Down jacket liner capable of eliminating static electricity

文档序号:1662951 发布日期:2019-12-31 浏览:20次 中文

阅读说明:本技术 一种可消除静电的羽绒服内胆 (Down jacket liner capable of eliminating static electricity ) 是由 吴昆明 张传贵 李伟 嵇文容 于 2019-11-01 设计创作,主要内容包括:本发明涉及一种可消除静电的羽绒服内胆,该可消除静电的羽绒服内胆,包括内胆主体,所述内胆主体设于羽绒服面层内,内胆主体包括内胆面层和防静电层,内胆面层设有两层,防静电层设于两层内胆面层之间,两层内胆面层的边沿缝合构成封闭结构,之间构成腔室,防静电层设于该腔室内,并且防静电层与上面的一层内胆面层构成一个独立的充绒室,与下面的一层内胆面层之间构成另一个独立的充绒室;本发明设置三层结构的内胆主体来构成充绒室,降低单个充绒室的厚度,降低羽绒与面层的接触面积与羽绒之间的接触面积的比值,避免内胆主体内部静电的积累。(The invention relates to a down jacket liner capable of eliminating static electricity, which comprises a liner main body, wherein the liner main body is arranged in a down jacket surface layer and comprises a liner surface layer and an anti-static layer, the liner surface layer is provided with two layers, the anti-static layer is arranged between the two liner surface layers, the edges of the two liner surface layers are sewn to form a closed structure, a cavity is formed between the liner surface layers, the anti-static layer is arranged in the cavity, the anti-static layer and the upper liner surface layer form an independent down filling chamber, and another independent down filling chamber is formed between the anti-static layer and the lower liner surface layer; the down filling chamber is formed by arranging the liner main body with the three-layer structure, the thickness of the single down filling chamber is reduced, the ratio of the contact area between the down and the surface layer to the contact area between the down is reduced, and the accumulation of static electricity in the liner main body is avoided.)

1. A can eliminate down coat inner bag of static, its characterized in that: the down jacket comprises a liner main body, the liner main body is arranged in a down jacket surface layer, the liner main body comprises a liner surface layer and an anti-static layer, the liner surface layer is provided with two layers, the anti-static layer is arranged between the two layers of liner surface layers, the edges of the two layers of liner surface layers are sewn to form a closed structure, a cavity is formed between the two layers of liner surface layers, the anti-static layer is arranged in the cavity, the anti-static layer and the upper liner surface layer form an independent down filling chamber, another independent down filling chamber is formed between the anti-static layer and the lower liner surface layer, the down filling chamber is filled with down used for keeping warm, the chamber filled with the down inside the liner is divided into the two independent down filling chambers by the anti-static layer, and the thickness of each layer of down filling can be reduced through a dividing mode on the premise of.

2. The liner of the down jacket capable of eliminating static electricity as claimed in claim 1, wherein: the edge of the anti-static layer and the surface layer of the inner container are sewn and sealed.

3. The liner of the down jacket capable of eliminating static electricity as claimed in claim 1, wherein: the antistatic layer is made of antistatic metal cloth or other antistatic cloth.

4. The liner of the down jacket capable of eliminating static electricity as claimed in claim 1, wherein: and a plurality of stitches are arranged between the anti-static layer and the two liner surface layers and penetrate through the two liner surface layers and the anti-static layer.

5. The liner of the down jacket capable of eliminating static electricity as claimed in claim 1, wherein: the down filling hole is formed in the inner container main body and connected with the down filling device, and the down filling device can fill the down into the inner container main body.

6. The liner of the down jacket capable of eliminating static electricity as claimed in claim 1, wherein: the down filling device comprises a pipe body, a piston mechanism, a storage mechanism and an output mechanism, wherein the piston mechanism is arranged in the pipe body and comprises a piston, a piston rod and a handle;

the storage mechanism is arranged at the top of the pipe body, a feeding hole communicated with the storage mechanism is formed in the top of the pipe body, the storage mechanism comprises a storage tank, the lower end of the storage tank is connected with the pipe body, an outlet at the lower end of the storage tank is communicated with the feeding hole of the pipe body, an upper cover is arranged at the top of the storage tank, an air pressure balancing hole is formed in the upper cover, and a first one-way mechanism is arranged in the air pressure balancing hole;

the first one-way mechanism comprises a first spring seat, a first spring, a first sliding column, a first valve core and a first valve seat, the first spring seat is arranged at the inner lower part of the air pressure balance hole, a through hole in clearance fit with the first sliding column is formed in the center of the first spring seat, the first sliding column is fixedly provided with the first valve core, the first sliding column between the first valve core and the first spring seat is sleeved with the first spring, the first valve core is matched with the first valve seat, and the first valve seat is arranged at the inner upper part of the air pressure balance hole;

the front end of the tube body is provided with a discharge hole, and the discharge hole is connected with an output mechanism.

