A kind of suit shoulder pad and suit specially for back shoulder slimming type

CN224597611UActive Publication Date: 2026-08-07NINGBO PEILUOCHENG GROUP CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO PEILUOCHENG GROUP CO LTD
Filing Date
2025-09-22
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0005]本实用新型解决的技术问题是现有的西服版型难以适配“后肩瘦削型”的肩型人群,影响穿着美观和舒适度

Benefits of technology

(1)本实用新型通过将填充层的最厚处设于西服垫肩用于配合后肩的一侧,能够针对性地补偿后肩瘦削型人群肩胛骨至肩部后侧的组织薄弱缺陷,增强该区域的立体支撑力。填充层厚度从最厚处向边缘逐渐减薄的设计,使得支撑力从后肩向外周平缓过渡,避免传统垫肩因厚度突变导致的肩部轮廓生硬或局部压迫感,从而确保西服后身面料自然贴合人体曲线;支撑层在前肩的一侧居中开设开口的设计,使得前肩区域在保留支撑力的同时形成柔性缓冲空间,该开口的居中布置能够精准对应人体前肩关节活动区域,通过局部结构弱化避免传统整体式支撑层对前肩活动造成的刚性束缚;通过上述结构组合,既强化了后肩区域的支撑强度以维持肩线形态,又通过渐变式厚度分布实现了肩部造型的流畅过渡,最终解决后肩瘦削型人群穿着常规西服时因支撑不足引发的塌肩、褶皱问题;

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Abstract

The utility model provides a kind of special suit shoulder pad and suit of rear shoulder thinning type, suit shoulder pad includes: the bottom layer, filling layer and surface layer are sequentially stacked in thickness direction;Filling layer is wrapped in the containing space between bottom layer and surface layer;In thickness direction, from the thickest place of filling layer towards the edge direction of filling layer, the thickness of filling layer gradually decreases, and the thickest place is located in the side of suit shoulder pad for matching rear shoulder;Supporting layer is centrally provided with opening corresponding to the side of front shoulder.The technical problem solved by the utility model is that the existing suit version is difficult to adapt to the shoulder type population of "rear shoulder thinning type", which affects the appearance and comfort when wearing.
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Description

Technical Field

[0001] This utility model relates to the field of suit manufacturing technology, specifically to a suit shoulder pad and suit specifically designed for suits with slender back shoulders. Background Technology

[0002] Shoulder pads are a core component for shaping the shoulders and ensuring a crisp, tailored fit in suits, and are widely used in formal wear and business suits. With evolving consumer demands, people are becoming increasingly particular about the fit of suits. Currently, suits are typically categorized by chest and waist size into Y-fit (slim), A-fit (standard), and B-fit (slightly overweight) to adjust for different body types and meet the needs of various body types.

[0003] Among Asian men, the "thin-shouldered" shoulder type is relatively common. This type is characterized by thin muscles and fat in the posterior shoulder area (from the scapula to the back of the shoulder), resulting in insufficient support at the back of the shoulder line, leading to a flat or concave appearance. When wearing regular suits, this type of man is prone to problems such as the fabric wrinkling and not fitting properly at the back, and the shoulder shape becoming distorted (e.g., slumped shoulders, crooked shoulder line) due to insufficient shoulder support.

[0004] The relevant technology has at least one of the following problems: the existing suit patterns are difficult to fit people with "slender back shoulders", which affects the appearance and comfort of wearing the suit. Utility Model Content

[0005] The technical problem solved by this invention is that existing suit patterns are difficult to fit people with "slender back shoulders", which affects the appearance and comfort of wearing the suit.

[0006] To solve the above problems, this utility model provides a suit shoulder pad specifically for slender back shoulders. The suit shoulder pad includes: a bottom layer, a filling layer and a top layer stacked sequentially along the thickness direction; the filling layer is wrapped in the receiving space between the bottom layer and the top layer; along the thickness direction, from the thickest point of the filling layer toward the edge of the filling layer, the thickness of the filling layer gradually decreases, and the thickest point is located on the side of the suit shoulder pad used to cooperate with the back shoulder; the support layer has an opening in the center on the side corresponding to the front shoulder.

