A warm golf suit and its preparation method

By combining an outer protective layer woven from UV-resistant polyester fiber and spandex, an aerogel insulation layer, breathable zones, and reflective safety warning structures, the shortcomings of golf apparel in terms of texture, warmth, breathability, and water repellency are solved, improving the comfort and safety of the sport and adapting to the complex environment of golf.

CN122074725APending Publication Date: 2026-05-26ZHEJIANG GIUSEPPE GARMENT
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
ZHEJIANG GIUSEPPE GARMENT
Filing Date
2026-03-31
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing golf apparel fails to balance elegance and athletic functionality, suffers from an imbalance between warmth and breathability, lacks water repellency, and is insufficiently safe in low-light environments, making it unsuitable for the complex scenarios of outdoor golf.

Method used

The outer protective layer is made of UV-resistant polyester fiber and spandex, with an inner aerogel insulation layer, a breathable zone design, a water-repellent outer layer and a reflective safety warning structure. Combined with three-dimensional tailoring and detailed optimization, it forms a multi-layered composite application of functional materials.

Benefits of technology

It achieves a balance between maintaining an elegant texture and providing good elasticity and breathability, preventing rainwater leakage, enhancing sports comfort and safety, and adapting to the needs of golf in cold, low-light environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a warm golf suit, comprising a main body, which includes a left front panel, a back panel, and a right front panel connected sequentially, with sleeves attached to the left and right front panels respectively. The main body includes an outer protective layer and an inner aerogel layer. A breathable area is provided at the connection between the sleeves and the left and right front panels. The outer protective layer also includes a water-repellent structure, a safety warning structure, and a placket structure. Multiple breathable holes with a diameter of 8-10 mm are provided within the breathable area. The breathable holes are arranged in a triangular pattern, and the edges of the breathable area are bound. This invention aims to overcome the shortcomings of existing golf apparel, such as the inability to balance elegant texture and athletic functionality, an imbalance between warmth and breathability, poor water repellency, and insufficient safety in low-light environments.
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Description

Technical Field

[0001] This invention relates to the field of clothing technology, specifically to a warm golf suit and its preparation method. Background Technology

[0002] As an outdoor sport that combines elegance and athleticism, golf places high demands on participants' attire: it must possess the elegance of formal wear to conform to the etiquette of the sport; it must also meet the functional needs of outdoor sports, such as warmth, breathability, and water resistance, while being suitable for large-scale body movements such as swinging the club and avoiding any restriction.

[0003] Currently, existing golf apparel has many shortcomings: Firstly, while traditional formal suits possess an elegant texture, they cannot balance the crispness of the fabric with the freedom of movement, restricting arm movement during a swing and lacking outdoor functional designs such as warmth and breathability, making them unsuitable for cold outdoor environments. Secondly, while conventional outdoor sportswear has functions such as warmth and breathability, its rough texture makes it difficult to meet the elegant etiquette requirements of golf. Third, some clothing that balances elegance and warmth often suffers from poor breathability, inadequate water repellency, or insufficient safety in low-light environments, making it unsuitable for the complex scenarios of outdoor golf, such as cold weather, sudden rainfall, and low-light activities in the early morning / evening.

[0004] Based on the shortcomings of the existing technology, there is an urgent need for golf apparel that can balance formal wear with freedom of movement, while integrating multiple functions such as warmth, breathability, water repellency, and low-light safety warnings, in order to solve the problem that existing apparel products cannot fully meet the needs of outdoor golf sports. Summary of the Invention

[0005] The purpose of this invention is to provide a warm golf suit that overcomes the shortcomings of existing golf apparel, such as the inability to balance elegance and athletic functionality, imbalance between warmth and breathability, poor water repellency, and insufficient safety in low-light environments.

[0006] The present invention is implemented as follows: a golf warm suit, comprising a suit body, wherein the suit body comprises a left front piece, a back piece and a right front piece connected in sequence, and sleeves are respectively connected to the left front piece and the right front piece; The main body of the suit includes an outer protective layer and an inner aerogel layer. A breathable area is provided at the connection between the sleeve and the left and right front jackets. The outer protective layer is also provided with a water-repellent structure, a safety warning structure, and a placket structure.

