair. Attached Figure Description
[0038] Figure 1 This is a schematic diagram of the comb head in the shampoo comb provided in Example 1.
[0039] Figure 2 This is a schematic diagram of the structure of the shampoo comb provided in Example 1.
[0040] Figure 3 This is a schematic diagram of the structure of the shampoo comb provided in Example 17.
[0041] Figure 4This is a schematic diagram of the structure of the shampoo comb provided in Example 19.
[0042] Figure 5 This is a partially enlarged structural diagram of the comb teeth in the comb head of the shampoo comb provided in Example 20.
[0043] Figure 6 This is a schematic diagram of the structure of the shampoo comb provided in Example 21.
[0044] Reference numerals: 1. Comb teeth, 2. Comb tooth base, 3. Comb head, 4. Comb handle, 5. Ventilation device, 6. First ventilation hole, 7. Second ventilation hole, 8. Vibration device. Detailed Implementation
[0045] The technical features of the technical solution provided by the present invention will be further clearly and completely described below with reference to specific embodiments. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0046] In the following examples and comparative examples, the lengths of the polyester fibers, nylon fibers, acrylic fibers, and viscose fibers involved can be obtained by measuring them using a fiber length analyzer and analyzing them using a fiber image analyzer.
[0047] In the shampoo combs provided in the following embodiments and comparative examples, after a fiber layer of polyester fiber (polyester), nylon fiber (nylon), acrylic fiber or viscose fiber is formed on the surface of the comb teeth and / or comb tooth base, the fiber layer formed on the surface of the comb teeth and / or comb tooth base can be scraped off and the fiber length therein can be measured.
[0048] In the preparation process of the shampoo combs provided in the following examples and comparative examples, a very small portion of the fibers may break during the actual fiber manufacturing process. The fiber lengths mentioned below refer to the average length of the fibers used and do not represent the absolute length of each fiber.
[0049] Example 1 A shampoo comb with hair cleaning function, its structure is as follows: Figure 2 As shown, the shampoo comb includes a comb head 3 and a comb handle 4. The structure of the comb head 3 is as follows: Figure 1 As shown, the comb head 3 includes comb teeth 1 and comb tooth base 2 for fixing the comb teeth. The surface of the comb teeth 1 is covered with a first fiber layer. The first fiber layer contains a first washing and conditioning material. The first washing and conditioning material contains a first powder. The first powder includes organic powder and inorganic powder. The shampoo comb provided in this embodiment is prepared through the following steps: (1) Remove oil and dust from the surfaces of the comb teeth 1 and comb base 2, which are made of polyethylene terephthalate (PET); (2) Apply adhesive (flocking glue) to the surface of the comb teeth, use an electrostatic generator to charge the polyester fiber fluff with a length of 5 mm and under the action of electric field force to adsorb the polyester fiber fluff onto the surface of the comb teeth 1 coated with adhesive, dry and remove the unadsorbed floating hair, and form a first fiber layer with a thickness of 1 mm on the surface of the comb teeth to obtain a semi-finished product. (3) The organic powder (polymethylsilsesquioxane) and the inorganic powder (silica) are mixed at a mass ratio of 10:1 to obtain the first powder; (4) Water and ethanol are mixed at a volume ratio of 85:15 to obtain a solvent; (5) Disperse the first powder in a solvent to obtain the first cleaning and conditioning material; (6) The first shampoo and conditioner is sprayed onto the surface of the first fiber layer in the semi-finished product, and after drying, the shampoo comb of this embodiment is obtained.
