Connected three-dimensional hat type and garment
By using a three-dimensional hood design with a continuous opening, and employing clamping and stitching techniques and irregular segmentation, the problems of down jacket hoods easily collapsing and lacking three-dimensionality are solved, achieving a higher level of three-dimensionality and aesthetics, while simplifying the production process and reducing costs.
Patent Information
- Application Number
- CN202511623615.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-07
- Publication Date
- 2026-02-13
AI Technical Summary
Existing down jacket hoods suffer from problems such as the hood shape easily collapsing, lack of three-dimensionality, and serious homogenization of styles, and the production process is complex and costly.
The hat features a three-dimensional design with a continuous opening. Through clamping and splicing, as well as irregular segmentation, a hat body with three-dimensional support is constructed. The cut piece structure and splicing method are optimized to enhance the three-dimensionality and aesthetics of the hat.
It effectively prevents the hat from collapsing, improves the fit and aesthetics, simplifies the production process, reduces costs, and enhances the fit and three-dimensionality of the hat to the head.
Smart Images

Figure CN121512264A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of down jacket hats, and particularly to a continuous mouth three-dimensional hat type and clothing. BACKGROUND
[0002] In the field of down jacket products, hats are an important component, and their stability and aesthetics directly affect the overall quality of the product and the user's wearing experience. The down jacket hats on the current market generally have the problem of easy collapse and deformation of the hat type due to structural design limitations. On the one hand, conventional hats rely on the support of the fabric itself and lack targeted shaping structures. After daily wear, storage, or cleaning, key parts such as the brim and crown are prone to wrinkles and sagging, making it difficult to maintain the initial shape. On the other hand, existing designs often use a single planar cutting and filling method to pursue production convenience, resulting in a lack of three-dimensionality in the hat type, which cannot adapt to different head contours, and the style is highly homogenized, making it difficult to meet the needs of consumers for personalized appearance.
[0003] In the prior art, schemes to improve the three-dimensionality of the hat type not only have complex production processes, but also easily cause problems such as fabric wear and uneven distribution of filling material, which are not conducive to large-scale production and cost control. SUMMARY
[0004] The technical problem to be solved by the present application is to address the deficiencies of the prior art, and to provide a continuous mouth three-dimensional hat type. The continuous mouth hat middle, continuous mouth hat piece, and hat mouth hat piece of the continuous mouth three-dimensional hat type are sewn with a clamping joint, and the hat side piece is processed with a special-shaped split. By optimizing the piece structure and splicing method, a hat body with three-dimensional support is constructed, effectively avoiding soft collapse and improving the wrapping and aesthetic appearance.
[0005] To solve the above technical problems, the technical solution adopted by the present application is as follows: A continuous mouth three-dimensional hat type, which is composed of a hat body and a hat mouth. The hat body is composed of a continuous mouth hat middle and a continuous mouth hat piece arranged symmetrically with respect to the continuous mouth hat middle. The hat mouth includes hat mouth pieces arranged symmetrically. The symmetrically arranged hat mouth pieces are spliced at the symmetrically arranged continuous mouth hat pieces. The continuous mouth hat middle and the continuous mouth hat piece are obtained by one-piece cutting. The hat mouth piece adopts a hat mouth split process.
[0006] Further, the continuous mouth hat middle is a special-shaped elongated structure, and folding edges are reserved along the four sides. After folding along the folding edges of the two long edges, the edges are folded and pressed along the center line of the two long edges and spliced, wherein the center folding edge forms a hat middle continuous hat brim. The opposite edge of the center folding edge is folded inward along the folding edge and spliced.
[0007] Further, the continuous hat brim piece is in a U-shape, and folding edges are reserved along the periphery of the continuous hat brim piece; after the folding edges along the outer periphery and the inner periphery of the U-shape are folded, the two folding edges are folded and pressed and sewn along the symmetrical middle line, and the folded edges form a hat brim; the opposite edges of the folded edges are folded inward along the folding edges and sewn.
