Anti-soaking dual-purpose raincoat
By designing a dual-purpose raincoat with a foldable rain belt, the problem of rainwater entering through zippers in traditional raincoats is solved, achieving better waterproofing effect.
Patent Information
- Application Number
- CN202421486176.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-06-26
AI Technical Summary
In traditional dual-purpose raincoats, rainwater will enter the inner surface of the raincoat through zippers, resulting in poor waterproofing.
A dual-purpose raincoat that is anti-soaked is designed, including the raincoat body, rain cap and rain belt. The raincoat body is provided with a window that penetrates the inner and outer sides. The window is controlled by an opening and closing piece, the rain cap is connected to the edge of the window, and the rainproof belt is composed of a first belt body, a second belt body and a connecting piece. The belt body can be folded relative to the raincoat body. The connecting piece includes buttons, Velcro or magnetic suction piece to ensure that the belt bodies are superimposed and fitted to each other to prevent rainwater from entering.
Effectively prevent rainwater from entering the inner surface of the raincoat through the window, preventing the rain cap from being soaked, and improving the waterproof effect of the raincoat.
Smart Images

Figure CN223008481U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of raincoats, in particular to a dual-purpose raincoat that prevents wetting. Background Art
[0002] In daily life, most people go out by bike or electric vehicle to ensure environmental protection. When riding an electric vehicle in the rain, it is not only inconvenient to hold an umbrella but also the electric vehicle is prone to water ingress and damage. Usually, people will wear a raincoat to keep off the rain. At the same time, when not riding, the raincoat can also be covered on the electric vehicle to ensure that the rain does not wet the electric vehicle. When using the raincoat to cover the electric vehicle, the rain hat is placed on the inner surface of the raincoat and then the zipper is zipped up to ensure that the rain hat will not be wet. However, for traditional dual-purpose raincoats, rainwater will enter the inner surface of the raincoat through the zipper, and the waterproof effect is not good. Content of the Utility Model
[0003] An object of the utility model is to provide a dual-purpose raincoat that prevents wetting, so as to solve the problem that rainwater will enter the inner surface of the raincoat through the zipper and the waterproof effect is not good.
[0004] A dual-purpose raincoat that prevents wetting, comprising:
[0005] A raincoat body, which is provided with an inner side and an outer side. The raincoat body is provided with a window penetrating through the inner side and the outer side. An opening and closing member is arranged on the side of the window where the outer side is located, and the opening and closing member can open or close the window;
[0006] A rain hat, which is connected to the edge of the window. When the window is opened, the rain hat extends out to the side where the outer side is located or retracts to the side where the inner side is located through the window;
[0007] The rain shield includes a first belt body, a second belt body and a connecting member. The first belt body and the second belt body are respectively disposed on the outer side surface and on opposite sides of the window. The connecting portion of the first belt body and the raincoat body is the first fixed end, and the end of the first belt body opposite to the first fixed end is the first swinging end. The connecting portion of the second belt body and the raincoat body is the second fixed end, and the end of the second belt body opposite to the second fixed end is the second swinging end. The connecting member includes at least two connecting portions spaced apart on the first belt body and at least two cooperating portions disposed on the second belt body. The first belt body and the second belt body can be folded relative to the raincoat body so that the first belt body and the second belt body are superposed and attached to cover the position of the window. At this time, at least two of the connecting portions are respectively connected to at least two of the cooperating portions, and in the thickness direction of the first belt body and the second belt body, the first swinging end is located between the second swinging end and the second fixed end, and the second swinging end is located between the first swinging end and the first fixed end.
[0008] In one embodiment, the connecting member is a button. The at least two connecting portions include a first male button and a second male button. The at least two cooperating portions include a first female button and a second female button. The first belt body is provided with opposite first and second surfaces in the thickness direction. The second belt body is provided with opposite third and fourth surfaces in the thickness direction. The second surface is attached to the third surface. The first male button is disposed on the first surface, the second male button is disposed on the second surface, the first female button and the second female button are both disposed on the third surface. After the second male button is buckled with the second female button, the first surface is folded, and the first male button is buckled with the first female button.