[0007] Compared with the existing technology, the technical effect achieved by adopting this technical solution is as follows: By setting the thickest part of the filling layer on the side of the suit shoulder pad to cooperate with the back shoulder, this utility model can specifically compensate for the tissue weakness from the scapula to the back of the shoulder in people with thin shoulders, and enhance the three-dimensional support of this area. The design of the padding layer gradually thinning from its thickest point to the edges allows for a smooth transition of support from the back shoulder to the outer perimeter, avoiding the stiff shoulder contour or localized pressure caused by abrupt changes in thickness in traditional shoulder pads. This ensures that the back fabric of the suit naturally conforms to the body's curves. The design of the support layer with a centered opening on one side of the front shoulder creates a flexible buffer space in the front shoulder area while maintaining support. The centered placement of this opening precisely corresponds to the movement area of ​​the front shoulder joint, and the weakening of the local structure avoids the rigid restriction on front shoulder movement caused by traditional one-piece support layers. Through the combination of the above structures, the support strength of the back shoulder area is strengthened to maintain the shoulder line shape, and the gradual thickness distribution achieves a smooth transition in shoulder shape. Ultimately, this solves the problem of slumped shoulders and wrinkles caused by insufficient support when wearing regular suits by people with slender back shoulders.

[0008] In one embodiment of this utility model, the thickness at the thickest point is 1.1cm-1.3cm, and the thickness of the filling layer corresponding to the shoulder line is 0.6cm-0.8cm.

[0009] Compared to existing technologies, the technical effects achieved by this solution are as follows: setting the thickest part to 1.1cm-1.3cm provides sufficient support for the slender area of ​​the back shoulder, effectively filling the gap between the shoulder blade and clothing; while setting the thickness at the shoulder line to 0.6cm-0.8cm creates a natural transition, avoiding a stiff feeling caused by excessive thickness at the shoulder line and ensuring the continuity of support in the shoulder transition area. Through the design of decreasing thickness, the support of the back shoulder is strengthened while maintaining the smoothness of the shoulder line, so that the shoulder pads can both correct the sagging of the back shoulder and maintain the natural curvature of the shoulder.

[0010] In one embodiment of this utility model, the length of the opening is 2cm-3cm, and the closing part of the opening is provided with a closing corner.

[0011] Compared with existing technologies, the technical effects achieved by this solution are as follows: By limiting the opening length to 2cm-3cm, a specific size opening structure is formed in the center of the front shoulder of the support layer. This avoids weakening the support layer's support strength for the front shoulder due to an excessively long opening, while ensuring that the opening length is sufficient to accommodate the deformation requirements during shoulder movement. By setting a corner at the opening, the traditional straight closing is changed to a corner transition structure, which can disperse the stress concentration phenomenon at the opening edge, reduce the risk of tearing of the support layer material under repeated bending or stress, and at the same time, the corner design makes the stitching at the opening edge smoother, preventing exposed thread ends from affecting the stability of the internal structure of the shoulder pad.

[0012] In one embodiment of this utility model, the edge of the support layer is parallel to and narrower than the edge of the surface layer by 5.5cm-6.5cm.

[0013] In one embodiment of this utility model, the bottom layer, support layer, filling layer and top layer are fixed with wavy stitches along the shoulder line, and the stitch spacing of the wavy stitches is 2-3cm.

[0014] Compared with existing technologies, the technical effects achieved by this solution are as follows: By fixing each layer of the structure along the shoulder line using a wavy stitching method, the non-linear stitching path can disperse the stress generated by shoulder movement and avoid the problem of easy breakage of traditional straight stitches; the specific stitch spacing is set within the range of 2cm-3cm, which not only ensures the bonding strength between the layers of materials, but also avoids the local stiffness caused by overly dense stitches; the synergistic effect of the wavy stitching and spacing control allows the shoulder pad to maintain structural stability while adapting to the movement of the human shoulder, thus solving the problem of support failure caused by the easy separation of multi-layer structures and maintaining the natural transition of the shoulder shape.

[0015] In one embodiment of this utility model, the surface layer includes two pieces of worsted wool interlining sewn together along the shoulder line, and the two worsted wool interlinings are sewn together to make the surface layer arc-shaped.

