5d dynamic stereoscopic tailored garment and method of making

By using 5D dynamic three-dimensional cutting technology, the movement space of the shoulders and underarms of the garment is increased, and the sleeve design is optimized, which solves the problems of stretching and wrinkling of sportswear during human movement, achieving a balance between slim fit and freedom of movement.

CN116369608BActive Publication Date: 2025-12-09LI NING (CHINA) SPORTS GOODS CO LTD
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Patent Information

Application Number
CN202310090810.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-09
Publication Date
2025-12-09
Estimated Expiration
2043-02-09

AI Technical Summary

Technical Problem

Existing sportswear is prone to problems such as stretching and wrinkling during human movement, affecting comfort and aesthetics, and failing to balance fit and freedom of movement.

Method used

Employing 5D dynamic three-dimensional cutting technology, the garment structure incorporates front and back padding to increase the range of motion in the shoulder and underarm areas. Furthermore, the sleeve design is optimized to reduce vertical distance, enhancing the garment's slimming effect and flexibility.

Benefits of technology

It achieves the goal of not hindering movement during human exercise while maintaining the slim fit, aesthetics, and comfort of the clothing, increasing the range of arm movement, and enhancing the exercise experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a 5D dynamic three-dimensional cutting garment, which comprises a front piece, a back piece and a sleeve piece which are connected with each other, a first filling part is formed at a front clamping ring between the front piece and the sleeve piece, a second filling part is formed at a back clamping ring between the back piece and the sleeve piece, a front clamping low of the front clamping ring is close to a back collar in a vertical direction to reduce a vertical distance from the front clamping low to the back collar, a back clamping low of the back clamping ring is close to the back collar in the vertical direction to reduce a vertical distance from the back clamping low to the back collar, the front clamping ring and the back clamping ring jointly enclose an armhole, the movement space of the shoulder and the underarm part of the garment is increased through the first filling part and the second filling part, the front clamping low is connected with the back clamping low to improve the body shaping effect of the shoulder and the underarm part of the garment, and a manufacturing method of the garment is also disclosed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of clothing, in particular to a 5D dynamic three-dimensional cutting clothing and a manufacturing method thereof. BACKGROUND

[0002] With the continuous improvement of people's health consciousness, exercise has become an indispensable part of daily life, and people's requirements for the functionality and comfort of sports clothing are also getting higher and higher. The existing clothing pattern making methods mainly include flat cutting method and three-dimensional cutting method. Since the human body is an irregular body, three-dimensional cutting is superior to flat cutting in terms of fit, and the cut clothing shape is more beautiful. However, three-dimensional cutting only considers the clothing fit when the human body is in a static state, and does not fully consider the motion state of the human body. When the human body moves, especially when the motion amplitude is large, not only the influence of the amplitude and angle of different motions on the functionality of the clothing needs to be considered, but also the influence of the skin stretching, sliding and other phenomena of the human body in motion on the comfort of the clothing needs to be considered.

[0003] The existing sports clothing, if adopting three-dimensional cutting method, although it can achieve the effect of body shaping and fit, but when the human body moves, it will cause problems such as pulling and wrinkling, for example: when making a lifting arm action, the shoulder and underarm of the clothing will hinder the arm lifting, and the hem of the clothing will be pulled up greatly with the arm lifting, and after the arm falls, it will accumulate in the waist, which not only affects the comfort and beauty, but also has adverse effects on the standardization of the action.

[0004] Some sports clothing are designed to be loose and large in size in order to improve the degree of freedom, although the restriction on the human body movement is reduced, but the beauty of fit is lacking, and the clothing fabric will swing or slide uncontrollably when the human body moves, which will also seriously affect the experience of exercise. SUMMARY

[0005] The purpose of the present application is to provide a 5D dynamic three-dimensional cutting clothing and a manufacturing method thereof, which can not only shape the body and fit, but also ensure the free and comfortable movement of the human body. The specific technical scheme is as follows:

[0006] The 5D dynamic three-dimensional tailored garment comprises a front piece, a back piece and a sleeve piece connected with each other, a first filling part is formed at a front collar of the front piece and the sleeve piece, a second filling part is formed at a back collar of the back piece and the sleeve piece, a front collar low of the front collar is close to a back collar center in a vertical direction to reduce a vertical distance between the front collar low and the back collar center, a back collar low of the back collar is close to the back collar center in the vertical direction to reduce a vertical distance between the back collar low and the back collar center, the front collar and the back collar jointly form an armhole to increase a movement space of a shoulder and an underarm part of the garment through the first filling part and the second filling part, and the front collar low is connected with the back collar low to improve a body-fitting effect of the shoulder and the underarm part of the garment.

[0007] Further, in the vertical direction, a position of a sleeve center line of the sleeve piece close to a sleeve opening part is higher than a position of the back collar center.

[0008] Further, the position of the sleeve center line close to the sleeve opening part is close to the back collar center in the vertical direction to reduce the vertical distance between the position of the sleeve center line close to the sleeve opening part and the back collar center.

[0009] Further, the sleeve piece comprises a main sleeve piece and a small sleeve piece, a first end of the main sleeve piece is connected with the front piece and the back piece, a first end of the small sleeve piece is connected at the front collar of the front piece and connected with the main sleeve piece, a first edge of the small sleeve piece is connected with a first edge of the main sleeve piece, a second edge of the small sleeve piece is connected with a second edge of the main sleeve piece to jointly form a sleeve tube, and a second end of the small sleeve piece jointly forms a sleeve opening with a second end of the main sleeve piece.

[0010] Further, the main sleeve piece comprises a front sleeve piece and a back sleeve piece, a second edge of the front sleeve piece is connected with a first edge of the back sleeve piece to jointly form the main sleeve piece, and a space is formed at a position close to a shoulder of the main sleeve piece to improve the body-fitting effect of the shoulder and the underarm part of the garment.

[0011] Further, a patch is included, the patch is attached and fixed at a joint of the front piece and the back piece and a joint of the front collar low and the back collar low, and extends along a joint of the sleeve piece towards the sleeve opening.

[0012] Further, the first filling part can be formed on the sleeve piece and / or the front piece, and the second filling part can be formed on the sleeve piece and / or the back piece.

[0013] A manufacturing method of a 5D dynamic three-dimensional tailored garment comprises the following steps.

[0014] Cutting a front piece, a back piece and a sleeve piece of the garment on a fabric;

[0015] When cutting the sleeve piece, the sleeve piece is cut from a main sleeve piece and a small sleeve piece, in the vertical direction, a position of a sleeve center line of the sleeve piece close to a sleeve opening part is higher than a position of a back collar center of the garment.

