CN210581087U - Warm-keeping woolen coat - Google Patents
Warm-keeping woolen coat Download PDFInfo
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- CN210581087U CN210581087U CN201921304393.XU CN201921304393U CN210581087U CN 210581087 U CN210581087 U CN 210581087U CN 201921304393 U CN201921304393 U CN 201921304393U CN 210581087 U CN210581087 U CN 210581087U
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Abstract
The utility model discloses a warm-keeping type woolen coat relates to clothing clothes technical field, and it is so good that it does not have the down coat to aim at solving current windcoat warmth retention property when winter, therefore has the technical problem that probably catches a cold easily, and its technical scheme main points are including woolen layer and imitative numb layer, imitative numb layer sets up in the outside on woolen layer and through composite connection, the inboard wall of woolen layer is provided with the graphite alkene zone of heating, a side surface that the graphite alkene zone of heating is close to woolen layer is provided with the son and buckles, a side surface that the woolen layer is close to the graphite alkene zone of heating is provided with the box, graphite alkene zone of heating electricity is connected with power supply unit, it has regulating switch to establish ties between power supply unit and the graphite alkene zone of heating. The effect that the heat can be automatically generated in a relatively cold time, the heat is supplemented to the user, and the risk of catching a cold of the user is reduced is achieved.
Description
Technical Field
The utility model relates to a clothing clothes technical field, more specifically say, it relates to a thermal type woolen coat.
Background
The wind coat is a windproof light and thin overcoat. The wind coat is one of clothes, is suitable for wearing outside in spring, autumn and winter, and is a popular clothes for nearly two thirty years. Due to the characteristics of flexible and changeable shape, body-building, unrestrained and unrestrained, beautiful and practical, novel style, convenient carrying, charm and the like, the wind coat is deeply loved by middle-aged and young men and women, and the old also love to wear at present.
The prior Chinese patent with the publication number of CN208232493U discloses a linen-like hand-feeling high-count overcoat fabric, which comprises an overcoat layer, a functional layer and a linen-like layer which are sequentially compounded from inside to outside, wherein the functional layer is formed by sequentially compounding a heat-insulating layer, an isolating layer, a breathable layer and a waterproof layer, the linen-like layer is a changed warp-weft-interwoven warp-rib structure, the overcoat layer is compositely connected with the heat-insulating layer, and the waterproof layer is compositely connected with the linen-like layer.
The wind coat is popular with users due to stiff and smooth shape and shape, and particularly in winter, the wind coat is not as bulky as down coats, and the wind coat is obvious in a plurality of down coats. However, the existing wind coat has less good heat retention performance than a down coat in winter, so that the existing wind coat has the possibility of easily catching a cold, and needs to be improved.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims to provide a thermal type woolen coat, it has can generate heat automatically in comparatively chilly, carries out the heat supply to the user, reduces the advantage that the user catches a cold the risk.
In order to achieve the above purpose, the utility model provides a following technical scheme:
the utility model provides a warm-keeping type woolen coat, includes layer and imitative numb layer, imitative numb layer sets up in the outside on layer and through compound connection, the inboard wall of woolen layer is provided with the graphite alkene zone of heating, a side surface that the graphite alkene zone of heating is close to the layer of woolen is provided with the son and detains, a side surface that the layer of woolen is close to the graphite alkene zone of heating is provided with the box, graphite alkene zone of heating electricity is connected with power supply unit, it has regulating switch to establish ties between power supply unit and the graphite alkene zone of heating.
Through adopting above-mentioned technical scheme, the graphite alkene zone of heating circular telegram that sets up in the layer produces the heat to compensate human heat, make the inside temperature of wind coat can keep invariable, improved the warmth retention property of wind coat. The heating combination with the graphene heating layer is achieved through the self, heat is reduced through the woolen layer and is dissipated outwards, and therefore the warm keeping performance of the wind coat is greatly improved, and the risk of catching a cold can be reduced while a user keeps a good image. The son is detained and is cooperated with the box and make the graphite alkene zone of heating convenient to detach for the layer of wool to it unloads the save to be convenient for with electric heating device when not needing the heating.
Further, be provided with the cotton layer of heat preservation on the surface that the layer is close to the graphite alkene zone of heating, the box is inlayed and is put in the cotton layer of heat preservation.
Through adopting above-mentioned technical scheme, the setting on heat preservation cotton layer can reduce the heat and outwards give off to improve the warmth retention property on layer, make the heat furthest preserve in the middle of the clothes.
