CN221012742U - Down quilt with bionic structure - Google Patents

Down quilt with bionic structure Download PDF

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Publication number
CN221012742U
CN221012742U CN202322628779.9U CN202322628779U CN221012742U CN 221012742 U CN221012742 U CN 221012742U CN 202322628779 U CN202322628779 U CN 202322628779U CN 221012742 U CN221012742 U CN 221012742U
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China
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chu
rongge
central
width
pleuroperitoneal cavity
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CN202322628779.9U
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Chinese (zh)
Inventor
何平波
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Ningbo Boyang Home Textile Group Co ltd
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Ningbo Boyang Home Textile Group Co ltd
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Abstract

The utility model discloses a down quilt with a bionic structure, which comprises the following components: the quilt core is internally provided with a plurality of vertical lining strips, the vertical lining strips divide the interior of the quilt core into a plurality of Chu Rongge, the top of Chu Rongge extends upwards to one side to form a covering part, and the covering part is covered and arranged above the other Chu Rongge. The utility model can enhance the warm-keeping effect of the quilt core.

Description

Down quilt with bionic structure
Technical Field
The utility model relates to the technical field of down quilts, in particular to a down quilt with a bionic structure.
Background
In the current down quilt market, the functional down quilts are layered endlessly, and the single functional points are on average in all aspects, so that each grid is flat and unoccupied, has a limited warm keeping capability, and is limited. Therefore, a down quilt with a bionic structure is needed, and the warm-keeping effect of the quilt core is enhanced.
Disclosure of utility model
The utility model provides a down quilt with a bionic structure, which can enhance the warm-keeping effect of a quilt core.
In order to solve the technical problems, the utility model provides a down quilt with a bionic structure, which is characterized by comprising the following components:
The quilt core is internally provided with a plurality of vertical lining strips, the vertical lining strips divide the interior of the quilt core into a plurality of Chu Rongge, the top of Chu Rongge extends upwards to one side to form a covering part, and the covering part is covered and arranged above the other Chu Rongge.
As a preferable aspect of the above-described technology, the top portion Chu Rongge is formed into the covering portion by folding.
Preferably, the length of the covering portion is 1cm to 2cm.
As a preferable mode of the above technical solution, the quilt core is sequentially divided into a head gradual-change heating zone, a central pleuroperitoneal cavity heating zone and a leg gradual-change heating zone, wherein a width of Chu Rongge in the head gradual-change heating zone, which is far away from the central pleuroperitoneal cavity heating zone, is smaller than a width of Chu Rongge close to the central pleuroperitoneal cavity heating zone, and a width of Chu Rongge in the leg gradual-change heating zone, which is far away from the central pleuroperitoneal cavity heating zone, is smaller than a width of Chu Rongge close to the central pleuroperitoneal cavity heating zone.
As a preferable aspect of the above-mentioned method, the width of Chu Rongge of the central pleuroperitoneal cavity heating area is 29cm to 30cm.
As a preferable aspect of the foregoing disclosure, a width of Chu Rongge in the head gradual-change thermal insulation area, which is far from the central pleuroperitoneal cavity thermal insulation area, is 18cm to 20cm, and a width of Chu Rongge in the head gradual-change thermal insulation area, which is near to the central pleuroperitoneal cavity thermal insulation area, is 24 cm to 26cm.
As a preferable aspect of the foregoing disclosure, a width of Chu Rongge of the leg-foot gradual-change heating region, which is far from the central pleuroperitoneal cavity heating region, is 18cm to 20cm, and a width of Chu Rongge of the leg-foot gradual-change heating region, which is near to the central pleuroperitoneal cavity heating region, is 24cm to 26cm.
As the preferable choice of the technical proposal, the main fabric of the quilt core is single-layer anti-feather cloth.
Preferably, the height of the standing strip is 1.5cm.
Preferably, in the above technical solution, the material of the vertical lining strip is mesh cloth.
The utility model provides a down quilt with a bionic structure, which comprises: a quilt core, wherein a plurality of vertical lining strips are arranged in the quilt core, the vertical lining strips divide the interior of the quilt core into a plurality of Chu Rongge, the top of the Chu Rongge extends upwards to one side to form a covering part, and the covering part is covered above the other Chu Rongge; the cover part is covered and arranged above the other Chu Rongge to form a bird feather type layer-by-layer covered structure, so that cold air can be prevented from entering from the joint of the two Chu Rongge, and the heat preservation performance is improved; and the height of the upper and lower grids can be increased, so that the air storage capacity is increased, and the heat preservation performance is improved.