[0009] In one embodiment, the first male button and the second male button are spaced apart along the direction from the first fixed end to the first swinging end. The second male button is close to the first swinging end. The distance from the first male button to the first swinging end is greater than the distance from the second male button to the first swinging end. The first female button and the second female button are spaced apart along the direction from the second fixed end to the second swinging end. The second female button is close to the second swinging end. The distance from the first female button to the second swinging end is greater than the distance from the second female button to the second swinging end.
[0010] In one embodiment, on the projection in the thickness direction of the first belt body, the distance from the first male buckle to the second male buckle is a first distance, and on the projection in the thickness direction of the second belt body, the distance from the first female buckle to the second female buckle is a second distance, and the second distance is greater than the first distance. After the second male buckle and the second female buckle are buckled together, the first belt body is folded over so that the first surface is attached to the third surface, the first male buckle and the first female buckle are buckled together, and at the same time, the first swing end is folded towards the first fixed end, and in the thickness direction of the first belt body, the first swing end is located between the second swing end and the second fixed end, and the second swing end is folded towards the second fixed end, and in the thickness direction of the second belt body, the second swing end is located between the first swing end and the first fixed end.
[0011] In one embodiment, a plurality of the first male buckles and the second male buckles are provided, and the first male buckles and the second male buckles are arranged at intervals along a direction perpendicular to the direction from the first swing end to the first fixed end; a plurality of the first female buckles and the second female buckles are provided, and the first female buckles and the second female buckles are arranged at intervals along a direction perpendicular to the direction from the second swing end to the second fixed end.
[0012] In one embodiment, the raincoat body includes a front end and a rear end that are opposite to each other, the window is provided between the front end and the rear end, and the direction from the first belt body to the second belt body is the same as the direction from the front end to the rear end.
[0013] In one embodiment, the opening and closing member is a zipper, and the zipper is respectively connected to the two side edges of the window. When the zipper is opened, the window is in an open state, and when the zipper is closed, the window is in a closed state.
[0014] In one embodiment, the connecting member is a Velcro structure. The at least two connecting portions include a first fuzzy surface and a second fuzzy surface, and the at least two cooperating portions include a first hook surface and a second hook surface. The first belt body is provided with opposite first and second surfaces in the thickness direction, and the second belt body is provided with opposite third and fourth surfaces in the thickness direction. The second surface is attached to the third surface. The first fuzzy surface is provided on the first surface, the second fuzzy surface is provided on the second surface, the first hook surface and the second hook surface are both provided on the third surface. After the second fuzzy surface and the second hook surface are bonded, the first surface is folded over, and the first fuzzy surface and the first hook surface are bonded.
[0015] In one embodiment, the connecting member is a magnetic member. The at least two connecting portions include a first magnet and a second magnet, and the at least two mating portions include a third magnet and a fourth magnet. The first belt body is provided with opposite first and second surfaces along the thickness direction, and the second belt body is provided with opposite third and fourth surfaces along the thickness direction. The second surface is attached to the third surface. After the second magnet and the fourth magnet are adsorbed, the first surface is folded, and the first magnet and the third magnet are adsorbed.
[0016] In one embodiment, the rain shield and the raincoat body are integrally injection molded; and / or,
[0017] The raincoat body and the rain cap are made of waterproof cloth or soft plastic material.
