CN216754098U - Flame-retardant silk quilt - Google Patents

Flame-retardant silk quilt Download PDF

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Publication number
CN216754098U
CN216754098U CN202122391356.0U CN202122391356U CN216754098U CN 216754098 U CN216754098 U CN 216754098U CN 202122391356 U CN202122391356 U CN 202122391356U CN 216754098 U CN216754098 U CN 216754098U
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Prior art keywords
flame
retardant
silk
quilt
fabric
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CN202122391356.0U
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Chinese (zh)
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刘洁
乔栋
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Jiaxing Qinyue Home Textile Co ltd
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Jiaxing Qinyue Home Textile Co ltd
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Abstract

The utility model provides a flame-retardant silk quilt, belongs to the technical field of spinning, and solves the problem that the flame-retardant performance of the conventional silk quilt is poor. The utility model comprises the following steps: the silk quilt comprises a silk quilt main body. The silk quilt main body comprises a first fabric layer, a quilt core and a second fabric layer which are sequentially arranged; the quilt core comprises silk, and tannic acid is attached to the silk; the first fabric layer is made of flame-retardant fabric, and the second fabric layer is made of flame-retardant breathable fabric. The fabric layer forming the practical silk quilt has good flame retardant property, so that the silk quilt integrally meets the requirement of a user on flame retardance; the flame-retardant design of the quilt core silk is simple and easy to obtain, natural and nontoxic, and good in flame retardant property; the first enhancement layer and the cooperation of second enhancement layer have not only satisfied the requirement of the mechanical properties and the fire behaviour of silk quilt, can play certain brill silk effect of preventing moreover. The utility model has the advantages of reasonable structural design, good flame retardant property, naturalness and no stimulation.

Description

Flame-retardant silk quilt
Technical Field
The utility model relates to a silk quilt, in particular to a flame-retardant silk quilt, and belongs to the technical field of textiles.
Background
Silk is one of the most common natural protein fibers, and is popular with consumers due to its soft and natural luster, unique silky feeling, good health care and comfort. The silk textile is often used for manufacturing high-grade clothes and ornaments, and the silk ornaments and parts of daily-use clothes have higher requirements on flame retardant property. The silk quilt has the advantages of good skin affinity, excellent air permeability, difficult bacterial breeding and the like by using the unique natural protein fibers, and is deeply loved by consumers.
But the existing silk quilt has defects in the aspect of flame retardant property, and the silk as natural protein fiber can not be subjected to flame retardant modification by a method of blending spinning with a flame retardant, so that the silk quilt has good flame retardant finishing, can provide a flame retardant function, and also has the advantages of no toxicity, less smoke, capability of resisting washing and dry cleaning to a certain degree, and no influence on the original good quality of the silk.
In view of the above, the utility model of flame-retardant silk is a problem to be solved in the field.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a flame-retardant silk quilt, which aims to solve the problem that the existing silk quilt is poor in flame-retardant performance.
In order to solve the technical problem, the utility model aims to realize that:
a flame-retardant silk quilt comprises a silk quilt main body.
The silk quilt main body comprises a first fabric layer, a quilt core and a second fabric layer which are sequentially arranged;
the first fabric layer and the second fabric layer are sewn through sewing threads;
a first reinforcing layer is arranged between the first fabric layer and the quilt core, and a second reinforcing layer is arranged between the second fabric layer and the quilt core;
the first reinforcing layer is made of mesh cloth, the second reinforcing layer is formed by interweaving aramid fiber flame-retardant breathable yarns, and a layer of drying agent is attached to the surfaces of the first reinforcing layer and the second reinforcing layer;
the quilt core comprises silk, and tannic acid is attached to the silk;
the first fabric layer is made of flame-retardant fabric, and the second fabric layer is made of flame-retardant breathable fabric.
On the basis of the scheme, the quilt core further comprises protective sleeves arranged on two sides of the silk as a preferable scheme of the scheme.
On the basis of the scheme, the protective sleeve is made of non-woven fabrics, and protective yarns are arranged on one side close to the silk.
On the basis of the scheme and as the preferable scheme of the scheme, the fibers forming the flame-retardant fabric are formed by stranding and twisting flame-retardant acrylic fibers, flame-retardant viscose, polysulfonamide and conductive fibers.
On the basis of the scheme, the flame-retardant breathable fabric is made by weaving aramid flame-retardant breathable yarns serving as aramid flame-retardant breathable warp yarns and silk flame-retardant breathable yarns serving as silk flame-retardant breathable weft yarns, so that the second fabric layer has a good flame-retardant effect and good breathability.
The utility model has the beneficial effects that:
compared with the prior art, the fabric layer forming the practical silk quilt has good flame retardant property, so that the silk quilt integrally meets the requirement of a user on flame retardance; the flame-retardant design of the quilt core silk is simple and easy to obtain, low in price, natural and non-toxic, and good in flame retardant property; the first enhancement layer and the cooperation of second enhancement layer have not only satisfied the requirement of the mechanical properties and the fire behaviour of silk quilt, can play certain anti-drilling silk effect moreover.
The utility model has the advantages of reasonable structural design, good flame retardant property, naturalness and no stimulation.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of the quilt core structure.
In the figure, 1-first coverstock layer; 2-a first reinforcement layer; 3-quilt core; 31-silk; 32-a protective sleeve; 4-a second reinforcing layer; 5-second facing material layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1-2, a flame-retardant silk quilt comprises a silk quilt main body; the silk quilt main body comprises a first fabric layer 1, a quilt core 3 and a second fabric layer 5 which are arranged in sequence; the first fabric layer 1 and the second fabric layer 5 are sewn through sewing threads; a first reinforcing layer 2 is arranged between the first fabric layer 1 and the quilt core 3, and a second reinforcing layer 4 is arranged between the second fabric layer 5 and the quilt core 3; the first reinforcing layer 2 is made of gridding cloth, the second reinforcing layer 4 is formed by interweaving aramid flame-retardant breathable yarns, and a layer of drying agent is attached to the surfaces of the first reinforcing layer and the second reinforcing layer 4; the quilt core 3 comprises silk 31, and tannin is attached to the silk 31; the first fabric layer 1 is made of flame-retardant fabric, and the second fabric layer 5 is made of flame-retardant breathable fabric.
Specifically, a layer of drying agent is attached to the surfaces of the first reinforcing layer and the second reinforcing layer 4 through a coating operation. Further, the tannic acid attached to the silk 31 is obtained by directly immersing the silk into a tannic acid solution with the pH value of 3-4, heating to 80-90 ℃ for heat preservation treatment, and then immersing into a metal salt solution. In the utility model, the used tannic acid is derived from plant tissues and is an environment-friendly natural compound, and the flame-retardant finishing method is a brand-new flame-retardant method and technology, and the flame-retardant finishing process is simple to operate and has obvious effect. The manufacturing process of the flame-retardant silk quilt is more environment-friendly, efficient, simple and feasible.
Further, the quilt core 3 further comprises protective sleeves 32 arranged on two sides of the silk 31, so that the silk is fixed in shape and has certain stress capacity. Still further, protective sheath 32 is made by the non-woven fabrics, and is provided with the protection yarn near silk 31 one side, has avoided direct and by 3 contacts of core, and then causes the difficult washing of pollution to being difficult for by core 3.
Furthermore, the fibers forming the flame-retardant fabric are formed by stranding and twisting flame-retardant acrylic fibers, flame-retardant viscose, polysulfonamide and conductive fibers, and the flame-retardant viscose comprises the following components in percentage by mass: 40-50% of flame-retardant acrylic, 10-20% of flame-retardant viscose, 30-40% of polysulfonamide and 3-5% of conductive fiber. The first fabric layer designed in the way is soft in hand feeling, and has the excellent characteristics of good fluffiness, drapability, moisture absorption and air permeability, higher strength, wear resistance, good fabric finish, color fastness, no melting and dripping in fire and the like.
Furthermore, the flame-retardant breathable fabric is formed by weaving aramid flame-retardant breathable yarns serving as aramid flame-retardant breathable warp yarns and silk flame-retardant breathable yarns serving as silk flame-retardant breathable weft yarns, so that the second fabric layer has a good flame-retardant effect and good breathability. The aramid fiber flame-retardant breathable yarns are 40-60N in metric count range, and the silk flame-retardant breathable yarns are 15-20N in metric count range. The aramid fiber flame-retardant breathable warp yarns are obtained by blending 70-95% of aramid fiber flame-retardant fibers and 5-30% of cotton fibers, and the silk flame-retardant breathable weft yarns are obtained by blending 70-95% of silk fibers and 5-30% of cotton fibers.
The foregoing detailed description of the preferred embodiments of the utility model has been presented. It should be understood that numerous modifications and variations could be devised by those skilled in the art in light of the present teachings without departing from the inventive concepts. Therefore, the technical solutions available to those skilled in the art through logic analysis, reasoning and limited experiments based on the prior art according to the concept of the present invention should be within the scope of protection defined by the claims.

