Hooded sweater and hooded jacket

By controlling the hood's shape and structure through the hood's angle and the design of the collar patch, the problem of the hood falling backward in hooded sweatshirts is solved, improving wearing comfort and naturalness. It is suitable for hooded sweatshirts with different fabric thicknesses.

CN121003334APending Publication Date: 2025-11-25报喜鸟控股股份有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511159131.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-19
Publication Date
2025-11-25

AI Technical Summary

Technical Problem

The hoods of existing hooded sweatshirts tend to fall backward, especially with thicker knitted fabrics, causing discomfort and a problem with the front of the sweatshirt riding up.

Method used

The hat shape structure is controlled by the hat slope distance, including the segmented design of the hat body side panels and the hat body center panel. Combined with the hat slope distance shaping method and the auxiliary control of the collar stand patch, the hat shape center of gravity is adjusted forward to ensure that the hat does not fall backward or collapse when it is put down.

Benefits of technology

It ensures that the hood does not fall backward or collapse when lowered, improving the comfort and naturalness of wearing it, and is suitable for hooded sweatshirts of various fabric thicknesses.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121003334A_ABST
    Figure CN121003334A_ABST
Patent Text Reader

Abstract

The hooded sweater comprises a front body piece (1) and a rear body piece (2), the front body piece (1) is connected with the rear body piece (2), the hooded sweater further comprises a hat body side piece (4) and a hat body middle piece (5), the hat body side piece (4) is connected with the hat body middle piece (5), and a method for controlling the shape of a hat through a hat slant distance is adopted. The overall gravity center of the cap is inclined forwards under the condition that the cap is worn on the head of a human body, and the cap cannot fall backwards or collapse after being put down. In addition, in combination with the auxiliary control of the collar seat patch, the weight of the rear part of the cap after the cap is put down can be supported by the forward force of the collar seat.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of clothing technology, and in particular to a hooded sweatshirt or top. Background Technology

[0002] Many people wear hooded jackets or hooded sweatshirts, especially hooded sweatshirts, and the hood often falls backward, making it very tiring to wear.

[0003] Moreover, especially with thicker knitted fabrics, the weight of the fabric itself causes a backward force when the hat is worn down, pulling the front collar up and pressing against the front of the neck, causing the front of the body to sag. Summary of the Invention

[0004] This application provides a hooded sweatshirt or top that controls the hat's shape and manufacturing process by adjusting the hood's angle to achieve a balance of force on the shoulders and neck, making it easier and more natural to wear.

[0005] The embodiments of this application adopt the following technical solutions:

[0006] In the first aspect, this application provides a hooded sweatshirt, wherein the hooded sweatshirt includes: a front panel (1) and a back panel (2), the front panel (1) being connected to the back panel (2), and further includes: a side panel (4) and a center panel (5), the side panel (4) being connected to the center panel (5), and adopts a method for controlling the hat shape using a hood slope distance.

[0007] In some embodiments, the hat body side panel (4) and the hat body middle panel (5) are divided into corresponding segments A, B and C; segments A, B and C of the hat body side panel (4) are all arcs, wherein segment A is slightly convex, segment B is more convex, and segment C is naturally concave; segments A, B and C of the hat body middle panel (5) are all arcs, wherein segments A and E are slightly convex, segment B is more convex, and segments C and D are slightly concave.

[0008] In some embodiments, the hat body side panel (4) is spliced ​​with the hat body middle panel (5), wherein the hat body side panel A section of the hat body side panel (4) has a side panel allowance of 0.2-0.5, the hat body side panel B section of the hat body side panel (4) has a side panel allowance of 0.4-0.8, and the hat body side panel C section has no allowance.

[0009] In some embodiments, the hat side panel (4) and the hat middle panel (5) are controlled by a hat slant distance shaping method, and the corresponding hat type is selected according to the thickness of the fabric.

[0010] In some embodiments, when the fabric is thin, a conventional ABC hat shape is used, wherein the conventional ABC hat shape is the basic hat shape, a, b, and c are hat shape points, bc is the hat slope distance, and the minimum value is not less than a preset fixed value.

[0011] When the fabric is of medium thickness, use the a'b'c' hat shape, where point b coincides with point b', and point ac is shifted to the left to point a'c'. At this time, point c' is at the closest position to the back of the head, and ensure that b'c' is not less than the preset fixed value.

