CN204752932U - Insulation fibre of built -in vortex line structure - Google Patents

Insulation fibre of built -in vortex line structure Download PDF

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Publication number
CN204752932U
CN204752932U CN201520472844.6U CN201520472844U CN204752932U CN 204752932 U CN204752932 U CN 204752932U CN 201520472844 U CN201520472844 U CN 201520472844U CN 204752932 U CN204752932 U CN 204752932U
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China
Prior art keywords
fibre
vortex
line structure
built
support member
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Expired - Fee Related
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CN201520472844.6U
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Chinese (zh)
Inventor
陈满玲
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Individual
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Individual
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Priority to CN201520472844.6U priority Critical patent/CN204752932U/en
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Publication of CN204752932U publication Critical patent/CN204752932U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a fibre, concretely relates to insulation fibre of built -in vortex line structure, including the fibre main part, fibre main part cross section is the annular form, is equipped with the first bleeder vent of a plurality of perforating fiber main parts in the fibre main part, and fibre main part upper surface is equipped with the protruding of a plurality of calotte structures, is equipped with the supporter of columnar structure in the fibre main part, and the supporter upper surface is equipped with a support piece to be connected with the internal surface of fibre main part, and a support piece personally experiences sth. Part of the body for the vortex that the cross section is the vortex line structure, the utility model discloses can provide one kind possess good crushing resistance, for a long time keep fibrous fluffy effect, have a fibre of good heat preservation function simultaneously.

Description

A kind of insulation fibre of built-in vortex-like line structure
Technical field
The utility model relates to a kind of fiber, is specifically related to a kind of insulation fibre of built-in vortex-like line structure.
Background technology
In the field such as clothes, case and bag, fiber is raw material important in its production process, and along with the development of chemical industry, various artificial fiber also constantly develops, and produces the artificial fiber meeting consumer demand of all kinds.
Insulation fibre is one of fiber that in Apparel Manufacturing, demand is maximum, natural insulation fibre is mainly from the hair of animal, underproduce and price is high, the needs of society cannot be met, therefore the appearance of artificial heat insulation fiber has been had, existing artificial heat insulation fiber is the ring bodies of hollow structure, though certain heat insulation effect can be played, but its crushing resistance is weak, after using a period of time, namely original lofting effect disappears, affect the attractive in appearance of fibre, heat insulation effect also weakens thereupon simultaneously, therefore, current needs are a kind of can have good crushing resistance, the lofting effect of fiber can be kept for a long time, there is the fiber of excellent heat insulation function simultaneously.
Utility model content
The utility model provides a kind of insulation fibre of built-in vortex-like line structure, and it can provide a kind of fiber having good crushing resistance, keep the lofting effect of fiber for a long time, have excellent heat insulation function simultaneously.
The utility model adopts following technical scheme:
A kind of insulation fibre of built-in vortex-like line structure, comprise fibrous body, fibrous body cross section is ring-shaped, fibrous body is provided with the first air-vent of a plurality of perforating fiber main body, fibrous body upper surface is provided with the projection of a plurality of dome structure, be provided with the supporter of column structure in fibrous body, supporter upper surface is provided with the first support member and is connected with the inner surface of fibrous body, the vortex-like body of the first support member to be cross section be vortex-like line structure.
Further, supporter is hollow structure, is provided with the second support member for support drum supporter in supporter, and the second support member is by the first cuboid and the orthogonal cross structure formed of the second cuboid.
Further, the first air-vent is longitudinal lineal layout, and projection is longitudinal lineal layout, and the first air-vent and projection are interrupted separation each other and are distributed in whole fibrous body.
Further, the first support member is provided with arranged in a straight line the second air-vent running through the first support member of a plurality of longitudinal direction, the first support member is evenly distributed with the second air-vent.
Preferably, the outwardly curved structure in the long limit of the cross section of the first cuboid and the second cuboid.
From the above-mentioned description to the utility model structure, compared to the prior art, the utility model tool has the following advantages: 1, by setting cross section as the vortex-like body of vortex-like line structure in fibrous body, strengthen the crushing resistance of the utility model fiber, after making the utility model for a long time, being repeatedly subject to the extruding of external pressure, recover the original lofting effect of fiber voluntarily, maintain the attractive in appearance of fibre; 2, the heat insulation effect of fiber is improved by arranging the first air-vent, the second air-vent and projection, the setting of raised structures, make to remain with certain space each other between fiber and fiber in fibre, ensure heat flowing between the fibers, make heat by the first air-vent and the second air-vent uniform residence in each fiber; 3, columnar stays position hollow structure, is provided with the second support member simultaneously, passes through heat trnasfer in columnar supporting body, partial heat is made to remain in the columnar supporting body of hollow structure, the heat insulation effect of fortifying fibre, meanwhile, by the crushing resistance of the second support member also fortifying fibre; 4, the first cuboid of the second support member and the long limit of the second cuboid cross section adopt outwardly arcuate structure, strengthen the support of the second support member to columnar supporting body, strengthen the ability of the anti-deformation of the second support member, and then fortifying fibre keeps the ability of lofting effect.
Accompanying drawing explanation
Fig. 1 is the utility model three-dimensional structure diagram;
Fig. 2 is the utility model cross sectional representation;
Fig. 3 is the utility model oblique section schematic diagram.
Detailed description of the invention
Detailed description of the invention of the present utility model is described with reference to the accompanying drawings.
See Fig. 1 to Fig. 3, a kind of insulation fibre of built-in vortex-like line structure, comprise fibrous body 1, the cross section of fibrous body 1 is ring-shaped, fibrous body 1 is provided with the first air-vent 11 of a plurality of perforating fiber main body 1, fibrous body 1 upper surface is provided with the projection 12 of a plurality of dome structure, the supporter 2 of column structure is provided with in fibrous body 1, supporter 2 upper surface is provided with the first support member 21 and is connected with the inner surface of fibrous body 1, the first support member 21 for cross section be the vortex-like body of vortex-like line structure.
Meanwhile, supporter 2 is hollow structure, and the second support member 22, second support member 22 be provided with in supporter 2 for supported body 2 is by the first cuboid 221 and the orthogonal cross structure formed of the second cuboid 222; First air-vent 11 is longitudinal lineal layout, and projection 12 is longitudinal lineal layout, the first air-vent 11 and projection be 12 be each other interrupted separation be distributed in whole fibrous body 1.
Meanwhile, the first support member 21 is provided with on arranged in a straight line the second air-vent 211, first support member 21 running through the first support member 21 of a plurality of longitudinal direction and is evenly distributed with the second air-vent 211.
In order to obtain better crushing resistance, the outwardly curved structure in long limit of the cross section of the first cuboid 221 and the second cuboid 222.
Above are only detailed description of the invention of the present utility model, but design concept of the present utility model is not limited thereto, all changes utilizing this design the utility model to be carried out to unsubstantiality, all should belong to the behavior of invading the utility model protection domain.