[0016] Compared with existing technologies, the technical effects achieved by this solution are as follows: The structure of two pieces of worsted wool interlining sewn along the shoulder line utilizes the high stiffness and deformation resistance of the worsted wool interlining material itself to form a stable support base. The two-piece design, through the sewing process, creates a three-dimensional molding effect, giving the surface a rounded structure that conforms to the curve of the human shoulder. This enhances the support strength of the posterior shoulder area and achieves a natural fit with slender shoulder bones. The confinement of the sewing along the shoulder line ensures that the suture stitches are located in the key stress area of ​​the human shoulder, maintaining the three-dimensional shape of the surface through stitch tension. The rounded structure addresses the shoulder concavity characteristic of slender individuals by filling the shoulder gap with curved support.

[0017] In one embodiment of this utility model, the filling layer includes high-elastic spray-bonded cotton; the support layer includes horsehair lining; and the bottom layer includes wool cotton.

[0018] In one embodiment of this utility model, the outer edge of the shoulder pad of the suit has an inner arc transition shape.

[0019] Compared with existing technologies, the technical effect achieved by adopting this technical solution is that the outer edge of the suit shoulder pad has an inward arc transition shape, which facilitates the connection and cooperation with the sleeve cap of the main body of the suit.

[0020] On the other hand, this utility model also provides a suit, including a suit body and a suit shoulder pad as in any of the above examples, the suit body and the suit shoulder pad are fixedly connected, and the sleeve cap end of the suit body is mated with the outer edge of the suit shoulder pad.

[0021] Compared with existing technologies, the technical effects achieved by adopting this technical solution are as follows: it can achieve the technical effects corresponding to any of the above examples, which will not be elaborated here.

[0022] By adopting the technical solution of this utility model, the following technical effects can be achieved: (1) This utility model, by placing the thickest part of the filling layer on the side of the suit shoulder pad to cooperate with the back shoulder, can specifically compensate for the weak tissue defects from the scapula to the back of the shoulder in people with thin back shoulders, and enhance the three-dimensional support of this area. The design of the filling layer thickness gradually thinning from the thickest part to the edge makes the support transition smoothly from the back shoulder to the outer periphery, avoiding the stiff shoulder contour or local pressure caused by the sudden change in thickness of traditional shoulder pads, thus ensuring that the back fabric of the suit naturally conforms to the curve of the human body; the design of the support layer with an opening in the center on one side of the front shoulder makes the front shoulder area form a flexible buffer space while retaining the support. The central placement of this opening can accurately correspond to the movement area of ​​the front shoulder joint of the human body, and avoid the rigid restraint of the front shoulder movement caused by the traditional integral support layer through local structural weakening; through the above structural combination, the support strength of the back shoulder area is strengthened to maintain the shoulder line shape, and the gradual thickness distribution achieves a smooth transition of the shoulder shape, ultimately solving the problem of drooping shoulders and wrinkles caused by insufficient support when people with thin back shoulders wear regular suits; (2) By limiting the opening length to 2cm-3cm, a specific size opening structure is formed in the center of the front shoulder of the support layer. This avoids weakening the support strength of the support layer for the front shoulder due to excessive opening length, and ensures that the opening length is sufficient to meet the deformation requirements during shoulder movement. By setting a corner at the opening, the traditional straight closing is changed to a corner transition structure, which can disperse the stress concentration phenomenon at the opening edge, reduce the risk of tearing of the support layer material when repeatedly bent or subjected to force, and at the same time, the corner design makes the stitching at the opening edge smoother, avoiding the exposed thread ends from affecting the stability of the internal structure of the shoulder pad. (3) The layers of the structure are fixed together along the shoulder line by means of wavy stitching. This non-linear stitching path can disperse the stress generated by shoulder movement and avoid the problem of easy breakage of traditional straight stitches. The specific stitch spacing is within the range of 2cm-3cm, which not only ensures the bonding strength between the layers of materials, but also avoids the local stiffness caused by excessively dense stitches. The synergistic effect of wavy stitching and spacing control allows the shoulder pad to maintain structural stability while adapting to the movement of the human shoulder and producing appropriate deformation. This solves the problem of support failure caused by easy separation of multi-layer structures and maintains the natural transition of shoulder shape. Attached Figure Description

[0023] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings to be used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Figure 1 A schematic diagram of the structure of a suit shoulder pad specifically designed for slender back shoulders, provided for an embodiment of this utility model; Figure 2 for Figure 1 The diagram shows the structure of the bottom layer. Figure 3 for Figure 1 The diagram shows the structure of the support layer. Figure 4 for Figure 1 A schematic diagram of the filling layer is shown in the figure; Figure 5 for Figure 1 The diagram shows the structure of the surface layer. Figure 6 for Figure 1 The diagram shows a structural schematic of the shoulder pads on a Western-style suit from another perspective.

