CN219719800U - Sports coat - Google Patents

Sports coat Download PDF

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Publication number
CN219719800U
CN219719800U CN202321087639.9U CN202321087639U CN219719800U CN 219719800 U CN219719800 U CN 219719800U CN 202321087639 U CN202321087639 U CN 202321087639U CN 219719800 U CN219719800 U CN 219719800U
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CN
China
Prior art keywords
layer
fabric
aerogel
thermal insulation
coat
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Active
Application number
CN202321087639.9U
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Chinese (zh)
Inventor
余雅雯
钟承湛
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Guangzhou Kaileshi Sports Technology Co ltd
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Guangzhou Kaileshi Sports Technology Co ltd
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Priority to CN202321087639.9U priority Critical patent/CN219719800U/en
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Publication of CN219719800U publication Critical patent/CN219719800U/en
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  • Professional, Industrial, Or Sporting Protective Garments (AREA)
  • Details Of Garments (AREA)

Abstract

The utility model discloses a sports coat, which comprises a clothes main body, wherein the clothes main body comprises a surface layer fabric, an aerogel layer, a thermal insulation layer and a bottom layer fabric, and the aerogel layer and the thermal insulation layer are arranged between the surface layer fabric and the bottom layer fabric; the thermal insulation layer is made of down fabrics, and the down fabrics are attached to the bottom fabric; the aerogel layer comprises elastic fabric fibers and silica aerogel powder, and the silica aerogel powder is attached to the elastic fabric fibers. The sports coat reduces the risk of invasion of cold air in the external environment into the clothes by arranging the aerogel layer, and meanwhile, the thermal insulation layer is arranged on the inner layer of the clothes, so that the heat dissipation of a user is reduced, the windproof thermal insulation performance of the coat is improved, and meanwhile, the sports coat is convenient for the user to exercise.

