Jacket type leisure suit based on wax fabric
By introducing a skin-friendly layer and stress-dispersing structure into the waxed fabric, the problems of wax layer damage and insufficient comfort caused by high-temperature ironing are solved. This achieves a balance between the windproof and waterproof performance of waxed fabric suits and the crisp texture of suits, improving wearing comfort and service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-29
- Publication Date
- 2026-04-14
AI Technical Summary
Existing technologies for processing waxed fabrics suffer from problems such as high-temperature ironing damaging the wax layer, lack of low-temperature shaping methods, insufficient ergonomics and comfort, and vulnerability of key parts, making it difficult to achieve a balance between windproof and waterproof performance and the crisp texture of a suit.
Using oil-waxed fabric as the base layer, combined with a skin-friendly layer and stress-dispersing structure, the design of elastic re-stretch strips and double visible stitching avoids high-temperature ironing, improves comfort and structural stability, and enhances the durability of key parts.
It achieves a balance between the windproof and waterproof properties of waxed fabric and the crisp texture of a suit, improving wearing comfort and lifespan, and is suitable for casual and light activity scenarios.
Smart Images

Figure CN224112164U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of clothing technology, and in particular to a jacket-style casual suit based on waxed fabric. Background Technology
[0002] In the garment manufacturing industry, several mature solutions have been developed for fabrics with windproof, waterproof, and abrasion-resistant functions. Traditional processes mainly focus on two major material systems: 1) Synthetic fiber protective fabric systems. This type of solution typically uses synthetic fibers such as nylon and polyester, achieving waterproof and windproof functions through lamination, seam sealing, or coating processes. Garments made from this type of fabric generally employ high-temperature fused interlining, seam sealing stitching, and heat setting processes, resulting in mature and efficient production processes. 2) Functional natural cotton fabric systems. In recent years, some manufacturers have experimented with using natural cotton fabrics to impart rainproof and windproof properties through waxing, oiling, and other methods. These fabrics combine natural texture with functionality and are widely welcomed by the outdoor and vintage markets.
[0003] However, synthetic fiber protective fabrics, with their sporty appearance and strong surface sheen, struggle to achieve the crisp texture and retro style of a suit. While waxed fabrics from natural cotton functional fabric systems excel in waterproofing and windproofing, current garment manufacturing techniques still present the following problems when processing such materials: 1. High-temperature ironing damages the wax layer. In traditional suit making, seam finishing, edge setting, and armhole shaping all rely on high-temperature ironing. The surface coating of waxed fabrics typically has a melting point of only 70–80℃, while the soleplate temperature of an iron usually exceeds 120℃. When the iron directly contacts the fabric, the wax layer easily melts, seeps out, or is partially lost, causing irreversible damage such as uneven fabric color, oil stains, and a stiff feel. This problem makes traditional garment manufacturing processes completely unsuitable for waxed fabrics. 2. Lack of effective low-temperature shaping methods. Due to the prohibition of high-temperature ironing, traditional steps such as "hot pressing for seam separation" and "stitching for shaping" cannot be performed. Currently, the industry mostly uses temporary methods such as "natural drying" or "manual pressing," but these methods easily result in wavy edges and curling at the hem, cuffs, and edges of garments, failing to maintain a crisp shape and failing to meet the precision and three-dimensional requirements of the European and American markets. 3. Insufficient ergonomics and comfort. The waxed fabric is hard and cold to the touch, resulting in poor comfort when used directly on areas that come into contact with the skin, such as the collar and cuffs. Existing solutions often improve this by adding a cotton lining, but they lack structural splicing designs for sensitive areas, leading to neck constriction and limited movement when worn. 4. Vulnerable in key areas and lack of structural reinforcement. The stiffness of the waxed fabric causes stress concentration in high-stress areas such as the armpits and armholes during wear, easily leading to problems such as wax layer cracking and fastener detachment, affecting durability and lifespan. Utility Model Content
[0004] This invention provides a jacket-style casual suit based on waxed fabric to overcome the above-mentioned problems.
