Sweat management weft knitted shaped mask and weaving method thereof
Through the seamless knitting round machine positioning and forming weaving technology, a sweat management weft knitted mask is designed, which solves the problems of low sweat discharge efficiency and poor comfort of existing masks, and achieves efficient sweat management and enhanced comfort.
Patent Information
- Application Number
- CN202211599076.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-12
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2042-12-12
AI Technical Summary
Existing masks have low efficiency in sweat discharge, poor comfort, and insufficient sweat management capabilities.
Using seamless knitting round machine positioning and forming weaving technology, a sweat management weft knitted mask is designed, and the efficient conduction and management of sweat is achieved through the combination of different tissue structures.
It improves the efficiency of sweat discharge, enhances the comfort and sweat management ability of the mask, keeps the mask dry when worn, and improves the functionality and comfort of the wear.
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Figure CN115928305B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of knitting technology, and in particular to a sweat management weft knitted shaped mask and a weaving method thereof. Background Art
[0002] With the popularity of the concept of healthy and comfortable clothing, people have higher requirements for the types, functions and comfort of summer clothing. Due to the high temperature and humidity in summer, the body needs to use sweating to dissipate heat to maintain normal body temperature. Sweat will cause the interaction between the skin and clothing or accessories to produce a sticky feeling. In addition, summer clothing needs to consider comprehensive functions such as coolness, comfort and breathability, and sun protection. Therefore, it is of great significance to study the conduction of sweat and multifunctional comprehensive design of summer clothing.
[0003] At present, most summer masks on the market are knitted fabric products. Utilizing the structural characteristics of knitted tissue is the main way to achieve the multi-function of knitted fabrics, and it is also the research focus of domestic and foreign researchers. In the market, there are endless products for summer multi-function masks. Generally speaking, in terms of moisture removal and sweat conduction, the sweating parts of the human head during exercise are mainly concentrated on the forehead, cheeks, ears, and neck; during exercise, it is inevitable that there is no way to free up hands to wipe sweat. Sweat beads make the skin itchy, and sweat flowing down the skin will soak the top and cause discomfort. In severe cases, it may also cause eczema and other problems.
[0004] The utility model patent CN211458959U discloses a new type of sweat-wicking headgear, which is composed of a fitting surface, a shielding surface and a connecting surface to form a U-shaped sweat-guiding groove, which is tilted backwards and a sweat-wicking channel is provided at the back of the head. When the user wears the headgear, there is no need to wipe the sweat manually when sweating a lot during exercise. The sweat directly enters the sweat-guiding groove and is discharged outward from the sweat-wicking channel at the back of the head, which is more convenient to use. At the same time, the headgear itself does not accumulate sweat, and there is no need to manually twist the sweat. However, the sweat-guiding groove leads to the back of the head, and the sweat circulation path is too long, and the efficiency of sweat discharge is low, which has a certain impact on wearing comfort.
[0005] Invention patent application publication number CN112167746A provides a sunscreen mask, which has the effect of using a unique hanging method to provide sun protection while achieving ventilation and air circulation, achieving the purpose of being easy to use and having strong functionality. However, these products cannot achieve the requirements of achieving different functions in different areas of the face, and the sweat management ability can be further improved. Therefore, it is necessary to design a sweat management mask that uses positioning and forming technology to achieve different functions in different areas, is woven in one piece, and has high production efficiency. Summary of the invention
[0006] The purpose of the present application is to provide a sweat management weft knitted shaped mask and a weaving method thereof, so as to solve the problems of low sweat discharge efficiency, poor comfort and insufficient sweat management ability of existing masks.
[0007] To achieve the above purpose, the technical solution adopted in this application is:
[0008] On the one hand, a sweat management weft knitted shaped mask is provided, the sweat management weft knitted shaped mask is woven by a seamless circular knitting machine, the sweat management weft knitted shaped mask comprises an eye sun protection area, a forehead sweat management area is provided above the eye sun protection area, a forehead top fitting area is provided above the forehead sweat management area, fixed transition areas are provided on both sides of the forehead top fitting area, and two groups of the fixed transition areas are connected with a fixed area;
[0009] A facial ventilation area is provided below the eye sun protection area, a chin tightening area is provided below the facial ventilation area, a back neck tightening area is provided behind the chin tightening area, a front neck moisture conduction and heat dissipation area is provided below the chin tightening area, a back neck moisture conduction and heat dissipation area is provided behind the front neck moisture conduction and heat dissipation area, and a neck fitting area is provided between the front neck moisture conduction and heat dissipation area and the back neck moisture conduction and heat dissipation area;
[0010] The two sides of the eye sun protection area are provided with pre-ear moisture conduction areas, and the side of the pre-ear moisture conduction area away from the eye sun protection area is provided with a pre-ear tightening area.