The foregoing description is only an overview of the present utility model, and is intended to be implemented in accordance with the teachings of the present utility model in order that the same may be more clearly understood and to make the same and other objects, features and advantages of the present utility model more readily apparent.
Drawings
Fig. 1 is a schematic structural diagram of a down quilt with a bionic structure according to an embodiment of the utility model;
Fig. 2 is a schematic structural diagram of a down storage grid of a down quilt with a bionic structure according to an embodiment of the utility model;
in the figure: 1. a quilt core; 2. chu Rongge; 101. a vertical lining strip; 102. the head gradually changes to a heat-preserving area; 103. central chest and abdominal cavity warming area; 104. leg and foot gradual change heat preservation area; 201. and a cover part.
Detailed Description
In order to make the objects, features and advantages of the present utility model more comprehensible, the technical solutions according to the embodiments of the present utility model will be clearly described in the following with reference to the accompanying drawings, and it is obvious that the described embodiments are only some embodiments of the present utility model, 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.
Referring to fig. 1 to 2, an embodiment of the present utility model provides a down quilt with a bionic structure, which is characterized by comprising:
The quilt core 1 is internally provided with a plurality of vertical lining strips 101, the vertical lining strips 101 divide the interior of the quilt core 1 into a plurality of velvet storage grids 2, the top of Chu Rongge extends upwards to one side to form a covering part 201, and the covering part 201 is arranged above the other Chu Rongge in a covering mode.
The embodiment of the utility model provides a down quilt with a bionic structure, which comprises the following components: a quilt core 1, wherein a plurality of vertical lining strips 101 are arranged in the quilt core 1, the vertical lining strips 101 divide the inside of the quilt core 1 into a plurality of velvet storage grids 2, the top of Chu Rongge extends upwards to one side to form a covering part 201, and the covering part 201 is arranged above the other Chu Rongge in a covering way; the cover part 201 is arranged above the other Chu Rongge to form a bird feather type layer-by-layer covering structure, so that cold air can be prevented from entering from the joint of the two Chu Rongge 2, and the heat insulation performance is improved; and the height of the upper and lower grids can be increased, so that the air storage capacity is increased, and the heat preservation performance is improved.
In a further implementation of this embodiment, the top of Chu Rongge is pleated to form the cover 201.
In this embodiment, the top layer of Chu Rongge a is pleated downward, and after being pleated, the top portion of Chu Rongge a forms the covering portion 201.
In a further implementation manner of this embodiment, the length of the covering portion 201 is 1cm to 2cm.
In this embodiment, the length of the covering portion 201 is 1cm to 2cm, which not only can effectively cover the joint between two Chu Rong grids 2, but also can avoid the increase of production cost in the covering portion 201 process, and if the length of the covering portion 201 is too long, it also causes inconvenience to the user in cleaning the quilt core 1.
In a further implementation manner of this embodiment, the quilt core 1 is sequentially divided into a head gradual-change heating area 102, a central pleuroperitoneal cavity heating area 103 and a leg gradual-change heating area 104, wherein a width of the Chu Rongge of the head gradual-change heating area 102, which is far away from the central pleuroperitoneal cavity heating area 103, is smaller than a width of the Chu Rongge 2, which is close to the central pleuroperitoneal cavity heating area 103, and a width of the Chu Rongge of the leg gradual-change heating area 104, which is far away from the central pleuroperitoneal cavity heating area 103, is smaller than a width of the Chu Rongge 2, which is close to the central pleuroperitoneal cavity heating area 103.
In this embodiment, the width of Chu Rongge 2 of the head gradual-change thermal insulation region 102, which is far from the central pleuroperitoneal cavity thermal insulation region 103, is smaller than the width of Chu Rongge 2 of the central pleuroperitoneal cavity thermal insulation region 103, so as to form a gradual-change thermal insulation effect, and the width of Chu Rongge 2 of the leg and foot gradual-change thermal insulation region 104, which is far from the central pleuroperitoneal cavity thermal insulation region 103, is smaller than the width of Chu Rongge 2 of the central pleuroperitoneal cavity thermal insulation region 103, so as to form a gradual-change thermal insulation effect; the heat required by different parts of the human body is different, and the sleeping quality of a user is improved by changing the size of the grid body according to the sleeping requirement heat of different parts.