[0007] In one embodiment of the present invention, a plurality of air vents are provided in the air vent area, and the diameter of the air vents is 8-10 mm.

[0008] In one embodiment of the present invention, the vent holes are arranged in a triangular pattern, and the edge of the vent area is provided with a binding structure.

[0009] As one embodiment of the present invention, the outer protective layer is woven from UV-resistant polyester fiber and spandex in a certain proportion, with an elastic elongation of 15%-20%.

[0010] As one embodiment of the present invention, the water-repellent structure includes a water-repellent treatment layer coated on the surface of the outer protective layer, and a plurality of water-repellent adhesive strips disposed at the seams of the outer protective layer.

[0011] In one embodiment of the present invention, the water-repellent adhesive strip is made of polyurethane material, with a width of 15-20mm, and is attached to the seam of the outer protective layer by hot pressing.

[0012] As one embodiment of the present invention, the safety warning structure includes a reflective area disposed at the buttonhole, loop seam, or folded edge of the cuff of the suit body, wherein the reflective area is a high refractive index glass microsphere reflective material with a refractive index ≥1.9.

[0013] As one embodiment of the present invention, the placket structure is a pseudo three-button placket.

[0014] As one embodiment of the present invention, the main body of the suit is also provided with brown embellishments, which are provided at the collar lining, inner lining sealing strip, or lapel eyelet position.

[0015] Based on the above-mentioned golf sports thermal suit, the present invention also provides a method for preparing the golf sports thermal suit, comprising the following steps: S1 Fabric Preparation: UV-resistant polyester fiber and spandex are elastically woven in a certain proportion using a combination of plain weave and elastic knitting to prepare the outer protective layer. Aerogel insulating film and skin-friendly cotton fiber are selected as the inner aerogel layer. The aerogel insulating film and skin-friendly cotton fiber are laminated to the inner side of the outer protective layer through a hot melt lamination process. The lamination temperature is controlled at 120-140℃ and the pressure is 0.3-0.5MPa to ensure a firm lamination without damaging the thermal insulation performance of the aerogel. The thickness of the inner layer after lamination is 0.8-1.2mm. S2 Cutting Process: The shoulder line adopts 3D three-dimensional cutting, based on human shoulder biomechanics data, and designs the shoulder line angle to ensure that the shoulder is unrestricted during the swing; ventilation holes are reserved in the underarm area during cutting. The ventilation holes adopt a circular design with a diameter of 8-10mm. The holes are arranged in a triangle and the edges of the holes are treated with a binding process to prevent fraying. S3 Water Repellent Treatment: After the outer protective layer is woven, it is impregnated with a fluorocarbon resin water repellent agent. After treatment, the contact angle of the fabric surface is ≥135°, forming a water repellent treatment layer. Then, polyurethane water repellent strips are sewn at each seam of the outer protective layer. The width of the water repellent strips is 15-20mm. They are attached to the inside of the seam through a hot pressing process. The hot pressing temperature is 100-120℃ and the pressure is 0.2-0.3MPa. S4 Reflective Area Setting: Reflective stitching is used at the knot, reflective webbing is used for the buttonhole stitching, and reflective film is attached to the folded part of the adhesive strip inside the cuff. All reflective areas are made of glass microsphere reflective material with a high refractive index ≥1.9. S5 Sewing Garments: Sew the cut pieces together according to the design, use an overlock machine to treat the raw edges of the fabric, check the strength of the seams, symmetry, and overall appearance, and iron the whole garment after passing the inspection.

[0016] The beneficial effects of this invention are: 1. This invention uses an outer fabric design with UV-resistant fibers and elastic weaving technology to ensure the suit's crisp and elegant texture, meeting the etiquette requirements of golf, while also giving the fabric good elasticity. Combined with three-dimensional shoulder line tailoring, it ensures that the arm movement is not restricted during the swing, improving the flexibility of the movement.