[0011] In a possible implementation, the forehead-top fitting area, the mandibular tightening area, and the back neck tightening area are all 1+3 false rib tissues.
[0012] In a possible implementation, the fixed transition zone is a 2+2 false rib structure, the fixed zone is an elastic band, and the elastic band is sewn to the fixed transition zone.
[0013] In a possible implementation, the forehead sweat management area is a three-dimensional diamond-shaped concave-convex structure, and the pre-ear moisture guide area is a three-dimensional triangular concave-convex structure.
[0014] In a possible implementation, the pre-ear tightening area and the neck fitting area are both 2+2 false rib tissues.
[0015] In a possible implementation, the eye sun protection area is a plated plain weave, and the eye sun protection area also has an eye opening area.
[0016] In a possible implementation, the facial breathable area is a hexagonal micro-mesh structure.
[0017] In a possible implementation, the front neck moisture-conducting and heat-dissipating area and the back neck moisture-conducting and heat-dissipating area are both combined plated yarn micro-mesh structures.
[0018] On the other hand, a method for weaving a sweat management weft knitted shaped mask is provided, the method is used to weave any of the sweat management weft knitted shaped masks as described above, the method adopts seamless knitting circular machine weaving, the method comprises:
[0019] S1. Draw a functional zoning diagram of the sweat management weft knitted mask, wherein the functional zoning includes a forehead-top fitting area, a fixed transition area, a forehead sweat management area, a pre-ear moisture conduction area, a pre-ear tightening area, an eye sun protection area, a facial breathable area, a mandibular tightening area, a neck fitting area, a back neck tightening area, a front neck moisture conduction and heat dissipation area, a back neck moisture conduction and heat dissipation area, and a cutting area;
[0020] S2. Design corresponding weave structures for each functional area, where the cutting area is twill weave;
[0021] S3, performing inlay knitting on a seamless circular knitting machine according to the tissue structure to obtain a weft-knitted fully-formed tubular fabric;
[0022] S4, cutting the cutting area of the weft-knitted fully formed tubular fabric, and at the same time, hemming the cutting edges, and sewing the fixed area to the fixed transition area of the weft-knitted fully formed tubular fabric to obtain a sweat management weft-knitted formed mask.
[0023] In a possible implementation, the seamless circular knitting machine uses functional yarn with a fineness of 20D-75D and an F number of 12F-36F as the lining yarn; and semi-dull or fully dull polyester with a fineness of 50D-100D and an F number of 144F-576F as the surface yarn.
[0024] The beneficial effects of the technical solution provided by this application include at least:
[0025] On the one hand, the sweat management weft knitted shaped mask provided in the present application is formed by positioning and weaving using a seamless circular knitting machine, and different tissues can be integrated without large-scale cutting and sewing, which has diversified functions, is green and environmentally friendly, and has high production efficiency;
[0026] On the other hand, the sweat management weft knitted shaped mask provided in the present application combines ergonomics and designs different tissue structures according to the needs of different parts of the human head, so that the functionality and comfort of the mask are increased;
[0027] On the other hand, the weaving method of the sweat management weft-knitted formed mask provided in the present application reasonably uses the yarn raw materials and utilizes the different performances of the two sides of the added yarn structure fabric, so that the sweat can be conducted from the side with fewer fiber roots in the yarn to the side with more fiber roots in the yarn according to the differential capillary effect. At the same time, the sweat does not reversely seep after conduction, keeping it dry and comfortable to wear. In addition, the density, tightness and air permeability of different tissues are utilized to enable the tissues to be reasonably arranged, the sweat discharge efficiency is high, and the sweat management ability is strong. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The accompanying drawings are used to provide a further understanding of the present application and constitute a part of the specification. Together with the embodiments of the present application, they are used to explain the present application and do not constitute a limitation of the present application. In the accompanying drawings:
[0029] Figure 1 A schematic structural diagram of a sweat management weft knitted mask provided by an exemplary embodiment of the present application is shown;
[0030] Figure 2 A schematic diagram of functional zoning of a sweat management weft knitted mask provided by an exemplary embodiment of the present application is shown;
[0031] Figure 3 A schematic diagram showing a process of a weaving method of a sweat management weft-knitted mask provided by an exemplary embodiment of the present application is shown;
