Alginate fiber mask base cloth

Through the multi-layer structure design and specific combination of seaweed fiber and lyocell fiber, the shortcomings of traditional facial mask base fabrics in moisturizing and strength are solved, the fiber distribution is uniform and the quality is stable, and the usage experience and skin care effect of the mask are improved.

CN223481420UActive Publication Date: 2025-10-28XIFU TECH (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202422220061.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-10-28
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

Traditional single-layer mask base fabrics are deficient in moisture retention and physical strength, and the fiber distribution in the blended structure is uneven, resulting in large performance differences and complex production processes, making quality stability difficult to guarantee.

Method used

The multi-layer structure design of seaweed fiber and lyocell fiber is adopted, and through a specific combination and arrangement, the fiber functions are clearly defined and evenly distributed. Combining the moisturizing properties of seaweed fiber and the physical strength of lyocell fiber, antibacterial and antioxidant fiber layers are added to improve the overall performance of the mask base fabric.

Benefits of technology

The moisturizing effect and strength of the seaweed fiber mask base fabric are improved, the consistency of fiber distribution and quality stability are improved, performance differences are avoided, and user experience and skin care effects are enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses alginate fiber mask base cloth. The alginate fiber mask base cloth comprises a first alginate fiber layer, a second alginate fiber layer, a first lyocell fiber layer and a second lyocell fiber layer, wherein the first alginate fiber layer is attached to the top surface of the first lyocell fiber layer, the second alginate fiber layer is attached to the bottom surface of the first lyocell fiber layer, and then the second alginate fiber layer is attached to the second lyocell fiber layer; or the first alginate fiber layer is attached to the top face of the second alginate fiber layer, the first lyocell fiber layer is attached to the bottom face of the second alginate fiber layer, and then the second lyocell fiber layer is attached to the first lyocell fiber layer. According to the alginate fiber mask base cloth, the moisturizing effect of alginate fibers on the mask base cloth can be effectively exerted, and the strength of the mask base cloth and the consistency of fiber distribution can be effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of facial mask technology, and in particular to a seaweed fiber facial mask base fabric. Background Technology

[0002] In the beauty and skincare industry, facial masks are an important skincare product, and the performance of the mask base fabric directly affects the user experience and skincare results. Traditional facial mask base fabrics mainly use a single-layer structure.

[0003] In single-layer mask base fabrics, only one type of performance can be emphasized. For example, while a simple seaweed fiber mask base fabric has a certain moisturizing effect, it lacks physical strength and is prone to damage and deformation during use, affecting the convenience and comfort of use. On the other hand, mask base fabrics made solely of materials that provide physical strength often lack moisturizing and other skincare properties.

[0004] To overcome the shortcomings of single-layer mask base fabrics, blended mask base fabrics have emerged. While blended mask base fabrics attempt to combine the advantages of different fibers, achieving a uniform fiber distribution leads to significant performance differences in different parts of the mask, failing to fully utilize the strengths of each fiber. Furthermore, the production process for blended structures is more complex, making it difficult to precisely control the fiber ratio and distribution, thus compromising product quality stability. Utility Model Content

[0005] This utility model provides a seaweed fiber mask base fabric that can effectively utilize the moisturizing effect of seaweed fibers in the mask base fabric, and also effectively improve the strength and fiber distribution consistency of the mask base fabric.

[0006] One embodiment of this utility model provides a seaweed fiber mask base fabric, comprising: a first seaweed fiber layer, a second seaweed fiber layer, a first lyocell fiber layer, and a second lyocell fiber layer;

[0007] The first seaweed fiber layer is attached to the top surface of the first lyocell fiber layer, the second seaweed fiber layer is attached to the bottom surface of the first lyocell fiber layer, and the second lyocell fiber layer is attached to the side of the second seaweed fiber layer away from the first lyocell fiber layer.

[0008] As an improvement to the above scheme, both the first seaweed fiber layer and the second seaweed fiber layer are modified seaweed fiber layers.

[0009] As an improvement to the above scheme, both the first lyocell fiber layer and the second lyocell fiber layer are biodegradable fiber layers.

[0010] As an improvement to the above scheme, both the first and second lyocell fiber layers are perforated with multiple micropores with a diameter of 0.1 mm to 0.5 mm.

[0011] As an improvement to the above solution, the seaweed fiber mask base fabric further includes an antibacterial fiber layer, which is located between the first seaweed fiber layer and the first lyocell fiber layer.