[0024] Explanation of reference numerals in the attached figures: 100. Shoulder pads for suits; 10. Base layer; 20. Support layer; 21. Opening; 22. Corner seam; 30. Filling layer; 40. Top layer; 50. Shoulder line; 60. Wavy seam. Detailed Implementation

[0025] The embodiments of this utility model will now be described in detail. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.

[0026] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0027] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0028] See Figure 1 This is a schematic diagram of a special shoulder pad and suit for a slender back shoulder provided by an embodiment of this utility model. For details, please refer to... Figures 2-6 The suit shoulder pad 100 includes: a bottom layer 10, a filling layer 30, and a top layer 40 stacked sequentially along the thickness direction; the filling layer 30 is enclosed in the receiving space between the bottom layer 10 and the top layer 40; along the thickness direction, from the thickest point of the filling layer 30 toward the edge of the filling layer 30, the thickness of the filling layer 30 gradually decreases, and the thickest point is located on the side of the suit shoulder pad 100 used to cooperate with the back shoulder; the support layer 20 has an opening 21 in the center on the side corresponding to the front shoulder.

[0029] The bottom layer 10 refers to the base layer that directly contacts the suit fabric. It can be made of wool or cotton, which provides a soft touch and moderate resilience, cushioning the direct pressure of the filling layer 30 on the garment fabric. The filling layer 30 is a functional layer providing three-dimensional support, which can be made of high-elasticity spray-bonded cotton. Its compression deformation recovery characteristics can adapt to the dynamic needs of human movement. The top layer 40 is the contact layer that fits the shoulder area, which can be made of worsted wool interlining. Its crisp texture helps maintain the stability of the shoulder contour. The thickest part of the filling layer 30 refers to the area of ​​maximum thickness, which can be achieved through molding. This area corresponds to the concave area of ​​the back shoulder to compensate for structural weaknesses. The gradually decreasing thickness refers to the wedge-shaped gradient of the filling layer 30's cross-section. This can be achieved through gradient cutting or layering processes, allowing the support to gradually decrease from back to front.

[0030] Furthermore, by placing the thickest part of the filling layer 30 on the shoulder pad 100 of the suit to match one side of the back shoulder, it is possible to specifically compensate for the weak tissue defects from the scapula to the back of the shoulder in people with thin back shoulders, and enhance the three-dimensional support of this area. The design of the padding layer 30, which gradually thins from its thickest point to the edge, allows the support to transition smoothly from the back shoulder to the outer perimeter. This avoids the stiff shoulder contour or localized pressure caused by abrupt changes in thickness in traditional shoulder pads, ensuring that the back fabric of the suit naturally conforms to the curves of the human body. The support layer 20 features a centrally located opening 21 on one side of the front shoulder, creating a flexible buffer space in the front shoulder area while maintaining support. The central placement of this opening 21 precisely corresponds to the movement area of ​​the front shoulder joint, and the localized structure weakens the rigid constraint on front shoulder movement caused by the traditional one-piece support layer 20. Through the combination of the above structures, the support strength of the back shoulder area is strengthened to maintain the shoulder line 50 shape, and the gradual thickness distribution achieves a smooth transition in shoulder shape. Ultimately, this solves the problem of slumped shoulders and wrinkles caused by insufficient support when wearing regular suits by people with slender back shoulders.

[0031] Preferably, the thickness of the thickest part is 1.1cm-1.3cm, and the thickness of the filling layer 30 at the shoulder line 50 is 0.6cm-0.8cm.