[0018] From the above technical solutions, it can be seen that the embodiments of the present utility model have at least the following advantages and positive effects:
[0019] The anti-wetting dual-purpose raincoat of the embodiment of the present utility model includes a raincoat body, a rain cap and a rain shield. The raincoat body is provided with an inner side and an outer side. The raincoat body is provided with a window penetrating through the outer side and the inner side. An opening and closing member capable of opening or closing the window is provided on the side where the outer side is located. The rain cap is connected to the edge of the window. When the window is opened, the rain cap can extend to the side where the outer side is located or retract to the side where the inner side is located through the window. The rain shield includes a first belt body, a second belt body and a connecting member. The first belt body and the second belt body are respectively arranged on the outer side and are located on opposite sides of the window. The connecting member includes at least two connecting portions spaced apart on the first belt body and at least two mating portions arranged on the second belt body. The first belt body and the second belt body can be folded relative to the raincoat body. The two connecting portions are respectively connected to the at least two mating portions, so that the first belt body and the second belt body are superposed and attached to each other and cover the position of the window, so that the first belt body and the second belt body can respectively block the rainwater on both sides, so as to solve the problem that the rainwater will enter the inner surface of the raincoat body through the window, resulting in the rain cap being wet and the waterproof effect being poor. Description of the Drawings
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0021] Figure 1 It is a schematic structural diagram of the anti-wetting dual-purpose raincoat in the first embodiment of the present utility model in the use state;
[0022] Figure 2For Figure 1 The enlarged structural schematic diagram of area A in the dual-purpose raincoat shown in Figure 1 for preventing wetting;
[0023] Figure 3 For Figure 2 The structural schematic diagram of another view of area A shown in Figure 2 ;
[0024] Figure 4 For Figure 1 The sectional view of the usage state of the position of the rain-blocking belt in the dual-purpose raincoat shown in Figure 1 for preventing wetting.
[0025] The description of the reference numerals is as follows:
[0026] 10. Dual-purpose raincoat for preventing wetting; 100. Raincoat body; 200. Rain hat; 300. Rain-blocking belt;
[0027] 110. Inner side; 120. Outer side; 130. Window; 140. Opening and closing member; 150. Front end; 160. Rear end; 310. First belt body; 311. First fixed end; 312. First swinging end; 313. First surface; 314. Second surface; 320. Second belt body; 321. Second fixed end; 322. Second swinging end; 323. Third surface; 324. Fourth surface; 330. Connecting member; 331. Connecting portion; 3311. First male buckle; 3312. Second male buckle; 332. Fitting portion; 3321. First female buckle; 3322. Second female buckle. Detailed implementation manners
[0028] The typical implementation manners reflecting the features and advantages of the present utility model will be described in detail in the following description. It should be understood that the present utility model can have various changes in different implementation manners, all of which do not depart from the scope of the present utility model, and the descriptions and illustrations therein are essentially for illustrative purposes and not for limiting the present utility model.
[0029] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of the said features. In the description of the present application, "a plurality" means two or more unless otherwise specifically defined.
[0030] In the description of the present application, it should be noted that unless otherwise clearly specified and defined, the terms "set", "connected", and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.
[0031] First, please refer to Figures 1 to 4 , the present utility model provides a dual-purpose raincoat 10 that prevents wetting. The dual-purpose raincoat 10 that prevents wetting can be worn alone on the human body to block rain, or when the user is cycling, it can block rain for both the vehicle and the human body, or it can be covered on the vehicle to block rain alone. The dual-purpose raincoat 10 that prevents wetting includes a raincoat body 100, a rain hat 200, and a rain-blocking belt 300. The raincoat body 100 is provided with an outer side surface 120 and an inner side surface 110 that are opposite to each other. The raincoat body 100 is provided with a window 130. The window 130 penetrates through the outer side surface 120 and the inner side surface 110, and an opening and closing member 140 that can open or close the window 130 is provided on the outer side surface 120. The rain hat 200 is used to be worn on the head, and the rain hat 200 is connected to the edge of the window 130. When the window 130 is opened, the rain hat 200 can extend to the side where the outer side surface 120 is located or retract to the side where the inner side surface 110 is located through the window 130. The rain-blocking belt 300 includes a first belt body 310, a second belt body 320, and a connecting member 330. The first belt body 310 and the second belt body 320 are respectively provided on the outer side surface 120 and are located on opposite sides of the window 130. The connecting member 330 includes at least two connecting portions 331 that are spaced apart on the first belt body 310 and at least two mating portions 332 that are provided on the second belt body 320. The first belt body 310 and the second belt body 320 can be folded relative to the raincoat body 100, and the at least two connecting portions 331 are respectively connected to the at least two mating portions 332, so that the first belt body 310 and the second belt body 320 are superposed and attached to each other and cover the position of the window 130, so that the first belt body 310 and the second belt body 320 can respectively block rainwater on both sides, so as to solve the problem that rainwater will enter the inner side surface 110 of the raincoat body 100 through the window 130, resulting in the rain hat 200 being wetted and the waterproof effect being poor.