[0012] As an improvement to the above solution, the seaweed fiber mask base fabric further includes an antioxidant fiber layer, which is located between the first seaweed fiber layer and the first lyocell fiber layer.

[0013] As an improvement to the above scheme, the thickness of the first seaweed fiber layer is less than the thickness of the second seaweed fiber layer, and the thickness of the first lyocell fiber layer is less than the thickness of the second lyocell fiber layer.

[0014] As an improvement to the above scheme, the thickness of the first seaweed fiber layer is 0.1-0.25 mm, the thickness of the second seaweed fiber layer is 0.3-0.5 mm, the thickness of the first lyocell fiber layer is 0.05-0.15 mm, and the thickness of the second lyocell fiber layer is 0.2-0.3 mm.

[0015] Another embodiment of this utility model provides a seaweed fiber mask base fabric, comprising: a first seaweed fiber layer, a second seaweed fiber layer, a first lyocell fiber layer, and a second lyocell fiber layer;

[0016] The first seaweed fiber layer is attached to the top surface of the second seaweed fiber layer, the bottom surface of the second seaweed fiber layer is attached to the first lyocell fiber layer, and the side of the first lyocell fiber layer away from the second seaweed fiber layer is attached to the second lyocell fiber layer.

[0017] As an improvement to the above scheme, both the first and second lyocell fiber layers are perforated with multiple micropores with a diameter of 0.1 mm to 0.5 mm.

[0018] Compared with the prior art, the above embodiments have the following beneficial effects:

[0019] This invention employs a multi-layered structure using two types of seaweed fiber mask base fabrics. By specifically combining and arranging seaweed fiber layers with lyocell fiber layers, it leverages both the moisturizing gel properties of seaweed fibers and the physical strength and structural stability provided by lyocell fibers. Specifically, a first seaweed fiber layer is attached to the top surface of a first lyocell fiber layer, a second seaweed fiber layer is attached to the bottom surface of the first lyocell fiber layer, and then another second lyocell fiber layer is attached to the second seaweed fiber layer; or, the first seaweed fiber layer is attached to the top surface of a second seaweed fiber layer, a first lyocell fiber layer is attached to the bottom surface of the second seaweed fiber layer, and then another second lyocell fiber layer is attached to the first lyocell fiber layer. As the above analysis shows, compared to the blended structures of existing technologies, the multi-layered structure of the seaweed fiber mask base fabric in this embodiment ensures that the functions of different fibers are clearly defined and evenly distributed, avoiding the problem of uneven fiber distribution in blended structures leading to significant performance differences in different parts of the mask, and fully utilizing the advantages of various fibers. Meanwhile, due to the specific multi-layered structural combination, the combination of structures is relatively more controllable, allowing for better control over the materials and thickness of each layer, thereby improving the quality stability of the product structure. Therefore, this embodiment can effectively leverage the moisturizing effect of seaweed fibers in the mask base fabric, while also effectively improving the strength of the mask base fabric and the consistency of fiber distribution. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of the first type of seaweed fiber mask base fabric provided in an embodiment of this utility model;

[0021] Figure 2 This is a schematic diagram of the structure of the second type of seaweed fiber mask base fabric provided in one embodiment of the present invention;

[0022] Figure 3 This is a schematic diagram of the structure of the third type of seaweed fiber mask base fabric provided in one embodiment of this utility model;

[0023] Figure 4 This is a schematic diagram of the structure of the fourth type of seaweed fiber mask base fabric provided in one embodiment of this utility model;

[0024] Figure labeling: 1-First seaweed fiber layer, 2-Second seaweed fiber layer, 3-First lyocell fiber layer, 4-Second lyocell fiber layer, 5-Antibacterial fiber layer, 6-Antioxidant fiber layer. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] See Figure 1 This is a schematic diagram of the structure of a seaweed fiber mask base fabric provided in one embodiment of the present invention. One embodiment of the present invention provides a seaweed fiber mask base fabric, comprising: a first seaweed fiber layer 1, a second seaweed fiber layer 2, a first lyocell fiber layer 3, and a second lyocell fiber layer 4; the first seaweed fiber layer 1 is attached to the top surface of the first lyocell fiber layer 3, the second seaweed fiber layer 2 is attached to the bottom surface of the first lyocell fiber layer 3, and the second lyocell fiber layer 4 is attached to the side of the second seaweed fiber layer 2 away from the first lyocell fiber layer 3.