[0005] To achieve the above objectives, the technical solution of this utility model is as follows:
[0006] A jacket-style casual suit based on waxed fabric includes a body, raglan sleeves, and a collar; the raglan sleeves are sewn to both sides of the body, and the collar is sewn to the top of the body; the body, the raglan sleeves, and the collar are all made of waxed fabric.
[0007] The cuffs of the raglan sleeves and the collar are both provided with a skin-friendly layer fixed on the skin side of the waxed fabric layer. The waxed fabric serves as the base layer and forms a composite layer structure with the skin-friendly layer.
[0008] The armhole seam where the raglan sleeve is sewn to the garment body and the center seam of the raglan sleeve are both equipped with stress-dispersing structures.
[0009] Furthermore, the stress dispersion structure is an elastic re-stretch fabric strip;
[0010] The elastic re-stretch strip at the armhole seam location covers and is sewn to the bottom of the inner side of the armhole seam;
[0011] The elastic re-stretch strip at the center seam of the sleeve covers and is sewn to the inside of the center seam of the sleeve.
[0012] Furthermore, the material of the skin-friendly layer is cotton cord fabric.
[0013] Furthermore, double visible stitching is provided at the hem of the garment, the outer seam of the raglan sleeves, the armhole, and the underside of the raglan sleeves;
[0014] The double visible stitching at the waist and hem of the garment is 2.5 cm.
[0015] The outer seam of the raglan sleeve, the underside of the sleeve, and the armhole are all provided with double topstitching of 0.6 cm; the hem of the garment body is provided with double topstitching of 0.1 cm.
[0016] Furthermore, the garment body and raglan sleeves are both lined.
[0017] Furthermore, the upper part of the garment is provided with a mobile phone pocket, and the lower part of the garment is provided with a waist pocket.
[0018] Furthermore, the hem of the garment is provided with a drawstring channel, a drawstring is provided in the drawstring channel, and the two ends of the drawstring extend to the outside of the drawstring channel through drawstring holes.
[0019] The beneficial effects of this utility model are:
[0020] This utility model discloses a jacket-style casual suit based on waxed fabric. A skin-friendly layer is incorporated at the collar and cuffs to prevent the roughness caused by direct skin contact with the waxed fabric, improving comfort in the neck and wrist areas and reducing stuffiness at the skin-fabric contact points. A stress-dispersing structure effectively distributes stress during movement, specifically reducing concentrated tension at the armhole and sleeve seams when raising or swinging the arms. This prevents seam cracking or fabric fatigue deformation due to the high rigidity and limited tensile strength of the waxed fabric. Combined with the structural advantages of raglan sleeves, it provides ample room for movement, significantly extending the suit's lifespan. Simultaneously, the waxed fabric, as a base layer, gives the garment a unique style and texture, achieving a high degree of balance between comfort, practicality, and aesthetics, suitable for casual and light-activity scenarios. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is a schematic diagram of a jacket-style casual suit structure based on waxed fabric disclosed in an embodiment of the present invention. Figure 1 ;
[0023] Figure 2 This is a schematic diagram of a jacket-style casual suit structure based on waxed fabric disclosed in an embodiment of the present invention. Figure 2 ;
[0024] Figure 3 This is a schematic diagram of a raglan sleeve structure for a jacket-style casual suit based on waxed fabric, as disclosed in an embodiment of this utility model.
[0025] Figure 4 This is a schematic diagram of the seam structure of a jacket-style casual suit based on waxed fabric disclosed in an embodiment of this utility model.
[0026] Figure 5 This is a schematic diagram of a jacket-style casual suit collar structure based on waxed fabric disclosed in an embodiment of the present utility model;
[0027] Figure 6 This is a schematic diagram of a jacket-style casual suit cuff structure based on waxed fabric disclosed in an embodiment of this utility model.