Further, a skin-friendly heat insulation layer is arranged on the surface of one side, far away from the woolen layer, of the graphene heating layer.
Through adopting above-mentioned technical scheme, the setting up of close skin heat preservation makes that the one deck cold-proof layer has been increased between graphite alkene zone of heating and the layer of woolen cloth and the user health to carry out the temperature transition through cold-proof layer, alleviate heat direct transfer and give the user health, reduce the risk of low temperature scald, the setting up of close skin heat preservation simultaneously can also adsorb the sweat.
Further, a nylon hook belt is arranged on the surface of one side, close to the graphene heating layer, of the skin-friendly heat insulation layer, and a nylon velvet belt is arranged on the surface of one side, close to the skin-friendly heat insulation layer, of the graphene heating layer.
Through adopting above-mentioned technical scheme, the setting in nylon hook area and nylon velvet area is convenient for dismantle the skin-friendly heat preservation and get off and wash to keep the graphite alkene zone of heating in the middle of clean.
Furthermore, a pocket is sewn at the bottom end of the skin-friendly heat-insulating layer, and the power supply device and the regulating switch are both arranged in the pocket.
Through adopting above-mentioned technical scheme, the setting of pocket is convenient for place power supply unit and regulating switch wherein to be convenient for fix power supply unit and regulating switch in the windbreaker, power supply unit and regulating switch have certain dead weight simultaneously, can improve the sag of windbreaker, make the windbreaker stiff and smooth.
Furthermore, one end of the pocket is a blind end, and a button hole are arranged on the side wall of the other end of the pocket.
Through adopting above-mentioned technical scheme, the one end that the blind end was kept away from to the pocket is convenient for seal in the setting of button and button hole to be convenient for fix power supply unit and regulating switch inside the pocket, prevent that power supply unit and regulating switch from falling out from the pocket.
Furthermore, a windproof layer is compositely connected between the wool layer and the linen-like layer.
By adopting the technical scheme, the gap between the woolen layer and the linen-like layer is reduced on the windproof layer, so that the windproof performance of the wind coat is improved, cold air is reduced, the heat is taken away when the cold air is poured into the coat, and the heat retention coefficient of the wind coat is improved.
Furthermore, the windproof layer is provided with ventilating micropores at the positions of the back and the armpits of the two arms.
Through adopting above-mentioned technical scheme, the gas permeability of wind clothing has been improved in setting up of ventilative micropore for the sweat of evaporation in the wind clothing can be followed and discharged in ventilative micropore, thereby makes the sweat can distribute out the clothes through ventilative micropore.
To sum up, the utility model discloses following beneficial effect has:
1. the technology that the graphene heating layer, the male buckle, the female buckle, the power supply device and the adjusting switch are matched is adopted, so that heat is generated by electrifying the graphene, the interior of the wind coat is supplemented with heat, the wavelength of far infrared waves released by a physiotherapy product of the graphene heating technology is close to that of a human body, the far infrared waves can generate the most effective resonance with water molecules of cells in the body, blood circulation is promoted, metabolism among tissues is strengthened, the regeneration capacity is enhanced, the immunity of the body is improved, and the medical health care effect is achieved;
2. the technology that a skin-friendly heat-insulating layer, a nylon hook belt and a nylon velvet belt are matched is adopted, so that the effect that a heat-insulating protective layer is fixed on one side of the graphene heating layer close to the body and the low-temperature burn probability is reduced is achieved;
3. the technology that the pocket, the button hole and the pocket blind end are matched is adopted, so that the power supply device and the adjusting switch are fixed in the pocket and are convenient to detach.
Drawings
FIG. 1 is a schematic view of an overall structure of a thermal woolen sweater in an embodiment;
fig. 2 is a schematic diagram for revealing a structure at a graphene heating layer in an embodiment;
FIG. 3 is a schematic view for showing a structure at a pocket in the embodiment;
fig. 4 is a schematic diagram for showing a structure at the windproof layer in the embodiment.
In the figure: 1. a woolen layer; 11. a linen-like layer; 12. a female buckle; 13. a heat insulation cotton layer; 131. an embedding groove; 2. a graphene heating layer; 20. a cotton base layer; 21. a sub-buckle; 22. a power supply device; 23. an adjustment switch; 24. nylon velvet ribbon; 3. a skin-friendly heat-insulating layer; 31. a nylon hook tape; 32. a pocket; 321. a button; 322. a buttonhole; 323. a closing part; 4. a wind-proof layer; 41. and (4) ventilating micropores.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example (b):
a warm-keeping woolen coat comprises a woolen layer 1 and a linen-like layer 11, the woolen layer 1 is formed by wool through worsted spinning, the linen-like layer 11 is a variable warp rib structure formed by interweaving warp yarns and weft yarns, the warp yarns are slub yarns, and the linen-like layer 11 is arranged on the outer side of the woolen layer 1 and is compositely connected through glue.