[0032] Figure 4 A schematic diagram showing an arrangement of sweat management weft-knitted masks provided by an exemplary embodiment of the present application on the same bobbin is shown;
[0033] Figure 5 A design diagram of various functional zones of a sweat management weft-knitted mask provided by an exemplary embodiment of the present application is shown;
[0034] Figure 6 A schematic diagram showing a three-dimensional concave-convex structure of a sweat management weft-knitted mask provided by an exemplary embodiment of the present application shrinking into a three-dimensional effect;
[0035] Figure 7 A schematic diagram showing the structure of a three-dimensional concave-convex structure of a sweat management weft-knitted shaped mask provided by an exemplary embodiment of the present application is shown;
[0036] Figure 8 A schematic diagram of sweat conduction of a three-dimensional concave-convex structure of a sweat management weft-knitted shaped mask provided by an exemplary embodiment of the present application is shown;
[0037] Fig. 9 A schematic diagram of the moisture conduction process of a double-layer differential single fiber density yarn of a sweat management weft-knitted mask provided by an exemplary embodiment of the present application is shown;
[0038] In the figure: 1. Forehead-top fitting area; 2. Fixed transition area; 3. Fixed area; 4. Forehead sweat management area; 5. Pre-ear moisture conduction area; 6. Pre-ear tightening area; 7. Eye sun protection area; 71. Eye opening area; 8. Facial breathable area; 9. Mandibular tightening area; 10. Neck fitting area; 11. Back neck tightening area; 12. Front neck moisture conduction and heat dissipation area; 13. Back neck moisture conduction and heat dissipation area; 14. Cutting area. DETAILED DESCRIPTION
[0039] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0040] The present application is further described below in conjunction with the accompanying drawings and embodiments.
[0041] Figure 1 The schematic diagram of the structure of a sweat management weft knitted shaped mask provided by an exemplary embodiment of the present application is shown. The sweat management weft knitted shaped mask is woven by a seamless circular knitting machine. The sweat management weft knitted shaped mask includes an eye sun protection area 7 (corresponding to the human eye), a forehead sweat management area 4 (corresponding to the human forehead) is provided above the eye sun protection area 7, a forehead sweat management area 1 (corresponding to the top of the human forehead) is provided above the forehead sweat management area 4, and two symmetrically distributed groups of fixed transition areas 2 are provided on both sides of the forehead and top fitting area 1, and the two groups of fixed transition areas 2 are connected to the fixed area 3. In one example, the fixed area 3 is an elastic band, and the two ends of the elastic band are respectively sewn with the two groups of fixed transition areas 2, which are used to fix the mask after wearing.
[0042] See also Figure 1 , there is a facial ventilation area 8 (corresponding to the human mouth and nose) below the eye sun protection area 7, there is a lower jaw tightening area 9 (corresponding to the human jaw) below the facial ventilation area 8, there is a back neck tightening area 11 (corresponding to the top of the back neck of the human body) behind the lower jaw tightening area 9, there is a front neck moisture conduction and heat dissipation area 12 (corresponding to the front neck of the human body) below the lower jaw tightening area 9, there is a back neck moisture conduction and heat dissipation area 13 (corresponding to the back neck of the human body) behind the front neck moisture conduction and heat dissipation area 12, there are two groups of neck fitting areas 10 (corresponding to the two sides of the neck of the human body respectively) between the front neck moisture conduction and heat dissipation area 12 and the back neck moisture conduction and heat dissipation area 13.
[0043] See also Figure 1There are two groups of symmetrically distributed pre-ear wet guide areas 5 (corresponding to the human body near the ear) on both sides of the eye sun protection area 7, and a pre-ear tightening area 6 is provided on the side of the pre-ear wet guide area 5 away from the eye sun protection area 7. The pre-ear tightening area 6 is in a cut shape when it is taken off the machine, and after suturing, the pre-ear wet guide area 5 is more fitted.
[0044] Preferably, the forehead fitting area 1, the chin tightening area 9 and the back neck tightening area 11 are all 1+3 false rib structures. By adjusting the stitch number interval of the loop and the floating thread, the fabric can be tightened and convexed locally with different effects, so that it can fit the relative human body parts better.
[0045] Furthermore, the fixed transition zone 2 is a 2+2 false rib structure, and the fixed zone 3 uses an elastic band, which is sewn to the fixed transition zone 2 above the ear after being taken off the machine, so that the fixation is more stable and the wearing is comfortable.