[0050] Example 2 A shampoo comb with hair cleaning function, the shampoo comb includes a comb head, the comb head includes comb teeth and a comb tooth base for fixing the comb teeth, the surface of the comb teeth is covered with a first fiber layer, the first fiber layer contains a first shampoo and conditioner body, the first shampoo and conditioner body contains a first powder, the first powder includes organic powder and inorganic powder. The shampoo comb provided in this embodiment is prepared through the following steps: (1) Remove oil and dust from the surface of the comb teeth and comb base made of polyethylene terephthalate (PET); (2) Apply adhesive (flocking glue) to the surface of the comb teeth, use an electrostatic generator to charge the polyester fiber fluff with a length of 0.1 mm and adsorb the polyester fiber fluff onto the surface of the comb teeth coated with adhesive under the action of electric field force, dry and remove the unadsorbed floating hair, and form a first fiber layer with a thickness of 2 mm on the surface of the comb teeth to obtain a semi-finished product. (3) The organic powder (polymethylsilsesquioxane) and the inorganic powder (silica) are mixed at a mass ratio of 5:0.1 to obtain the first powder; (4) Water and ethanol are mixed at a volume ratio of 85:15 to obtain a solvent; (5) Disperse the first powder in a solvent to obtain the first cleaning and conditioning material; (6) The first shampoo and conditioner is sprayed onto the surface of the first fiber layer in the semi-finished product, and after drying, the shampoo comb of this embodiment is obtained.
[0051] Example 3 A shampoo comb with hair cleaning function, the shampoo comb includes a comb head, the comb head includes comb teeth and a comb tooth base for fixing the comb teeth, the surface of the comb teeth is covered with a first fiber layer, the first fiber layer contains a first shampoo and conditioner body, the first shampoo and conditioner body contains a first powder, the first powder includes organic powder and inorganic powder. The shampoo comb provided in this embodiment is prepared through the following steps: (1) Remove oil and dust from the surface of the comb teeth and comb base made of polyethylene terephthalate (PET); (2) Apply adhesive (flocking glue) to the surface of the comb teeth, use an electrostatic generator to charge the polyester fiber fluff with a length of 10 mm, and under the action of electric field force, the polyester fiber fluff is adsorbed onto the surface of the comb teeth coated with adhesive. After drying and removing the unadsorbed floating hair, a first fiber layer with a thickness of 0.2 mm is formed on the surface of the comb teeth to obtain a semi-finished product. (3) The organic powder (polymethylsilsesquioxane) and the inorganic powder (silica) are mixed at a mass ratio of 15:0.6 to obtain the first powder; (4) Water and ethanol are mixed at a volume ratio of 85:15 to obtain a solvent; (5) Disperse the first powder in a solvent to obtain the first cleaning and conditioning material; (6) The first shampoo and conditioner is sprayed onto the surface of the first fiber layer in the semi-finished product, and after drying, the shampoo comb of this embodiment is obtained.
[0052] Example 4 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 1, the difference in structure is that the surface of the comb base is covered with a second fiber layer, the second fiber layer contains a second washing and conditioning material, the second washing and conditioning material contains a second powder, and the second powder includes organic powder and inorganic powder. The shampoo comb provided in this embodiment is prepared through the following steps: (1) Remove oil and dust from the surface of the comb teeth and comb base made of polyethylene terephthalate (PET); (2) Apply adhesive (flocking glue) to the surface of the comb teeth and the comb base respectively. Use an electrostatic generator to charge the polyester fiber fluff with a length of 5 mm and under the action of electric field force, the polyester fiber fluff is adsorbed onto the surface of the comb teeth and the comb base coated with adhesive. After drying and removing the unadsorbed floating hair, a first fiber layer with a thickness of 1 mm is formed on the surface of the comb teeth and a second fiber layer with a thickness of 1 mm is formed on the surface of the comb base to obtain a semi-finished product. (3) The organic powder (polymethylsilsesquioxane) and the inorganic powder (silica) are mixed at a mass ratio of 10:1 to obtain the first powder; the organic powder (polymethylsilsesquioxane) and the inorganic powder (silica) are mixed at a mass ratio of 10:1 to obtain the second powder; (4) Water and ethanol are mixed at a volume ratio of 85:15 to obtain a solvent; (5) Disperse the first powder in a solvent to obtain the first cleaning and conditioning material; disperse the second powder in a solvent to obtain the second cleaning and conditioning material; (6) The first shampoo and conditioner is sprayed onto the surface of the first fiber layer in the semi-finished product, and the second shampoo and conditioner is sprayed onto the surface of the second fiber layer in the semi-finished product. After drying, the shampoo comb of this embodiment is obtained.