[0008] Further, before the opposite edges of the folded edges of the continuous hat are folded inward along the folding edges and pressed and sewn, the continuous hat is uniformly filled with down; and before the opposite edges of the folded edges of the continuous hat piece are folded inward along the folding edges and pressed and sewn, the continuous hat piece is uniformly filled with down.
[0009] Further, the continuous hat and the continuous hat piece are spliced as follows: the hat brim of the continuous hat and the hat brim of the continuous hat piece face forward; the two side edges of the continuous hat are respectively spliced with the side edges of the continuous hat piece arranged symmetrically; the side edges of the continuous hat piece sandwich the side edges of the continuous hat, at this time, the hat brim of the continuous hat and the hat brim of the continuous hat piece form a smooth hat opening arc, and the sandwiched spliced seams of the continuous hat piece and the continuous hat are sewn.
[0010] Further, the hat opening piece is formed by splicing two identical hat opening split pieces.
[0011] Further, the hat opening split piece has four side edges, and folding edges are reserved along the four side edges; the opposite arranged hat opening split pieces are folded inward along the folding edges of the four side edges and are sequentially pressed and sewn; before the last side edge is folded inward along the folding edge and is pressed and sewn, the hat opening piece is uniformly filled with down.
[0012] Further, the hat opening piece has four side edges, the first side edge is used for splicing with the continuous hat piece, the second side edge is used for forming a smooth hat opening arc with the hat brim of the continuous hat and the hat brim of the continuous hat piece, the third side edge is used for forming a smooth hat bottom arc with the bottom edge of the continuous hat and the bottom edge of the continuous hat piece, and the fourth side edge is a connecting edge of the left-right symmetrical hat opening piece; the first side edge of the hat opening piece sandwiches the side edge of the continuous hat piece and the sandwiched spliced seams of the hat opening piece and the continuous hat piece are sewn, and the sandwiched spliced seams of the hat opening piece and the continuous hat piece are shaped split spliced seams.
[0013] Further, the continuous hat piece is formed by splicing N continuous hat pieces, and N is a positive integer.
[0014] Further, the application also provides a garment with the continuous hat type of any one of the preceding.
[0015] The application has the following beneficial effects: 1、The application adopts clamping and splicing seams to sew the hat body, and the hat side piece is processed by special-shaped segmentation, the structure of the piece and the splicing method are optimized, the hat body with three-dimensional support is constructed, the soft collapse is effectively avoided, and the wrapping and modeling aesthetics are improved.
[0016] 2、The hat type of the application adopts the continuous hat edge process, reduces the fabric cutting link, simplifies the overall process flow, shortens the processing time, and effectively reduces the production cost; at the same time, the continuous hat edge design avoids the stiffness of the traditional segmented hat edge, makes the hat edge more fit the head contour, and has stronger three-dimensional effect.
[0017] 3、In the overall splicing process of the hat, the continuous hat edge piece is clamped to the hat body, and so on, the hat edge piece is clamped to the hat edge piece, and the sewing is completed in sequence, the splicing method of the hat piece is optimized, the production process is simplified, the working hours are shortened, and the production cost is effectively reduced.
[0018] 4、The side piece of the conventional hat type is processed by special-shaped segmentation, which can be segmented into any shape. The hat side piece is processed by special-shaped segmentation, and the required allowance for three-dimensional modeling is added at the segmentation position, the hat body structure is optimized, the overall three-dimensional effect of the hat is enhanced, the hat is not easy to collapse, the wrapping effect on the head is improved, and the appearance modeling is more full and beautiful.