[0027] In this embodiment, a multi-layer structure of two types of seaweed fiber mask base fabric is adopted. By specifically combining and arranging the seaweed fiber layer and the lyocell fiber layer, the moisturizing gel properties of the seaweed fiber are utilized, while the lyocell fiber provides physical strength and structural stability. Specifically, the first seaweed fiber layer 1 is attached to the top surface of the first lyocell fiber layer 3, the second seaweed fiber layer 2 is attached to the bottom surface of the first lyocell fiber layer 3, and the second seaweed fiber layer 2 is then attached to the second lyocell fiber layer 4. As can be seen from the above analysis, compared with the blended structure of the prior art, the multi-layer structure of the seaweed fiber mask base fabric in this embodiment can ensure that the functions of different fibers are clearly defined and evenly distributed, avoiding the problem of uneven fiber distribution in blended structures leading to large performance differences in different parts of the mask, and fully leveraging the advantages of various fibers. At the same time, due to the specific multi-layer structure combination, the combination of the structure is relatively more controllable, and the material and thickness of each layer can be better controlled, thereby improving the quality stability of the product structure. Therefore, this embodiment can effectively utilize the moisturizing effect of seaweed fibers in the mask base fabric, and can also effectively improve the strength of the mask base fabric and the consistency of fiber distribution.

[0028] As an improvement to the above solution, both the first seaweed fiber layer 1 and the second seaweed fiber layer 2 are modified seaweed fiber layers. The modified seaweed fiber layer can further improve its performance stability while retaining its original excellent properties such as moisturizing. For example, after modification, the hygroscopicity of the seaweed fiber may be more controllable, avoiding dripping during use due to excessive moisture absorption, thus improving the user experience. Simultaneously, modification can enhance the water and chemical resistance of the seaweed fiber, making it less prone to performance changes when in contact with skincare products such as serums, extending the shelf life and effectiveness of the mask. It is understood that the specific processing technology and materials for the modified seaweed fiber layer can refer to existing technologies.

[0029] As an improvement to the above solution, both the first lyocell fiber layer 3 and the second lyocell fiber layer 4 are biodegradable fiber layers. The biodegradable lyocell fiber layer can decompose relatively quickly in the natural environment after use, reducing environmental pollution.

[0030] As an improvement to the above solution, both the first lyocell fiber layer 3 and the second lyocell fiber layer 4 are perforated with multiple micropores with a diameter of 0.1 mm to 0.5 mm. The presence of these micropores increases the breathability of the lyocell fiber layer, allowing the skin to breathe freely during mask application, reducing stuffiness and discomfort. Good breathability aids skin metabolism and also reduces the probability of skin problems caused by prolonged masking. Furthermore, these micropores can partially store and slowly release the essence. During mask use, these micropores can absorb a certain amount of essence and gradually release it to the skin surface over time, allowing the skin to continuously absorb nutrients and improving skincare effects. In addition, as a further improvement, these micropores are evenly distributed in the first lyocell fiber layer 3 and the second lyocell fiber layer 4. Even distribution of micropores ensures a more uniform distribution of essence on the mask base, avoiding localized dryness or excessive essence, thus improving the efficiency of mask use.

[0031] It's important to note that the inventors discovered through research that if the pore size is too large, the essence absorbed by the mask will quickly leak out, failing to continuously provide nutrients to the skin during use. This not only reduces the mask's skincare effect but may also lead to essence waste. Larger pores weaken the structural strength of the lyocell fiber layer, making the mask easily stretched, deformed, or even torn during use, affecting convenience and comfort. Simultaneously, excessively large pores may cause the mask's base fabric surface to become rough, reducing its adhesion to the skin and affecting the delivery and absorption of the essence. Furthermore, if the pore size is too small, it restricts the release rate of the essence, making it difficult for the skin to fully absorb it, prolonging the skincare time, and potentially failing to meet users' needs for quick and effective skincare. Too small a pore size severely affects the breathability of the lyocell fiber layer, preventing the skin from breathing properly during mask use, easily causing a stuffy feeling and increasing the risk of skin problems. Smaller pores may also reduce the lyocell fiber layer's ability to absorb essence, reducing the amount of essence held on the mask and affecting the skincare effect.

[0032] As an improvement to the above solution, see [link to relevant documentation]. Figure 2The seaweed fiber mask base fabric also includes an antibacterial fiber layer 5, which is located between the first seaweed fiber layer 1 and the first lyocell fiber layer 3. The addition of the antibacterial fiber layer 5 significantly improves the antibacterial ability of the mask base fabric. During mask use, it effectively inhibits the growth and reproduction of bacteria, fungi, and other microorganisms, reducing skin problems caused by bacterial infections, such as acne, pimples, and redness.