Referring to fig. 2, 1 inside wall in layer of woollen cloth is provided with graphite alkene zone of heating 2, and graphite alkene zone of heating 2 is low pressure graphite alkene heating film, and graphite alkene zone of heating 2 sets up in the one side that layer of woollen cloth 1 is close to the health. The outer side wall of the graphene heating layer 2 is wrapped with a cotton base layer 20, and the cotton base layer 20 is fixed on the outer side of the graphene heating layer 2 through sewing. The surface of one side of graphite alkene zone of heating 2 near the layer of wool 1 is provided with sub-knot 21, and sub-knot 21 is provided with a plurality ofly, forms a loop type, and sub-knot 21 fixes on the surface of one side of cotton basic unit 20 near the layer of wool 1 through the mode of sewing. One side surface that layer 1 is close to graphite alkene zone of heating 2 is provided with box 12, and box 12 detains 21 looks adaptations with son to fix graphite alkene zone of heating 2 on layer 1's surface.
Referring to fig. 2, the graphene heating layer 2 is electrically connected to a power supply device 22, the power supply device 22 is a rechargeable lithium battery, and the power supply device 22 is formed by connecting three rechargeable lithium batteries in parallel. It has regulating switch 23 to establish ties between power supply unit 22 and the graphite alkene zone of heating 2, and regulating switch 23 is knob switch, thereby supplies power for graphite alkene zone of heating 2 through power supply unit 22 and makes graphite alkene zone of heating 2 generate heat and carry out the heat to the human body and supply.
Referring to fig. 2, the woollen layer 1 is close to graphene heating layer 2 and is provided with the cotton layer 13 that keeps warm on the surface, and the cotton layer 13 that keeps warm is by cotton fiber textile, and the cotton layer 13 that keeps warm is connected on the surface that woollen layer 1 is close to graphene heating layer 2 through glue complex, and the cotton layer 13 that keeps warm is located box 12 department and is provided with embedding groove 131, thereby box 12 inlays to be put in the cotton layer 13 that keeps warm and fix the graphene heating layer 2 of being convenient for through making up and fix on woollen layer 1.
Referring to fig. 2, one side surface that graphite alkene zone of heating 2 kept away from woolen layer 1 is provided with close skin heat preservation 3 on the surface, and close skin heat preservation 3 is made into for modal fibre, and close skin heat preservation 3 is fixed on cotton basic unit 20 through the mode of making up to be convenient for add the thermal-insulated sweat-absorbing layer of one deck close skin in graphite alkene zone of heating 2 one side near the skin, improve thermal insulation performance and comfortable degree.
Referring to fig. 2, a nylon hook belt 31 is arranged on the surface of one side of the skin-friendly heat-insulating layer 3 close to the graphene heating layer 2, and the nylon hook belt 31 is fixed on the skin-friendly heat-insulating layer 3 in a sewing manner. A nylon velvet belt 24 is arranged on the surface of one side, close to the skin-friendly heat-insulating layer 3, of the graphene heating layer 2, and the nylon velvet belt 24 is fixed on the cotton base layer 20 on the outer side wall of the graphene heating layer 2 in a sewing mode.
Referring to fig. 3, a pocket 32 is sewn at the bottom end of the skin-friendly heat-insulating layer 3, the pocket 32 is sewn at the side of the skin-friendly heat-insulating layer 3 close to the skin, and the pocket 32 and the skin-friendly heat-insulating layer 3 are formed by weaving the same fibers. The power supply device 22 and the adjusting switch 23 are both arranged in the pocket 32, and the size of the pocket 32 is matched with the size of the power supply device 22 and the size of the adjusting switch 23.
Referring to fig. 3, one end of the pocket 32 is a blind end, a button 321 and a button hole 322 are arranged on the side wall of the other end, the button 321 is fixed on the surface of the skin-friendly heat-insulating layer 3 in a sewing manner, a sealing part 323 is arranged at the position of the pocket 32, which is located at the button 321, and the button hole 322 is arranged on the sealing part 323 and is matched with the button 321.