[0016] When cutting the front dart between the front panel and the sleeve panel, a first filling part is cut at the front dart, and the front dart lower is made to be close to the back neckline in the vertical direction to reduce the vertical distance of the front dart lower to the back neckline;

[0017] When cutting the back dart between the back panel and the sleeve panel, a second filling part is cut at the back dart, and the back dart lower is made to be close to the back neckline in the vertical direction to reduce the vertical distance of the back dart lower to the back neckline;

[0018] The cut front panel, back panel and sleeve panel are sewn, the front dart and the back dart together enclose the armhole, the first filling part and the second filling part increase the movement space of the garment shoulder and underarm part, the front dart lower and the back dart lower are sewn together to improve the body-fitting effect of the garment shoulder and underarm part; the first end of the main sleeve panel is connected with the front panel and the back panel, the first end of the small sleeve panel is connected at the front dart of the front panel and connected with the main sleeve panel; the first edge of the small sleeve panel is connected with the first edge of the main sleeve panel, the second edge of the small sleeve panel is connected with the second edge of the main sleeve panel to together enclose the sleeve; the second end of the small sleeve panel and the second end of the main sleeve panel together enclose the sleeve opening;

[0019] The long strip-shaped patch is cut, the patch is attached and fixed at the joint of the front panel and the back panel and the joint of the front dart lower and the back dart lower, and the patch extends along the joint of the sleeve panel towards the sleeve opening direction.

[0020] A manufacturing method of a 5D dynamic three-dimensional cutting garment, comprising:

[0021] Cutting the front panel, back panel and sleeve panel of the garment on the fabric;

[0022] When cutting the front dart between the front panel and the sleeve panel, a first filling part is cut at the front dart, and the front dart lower is made to be close to the back neckline in the vertical direction to reduce the vertical distance of the front dart lower to the back neckline;

[0023] When cutting the back dart between the back panel and the sleeve panel, a second filling part is cut at the back dart, and the back dart lower is made to be close to the back neckline in the vertical direction to reduce the vertical distance of the back dart lower to the back neckline;

[0024] When cutting the sleeve panel, the front sleeve panel, the back sleeve panel and the small sleeve panel are cut, and the sleeve panel is spliced by the front sleeve panel, the back sleeve panel and the small sleeve panel; in the vertical direction, the height of the sleeve center line of the sleeve panel close to the position of the sleeve opening part is higher than the height of the back neckline of the garment; when cutting the front sleeve panel and the back sleeve panel, the second edge of the front sleeve panel and the first edge of the back sleeve panel close to the shoulder part of the main sleeve panel are cut to form a volume-reducing space;

[0025] Sewing the front piece, the back piece and the sleeve piece to form a sleeve hole, and increasing the movement space of the shoulder and the underarm of the garment through the first filling part and the second filling part; sewing the front underarm and the back underarm together to improve the body-fitting effect of the shoulder and the underarm of the garment; connecting the second edge of the front sleeve piece and the first edge of the back sleeve piece to form a main sleeve piece, and improving the body-fitting effect of the garment through the volume reduction space; connecting the first end of the main sleeve piece with the front piece and the back piece, connecting the first end of the small sleeve piece at the front underarm of the front piece and connecting the small sleeve piece with the main sleeve piece; connecting the first edge of the small sleeve piece with the first edge of the main sleeve piece, and connecting the second edge of the small sleeve piece with the second edge of the main sleeve piece to form a sleeve tube; and connecting the second end of the small sleeve piece with the second end of the main sleeve piece to form a sleeve opening.

[0026] Cutting a long strip-shaped patch, and fixing the patch at the joint of the front piece and the back piece and the joint of the front underarm and the back underarm, and extending the patch along the joint of the sleeve piece towards the sleeve opening.

[0027] A manufacturing method of a 5D dynamic three-dimensional tailored garment, comprising:

[0028] Cutting a front piece, a back piece and a sleeve piece of the garment on a fabric;

[0029] When cutting the sleeve piece, a part of the sleeve center line close to the sleeve opening is close to the back neckline in the vertical direction to reduce the vertical distance between the part of the sleeve center line close to the sleeve opening and the back neckline.

[0030] When cutting a front underarm between the front piece and the sleeve piece, a first filling part is cut at the front underarm, and a front underarm lower part of the front underarm is close to the back neckline in the vertical direction to reduce the vertical distance between the front underarm lower part and the back neckline.

[0031] When cutting a back underarm between the back piece and the sleeve piece, a second filling part is cut at the back underarm, and a back underarm lower part of the back underarm is close to the back neckline in the vertical direction to reduce the vertical distance between the back underarm lower part and the back neckline.

[0032] Sewing the front piece, the back piece and the sleeve piece to form a sleeve hole, and increasing the movement space of the shoulder and the underarm of the garment through the first filling part and the second filling part; sewing the front underarm and the back underarm together to improve the body-fitting effect of the shoulder and the underarm of the garment; connecting the first end of the sleeve piece with the front piece and the back piece, and connecting the first edge of the sleeve piece with the second edge of the sleeve piece to form a sleeve tube.

[0033] Cutting a long strip-shaped patch, and fixing the patch at the joint of the front piece and the back piece and the joint of the front underarm and the back underarm, and extending the patch along the joint of the sleeve piece towards the sleeve opening.

[0034] The 5D dynamic three-dimensional tailored garment and the manufacturing method thereof can make the garment structure dynamic tailoring design, so that the garment can fit the body and ensure the free stretch of the human body movement, increase the arm lifting amount, and can extend with the human body movement during the human body movement, without hindering the movement, and is comfortable and beautiful. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 It is a three-dimensional view of a body suit made by using the manufacturing method of the 5D dynamic three-dimensional tailored garment in the application.

[0036] Figure 2a It is a front view of the body suit in the application, Figure 2b It is a rear view.

[0037] Figure 3a It is a paper pattern schematic view of the body suit in the application, Figure 3b It is a paper pattern schematic view of a conventional body suit.

[0038] Figure 4a It is a front view of a windbreaker made by using the manufacturing method of the 5D dynamic three-dimensional tailored garment in the application, Figure 4b It is a front view of a conventional windbreaker.

[0039] Figure 5a It is a paper pattern schematic view of the windbreaker in the application, Figure 5b It is a paper pattern schematic view of a conventional windbreaker.

[0040] Figure 6a It is a front view of a down jacket made by using the manufacturing method of the 5D dynamic three-dimensional tailored garment in the application, Figure 6b It is a front view of a conventional down jacket.