[0033] As an improvement to the above solution, see [link to relevant documentation]. Figure 3 The seaweed fiber mask base fabric also includes an antioxidant fiber layer 6, which is located between the first seaweed fiber layer 1 and the first lyocell fiber layer 3. The antioxidant fiber layer 6 provides antioxidant protection for the skin, reducing free radical damage. Free radicals are one of the main causes of skin aging, dullness, wrinkles, and other problems. The antioxidant fiber layer 6 can neutralize free radicals and slow down the skin aging process. Furthermore, the antioxidant fiber layer 6 works synergistically with the seaweed fiber layer and the lyocell fiber layer to enhance the overall performance of the mask base fabric. For example, the antioxidant fiber layer 6 can protect the seaweed fiber and lyocell fiber from oxidation, extending their lifespan. Simultaneously, the moisturizing and strength properties of the seaweed fiber and lyocell fiber provide better support and allow the antioxidant fiber layer 6 to function effectively.

[0034] As an improvement to the above solution, the thickness of the first seaweed fiber layer 1 is less than the thickness of the second seaweed fiber layer 2, and the thickness of the first lyocell fiber layer 3 is less than the thickness of the second lyocell fiber layer 4. The thinner first seaweed fiber layer 1 directly contacts the skin, enabling rapid delivery of essence and providing moisturizing and other skincare benefits without feeling heavy, thus improving comfort. The thicker second seaweed fiber layer 2 serves as the main functional layer, carrying more essence and ensuring continuous nutrient supply during mask application. Regarding the lyocell fiber layers, the thinner first lyocell fiber layer 3 provides support and assists in essence delivery, while the thicker second lyocell fiber layer 4, located on the outermost layer of the mask, provides better physical strength and structural stability, preventing the mask from being easily stretched or deformed during use. Furthermore, this thickness variation design allows the mask base fabric to better conform to facial contours. The thinner portion more easily adapts to the subtle curves of the face, while the thicker portion, being relatively further away from the skin, ensures strength without compromising the overall fit.

[0035] As an improvement to the above solution, the thickness of the first seaweed fiber layer 1 is 0.1-0.25 mm, the thickness of the second seaweed fiber layer 2 is 0.3-0.5 mm, the thickness of the first lyocell fiber layer 3 is 0.05-0.15 mm, and the thickness of the second lyocell fiber layer 4 is 0.2-0.3 mm. The 0.1-0.25 mm thickness of the first seaweed fiber layer 1 ensures good moisturizing and skincare effects without being too heavy, allowing for rapid delivery of the essence to the skin. The 0.3-0.5 mm thickness of the second seaweed fiber layer 2 provides sufficient thickness to hold a large amount of essence, ensuring long-lasting skincare efficacy. For the lyocell fiber layers, the 0.05-0.15 mm thickness of the first lyocell fiber layer 3 provides moderate support and assistance, while the 0.2-0.3 mm thickness of the second lyocell fiber layer 4 provides good physical strength and stability without adding excessive weight.

[0036] See Figure 4 This is a schematic diagram of the structure of a seaweed fiber mask base fabric provided in another embodiment of the present invention. One embodiment of the present invention provides a seaweed fiber mask base fabric, comprising: a first seaweed fiber layer 1, a second seaweed fiber layer 2, a first lyocell fiber layer 3, and a second lyocell fiber layer 4; the first seaweed fiber layer 1 is attached to the top surface of the second seaweed fiber layer 2, the first lyocell fiber layer 3 is attached to the bottom surface of the second seaweed fiber layer 2, and the second lyocell fiber layer 4 is attached to the side of the first lyocell fiber layer 3 away from the second seaweed fiber layer 2.