[0032] Furthermore, setting the thickest part to 1.1cm-1.3cm provides ample support for the slender back shoulder area, effectively filling the gap between the shoulder blade and clothing. Setting the thickness at the 50cm shoulder line to 0.6cm-0.8cm creates a natural transition, avoiding stiffness at the 50cm shoulder line due to excessive thickness while ensuring continuous support in the shoulder transition area. This progressively thinner design strengthens back shoulder support while maintaining the smoothness of the shoulder line, allowing the shoulder pads to both correct back shoulder sagging and maintain the natural curve of the shoulder.

[0033] Preferably, the length of the opening 21 is 2cm-3cm, and the closing part of the opening 21 is provided with a closing corner 22.

[0034] Furthermore, the length of the opening 21 refers to the longitudinal extension distance of the cut area at the center of the front shoulder of the support layer 20. This size range ensures that the opening 21 can adapt to the deformation requirements of the shoulder movement, and will not be too long, resulting in insufficient support strength on the front side of the support layer 20. The closing corner 22 refers to the rounded or beveled transition structure formed at the end of the opening 21, which avoids tearing of the support layer 20 material when subjected to repeated stress.

[0035] Preferably, the edge of the support layer 20 is parallel and narrower than the edge of the surface layer 40 by 5.5cm-6.5cm.

[0036] Preferably, the bottom layer 10, the support layer 20, the filling layer 30 and the top layer 40 are fixed along the shoulder line 50 by a wavy stitch 60, and the stitch spacing is 2-3cm.

[0037] Furthermore, the wavy stitch 60 refers to a continuous curved stitch path, which can be achieved using a serpentine or sinusoidal stitch pattern. This is achieved by altering the sewing machine's feed dog path to create a non-linear sewing path. This sewing method allows the thread to distribute stress evenly during shoulder movement. The stitch spacing refers to the vertical distance between adjacent rows of stitches, which can be adjusted using the sewing machine's stitch length adjuster, for example, setting the stitch length scale to 8-10 stitches per inch. This spacing range is configured to maintain the material's local deformation capacity while ensuring structural bond strength. Specifically, when the human shoulder performs forward or backward movements, the wavy stitch pattern can absorb tensile stress through its curved extension, avoiding the risk of breakage caused by concentrated stress at a single point in straight stitches. When the stitch spacing is controlled between 2cm and 3cm, the stitch density can prevent interlayer displacement after repeated bending of multiple layers of material, while also avoiding the restriction of elastic deformation of the filling layer 30 by excessively dense stitches. In the shoulder line 50 area, the alternating peaks and troughs of the wavy stitches 60 form stress buffer nodes, allowing the shoulder pad to maintain its natural curvature through the elastic deformation of the stitch nodes when bearing shoulder pressure.

[0038] Preferably, the outer layer 40 includes two pieces of worsted wool interlining sewn together along the shoulder line 50, and the two worsted wool interlinings are sewn together to make the outer layer 40 arc-shaped.

[0039] Furthermore, the worsted wool interlining refers to a woolen interlining fabric woven with high-density warp and weft yarns, specifically using double-strand combed wool yarn. Its high stiffness provides a rigid support base for the surface layer 40. The shoulder line 50 stitching refers to aligning the edges of the two interlining pieces and sewing them together along the stress axis of the human shoulder. This can be achieved using a double-overlock stitch, with the stitches forming a structural tension band to maintain the shape stability of the surface layer 40. The arc shape refers to the surface of the surface layer 40 presenting a curved shape that matches the curvature of the human shoulder bone. This can be achieved by adjusting the radius of curvature of the stitches, with the curved surface filling the gaps in the concave area of ​​the shoulder. Specifically, two pieces of worsted wool interlining are stitched together along the shoulder line 50 to form an integrated support structure. The tension of the stitches creates pre-forming stress in the surface material 40, maintaining a stable arc-shaped surface during wear. The high rigidity of the worsted wool interlining resists deformation caused by external forces, ensuring support strength. The arc-shaped surface forms a surface contact with the slender bone contour of the back shoulder, eliminating the gap between traditional flat shoulder pads and the concave shoulder area, thus improving the fit. The stitches are arranged along the shoulder line 50, concentrating structural stress in the main load-bearing areas of the shoulder and preventing collapse caused by dispersed support.