[0041] Figure 7a It is a paper pattern schematic view of the down jacket in the application, Figure 7b It is a paper pattern schematic view of a conventional down jacket.

[0042] Figure 8a It is a front view of a short sleeve made by using the manufacturing method of the 5D dynamic three-dimensional tailored garment in the application, Figure 8b It is a front view of a conventional short sleeve.

[0043] Figure 9 It is a paper pattern schematic view of the short sleeve in the application.

[0044] Figure 10a It is a front view of a sweatshirt made by using the manufacturing method of the 5D dynamic three-dimensional tailored garment in the application, Figure 10b It is a front view of a conventional sweatshirt.

[0045] Figure 11 It is a paper pattern schematic view of the sweatshirt in the application.

[0046] Figure 12a Wearing diagram of the front, side and back of the test garment A on the athlete before exercise; Figure 12b Morphological change diagram of the front, side and back of the test garment A after the athlete performs large-scale exercise.

[0047] Figure 13a Wearing diagram of the front, side and back of the test garment B on the athlete before exercise; Figure 13b Morphological change diagram of the front, side and back of the test garment B after the athlete performs large-scale exercise.

[0048] Figure 14a Wearing diagram of the front, side and back of the 5D dynamic three-dimensional cutting garment in the application on the athlete before exercise; Figure 14b Morphological change diagram of the front, side and back of the 5D dynamic three-dimensional cutting garment after the athlete performs large-scale exercise. DETAILED DESCRIPTION

[0049] In order to better understand the purpose, structure and function of the application, the 5D dynamic three-dimensional cutting garment and its manufacturing method will be further described in detail below in combination with the drawings.

[0050] Example one

[0051] Figures 1 to 3a An embodiment one of the 5D dynamic three-dimensional cutting garment in the application is shown, which is a body suit, Figure 3b The structure of the body suit in the prior art is shown. In order to more clearly illustrate the difference and advantages of the body suit in the application and its manufacturing method compared with the prior art, the design scheme of the body suit in the prior art will be simply described first.

[0052] Figure 3b The pattern structure of the existing body suit is shown. As can be seen, the body suit includes a front piece 110, a back piece 120 and a sleeve piece 130 connected with each other. The side edge of the front piece 110 and the side edge of the back piece 120 are sewn together to form the body part of the body suit, and the first edge 140 and the second edge 150 of the sleeve piece 130 are sewn together to form the sleeve part of the body suit. In order to make the body suit more body-fitting and beautiful when worn, the front pinch ring 160 between the front piece 110 and the sleeve piece 130 and the back pinch ring 170 between the back piece 120 and the sleeve piece 130 are cut a lot when cutting the existing body suit, so as to reduce the space allowance of the fabric at the front pinch ring 160 and the back pinch ring 170. Thus, after the sewing of the front pinch ring 160 and the back pinch ring 170 is completed, the shoulder part of the garment can be more visually fitted to the human body, thereby realizing the beautiful effect.

[0053] However, due to the small space allowance of the shoulder part, when the human body performs large amplitude activities, especially performs forward or lateral arm lifting and arm raising actions, the garment will produce excessive pulling on the limbs, produce strong resistance to the human body activities, affect the standard of the action, and the lower hem of the garment will be greatly displaced upward under the pulling, which affects the aesthetic property and the comfort.

[0054] In addition, as shown in Figure 3b , the sleeve center line 180 of the existing body suit sleeve piece 130 has a downward inclined extension trend, and the part of the sleeve center line 180 close to the sleeve opening is lower than the back collar center 190 in the vertical direction, which will produce obvious downward compression feeling at the deltoid and brachial muscle group during exercise, affecting the arm lifting action.

[0055] Based on the above description of the design structure of the existing body suit, the body suit made by the dynamic three-dimensional cutting method in the present application will be described in detail below.

[0056] As shown in Figures 1 to 3a , the body suit in the present application includes a front piece 11, a back piece 12 and a sleeve piece 13 connected to each other, as shown in Figure 3a , a first filling part 14 is formed at the front pinch ring between the front piece 11 and the sleeve piece 13, the first filling part 14 can provide more sufficient movement space for the part where the front pinch ring is located, and a second filling part 15 is formed at the back pinch ring between the back piece 12 and the sleeve piece 13, the second filling part 15 can provide more sufficient movement space for the part where the back pinch ring is located. Among them, the first filling part 14 can be formed on the sleeve piece 13 and / or the front piece 11, and the second filling part 15 can be formed on the sleeve piece 13 and / or the back piece 12.

[0057] Referring to Figure 3b the existing body suit, compared with the vertical distance a from the front pinch low 161 and the back pinch low 171 of the existing body suit to the back collar center 190, the front pinch low 141 of the front pinch ring of the body suit in the present application is closer to the back collar center 16 in the vertical direction, so as to reduce the vertical distance from the front pinch low to the back collar center 16, and the back pinch low 151 of the back pinch ring is closer to the back collar center 16 in the vertical direction, so as to reduce the vertical distance from the back pinch low 151 to the back collar center 16.

[0058] The sewn body suit, the front pinch ring and the back pinch ring together form a sleeve hole, the movement space provided by the first filling part 14 and the second filling part 15 can increase the overall movement space of the garment shoulder part and the underarm part, at the same time, the front pinch low 141 and the back pinch low 151 of the garment are connected, by increasing the position of the front pinch low 141 and the back pinch low 151 towards the direction of the back collar center 16, so as to achieve the purpose of improving the body shaping effect of the garment shoulder part and the underarm part.

[0059] Preferably, the vertical distance between the front underarm low 141 and the back underarm low 151 to the back neckline 16 of the compression garment of the present application is reduced by 1-1.5cm compared to the prior art compression garment, so that the garment can provide sufficient amount of movement space while having good body shaping and aesthetic effects.

[0060] Further, as shown in Figure 3a Unlike the prior art compression garment, the sleeve centerline 17 of the sleeve piece 13 of the compression garment of the present application has an overall upward trend in the vertical direction, and the position of the sleeve centerline 17 near the sleeve opening is higher than the position of the back neckline 16, which is located at the upper part of the back neckline 16. With this design, the deltoid and brachial muscle group will hardly feel downward compression when the arm is moving, greatly improving the flexibility and freedom of arm lifting movement.