Claims (5)

1. The utility model provides a fire-retardant silk quilt, includes the silk quilt main part, its characterized in that:
the silk quilt main body comprises a first fabric layer (1), a quilt core (3) and a second fabric layer (5) which are arranged in sequence;
the first fabric layer (1) and the second fabric layer (5) are sewn through sewing threads;
a first reinforcing layer (2) is arranged between the first fabric layer (1) and the quilt core (3), and a second reinforcing layer (4) is arranged between the second fabric layer (5) and the quilt core (3);
the first reinforcing layer (2) is made of gridding cloth, the second reinforcing layer (4) is formed by interweaving aramid flame-retardant breathable yarns, and a layer of drying agent is attached to the surfaces of the first reinforcing layer and the second reinforcing layer (4);
the quilt core (3) comprises silk (31), and tannic acid is attached to the silk (31);
the first fabric layer (1) is made of flame-retardant fabric, and the second fabric layer (5) is made of flame-retardant breathable fabric.
2. Flame retardant silk quilt according to claim 1, characterized in that the quilt core (3) further comprises protective sleeves (32) arranged on both sides of the silk (31).
3. Flame-retardant silk quilt according to claim 2, characterized in that the protective sheath (32) is made of non-woven fabric and protective yarn is arranged on the side close to the silk (31).
4. The flame-retardant silk quilt according to claim 1, characterized in that the fibers forming the flame-retardant fabric are formed by plying and twisting flame-retardant acrylic fibers, flame-retardant viscose, polysulfonamide and conductive fibers.
5. The flame-retardant silk quilt according to claim 1, wherein the flame-retardant breathable fabric is woven by using aramid flame-retardant breathable yarns as aramid flame-retardant breathable warp yarns and using silk flame-retardant breathable yarns as silk flame-retardant breathable weft yarns.
CN202122391356.0U 2021-09-30 2021-09-30 Flame-retardant silk quilt Active CN216754098U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122391356.0U CN216754098U (en) 2021-09-30 2021-09-30 Flame-retardant silk quilt

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122391356.0U CN216754098U (en) 2021-09-30 2021-09-30 Flame-retardant silk quilt

Publications (1)

Publication Number Publication Date
CN216754098U true CN216754098U (en) 2022-06-17

Family

ID=81955079

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122391356.0U Active CN216754098U (en) 2021-09-30 2021-09-30 Flame-retardant silk quilt

Country Status (1)

Country Link
CN (1) CN216754098U (en)

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