7. The liner of the down jacket capable of eliminating static electricity as claimed in claim 1, wherein: the output mechanism comprises an output pipe, one end of the output pipe is connected with the pipe body, the other end of the output pipe is sealed through a second spring seat, a second spring and a valve sleeve are arranged in the output pipe, the valve sleeve is arranged in the output pipe and is in interference fit with the output pipe, the second spring is arranged between one side, close to the second spring seat, of the valve sleeve and the second spring seat, an outlet is formed in one side of the output pipe, and the outlet is connected with the plug.

Technical Field

The invention belongs to the technical field of clothes, and particularly relates to a down jacket liner capable of eliminating static electricity.

Background

The materials of the down jacket are mainly down and coated fabrics. Firstly, down feather: a mixture of small feathers and down (also known as dolomids). The former is called feather, the latter is called velvet. The feather of duck and goose is washed to separate small feather and down feather for down jacket. The down feather is gray and white, and is preferred. The quality of down jackets is related to the down filling and down content. The down filling amount refers to the weight of down filled in one down jacket, expressed by grams, generally about 250 grams, and is small and poor in heat retention; the down content refers to the content of down particles in the down, and is generally 50-80% in percentage. High velvet content and good quality. The down can not easily dissipate the heat of the human body and has soft hand feeling, but is not easy to bulge in time when being pressed and wetted, and the small feather can ensure that the clothes are fluffy and bulge to keep more air in the clothes, thus being beneficial to warm keeping, but the small feather is more, the heat is easy to dissipate and has a fluff feeling. Therefore, the down feather and the small feather must be collected and stored at the same time, and the proportion is proper. Secondly, the coated fabric is made of silk, cotton cloth, cotton polyester and other fabrics with high density of warps and wefts, the gaps between the warps and wefts are reduced through rolling treatment, and then the coated fabric is coated with high polymer slurry to form a cross-linked transparent leather film coating with the fabrics so as to seal the gaps between the warps and wefts of the fabrics.

Disclosure of Invention

The present invention is directed to solving the above problems and providing a down jacket liner capable of eliminating static electricity, which prevents the accumulation of static electricity.

The invention realizes the purpose through the following technical scheme:

a down jacket liner capable of eliminating static electricity comprises a liner main body, wherein the liner main body is arranged in a down jacket surface layer and comprises a liner surface layer and an anti-static layer, the liner surface layer is provided with two layers, the anti-static layer is arranged between the two liner surface layers, the edges of the two liner surface layers are sewn to form a closed structure, a cavity is formed between the liner surface layers, the anti-static layer is arranged in the cavity, the anti-static layer and the liner surface layer on the upper layer form an independent down filling chamber, another independent down filling chamber is formed between the anti-static layer and the liner surface layer on the lower layer, down for keeping warm is filled in the down filling chamber, the anti-static layer divides the cavity filled with down in the liner into two independent down filling chambers, the thickness of each layer of down filling can be reduced in a dividing mode on the premise of not changing the down filling amount, the ratio of the contact area between the down and the surface layer to the contact area between the down, improve the electrostatic conductivity and avoid the accumulation of static electricity between down feathers.

As a further optimized scheme of the invention, the edge of the anti-static layer and the surface layer of the inner container are sewn and sealed.

As a further optimization scheme of the invention, the antistatic layer is made of antistatic metal cloth or other antistatic cloth materials, and can conduct and eliminate static electricity.

As a further optimization scheme of the invention, a plurality of stitches are arranged between the anti-static layer and the two liner surface layers, and the stitches penetrate through the two liner surface layers and the one anti-static layer, so that on one hand, the secondary conduction is carried out on the static electricity between the down feather, and on the other hand, the conduction can be formed between the liner surface layer and the external down jacket surface layer, the static accumulation is reduced, and the effect of conducting the liner main body to the outside is improved.

