Outdoor riding clothes capable of being used in four seasons

By designing an all-season outdoor cycling jersey, combining a multi-layered structure of a ventilated jacket, outer layer, and thermal inner liner, the problem of poor all-season versatility in existing cycling jerseys has been solved. It achieves windproof, waterproof, and breathable effects, improving the comfort of cycling jerseys.

CN224055395UActive Publication Date: 2026-03-31佛山市赛羽极限运动用品有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing cycling jerseys are usually only suitable for summer or autumn/winter use, with poor ventilation, heat dissipation, and wind protection, making them unsuitable for all seasons and resulting in low comfort.

Method used

A year-round outdoor cycling jersey has been designed, consisting of a ventilated jacket, an outer jacket, and a thermal inner liner. These components are connected by zippers to form a windproof, waterproof, and breathable structure. The outer jacket and ventilated jacket can be detachably connected, and the ventilated jacket, waterproof jacket, and thermal inner liner can be detachably layered together to meet the needs of different seasons.

Benefits of technology

It provides excellent windproof, waterproof and breathable properties, improving the comfort of cycling jerseys and making them effective for use in all seasons.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses outdoor riding clothes universal for four seasons, and relates to the technical field of riding equipment. The positions, corresponding to the chest and the back, of the ventilation clothes are provided with a first ventilation hole structure and a second ventilation hole structure respectively, and the front side and the rear side of each sleeve of the ventilation clothes are provided with a third ventilation hole structure extending from the armhole position to the cuff position and a fourth ventilation hole structure extending from the armhole position to the corresponding elbow position respectively. The third ventilation hole structures and the fourth ventilation hole structures are located on the inner sides of the sleeves; the coat sleeves the ventilation garment to shield all the ventilation hole structures, the coat is connected with the bottom of a collar of the ventilation garment through a first zipper, a front fly of the coat is connected with a front fly of the ventilation garment through a second zipper, a lower hem of the coat is connected with the corresponding abdomen position of the ventilation garment through a third zipper, and the outer surface of the coat and the outer surface of the ventilation garment are waterproof surfaces; the waterproof clothes are sleeved with the ventilation clothes; and the waterproof clothes are sleeved on the warm-keeping liner. The utility model is universal in four seasons, good in ventilation, heat dissipation, waterproof and windproof effects, and high in use comfort.
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Description

Technical Field

[0001] This utility model relates to the field of cycling equipment technology, and in particular to an outdoor cycling garment suitable for all seasons. Background Technology

[0002] In outdoor cycling activities, cyclists wear not only protective gear such as gloves, shoes, and helmets, but also cycling apparel. Cycling clothing typically needs to provide waterproofing, windproofing, breathability, and warmth to cope with various cycling environments and improve riding comfort. Currently, commercially available cycling clothing is generally only suitable for summer or autumn / winter use, offering limited functionality. Furthermore, its ventilation, heat dissipation, and windproofing are poor, making it difficult to achieve year-round use and resulting in low comfort. Therefore, existing cycling clothing needs further improvement. Utility Model Content

[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes an outdoor cycling jacket suitable for all seasons, featuring a large ventilation area, good breathability and heat dissipation, excellent waterproof and windproof performance, and high comfort, thus achieving year-round usability.

[0004] This utility model embodiment provides an outdoor cycling jacket suitable for all seasons, comprising:

[0005] A ventilated garment, wherein a first ventilation hole structure is provided at the chest position, a second ventilation hole structure is provided at the back position, a third ventilation hole structure is provided at the front position of the sleeve, the third ventilation hole structure extends from the armhole to the cuff, and a fourth ventilation hole structure is provided at the back position of the sleeve, the fourth ventilation hole structure extends from the armhole to the elbow position, and both the third and fourth ventilation hole structures are located on the inside of the sleeve.

[0006] An overcoat is worn over the ventilated garment to cover the first ventilation hole structure, the second ventilation hole structure, the third ventilation hole structure, and the fourth ventilation hole structure. The overcoat and the ventilated garment are connected at the bottom of the collar by a first zipper, the placket of the overcoat and the placket of the ventilated garment are connected by a second zipper, and the hem of the overcoat and the corresponding abdominal area of ​​the ventilated garment are connected by a third zipper. The outer surfaces of the overcoat and the outer surfaces of the ventilated garment are waterproof.

[0007] Waterproof garment, wherein the ventilated garment is detachably fitted over the waterproof garment;

[0008] The waterproof garment is detachably fitted onto the inner liner of the thermal insulated liner.