Description

Sports coat
Technical Field
The utility model mainly relates to the technical field of sports clothes, in particular to a sports coat.
Background
The prior sports coat generally improves the heat preservation performance of the coat through thickening and napping, so that the whole structure of the coat is bloated, a user cannot conveniently move when wearing the coat, the heat preservation performance of the light and thin sports coat is insufficient, and the wearing experience of the user needs to be improved.
Disclosure of Invention
The utility model aims to overcome the defects of the prior art, and provides the sports coat, which reduces the risk of invasion of cold air in the external environment into the inside of the clothes by arranging the aerogel layer, simultaneously reduces the heat dissipation of a user, improves the windproof and warm-keeping performance of the coat, and is convenient for the user to do sports.
The utility model provides a sports coat, which comprises a clothes main body, wherein the clothes main body comprises a surface layer fabric, an aerogel layer, a thermal insulation layer and a bottom layer fabric, and the aerogel layer and the thermal insulation layer are arranged between the surface layer fabric and the bottom layer fabric;
the thermal insulation layer is made of down fabrics, and the down fabrics are attached to the bottom fabric;
the aerogel layer comprises elastic fabric fibers and silica aerogel powder, and the silica aerogel powder is attached to the elastic fabric fibers.
Further, a first adhesive layer is arranged on the top surface of the aerogel layer, and a second adhesive layer is arranged on the bottom surface of the aerogel layer;
the aerogel layer is connected with the surface fabric based on the first bonding layer, and the aerogel layer is connected with the thermal insulation layer based on the second bonding layer.
Further, the down fabric comprises a plurality of high-density material layers.
Further, the thickness of the thermal insulation layer is h1, and the value range of h1 is as follows: h1 is more than or equal to 0.5mm and less than or equal to 0.7mm.
Further, the clothes main body is provided with a stand collar, the height of the stand collar is h2, and the value range of h2 is as follows: h2 is more than or equal to 6cm and less than or equal to 7cm.
Further, a first parting line is arranged at the chest position of the clothes main body, and a second parting line is arranged at the waist position of the clothes main body;
the garment body is formed with a backpack area based on the first split line and the second split line.
Further, a pocket is arranged in the carrying area.
Further, the opening of the pocket is arranged above the second dividing line.
Further, a zipper is arranged on the clothes main body, and an anti-slip handle is arranged on the zipper.
Further, the rear end of the lower hem part of the clothes main body and the inner side of the sleeves are provided with conductive sewing lines.
The embodiment of the utility model provides the sports coat, which reduces the risk of invasion of cold air in the external environment into the inside of the clothes by arranging the aerogel layer, and meanwhile, the inner layer of the clothes is provided with the thermal insulation layer, so that the heat dissipation of a user is reduced, the windproof thermal insulation performance of the coat is improved, and meanwhile, the sports coat is convenient for the user to exercise.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings which are required in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of a sports jacket according to an embodiment of the present utility model;
FIG. 2 is a cross-sectional view of the body structure of the garment in accordance with an embodiment of the present utility model;
FIG. 3 is a schematic view of the main body structure of the garment according to the embodiment of the utility model;
fig. 4 is a rear view of the operating envelope structure in an embodiment of the utility model.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Fig. 1 shows a schematic view of a sports outer sleeve structure in an embodiment of the present utility model, and fig. 2 shows a cross-sectional view of a main body structure of a garment in an embodiment of the present utility model, where the main body 1 of the sports outer sleeve includes a surface fabric 14, an aerogel layer 16, a thermal insulation layer 17, and a bottom fabric 15, the aerogel layer 16 and the thermal insulation layer 17 are disposed between the surface fabric 14 and the bottom fabric 15, and the surface fabric 14 may be an elastic knitted fabric, which has good sports ductility.
Specifically, the aerogel layer 16 includes an elastic fabric fiber and a silica aerogel powder, the silica aerogel powder can be attached to the elastic fabric fiber through a 3D printing technology, and the elastic fabric fiber can improve the movement ductility of the aerogel layer 16, so that the aerogel layer 16 can stretch along with the surface fabric 14, and the wearing comfort of a user is improved.
Further, the aerogel layer 16 locks air through silica aerogel powder, thereby isolating cold air in the external environment, reducing the risk of cold air invading the garment body 1, and improving the thermal insulation performance of the garment body 1.
Further, the top surface of aerogel layer 16 is provided with first adhesive layer, the bottom surface of aerogel layer 16 is provided with the second adhesive layer, aerogel layer 16 is based on first adhesive layer is connected surface course 14, aerogel layer 16 is based on the second adhesive layer is connected thermal insulation layer 17, through setting up first adhesive layer with the second adhesive layer, can improve aerogel layer 16 with the connection stability between surface course 14 and the thermal insulation layer 17 improves the holistic thermal insulation performance of overcoat.
Specifically, the thermal layer 17 is a down fabric, and the down fabric is attached to the bottom fabric 15, so that wearing comfort of the bottom fabric 15 can be improved. The thickness of the thermal insulation layer 17 is h1, and the value range of h1 is as follows: the thickness and weight of the coat can be reduced by arranging the light and thin down fabrics with the thickness of 0.5 mm-h 1-0.7 mm, so that the coat is light and thin, and the wearing comfort of the coat can be improved.
Specifically, fig. 3 shows a schematic diagram of a main body structure of the garment according to the embodiment of the present utility model, the down fabric includes a plurality of high-density material layers, the plurality of high-density material layers include a fat-dissolving layer 172, a down locking layer 174, a goose down heat-insulating layer 175, a resin layer 176 and a heating layer, the down fabric includes two layers of the goose down heat-insulating layers 175, the resin layer 176 is disposed between the two layers of the goose down heat-insulating layers 175, the goose down heat-insulating layer 175 close to the bottom fabric 15 can block heat loss on the body surface of the user, an effective heat-insulating and heat-preserving effect is provided for the body surface of the user, and the goose down heat-insulating layer 175 close to the surface fabric 14 can further reduce the rate of heat loss of the body of the user, so as to improve the heat-insulating and heat-preserving performance of the sports jacket.