[0040] Preferably, the filling layer 30 includes high-elastic spray-bonded cotton; the support layer 20 includes horsehair lining; and the bottom layer 10 includes wool cotton.

[0041] Preferably, the outer edge of the shoulder pad 100 of the suit has an inner arc transition shape.

[0042] Furthermore, the outer edge of the 100mm shoulder pad of the suit has an inward curved transition, which facilitates the connection and coordination with the sleeve cap of the main body of the suit.

[0043] The implementation of this utility model is explained below in conjunction with a specific production process: First, a fan-shaped mold is made based on the average data of the slender shoulder type, and the dimensions of the flat and pointed openings and the thickness gradient parameters are determined. Furthermore, the fine wool interlining is cut into two pieces and spliced ​​together in a three-dimensional cutting process to form an arc-shaped surface layer; Further, layer the worsted wool interlining, high-elastic spray-bonded cotton, pre-opened horsehair interlining, and wool cotton in sequence, align the edges, and then make a wavy seam along the front and back shoulder lines 50. Furthermore, it is placed in the corresponding mold and hot-pressed at 120-150℃ for 10-30 seconds to make the layers adhere to form a three-dimensional concave surface; Further, trim the edges and complete the edge locking process to obtain the finished product.

[0044] The implementation process is fully compatible with existing suit production lines, requires no additional equipment modifications, and is suitable for large-scale mass production.

[0045] This invention achieves precise adaptation to a slender shoulder shape through synergistic optimization of structure and materials, filling the technological gap in adapting special shoulder shapes in mass production and significantly improving the wearing quality and production efficiency of suits.

[0046] On the other hand, this utility model also provides a suit, including a suit body and a shoulder pad 100 as in any of the above examples. The suit body and the shoulder pad 100 are fixedly connected, and the sleeve cap end of the suit body is mated to the outer edge of the shoulder pad 100. Correspondingly, in this embodiment, the technical effects corresponding to any of the above embodiments can be achieved, and will not be repeated here.

[0047] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the present invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

Claims

1. A type of shoulder pad specifically designed for suits with slender back shoulders, characterized in that, The suit shoulder pads include: The bottom layer, support layer, filler layer, and top layer are stacked sequentially along the thickness direction; The filling layer is enclosed within the accommodating space between the bottom layer and the top layer; Along the thickness direction, from the thickest point of the filling layer toward the edge of the filling layer, the thickness of the filling layer gradually decreases, and the thickest point is located on the side of the suit shoulder pad used to fit the back shoulder; The support layer has an opening centered on one side corresponding to the front shoulder.

2. The shoulder pad for a suit according to claim 1, characterized in that, The thickness of the thickest part is 1.1cm-1.3cm, and the thickness of the filling layer corresponding to the shoulder line is 0.6cm-0.8cm.

3. The shoulder pad for a suit according to claim 1, characterized in that, The opening is 2cm-3cm long, and the opening has a corner at the closing point.

4. The shoulder pad for a suit according to claim 1, characterized in that, The edge of the support layer is parallel and narrower than the edge of the surface layer by 5.5cm-6.5cm.

5. The shoulder pad for a suit according to claim 2, characterized in that, The bottom layer, the support layer, the filling layer, and the top layer are fixed with wavy stitches along the shoulder line, and the stitch spacing of the wavy stitches is 2cm-3cm.

6. The shoulder pad for a suit according to claim 2, characterized in that, The outer layer comprises two pieces of worsted wool interlining sewn together along the shoulder line, which, when sewn together, give the outer layer an arc shape.

7. The shoulder pad for a suit according to claim 1, characterized in that, The filling layer includes high-elastic spray-bonded cotton; The support layer includes a horsehair lining; The bottom layer consists of wool and cotton.

8. The shoulder pad for a suit according to claim 1, characterized in that, The outer edge of the shoulder pad of the suit has an inward arc transition shape, which is used to match the sleeve cap of the main body of the suit.

9. A suit, characterized in that, The suit includes a main body and a shoulder pad as described in any one of claims 1-8, wherein the main body of the suit is fixedly connected to the shoulder pad, and the sleeve cap of the main body of the suit is mated to the outer edge of the shoulder pad.