Claims (7)

1. the insulation fibre of a built-in vortex-like line structure, comprise fibrous body, it is characterized in that: described fibrous body cross section is ring-shaped, described fibrous body is provided with a plurality of the first air-vent running through described fibrous body, described fibrous body upper surface is provided with the projection of a plurality of dome structure, be provided with the supporter of column structure in described fibrous body, described supporter upper surface is provided with the first support member and is connected with the inner surface of described fibrous body.
2. the insulation fibre of a kind of built-in vortex-like line structure according to claim 1, is characterized in that: the vortex-like body of described first support member to be cross section be vortex-like line structure.
3. the insulation fibre of a kind of built-in vortex-like line structure according to claim 1 and 2, it is characterized in that: described supporter is hollow structure, be provided with the second support member for supporting described supporter in described supporter, described second support member is by the first cuboid and the orthogonal cross structure formed of the second cuboid.
4. the insulation fibre of a kind of built-in vortex-like line structure according to claim 1, it is characterized in that: described first air-vent is longitudinal lineal layout, described projection is longitudinal lineal layout, and described first air-vent and described projection are interrupted separation each other and are distributed in whole described fibrous body.
5. the insulation fibre of a kind of built-in vortex-like line structure according to claim 2, is characterized in that: described first support member is provided with arranged in a straight line the second air-vent running through described first support member of a plurality of longitudinal direction.
6. the insulation fibre of a kind of built-in vortex-like line structure according to claim 5, is characterized in that: described first support member is evenly distributed with the second air-vent.
7. the insulation fibre of a kind of built-in vortex-like line structure according to claim 3, is characterized in that: the outwardly curved structure in long limit of the cross section of described first cuboid and the second cuboid.
CN201520472844.6U 2015-07-04 2015-07-04 Insulation fibre of built -in vortex line structure Expired - Fee Related CN204752932U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520472844.6U CN204752932U (en) 2015-07-04 2015-07-04 Insulation fibre of built -in vortex line structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520472844.6U CN204752932U (en) 2015-07-04 2015-07-04 Insulation fibre of built -in vortex line structure

Publications (1)

Publication Number Publication Date
CN204752932U true CN204752932U (en) 2015-11-11

Family

ID=54467661

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520472844.6U Expired - Fee Related CN204752932U (en) 2015-07-04 2015-07-04 Insulation fibre of built -in vortex line structure

Country Status (1)

Country Link
CN (1) CN204752932U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151111

Termination date: 20160704