[0053] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 1.
[0054] Example 5 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in composition is that in the preparation step (2) of the shampoo comb, the length of the polyester fiber fluff is 0.1 mm, and the thickness of the second fiber layer formed on the surface of the comb tooth base is 2 mm.
[0055] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0056] Example 6 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in composition is that in the preparation step (2) of the shampoo comb, the length of the polyester fiber fluff is 10 mm, and the thickness of the second fiber layer formed on the surface of the comb tooth base is 0.2 mm.
[0057] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0058] Example 7 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in the composition is that in the preparation step (2) of the shampoo comb, the thickness of the first fiber layer formed on the surface of the comb teeth is 1 mm and the thickness of the second fiber layer formed on the surface of the comb tooth base is 2 mm.
[0059] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0060] Example 8 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in the composition is that in the preparation step (2) of the shampoo comb, the thickness of the first fiber layer formed on the surface of the comb teeth is 2 mm and the thickness of the second fiber layer formed on the surface of the comb tooth base is 1 mm.
[0061] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0062] Example 9 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in the composition is that in the preparation step (2) of the shampoo comb, the thickness of the first fiber layer formed on the surface of the comb teeth is 0.1 mm and the thickness of the second fiber layer formed on the surface of the comb tooth base is 2.5 mm.
[0063] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0064] Example 10 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in the composition is that in the preparation step (2) of the shampoo comb, the thickness of the first fiber layer formed on the surface of the comb teeth is 2.5 mm and the thickness of the second fiber layer formed on the surface of the comb tooth base is 0.1 mm.
[0065] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0066] Example 11 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in composition is that the first fiber layer and the second fiber layer are made of nylon fiber. That is, in the preparation step (2) of the shampoo comb, nylon fiber fluff with a length of 5 mm is used instead of polyester fiber fluff with a length of 5 mm.
[0067] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0068] Example 12 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in composition is that the first fiber layer and the second fiber layer are made of acrylic fiber. That is, in the preparation step (2) of the shampoo comb, acrylic fiber fluff with a length of 5 mm is used instead of polyester fiber fluff with a length of 5 mm.
[0069] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0070] Example 13 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in composition is that the first fiber layer and the second fiber layer are made of viscose fiber. That is, in the preparation step (2) of the shampoo comb, viscose fiber fluff with a length of 5 mm is used instead of polyester fiber fluff with a length of 5 mm.
[0071] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0072] Example 14 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in composition is that in the preparation process of the first powder and the second powder involved in the preparation step (3) of the shampoo comb, an equal amount of inorganic powder is used to replace the organic powder. That is, the first powder and the second powder contain only inorganic powder and no organic powder.
[0073] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0074] Example 15 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in composition is that in the preparation process of the first powder and the second powder involved in the preparation step (3) of the shampoo comb, the mass ratio of organic powder to inorganic powder is 1:3.
[0075] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0076] Example 16 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in structure is that the shampoo comb also includes a comb handle, the comb head is provided with a buckle, and the comb handle is provided with a slot that cooperates with the buckle. The comb handle and the comb head are detachably connected by the engagement or disengagement of the buckle and the slot.
[0077] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0078] Example 17 This embodiment provides a shampoo comb with hair cleaning function, the structure of which is as follows: Figure 3As shown, compared with embodiment 4, the difference in configuration is that: one end of the comb head 3 is provided with a threaded connection part, and the comb handle 4 is provided with a threaded hole that matches the threaded connection part. The comb handle 4 and the comb head 3 are detachably connected through the threaded connection part and the threaded hole.
