CN215583202U - Light and thin windproof warm-keeping coat - Google Patents
Light and thin windproof warm-keeping coat Download PDFInfo
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- CN215583202U CN215583202U CN202022947420.4U CN202022947420U CN215583202U CN 215583202 U CN215583202 U CN 215583202U CN 202022947420 U CN202022947420 U CN 202022947420U CN 215583202 U CN215583202 U CN 215583202U
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Abstract
The utility model relates to a light and thin windproof and warm-keeping coat which comprises a coat main body (1), a collar (2) arranged at the top of the coat main body (1), a warm-keeping surrounding collar (3) with a middle part opened front is sewn on the inner side of the collar (2), and the opened front positions of the warm-keeping surrounding collar (3) are movably connected through a zipper (4). Compared with the prior art, the utility model discloses can effectually prevent that the body surface temperature from giving off, have stronger cold-proof effect, cold-proof enclose the collar and enclose in user's neck department, can effectual prevention cold wind bore into from the collar of overcoat, can satisfy consumers in general's the demand of keeping out the cold.
Description
Technical Field
The utility model belongs to the technical field of functional clothes, and relates to a light and thin windproof and warm-keeping coat.
Background
The coat can be called as overcoat, is a garment worn on the outermost side and can cover other clothes of the upper body, generally plays a role in keeping warm or resisting rain, promotes the continuous development of the garment technology along with the improvement of the living standard of people along with the social progress, and simultaneously enables the form of the coat to be gradually changed from single to various.
The existing light and thin coat is poor in warm-keeping and wind-proof performance, the cold-resisting requirement of people cannot be well met, and in the use process of the existing light and thin coat, wind can be blown into the coat from a collar, so that the warm-keeping effect of the coat is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a light and thin windproof and warm-keeping coat, and solves the problems that the existing light and thin coat is poor in warm-keeping and windproof performance and cannot well meet the cold-resisting requirement of people, and in the using process of the existing light and thin coat, wind can be blown into the coat from a collar to affect the warm-keeping effect of the coat.
The purpose of the utility model can be realized by the following technical scheme:
a light and thin windproof warm-keeping coat comprises a coat main body and a collar arranged at the top of the coat main body, and is characterized in that a warm-keeping surrounding collar with a middle part opened front is sewn on the inner side of the collar, and the opened front positions of the warm-keeping surrounding collar are movably connected through a zipper.
Furthermore, the coat main body comprises a waterproof layer, a radiation-proof layer, a wind-proof layer, a sun-proof layer, a warm-keeping layer and a lining, wherein the radiation-proof layer is arranged on the inner side of the waterproof layer, the wind-proof layer is arranged on the inner side of the radiation-proof layer, the sun-proof layer is arranged on the inner side of the wind-proof layer, the warm-keeping layer is arranged on the inner side of the sun-proof layer, and the lining is arranged on the inner side of the warm-keeping layer.
Furthermore, the radiation-proof layer is formed by interweaving microwave radiation-proof fiber yarns. More preferably, the microwave radiation resistant fiber is polyester fiber filament with silver-plated outer surface.
Still more preferably, the microwave radiation resistant fibers have a strength of 2.6 to 5.7 cn/dtex.
Furthermore, the windproof layer is formed by interweaving polyurethane fiber yarns.
Furthermore, the sun-proof layer is formed by weaving nanometer bamboo charcoal fiber yarns.
Furthermore, the warm-keeping layer is formed by blending animal fiber yarns and polyimide fiber yarns.
Furthermore, sleeves are sewn at the tops of the left side and the right side of the outer sleeve, and tightening belts are sewn at the outer sides of the sleeves.
Furthermore, one end of the tightening belt is adhered to the outer side of the sleeve opening of the sleeve through a magic tape.
Furthermore, pockets are sewn on the left side and the right side of the front of the coat, and the two sides of the middle of the front of the coat are movably connected through buttons.
Compared with the prior art, the utility model has the following advantages:
1. this frivolous cold-proof overcoat of preventing wind through the improvement on cold-proof layer, and cold-proof layer is formed by animal fiber silk and polyimide fiber silk blending, and polyimide fiber silk possesses porous structure, and the coefficient of thermal conductivity is low, can effectually prevent that the body surface temperature from giving off, has stronger cold-proof effect, still has good air permeability and compliance simultaneously, and simultaneously, animal fiber silk warmth retention is good, and the moisture absorption can be strong, can satisfy consumers's the demand of keeping out the cold.