In a further implementation manner of this embodiment, the width of Chu Rongge of the central pleuroperitoneal cavity heating area 103 is 29 cm-30 cm.
In this embodiment, the width of Chu Rongge s2 of the central pleuroperitoneal cavity heating area 103 is the same, and the width of Chu Rongge s of the central pleuroperitoneal cavity heating area 103 is 29 cm-30 cm, so that the down storage space inside Chu Rongge is larger, filled down can be fully stretched, and the warm-keeping effect is improved.
In a further implementation manner of this embodiment, the width of the Chu Rongge a 2 of the head gradual-change thermal insulation region 102, which is far from the central pleuroperitoneal cavity thermal insulation region 103, is 18cm to 20cm, and the width of the Chu Rongge a of the head gradual-change thermal insulation region 102, which is near to the central pleuroperitoneal cavity thermal insulation region 103, is 24 cm to 26cm.
In this embodiment, the width of Chu Rongge 2 in the head gradual change thermal insulation area 102, which is far away from the central pleuroperitoneal cavity thermal insulation area 103, is 18 cm-20 cm, the width of Chu Rongge at the edge of the quilt core 1 is smaller, so that the effect of compressed air can be achieved, cold air is prevented from entering the quilt nest, and thus the sleeping effect of a customer can be improved, the width of Chu Rongge 2 in the head gradual change thermal insulation area 102, which is close to the central pleuroperitoneal cavity thermal insulation area 103, is 24-26 cm, and the gap between the thermal insulation effects of the head gradual change thermal insulation area 102 and the central pleuroperitoneal cavity thermal insulation area 103 can be reduced by gradually increasing the width of Chu Rongge, so that the gradual change thermal insulation effect is formed, and thus the sleeping effect of the customer can be improved.
In a further implementation manner of this embodiment, the width of the Chu Rongge a 2 of the leg and foot gradual heating region 104, which is far from the central pleuroperitoneal cavity heating region 103, is 18 cm-20 cm, and the width of the Chu Rongge a of the leg and foot gradual heating region 104, which is near to the central pleuroperitoneal cavity heating region 103, is 24 cm-26 cm.
In this embodiment, the width of Chu Rongge 2 in the leg and foot gradual change heating area 104, which is far away from the central pleuroperitoneal cavity heating area 103, is 18 cm-20 cm, the width of Chu Rongge at the edge of the quilt core 1 is smaller, so that the effect of compressed air can be achieved, cold air is prevented from entering the quilt nest, and thus the sleeping effect of a customer can be improved, the width of Chu Rongge 2 in the leg and foot gradual change heating area 104, which is close to the central pleuroperitoneal cavity heating area 103, is 24-26 cm, and the difference between the warm keeping effects of the leg and foot gradual change heating area 104 and the central pleuroperitoneal cavity heating area 103 can be reduced by gradually increasing the width of Chu Rongge, so that the gradual change warm keeping effect is formed, and the sleeping effect of the customer can be improved.
In a further implementation manner of this embodiment, the main fabric of the quilt core 1 is a single-layer anti-feather fabric.
In this embodiment, the main fabric of the quilt core 1 is a single-layer feather-proof fabric, so that the effect of preventing the eiderdown from being mixed can be achieved.
In a further implementation of this embodiment, the height of the standing strip 101 is 1.5cm.
In this embodiment, the height of the standing strip 101 is 1.5cm, and the standing strip 101 is disposed inside the quilt core 1 and serves as a connection for the lining cloth, so as to divide the inside of the quilt core 1 into a plurality of pile storage grids 2.
In a further implementation manner of this embodiment, the material of the standing strip 101 is mesh cloth.
In this embodiment, the vertical lining strips 101 are made of mesh cloth, and the vertical lining strips 101 serve to divide the down cabin body so that the down will not be mixed.
In the description of the present specification, a description referring to terms "one embodiment," "some embodiments," "examples," "specific examples," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present utility model. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, the different embodiments or examples described in this specification and the features of the different embodiments or examples may be combined and combined by those skilled in the art without contradiction.
Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In the description of the present utility model, the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
The foregoing is merely illustrative of the present utility model, and the present utility model is not limited thereto, and any person skilled in the art will readily recognize that variations or substitutions are within the scope of the present utility model. Therefore, the protection scope of the present utility model shall be subject to the protection scope of the claims.