[0032] Refer to Figure 1 and Figure 2, the connection position of the first belt body 310 and the raincoat body 100 is the first fixed end 311, and the opposite end of the first belt body 310 to the first fixed end 311 is the first swing end 312. The connection position of the second belt body 320 and the raincoat body 100 is the second fixed end 321, and the opposite end of the second belt body 320 to the second fixed end 321 is the second swing end 322. When the second belt body 320 is folded relative to the raincoat body 100, the second swing end 322 swings circumferentially around the second fixed end 321, and the second belt body 320 adheres to the outer side surface 120. When the first belt body 310 is folded relative to the raincoat body 100, the first swing end 312 swings circumferentially around the first fixed end 311, and the first belt body 310 fits on the second belt body 320. The two connecting parts 331 are respectively connected to the two matching parts 332. At this time, in the thickness direction of the first belt body 310 and the second belt body 320, the first swing end 312 is located between the second swing end 322 and the second fixed end 321, and the second swing end 322 is located between the first swing end 312 and the first fixed end 311. It should be noted that the so-called first swing end 312 and first fixed end 311, second swing end 322 and second fixed end 321 do not only refer to the parts located at the ends. It can be understood that the so-called ends also include the extended parts of the ends. For example, half of the first belt body 310 can all be the first swing end 312, and the other half can all be the first fixed end 311. The same is true for the second belt body 320.
[0033] Reference Figure 2 and Figure 3, in this embodiment, the connecting member 330 is a button. The two connecting portions 331 include a first male button 3311 and a second male button 3312, and the two mating portions 332 include a first female button 3321 and a second female button 3322. The first male button 3311 is fastened to the first female button 3321, and the second male button 3312 is fastened to the second female button 3322. The first belt body 310 is provided with opposite first surface 313 and second surface 314 in the thickness direction, and the second belt body 320 is provided with opposite third surface 323 and fourth surface 324 in the thickness direction. When the first belt body 310 and the second belt body 320 are superposed and attached to each other, the second surface 314 is attached to the third surface 323. The first male button 3311 is disposed on the first surface 313, the second male button 3312 is disposed on the second surface 314, and the first female button 3321 and the second female button 3322 are both disposed on the third surface 323. When the waterproof and convertible raincoat 10 is separately covered on an electric vehicle or a bicycle, in order to prevent the rain cap 200 from being wetted by rain, the rain cap 200 is retracted from the side where the outer side surface 120 is located to the side where the inner side surface 110 is located, and the opening and closing member 140 closes the window 130. At this time, the first belt body 310 and the second belt body 320 are folded so that the second surface 314 is attached to the third surface 323, and the second male button 3312 is relatively fastened to the second female button 3322. Then, the first belt body 310 is continuously folded so that a part of the structure of the first surface 313 is attached to the third surface 323, and the first male button 3311 is relatively fastened to the first female button 3321. It can be understood that the first male button 3311 and the second male button 3312 can also be relatively disposed on the third surface 323 and the fourth surface 324, and the first female button 3321 and the second female button 3322 are disposed on the first surface 313. During use, the fourth surface 324 is attached to the first surface 313, and then the second belt body 320 is continuously folded so that a part of the structure of the third surface 323 is attached to the first surface 313.