[0017] 2. The inner layer aerogel insulation material of the present invention has a composite design that combines softness, warmth and skin-friendliness, and can provide all-round warmth and protection for the wearer in cold outdoor environments, solving the problem that traditional sportswear is difficult to balance warmth and skin-friendliness. 3. The precise design of the three ventilation holes in the breathable area of ​​this invention, combined with the movement space provided by the three-dimensional tailoring, can quickly dissipate body heat during vigorous activities such as swinging a golf club, avoiding stuffiness and improving wearing comfort.

[0018] 4. This invention effectively blocks the intrusion of light rain and splashes of water through the dual protection of the outer fabric water-repellent treatment and the seam water-repellent adhesive strip, ensuring that the wearer stays dry in sudden outdoor weather changes, and solving the defects of traditional formal suits being non-waterproof and regular sportswear seams being prone to water seepage. Attached Figure Description

[0019] The accompanying drawings, which form part of this invention, are used to provide a further understanding of the invention, making other features, objects, and characteristics of the invention more apparent. The illustrative embodiments of the invention, along with their descriptions, are used to explain the invention and do not constitute an undue limitation of the invention.

[0020] Figure 1 This is a front structural diagram of the present invention; Figure 2 This is a schematic diagram of the rear structure of the present invention; Figure 3 This is an enlarged view of the structure of the breathable area of ​​the present invention; Figure 4 This is a schematic diagram of the unfolded structure of the main body of the suit of the present invention; Figure 5 This is a schematic diagram illustrating the material cross-section principle of the main body of the suit of this invention; In the picture: main body of the suit 1; left front piece 11; back piece 12; right front piece 13; sleeve 14; outer protective layer 101; inner aerogel layer 102; breathable area 2; breathable pores 20; water-repellent structure 3; water-repellent treatment layer 31; water-repellent adhesive strip 32; safety warning structure 4; reflective area 41; placket structure 5; brown embellishment 6. Detailed Implementation

[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0022] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.

[0023] To address the technical problems of low printing efficiency and easy deviation during multiple positioning operations in existing handheld inkjet printers, as well as the inflexibility of increasing or decreasing the number of printheads and poor adaptability in fixed multi-printhead structures, this invention provides a golf-themed thermal suit to meet the high-efficiency operation requirements of simultaneous multi-information printing. This structure, through the coordinated operation of the clamping mechanism, support mechanism, and buckle mechanism of the splicing component 3, allows for the flexible splicing of several additional inkjet printers onto an existing handheld inkjet printer. This enables simultaneous triggering of multiple printheads for printing, and the horizontal spacing and height of the additional inkjet printers are adjustable. The handheld inkjet printer and the additional inkjet printers are not arranged on the same horizontal or vertical line, adapting to the layout requirements of different printing information, perfectly balancing the efficiency and flexibility of inkjet printing operations. The additional inkjet printers can be the same as the handheld inkjet printer, or they can be a scaled-down version of the handheld inkjet printer, for example, the additional inkjet printer omits the power module and trigger module compared to the handheld inkjet printer. In either case, the additional inkjet printer and the handheld inkjet printer share a single trigger module.

[0024] As attached Figure 1 , 2As shown in Figure 3, this invention maintains the appearance of traditional business suits while achieving multiple functions such as windproof, warmth, breathability, water repellency, and safety warning through the composite application of multi-layered functional materials and optimization of detailed structures. It is especially suitable for wearing when playing golf in spring and autumn or winter, taking into account both professional sports performance and social etiquette requirements.

[0025] like Figures 1-2 As shown: The golf-themed warm suit of the present invention is mainly made of a suit body 1, which includes a left front panel 11, a back panel 12, and a right front panel 13 connected in sequence. Sleeves 14 are connected to the left front panel 11 and the right front panel 13 respectively. The left front panel 11 and the right front panel 13 are connected to the sleeves 14 by sewing. The basic silhouette and cut of the suit body 1 are those of a conventional suit.