[0046] Preferably, the forehead sweat management area 4 is a three-dimensional diamond-shaped concave-convex structure, and the pre-ear moisture guide area 5 is a three-dimensional triangular concave-convex structure. Figure 6 and Figure 7 In the figure, ① is a three-dimensional triangular concave-convex structure, and ② is a three-dimensional diamond concave-convex structure. Since some coils are not looped for several consecutive longitudinal rows, the coils without yarn padding are tightened after being taken off the machine, so that some coils are tightened to form a concave effect and contact the skin. The partially tightened coils are designed with different total numbers of rows and horizontal columns, and arranged in diamonds and triangles to form a three-dimensional diamond concave-convex structure and a three-dimensional triangular concave-convex structure.
[0047] It is worth mentioning that please refer to Figure 8 In the figure, n is skin, o is a flat fabric without a three-dimensional structure, q is a fabric with a three-dimensional concave-convex structure, and p is an air gap. In the above three-dimensional concave-convex structure, the concave part has a high degree of fit with the skin, and the sweat is conducted at the fit point. The concave-convex structure can effectively block the sweat moving along the face, so that the sweat can be conducted to the outside of the fabric in time to reduce the sticky feeling caused by sweat accumulation and the itchy feeling caused by sweat flow.
[0048] Optionally, the pre-ear tightening area 6 and the neck fitting area 10 are both 2+2 false rib structures.
[0049] Furthermore, the eye sun protection area 7 is a plain weave with added yarn, which is thin, breathable and has excellent moisture conduction performance. The eye sun protection area 7 also has an eye opening area 71.
[0050] Furthermore, the facial ventilation area 8 is a hexagonal micro-mesh structure, in which only the ground yarn of some coils is looped, and the face yarn is not looped, so the structure is beautiful, light, thin and breathable.
[0051] Preferably, the front neck moisture conduction and heat dissipation area 12 and the back neck moisture conduction and heat dissipation area 13 are both combined plated yarn micro-mesh structures.
[0052] In summary, the sweat management weft-knitted formed mask provided by the present application is woven by positioning and forming using a seamless circular knitting machine. It does not require large-scale cutting and sewing to achieve the integration of different tissues. It has diversified functions, is green and environmentally friendly, and has high production efficiency. In addition, the sweat management weft-knitted formed mask provided by the present application combines ergonomics and designs different tissue structures according to the needs of different parts of the human head, thereby increasing the functionality and comfort of the mask.
[0053] Figure 3 A schematic flow chart of a method for weaving a sweat management weft knitted shaped mask provided by an exemplary embodiment of the present application is shown, the method is used to weave a sweat management weft knitted shaped mask as described in any of the above embodiments, and the method is woven using a seamless knitting circular machine. In one example, the method is woven using a Santoni seamless underwear circular machine (SM8-TOP2).
[0054] The method includes:
[0055] Step S1, drawing a functional zoning diagram of the sweat management weft knitted formed mask, the functional zoning including the forehead-top fitting area 1, the fixed transition area 2, the forehead sweat management area 4, the pre-ear moisture conduction area 5, the pre-ear tightening area 6, the eye sun protection area 7, the facial breathable area 8, the lower jaw tightening area 9, the neck fitting area 10, the back neck tightening area 11, the front neck moisture conduction and heat dissipation area 12, the back neck moisture conduction and heat dissipation area 13 and the cutting area 14.
[0056] Specifically, see Figure 1 and Figure 2 , draw the functional zoning diagram of the sweat management weft knitted mask on the PHOTON software, and save it as a module design diagram in SDI format after drawing.
[0057] Step S2, designing a corresponding weave structure for each functional area, wherein the cutting area 14 is a twill weave.
[0058] Specifically, see Figure 5In the figure, Ⅰ is 1+1 false ribbing, Ⅱ is 2+2 false ribbing, Ⅲ is 1+3 false ribbing, Ⅳ is plated plain weave, Ⅴ is hexagonal micro mesh weave, Ⅵ is combined plated micro mesh weave, Ⅶ is twill weave, Ⅷ is three-dimensional triangular concave-convex structure, and Ⅸ is three-dimensional diamond concave-convex structure. Fill the required organization structure design diagram in the module design diagram drawn on the PHOTON software; determine the knitting action of the knitting needle according to the different colors of the design grid. Combined with the program settings, in the plated organization design grid, yellow means that the ground yarn and the veil are both looped; red means that the ground yarn is looped and the veil is not looped; black means that the veil and the ground yarn are not looped. Use the Pen tool to fill in the color and draw its organization structure design diagram, and save it as an organization structure design diagram in PAT format. In this way, all organization structure designs are drawn and saved in PAT format. Open the SDI format template design drawing in PHOTON software and fill in the corresponding organization. Fill in the organizational structure PAT diagram of the corresponding performance according to the functional areas divided by the template design drawing. After filling, save the DIS format module design drawing containing the organizational structure.