[0012] When the fabric is thicker, use the a”b”c” hat shape; based on the a”b”c” hat shape, a”b” simultaneously moves downwards, and the front neckline depth is lengthened in sync with the lengthening of b”C”, that is, b”c” + the amount of lengthening of the front neckline depth = b”C”.

[0013] In some embodiments, the a'b'c' hat shape and the a”b”c” hat shape, after adjustment, have their center of gravity forward, and the hat can remain upright without feeling backward after being lowered.

[0014] In some embodiments, a collar patch is added to the a”b”c” hat shape.

[0015] In some embodiments, the collar patch is disposed on the back collar transition surface G, the length of the collar patch extends from the back center to the front collar transition surface F, and the height of the collar patch is preset.

[0016] In some embodiments, the hat may also include a collar, which is sewn to the hat and has a TPU transparent elastic strip.

[0017] In some embodiments, the sleeves are further provided with a TPU transparent elastic strip on the armhole.

[0018] Secondly, embodiments of this application also provide a top, which includes the hooded sweatshirt described in the first aspect.

[0019] The above-mentioned technical solutions adopted in the embodiments of this application can achieve the following beneficial effects: The hooded sweatshirt includes: a front panel (1) and a back panel (2), the front panel (1) and the back panel (2) being connected, and also includes: a side panel (4) and a center panel (5), the side panel (4) and the center panel (5) being connected, and adopts a method of controlling the hat shape by using the hat slope distance. By using the method of controlling the hat shape's gravity forward by using the hat slope distance, the overall center of gravity of the hat is tilted forward when it fits the human head, so that the hat will not fall backward or collapse when it is put down.

[0020] In addition, the collar tabs provide additional control, allowing the weight of the back of the hat to be lifted by the forward force of the collar tab when it is down. Attached Figure Description

[0021] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0022] Figure 1 This is a schematic diagram of the various structural pieces of the hooded sweatshirt in the embodiments of this application;

[0023] Figure 2 This is a schematic diagram showing the shapes of the side panels and center panels of the hooded sweatshirt in the embodiments of this application;

[0024] Figure 3 This is one of the schematic diagrams of the hood slant distance of the hooded sweatshirt in the embodiments of this application;

[0025] Figure 4 This is the second intention regarding the hood slant distance of the hooded sweatshirt in the embodiments of this application;

[0026] Figure 5 This is one of the schematic diagrams illustrating the adjustment and change of the hood shape of the hooded sweatshirt in the embodiments of this application;

[0027] Figure 6 This is the second schematic diagram illustrating the adjustment and change of the hood shape of the hooded sweatshirt in the embodiments of this application;

[0028] Figure 7 This is the third schematic diagram illustrating the adjustment and change of the hood shape of the hooded sweatshirt in the embodiments of this application;

[0029] Figure 8 This is a comparative illustration of the hooded sweatshirt with the hood adjusted and lowered in an embodiment of this application.

[0030] Figure 9 This is a schematic diagram showing the size and comparison of the collar patch on the hoodie in the embodiments of this application;

[0031] Figure 10 This is an overall schematic diagram illustrating the effect of the hooded sweatshirt in this embodiment of the application, showing that the hood does not fall back or collapse. Detailed Implementation

[0032] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions of this application will be clearly and completely described below in conjunction with specific embodiments and corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0033] The technical solutions provided by the various embodiments of this application are described in detail below with reference to the accompanying drawings.

[0034] This application provides a hooded sweatshirt, such as Figure 1 The diagram shows schematic representations of the various structural pieces of a hooded sweatshirt according to an embodiment of this application. The hooded sweatshirt includes a front panel 1 and a back panel 2, which are connected. It also includes side panels 4 and a center panel 5, which are connected and controlled using a hood angle control method. The front panel 1 is located at the front of the hooded sweatshirt, and the back panel 2 is located at the back, responsible for the main knitting along the length of the garment. The front panel 1 and back panel 2 can be connected via shoulder joints, side seams, or other structural connections to form a complete garment. The side panels 4 are typically located on both sides of the hood, and these side panels are sewn or spliced ​​to form the main structure of the hood, collectively supporting the overall shape of the hood. The center panel 5 is located in the middle of the hood, and the side panels 4 and center panel 5 are connected via side panels. Furthermore, the method of controlling the hat shape by using the hat slope distance is adopted. The idea of ​​the hat shape control method is to control the weight of the hat shape forward by using the hat slope distance, so that the overall center of gravity of the hat is tilted forward when it fits the human head. This way, the hat will not fall backward or collapse when it is put down.