[0028] In the picture:
[0029] 1. Body of the garment; 11. Garment hem; 12. Garment hem; 13. Front placket; 14. Back placket;
[0030] 2. Raglan sleeve; 21. Cuff; 22. Outer seam of raglan sleeve; 23. Armhole; 24. Sleeve hem;
[0031] 3. Collar;
[0032] 4. Oil-waxed fabric;
[0033] 5. Skin-friendly layer;
[0034] 6. Armhole seam;
[0035] 7. Center seam of sleeve;
[0036] 8. Stretch the elastic fabric strip again;
[0037] 9. Cell phone pocket;
[0038] 10. Waistband;
[0039] 15. Double-track open road. Detailed Implementation
[0040] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0041] Example:
[0042] like Figures 1-4 The illustration shows a jacket-style casual suit based on waxed fabric provided in this embodiment, including a body 1, raglan sleeves 2, and a collar 3; the raglan sleeves 2 are sewn to both sides of the body 1, and the collar 3 is sewn to the top of the body 1; the body 1, the raglan sleeves 2, and the collar 3 are all made of waxed fabric 4.
[0043] The cuff 21 of the raglan sleeve 2 and the collar 3 are both provided with a skin-friendly layer 5 fixed on the skin side of the waxed fabric 4 layer. The waxed fabric 4 serves as the base layer and forms a composite layer structure with the skin-friendly layer 5.
[0044] The armhole seam 6 (underarm position) where the raglan sleeve 2 is sewn to the garment body 1, and the sleeve center seam 7 of the raglan sleeve 2 are both provided with stress-dispersing structures.
[0045] This utility model discloses a jacket-style casual suit based on waxed fabric. A skin-friendly layer is incorporated at the collar and cuffs to prevent the roughness caused by direct skin contact with the waxed fabric, improving comfort in the neck and wrist areas. The soft and breathable properties of this skin-friendly layer also reduce stuffiness at the skin-fabric contact points. A stress-dispersing structure effectively distributes stress generated during movement, specifically reducing stress concentration at the armhole and sleeve seams during arm raising and swinging movements. This prevents seam cracking or fabric fatigue deformation due to the high rigidity and insufficient tensile strength of the waxed fabric. Combined with the raglan sleeve structure, ample room for movement is provided, effectively enhancing the suit's structural stability and extending its lifespan. Furthermore, the waxed fabric, as the base material, gives the garment a unique style and texture, achieving an organic fusion of comfort, functionality, and aesthetics, making it suitable for casual and light-activity scenarios.
[0046] In a specific embodiment, the stress dispersion structure is an elastic re-stretch fabric strip 8;
[0047] The elastic re-stretch fabric strip 8 at the armhole seam 6 covers and is sewn to the bottom inner side of the armhole seam 6; the armhole seam 6 is the seam where the raglan sleeve 2 and the body 1 are sewn together, and the elastic re-stretch fabric strip 8 at this position is located inside the seam between the body 1 and the raglan sleeve 2, and is sewn to the body 1 and the raglan sleeve 2 (oil wax fabric 4) for fixation; when this casual suit is worn, the elastic re-stretch fabric strip 8 at the armhole seam 6 is arranged horizontally;
[0048] The elastic re-stretch strip 8 at the sleeve center seam position covers and is sewn to the inside of the sleeve center seam 7. That is, the elastic re-stretch strip 8 at this position is located inside the seam between the front and back sleeve pieces of the raglan sleeve 2 and is sewn to the front and back sleeve pieces (oil wax fabric 4). When this casual suit is worn, the elastic re-stretch strip 8 at the sleeve center seam position is vertically arranged.