As a further optimization scheme of the invention, the inner container main body is provided with a down filling hole, and the down filling hole is connected with a down filling device and can be used for filling down into the inner container main body.

As a further optimization scheme of the invention, the down filling device comprises a pipe body, a piston mechanism, a storage mechanism and an output mechanism, wherein the piston mechanism is arranged in the pipe body and comprises a piston, a piston rod and a handle, the piston is arranged in the pipe body and is in interference fit with the pipe body, the rear end of the piston is connected with the piston rod, and the rear end of the piston rod is connected with the handle. The piston rod is conveniently pulled or pushed through the handle, so that the piston is pushed or pulled, the piston moves in the pipe body, and the inner cavity of the pipe body on the front side of the piston is reduced or enlarged.

The storage mechanism is arranged at the top of the pipe body, a feeding hole communicated with the storage mechanism is formed in the top of the pipe body, the storage mechanism comprises a storage tank, the lower end of the storage tank is connected with the pipe body, an outlet at the lower end of the storage tank is communicated with the feeding hole of the pipe body, an upper cover is arranged at the top of the storage tank, an air pressure balancing hole is formed in the upper cover, and a first one-way mechanism is arranged in the air pressure balancing hole;

the first one-way mechanism comprises a first spring seat, a first spring, a first sliding column, a first valve core and a first valve seat, the first spring seat is arranged at the inner lower part of the air pressure balance hole, a through hole in clearance fit with the first sliding column is formed in the center of the first spring seat, the first sliding column is fixedly provided with the first valve core, the first sliding column between the first valve core and the first spring seat is sleeved with the first spring, the first valve core is matched with the first valve seat, and the first valve seat is arranged at the inner upper part of the air pressure balance hole;

the front end of the tube body is provided with a discharge hole, and the discharge hole is connected with an output mechanism.

As a further optimized scheme of the invention, the output mechanism comprises an output pipe, one end of the output pipe is connected with the pipe body, the other end of the output pipe is sealed by a second spring seat, a second spring and a valve sleeve are arranged in the output pipe, the valve sleeve is arranged in the output pipe and is in interference fit with the output pipe, the second spring is arranged between one side of the valve sleeve, which is close to the second spring seat, and an outlet is formed in one side of the output pipe and is connected with the nozzle. The valve sleeve is pressed to overcome the elastic force of the second spring, so that the valve sleeve is separated from the outlet of the output pipe, the outlet is opened, and the plug nozzle is communicated with the output pipe.

The invention has the beneficial effects that:

1) the down filling chamber is formed by arranging the liner main body with the three-layer structure, the thickness of a single down filling chamber is reduced, the ratio of the contact area between down and a surface layer to the contact area between the down is reduced, and the accumulation of static electricity in the liner main body is avoided;

2) the inner pad can enable a user to fill down through the down filling device, and the down filling amount is controlled to adjust the heat retention property of the inner container main body, so that the inner pad is suitable for the weather with wider temperature.

Drawings

FIG. 1 is a schematic structural diagram of the present invention in accordance with one embodiment;

FIG. 2 is a schematic diagram of a layer structure according to the present invention in one embodiment;

FIG. 3 is a schematic structural diagram of the present invention in a second embodiment;

FIG. 4 is a schematic structural view of the down filling device according to the second embodiment of the present invention;

FIG. 5 is a schematic structural view of a first unidirectional mechanism of the present invention in the second embodiment;

fig. 6 is a schematic structural view of an output mechanism of the present invention in the second embodiment.

In the figure: the device comprises a pipe body 1, a piston 2, a piston rod 3, a handle 4, a feeding hole 5, a storage tank 6, an upper cover 7, an air pressure balance hole 8, a first one-way mechanism 9, a first spring seat 10, a first spring 11, a first sliding column 12, a first valve core 13, a first valve seat 14, an output pipe 15, a second spring seat 16, a second spring 17, a valve sleeve 18, a nozzle 19, an inner container main body 100, an inner container surface layer 101, an anti-static layer 102, a down filling chamber 103 and a down filling hole 104.

Detailed Description

The present application will now be described in further detail with reference to the drawings, it should be noted that the following detailed description is given for illustrative purposes only and is not to be construed as limiting the scope of the present application, as those skilled in the art will be able to make numerous insubstantial modifications and adaptations to the present application based on the above disclosure.

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