[0059] Optionally, see Figure 4 The sweat management weft-knitted mask is composed of two pieces, which are assembled up and down and arranged on the same bobbin, saving material consumption.
[0060] Step S3, performing inlay knitting on a seamless circular knitting machine according to the tissue structure to obtain a weft-knitted fully-formed tubular fabric.
[0061] Specifically, the DIS module design drawing containing the organizational structure is imported into the Digraph3plus software to generate a SOK file; then the program is stored in a USB flash drive in the CO format, and finally the program is input into a seamless circular knitting machine for added yarn weaving to obtain a fully formed weft-knitted tubular fabric.
[0062] Step S4, cutting the cutting area 14 of the weft knitted fully formed tubular fabric, and at the same time, hemming the cutting edges, and sewing the fixing area 3 to the fixing transition area 2 of the weft knitted fully formed tubular fabric to obtain a sweat management weft knitted formed mask.
[0063] Specifically, the mask is cut after leaving the plane, and a small number of cuts are designed to fit the face better. Figure 2 , that is, incisions were made in the forehead-top fitting area 1 and the preauricular tightening area 6, and simple suturing was performed after getting off the machine.
[0064] It should be noted that in the embodiment of the present application, the seamless circular knitting machine uses functional yarn with a fineness of 20D-75D and an F number of 12F-36F as the inner yarn; and semi-dull or full-dull polyester with a fineness of 50D-100D and an F number of 144F-576F as the outer yarn. The difference in single fiber fineness multiples between the ground yarn and the outer yarn is 6-14 times; two different specifications of polyester filaments, 50D / 14F polyester filament A and 84D / 384F polyester filament B, are selected as raw materials.
[0065] It is understandable that Fig. 9 A schematic diagram of the moisture conduction process of a double-layer differential single fiber density yarn of a sweat management weft-knitted forming mask provided by an exemplary embodiment of the present application is shown. Since the yarn is an aggregate formed by fibers arranged in parallel, a single fiber forms a capillary after arrangement. Based on the wicking effect, these capillaries provide space for the adsorption and conduction of liquids. The source of power required for fabric wicking is the additional pressure formed when the capillary contacts the liquid. When a double-layer yarn forms a fabric and the single fiber density of the outer yarn is less than the single fiber density of the inner yarn, the additional pressure on the surface layer of the fabric will be greater than the additional pressure on the inner layer, and moisture can move from the inner layer to the surface layer when it contacts the fabric. This is the differential capillary effect. The expression is shown in Formula 1 below:
[0066] Formula 1:
[0067] in,
[0068] ΔP is the additional pressure difference, Pa;
[0069] P1 and P2 are the additional pressures of channel 1 and channel 2, respectively, Pa;
[0070] γ is the surface tension of the liquid, N·m -1 ;
[0071] θ is the fiber contact angle, °;
[0072] r is the capillary equivalent radius of the fiber, m.
[0073] In an embodiment of the present application, a seamless circular knitting machine is used to weave the yarn into one piece, and different parts can have different knitting structures without sewing, and the shape of the specific parts can be adjusted according to the characteristics of the structure, such as convexity, concaveness or different tightness and extensibility.
[0074] In the embodiment of the present application, the fitting areas (i.e., the forehead fitting area 1 and the neck fitting area 10) of the sweat management weft-knitted formed mask are designed with tightening and forming and local cutting and sewing, which on the one hand avoids the cumbersome and inefficient process of overall cutting and sewing, and on the other hand can achieve a more comfortable wearing effect and better play the multifunctional advantages of the mask.
[0075] In the embodiment of the present application, all functional areas of the sweat management weft-knitted forming mask are applied with inlay yarn, and the coil and geometric properties of the inlay yarn are basically the same as those of the ground yarn. When two different yarns are used, the two sides of the fabric can have different characteristics, which can maximize the functions of the two yarns with different characteristics.