[0049] The elastic re-stretch strip 8 is located between the outer fabric (waxed fabric 4) and the lining. The edges of the elastic re-stretch strip 8 are secured using an overlock / seaming process, connecting seamlessly with the outer fabric at the armpit seam (armhole seam 6) and side seam (center sleeve seam 7). This ensures that the elastic re-stretch strip 8 deforms synchronously with the suit fabric under stress, preventing displacement. When the arm moves, such as raising or swinging, the armpit area and arm position are the most stress-concentrated parts of the suit. The fabric (waxed fabric 4) undergoes repeated stretching due to limb movement, easily leading to localized stress concentration (such as seam breakage, fabric fatigue wrinkling, and seam deformation). The elastic re-stretch strip 8 acts as a mechanical reinforcement, dispersing the concentrated tensile stress at the armpit and elbow areas to the elastic re-stretch strip 8 and a larger surrounding fabric area, reducing the stress load on the local fabric. Simultaneously, the tensile strength of the elastic re-stretch strip 8 limits excessive fabric deformation, reducing the pulling sensation during movement and extending the suit's lifespan.
[0050] In this embodiment, the elastic re-stretch strip 8 is made of spandex blended elastic fabric. The spandex content in the selected spandex blended elastic fabric is 15%-25%, and the base fabric is polyester fiber, in order to match the strong rigidity of the oil-waxed fabric 4. Through its own moderate elasticity and the wear resistance of the base fabric, it can adapt to the dynamic stretching range when the arm is raised and swung, and meet the core requirements of stress dispersion and structural reinforcement.
[0051] The elastic re-stretch strip 8 is placed on the inside of the raglan sleeve 2 and the inside of the armhole seam 6, that is, hidden under the armpit and inside the raglan sleeve 2. This fully utilizes the stress-dissipating and structural reinforcement functions while maximizing the aesthetics of the suit.
[0052] In a specific embodiment, such as Figures 5-6 As shown, the material of the skin-friendly layer 5 is cotton corduroy. The inner side of the collar stand (the side closest to the skin) and the collar face (the side facing the skin) of the collar 3 are also made of cotton corduroy. The inner side of the cuff 21 of the raglan sleeve 2 (the side closest to the skin) is also made of cotton corduroy. The cotton corduroy material has a soft, velvety texture, which can optimize the skin contact experience, enhance the sweat absorption performance of the neck and wrist contact areas, and alleviate the discomfort caused by the stiffness and poor breathability of the waxed fabric 4. At the same time, the straight yarn support of the cotton corduroy allows the collar to stand up naturally and maintain its three-dimensional shape even without a stiff lining or ironing.
[0053] In a specific embodiment, double visible stitching is provided at the front placket (female snap button side), bottom placket (male snap button side), hem 12, outer seam 22 of raglan sleeve, armhole 23, and sleeve bottom 24 of raglan sleeve 2 at the garment body edge 11.
[0054] The waist section and hem of the garment have 12 double visible seams, each 2.5 cm wide; that is, the distance between the two visible seams is 2.5 cm.
[0055] The outer seam 22 of the raglan sleeve, the underarm 24, and the armhole 23 are all equipped with double topstitching of 0.6 cm (the dimensions are the spacing between the two topstitching lines); the bodice seam 11 is equipped with double topstitching of 0.1 cm. Double topstitching allows for stress release and shape maintenance of the seams, replacing the need for high-temperature ironing. The seams naturally flatten and maintain their shape through the physical tension of the seams, preventing the wax layer of the waxed fabric 4 from melting, discoloring, or being lost under the high temperatures of traditional ironing, thus preserving the original waterproof and windproof properties of the waxed fabric 4. Simultaneously, it enhances the structural strength of each seam, effectively preventing seam cracking or deformation. The different spacing of the topstitching adapts to the stress characteristics of each part (wider spacing at the waist and hem for side shaping and firming, and narrower spacing at the bodice seam 11 and sleeve seams for refined reinforcement), improving the structural stability and durability of the suit, preventing curling edges, and enhancing the style and texture of the jacket-style casual suit through neat topstitching lines, achieving a unity of functionality and aesthetics.