[0061] Further, the sleeve piece 13 comprises a main sleeve piece 131 and a small sleeve piece 132, the first end of the main sleeve piece 131 is connected to the front piece 11 and the back piece 12, and the first end of the small sleeve piece 132 is connected to the front underarm low of the front piece 11 and connected to the main sleeve piece 131. The first edge of the small sleeve piece 132 is connected to the first edge of the main sleeve piece 131, and the second edge of the small sleeve piece 132 is connected to the second edge of the main sleeve piece 131 to jointly form a sleeve. The second end of the small sleeve piece 132 and the second end of the main sleeve piece 131 jointly form a sleeve opening. The design of the small sleeve piece 132 can change the overall mechanical properties of the sleeve part of the garment, further improving the flexibility and freedom of arm lifting movement. Of course, in addition to the preferred arrangement described above, the sleeve piece of the compression garment of the present application can also be a complete one-piece structure.

[0062] Further, the compression garment of the present application further comprises a patch 18, which is a long strip-shaped sheet structure, attached and fixed to the joint between the front piece 11 and the back piece 12, and the joint between the front underarm low and the back underarm low, and extends along the joint of the sleeve piece 13 towards the sleeve opening. The arc-shaped curved patch 18 can further improve the movement space of the garment.

[0063] With the above design, the compression garment of the present application can provide more movement space, and is body-fitting and body-shaping, and the hem of the garment is not easily displaced upward with the movement of the arm, having better comfort and aesthetic properties.

[0064] The present application also discloses a manufacturing method of a 5D dynamic three-dimensional cutting garment, in particular the manufacturing method of the compression garment of the above embodiment one, which specifically comprises:

[0065] Cutting the front piece 11, the back piece 12 and the sleeve piece 13 of the garment on the fabric;

[0066] When the sleeve piece 13 is cut, including cutting the main sleeve piece 131 and cutting the small sleeve piece 132, the sleeve piece 13 is spliced by the main sleeve piece 131 and the small sleeve piece 132, and in the vertical direction, the height of the sleeve center line 17 of the sleeve piece 13 near the cuff position is higher than the height of the back neckline 16;

[0067] When the front collar is cut between the front piece 11 and the sleeve piece 13, the first filling part 14 is cut at the front collar, and the front collar low of the front collar is close to the back neckline 16 in the vertical direction, so as to reduce the vertical distance between the front collar low and the back neckline 16;

[0068] When the back collar is cut between the back piece 12 and the sleeve piece 13, the second filling part 15 is cut at the back collar, and the back collar low of the back collar is close to the back neckline 16 in the vertical direction, so as to reduce the vertical distance between the back collar low and the back neckline 16;

[0069] The cut front piece 11, back piece 12 and sleeve piece 13 are sewn, the front collar and the back collar together form the armhole, so as to increase the movement space of the garment shoulder and underarm position through the first filling part 14 and the second filling part 15, and the front collar low 141 and the back collar low 151 are sewn together, so as to improve the body shaping effect of the garment shoulder and underarm position;

[0070] The first end of the main sleeve piece 131 is connected with the front piece 11 and the back piece 12, the first end of the small sleeve piece 132 is connected at the front collar of the front piece 11 and connected with the main sleeve piece 131; the first edge of the small sleeve piece 132 is connected with the first edge of the main sleeve piece 131, and the second edge of the small sleeve piece 132 is connected with the second edge of the main sleeve piece 131, so as to jointly form the sleeve; and the second end of the small sleeve piece 132 and the second end of the main sleeve piece 131 jointly form the cuff;

[0071] The long strip-shaped patch 18 is cut, and the patch 18 is attached and fixed at the joint of the front piece 11 and the back piece 12 and the joint of the front collar low and the back collar low, and the patch extends along the joint of the sleeve piece 13 towards the cuff direction.

[0072] Embodiment two

[0073] Figure 4a And Figure 5a Embodiment two of the 5D dynamic three-dimensional cutting garment in the application is shown, which is a windbreaker, Figure 4b And Figure 5b The structure of the windbreaker in the prior art is shown in the figure.

[0074] Reference Figure 5bSimilar to the structure of the existing body-hugging garment described in Embodiment I above, the existing windbreaker also comprises a front piece 210, a back piece 220 and a sleeve piece 230 connected with each other, the side edges of the front piece 210 and the side edges of the back piece 220 are sewn together to form the body part of the windbreaker, and the first edge and the second edge of the sleeve piece 230 are sewn together to form the sleeve part of the windbreaker. In order to make the windbreaker more body-hugging and beautiful when worn, the fabric at the front gusset 240 between the front piece 210 and the sleeve piece 230 is cut in a shrinkage manner during cutting, and the fabric at the back gusset 250 between the back piece 220 and the sleeve piece 230 is cut in a shrinkage manner, so as to reduce the space allowance of the fabric at the front gusset 240 and the back gusset 250, thereby the shoulder part of the windbreaker can be more visually fitted to the human body after sewing is completed at the front gusset 240 and the back gusset 250, and the beautiful effect is achieved.

[0075] However, due to the small space allowance of the shoulder part, when the human body performs a large range of activities, especially performs arm lifting forward or laterally, the windbreaker will pull the limbs and generate resistance to the human body activities, which affects the standard of the action, and the hem of the garment will be displaced upward by a large range under the pulling, which affects the beauty and comfort. In addition, due to the downward inclined extension trend of the sleeve center line 260, the part of the sleeve center line 260 close to the sleeve opening is lower than the back collar 270 in the vertical direction, which will generate obvious downward compression feeling at the deltoid muscle and the brachial muscle group during exercise, affecting the arm lifting action.

[0076] Based on the above description of the design structure of the existing windbreaker, the windbreaker made by the dynamic three-dimensional cutting method in the present application will be described in detail below.

[0077] As shown in Figure 4a and Figure 5a , the windbreaker in the present application comprises a front piece 21, a back piece 22 and a sleeve piece 23 connected with each other, as shown in Figure 5a , a first filling part 24 is formed at the front gusset between the front piece 21 and the sleeve piece 23, the first filling part 24 can provide more sufficient movement space for the part where the front gusset is located, and a second filling part 25 is formed at the back gusset between the back piece 22 and the sleeve piece 23, the second filling part 25 can provide more sufficient movement space for the part where the back gusset is located. Among them, the first filling part 24 can be formed on the sleeve piece 23 and / or the front piece 21, and the second filling part 25 can be formed on the sleeve piece 23 and / or the back piece 22.