[0009] The all-season outdoor cycling jacket according to this utility model embodiment has at least the following beneficial effects: Since the outer jacket is detachably connected to the ventilated jacket via a first, second, and third zipper, the outer jacket and the ventilated jacket can be stably and seamlessly connected, effectively concealing the first, second, third, and fourth ventilation hole structures on the ventilated jacket. Therefore, the outdoor cycling jacket can provide excellent windproof performance during cycling. Furthermore, through the combination of the outer jacket, the ventilated jacket, and the thermal inner liner, the outdoor cycling jacket can provide excellent warmth during cycling. Since both the outer surface of the outer jacket and the outer surface of the ventilated jacket are waterproof, and the ventilated jacket is located between the outer jacket and the waterproof jacket, a double waterproof protection is formed, thus providing excellent waterproof performance during cycling. After removing the outer jacket, the ventilation area of ​​the ventilated jacket, due to its first, second, third, and fourth ventilation hole structures, is increased, thus providing excellent breathability and heat dissipation during cycling.

[0010] Because the outer jacket, ventilated jacket, waterproof jacket, and thermal liner can be layered from the outside in and can be freely combined, users can choose only the ventilated jacket, or the ventilated jacket and outer jacket, or the ventilated jacket and outer jacket combined with at least one of the waterproof jacket and thermal liner, depending on the temperature and weather conditions of each season. This improves the comfort of riding and allows the outdoor cycling clothing to be used all year round.

[0011] In some embodiments of this utility model, the jacket has a first storage pocket and a first webbing at the corresponding chest position. The first webbing is located on the side of the first storage pocket near the placket of the jacket. The two ends of the first webbing extend laterally and are fixedly connected to the jacket to form a first mounting structure for hanging a walkie-talkie; and / or,

[0012] Both the outer jacket and the ventilated garment have drawstrings at the cuffs.

[0013] In some embodiments of this utility model, an elastic protective pad is provided at the corresponding back position of the jacket, and the elastic protective pad is positioned close to the corresponding cervical spine position of the jacket; and / or,

[0014] The jacket has several second webbing strips spaced vertically along its back. These second webbing strips are positioned near the hem of the jacket, with each strip extending laterally at both ends. Each second webbing strip connects to the jacket at multiple points along its extension direction to form multiple second mounting structures; and / or,

[0015] The ventilation jacket has a second storage bag on the back, which is located below the waist of the jacket.

[0016] In some embodiments of this utility model, a first elastic fabric is provided at the corresponding back position of the ventilated garment. The first elastic fabric is positioned near the back armhole of the ventilated garment, and is spliced ​​with the second ventilation hole structure and the fourth ventilation hole structure respectively; and / or,

[0017] The front side of the back panel of the ventilated jacket is provided with a second elastic fabric. The second elastic fabric is located near the hem of the ventilated jacket and has a zipper tooth structure for connecting with cycling shorts via a zipper. The zipper tooth structure extends to the left and right.

[0018] In some embodiments of this utility model, the placket of the waterproof garment and the placket of the ventilated garment are connected by a fourth zipper.

[0019] In some embodiments of this utility model, the first zipper, the second zipper, and the third zipper are all waterproof zippers; and / or,

[0020] The ventilated garment is equipped with waterproof fabric sheets for covering the first zipper, the second zipper, and the third zipper.

[0021] In some embodiments of this utility model, the sleeves of the thermal inner liner and the sleeves of the waterproof garment are connected by snap fasteners.

[0022] In some embodiments of this utility model, the heat-insulating inner liner includes an outer surface layer, a heat-insulating layer, and an inner surface layer. The heat-insulating layer is disposed between the outer surface layer and the inner surface layer. A heat-reflective layer is provided at a corresponding back position of the inner surface layer, and the heat-reflective layer is located on the side of the inner surface layer away from the heat-insulating layer; and / or,

[0023] Heating pads are provided on the collar, sleeves, corresponding chest area, and corresponding back area of ​​the insulated inner liner.

[0024] In some embodiments of this utility model, the first ventilation hole structure, the second ventilation hole structure, the third ventilation hole structure, and the fourth ventilation hole structure are all mesh structures.

[0025] In some embodiments of this utility model, the ventilation garment is provided with a first mesh pocket structure for placing elbow braces at the corresponding elbow position, and the ventilation garment is provided with a second mesh pocket structure for placing chest braces at the corresponding chest position.