Further, the heat conduction performance of the resin layer 176 is weak, the resin layer 176 is arranged between the two layers of the goose down heat insulation layers 175, so that the heat transfer of the surface heat of the user body between the two layers of the goose down heat insulation layers 175 can be reduced, the heat transfer of external cold air between the two layers of the goose down heat insulation layers 175 can be reduced, the internal heat dissipation can be reduced, the invasion of external cold air is blocked, and the heat insulation performance of the jacket is effectively improved.
Further, the velvet locking layer 174 is disposed at two layers of the velvet insulating layer 175, and locks the velvet insulating layer 175 through the velvet locking layer 174, so as to prevent velvet in the velvet insulating layer 175 from running, and improve the overall structural stability of the insulating layer 17.
Further, the thermal insulation layer 17 further includes a top layer fabric 171 and a superfine fat-dissolving layer 177, and the top layer fabric 171 and the superfine fat-dissolving layer 177 are disposed at the top position of the thermal insulation layer 17, so that the structural stability of the thermal insulation layer 17 can be effectively improved.
Further, the fat-soluble layer 172 may be a hot melt adhesive, i.e. a plastic adhesive layer, and the fat-soluble layer 172 is disposed between the locking velvet layer 174 and other high-density material layers, so as to improve the connection between the locking velvet layer 174 and other high-density material layers, and improve the overall structural stability of the thermal insulation layer 17.
Specifically, the moisture-absorbing and heat-generating layer 173 may be a far infrared anion moisture-absorbing and heat-generating functional fabric, and is a moisture-absorbing and heat-generating fiber formed by uniformly adding far infrared absorbing substances, such as ceramic powder, into fibers of terylene, polypropylene and the like.
Further, the ceramic powder is generally a metal oxide, and may be alumina, magnesia, zirconia, or the like, or may be titania or silica.
Further, the moisture-absorbing and heating layer 173 may be a natural fiber, such as wool fiber, which has good moisture-absorbing and heating properties, and by providing the moisture-absorbing and heating layer 173, the user can keep the dryness of the body surface and good heat-insulating properties when wearing the sports coat.
Specifically, the high-density material layers can be printed in a laminated manner by a 3D printing technology, so that the processing efficiency of the thermal insulation layer 17 can be improved, and the thermal insulation layer 17 is formed by laminating a plurality of layers of high-density material layers, so that the thermal insulation layer 17 can form a light and thin structure and has a good thermal insulation function.
Specifically, the clothes main body 1 is provided with a stand collar 11, the height of the stand collar 11 is h2, and the value range of h2 is as follows: the h2 is less than or equal to 6cm and less than or equal to 7cm, and the clothes stand collar 11 with the high collar structure is arranged, so that the stand collar 11 can cover the neck of a user, and the warm-keeping effect of the clothes main body 1 on the neck of the user can be improved.
Further, the inner side of the stand collar 11 is provided with the superfine Bian Lunbu inner patch, and by setting the superfine Bian Lunbu inner patch, the adhesion between the neck of the user and the fabric on the inner side of the stand collar 11 can be avoided when the neck of the user sweats, the comfort level of the stand collar 11 and the skin contact of the neck of the user is improved, and the wearing comfort level of the user is improved.
Specifically, a first dividing line 12 is arranged at the chest position of the clothes main body 1, a second dividing line 13 is arranged at the waist position of the clothes main body 1, a carrying area is formed on the basis of the first dividing line 12 and the second dividing line 13 by the clothes main body 1, the first dividing line 12 and the second dividing line 13 correspond to the connection position of a user backpack safety belt, the carrying area corresponds to the main body position of the user backpack,
specifically, be provided with the pocket in the area of carrying on the back, the sack setting of pocket is in second split line 13 top, will the pocket sets up in the area of carrying on the back, avoid the user to influence the use of pocket when carrying on the knapsack, will the sack setting of pocket is in second split line 13 top avoids the braces of knapsack to block the pocket position of pocket, and the user of being convenient for uses under the state of carrying on the knapsack the pocket improves user's use experience.
Specifically, the zipper is arranged on the clothes main body 1, and the anti-slip handle is arranged on the zipper, so that the user can conveniently carry out the pulling-in operation of the zipper when wearing gloves.
Specifically, fig. 4 shows a rear view of the structure of the running coat in the embodiment of the present utility model, the rear end of the lower hem portion of the garment body 1 and the inner side of the sleeves are both provided with conductive sewing threads 18, and the conductive sewing threads 18 are formed by sewing with metal wires, so that the garment body 1 has good electrostatic conductivity, the antistatic performance of the garment body 1 is improved, and the comfort of the user wearing the sports coat is improved.
The embodiment of the utility model provides a sports coat, which reduces the risk of invasion of cold air in the external environment into the inside of the garment by arranging an aerogel layer 16, and meanwhile, a thermal insulation layer 17 is arranged in the inner layer of the garment, so that the heat dissipation of a user is reduced, the windproof thermal insulation performance of the coat is improved, and meanwhile, the sports coat is convenient for the user to exercise.
In addition, while the foregoing has described in detail a sports garment provided in accordance with embodiments of the present utility model, specific examples have been presented herein to illustrate the principles and embodiments of the present utility model and to assist in understanding the methods and concepts of the present utility model; meanwhile, as those skilled in the art will have variations in the specific embodiments and application scope in accordance with the ideas of the present utility model, the present description should not be construed as limiting the present utility model in view of the above.