[0078] Compared with the vertical distance from the front collar low of the existing windbreaker to the back collar middle 270, the front collar low 241 of the front collar ring in the windbreaker of the present application is closer to the back collar middle 26 in the vertical direction, so as to reduce the vertical distance from the front collar low 241 to the back collar middle 26. The back collar low 251 of the back collar ring is closer to the back collar middle 26 in the vertical direction, so as to reduce the vertical distance from the back collar low 251 to the back collar middle 26.

[0079] The sewn windbreaker, with the front collar ring and the back collar ring jointly surrounding the armhole, can increase the overall movement space of the garment shoulder and underarm part through the movement space provided by the first filling part 24 and the second filling part 25. Meanwhile, the front collar low 241 and the back collar low 251 of the windbreaker are connected, and the positions of the front collar low 241 and the back collar low 251 are raised towards the direction of the back collar middle 26, so as to achieve the purpose of improving the body-fitting effect of the garment shoulder and underarm part.

[0080] Preferably, compared with the existing windbreaker, the vertical distance from the front collar low 241 and the back collar low 251 of the windbreaker of the present application to the back collar middle 26 is reduced by 1-1.5 cm, so that the windbreaker can provide sufficient movement space and also have good body-fitting and aesthetic effects.

[0081] Further, as shown in Figure 5a The sleeve piece 23 includes a main sleeve piece and a small sleeve piece 232. The main sleeve piece includes a front sleeve piece 231 and a back sleeve piece 233. The second edge of the front sleeve piece 231 is connected with the first edge of the back sleeve piece 233 to jointly constitute the main sleeve piece.

[0082] The first end of the main sleeve piece is connected with the front panel 21 and the back panel 22. The first end of the small sleeve piece 232 is connected at the front collar ring of the front panel 21 and is connected with the main sleeve piece. The first edge of the small sleeve piece 232 is connected with the first edge of the main sleeve piece, and the second edge of the small sleeve piece 232 is connected with the second edge of the main sleeve piece, so as to jointly surround the sleeve. The second end of the small sleeve piece 232 jointly surrounds the sleeve opening with the second end of the main sleeve piece. The design of the small sleeve piece 232 can change the overall mechanical properties of the garment sleeve part, further improving the flexibility and freedom of the arm lifting action.

[0083] The second edge of the front sleeve piece 231 and the first edge of the back sleeve piece 233 form a volume space 27 at a position close to the shoulder of the main sleeve piece. The front sleeve piece 231 and the back sleeve piece 233 are sewn together, and the volume space 27 can further improve the body-fitting effect of the garment shoulder and underarm part.

[0084] Further, as shown in Figure 5aAs shown, unlike the existing windbreaker, in the vertical direction, the sleeve center line 28 of the sleeve piece 23 of the windbreaker in the present application has an overall upward trend, and the position of the sleeve center line 28 close to the sleeve opening part is higher than the position of the back collar 26, which is located at the upper part of the back collar 26. With this design, the deltoid and brachial muscle group will hardly feel the downward compression when the arm is moving, greatly improving the flexibility and freedom of arm lifting movement.

[0085] Further, the windbreaker in the present application also includes a patch 29, which is a long strip-shaped sheet structure, attached and fixed at the joint of the front piece 21 and the back piece 22, and the joint part of the front collar 241 and the back collar 251, and extends along the joint part of the sleeve piece 23 towards the sleeve opening direction. The arc-shaped curved patch 29 can further improve the movement space of the garment.

[0086] With the above design, the windbreaker in the present application can provide a larger movement space, and is more fit and body-hugging, as shown in Figure 4a and Figure 4b Under the premise of ensuring that the lower hem of the windbreaker does not move upward with the movement of the arm, the windbreaker in the present application has a larger arm lifting space, better comfort and better appearance.

[0087] Embodiment three

[0088] Figure 6a and Figure 7a Embodiment three of the 5D dynamic three-dimensional cutting garment in the present application is shown, which is a down jacket, Figure 6b and Figure 7b The structure of the existing down jacket is shown in

[0089] Referring to Figure 7b Similar to the structure of the existing windbreaker described in Embodiment two above, the existing down jacket includes a front piece 310, a back piece 320 and a sleeve piece 330 connected to each other. In order to be more fit and beautiful, the fabric at the front collar 340 and the back collar 350 is cut in cutting amount during cutting, so as to be more visually fit the human body, and the sleeve center line 360 of the sleeve piece 330 close to the sleeve opening part is lower than the back collar 370 in the vertical direction. Similarly, this design structure will generate resistance to human activity, the lower hem will move upward, and the arm lifting action will be affected.

[0090] As shown in Figure 6a and Figure 7aAs shown, similar to the windbreaker structure in the application described in the above embodiment two, the down jacket in the application includes front piece 31, back piece 32 and sleeve piece 33 connected with each other, first filling part 34 is formed at the front pinch ring between front piece 31 and sleeve piece 33, second filling part 35 is formed at the back pinch ring between back piece 32 and sleeve piece 33, first filling part 34 can be formed on sleeve piece 33 and / or front piece 31, second filling part 35 can be formed on sleeve piece 33 and / or back piece 32, so as to provide sufficient amount of movement space. Front pinch low 341 and back pinch low 351 of the down jacket are closer to back collar middle 36 in the vertical direction, so as to reduce the vertical distance from front pinch low 341 and back pinch low 351 to back collar middle 36, and improve the body-fitting effect of the shoulder and underarm parts of the garment.

[0091] Preferably, compared with the existing down jacket, the vertical distance from front pinch low 341 and back pinch low 351 of the down jacket in the application to back collar middle 36 is reduced by 1-1.5 cm, so as to have good body-fitting and aesthetic effect while providing sufficient amount of movement space.

[0092] Further, as shown, Figure 7a sleeve piece 33 includes main sleeve piece and small sleeve piece 332, main sleeve piece includes front sleeve piece 331 and back sleeve piece 333, front sleeve piece 331, back sleeve piece 333 and small sleeve piece 332 form the sleeve in the same way as the sleeve structure of the windbreaker in the above embodiment two. Similarly, second edge of front sleeve piece 331 and first edge of back sleeve piece 333 form amount space 37 at the position close to the shoulder of the main sleeve piece, which can further improve the body-fitting effect of the shoulder and underarm parts of the down jacket.

[0093] Further, in the vertical direction, the height of sleeve center line 38 of the sleeve piece 33 of the down jacket in the application close to the position of the sleeve opening is higher than the height of the position of the back collar middle 36 of the garment, so as to reduce the compression feeling of the deltoid and brachial muscle group.

[0094] Further, the down jacket in the application further includes patch 39, which is attached and fixed at the joint of front piece 31 and back piece 32, and at the joint of front pinch low 341 and back pinch low 351, and extends along the joint of sleeve piece 33 towards the sleeve opening direction.