[0026] The main body of the suit 1 includes an outer protective layer 101 and an inner aerogel layer 102. The main body of the suit 1 adopts a multi-layer composite structure, which includes an outer protective layer 101 and an inner aerogel layer 102 from the outside to the inside. The outer protective layer 101 is also equipped with a water-repellent structure 3, a safety warning structure 4, and a placket structure 5. The main body of the suit 1 is also decorated with brown embellishments 6.

[0027] The outer protective layer 101 is the base fabric of the suit jacket. It is woven from UV-resistant polyester fiber and spandex in a 9:1 weight ratio using a high-density knitting process. This fabric ratio gives it excellent UV protection (UPF>40) and provides 15%-20% elastic elongation, ensuring comfort and freedom of movement for the wearer during high-amplitude movements such as golf swings and body rotations, while maintaining good drape and wrinkle resistance. The inner aerogel layer 102 is bonded to the inner surface of the outer protective layer 101 via an environmentally friendly hot melt adhesive film, forming a lightweight and highly efficient heat insulation layer. The inner aerogel layer 102 is made of a composite material of aerogel insulating film and skin-friendly cotton fibers, with a thickness of 0.8-1.2mm. It has an extremely low thermal conductivity, providing warmth while ensuring the garment's lightness and flexibility, without appearing bulky.

[0028] To address the issue of localized heat buildup during exercise, a ventilation zone 2 is provided at the junction of the sleeve 14 with the left front garment 11 and the right front garment 13, specifically in the armpit area. The ventilation zone 2 is a separate piece of fabric sewn to this junction, with multiple evenly distributed ventilation holes 20. The diameter of each ventilation hole 20 is 8-10mm, a design that ensures efficient heat and moisture dissipation while preventing direct drafts of cold air. The multiple ventilation holes 20 are arranged in a triangular pattern to optimize ventilation efficiency and structural stability.

[0029] To prevent wear and burrs on the edges of the perforations, the edges of the ventilation zone 2 are provided with a tight binding structure, which can be made of high-elastic rib or polyester webbing in the same or contrasting colors.

[0030] The main body 1 of the suit jacket has a water-repellent structure 3. This structure consists of two parts: first, a water-repellent treatment layer 31, which is a fluorine-free, environmentally friendly water-repellent agent uniformly coated or impregnated onto the outer surface of the outer protective layer 101, allowing water droplets to roll off the fabric surface due to a lotus leaf effect; second, water-repellent adhesive strips 32, which are several polyurethane (TPU) strips with a width of 15-20mm, tightly bonded to the inside of the main seams (such as shoulder seams, side seams, and back center seam) of the outer protective layer 101 through a hot-pressing process, achieving a complete seal at the seams and effectively preventing rainwater from seeping through the seams. To enhance safety during activities at dusk, in rainy weather, or in poor lighting conditions, a safety warning structure 4 is incorporated into the main body 1 of the suit jacket. Specifically, reflective areas 41 are sewn into loops at locations such as cuffs, side seams, armhole loops, pocket loops, buttonhole seams, or the folded edges of the cuff lining. These reflective areas 41 are made of high-refractive-index glass microsphere reflective material with a refractive index ≥1.9. Under illumination, these reflective areas generate bright reflected light, effectively indicating the wearer's position.

[0031] The placket structure 5 is a pseudo three-button placket design. That is, there is one button on the front of the placket that can be actually fastened, and two decorative false buttonholes below it. While maintaining the classic look of a three-button suit, it provides convenience for putting on and taking off, and when not buttoned, the inner insulation layer can still be effectively covered, improving the warmth.

[0032] To add stylish details and distinctiveness, brown accents 6 are incorporated into several internal details of the main body of the suit jacket 1. These brown accents 6 are located on the collar lining, specifically on the inside of the suit jacket collar, along the edge of the inner lining seam tape, and at the stitching of the lapel eyelets. These brown accents 6 are typically sewn with brown thread.