[0079] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0080] Example 18 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in configuration is that the shampoo comb also includes a blower device. The connection between the comb head and the blower device is provided with a first magnetic element and a second magnetic element, respectively. The comb head and the blower device are detachably connected by magnetic attraction between the first magnetic element and the second magnetic element.
[0081] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0082] Example 19 This embodiment provides a shampoo comb with hair cleaning function, the structure of which is as follows: Figure 4 As shown, the difference in configuration compared to Example 4 is: (1) The shampoo comb also includes a ventilation device 5 (i.e., a blower). The blower can adopt the structure of a hair dryer known in the art, which will not be shown in detail here. The connection between the comb head 3 and the ventilation device 5 is provided with a first magnetic element and a second magnetic element, respectively. The comb head 3 and the ventilation device 5 are detachably connected by magnetic attraction between the first magnetic element and the second magnetic element; (2) The comb tooth base 2 is provided with a first ventilation hole 6. The airflow of the first ventilation hole 6 is connected to the airflow of the ventilation device 5.
[0083] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0084] Example 20 This embodiment provides a shampoo comb with hair cleaning function. Compared with embodiment 4, the difference in structure is: (1) The shampoo comb also includes a ventilation device (i.e., a blower). The connection between the comb head and the ventilation device is provided with a first magnetic element and a second magnetic element, respectively. The comb head and the ventilation device are detachably connected by magnetic attraction between the first magnetic element and the second magnetic element; (2) A partial enlarged structural diagram of the comb teeth is shown in the figure. Figure 5 As shown, the comb teeth 1 are hollow and the surface of the comb teeth 1 is provided with a second ventilation hole 7, and the airflow of the second ventilation hole 7 is connected to the airflow of the blower.
[0085] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0086] Example 21 This embodiment provides a shampoo comb with hair cleaning function, the structure of which is as follows: Figure 6 As shown, the difference in configuration compared to Example 19 is that the ventilation device 5 in Example 19 is replaced with the vibration device 8. The vibration device can adopt the ultrasonic vibration structure in an electric toothbrush or the eccentric motor structure in a massager, which are known in the art, and will not be shown in detail here.
[0087] Apart from the differences mentioned above, the materials, formulation ratios, and preparation operations used in this embodiment are strictly consistent with those in Example 4.
[0088] Comparative Example 1 A shampoo comb, wherein the comb teeth and the base of the comb teeth are made of polyethylene terephthalate (PET), the comb teeth are smooth, the surface of the comb teeth is not covered with any fiber layer, and does not contain any shampoo or conditioner.
[0089] Comparative Example 2 This comparative example provides a shampoo comb with hair cleaning function. Compared with Example 4, the difference in its structure is that the first fiber layer does not contain the first shampoo and conditioner.
[0090] Apart from the differences mentioned above, the materials, formulation ratios, and preparation procedures used in this comparative example are strictly consistent with those in Example 4.
[0091] Comparative Example 3 This comparative example provides a shampoo comb with hair cleaning function. The difference in composition compared with Example 4 is that the length of the polyester fiber fluff used in the preparation step (2) of the shampoo comb is 0.05 mm.
[0092] Apart from the differences mentioned above, the materials, formulation ratios, and preparation procedures used in this comparative example are strictly consistent with those in Example 4.
[0093] Comparative Example 4 This comparative example provides a shampoo comb with hair cleaning function. The difference in composition compared with Example 4 is that the length of the polyester fiber fluff used in the preparation step (2) of the shampoo comb is 12 mm.
[0094] Apart from the differences mentioned above, the materials, formulation ratios, and preparation procedures used in this comparative example are strictly consistent with those in Example 4.
[0095] Test case 1. User experience evaluation Women aged 18-50 with medium-length hair were randomly selected as volunteers. Each volunteer's hair was combed using the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4. After combing, the volunteers rated the smoothness, oiliness, freshness, and comfort of the hair during the use of the shampoo comb (1 point is the worst, and 5 points is the best). The final result is expressed as the average comprehensive score. The average comprehensive score is used to characterize the user experience evaluation. The higher the score, the better the user experience evaluation, and the lower the score, the worse the user experience evaluation. The user experience evaluation results are shown in Table 1.