[0034] The first male buckle 3311 and the second male buckle 3312 are arranged at intervals along the direction from the first fixed end 311 to the first swing end 312. The second male buckle 3312 is arranged on the side close to the first swing end 312. The distance from the first male buckle 3311 to the first swing end 312 is greater than the distance from the second male buckle 3312 to the first swing end 312, that is, the second male buckle 3312 is closer to the first swing end 312 than the first male buckle 3311. The first female buckle 3321 and the second female buckle 3322 are arranged at intervals along the direction from the second fixed end 321 to the second swing end 322. The second female buckle 3322 is close to the second swing end 322. The distance from the first female buckle 3321 to the second swing end 322 is greater than the distance from the second female buckle 3322 to the second swing end 322, that is, the second female buckle 3322 is closer to the second swing end 322 than the first female buckle 3321. The second male buckle 3312 is close to the first swing end 312 and the second female buckle 3322 is close to the second swing end 322, so that after the second male buckle 3312 is buckled with the second female buckle 3322, the first belt body 310 will not cover the first female buckle 3321, so that the first male buckle 3311 can be turned over and buckled with the first female buckle 3321. It should be noted that in other embodiments, the first male buckle 3311 and the second male buckle 3312 can also be respectively arranged on the first surface 313 and the second surface 314, and the first male buckle 3311 and the second male buckle 3312 are arranged opposite to each other along the thickness direction of the first belt body 310, that is, the distance from the first male buckle 3311 to the first swing end 312 is equal to the distance from the second male buckle 3312 to the first swing end 312. The first female buckle 3321 and the second female buckle 3322 are arranged at intervals on the third surface 323. In this embodiment, after the second male buckle 3312 is buckled with the second female buckle 3322, the second belt body 320 is turned over so that the first female buckle 3321 is turned over to the upper part of the first male buckle 3311 and buckled with the first male buckle 3311.
[0035] Reference Figures 2 to 4, on the projection in the thickness direction of the first belt body 310, the distance from the first male buckle 3311 to the second male buckle 3312 is the first distance, and on the projection in the thickness direction of the second belt body 320, the distance from the first female buckle 3321 to the second female buckle 3322 is the second distance. The second distance is greater than the first distance, so that when the first belt body 310 is folded over and the first male buckle 3311 is buckled to the first female buckle 3321, the second belt body 320 can be driven to fold over to form a looped structure. When the second surface 314 is attached to the third surface 323, the second male buckle 3312 and the second female buckle 3322 are first buckled, and then the part of the first belt body 310 between the first fixed end 311 and the first swing end 312 is folded over so that the first male buckle 3311 is aligned and buckled with the first female buckle 3321, and the first surface 313 is attached to the third surface 323. At this time, the first swing end 312 folds towards the direction close to the first fixed end 311 and forms a loop structure, and the second swing end 322 is folded towards the direction close to the second fixed end 321 under the drive of the first belt body 310 and forms a loop structure. In the thickness direction of the first belt body 310 and the second belt body 320, the first swing end 312 is located between the second swing end 322 and the second fixed end 321, and the second swing end 322 is located between the first swing end 312 and the first fixed end 311. It should be noted that the loop structure formed by the first belt body 310 and the loop structure formed by the second belt body 320 can prevent rainwater from entering the window 130. For example, when rainwater passes through the joint of the first belt body 310 and the second belt body 320 and flows along the third surface 323 into the space between the first belt body 310 and the second belt body 320, this loop structure can block the rainwater from further dripping onto the window 130 and prevent the rain cap 200 from being soaked.