[0033] When the golf-inspired thermal suit of this invention is worn, its inner aerogel layer 102 effectively insulates against cold external air, reducing heat loss and providing core warmth. During exercise, body heat and moisture are quickly expelled through the triangular array of ventilation holes 20 in the underarm ventilation area 2, preventing stuffiness. The elastic fabric of the outer protective layer 101 ensures smooth swing movements, and its surface water-repellent treatment layer 31 and the water-repellent adhesive strips 32 at the seams work together to resist light rain and morning dew. At night or in low light conditions, the reflective areas 41 at the seams can be illuminated by light sources such as car headlights, improving safety during exercise.

[0034] This invention also provides a method for preparing the above-mentioned warm golf suit, comprising the following steps: S1, Fabric preparation: UV-resistant polyester fiber and spandex are selected and elastically woven in a weight ratio of 9:1. The outer protective layer fabric is prepared by combining plain weave and elastic knitting.

[0035] A silica aerogel insulating film and skin-friendly cotton fibers are selected as the inner aerogel layer materials. The aerogel insulating film and skin-friendly cotton fibers are then laminated onto the inner side of the outer protective layer fabric using a hot-melt lamination process. The temperature of the hot-melt lamination process is controlled at 120-140℃, and the pressure is controlled at 0.3-0.5MPa to ensure a strong lamination without damaging the microstructure of the aerogel or its insulating properties. After lamination, the total thickness of the inner aerogel layer and cotton fiber composite is controlled at 0.8-1.2mm.

[0036] S2, Cutting Process: The composite fabric prepared in step S1 is cut into pieces. The shoulder line uses 3D three-dimensional cutting technology, based on human shoulder biomechanics data, designing the shoulder line angle to 150-160° to ensure a comfortable fit for the wearer during large movements such as swinging a golf club. Ventilation holes are pre-cut in the armpit area according to the design. The ventilation holes are circular, with a diameter of 8-10mm per hole. Three ventilation holes are placed in each ventilation area, arranged in an equilateral or isosceles triangle. After cutting, all edges of the ventilation holes are finished with an overlock binding process to prevent fabric fraying.

[0037] S3, Water-repellent treatment: After the outer protective layer fabric is woven, a water-repellent treatment is applied. The fabric is immersed in a fluorocarbon resin water-repellent agent, then dried and set to form a water-repellent layer on its surface. After treatment, the static water contact angle of the fabric surface is ≥135°. Before subsequent sewing, polyurethane water-repellent strips are applied to each seam of the cut outer protective layer pieces. The width of the water-repellent strips is 15-20mm. The water-repellent strips are adhered to the inside of the seams using a hot-pressing process at a temperature of 100-120℃ and a pressure of 0.2-0.3MPa to seal any potential water seepage gaps.

[0038] S4, Reflective Area Setting: During the garment sewing process, safety reflective areas are set at preset locations. Specifically: at the buttonholes, high-refractive-index glass microspheres are used for sewing reinforcement; at the buttonholes, reflective webbing embedded with the same reflective material is used for edging or covering; at the folds of the cuff and placket adhesive strips, reflective film made of the same reflective material is applied. All reflective materials used have high-refractive-index glass microspheres with a refractive index ≥1.9.

[0039] S5, sewn into garment: Following the suit's design pattern, sew together the prepared fabric pieces, including the left and right front panels, back panel, and sleeves. After sewing, use an overlock machine to finish the raw edges of all fabrics. Inspect the finished garment, including testing seam strength, checking symmetry, and inspecting the overall appearance. Once the inspection is passed, iron the garment to set its shape and maintain a smooth, crisp appearance.

[0040] Furthermore, the technical solutions of the various embodiments of the present invention can be combined with each other, but only if they are feasible for those skilled in the art. If the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by the present invention.

[0041] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements all fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the appended claims.

Claims

1. A warm suit for golf, characterized in that, The suit includes a main body (1), which includes a left front jacket (11), a back panel (12) and a right front jacket (13) connected in sequence, and sleeves (14) are connected to the left front jacket (11) and the right front jacket (13) respectively. The main body of the suit (1) includes an outer protective layer (101) and an inner aerogel layer (102). A breathable area (2) is provided at the connection between the sleeve (14) and the left front jacket (11) and the right front jacket (13). The outer protective layer (101) is also provided with a water-repellent structure (3), a safety warning structure (4) and a placket structure (5).