[0096] Table 1 User Experience Evaluation Results
[0097] The user experience evaluation results of the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4 are shown in Table 1.
[0098] Compared with Comparative Examples 1-4, the shampoo combs provided in Examples 1-20 have a first fiber layer with a fiber length between 0.1 and 10 mm on the surface of the comb teeth, and a first shampoo and conditioner containing a first powder is attached to the first fiber layer. During the combing process, the first fiber layer contacts and rubs against the hair and scalp. The first powder can be slowly and continuously released and evenly transferred to the hair and scalp surface as the comb teeth move. In this process, the first powder quickly grabs excess oil and dirt on the hair through physical adsorption. It can simultaneously achieve the functions of combing, cleaning and conditioning hair without rinsing. Moreover, the soft first fiber layer, supported by the comb teeth, can effectively contact the scalp to adsorb excess oil and keratin, and also provide cushioning to prevent the hard comb teeth from directly scratching the scalp, bringing a comfortable massage experience. Therefore, the overall user experience score of the shampoo combs provided in Examples 1-20 is higher than that of Comparative Examples 1-4.
[0099] 2. Washing and conditioning material transfer rate Women aged 18-50 with medium-length hair were randomly selected as volunteers. The hair of each volunteer was combed using the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4, respectively. The loading of the shampoo and conditioner powder in the fiber layer of the shampoo comb before and after combing was tested after the same number of combings (combing from root to tip once and twice). The transfer rate of the shampoo and conditioner powder in the fiber layer after combing was calculated according to the following formula: Transfer rate of shampoo and conditioner powder (%) = Load of shampoo and conditioner powder in the fiber layer before combing / Load of shampoo and conditioner powder in the fiber layer after combing × 100%. The test results of the transfer rate of shampoo and conditioner powder in the fiber layer of the shampoo comb after combing once or twice are shown in Table 2.
[0100] Table 2. Test results of the transfer rate of shampoo and conditioner ingredients in the fiber layer of the shampoo comb.
[0101] The results of the transfer rate test of the shampoo and conditioner materials in the fiber layer of the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4 are shown in Table 2.
[0102] As shown in Table 2, the fibers used in the preparation of the shampoo comb in Comparative Example 3 were too short, resulting in an extremely low transfer rate of the shampoo and conditioner material in the fiber layer, only 18% initially, indicating that it could not effectively load the powder. The fibers used in the preparation of the shampoo comb in Comparative Example 4 were too long, with an initial transfer rate as high as 68% and a second transfer rate of 92%, indicating that a large amount of powder fell off and the release was uncontrollable. In contrast, the transfer rate of the shampoo and conditioner material in the fiber layer of the shampoo combs in Examples 1-20 was moderate, indicating that the powder could be released evenly and continuously over time, achieving a slow-release effect.
[0103] 3. Oil absorption rate The oil absorption rate of the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4 was tested respectively, and the test methods are as follows: The sebum content of hair strands was tested using a Sebumeter SM810 (Courage & Khazaka, Germany). The test principle is as follows: matte tape is pressed onto the hair strands. After the tape absorbs the sebum on the surface of the hair strands, it becomes translucent. The more sebum absorbed, the greater the amount of light transmitted. The transparency is proportional to the amount of sebum. The amount of sebum on the hair strands is characterized by measuring the amount of light transmitted through the matte tape. (1) Select human hair bundles and divide them into 5 equal weight portions. Lay the hair bundles flat on a glass plate and apply a fixed amount of triglycerides evenly to the surface of the volunteer's hair. Repeat the action of turning the hair bundles over several times to make the oil evenly applied. Record the weight of the hair before and after applying the oil to ensure that each bundle has the same amount of oil. (2) Press the matte tape onto the surface of the middle section of the hair strand for 30 seconds, put the test tape into the slider of the instrument and push it into the instrument, and read the instrument reading 1. (3) Using a shampoo comb, the same operator combs the oil-laden hair strands from root to tip 20 times with constant force and speed; (4) Repeat step 2 and read the instrument reading 2; (5) Calculate the oil absorption rate of the shampoo comb according to the following formula: oil absorption rate of shampoo comb = (reading 2 - reading 1) / reading 1 × 100%. Take the average of 5 results, and the results are shown in Table 3.