[0036] A plurality of first male buckles 3311 and second male buckles 3312 are provided, and the first male buckles 3311 and the second male buckles 3312 are both arranged at intervals along the direction perpendicular to the line from the first swing end 312 to the first fixed end 311. A plurality of first female buckles 3321 and second female buckles 3322 are provided, and the first female buckles 3321 and the second female buckles 3322 are both arranged at intervals along the direction perpendicular to the line from the second swing end 322 to the second fixed end 321. The plurality of first male buckles 3311 are buckled with the plurality of first female buckles 3321, and the plurality of second male buckles 3312 are buckled with the second female buckles 3322, so that the connection between the first belt body 310 and the second belt body 320 is more tightly and firmly connected.
[0037] Reference Figure 1, the raincoat body 100 includes opposite front end 150 and rear end 160. A window 130 is provided between the front end 150 and the rear end 160. The interval direction between the first belt 310 and the second belt 320 is the same as the direction from the front end 150 to the rear end 160. Usually in the use state, when the raincoat body 100 covers an electric vehicle or a bicycle, the front end 150 covers the front side part of the electric vehicle or the bicycle, and the rear end 160 covers the rear side part of the electric vehicle or the bicycle. The front side and the rear side of the vehicle are slightly higher than the middle part, so that a concave area is formed between the front end 150 and the rear end 160 of the raincoat body 100. Rainwater flows towards the window 130 along the direction from the front end 150 to the rear end 160 and along the direction from the rear end 160 to the front end 150. The first belt 310 and the second belt 320 are provided on both sides of the window 130, and the first belt 310 and the second belt 320 are respectively located on the rainwater flow path, so that the first belt 310 and the second belt 320 block rainwater from flowing into the window 130. It can be understood that the interval setting direction of the first belt 310 and the second belt 320 can also be adjusted according to the direction in which the raincoat body 100 covers the vehicle, as long as rainwater can be blocked from entering the window 130.
[0038] Reference Figure 3 , in this embodiment, the opening and closing member 140 is a zipper. The zipper is respectively connected to the two side edges of the window 130. When the zipper is opened, the window 130 is in an open state, and the rain cap 200 can be retracted from the side where the outer surface 120 is located to the side where the inner surface 110 is located through the window 130. When the zipper is closed, the window 130 is in a closed state, preventing rainwater from accidentally splashing into the window 130. When wearing, pull the rain cap 200 out through the window 130 to the outer surface 120. The user's head passes through the window 130 from the side where the inner surface 110 is located to the side where the outer surface 120 is located through the window 130, so that the rain cap 200 is sleeved on the head. When use is completed, the head is retracted to the side where the inner surface 110 is located through the window 130 to take off the raincoat. Pull the rain cap 200 back to the side where the inner surface 110 is located through the window 130 and zip up the zipper to ensure that the inner side of the rain cap 200 will not be soaked by rainwater. It should be noted that the opening and closing member 140 can also be a magic tape or the like, so that the two side edges of the window 130 are adhered to each other to close the window 130.
[0039] The rain-blocking belt 300 and the raincoat body 100 are of an integrally injection-molded structure, so that there will be no water leakage at the connection between the rain-blocking belt 300 and the raincoat body 100. It can be understood that the rain-blocking belt 300 and the raincoat body 100 can also be integrally woven and formed.
[0040] The raincoat body 100 and the rain cap 200 are made of waterproof cloth material or soft plastic material, so that the dual-purpose raincoat 10 that prevents wetting can be waterproof.
[0041] In one embodiment, the connecting member 330 can also be a Velcro structure. At least two connecting portions 331 include a first fuzzy surface and a second fuzzy surface, and at least two mating portions 332 include a first hook surface and a second hook surface. The first hook surface is attached to the first fuzzy surface, and the second hook surface is attached to the second fuzzy surface. The first fuzzy surface is disposed on the first surface 313, the second fuzzy surface is disposed on the second surface 314, and the first hook surface and the second hook surface are both disposed on the third surface 323. When the first belt body 310 and the second belt body 320 are superposed and attached to each other, the second surface 314 is attached to the third surface 323, and the second fuzzy surface is adhesively fixed to the second hook surface. Then, the first belt body 310 is further folded over so that a part of the structure of the first surface 313 is attached to the third surface 323, and the first fuzzy surface is adhesively fixed to the first hook surface. At the same time, the first belt body 310 and the second belt body 320 form a loop structure to block rainwater.