[0035] Preferably, the front panel 1 and the back panel 2 are joined at the shoulder seam. Before joining the shoulder seam of the front panel and the back panel, the shoulder seam is folded back. Then, when the back panel shoulder seam is being finished, a 0.5cm wide TPU transparent elastic strip is placed and fixed to prevent the shoulder seam from pulling apart.

[0036] Preferably, the front panel 1 and the back panel 2 are joined by side seams, with the side seam at the armpits dropping down about 12cm and the side seam at the hem rising about 10cm, with a uniform allowance of 0.5cm-0.8cm.

[0037] Preferably, the hem of the front piece 1 and the back piece 2 are joined with the hem splicing piece. When the hem splicing piece is made of the same material, the hem allowance is 5-8cm around the entire circle, depending on the elasticity of the fabric and the desired style. When the hem splicing piece is ribbed, the hem allowance is 8-14cm around the entire circle, depending on the elasticity of the rib and the desired style.

[0038] In one embodiment of this application, the side panel 4 and the middle panel 5 are divided into corresponding segments A, B, and C; segments A, B, and C of the side panel 4 are all curved, wherein segment A is slightly convex, segment B is more convex, and segment C is naturally concave; segments A, B, and C of the middle panel 5 are all curved, wherein segments A and E are slightly convex, segment B is more convex, and segments C and D are slightly concave.

[0039] like Figure 2As shown, this illustrates the shape of the side panels and center panel of the hat. Considering the spherical shape of the human head, the curvature of the side panels and center panel is adjusted to match the size of the head's bulge. Both the side panels and center panel can be divided into corresponding segments A, B, and C, as shown below. Figure 2 As shown.

[0040] For the side panels of the hat, sections A, B, and C are all curved. Section A is slightly raised, section B is more raised, and section C is naturally concave. Similarly, for the center of the hat, sections A, B, and C are all curved. Sections A and E are slightly raised, section B is more raised, and sections C and D are slightly concave.

[0041] In one embodiment of this application, the hat body side panel 4 and the hat body center panel 5 are spliced ​​together, wherein the hat body side panel A section of the hat body side panel 4 has a side panel allowance of 0.2-0.5, the hat body side panel B section of the hat body side panel 4 has a side panel allowance of 0.4-0.8, and the hat body side panel C section has no side panel allowance.

[0042] like Figure 3 and Figure 4 As shown, the side panel 4 and the center panel 5 of the hat body are spliced ​​together. For section A, the side panel has an allowance of 0.2-0.5 cm; for section B, it has an allowance of 0.4-0.8 cm; and for section C, it has no allowance. The method for controlling the hat slope distance of the side panel and center panel is based on the standard ABC hat shape, where BC is the length from point b at the front neckline to point c at the most protruding point on the back of the head, with a minimum value of 42 cm (an empirical value).

[0043] In one embodiment of this application, the hat side panel 4 and the hat center panel 5 are controlled by a hat slant distance shaping method, and the corresponding hat type is selected according to the thickness of the fabric.

[0044] In one embodiment of this application, when the fabric is thin, a conventional ABC hat shape is used, wherein the conventional ABC hat shape is the basic hat shape, a, b, and c are hat shape points, bc is the hat slope distance, and the minimum value is not less than a preset fixed value; when the fabric is medium-thick, an a'b'c' hat shape is used, wherein point b coincides with point b', and point ac is shifted to the left to point a'c', at which point point c' is at the closest position to the back of the head, and it is ensured that b'c' is not less than the preset fixed value; when the fabric is thick, an a”b”c” hat shape is used; based on the a'b'c’ hat shape, a”b” is simultaneously downward, and the front neck depth is lengthened synchronously with the lengthening of b”C”, that is, b’c’ + the amount of lengthening of the front neck depth = b”C”.

[0045] For thinner fabrics, use a standard ABC hat style, such as... Figure 5As shown. When using a medium-thick fabric, use the a'b'c' hat shape, with points b and b' coinciding. Shift points ac to the left to point a'c'. At this point, point c' is closest to the back of the head, ensuring b'c' is no less than 42cm. After adjustment, the hat's center of gravity should be forward, and the hat should maintain a non-reverse tilting feel when lowered. Figure 6 As shown. When using a thicker fabric, use an a”b”c” hat shape. Based on the a”b”c” hat shape, both a”b” are downwards. At this time, the front neckline depth increases in sync with the increase in b”c”, meaning b”c” + the increase in front neckline depth = b”c”. After adjustment, the overall center of gravity of the hat is forward, and the hat can maintain a non-backward feel when lowered. Figure 7 As shown.