[0019] 5、The continuous hat edge piece 12 can be spliced by N continuous hat edge pieces, each continuous hat edge piece is obtained by cutting a single piece by the continuous hat edge process. The hat side piece is composed of a plurality of continuous hat edge pieces and one hat edge piece, and the number of hat pieces of the hat side piece is not limited. The hat side piece can be scientifically segmented into a plurality of independent hat pieces, the total allowance required can be cleverly decomposed and hidden in a plurality of segmentation lines, and the principle of "transforming allowance into seams" is followed. The increase in the number of segmented pieces means that the allowance is more evenly distributed and the transition is smoother, which can fundamentally mold a three-dimensional hat type that fits the curved surface of the head, is full and firm, and has high stability. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 is a side view and a top view of a continuous hat edge three-dimensional hat type of the application.
[0021] Figure 2 is an unfolded view of a continuous hat edge piece and a continuous hat edge piece of a continuous hat edge three-dimensional hat type of the application.
[0022] Figure 3 is a splicing view of a continuous hat edge piece and a continuous hat edge piece of a continuous hat edge three-dimensional hat type of the application.
[0023] Figure 4 is an unfolded view of a hat edge piece of a continuous hat edge three-dimensional hat type of the application.
[0024] Figure 5is a front view of a three-dimensional cap with a connected mouth according to the present application.
[0025] Figure 6 is a schematic diagram of a connected mouth cap piece of a three-dimensional cap with a connected mouth according to the present application, which is made by splicing N connected mouth cap pieces.
[0026] Among them: 1. Cap body; 11. Connected mouth cap; 111. Cap brim of connected mouth cap; 12. Connected mouth cap piece; 121. Cap brim of connected mouth cap; 2. Cap mouth; 21. Cap mouth piece; 211. Cap mouth split cap piece; 212. First snap; 213. Second snap. DETAILED DESCRIPTION
[0027] The present application will be further described below in conjunction with the drawings and specific preferred embodiments.
[0028] In the description of the present application, it should be understood that the terms "left side", "right side", "upper part", "lower part" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and "first", "second" and the like do not represent the importance of the parts, so it cannot be understood as a limitation on the present application. The specific dimensions used in the present embodiment are only for the purpose of illustrating the technical solutions and do not limit the protection scope of the present application. EMBODIMENT
[0029] As shown in Figure 1 , a three-dimensional cap with a connected mouth is composed of a cap body 1 and a cap mouth 2; the cap body 1 is made by splicing a connected mouth cap 11 and a connected mouth cap piece 12 symmetrically arranged opposite to the connected mouth cap 11; the cap mouth 2 includes symmetrically arranged cap mouth pieces 21, and the symmetrically arranged cap mouth pieces 21 are spliced at the symmetrically arranged connected mouth cap pieces 12.
[0030] As shown in Figure 1 , the three-dimensional cap with a connected mouth is made by splicing one connected mouth cap 11, two connected mouth cap pieces 12 and two cap mouth pieces 21 (a total of five pieces), the connected mouth cap pieces 12 are symmetrically arranged in pairs, the cap mouth pieces 21 are symmetrically arranged in pairs, and the connected mouth cap pieces 12 and the cap mouth pieces 21 form cap side pieces.
[0031] As shown in Figure 2 , Figure 2 , it is an unfolding schematic diagram of the connected mouth cap 11 and the connected mouth cap piece 12.
[0032] Further, as shown in Figure 2 , the connected mouth cap 11 and the connected mouth cap piece 12 are made by using a one-piece cutting process.
[0033] Further, the connected mouth process of the connected mouth cap and the connected mouth cap piece is described: As shown in Figure 2 , the continuous hat middle 11 is a special-shaped long structure, and folding edges are reserved along the four sides thereof; after the folding edges along the two long sides are folded, the middle folding edges along the two long sides are folded and pressed and sewn, and the two edges are sewn, wherein the middle folding edges are formed into hat middle continuous hat brims 111; the opposite edges of the middle folding edges are folded inward along the folding edges and sewn. The continuous hat middle continuous hat process needs to sew three edges, and the continuous hat middle is obtained after the three edges are sewn.