[0095] As shown in Figure 6a and Figure 6b under the premise of ensuring that the lower hem of the down jacket does not move upward with the movement of the arm, the down jacket in the application has larger arm-lifting space, better comfort and better aesthetics.

[0096] The application also discloses a manufacturing method of 5D dynamic three-dimensional cutting garment, in particular, the manufacturing method of the windbreaker in the above embodiment two and the down jacket in the above embodiment three, which specifically includes:

[0097] cutting out the front piece, the back piece and the sleeve piece from the fabric;

[0098] cutting the front dart between the front piece and the sleeve piece, cutting out a first filling part at the front dart, and making the front dart lower in the vertical direction close to the back dart lower, to reduce the vertical distance between the front dart lower and the back dart lower;

[0099] cutting the back dart between the back piece and the sleeve piece, cutting out a second filling part at the back dart, and making the back dart lower in the vertical direction close to the back dart lower, to reduce the vertical distance between the back dart lower and the back dart lower;

[0100] cutting the sleeve piece, including cutting the front sleeve piece, the back sleeve piece and the small sleeve piece, the sleeve piece being spliced by the front sleeve piece, the back sleeve piece and the small sleeve piece, and in the vertical direction, the height of the sleeve center line of the sleeve piece close to the sleeve opening part is higher than the height of the back collar; cutting the front sleeve piece and the back sleeve piece, and cutting out a gathering space at the position close to the main sleeve piece shoulder of the second edge of the front sleeve piece and the first edge of the back sleeve piece;

[0101] sewing the cut front piece, the back piece and the sleeve piece, the front dart and the back dart together forming the armhole, to increase the movement space of the garment shoulder and the underarm part through the first filling part and the second filling part; sewing the front dart lower and the back dart lower together, to improve the body-fitting effect of the garment shoulder and the underarm part; connecting the second edge of the front sleeve piece and the first edge of the back sleeve piece to jointly form the main sleeve piece, to improve the body-fitting effect of the garment through the gathering space; connecting the first end of the main sleeve piece with the front piece and the back piece, connecting the first end of the small sleeve piece at the front dart of the front piece and connecting with the main sleeve piece; connecting the first edge of the small sleeve piece with the first edge of the main sleeve piece, connecting the second edge of the small sleeve piece with the second edge of the main sleeve piece, to jointly form the sleeve tube; and connecting the second end of the small sleeve piece with the second end of the main sleeve piece to jointly form the sleeve opening;

[0102] cutting out a long strip-shaped patch, and attaching and fixing the patch at the joint of the front piece and the back piece and the joint of the front dart lower and the back dart lower, and making the patch extend along the joint of the sleeve piece towards the sleeve opening direction.

[0103] Embodiment Four

[0104] Figure 8a and Figure 9This illustration shows a fourth embodiment of the 5D dynamic three-dimensional tailored garment of the present invention, specifically a short-sleeved garment. It includes a front piece 41, a back piece 42, and a sleeve piece 43 connected to each other. A first filling portion 44 is formed at the front clip between the front piece 41 and the sleeve piece 43, and a second filling portion 45 is formed at the back clip between the back piece 42 and the sleeve piece 43. The first filling portion 44 can be formed on the sleeve piece 43 and / or the front piece 41, and the second filling portion 45 can be formed on the sleeve piece 43 and / or the back piece 42 to provide sufficient room for movement. The front clip 441 and the back clip 451 of the short sleeve are closer to the back neckline 46 in the vertical direction to reduce the vertical distance from the front clip 441 and the back clip 451 to the back neckline 46, thereby improving the slimming effect of the shoulder and underarm areas of the garment.

[0105] Preferably, compared with existing short sleeves, the vertical distance from the front clip 441 and the back clip 451 to the back neck 46 of the short sleeve in this invention is reduced by 1-1.5cm, so as to provide sufficient room for movement while having a good slim and beautiful effect.

[0106] Furthermore, compared to existing short-sleeved sleeves, the sleeve center line 48 of the short-sleeved sleeve piece 43 in this invention is positioned vertically closer to the back neckline 46 near the cuff, thereby reducing the vertical distance between the sleeve center line 48 near the cuff and the back neckline 46. This design structure can also reduce the pressure on the deltoid and upper arm muscles to some extent. Specifically, in existing short-sleeved sleeves, the sleeve center line 48 near the cuff is typically located 8-10 cm below the back neckline 46, while in this invention, the sleeve center line 48 near the cuff is located 4-6 cm below the back neckline 46.

[0107] Furthermore, the short sleeve in this invention also includes a patch 49, which is attached and fixed to the seam between the front piece 41 and the back piece 42, and to the clamping part where the front clamping 441 and the back clamping 451 are connected, and extends along the seam of the sleeve piece 43 toward the cuff.

[0108] like Figure 8a and Figure 8b As shown, while ensuring that the hem of the short sleeve does not shift upward with the movement of the arm, the short sleeve in this invention has a larger arm raising space, resulting in better comfort and aesthetics.

[0109] Example 5

[0110] Figure 10a and Figure 11An embodiment of the 5D dynamic three-dimensional tailored garment in the present application is shown, specifically a sweater, which comprises a front piece 51, a back piece 52 and a sleeve piece 53 connected with each other, a first filling part 54 is formed at a front clamping ring between the front piece 51 and the sleeve piece 53, a second filling part 55 is formed at a back clamping ring between the back piece 52 and the sleeve piece 53, the first filling part 54 can be formed on the sleeve piece 53 and / or the front piece 51, and the second filling part 55 can be formed on the sleeve piece 53 and / or the back piece 52, so as to provide sufficient amount of movement space. The front clamping low 541 and the back clamping low 551 of the sweater are closer to the back collar middle 56 in the vertical direction, so as to reduce the vertical distance from the front clamping low 541 and the back clamping low 551 to the back collar middle 56, and improve the body shaping effect of the shoulder and underarm parts of the garment.

[0111] Preferably, compared with the existing sweater, the vertical distance from the front clamping low 541 and the back clamping low 551 to the back collar middle 56 of the sweater in the present application is reduced by 1-1.5 cm, so as to have good body shaping and aesthetic effect while providing sufficient amount of movement space.