[0042] In another embodiment, the connecting member 330 can also be a magnetic member structure. At least two connecting portions 331 include a first magnet and a second magnet, and at least two mating portions 332 include a third magnet and a fourth magnet. The first magnet is adsorbed to the third magnet, and the second magnet is adsorbed to the fourth magnet. The first magnet is disposed on the first surface 313 or embedded in the first belt body 310 near the first surface 313, the second magnet is disposed on the second surface 314 or embedded in the first belt body 310 near the second surface 314, and the third magnet and the fourth magnet are both disposed on the third surface 323 or embedded in the second belt body 320 near the third surface 323. When the first belt body 310 and the second belt body 320 are superposed and attached to each other, the second surface 314 is attached to the third surface 323, and the second magnet is magnetically adsorbed to the fourth magnet. Then, the first belt body 310 is further folded over so that a part of the structure of the first surface 313 is attached to the third surface 323, and the first magnet is adsorbed to the third magnet. At the same time, the first belt body 310 and the second belt body 320 form a loop structure to block rainwater. It should be noted that the magnet can be a soft magnet so that the magnet can be bent along with the first belt body 310 and the second belt body 320.
[0043] Although the present invention has been described with reference to several exemplary embodiments, it should be understood that the terms used are illustrative and exemplary, rather than restrictive. Since the present invention can be embodied in many forms without departing from the spirit or essence of the invention, it should be understood that the above-described embodiments are not limited to any of the foregoing details, but should be broadly construed within the spirit and scope defined by the appended claims. Therefore, all changes and modifications falling within the scope of the claims or their equivalents should be covered by the appended claims.
Claims
1. A dual-purpose raincoat that prevents wetting, characterized in that: include: The raincoat body is provided with an inner side and an outer side, the raincoat body is provided with a window penetrating the inner side and the outer side, the window is provided with an opening and closing piece on the side where the outer side is located, and the opening and closing piece can open or close the window; A rain cap connected to the edge of the window, when the window is opened, the rain cap extends through the window to the side where the outer side is located or retracts to the side where the inner side is located; The rainproof belt comprises a first belt body, a second belt body and a connecting member, wherein the first belt body and the second belt body are respectively arranged on the outer side surface and located on opposite sides of the window, the connecting portion of the first belt body and the raincoat body is a first fixed end, the first belt body at an end opposite to the first fixed end is a first swing end, the connecting portion of the second belt body and the raincoat body is a second fixed end, and the second belt body at an end opposite to the second fixed end is a second swing end, the connecting member comprises at least two connecting portions spaced apart on the first belt body, and at least two matching portions arranged on the second belt body; the first belt body and the second belt body can be folded relative to the raincoat body so that the first belt body and the second belt body are superimposed, attached to and covered at the position of the window, at which time at least two of the connecting portions are respectively connected to at least two of the matching portions, and along the thickness direction of the first belt body and the second belt body, the first swing end is located between the second swing end and the second fixed end, and the second swing end is located between the first swing end and the first fixed end.
2. The anti-wetting dual-purpose raincoat according to claim 1, characterized in that: The connecting piece is a button, the at least two connecting parts include a first male button and a second male button, the at least two matching parts include a first female button and a second female button, the first belt body is provided with a first surface and a second surface opposite to each other along the thickness direction, the second belt body is provided with a third surface and a fourth surface opposite to each other along the thickness direction, the second surface is fitted with the third surface, the first male button is provided on the first surface, the second male button is provided on the second surface, the first female button and the second female button are both provided on the third surface, after the second male button is fastened with the second female button, the first surface is folded over, and the first male button is fastened with the first female button.