[0034] Further, before the opposite edges of the middle folding edges of the continuous hat middle 11 are folded inward along the folding edges and pressed and sewn, the continuous hat middle 11 is uniformly filled with down.
[0035] As shown in Figure 2 , the continuous hat piece 12 is a U-shaped type, and folding edges are reserved along the periphery thereof; after the folding edges along the U-shaped outer periphery and the U-shaped inner periphery are folded, the two folding edges are folded and pressed and sewn along the symmetrical middle line, wherein the middle folding edges are formed into hat piece continuous hat brims 121; the opposite edges of the middle folding edges are folded inward along the folding edges and sewn. The continuous hat piece continuous hat process needs to sew three edges, and the continuous hat piece is obtained after the three edges are sewn.
[0036] Further, before the opposite edges of the middle folding edges of the continuous hat piece are folded inward along the folding edges and pressed and sewn, the continuous hat piece is uniformly filled with down.
[0037] Further, the continuous hat middle 11 and the continuous hat piece 12 are spliced, and the splicing process of the continuous hat middle and the continuous hat piece is explained: The hat middle continuous hat brims 111 and the hat piece continuous hat brims 121 face forward; the two side edges of the continuous hat middle are spliced with the side edges of the symmetrically arranged continuous hat piece; as shown in Figure 3 , the side edges of the continuous hat piece sandwich the side edges of the continuous hat middle, at this time, the hat middle continuous hat brims 111 and the hat piece continuous hat brims 121 form a smooth hat opening arc, and the spliced seams of the continuous hat piece and the continuous hat middle are sewn.
[0038] The hat type of the present application adopts a continuous hat process, reduces the fabric cutting link, simplifies the overall process flow, shortens the processing time, and effectively reduces the production cost; at the same time, the continuous hat design avoids the harshness of the traditional split hat opening, so that the hat opening is more in line with the head contour and has stronger three-dimensional effect.
[0039] As shown in Figure 4 , the hat opening is a hat piece 21. Figure 4 is an unfolded schematic view of the hat opening hat piece 21.
[0040] Further, as shown in Figure 4 , the hat opening hat piece 21 adopts a hat opening split process.
[0041] Further, the hat opening segmentation process of the hat opening piece 21 is described: Among them, the hat opening piece 21 is sewn from two identical hat opening segmentation pieces 211; since the hat opening piece 21 is symmetrical left and right and has two, therefore, the hat opening segmentation piece 211 has four, and two are sewn to form the hat opening piece 21.
[0042] Further, the hat opening segmentation piece 211 has four sides and a folding edge reserved along each of the four sides; the oppositely arranged hat opening segmentation piece 211 is folded inward along the folding edge of the four sides and is sequentially pressed and sewn. The hat opening piece 21 adopts the hat opening segmentation process and needs to be sewn on four sides, and after the four sides are sewn, the hat opening piece 21 is obtained.
[0043] Further, before the last side is folded inward along the folding edge and pressed and sewn, the hat opening piece 21 is uniformly filled with down.
[0044] Further, the hat opening piece 21 and the hat opening piece 21 are spliced, and the splicing process of the hat opening piece 21 and the hat opening piece 21 is described: The hat opening piece 21 has four sides, as shown in Figure 1 and Figure 5 The first side is used for splicing with the hat opening piece 12, the second side is used for forming a smooth hat opening arc with the hat piece hat brim, the third side is used for forming a smooth hat bottom arc with the hat piece hat brim, and the fourth side is the connecting edge of the left and right symmetrical hat opening piece 21.
[0045] Further, the first side of the hat opening piece 21 clamps the side of the hat opening piece 12 and sews the clamping splicing seam of the hat opening piece 21 and the hat opening piece 12.
[0046] Further, as shown in Figure 5 The fourth side of the symmetrically arranged hat opening piece 21 is respectively provided with a first snap 211 and a second snap 222, and the symmetrically arranged hat opening piece 21 is connected by the first snap 212 and the second snap 213.