[0112] Further, compared with the existing sweater, the part of the sleeve center line 58 of the sleeve piece 53 of the sweater in the present application close to the sleeve opening is closer to the back collar middle 56 in the vertical direction, so as to reduce the vertical distance from the part of the sleeve center line 58 close to the sleeve opening to the back collar middle 56. This design structure can also reduce the compression feeling of the deltoid muscle and the brachial muscle group to a certain extent. Specifically, the part of the sleeve center line 58 of the existing sweater close to the sleeve opening is usually located 20-23 cm below the back collar middle 56, and the part of the sleeve center line 58 of the sweater in the present application close to the sleeve opening is located 18-20 cm below the back collar middle 56.

[0113] Further, the sweater in the present application further comprises a patch 59, which is attached to and fixed at the joint of the front piece 51 and the back piece 52, and the joint of the front clamping low 541 and the back clamping low 551, and is arranged to extend along the joint of the sleeve piece 53 towards the sleeve opening.

[0114] As shown in Figs. Figure 10a and Figure 10b Under the premise of ensuring that the lower edge of the sweater does not move upward with the movement of the arm, the sweater in the present application has greater arm lifting space, better comfort and better aesthetics.

[0115] The present application also discloses a manufacturing method of the 5D dynamic three-dimensional tailored garment, specifically the manufacturing method of the short sleeve in the above-mentioned embodiment four and the sweater in the above-mentioned embodiment five, which specifically comprises the following steps:

[0116] Cutting out the front piece, the back piece and the sleeve piece of the garment on the fabric;

[0117] When the sleeve piece is cut, the sleeve center line close to the sleeve opening is close to the back collar in the vertical direction to reduce the vertical distance from the sleeve center line close to the sleeve opening to the back collar;

[0118] When the front gusset between the front piece and the sleeve piece is cut, a first filling part is cut at the front gusset, and the front gusset is close to the back collar in the vertical direction to reduce the vertical distance from the front gusset to the back collar;

[0119] When the back gusset between the back piece and the sleeve piece is cut, a second filling part is cut at the back gusset, and the back gusset is close to the back collar in the vertical direction to reduce the vertical distance from the back gusset to the back collar;

[0120] The cut front piece, back piece and sleeve piece are sewn, the front gusset and the back gusset together form the armhole, the first filling part and the second filling part increase the movement space of the garment shoulder and the underarm part, the front gusset and the back gusset are sewn together to improve the body-fitting effect of the garment shoulder and the underarm part, the first end of the sleeve piece is connected with the front piece and the back piece, and the first edge of the sleeve piece is connected with the second edge of the sleeve piece to form the sleeve;

[0121] The long strip-shaped patch is cut, the patch is attached and fixed at the joint of the front piece and the back piece and the joint of the front gusset and the back gusset, and the patch extends along the joint of the sleeve piece towards the sleeve opening.

[0122] In order to verify that the 5D dynamic three-dimensional cutting garment and the manufacturing method thereof have good wearing effect, two existing tight clothes are selected for comparison test.

[0123] Figure 12a The wearing schematic diagram of the test garment A worn by the athlete before exercise is shown in the front view, the side view and the back view; Figure 12b The morphological change diagram of the test garment A after the athlete performs large amplitude exercise is shown in the front view, the side view and the back view. It can be obviously seen that the front chest and the underarm part of the test garment A have obvious wrinkles, and the lower hem moves obviously upward.

[0124] Figure 13a The wearing schematic diagram of the test garment B worn by the athlete before exercise is shown in the front view, the side view and the back view; Figure 13b The morphological change diagram of the test garment B after the athlete performs large amplitude exercise is shown in the front view, the side view and the back view. It can be obviously seen that the front chest and the underarm part of the test garment A have obvious wrinkles, and the lower hem moves obviously upward.

[0125] Figure 14a The wearing schematic diagram of the 5D dynamic three-dimensional cutting garment of the application worn by the athlete before exercise is shown in the front view, the side view and the back view; Figure 14bThe morphological change diagrams of the front, side and back of the 5D dynamic three-dimensional tailored garment after large-scale movement of the athlete can be obviously seen. The wrinkle of the front chest and underarm part of the tight-fitting garment is not obvious before and after movement, and the lower hem is not obviously moved up.

[0126] The 5D dynamic three-dimensional tailored garment and the manufacturing method thereof can make the garment structure be dynamically tailored, so that the garment is fit and the freedom of human body movement is ensured, the lifting amount of the arm is increased, the garment can be stretched with the human body movement, the movement is not hindered, and the garment is comfortable and beautiful.

[0127] The above further describes the present application with the help of specific embodiments, but it should be understood that the specific description herein should not be understood as the limitation of the essence and scope of the present application, and various modifications of the above embodiments made by the ordinary skilled in the art after reading the specification all belong to the scope of the present application. In the above specific embodiments, each specific technical feature described can be combined in any appropriate manner without contradiction. In order to avoid unnecessary repetition, various possible combinations are not described again in the embodiments of the present application.

[0128] If the present application involves directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between the components in a certain specific posture (as shown in the drawings), if the specific posture changes, the directional indications also change accordingly.

Claims

1. A 5D dynamic stereoscopic tailored garment, characterized in that, The garment comprises a front piece, a back piece and a sleeve piece connected with each other, a first filling part is formed at a front collar of the front piece, a second filling part is formed at a back collar of the back piece, the front collar and the back collar jointly form an armhole, the sleeve piece comprises a main sleeve piece and a small sleeve piece, a first end of the main sleeve piece is connected with the front piece and the back piece, a first end of the small sleeve piece is connected at the front collar of the front piece and is connected with the main sleeve piece, so as to increase the movement space of the shoulder and underarm parts of the garment through the first filling part and the second filling part, the front collar is connected with the back collar, the front collar of the front piece is close to the back collar in the vertical direction, so as to reduce the vertical distance between the front collar and the back collar, the back collar of the back piece is close to the back collar in the vertical direction, so as to reduce the vertical distance between the back collar and the back collar, the vertical distance between the front collar and the back collar to the back collar is reduced by 1-1.5 cm, so as to improve the body-fitting effect of the shoulder and underarm parts of the garment.

2. The 5D dynamic cut-and-sew garment of claim 1, wherein, In the vertical direction, the height of the sleeve center line of the sleeve piece close to the sleeve opening part is higher than the height of the back collar of the garment.

3. The 5D dynamic cut-and-sew garment of claim 1, wherein, The part of the sleeve center line of the sleeve piece close to the sleeve opening is close to the back collar in the vertical direction, so as to reduce the vertical distance between the part of the sleeve center line close to the sleeve opening and the back collar.