Claims (10)

1. The sports coat is characterized by comprising a coat body, wherein the coat body comprises a surface fabric, an aerogel layer, a thermal insulation layer and a bottom fabric, and the aerogel layer and the thermal insulation layer are arranged between the surface fabric and the bottom fabric;
the thermal insulation layer is made of down fabrics, and the down fabrics are attached to the bottom fabric;
the aerogel layer comprises elastic fabric fibers and silica aerogel powder, and the silica aerogel powder is attached to the elastic fabric fibers.
2. The athletic jacket of claim 1, wherein a top surface of the aerogel layer is provided with a first adhesive layer and a bottom surface of the aerogel layer is provided with a second adhesive layer;
the aerogel layer is connected with the surface fabric based on the first bonding layer, and the aerogel layer is connected with the thermal insulation layer based on the second bonding layer.
3. The athletic jacket of claim 1, wherein said down shell comprises a plurality of layers of high density material.
4. The athletic jacket of claim 1, wherein the thickness of the thermal layer is h1, and the range of values for h1 is: h1 is more than or equal to 0.5mm and less than or equal to 0.7mm.
5. The sports coat as claimed in claim 1, wherein a collar is provided on the garment body, the collar has a height h2, and the range of h2 is: h2 is more than or equal to 6cm and less than or equal to 7cm.
6. The athletic garment of claim 1, wherein the chest location of the garment body is provided with a first split line and the waist location of the garment body is provided with a second split line;
the garment body is formed with a carrying area based on the first split line and the second split line.
7. The athletic jacket of claim 6, wherein a pocket is disposed in the carrying region.
8. The athletic jacket of claim 7, wherein the mouth of the pocket is disposed above the second dividing line.
9. The athletic garment of claim 1, wherein the garment body is provided with a zipper, and wherein the zipper is provided with a non-slip grip.
10. The athletic garment of claim 1, wherein the rear end of the hem portion of the garment body and the inner side of the sleeve are provided with conductive stitching.
CN202321087639.9U 2023-05-08 2023-05-08 Sports coat Active CN219719800U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321087639.9U CN219719800U (en) 2023-05-08 2023-05-08 Sports coat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321087639.9U CN219719800U (en) 2023-05-08 2023-05-08 Sports coat

Publications (1)

Publication Number Publication Date
CN219719800U true CN219719800U (en) 2023-09-22

Family

ID=88032882

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321087639.9U Active CN219719800U (en) 2023-05-08 2023-05-08 Sports coat

Country Status (1)

Country Link
CN (1) CN219719800U (en)

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