[0047] Further, as shown in Figure 1 The clamping splicing seam of the hat opening piece 21 and the hat opening piece 12 is a special-shaped segmentation splicing seam, and from the side view of the hat, it can be seen that the side piece of the conventional hat type is processed in a special-shaped segmentation manner, and can be segmented into any shape. Through the special-shaped segmentation processing of the hat side piece and the addition of the required allowance in the segmentation place in the three-dimensional modeling, the hat body structure is optimized, the overall three-dimensional sense of the hat is enhanced, the hat is not easy to be soft and collapsed, thereby improving the wrapping sense of the head, and the appearance modeling is more full and beautiful.
[0048] In addition, in the overall hat assembly process, the hat pieces are sandwiched together, and so on, with the hat pieces sandwiched together in sequence to complete the sewing. By optimizing the hat piece assembly method, the production process is simplified, the working time is shortened, and the production cost is effectively reduced.
[0049] The hood in this application is constructed by using a clamping and splicing method for the hood panel, the hood flap and the hood flap. In addition, the hood side panels are irregularly shaped and segmented. By optimizing the panel structure and splicing method, a hood body with three-dimensional support is constructed, which effectively avoids slumping and improves the sense of coverage and the aesthetic appearance. Example
[0050] Based on Example 1, the cap piece 12 is made up of N cap pieces, where N is a positive integer.
[0051] like Figure 6 As shown, the multiple connected cap pieces include the first connected cap piece, the second connected cap piece, ... the Nth connected cap piece, and each connected cap piece is made using an independent one-piece cutting process.
[0052] The sides of two adjacent cap flaps are sewn together using a clamping seam, forming a smooth arc at the cap opening. Specifically, the second cap flap clamps the first cap flap, and the clamping seam between the second and first cap flaps is sewn together, and so on, with each clamping seam sewn in turn; the cap opening and brim of the second cap flap and the cap opening and brim of the first cap flap form a smooth arc at the cap opening, and so on, with the cap opening and brim of multiple cap flaps at the cap opening forming a smooth arc at the cap opening.
[0053] Similarly, further, the middle and first fascia pieces of the fascia are assembled, and the assembly process of the middle and first fascia pieces of the fascia is explained: The brim of the cap and the brim of the first cap piece face forward; the two sides of the cap with the brim are respectively spliced with the sides of the symmetrically arranged first cap pieces; the sides of the first cap pieces are sandwiched with the sides of the cap with the brim. At this time, the brim of the cap with the brim and the brim of the first cap piece form a smooth cap opening arc, and the sandwiched seam between the first cap pieces and the cap with the brim is sewn.
[0054] Similarly, further, the Nth connecting cap piece and the cap brim piece are assembled, and the assembly process of the Nth connecting cap piece and the cap brim piece is explained: The cap flap has four sides. The first side is used to join with the Nth connecting cap flap. The second side is used to form a smooth cap opening curve with the cap brim connecting the cap center and the cap brim connecting the first...N cap flaps. The third side is used to form a smooth cap bottom curve with the bottom edge connecting the cap center and the bottom edge connecting the first...N cap flaps. The fourth side is the connecting edge of the left and right symmetrical cap flap 21.
[0055] Furthermore, the first side of the cap flap 21 is clamped to the side of the Nth connecting cap flap, and the clamping seam between the cap flap 21 and the connecting cap flap 12 is sewn together.
[0056] In this embodiment, the hat side panel consists of multiple connected hat panels and one hat opening panel. The number of hat panels in the hat side panel is unlimited. We can scientifically divide the hat side panel into multiple independent hat panels. Multi-panel three-dimensional cutting can cleverly decompose the required total dart amount and disperse and hide it in multiple dividing lines. Following the advanced pattern principle of "turning darts into seams", the increase in the number of dividing panels means that the dart amount is more evenly distributed and the transition is smoother. It can fundamentally shape a three-dimensional hat shape that fits the curvature of the head, is full and stiff, and has extremely high stability. Example
[0057] A garment having either the three-dimensional cap shape of Embodiment 1 or the three-dimensional cap shape of Embodiment 2.