4. The 5D dynamic cut and sewn garment of any one of claims 1 to 3, wherein, The first edge of the small sleeve piece is connected with the first edge of the main sleeve piece, and the second edge of the small sleeve piece is connected with the second edge of the main sleeve piece, so as to jointly form a sleeve tube; the second end of the small sleeve piece and the second end of the main sleeve piece jointly form a sleeve opening.

5. The 5D dynamic cut and sewn garment of claim 4, wherein, The main sleeve piece comprises a front sleeve piece and a back sleeve piece, the second edge of the front sleeve piece is connected with the first edge of the back sleeve piece, so as to jointly form the main sleeve piece, and the second edge of the front sleeve piece and the first edge of the back sleeve piece form a volume space at a position close to the shoulder of the main sleeve piece, so as to improve the body-fitting effect of the shoulder and underarm parts of the garment.

6. The 5D dynamic cut and sewn garment of claim 5, wherein, The patch is attached and fixed at the joint of the front piece and the back piece and the joint of the front collar and the back collar, and extends along the joint of the sleeve piece towards the sleeve opening.

7. The 5D dynamic cut and sewn garment of claim 1, wherein, The first filling part is formed on the sleeve piece and / or the front piece, and the second filling part is formed on the sleeve piece and / or the back piece.

8. A method for making a 5D dynamic stereoscopic tailoring garment, characterized in that, The garment comprises: cutting the front piece, the back piece and the sleeve piece of the garment on the fabric; when cutting the sleeve piece, the main sleeve piece and the small sleeve piece are cut, the sleeve piece is spliced by the main sleeve piece and the small sleeve piece, and in the vertical direction, the height of the sleeve center line of the sleeve piece close to the sleeve opening part is higher than the height of the back collar of the garment; when cutting the front collar between the front piece and the sleeve piece, the first filling part is cut at the front collar, and the front collar of the front piece is close to the back collar in the vertical direction, so as to reduce the vertical distance between the front collar and the back collar; when cutting the back collar between the back piece and the sleeve piece, the second filling part is cut at the back collar, and the back collar of the back piece is close to the back collar in the vertical direction, so as to reduce the vertical distance between the back collar and the back collar; Sewing the cut-out front piece, back piece and sleeve piece, the front collar and the back collar together to form a sleeve hole, to increase the movement space of the shoulder and underarm part of the garment through the first filling part and the second filling part, and to sew the front collar and the back collar together to improve the body-fitting effect of the shoulder and underarm part of the garment; the second edge of the front sleeve piece is connected with the first edge of the back sleeve piece to form a main sleeve piece, and the body-fitting effect of the garment is improved through the volume-reducing space; the first end of the main sleeve piece is connected with the front piece and the back piece, the first end of the small sleeve piece is connected with the front collar of the front piece and connected with the main sleeve piece; the first edge of the small sleeve piece is connected with the first edge of the main sleeve piece, and the second edge of the small sleeve piece is connected with the second edge of the main sleeve piece to form a sleeve tube; and the second end of the small sleeve piece and the second end of the main sleeve piece form a sleeve opening together. Cutting a long strip-shaped patch, and fixing the patch at the joint of the front piece and the back piece and the joint of the front collar and the back collar, and extending the patch along the joint of the sleeve piece towards the sleeve opening.

9. A method for making a 5D dynamic stereoscopic tailoring garment, characterized in that, The method comprises the following steps: cutting a front piece, a back piece and a sleeve piece on a fabric; when cutting the front collar between the front piece and the sleeve piece, a first filling part is cut at the front collar, and the front collar is close to the back collar in the vertical direction to reduce the vertical distance between the front collar and the back collar; when cutting the back collar between the back piece and the sleeve piece, a second filling part is cut at the back collar, and the back collar is close to the back collar in the vertical direction to reduce the vertical distance between the back collar and the back collar; when cutting the sleeve piece, a front sleeve piece, a back sleeve piece and a small sleeve piece are cut, and the sleeve piece is formed by the front sleeve piece, the back sleeve piece and the small sleeve piece; in the vertical direction, the height of the sleeve center line close to the sleeve opening part is higher than the height of the back collar; Sewing the cut-out front piece, back piece and sleeve piece, the front collar and the back collar together to form a sleeve hole, to increase the movement space of the shoulder and underarm part of the garment through the first filling part and the second filling part; and sewing the front collar and the back collar together to improve the body-fitting effect of the shoulder and underarm part of the garment; the second edge of the front sleeve piece is connected with the first edge of the back sleeve piece to form a main sleeve piece, and the body-fitting effect of the garment is improved through the volume-reducing space; the first end of the main sleeve piece is connected with the front piece and the back piece, the first end of the small sleeve piece is connected with the front collar of the front piece and connected with the main sleeve piece; the first edge of the small sleeve piece is connected with the first edge of the main sleeve piece, and the second edge of the small sleeve piece is connected with the second edge of the main sleeve piece to form a sleeve tube; and the second end of the small sleeve piece and the second end of the main sleeve piece form a sleeve opening together. Cutting a long strip-shaped patch, and fixing the patch at the joint of the front piece and the back piece and the joint of the front collar and the back collar, and extending the patch along the joint of the sleeve piece towards the sleeve opening.

10. A method for making a 5D dynamic stereoscopic tailoring garment, characterized in that, The method comprises the following steps: cutting a front piece, a back piece and a sleeve piece on a fabric; when cutting the sleeve piece, the part of the sleeve center line close to the sleeve opening is close to the back collar in the vertical direction to reduce the vertical distance between the part of the sleeve center line close to the sleeve opening and the back collar; When the front gusset between the front panel and the sleeve panel is cut, a first filling part is cut at the front gusset, and the front gusset is lowered to the back yoke in the vertical direction to reduce the vertical distance of the front gusset to the back yoke; When the back gusset between the back panel and the sleeve panel is cut, a second filling part is cut at the back gusset, and the back gusset is lowered to the back yoke in the vertical direction to reduce the vertical distance of the back gusset to the back yoke; The cut front panel, back panel and sleeve panel are sewn, the front gusset and the back gusset together form the armhole, so as to increase the movement space of the garment shoulder and underarm part through the first filling part and the second filling part; the front gusset and the back gusset are sewn together to improve the body-fitting effect of the garment shoulder and underarm part; the first end of the sleeve panel is connected with the front panel and the back panel, and the first edge of the sleeve panel is connected with the second edge of the sleeve panel to form the sleeve; The long strip-shaped patch is cut, the patch is attached and fixed at the joint of the front panel and the back panel and the joint of the front gusset and the back gusset, and the patch extends along the joint of the sleeve panel towards the cuff direction.

Citation Information

Patent Citations

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