[0104] Table 3. Oil absorption rate test results of shampoo combs
[0105] The user experience evaluation results of the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4 are shown in Table 3.
[0106] After combing the hair strands using the shampoo combs provided in Examples 1-3, excess oil in the hair can be quickly absorbed, with an oil absorption rate as high as 67-72%. Compared with Example 1, the shampoo comb provided in Comparative Example 1 does not have a first fiber layer on the surface of the comb teeth, and the shampoo comb provided in Comparative Example 2 does not have a first shampoo and conditioner on the first fiber layer. The test results show that after combing the hair strands using the shampoo combs provided in Comparative Example 1 and Comparative Example 2, the oil absorption rate (8% and 37%) is significantly lower than that in Example 1.
[0107] The shampoo comb provided in Example 1 has a first fiber layer containing a first shampoo and conditioner on the surface of the comb teeth. Compared with Example 1, the shampoo comb provided in Example 4 also has a second fiber layer containing a second shampoo and conditioner on the surface of the comb tooth base. The test results show that after combing the hair strands with the shampoo comb provided in Example 4, the oil absorption rate (85%) is significantly higher than that of Example 1 (72%).
[0108] By comparing the oil absorption rate data of Examples 4, 11, 12, and 13, it can be seen that the use of nylon fiber as the material of the first and second fiber layers allows the powder to be better adsorbed onto the first and second fiber layers and improves the adsorption capacity for oil, thereby increasing the oil absorption rate and achieving deep cleaning.
[0109] 4. Oil control duration Women aged 18-50 with medium-length hair were randomly selected as volunteers. Before the test, the initial sebum content of the volunteers' scalp in the center of the crown or temples was measured using a Sebumeter SM810 (Courage & Khazaka, Germany), and recorded as T0. The volunteers' hair was combed from root to tip 20 times using the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4, respectively. At 2, 4, 6, and 8 hours after combing, the sebum content of the volunteers' scalp in the center of the crown or temples was measured using a Sebumeter SM810, and recorded as T0. x Calculate the sebum amount ΔT at each time point = (T x -T0), which measures the oil control duration after using a shampoo comb by the amount of sebum. The smaller the ΔT value, the better the oil control duration; the larger the ΔT value, the worse the oil control duration.
[0110] Table 4. Results of oil control durability test after shampooing and combing hair.
[0111] The results of the test on the oil control durability of hair after combing with the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4 are shown in Table 4.
[0112] Table 4 shows that the amount of sebum on the scalp after combing hair with the shampoo combs provided in Examples 1-20 was lower than that in Comparative Examples 1-4, and the rate of sebum release slowed down over time. Comparing the sebum amount data of Examples 1 and 4 shows that a fiber layer on the surface of the comb base provides a longer-lasting oil control effect. In Examples 1, 7, and 8, the sebum amount was lowest 8 hours after combing hair with the shampoo comb of Example 7, indicating that a thicker fiber layer on the comb base surface can carry more powder, achieving long-lasting slow release and thus improving the oil control duration. Comparing the sebum amount data of Examples 4, 11, 12, and 13 shows that the use of nylon fiber in the first and second fiber layers allows for better powder adsorption onto the first and second fiber layers and provides excellent release performance. The oil control duration was best after combing hair with the shampoo comb of Example 11.