[0037] In this embodiment, a multi-layer structure of two types of seaweed fiber mask base fabric is adopted. By specifically combining and arranging the seaweed fiber layer and the lyocell fiber layer, the moisturizing gel properties of the seaweed fiber are utilized, while the lyocell fiber provides physical strength and structural stability. Specifically, the first seaweed fiber layer 1 is attached to the top surface of the second seaweed fiber layer 2, the first lyocell fiber layer 3 is attached to the bottom surface of the second seaweed fiber layer 2, and the first lyocell fiber layer 3 is then attached to the second lyocell fiber layer 4. As can be seen from the above analysis, compared with the blended structure of the prior art, the multi-layer structure of the seaweed fiber mask base fabric in this embodiment can ensure that the functions of different fibers are clearly defined and evenly distributed, avoiding the problem of uneven fiber distribution in blended structures leading to large performance differences in different parts of the mask, and fully leveraging the advantages of various fibers. At the same time, due to the specific multi-layer structure combination, the combination of the structure is relatively more controllable, and the material and thickness of each layer can be better controlled, thereby improving the quality stability of the product structure. Therefore, this embodiment can effectively utilize the moisturizing effect of seaweed fibers in the mask base fabric, and can also effectively improve the strength of the mask base fabric and the consistency of fiber distribution.

[0038] As an improvement to the above scheme, both the first lyocell fiber layer 3 and the second lyocell fiber layer 4 are perforated with multiple micropores with a diameter of 0.1 mm to 0.5 mm.

[0039] As an improvement to the above scheme, both the first seaweed fiber layer 1 and the second seaweed fiber layer 2 are modified seaweed fiber layers.

[0040] As an improvement to the above scheme, both the first lyocell fiber layer 3 and the second lyocell fiber layer 4 are biodegradable fiber layers.

[0041] As an improvement to the above scheme, both the first lyocell fiber layer 3 and the second lyocell fiber layer 4 are perforated with multiple micropores with a diameter of 0.1 mm to 0.5 mm.

[0042] As an improvement to the above scheme, the thickness of the first seaweed fiber layer 1 is less than the thickness of the second seaweed fiber layer 2, and the thickness of the first lyocell fiber layer 3 is less than the thickness of the second lyocell fiber layer 4.

[0043] As an improvement to the above scheme, the thickness of the first seaweed fiber layer 1 is 0.1-0.25 mm, the thickness of the second seaweed fiber layer 2 is 0.3-0.5 mm, the thickness of the first lyocell fiber layer 3 is 0.05-0.15 mm, and the thickness of the second lyocell fiber layer 4 is 0.2-0.3 mm.

[0044] It is understood that the specific descriptions of the seaweed fiber mask base fabric in the above-mentioned embodiments can be understood by referring to them in conjunction with each other.

[0045] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.

Claims

1. A seaweed fiber facial mask base fabric, characterized in that, include: First seaweed fiber layer, second seaweed fiber layer, first lyocell fiber layer and second lyocell fiber layer; The first seaweed fiber layer is attached to the top surface of the first lyocell fiber layer, the second seaweed fiber layer is attached to the bottom surface of the first lyocell fiber layer, and the second lyocell fiber layer is attached to the side of the second seaweed fiber layer away from the first lyocell fiber layer. Both the first and second lyocell fiber layers have multiple micropores with a diameter of 0.1 mm to 0.5 mm; the thickness of the first seaweed fiber layer is 0.1-0.25 mm, the thickness of the second seaweed fiber layer is 0.3-0.5 mm, the thickness of the first lyocell fiber layer is 0.05-0.15 mm, and the thickness of the second lyocell fiber layer is 0.2-0.3 mm. The seaweed fiber mask base fabric also includes an antibacterial fiber layer, which is located between the first seaweed fiber layer and the first lyocell fiber layer. The seaweed fiber mask base fabric also includes an antioxidant fiber layer, which is located between the first seaweed fiber layer and the first lyocell fiber layer.

2. The seaweed fiber mask base fabric as described in claim 1, characterized in that, Both the first seaweed fiber layer and the second seaweed fiber layer are modified seaweed fiber layers.

3. The seaweed fiber mask base fabric as described in claim 1, characterized in that, Both the first and second lyocell fiber layers are biodegradable fiber layers.

4. The seaweed fiber mask base fabric as described in claim 1, characterized in that, The thickness of the first seaweed fiber layer is less than the thickness of the second seaweed fiber layer, and the thickness of the first lyocell fiber layer is less than the thickness of the second lyocell fiber layer.

5. A seaweed fiber facial mask base fabric, characterized in that, include: First seaweed fiber layer, second seaweed fiber layer, first lyocell fiber layer and second lyocell fiber layer; The first seaweed fiber layer is attached to the top surface of the second seaweed fiber layer, the bottom surface of the second seaweed fiber layer is attached to the first lyocell fiber layer, and the side of the first lyocell fiber layer away from the second seaweed fiber layer is attached to the second lyocell fiber layer; both the first and second lyocell fiber layers have multiple micropores with a diameter of 0.1 mm to 0.5 mm.