[0026] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of this invention may be realized and obtained by means of the structures particularly pointed out in the description, claims, and drawings. Attached Figure Description

[0027] Figure 1 This is a front view of the all-season outdoor cycling jacket provided according to an embodiment of the present utility model when it is fitted with an outer jacket;

[0028] Figure 2 This is a schematic diagram of the back of the all-season outdoor cycling jacket provided according to an embodiment of the present utility model when it is fitted with an outer jacket;

[0029] Figure 3 This is an exploded view of the all-season outdoor cycling jacket provided according to an embodiment of the present utility model from a frontal angle.

[0030] Figure 4 This is a front view of the outer jacket provided according to an embodiment of the present utility model;

[0031] Figure 5 This is a schematic diagram of the back of the jacket provided according to an embodiment of the present utility model;

[0032] Figure 6 This is a front view of the all-season outdoor cycling jacket provided according to an embodiment of the present utility model after the outer jacket has been removed;

[0033] Figure 7 This is a schematic diagram of the back of the all-season outdoor cycling jacket provided according to an embodiment of the present utility model after the outer jacket has been removed;

[0034] Figure 8 This is a front view of the waterproof garment provided according to an embodiment of the present utility model;

[0035] Figure 9 This is a front view of the heat-insulating inner liner provided according to an embodiment of the present utility model.

[0036] Reference numerals: 100, outer cover; 111, first webbing; 112, first storage bag; 113, elastic protective pad; 114, second webbing; 121, first male chain tooth; 122, second male chain tooth; 123, third male chain tooth;

[0037] 200. Ventilated garment; 210. Collar; 221. First zipper structure; 222. Third storage bag; 223. Second storage bag; 224. Chain tooth structure; 225. Second elastic fabric; 231. First ventilation hole structure; 232. Third ventilation hole structure; 233. Second ventilation hole structure; 234. Fourth ventilation hole structure; 235. First elastic fabric;

[0038] 300. Waterproof clothing; 310. Fourth male chain tooth;

[0039] 400. Insulated inner liner; 410. Second zipper structure; 420. Sub-fastener. Detailed Implementation

[0040] The embodiments of this utility model are described in detail below. 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.

[0041] In the description of this utility model, it should be understood that features specified as "first" or "second" may explicitly or implicitly include one or more of those features. In the description of this utility model, unless otherwise stated, "multiple" means two or more.

[0042] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable 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.

[0043] The following is for reference. Figures 1 to 9 This invention describes an all-season outdoor cycling garment provided according to an embodiment of the present invention.

[0044] like Figures 1 to 9 As shown, the all-season outdoor cycling jersey according to the present invention has the advantages of large ventilation area, good breathability and heat dissipation performance, excellent waterproof and windproof effect, and high comfort. It can be worn by cyclists during cycling and can be used in all seasons.

[0045] like Figures 1 to 9 As shown, the all-season outdoor cycling jersey includes an outer jacket (100), a ventilated jacket (200), a waterproof jacket (300), and a thermal inner liner (400).

[0046] The ventilated jacket 200 includes a collar 210 and two long sleeves. The ventilated jacket 200 has multiple ventilation hole structures, namely a first ventilation hole structure 231, a second ventilation hole structure 233, a third ventilation hole structure 232, and a fourth ventilation hole structure 234, which enable the ventilated jacket 200 to provide ventilation and heat dissipation for the cyclist.

[0047] Specifically, such as Figure 6As shown, the ventilated jacket 200 has two first ventilation hole structures 231 at the corresponding chest position. Both structures are located on the front surface of the jacket 200, on the left and right sides respectively, and are symmetrically arranged with respect to the placket. It is understood that the first ventilation hole structures 231 cover the rider's chest area, allowing air to flow in during riding and delivering coolness to the rider's chest for heat dissipation. The first ventilation hole structure 231 includes multiple arrayed ventilation holes, which can be round or square, etc. The left end of the first ventilation hole structure 231 can extend to the placket position of the ventilation garment 200, the right end of the first ventilation hole structure 231 can extend to the hem position of the ventilation garment 200, the upper end of the first ventilation hole structure 231 can extend to the front shoulder position of the ventilation garment 200, and the lower end of the first ventilation hole structure 231 can extend to the corresponding abdomen position of the ventilation garment 200.