[0046] In one embodiment of this application, the a'b'c' hat shape and the a”b”c” hat shape, after adjustment, have their center of gravity forward, and the hat can remain upright without feeling backward after being put down.

[0047] By adopting an "a" "b" "c" hat shape, the overall weight of the hat is shifted forward, and the hat does not collapse when lowered. This design allows it to be made with most of the thicker fabrics available on the market. Specific effects are shown below. Figure 8 As shown.

[0048] In one embodiment of this application, a collar patch is added to the a”b”c” hat shape.

[0049] like Figure 10 As shown, using the a”b”c” hat shape, the overall weight of the hat is biased forward, and the hat does not collapse when laid down, making it suitable for most thicker fabrics on the market. When controlling the weight distribution, considering the thickness of the fabric, a collar support patch is needed for support. Based on the a”b”c” hat shape, combined with the auxiliary control of the collar support patch, even the thickest fabrics can be used. Figure 8 As shown.

[0050] This hooded jacket uses a method of adjusting the hood angle and combined with the auxiliary control of the collar patch to ensure that the hood shape fits the human head and does not collapse or fall backward when lowered.

[0051] In one embodiment of this application, the collar patch is disposed on the back collar transition surface G, the length of the collar patch extends from the back center to the front collar transition surface F, and the height of the collar patch is preset.

[0052] like Figure 9 As shown, the neck is divided into two transition surfaces: the front neckline F and the back neckline G. The height of the collar patch H is about 2.5-3.5cm, and the collar patch tapers off by 0.2-0.5cm at a length of about 5cm from the G transition surface.

[0053] In one embodiment of this application, the device further includes a collar, which is sewn to the hat, and the collar is provided with a transparent TPU elastic strip; it also includes sleeves, which are provided with transparent TPU elastic strips on the armholes of the body.

[0054] The hoodie also includes a hood and a neckline, which are sewn together. Specifically, the neckline seam is turned towards the body, and when the neckline is hemmed, a 0.5cm wide TPU transparent elastic strip is placed and fixed on both the body and the neckline to prevent the neckline from pulling open. In addition, the back neckline strip is fitted at a position 2-2.5cm less on each side of the total arc length of the back neckline, which covers the seam allowance of the back neckline and also prevents the back neckline from pulling open.

[0055] The hoodie also includes set-in sleeves and ribbed cuffs. The armhole seam is reversed with the body, and the sleeve cap has a negative allowance. When the armhole is hemmed, a 0.5cm wide TPU transparent elastic strip is placed and fixed at the same time as the armhole on the body. This is equivalent to reverse the sleeve cap allowance, which prevents the armhole from stretching and also keeps the front and back armholes accordion-pleated. The cuff rib is sewn with an allowance of 3-6cm around the cuff, depending on the elasticity of the rib.

[0056] This application embodiment also provides a top, which includes the aforementioned hooded sweatshirt. The hooded sweatshirt includes: a front panel 1 and a back panel 2, the front panel 1 being connected to the back panel 2, and further includes: a hood side panel 4 and a hood center panel 5, the hood side panel 4 being connected to the hood center panel 5, and employing a hood slope distance control hood shape method.

[0057] In some embodiments, the side panel 4 and the middle panel 5 are divided into corresponding segments A, B, and C; segments A, B, and C of the side panel 4 are all curved, wherein segment A is slightly convex, segment B is more convex, and segment C is naturally concave; segments A, B, and C of the middle panel 5 are all curved, wherein segments A and E are slightly convex, segment B is more convex, and segments C and D are slightly concave.

[0058] In some embodiments, the hat body side panel 4 and the hat body center panel 5 are spliced ​​together, wherein the hat body side panel A section of the hat body side panel 4 has a side panel allowance of 0.2-0.5, the hat body side panel B section of the hat body side panel 4 has a side panel allowance of 0.4-0.8, and the hat body side panel C section has no side panel allowance.

[0059] In some embodiments, the hat side panel 4 and the hat center panel 5 are controlled by a hat slant distance shaping method, and the corresponding hat style is selected according to the thickness of the fabric.

[0060] In some embodiments, when the fabric is thin, a conventional ABC hat shape is used, wherein the conventional ABC hat shape is the basic hat shape, a, b, and c are hat shape points, bc is the hat slope distance, and the minimum value is not less than a preset fixed value.