2. This frivolous cold-proof overcoat of preventing wind, through the waterproof layer, the setting on radiation protection layer and windproof layer, the PU film has splendid moisture permeability except having high waterproof performance, human sweat can freely pierce through in the overcoat, the radiation protection layer has the ability of separation protection to the radiation, can prevent the injury of radiation to the human body, and windproof layer cooperates with the waterproof layer, has improved the effect that the overcoat is prevent wind greatly on guaranteeing waterproof basis, has strengthened the result of use of overcoat.
3. This frivolous cold-proof overcoat of preventing wind through the setting on sun-proof layer, and nanometer bamboo charcoal fiber silk has fine separation ultraviolet effect, and the texture is light, and intensity is high, still has good acid and alkali resistance light fastness, has improved the sun-proof function of overcoat.
4. This frivolous cold-proof overcoat of preventing wind through the setting of cold-proof collarband, upwards taut zip fastener, can cold-proof collarband encloses in user's neck department, can effectually prevent that the cold wind from the collar of overcoat from drilling into, and further, improved the cold-proof effect of overcoat. Meanwhile, the thermal collar is only arranged at the collar, and the lightness and thinness of the coat can be ensured.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic cross-sectional view of the internal structure of the jacket body;
the notation in the figure is:
1-a jacket body; 101-a waterproof layer; 102-a radiation protection layer; 103-windproof layer; 104-a sunscreen layer; 105-a thermal insulation layer; 106-inner liner; 2-collar; 3-a warm-keeping collar; 4, a zipper; 5-sleeves; 6-tightening the belt; 7-magic tape; 8-pocket; 9-button.
Detailed Description
The utility model is described in detail below with reference to the figures and specific embodiments. The present embodiment is implemented on the premise of the technical solution of the present invention, and a detailed implementation manner and a specific operation process are given, but the scope of the present invention is not limited to the following embodiments.
In the following embodiments or examples, functional components or structures that are not specifically described are all conventional components or structures used in the art to achieve the corresponding functions.
In order to solve the problems that the existing light and thin coat is poor in heat preservation and wind prevention performance and cannot well meet the cold protection requirements of people, and in the using process of the existing light and thin coat, wind can be blown into the coat from a collar to affect the heat preservation effect of the coat, the light and thin wind prevention and heat preservation coat provided by the utility model has the structure shown in figure 1 and comprises a coat main body 1 and a collar 2 arranged at the top of the coat main body 1, and is characterized in that a heat preservation surrounding collar 3 with a middle part opened at the front is sewn on the inner side of the collar 2, and the front opening positions of the heat preservation surrounding collar 3 are movably connected through a zipper 4.
In a specific embodiment, referring to fig. 2 again, the coat body 1 is composed of a waterproof layer 101, an anti-radiation layer 102, a windproof layer 103, a sun-protection layer 104, a thermal insulation layer 105 and an inner liner 106, wherein the anti-radiation layer 102 is disposed on the inner side of the waterproof layer 101, the windproof layer 103 is disposed on the inner side of the anti-radiation layer 102, the sun-protection layer 104 is disposed on the inner side of the windproof layer 103, the thermal insulation layer 105 is disposed on the inner side of the sun-protection layer 104, and the inner liner 106 is disposed on the inner side of the thermal insulation layer 105.
In a more specific embodiment, the radiation protection layer 102 is formed by interweaving microwave radiation resistant fiber yarns, and preferably, the microwave radiation resistant fiber yarns are polyester fiber yarns with silver-plated outer surfaces.
Still more preferably, the microwave radiation resistant fibers have a strength of 2.6 to 5.7 cn/dtex.
In a more specific embodiment, the windproof layer 103 is formed by interweaving polyurethane fiber yarns.
In a more specific embodiment, the sunscreen layer 104 is woven by using bamboo charcoal nano fiber.
In a more specific embodiment, the thermal layer 105 is formed by blending animal fiber yarn and polyimide fiber yarn.