[0048] like Figure 7 As shown, the ventilated jacket 200 has a second ventilation hole structure 233 on the back. The second ventilation hole structure 233 is one in number and located on the rear surface of the ventilated jacket 200. It is understood that the second ventilation hole structure 233 covers the rider's back area. During riding, air entering the ventilated jacket 200 can flow out through the second ventilation hole structure 233, carrying away some of the rider's heat to achieve ventilation and heat dissipation. Similarly, the second ventilation hole structure 233 includes multiple ventilation holes arranged in an array. The left and right ends of the second ventilation hole structure 233 can extend to the left and right side seams of the ventilated jacket 200, the upper end of the second ventilation hole structure 233 can extend to the back shoulder area of ​​the ventilated jacket 200, and the lower end of the second ventilation hole structure 233 can extend to the corresponding waist area or the corresponding abdomen area on the rear surface of the ventilated jacket 200.

[0049] like Figure 6 As shown, the ventilated jacket 200 has a third ventilation hole structure 232 on the front side of the sleeve, extending from the armhole to the cuff. Two third ventilation hole structures 232 are provided, located at the two sleeves of the ventilated jacket 200 respectively. It is understood that during cycling, air can flow in through the third ventilation hole structure 232, delivering coolness to the rider's arms for heat dissipation. The third ventilation hole structure 232 also includes multiple ventilation holes arranged in an array.

[0050] like Figure 7As shown, the ventilated jacket 200 has a fourth ventilation hole structure 234 on the back of the sleeve, extending from the armhole to the corresponding elbow. Two fourth ventilation hole structures 234 are provided, located at the two sleeves of the ventilated jacket 200 respectively. Both the third ventilation hole structure 232 and the fourth ventilation hole structure 234 are located on the inner side of the sleeves of the ventilated jacket 200. Therefore, the outer side of the sleeves of the ventilated jacket 200 can be made of abrasion-resistant fabric, or even have elbow pads added, to protect the outer side of the cyclist's arms. It is understood that during cycling, air flowing into the ventilated jacket 200 can flow out through the fourth ventilation hole structure 234, carrying away some of the cyclist's heat for heat dissipation.

[0051] In this embodiment, the first ventilation hole structure 231, the second ventilation hole structure 233, the third ventilation hole structure 232, and the fourth ventilation hole structure 234 are all mesh structures. The mesh structure has multiple mesh openings, which serve as ventilation holes. It is understood that the remaining fabric of the ventilation garment 200 can be spliced ​​with the mesh structure to form the ventilation garment 200. For example, the ventilation garment 200 includes an outer layer and an inner layer, wherein the inner layer is a mesh structure, and the outer layer is spliced ​​with the inner layer, covering part of the inner layer to expose the remaining portion, thereby making the exposed portions of the inner layer constitute the first ventilation hole structure 231, the second ventilation hole structure 233, the third ventilation hole structure 232, and the fourth ventilation hole structure 234, respectively.

[0052] By incorporating the aforementioned first ventilation hole structure 231, second ventilation hole structure 233, third ventilation hole structure 232, and fourth ventilation hole structure 234 into the ventilated clothing 200, the ventilation area can be increased by up to 50%, thereby enhancing the ventilation and heat dissipation effect and making the rider more comfortable to wear in high temperatures.

[0053] The ventilated jacket 200 also features a first zipper structure 221 at the placket, allowing the cyclist to easily put on or take off the jacket. Furthermore, a third storage pocket 222 is located on the front side of the front panel of the ventilated jacket 200, positioned below the corresponding abdominal area. Additionally, the ventilated jacket 200 can be fitted with an adjustment strap with snap fasteners at the corresponding elbow positions, ensuring a snug fit against the cyclist's elbows.

[0054] The outer jacket 100 is fitted over the ventilated garment 200 so that it can cover the first ventilation hole structure 231, the second ventilation hole structure 233, the third ventilation hole structure 232, and the fourth ventilation hole structure 234 on the ventilated garment 200. Furthermore, the outer jacket 100 and the ventilated garment 200 are detachably connected at the bottom of the collar 210 via a first zipper, at the placket of the outer jacket 100 and the placket of the ventilated garment 200 via a second zipper, and at the hem of the outer jacket 100 and the corresponding abdominal area of ​​the ventilated garment 200 via a third zipper. It is understood that the zipper connection between the outer jacket 100 and the ventilated garment 200, after being connected, provides good wind protection, preventing air leakage at the collar, placket, and hem of the outer jacket 100, thus improving the windproof effect.