[0061] When the fabric is of medium thickness, use the a'b'c' hat shape, where point b coincides with point b', and point ac is shifted to the left to point a'c'. At this time, point c' is at the closest position to the back of the head, and ensure that b'c' is not less than the preset fixed value.

[0062] When the fabric is thicker, use the a”b”c” hat shape; based on the a”b”c” hat shape, a”b” simultaneously moves downwards, and the front neckline depth is lengthened in sync with the lengthening of b”C”, that is, b”c” + the amount of lengthening of the front neckline depth = b”C”.

[0063] In some embodiments, the a'b'c' hat shape and the a”b”c” hat shape, after adjustment, have their center of gravity forward, and the hat can remain upright without feeling backward after being lowered.

[0064] In some embodiments, a collar patch is added to the a”b”c” hat shape.

[0065] In some embodiments, the collar patch is disposed on the back collar transition surface G, the length of the collar patch extends from the back center to the front collar transition surface F, and the height of the collar patch is preset.

[0066] In some embodiments, the device further includes a collar, which is sewn to the hat, and the collar is provided with a transparent TPU elastic strip; it also includes sleeves, which are provided with transparent TPU elastic strips at the armholes of the body.

[0067] The above description is merely an embodiment of this application and is not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.

Claims

1. A hooded sweatshirt, wherein, The hooded sweatshirt includes: a front panel (1) and a back panel (2), the front panel (1) and the back panel (2) are connected, and also includes: a side panel (4) and a center panel (5), the side panel (4) and the center panel (5) are connected, and the hood shape is controlled by the hood slope distance method.

2. The hooded sweatshirt as described in claim 1, wherein, The hat body side panel (4) and the hat body middle panel (5) are divided into corresponding segments A, B and C. The segments A, B and C of the hat body side panel (4) are all arcs, wherein segment A is slightly raised, segment B is more raised, and segment C is naturally concave. The segments A, B and C of the hat body middle panel (5) are all arcs, wherein segments A and E are slightly raised, segment B is more raised, and segments C and D are slightly concave.

3. The hooded sweatshirt as described in claim 2, wherein, The hat body side panel (4) is spliced ​​and connected with the hat body middle panel (5). The hat body side panel A section of the hat body side panel (4) has a side panel allowance of 0.2-0.5, the hat body side panel B section of the hat body side panel (4) has a side panel allowance of 0.4-0.8, and the hat body side panel C section of the hat body side panel (4) has no side panel allowance.

4. The hooded sweatshirt as described in claim 1, wherein, The hat side panel (4) and the hat middle panel (5) are controlled by the hat slant distance shaping method, and the corresponding hat type is selected according to the thickness of the fabric.

5. The hooded sweatshirt as described in claim 4, wherein, When the fabric is thin, use the standard ABC hat shape. The standard ABC hat shape is the basic hat shape, a, b, and c are the hat shape points, and bc is the hat slope distance. The minimum value is not less than the preset fixed value. When the fabric is of medium thickness, use the a'b'c' hat shape, where point b coincides with point b', and point ac is shifted to the left to point a'c'. At this time, point c' is at the closest position to the back of the head, and ensure that b'c' is not less than the preset fixed value. When the fabric is thicker, use the a”b”c” hat shape; based on the a”b”c” hat shape, a”b” simultaneously moves downwards, and the front neckline depth is lengthened in sync with the lengthening of b”C”, that is, b”c” + the amount of lengthening of the front neckline depth = b”C”.

6. The hooded sweatshirt as described in claim 5, wherein, The a'b'c' and a”b”c” hat shapes, after adjustment, have their center of gravity forward, and the hats can remain upright without feeling backward when lowered.

7. The hooded sweatshirt as described in claim 6, wherein, Add a collar patch to the a”b”c” hat shape.

8. The hooded sweatshirt as described in claim 7, wherein, The collar seat patch is set on the back collar turning surface G, the length of the collar seat patch extends from the back center to the front collar turning surface F, and the height of the collar seat patch is preset.

9. The hooded sweatshirt as described in claim 1, wherein, It also includes a collar, which is sewn to the hat, and the collar is provided with a transparent TPU elastic strip; it also includes sleeves, which are provided with transparent TPU elastic strips on the armholes of the body.

10. A type of top, wherein, Including the hooded sweatshirt as described in any one of claims 1 to 9.