[0056] In a specific embodiment, both the garment body 1 and the raglan sleeve 2 are provided with an inner lining (except for the cuff 21 of the raglan sleeve 2). The inner lining can isolate the waxed fabric 4 from the wearer's inner clothing, preventing the wax from directly adhering to the inner clothing, while improving the smoothness of the dressing and undressing process and reducing the direct friction of the waxed fabric 4 to the skin. In this embodiment, the inner lining adopts GB / T 23327-2025 woven fusible interlining. Its lightweight and crisp characteristics can not only help support the three-dimensional contour of the garment body 1 and the raglan sleeve 2, preventing the shape from being loose, but also not increase the feeling of bulkiness when wearing, and have good breathability, taking into account both the stability of the shape and the comfort of wearing.
[0057] In a specific embodiment, the upper part of the garment body 1 is provided with a mobile phone pocket 9, and the lower part of the garment body 1 is provided with a waist pocket 10. The lining of the mobile phone pocket and the waist pocket is made of woven fusible interlining according to GB / T 23327-2025 to improve the stiffness and structural stability of the pocket, prevent the pocket from collapsing and deforming after placing items, and enhance the wear resistance of the inner lining to reduce friction wear on the pocket fabric from items such as mobile phones and keys. Its bonding and sewing characteristics are compatible with the waxed fabric 4, which makes the pocket outline neat and the pocket opening less prone to rolling. It not only ensures the practicality of the pocket but also avoids the bulkiness of the garment body 1 due to the heavy lining, thus balancing functional stability and wearing comfort. The mobile phone pocket and the waist pocket can realize the layered storage of personal items. The upper mobile phone pocket ensures convenient access, while the lower waist pocket improves the stability of the stored items, which is suitable for daily casual use. While improving the storage function, it maintains the overall neat shape of the garment and does not affect the appearance of wearing it.
[0058] In a specific embodiment, the front placket 13 and the bottom placket 14 of the garment body 1 are provided with snaps. An anti-penetration pad is provided between the snaps and the waxed fabric 4. The anti-penetration pad is sewn and fixed between the waxed fabric 4 and the lining. The anti-penetration pad is made of polyester fiber non-woven fabric, which provides puncture resistance and abrasion resistance. It can resist the squeezing and puncture forces of the snap metal parts, so that the squeezing force when the snap is fastened and the puncture force of the metal edge are directly applied to the pad, rather than the waxed fabric, thereby avoiding damage and cracking of the waxed fabric due to local stress concentration.
[0059] In a specific embodiment, the hem 12 of the garment body is provided with a drawstring channel, in which a drawstring is provided, and both ends of the drawstring extend out of the drawstring channel through drawstring holes. The drawstring channel is formed by folding and sewing the bottom of the garment body 1 inward. The drawstring is an elastic band, and the part of the elastic band extending out of the drawstring channel has a buckle. The buckle can be engaged with the elastic band and is locked in place after the elastic band is adjusted to the desired tightness, preventing the hem from loosening due to the elastic band rebounding. Pressing the buckle unlocks and adjusts the garment to suit different wearing needs and body shapes.
[0060] This utility model discloses a jacket-style casual suit based on waxed fabric, using 280 g / m 2 Waxed cotton (wax melting point 75℃); corduroy 210 g / m 2 The inner lining is a knitted polyester-cotton blend. The process includes the following steps:
[0061] 1. Process Flow
[0062] (1) Sample sizing compensation: Meridian +4%, Weft +1.5%;
[0063] (2) Cold cutting, straight yarn direction of corduroy;
[0064] (3) Double topstitching of 0.1cm + 0.6cm is applied to the bodice seam 11, bodice hem 12, raglan sleeve outer seam 22, armhole 23 and the underside of raglan sleeve 2 24;
[0065] (4) Add elastic and stretch fabric strips 8 to the armhole seam (armhole seam) and the sleeve seam 7, and fold the hem of the garment 2.5cm to form a drawstring channel, with an internal drawstring;
[0066] (5) The collar is made of a composite structure of waxed fabric base and cotton corduroy;
[0067] (6) Garment hanging, steam suspension shaping 10 cm away from the garment surface (high temperature impact without traditional direct steam contact).