2. The golf-themed warm suit according to claim 1, characterized in that, The breathable area (2) is provided with a plurality of breathable holes (20), the diameter of which is 8-10 mm.

3. A golf-themed warm suit according to claim 2, characterized in that, The ventilation holes (20) are arranged in a triangular shape, and the edge of the ventilation area (2) is provided with a binding structure.

4. A golf-themed warm suit according to claim 3, characterized in that, The outer protective layer (101) is woven from UV-resistant polyester fiber and spandex in a 9:1 ratio, with an elastic elongation of 15%-20%.

5. A golf-themed warm suit according to claim 1, characterized in that, The water-repellent structure (3) includes a water-repellent treatment layer (31) coated on the surface of the outer protective layer (101), and a plurality of water-repellent adhesive strips (32) disposed at the seams of the outer protective layer (101).

6. A golf-themed warm suit according to claim 5, characterized in that, The water-repellent adhesive strip (32) is made of polyurethane material and has a width of 15-20mm. It is attached to the seam of the outer protective layer (101) by hot pressing.

7. A warm golf suit according to claim 1, characterized in that, The safety warning structure (4) includes a reflective area (41) set at the loop, buttonhole or cuff fold of the suit body (1). The reflective area (41) is a high refractive index glass microsphere reflective material with a refractive index ≥1.

9.

8. A golf-themed warm suit according to claim 1, characterized in that, The placket structure (5) is a pseudo three-button placket.

9. A golf-themed warm suit according to claim 1, characterized in that, The main body (1) of the suit is also provided with brown embellishments (6), which are located on the collar seat, inner lining adhesive strip or lapel eyelet.

10. A method for preparing a golf-themed thermal suit, using a golf-themed thermal suit as described in claims 1-9, characterized in that, Includes the following steps: S1 Fabric Preparation: UV-resistant polyester fiber and spandex are elastically woven in a 9:1 ratio using a combination of plain weave and elastic knitting to prepare the outer protective layer. An aerogel insulating film and skin-friendly cotton fiber are selected as the inner aerogel layer. The aerogel insulating film and skin-friendly cotton fiber are laminated to the inside of the outer protective layer using a hot melt lamination process. The lamination temperature is controlled at 120-140℃ and the pressure is 0.3-0.5MPa to ensure a firm lamination without damaging the thermal insulation performance of the aerogel. The thickness of the inner layer after lamination is 0.8-1.2mm. S2 Cutting Process: The shoulder line adopts 3D three-dimensional cutting, based on human shoulder biomechanics data, and the shoulder line angle is designed to be 150-160° to ensure that the shoulder is unrestricted during the swing; ventilation holes are reserved in the underarm area during cutting. The ventilation holes adopt a circular design with a diameter of 8-10mm. The three holes are arranged in a triangle, and the edges of the holes are treated with a binding process to prevent fraying. S3 Water Repellent Treatment: After the outer protective layer is woven, it is impregnated with a fluorocarbon resin water repellent agent. After treatment, the contact angle of the fabric surface is ≥135°, forming a water repellent treatment layer. Then, polyurethane water repellent strips are sewn at each seam of the outer protective layer. The width of the water repellent strips is 15-20mm. They are attached to the inside of the seam through a hot pressing process. The hot pressing temperature is 100-120℃ and the pressure is 0.2-0.3MPa. S4 Reflective Area Setting: Reflective stitching is used at the knot, reflective webbing is used for the buttonhole stitching, and reflective film is attached to the folded part of the cuff tape. All reflective areas are made of glass microsphere reflective material with high refractive index (≥1.9). S5 Sewing Garments: Sew the cut pieces together according to the design, use an overlock machine to treat the raw edges of the fabric, check the strength of the seams, symmetry, and overall appearance, and iron the whole garment after passing the inspection.