Referring to fig. 4, the composite connection has windproof layer 4 between layer 1 and imitative numb layer 11, and windproof layer 4 is made for polyurethane, fixes between layer 1 and imitative numb layer 11 through the mode of thermal recombination to alleviate the cold wind and pass layer 1 and take away the inside heat of clothes.
Referring to fig. 4, the windproof layer 4 is provided with ventilation micropores 41 at the positions of the back and the armpits of both arms, the diameter range of the ventilation micropores 41 is 0.5mm, and the ventilation micropores 41 are arranged at the perspiration heat dissipation positions to improve the ventilation property of the windproof layer 4.
The working principle is as follows:
when a user wears the windcoat and feels cold, the graphene heating layer 2 is powered on through the adjusting switch 23, so that the graphene heating layer 2 is electrified and heated. Then the heat is stored in the clothes through the heat-insulating surface layer and the skin-friendly heat-insulating layer 3, so that the heat is reduced from being dissipated outwards. Therefore, the heat of the human body is compensated by heating the wind jacket, and the heat preservation performance of the wind jacket is improved.
When the windcheater needs to be cleaned, the button 321 is firstly released from the button hole 322, then the power supply device 22 and the adjusting switch 23 are taken out of the pocket 32, and the sub-button 21 on the graphene heating layer 2 is separated from the female button 12, so that the graphene heating layer 2, the power supply device 22 and the adjusting switch 23 can be taken out for operations such as charging and the like. Then the nylon hook belt 31 and the nylon velvet belt 24 of the skin-friendly warm-keeping layer are separated, and then the skin-friendly warm-keeping layer and the air clothes are integrally cleaned.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.
Claims (8)
1. The utility model provides a warm-keeping type woolen coat, includes woolen layer (1) and imitative numb layer (11), imitative numb layer (11) set up in the outside of woolen layer (1) and through compound connection, its characterized in that: the utility model discloses a modified graphene heating woolen cloth, including woolen cloth layer (1), graphite alkene zone of heating (2) is provided with graphite alkene zone of heating (2), a side surface that graphite alkene zone of heating (2) is close to woolen cloth layer (1) is provided with son and detains (21), a side surface that woolen cloth layer (1) is close to graphite alkene zone of heating (2) is provided with box (12), graphite alkene zone of heating (2) electricity is connected with power supply unit (22), it has regulating switch (23) to establish ties between power supply unit (22) and graphite alkene zone of heating (2).
2. The thermal woolen coat according to claim 1, wherein: be provided with heat preservation cotton layer (13) on the surface that layer (1) is close to graphite alkene zone of heating (2), box (12) are inlayed in heat preservation cotton layer (13).
3. The thermal woolen coat according to claim 2, wherein: and a skin-friendly heat-insulating layer (3) is arranged on the surface of one side, far away from the woolen layer (1), of the graphene heating layer (2).
4. The thermal woolen coat according to claim 3, wherein: the surface of one side of close skin heat preservation (3) near graphite alkene zone of heating (2) is provided with nylon hook area (31), the surface of one side of graphite alkene zone of heating (2) near close skin heat preservation (3) is provided with nylon velvet area (24).
5. The thermal woolen coat according to claim 4, wherein: a pocket (32) is sewn at the bottom end of the skin-friendly heat-insulating layer (3), and the power supply device (22) and the regulating switch (23) are both arranged in the pocket (32).
6. The thermal woolen coat according to claim 5, wherein: one end of the pocket (32) is a blind end, and the side wall of the other end is provided with a button (321) and a button hole (322).
7. The thermal woolen coat according to claim 1, wherein: and a windproof layer (4) is compositely connected between the woolen layer (1) and the linen-like layer (11).
8. The thermal woolen coat according to claim 7, wherein: and the windproof layer (4) is provided with ventilating micropores (41) at the positions of the back and the armpits of the two arms.
Priority Applications (1)
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CN201921304393.XU CN210581087U (en) | 2019-08-12 | 2019-08-12 | Warm-keeping woolen coat |
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CN201921304393.XU CN210581087U (en) | 2019-08-12 | 2019-08-12 | Warm-keeping woolen coat |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113455751A (en) * | 2021-06-30 | 2021-10-01 | 武汉红人服饰有限公司 | Size adjustable wind coat of dress |
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2019
- 2019-08-12 CN CN201921304393.XU patent/CN210581087U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113455751A (en) * | 2021-06-30 | 2021-10-01 | 武汉红人服饰有限公司 | Size adjustable wind coat of dress |
CN113455751B (en) * | 2021-06-30 | 2024-03-15 | 雅锦服饰(武汉)有限公司 | Wear size adjustable wind jacket |
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