[0055] In this embodiment, the jacket 100 is collarless, meaning it does not include a collar stand or collar face. The jacket 100 includes two long sleeves. When the jacket 100 is worn over the ventilated jacket 200, the jacket 100 and the ventilated jacket 200 are connected by a first zipper, a second zipper, and a third zipper. This allows the jacket 100 to effectively cover the first ventilation hole structure 231, the second ventilation hole structure 233, the third ventilation hole structure 232, and the fourth ventilation hole structure 234 on the ventilated jacket 200, and also saves on the material used in its manufacture. When a cyclist wears this outdoor cycling garment, the sleeves of the jacket 100 can extend to the cyclist's wrists.

[0056] Specifically, the collar of the coat 100 is compatible with the collar of the ventilated jacket 200. The collar of the coat 100 has a first male chain tooth 121, and correspondingly, the bottom of the collar of the ventilated jacket 200 has a first female chain tooth. The first female chain tooth or the first male chain tooth 121 has a first zipper head, which engages with the first female chain tooth and the first male chain tooth 121. The placket of the coat 100 has a second male chain tooth 122, and the placket of the ventilated jacket 200 has a second female chain tooth. The second female chain tooth or the second male chain tooth 122 has a second zipper head, and the second male chain tooth 122 and the second female chain tooth engage with each other. The hem of the coat 100 has a third male chain tooth 123, and the corresponding abdominal area of ​​the ventilated jacket 200 has a third female chain tooth. The third female chain tooth or the third male chain tooth 123 has a third zipper head, and the third female chain tooth and the third male chain tooth 123 engage with each other.

[0057] In this embodiment, the first, second, and third zippers are all waterproof zippers, providing excellent waterproofing and preventing rainwater from entering the space between the outer jacket 100 and the ventilated clothing 200 through the first, second, or third zippers and then falling onto the cyclist's skin through the ventilation holes on the ventilated clothing 200. Furthermore, the ventilated clothing 200 is provided with waterproof fabric pieces to cover the first, second, and third zippers. These waterproof fabric pieces, when the outer jacket 100 is placed on the ventilated clothing 200, ensure that the first, second, and third zippers are covered, preventing rainwater from entering the space between the outer jacket 100 and the ventilated clothing 200 through the first, second, and third zippers. The waterproof fabric pieces are fixedly connected to the ventilated clothing 200 and can be made of, but are not limited to, existing waterproof nylon fabric, waterproof canvas, etc.

[0058] Furthermore, the outer surfaces of the jacket 100 and the ventilation jacket 200 are waterproof, providing excellent waterproofing. The outer fabric of the jacket 100 and the outer fabric of the ventilation jacket 200 (excluding the mesh structure) can also be made of existing materials such as waterproof nylon, waterproof canvas, and Oxford cloth.

[0059] Furthermore, both the cuffs of the jacket 100 and the ventilated jacket 200 are equipped with elastic bands. These elastic bands allow the cuffs of both jackets 100 and ventilated jacket 200 to fit snugly against the cyclist's wrist. For example, the elastic band on the jacket 100 can be a fabric strip or an elastic band. One end of the elastic band is fixedly connected to the jacket 100, and the other end is fixedly connected to the jacket 100 via Velcro or snaps. This allows for adjustment of the cuff size of the jacket 100, ensuring a proper fit for the cyclist's wrist.

[0060] The ventilated garment 200 is detachably fitted over the waterproof garment 300. The ventilated garment 200 and the waterproof garment 300 can be detachably connected using Velcro, snaps, or zippers. In this embodiment, the waterproof garment 300 has a collarless structure, and the placket of the waterproof garment 300 is connected to the placket of the ventilated garment 200 via a fourth zipper. Specifically, as shown... Figure 8 As shown, the waterproof garment 300 has a fourth male zipper tooth 310 at its placket, and the ventilated garment 200 has a fourth female zipper tooth at its placket. The fourth female zipper tooth or the fourth male zipper tooth 310 has a fourth zipper pull, and the fourth female zipper tooth engages with the fourth male zipper tooth 310. It is understood that the waterproof garment 300 can be made from existing PU (polyurethane) coated fabrics, high-density nylon, etc.

[0061] The waterproof garment 300 is detachably fitted onto the thermal liner 400. Similarly, the waterproof garment 300 and the thermal liner 400 can be detachably connected via Velcro, snaps, or zippers. In this embodiment, the sleeves of the thermal liner 400 and the sleeves of the waterproof garment 300 are connected via snap fasteners. Specifically, as shown... Figure 9 As shown, each sleeve of the thermal inner liner 400 has a fabric strip at the cuff. One end of the fabric strip is fixedly connected to the outer surface of the thermal inner liner 400, and the other end of the fabric strip is provided with a snap fastener 420 so that the snap fastener 420 can be fastened to the female snap fastener of the waterproof garment 300.