[0113] 5. Hair combing effect The effects of using the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4 on combing hair were tested. The test method was based on the method in Section 3.3.2 of Lü Miao's master's thesis "Research on Modification of Hydroxyethyl Cellulose and Its Application in Shampoo". The dry combing performance was tested, and the combing work was calculated according to the combing curve. The results are shown in Table 5. The smaller the dry combing work, the better the hair combing effect of the shampoo comb. Conversely, the larger the dry combing work, the worse the hair combing effect of the shampoo comb.
[0114] Table 5. Hair combing effect of shampoo comb
[0115] The hair combing effect was tested after the hair was combed using the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4. The results are shown in Table 5.
[0116] The combing power of the shampoo combs provided in Examples 1 to 20 is significantly lower than that of Comparative Example 1, which indicates that the shampoo combs provided in Examples 1 to 20 have a good combing effect on hair, and the combing process is smoother and less strenuous.
[0117] By comparing the combing performance data of Example 4, Comparative Example 3, and Comparative Example 4, it can be seen that if the fiber length in the fiber layer on the surface of the comb teeth and comb base of the shampoo comb is too long or too short, the combing resistance will increase.
[0118] In Examples 4, 11, 12, and 13, Example 11 had the lowest combing power, indicating that the low modulus and high resilience of nylon fibers significantly improved the combing smoothness of the shampoo comb.
[0119] 6. Fluffiness The volume of the hair was tested after combing the hair strands using the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4, respectively. The specific operating methods are as follows: (1) Hair bundle preparation and initial volume measurement Take a strand of real human hair, thoroughly clean it with a 5% sodium ethoxylated alkyl sulfate (SLES) solution to remove residual grease, hang it overnight in a constant temperature and humidity environment (temperature 22±1℃, humidity 50±5%) to dry, then gently shake the dried hair strands apart, and take a picture of each hair strand every 120 degrees (i.e., rotate the hair strand support) in a self-made shooting light box, for a total of three pictures. Import the pictures into Image Pro image analysis software, calculate the average value of the projected area of the hair strand in the three pictures, and record it as the initial area A0. (2) Pretreatment to simulate greasy state The hair strands were completely immersed in a 1% ethanol solution of artificial sebum to fully saturate them. After removing them, they were hung in a fume hood for 30 minutes to allow the ethanol to evaporate completely, so that the artificial sebum could be evenly applied to the surface of the hair strands to simulate the state of oily hair. (3) Hair comb treatment Take a hair strand after simulating an oily state, and use the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4 respectively. The same operator combs the hair from root to tip 20 times at a speed of about 1 time / second with constant force. (4) Measurement of fluffiness after treatment Immediately place the combed hair strands (keeping them naturally fluffy after combing, and do not shake them by hand) into the shooting light box, and take three more photos in the same shooting angle and method as in step (1), calculate their average projected area, and record it as the processed area A1; (5) Calculate the fluffiness lift Calculate the volume lift using the following formula: I = (A1) A0) / A0×100%, where the larger the I value, the better the shampoo comb's effect on lifting and volumizing the hair strands; conversely, the smaller the I value, the worse the shampoo comb's effect on lifting and volumizing the hair strands.
[0120] Table 6. Results of hair volume test after combing hair strands with a shampoo comb
[0121] The results of the hair fluffiness test after combing the hair strands using the shampoo combs provided in Examples 1-20 and Comparative Examples 1-4 are shown in Table 6.
[0122] As shown in Table 6, the shampoo comb provided in Comparative Example 1, which does not contain a fiber layer, only increased the hair's fluffiness by 4% after combing the hair strands. However, the shampoo combs provided in Examples 1-3 increased the hair's fluffiness by more than 20%, demonstrating that the shampoo comb provided by this invention can significantly improve the fluffiness of the hair strands. The shampoo comb provided in Example 14 contains only inorganic powder in its fiber layer. By comparing the fluffiness improvement data of Examples 4 and 14, it can be seen that the organic powder in the fiber layer can improve the fluffiness of the hair to a certain extent. The shampoo comb provided in Example 7 has a thinner first fiber layer on the surface of the comb teeth than the second fiber layer on the surface of the comb tooth base. By comparing the fluffiness improvement data of Examples 4 and 7, it can be seen that optimizing the thickness of the first and second fiber layers is beneficial for the efficient transfer and distribution of powder during the combing process, thereby obtaining a better fluffiness effect.