[0076] In summary, the sweat management weft knitted shaped mask provided by the present application is woven by positioning and forming using a seamless knitting circular machine. Different tissues can be integrated into one without large-scale cutting and sewing, and the function is diversified, green and environmentally friendly, and the production efficiency is high; the sweat management weft knitted shaped mask provided by the present application combines ergonomics, and designs different tissue structures according to the needs of different parts of the human head, so that the functionality and comfort of the mask are increased; the weaving method of the sweat management weft knitted shaped mask provided by the present application reasonably uses yarn raw materials and utilizes the characteristics of different performances on both sides of the added yarn structure fabric, so that sweat can be conducted from the side with fewer fiber roots in the yarn to the side with more fiber roots in the yarn according to the differential capillary effect. At the same time, the sweat does not reversely seep after conduction, keeping it dry and comfortable to wear, and utilizes the density, tightness and air permeability of different tissues to enable the tissues to be reasonably arranged, with high efficiency of sweat discharge and strong sweat management ability.
[0077] The above is only a preferred implementation of the present application. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present application. These improvements and modifications should also be regarded as the scope of protection of the present application.
Claims
1. A sweat management weft knitted mask, characterized in that: The sweat management weft knitted shaped mask is woven by a seamless circular knitting machine, and the sweat management weft knitted shaped mask includes an eye sun protection area, a forehead sweat management area is provided above the eye sun protection area, a forehead top fitting area is provided above the forehead sweat management area, and both sides of the forehead top fitting area are provided with fixed transition areas, and two groups of the fixed transition areas are connected with a fixed area; A facial ventilation area is provided below the eye sun protection area, a chin tightening area is provided below the facial ventilation area, a back neck tightening area is provided behind the chin tightening area, a front neck moisture conduction and heat dissipation area is provided below the chin tightening area, a back neck moisture conduction and heat dissipation area is provided behind the front neck moisture conduction and heat dissipation area, and a neck fitting area is provided between the front neck moisture conduction and heat dissipation area and the back neck moisture conduction and heat dissipation area; The two sides of the eye sun protection area are provided with pre-ear wet guide areas, and the side of the pre-ear wet guide area away from the eye sun protection area is provided with a pre-ear tightening area; The forehead-top fitting area, the mandibular tightening area and the back neck tightening area are all 1+3 false rib tissues; The fixed transition zone is a 2+2 false rib structure, the fixed zone is an elastic band, and the elastic band is sewn to the fixed transition zone; The forehead sweat management area is a three-dimensional diamond-shaped concave-convex structure, and the pre-ear moisture guide area is a three-dimensional triangular concave-convex structure; The pre-ear tightening area and the neck fitting area are both 2+2 false rib tissues; The eye sun protection area is a plated plain weave and is also provided with an eye opening area.
2. The sweat management weft knitted mask according to claim 1, characterized in that: The facial breathable area is a hexagonal micro-mesh structure.
3. The sweat management weft knitted mask according to claim 1, characterized in that: The front neck moisture conduction and heat dissipation area and the back neck moisture conduction and heat dissipation area are both combined added yarn micro-mesh structures.
4. A method for weaving a sweat management weft knitted shaped mask, the method being used to weave the sweat management weft knitted shaped mask as claimed in any one of claims 1 to 3, characterized in that: The method adopts seamless circular knitting machine weaving, and the method comprises: S1. Draw a functional zoning diagram of the sweat management weft knitted mask, wherein the functional zoning includes a forehead-top fitting area, a fixed transition area, a forehead sweat management area, a pre-ear moisture conduction area, a pre-ear tightening area, an eye sun protection area, a facial breathable area, a mandibular tightening area, a neck fitting area, a back neck tightening area, a front neck moisture conduction and heat dissipation area, a back neck moisture conduction and heat dissipation area, and a cutting area; S2. Design corresponding weave structures for each functional area, where the cutting area is twill weave; S3, performing inlay knitting on a seamless circular knitting machine according to the tissue structure to obtain a weft-knitted fully-formed tubular fabric; S4, cutting the cutting area of the weft-knitted fully formed tubular fabric, and at the same time, hemming the cutting edges, and sewing the fixed area to the fixed transition area of the weft-knitted fully formed tubular fabric to obtain a sweat management weft-knitted formed mask.
5. The method for weaving a sweat management weft knitted mask according to claim 4, characterized in that: The seamless circular knitting machine adopts functional yarn with a fineness of 20D-75D and an F number of 12F-36F as the lining yarn; and semi-dull or full-dull polyester with a fineness of 50D-100D and an F number of 144F-576F as the surface yarn.
Citation Information
Patent Citations
Novel perspiration sports headgear
CN211458959U
Sunscreen mask
CN112167746A
Sunscreen mask
CN217791562U