[0058] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0059] The preferred embodiments of the present invention have been described in detail above. However, the present invention is not limited to the specific details in the above embodiments. Within the scope of the technical concept of the present invention, various equivalent transformations can be made to the technical solutions of the present invention, and these equivalent transformations all fall within the protection scope of the present invention.
Claims
1. A three-dimensional cap with a continuous opening, characterized in that: It consists of a hat body and a hat brim; the hat body is made of a hat center with a brimmed brim and symmetrically arranged brimmed brim pieces; the hat brim includes symmetrically arranged brim pieces, which are attached to the symmetrically arranged brimmed brim pieces; both the hat center and the brimmed brim pieces are made using a one-piece cutting process; the brim pieces are made using a brim segmentation process.
2. The three-dimensional cap with a continuous opening as described in claim 1, characterized in that: The cap has an irregularly shaped elongated structure with folded edges along its four sides. After folding along the folded edges of the two long sides, it is then folded inward along the center line of the two long sides and pressed and sewn together. The folded edge inward forms the brim of the cap. The opposite edges of the folded edge inward are folded along the folded edge and sewn together.
3. The three-dimensional cap with a continuous opening as described in claim 2, characterized in that: The cap flap is U-shaped with folded edges around its perimeter. After folding along the outer and inner perimeters of the U-shape, it is then folded inward along the center line of symmetry and the two folded edges are pressed and sewn together. The folded edge in the center forms the cap flap brim. The opposite edges of the folded edge in the center are folded inward along the folded edge and sewn together.
4. The three-dimensional cap with a continuous opening as described in claim 3, characterized in that: Before the opposite sides of the center folded edge of the hood are folded inward along the folded edge and pressed together and sewn, the hood is filled with down evenly; and before the opposite sides of the center folded edge of the hood panel are folded inward along the folded edge and pressed together and sewn, the hood panel is filled with down evenly.
5. The three-dimensional cap with a continuous opening as described in claim 3, characterized in that: The cap is assembled by piecing together the cap center and the cap panels: the cap center brim and the cap panels brim face forward; the two sides of the cap center are respectively assembled with the sides of the symmetrically arranged cap panels; the sides of the cap panels are sandwiched between the sides of the cap center, at which point the cap center brim and the cap panels brim form a smooth cap opening arc, and the sandwiched seam between the cap panels and the cap center is sewn.
6. The three-dimensional cap with a continuous opening according to claim 3, characterized in that: The cap brim is made by sewing together two identical cap brim sections.
7. The three-dimensional cap with a continuous opening as described in claim 6, characterized in that: The cap brim has four sides with folded edges along each side; the opposing cap brim segments are folded inward along the folded edges of the four sides and pressed and sewn in sequence; before the last side is folded inward along the folded edge and pressed and sewn, the cap brim is evenly filled with down.
8. The three-dimensional cap with a continuous opening according to claim 7, characterized in that: The cap flap has four sides. The first side is used to join with the cap flap. The second side is used to form a smooth cap opening curve with the cap brim and cap flap brim. The third side is used to form a smooth cap bottom curve with the bottom edge of the cap brim and cap flap. The fourth side is the connecting edge of the cap flap and cap flap. The first side of the cap flap clamps the side of the cap flap and sews the clamping seam between the cap flap and the cap flap. The clamping seam between the cap flap and the cap flap is an irregularly shaped segmented seam.
9. The three-dimensional cap with a continuous brim according to any one of claims 1-8, characterized in that: The brimmed cap piece is made up of N brimmed cap pieces, where N is a positive integer; each brimmed cap piece is made using an independent one-piece cutting process.
10. A garment, characterized in that: It has the three-dimensional cap shape with a hood as described in any one of claims 1-9.