[0123] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention, but such modifications or substitutions are all within the scope of protection of the present invention.
Claims
1. A shampoo comb with hair cleaning function, characterized in that: The shampoo comb includes a comb head, the comb head includes comb teeth, the surface of the comb teeth is at least partially covered with a first fiber layer, the length of the fibers in the first fiber layer is 0.1~10 mm, the first fiber layer contains a first shampoo and conditioner body, and the first shampoo and conditioner body contains a first powder.
2. The shampoo comb with hair cleaning function as described in claim 1, characterized in that: The comb head also includes a comb tooth base for fixing the comb teeth. The surface of the comb tooth base is at least partially covered with a second fiber layer. The length of the fibers in the second fiber layer is 0.1~10 mm. The second fiber layer contains a second shampoo and conditioner material, which contains a second powder.
3. The shampoo comb with hair cleaning function as described in claim 1 or 2, characterized in that: The thickness of the first fiber layer is 0.2 to 20 mm, and / or the thickness of the second fiber layer is 0.2 to 20 mm.
4. The shampoo comb with hair cleaning function as described in claim 1 or 2, characterized in that: The thickness of the first fiber layer is 0.2 to 2 mm, and / or the thickness of the second fiber layer is 0.2 to 2 mm.
5. The shampoo comb with hair cleaning function as described in claim 1 or 2, characterized in that: An adhesive layer is provided between the comb teeth and the first fiber layer, and / or an adhesive layer is provided between the comb teeth and the second fiber layer.
6. The shampoo comb with hair cleaning function as described in claim 1 or 2, characterized in that: The first fiber layer includes at least one of polyester fiber, nylon fiber, acrylic fiber, and viscose fiber, and / or the second fiber layer includes at least one of polyester fiber, nylon fiber, acrylic fiber, and viscose fiber.
7. The shampoo comb with hair cleaning function as described in claim 6, characterized in that: The first fiber layer comprises nylon fibers, and / or the second fiber layer comprises nylon fibers.
8. The shampoo comb with hair cleaning function as described in claim 1 or 2, characterized in that: The first powder and / or the second powder include organic powder and inorganic powder; The organic powder includes at least one of organosilicon powder, starch, modified starch, cellulose powder, modified cellulose powder, and hexamethylene diisocyanate / trimethylolhexyl lactone crosslinked polymer; The inorganic powder includes at least one of silica, kaolin, talc, mineral mud, carbon powder, zeolite, diatomaceous earth, expanded vermiculite, silica, and carbon powder.
9. The shampoo comb with hair cleaning function as described in claim 8, characterized in that: The organosilicon powder includes at least one of polymethylsilsesquioxane, vinyl polydimethylsiloxane / polymethylsilsesquioxane crosslinked polymer, polydimethylsiloxane / vinyl polydimethylsiloxane crosslinked polymer, and diphenyl polydimethylsiloxane / vinyl diphenyl polydimethylsiloxane / silsesquioxane crosslinked polymer.
10. The shampoo comb with hair cleaning function as described in claim 1, characterized in that: The shampoo comb also includes a handle, which is detachably connected to the comb head.
11. The shampoo comb with hair cleaning function as described in claim 1, characterized in that: The shampoo comb also includes a ventilation device, which is detachably connected to the comb head.
12. The shampoo comb with hair cleaning function as described in claim 11, characterized in that: The comb base is provided with a first ventilation hole.
13. The shampoo comb with hair cleaning function as described in claim 11, characterized in that: The comb teeth are hollow, and the surface of the comb teeth is provided with a second ventilation hole.
14. The shampoo comb with hair cleaning function as described in claim 1, characterized in that: The shampoo comb also includes a vibration device, which is detachably connected to the comb head.