[0068] 2. Test Results
[0069] (1) The processing temperature is ≤75℃ throughout the entire process;
[0070] (2) Color difference ΔE = 0.9 (better than GB / T 250-2008 superior grade ΔE≤1.5);
[0071] (3) Wax layer retention rate ≥97% (loss >20% in traditional processes);
[0072] (4) The longitudinal dimension deviation of the garment is ±0.3 cm, and the transverse dimension deviation is ±0.2 cm;
[0073] (5) The collar hem curling rate is ≤5%, and the sleeve cap bulging rate is ≤3%;
[0074] (6) Comfort rating: 8.2 / 10 (originally 3.5 / 10).
[0075] The results show that this product retains the windproof and rainproof properties of waxed fabrics while achieving a suit-like three-dimensional shape and wearing comfort, and has the conditions for stable mass production.
[0076] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
Claims
1. A jacket-style casual suit based on waxed fabric, characterized in that, It includes a bodice (1), raglan sleeves (2) and a collar (3); the raglan sleeves (2) are sewn to both sides of the bodice (1) and the collar (3) is sewn to the top of the bodice (1); the fabric of the bodice (1), the raglan sleeves (2) and the collar (3) are all waxed fabric (4). The cuff (21) of the raglan sleeve (2) and the collar (3) are both provided with a skin-friendly layer (5) fixed on the skin side of the waxed fabric (4) layer. The waxed fabric (4) serves as the base layer and forms a composite layer structure with the skin-friendly layer (5). The armhole seam (6) where the raglan sleeve (2) is sewn to the garment body (1) and the sleeve center seam (7) of the raglan sleeve (2) are both provided with stress-dispersing structures.
2. The jacket-style casual suit based on waxed fabric according to claim 1, characterized in that, The stress dispersion structure is an elastic re-stretching strip (8). The elastic re-stretch strip (8) at the armhole seam (6) position covers and is sewn to the bottom of the inner side of the armhole seam (6); The elastic re-stretch strip (8) at the sleeve center seam (7) position covers and is sewn to the inside of the sleeve center seam (7).
3. The jacket-style casual suit based on waxed fabric according to claim 1, characterized in that, The material of the skin-friendly layer (5) is cotton cord fabric.
4. The jacket-style casual suit based on waxed fabric according to claim 1, characterized in that, Double visible stitching (15) is provided at the hem of the garment (11), the bottom of the garment (12), the outer seam of the raglan sleeve (22), the armhole (23), and the bottom of the raglan sleeve (2) (24). The waist section of the garment (1) and the hem of the garment (12) have double visible seams of 2.5 cm (15). The outer seam (22) of the raglan sleeve, the bottom of the sleeve (24), and the armhole (23) are all provided with double topstitching of 0.6 cm; the hem (11) of the garment body is provided with double topstitching of 0.1 cm (15).
5. The jacket-style casual suit based on waxed fabric according to claim 1, characterized in that, The garment body (1) and raglan sleeves (2) are both lined with inner lining.
6. The jacket-style casual suit based on waxed fabric according to claim 1, characterized in that, The upper part of the garment (1) is provided with a mobile phone pocket (9), and the lower part of the garment (1) is provided with a waist pocket (10).
7. The jacket-style casual suit based on waxed fabric according to claim 4, characterized in that, The hem (12) of the garment is provided with a drawstring channel, and a drawstring is provided in the drawstring channel, with both ends of the drawstring extending out of the drawstring channel through the drawstring hole.