3. The anti-wetting dual-purpose raincoat according to claim 2, characterized in that: The first male buckle and the second male buckle are spaced apart along the direction from the first fixed end to the first swing end, the second male buckle is close to the first swing end, and the distance from the first male buckle to the first swing end is greater than the distance from the second male buckle to the first swing end; the first female buckle and the second female buckle are spaced apart along the direction from the second fixed end to the second swing end, the second female buckle is close to the second swing end, and the distance from the first female buckle to the second swing end is greater than the distance from the second female buckle to the second swing end.
4. The anti-wetting dual-purpose raincoat according to claim 3, characterized in that: On the projection in the thickness direction of the first belt body, the distance from the first male buckle to the second male buckle is a first distance, and on the projection in the thickness direction of the second belt body, the distance from the first female buckle to the second female buckle is a second distance, and the second distance is greater than the first distance. When the second male buckle is fastened with the second female buckle, the first belt body is folded until the first surface is in contact with the third surface, the first male buckle is fastened with the first female buckle, and at the same time, the first swing end is folded toward the first fixed end, and the first swing end is located between the second swing end and the second fixed end along the thickness direction of the first belt body, and the second swing end is folded toward the second fixed end, and the second swing end is located between the first swing end and the first fixed end along the thickness direction of the second belt body.
5. The anti-wetting dual-purpose raincoat according to claim 2, characterized in that: The first male buckle and the second male buckle are both provided in plurality, and the first male buckle and the second male buckle are both arranged at intervals along a direction perpendicular to the first swing end to the first fixed end; the first female buckle and the second female buckle are both provided in plurality, and the first female buckle and the second female buckle are both arranged at intervals along a direction perpendicular to the second swing end to the second fixed end.
6. The anti-wetting dual-purpose raincoat according to claim 1, characterized in that: The raincoat body comprises a front end and a rear end opposite to each other, the window is arranged between the front end and the rear end, and the direction from the first belt body to the second belt body is the same as the direction from the front end to the rear end.
7. The anti-wetting dual-purpose raincoat according to claim 1, characterized in that: The opening and closing member is a zipper, and the zipper is respectively connected to the two side edges of the window. When the zipper is opened, the window is in an open state, and when the zipper is closed, the window is in a closed state.
8. The anti-wetting dual-purpose raincoat according to claim 1, characterized in that: The connecting piece is a Velcro structure, the at least two connecting parts include a first furry surface and a second furry surface, the at least two matching parts include a first hook surface and a second hook surface, the first belt body is provided with a first surface and a second surface opposite to each other along the thickness direction, the second belt body is provided with a third surface and a fourth surface opposite to each other along the thickness direction, the second surface is fitted with the third surface, the first furry surface is provided on the first surface, the second furry surface is provided on the second surface, the first hook surface and the second hook surface are both provided on the third surface, after the second furry surface is bonded to the second hook surface, the first surface is folded over, and the first furry surface is bonded to the first hook surface.
9. The anti-wetting dual-purpose raincoat according to claim 1, characterized in that: The connecting member is a magnetic attraction member, the at least two connecting parts include a first magnet and a second magnet, the at least two matching parts include a third magnet and a fourth magnet, the first belt body is provided with a first surface and a second surface relative to each other along the thickness direction, the second belt body is provided with a third surface and a fourth surface relative to each other along the thickness direction, the second surface is fitted with the third surface, after the second magnet is attracted to the fourth magnet, the first surface is folded, and the first magnet is attracted to the third magnet.
10. The anti-wetting dual-purpose raincoat according to any one of claims 1 to 9, characterized in that: The rain shield and the raincoat body are integrally injection molded; and / or, The raincoat body and the rain cap are made of waterproof cloth or soft plastic material.