In a specific embodiment, sleeves 5 are sewn on top portions of both left and right sides of the jacket body 1, and tightening bands 6 are sewn outside the sleeves 5.
Furthermore, one end of the tightening belt 6 is adhered to the outside of the sleeve opening of the sleeve 5 by a magic tape 7.
In a specific embodiment, pockets 8 are sewn on the left and right sides of the front surface of the coat main body 1, and the two sides of the middle part of the front surface of the coat main body 1 are movably connected through buttons 9.
The above embodiments may be implemented individually, or in any combination of two or more.
The above embodiments will be described in more detail with reference to specific examples.
Example 1:
a light and thin windproof warm-keeping coat comprises a coat main body 1, a collar 2 and a warm-keeping surrounding collar 3, wherein the collar 2 is arranged at the top of the coat main body 1, the warm-keeping surrounding collar 3 is sewn on the inner side of the collar 2, and the middle of the front side of the warm-keeping surrounding collar 3 is movably connected through a zipper 4.
Through the setting of cold-proof scarf 3, upwards taut zip fastener 2, can cold-proof scarf 3 encloses in user's neck department, can effectually prevent that cold wind from the collar 2 of overcoat main part 1 from drilling into, and further, improved the cold-proof effect of overcoat main part 1.
Example 2:
a light and thin windproof warm-keeping coat comprises a coat main body 1, a collar 2 and a warm-keeping surrounding collar 3, wherein the collar 2 is arranged at the top of the coat main body 1, the warm-keeping surrounding collar 3 is sewn on the inner side of the collar 2, and the middle of the front side of the warm-keeping surrounding collar 3 is movably connected through a zipper 4.
The coat main body 1 comprises a waterproof layer 101, an anti-radiation layer 102, a windproof layer 103, a sun-proof layer 104, a warm-keeping layer 105 and a lining 106, wherein the anti-radiation layer 102 is arranged on the inner side of the waterproof layer 101, the anti-radiation layer 102 is formed by interweaving anti-microwave radiation fibers, the anti-microwave radiation fibers are polyester fibers with silver-plated outer surfaces, so that a good anti-microwave radiation effect can be achieved, meanwhile, the antibacterial performance is improved to a certain extent, the strength of the anti-microwave radiation fibers is about 2.6-5.7cn/dtex, the waterproof layer 101 is made of PU films, the windproof layer 103 is arranged on the inner side of the anti-radiation layer 102, the windproof layer 103 is formed by interweaving polyurethane fibers, the sun-proof layer 104 is arranged on the inner side of the anti-wind layer 103, the sun-proof layer 104 is formed by blending nano bamboo charcoal fibers, the warm-keeping layer 105 is arranged on the inner side of the sun-proof layer 104, the warm-keeping layer 105 is formed by blending animal fibers and polyimide fibers, the inner liner 106 is provided inside the thermal layer 105.
Through the improvement of cold-proof layer 105, cold-proof layer 105 is formed by animal fiber silk and polyimide fiber silk blending, and polyimide fiber silk possesses porous structure, and the coefficient of thermal conductivity is low, can effectually prevent that the body surface temperature from giving off, has stronger cold-proof effect, still has good air permeability and compliance simultaneously, and simultaneously, animal fiber silk warmth retention is good, and the moisture absorption can be strong, can satisfy consumers in general's the demand of keeping out the cold.
Through waterproof layer 101, the setting on radiation protection layer 102 and prevent wind layer 103, the PU film has splendid moisture permeability except that having high waterproof performance, human sweat can freely pierce through in overcoat main part 1, radiation protection layer 102 has the ability of separation protection to the radiation, can prevent the injury of radiation to the human body, and prevent wind layer 103 and waterproof layer 101 and cooperate in coordination, improved the effect that overcoat main part 1 was prevent wind greatly on guaranteeing waterproof basis, the result of use of overcoat main part 1 has been strengthened.
Through the setting of sun-proof layer 104, nanometer bamboo charcoal fiber has fine separation ultraviolet effect, and the texture is light, and intensity is high, still has good acid and alkali resistance light fastness, has improved the sun-proof function of overcoat main part 1.