[0062] The thermal liner 400 can be collarless or collared. The thermal liner 400 has a second zipper structure 410 at the placket, which allows the rider to easily take off or put on the thermal liner 400.

[0063] Of course, the sleeves of the waterproof jacket 300 can also be detachably connected to the sleeves of the ventilated jacket 200 via snap fasteners.

[0064] In this embodiment, the insulating inner liner 400 includes an outer layer, an insulating layer, and an inner layer. The insulating layer is disposed between the outer layer and the inner layer, and a heat-reflective layer is provided on the back side of the inner layer. The heat-reflective layer is located on the side of the inner layer away from the insulating layer and can directly contact the rider's skin.

[0065] Specifically, the outer and inner layers can be made of existing 210T fabric, while the insulation layer can be made of existing imitation silk cotton. The heat-reflective layer can use hot stamping, hot silver stamping, or silver / gold plating, utilizing the high reflectivity of metal to directionally reflect the far-infrared heat energy emitted by the cyclist, reducing heat loss and improving heat storage efficiency. It can be understood that the heat-reflective layer comprises multiple metal coatings, which can be evenly arranged in a hexagonal honeycomb structure.

[0066] Furthermore, the inner liner 400 is equipped with heating elements at the collar, sleeves, corresponding chest area, and corresponding back area. These heating elements are highly thermally conductive and flexible, allowing them to be integrated into the inner liner 400. They can be powered by an external power source such as a battery, and the heat generated is transferred to the rider, providing warmth in low temperatures and thus offering protection against the cold.

[0067] In the all-season outdoor cycling jacket provided in this embodiment, since the outer jacket 100 is detachably connected to the ventilated jacket 200 via the first zipper, the second zipper, and the third zipper, the outer jacket 100 can be stably and seamlessly connected to the ventilated jacket 200, and effectively covers the first ventilation hole structure 231, the second ventilation hole structure 233, the third ventilation hole structure 232, and the fourth ventilation hole structure 234 on the ventilated jacket 200. Therefore, the outdoor cycling jacket can provide excellent windproof effect during cycling. Furthermore, through the cooperation of the outer jacket 100, the ventilated jacket 200, and the thermal inner liner 400, the outdoor cycling jacket can provide excellent warmth during cycling.

[0068] Since both the outer surface of the jacket 100 and the outer surface of the ventilated jacket 200 are waterproof, and the ventilated jacket 200 is located between the jacket 100 and the waterproof jacket 300, a double waterproof protection is formed, thus providing excellent waterproof performance during cycling. After removing the jacket 100, the ventilation area of ​​the ventilated jacket 200 is increased due to the presence of a first ventilation hole structure 231, a second ventilation hole structure 233, a third ventilation hole structure 232, and a fourth ventilation hole structure 234. Therefore, the outdoor cycling jacket provides excellent breathability and heat dissipation during cycling.

[0069] Since the outer jacket 100, ventilated jacket 200, waterproof jacket 300, and thermal inner liner 400 can be layered from the outside to the inside and can be freely combined, users can choose only the ventilated jacket 200, or the ventilated jacket 200 and the outer jacket 100, or the ventilated jacket 200 and the outer jacket 100 combined with at least one of the waterproof jacket 300 and the thermal inner liner 400, depending on the temperature and weather conditions of each season, thereby improving the comfort of riding and enabling the use of this outdoor cycling clothing in all seasons.

[0070] For example, when cycling in spring or autumn, the ventilated jacket 200 can be used in conjunction with the outer jacket 100 for wind protection. In summer, the ventilated jacket 200 allows air to flow through the first ventilation hole structure 231, the second ventilation hole structure 233, the third ventilation hole structure 232, and the fourth ventilation hole structure 234 for breathability and heat dissipation. In winter, the ventilated jacket 200 can be used in conjunction with the outer jacket 100 and the thermal inner liner 400 for both wind protection and warmth. In cloudy or light rain conditions, a waterproof jacket 300 can be added for enhanced waterproofing.

[0071] In some embodiments, such as Figure 4As shown, the jacket 100 has a first storage pocket 112 and a first webbing 111 at the corresponding chest position. The first webbing 111 is located on the side of the first storage pocket 112 near the placket of the jacket 100. The two ends of the first webbing 111 extend to the left and right, and the two ends of the first webbing 111 are fixedly connected to the jacket 100 to form a first mounting structure. The first mounting structure is used for hanging the walkie-talkie.