Claims (10)

1. A biomimetic structured duvet, comprising:
The quilt core is internally provided with a plurality of vertical lining strips, the vertical lining strips divide the interior of the quilt core into a plurality of Chu Rongge, the top of Chu Rongge extends upwards to one side to form a covering part, and the covering part is covered and arranged above the other Chu Rongge.
2. The biomimetic structural duvet according to claim 1, wherein the top portion of Chu Rongge forms the cover portion by being pleated.
3. The biomimetic structured duvet according to claim 2, wherein the length of the covering portion is 1 cm-2 cm.
4. The biomimetic structured duvet according to claim 1, wherein said quilt core is divided into a head gradual change warming zone, a central pleuroperitoneal cavity warming zone and a leg gradual change warming zone in sequence, wherein a width of said Chu Rongge in said head gradual change warming zone, which is far from said central pleuroperitoneal cavity warming zone, is smaller than a width of said Chu Rongge in said central pleuroperitoneal cavity warming zone, and a width of said Chu Rongge in said leg gradual change warming zone, which is far from said central pleuroperitoneal cavity warming zone, is smaller than a width of said Chu Rongge in said central pleuroperitoneal cavity warming zone.
5. The biomimetic structured duvet according to claim 4, wherein said Chu Rongge of said central pleuroperitoneal cavity warming zone has a width of 29cm to 30cm.
6. The biomimetic structured duvet according to claim 4, wherein the width of the Chu Rongge in the head gradient heat-preserving region, which is away from the central pleuroperitoneal cavity heat-preserving region, is 18cm to 20cm, and the width of the Chu Rongge in the head gradient heat-preserving region, which is close to the central pleuroperitoneal cavity heat-preserving region, is 24 cm to 26cm.
7. The biomimetic structured duvet according to claim 4, wherein the width of said Chu Rongge in said leg and foot progressive warming zone away from said central pleuroperitoneal cavity warming zone is 18cm to 20cm, and the width of said Chu Rongge in said leg and foot progressive warming zone adjacent to said central pleuroperitoneal cavity warming zone is 24cm to 26cm.
8. The biomimetic structural duvet according to claim 1, wherein the main fabric of the quilt core is single-layer anti-feather cloth.
9. The biomimetic structured down quilt of claim 1, wherein the height of the riser is 1.5cm.
10. The down quilt with bionic structure according to claim 9, wherein the material of the vertical lining strips is mesh cloth.
CN202322628779.9U 2023-09-27 2023-09-27 Down quilt with bionic structure Active CN221012742U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322628779.9U CN221012742U (en) 2023-09-27 2023-09-27 Down quilt with bionic structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322628779.9U CN221012742U (en) 2023-09-27 2023-09-27 Down quilt with bionic structure

Publications (1)

Publication Number Publication Date
CN221012742U true CN221012742U (en) 2024-05-28

Family

ID=91188491

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322628779.9U Active CN221012742U (en) 2023-09-27 2023-09-27 Down quilt with bionic structure

Country Status (1)

Country Link
CN (1) CN221012742U (en)

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