Example 3:
a light and thin windproof warm-keeping coat comprises a coat main body 1, a collar 2 and a warm-keeping surrounding collar 3, wherein the collar 2 is arranged at the top of the coat main body 1, the warm-keeping surrounding collar 3 is sewn on the inner side of the collar 2, and the middle of the front side of the warm-keeping surrounding collar 3 is movably connected through a zipper 4.
The coat main body 1 comprises a waterproof layer 101, an anti-radiation layer 102, a windproof layer 103, a sun-proof layer 104, a warm-keeping layer 105 and an inner lining 106, wherein the anti-radiation layer 102 is arranged on the inner side of the waterproof layer 101, the anti-radiation layer 102 is formed by interweaving microwave radiation resistant fiber yarns, the intensity of the microwave radiation resistant fiber is 2.6-5.7cn/dtex, the waterproof layer 101 is made of a PU film, the windproof layer 103 is arranged on the inner side of the anti-radiation layer 102, the windproof layer 103 is formed by interweaving polyurethane fiber yarns, the sun-proof layer 104 is arranged on the inner side of the windproof layer 103, the sun-proof layer 104 is formed by blending nano bamboo charcoal fiber yarns, the warm-keeping layer 105 is arranged on the inner side of the sun-keeping layer 104, the warm-keeping layer 105 is formed by blending animal fiber yarns and polyimide fiber yarns, and the inner lining 106 is arranged on the inner side of the warm-keeping layer 105.
The cuffs of the sleeves 5 can be adjusted by the tightening belts 6, so that the cuffs of the sleeves 5 are tightened, and the applicability of the coat is improved.
It is to be noted that the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (8)
1. A light and thin windproof warm-keeping coat comprises a coat main body (1) and a collar (2) arranged at the top of the coat main body (1), and is characterized in that a warm-keeping surrounding collar (3) with a middle part opened front is sewn at the inner side of the collar (2), and the opened front positions of the warm-keeping surrounding collar (3) are movably connected through a zipper (4);
the coat main body (1) is composed of a waterproof layer (101), a radiation protection layer (102), a windproof layer (103), a sun protection layer (104), a warm-keeping layer (105) and a lining (106), wherein the radiation protection layer (102) is arranged on the inner side of the waterproof layer (101), the windproof layer (103) is arranged on the inner side of the radiation protection layer (102), the sun protection layer (104) is arranged on the inner side of the windproof layer (103), the warm-keeping layer (105) is arranged on the inner side of the sun protection layer (104), and the lining (106) is arranged on the inner side of the warm-keeping layer (105).
2. The lightweight thin windproof thermal coat according to claim 1, wherein said radiation protective layer (102) is formed by interweaving microwave radiation resistant fiber yarns.
3. The light and thin windproof and warm-keeping coat according to claim 2, wherein the microwave radiation resistant fibers are polyester fibers with silvered outer surfaces.
4. The light and thin windproof and warm-keeping coat according to claim 1, characterized in that the windproof layer (103) is formed by interweaving polyurethane fiber yarns.
5. The light and thin windproof and warm-keeping coat according to claim 1, characterized in that the sunscreen layer (104) is woven from bamboo charcoal nano-fibers.
6. The light and thin windproof and warm-keeping coat according to claim 1, characterized in that sleeves (5) are sewn on the top of the left and right sides of the coat body (1), and tightening bands (6) are sewn on the outer sides of the sleeves (5).
7. The light and thin windproof and warm-keeping coat according to claim 6, characterized in that one end of the tightening belt (6) is adhered to the outside of the sleeve opening of the sleeve (5) through the magic tape (7).
8. The light and thin windproof and warm-keeping coat according to claim 1, characterized in that pockets (8) are sewn on the left and right sides of the front face of the coat main body (1), and the two sides of the middle part of the front face of the coat main body (1) are movably connected through buttons (9).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022947420.4U CN215583202U (en) | 2020-12-11 | 2020-12-11 | Light and thin windproof warm-keeping coat |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022947420.4U CN215583202U (en) | 2020-12-11 | 2020-12-11 | Light and thin windproof warm-keeping coat |
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CN215583202U true CN215583202U (en) | 2022-01-21 |
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CN202022947420.4U Active CN215583202U (en) | 2020-12-11 | 2020-12-11 | Light and thin windproof warm-keeping coat |
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