[0072] Specifically, there are two first storage bags 112, located on the left and right sides of the jacket 100 respectively, symmetrically arranged with respect to the jacket's placket. Each first storage bag 112 has an opening that can be opened upwards, and a zipper at the opening for easy placement of items such as a mobile phone by the cyclist. There are two first webbing straps 111, located on the left and right sides of the jacket 100 respectively, symmetrically arranged with respect to the jacket's placket. The first webbing straps 111 can be, but are not limited to, elastic bands. The cyclist can attach a walkie-talkie to the first webbing strap 111, placing the walkie-talkie close to their mouth for easy communication without using their hands, thus improving cycling safety.

[0073] In some embodiments, such as Figure 5 As shown, the jacket 100 has an elastic protective pad 113 on the corresponding back position, positioned close to the cervical spine area. The elastic protective pad 113 can be made of EVA (ethylene-vinyl acetate copolymer) foam with a thickness of 3mm. The elastic protective pad 113 is built into the jacket 100. When the rider falls, the elastic protective pad 113 can provide some cushioning protection for the rider's cervical spine.

[0074] In some embodiments, such as Figure 5 As shown, the jacket 100 has several second webbing straps 114 on its back. All the second webbing straps 114 are arranged at regular intervals along the vertical direction, and are positioned near the hem of the jacket 100. Furthermore, each second webbing strap 114 extends horizontally at both ends, and is connected to the jacket 100 at multiple points along its extension direction by sewing, forming multiple second hanging structures. By setting up these second hanging structures, a capacity expansion effect is achieved, making it convenient to hang items such as hiking poles, flashlights, etc., on the second hanging structures.

[0075] In this embodiment, there are two second webbing strips 114, each with five sewn joints, so that the second webbing strips 114 and the outer jacket 100 together define four second mounting structures.

[0076] In some embodiments, such as Figure 7As shown, the back of the ventilated jacket 200 has a second storage pocket 223, located below the waist area of ​​the jacket. The opening of the second storage pocket 223 faces upwards and has a flap. The upper end of the flap is fixedly connected to the ventilated jacket 200, while the lower end can be detachably connected to the jacket 200 via snaps or Velcro. The second storage pocket 223 further expands the storage space, allowing the outdoor cycling jacket to hold more items.

[0077] In some embodiments, such as Figure 7 As shown, the ventilation jacket 200 has two first elastic fabrics 235 on the back, located on the left and right sides of the back surface of the jacket 200. The first elastic fabrics 235 are positioned near the back armhole of the jacket 200 and are connected to the second ventilation hole structure 233 and the fourth ventilation hole structure 234, respectively. It can be understood that by providing the first elastic fabrics 235, the elasticity of the first elastic fabrics 235 allows the cyclist's arms to move more comfortably and freely.

[0078] In some embodiments, such as Figure 7 As shown, the front side of the back panel of the ventilated jacket 200 is provided with a second elastic fabric 225. The second elastic fabric 225 is located near the hem of the ventilated jacket 200. The second elastic fabric 225 is provided with a chain tooth structure 224, which extends to the left and right. The chain tooth structure 224 can be used to connect with cycling pants via a zipper.

[0079] Understandably, by setting the second elastic fabric 225 and the chain tooth structure 224, the ventilation jacket 200 can be connected to the cycling pants, ensuring that the ventilation jacket 200 remains connected to the cycling pants while riding. This prevents the ventilation jacket 200 from being lifted up due to strong winds during riding, thus increasing riding resistance. At the same time, it can also prevent the rider's lower back from being easily chafed due to a fall and the ventilation jacket 200 separating from the cycling pants.

[0080] In some embodiments, the ventilation garment 200 has a first mesh pocket structure at the corresponding elbow position for storing elbow protection, and a second mesh pocket structure at the corresponding chest position for storing chest protection.

[0081] Understandably, the first and second mesh pocket structures can be connected to the mesh structure on the ventilated jacket 200. Both the first and second mesh pocket structures have openable and closable openings, where Velcro closures can be installed. This design facilitates the separate placement of elbow and chest protectors within the first and second mesh pocket structures. The built-in elbow and chest protectors provide excellent cushioning and protection for the cyclist's elbows and chest, enhancing the protective effect of this outdoor cycling jacket. The elbow and chest protectors can be padded.

[0082] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0083] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.

Claims

1. A four-season outdoor cycling garment, characterized in that, The ventilation clothes are provided with a first ventilation hole structure at a corresponding chest position, a second ventilation hole structure at a corresponding back position, a third ventilation hole structure at a front side of a sleeve, the third ventilation hole structure extending from a sleevehole position to a cuff position of the ventilation clothes, a fourth ventilation hole structure at a back side of a sleeve, the fourth ventilation hole structure extending from the sleevehole position to a corresponding elbow position of the ventilation clothes, and the third ventilation hole structure and the fourth ventilation hole structure being located at an inner side of a sleeve of the ventilation clothes; A coat is sleeved on the ventilation clothes to shield the first ventilation hole structure, the second ventilation hole structure, the third ventilation hole structure and the fourth ventilation hole structure, the coat being connected with a collar bottom position of the ventilation clothes through a first zipper, a front opening of the coat being connected with a front opening of the ventilation clothes through a second zipper, a lower hem of the coat being connected with a corresponding abdominal position of the ventilation clothes through a third zipper, and an outer surface of the coat and an outer surface of the ventilation clothes being waterproof surfaces; A waterproof clothes is detachably sleeved on the ventilation clothes; A thermal liner is detachably sleeved on the waterproof clothes. A first storage bag and a first webbing are arranged at a corresponding chest position of the coat, the first webbing being located at a side of the first storage bag close to the front opening of the coat, two ends of the first webbing extending leftward and rightward, and the first webbing being fixedly connected with the coat to form a first hanging structure for suspending a radio; and / or, 2. The all-season outdoor cycling garment according to claim 1, characterized in that, Cuffs of the coat and cuffs of the ventilation clothes are both provided with tightening bands. An elastic protective pad is arranged at a corresponding back position of the coat, the elastic protective pad being arranged close to a corresponding cervical vertebra position of the coat; and / or, 3. The all-season outdoor cycling garment according to claim 1, characterized in that, A plurality of second webbings are arranged at the corresponding back position of the coat in a spaced manner along an up-down direction, the second webbings being arranged close to the lower hem of the coat, two ends of each of the second webbings extending leftward and rightward, and each of the second webbings being connected with the coat at multiple points in an extending direction thereof to form a plurality of second hanging structures; and / or, A second storage bag is arranged on a back surface of the ventilation clothes, the second storage bag being located below a corresponding waist position of the ventilation clothes. A first elastic cloth is arranged at a corresponding back position of the ventilation clothes, the first elastic cloth being arranged close to a back sleevehole position of the ventilation clothes, and the first elastic cloth being respectively spliced with the second ventilation hole structure and the fourth ventilation hole structure; and / or, 4. The all-season outdoor cycling garment according to claim 1, characterized in that, A second elastic cloth is arranged on a front side of a back panel of the ventilation clothes, the second elastic cloth being arranged close to a lower hem of the ventilation clothes, the second elastic cloth being provided with a chain tooth structure for being connected with a riding pant through a zipper, and the chain tooth structure extending leftward and rightward. A front opening of the waterproof clothes is connected with a front opening of the ventilation clothes through a fourth zipper.

5. The all-season outdoor cycling garment according to claim 1, characterized in that, The first zipper, the second zipper and the third zipper are all waterproof zippers; and / or, 6. The all-season outdoor cycling garment according to claim 1, characterized in that, The ventilation clothes are respectively provided with waterproof cloth pieces for shielding the first zipper, the second zipper and the third zipper. Sleeves of the thermal liner are connected with sleeves of the waterproof clothes through snap fasteners.

7. The all-season outdoor cycling garment according to claim 1, characterized in that, ​ 8. The all-season outdoor cycling garment according to claim 1, characterized in that, The thermal inner liner comprises an outer surface layer, a thermal layer and an inner surface layer, the thermal layer is arranged between the outer surface layer and the inner surface layer, a corresponding back position of the inner surface layer is provided with a heat reflecting layer, the heat reflecting layer is located on a side of the inner surface layer away from the thermal layer; and / or, The collar, the sleeve, the corresponding chest position and the corresponding back position of the thermal inner liner are all provided with a heating sheet.

9. The all-season outdoor cycling garment according to claim 1, characterized in that, The first vent structure, the second vent structure, the third vent structure and the fourth vent structure are all mesh structures.

10. The all-season outdoor cycling garment according to claim 9, characterized in that, The corresponding elbow position of the ventilated garment is provided with a first mesh pocket structure for placing an elbow protector, and the corresponding chest position of the ventilated garment is provided with a second mesh pocket structure for placing a chest protector.