CN2595344Y - Far infrared negative ion tye cover - Google Patents

Far infrared negative ion tye cover Download PDF

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Publication number
CN2595344Y
CN2595344Y CN 03202156 CN03202156U CN2595344Y CN 2595344 Y CN2595344 Y CN 2595344Y CN 03202156 CN03202156 CN 03202156 CN 03202156 U CN03202156 U CN 03202156U CN 2595344 Y CN2595344 Y CN 2595344Y
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CN
China
Prior art keywords
far infrared
eyeshield
nonwoven fabric
fabric layer
anion
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN 03202156
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Chinese (zh)
Inventor
黄新府
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Speedmetal International Industrial Co Ltd Taiwan
Original Assignee
Speedmetal International Industrial Co Ltd Taiwan
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Speedmetal International Industrial Co Ltd Taiwan filed Critical Speedmetal International Industrial Co Ltd Taiwan
Priority to CN 03202156 priority Critical patent/CN2595344Y/en
Application granted granted Critical
Publication of CN2595344Y publication Critical patent/CN2595344Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a far infrared negative ion eye cover, which comprises a main body of the eye cover and a male and a female sticking buckle straps which are respectively arranged on both sides of the main body of the eye cover, wherein, the main body of the eye cover is composed of a far infrared weaving layer and a negative ion weaving layer which are seamed and connected, the far infrared weaving layer is positioned on the inner side, and the negative ion weaving layer is positioned on the outer side. The far infrared weaving layer is positioned on the inner side and is contacted with the muscle and skin of eye region of human body at the time of wearing, the far infrared can be emitted directly to human body, and the blood capillary of human body can be prompted to dilate to make the blood circulation smooth and promote metabolism and reinforce the immunity of human body. The negative ion weaving layer is positioned on the outer side and is contacted with the outer side air at the time of wearing, and negative ions can be emitted to purify the air around human body.

Description

The far infrared ray negative ions eyeshield
[technical field]
This utility model relates to a kind of eyeshield, and particularly a kind of have far infrared and anion effect, and can promote dress comfortableness have a far infrared ray negative ions eyeshield.
[background technology]
Referring to shown in Figure 1, general eyeshield 10 is made of an a glance cover body 11 and a headband 12, this headband 12 is the both sides that are connected in eyeshield body 11, be available for users to be worn on the head, this eyeshield body 11 just can be covered paste the eyes position of touching at user, this eyeshield body 11 is embedded with most Magnetitum 13 in addition at the position of corresponding user eyes, the magnetic line of force by these Magnetitums 13 produce makes when dressing this eyeshield 10 human eye is had massage effect.
Above-mentioned eyeshield 10 structures have the effect of magnetic massaging to human body, but these eyeshield 10 structures still have the place of inconvenience in the use, eyeshield 10 structures that generally possess certain curative effect are in order to produce this curative effect to the human eye, normally reach by bury object underground in eyeshield 10 inside with this curative effect of generation, the object of for example above-mentioned generation curative effect is meant Magnetitum 13, yet these objects all are to be solidified kenel usually, this makes this eyeshield 10 bury the position underground at this obviously hard blocky phenomenon can occur, and can additionally increase the weight of eyeshield 10, cause when dressing eyeshield 10, can form constriction to the user eye, badly influence the comfortableness of wearing.
[utility model content]
This utility model purpose is to provide a kind of and produces far infrared and anion and have the far infrared ray negative ions eyeshield of dressing comfortable effect.
This utility model provides a kind of far infrared ray negative ions eyeshield, and it comprises the male and female magic tape that a glance cover body and is located at these eyeshield body both sides respectively, it is characterized in that:
This eyeshield body is sewed up by a far infrared nonwoven fabric layer and an anion nonwoven fabric layer and to form, and this far infrared nonwoven fabric layer is positioned at the inboard, and this anion nonwoven fabric layer is positioned at the outside.This far infrared nonwoven fabric layer is positioned at the inboard, during wearing and human body eye skin do to paste and to touch, can directly distribute far infrared to human body, this anion nonwoven fabric layer is positioned at the outside, contact with outside air during wearing, can distribute anion to purify the human body ambient air, by the combination of above-mentioned two nonwoven fabric layers, can make this eyeshield body have soft flexual structure, dress comfortable effect so as to reaching.
Described far infrared ray negative ions eyeshield is characterized in that: the fibrous inside of this far infrared nonwoven fabric layer has the far infrared powder of nano-scale.
Described far infrared ray negative ions eyeshield is characterized in that: the material of this far infrared nanometer powder can be the zirconium oxide of tool polycrystalline phase.
Described far infrared ray negative ions eyeshield is characterized in that: the fibrous inside of this anion nonwoven fabric layer has the negative ion powder of nano-scale.
Described far infrared ray negative ions eyeshield is characterized in that: the material of this anion nanometer powder can be titanium dioxide.
Effect statement as back that the expection of this utility model far infrared ray negative ions eyeshield can be reached:
(1). have the activation curative effect of far infrared:
The far infrared nonwoven fabric layer 21 of this utility model eyeshield body 20 can directly exhale far infrared to human body, far infrared has warm-heat effect, on therapeutic treatment, used widely, the irradiation far infrared can impel the human microvascular expansion, make blood circulation smooth and easy and enhance metabolism, strengthen body immunity,, health is quite had curative effect so as to active human physiological functions.
(2). have the clean-up effect of anion:
The anion nonwoven fabric layer 22 of this novel eyeshield body 20 can give out anion to air, anion has the effect of antibacterial deodourizing, produce as the air quality in forest or the waterfall, and can be human body via breathing and absorb, can purify the blood to human body and to promote circulation, stable spirit and lax emotion are used in the eyeshield product, more help the effect of hypnosis, system antiperspirant and cough-relieving.
(3). can promote the comfortableness of wearing:
This utility model mainly is exactly in order to improve the disappearance that general eyeshield 10 uses solids, its means are to make eyeshield body 20 by this far infrared nonwoven fabric layer 21 and anion nonwoven fabric layer 22, make the structure itself of weaving cotton cloth to produce the far infrared and the anion of tool curative effect, and these structures of weaving cotton cloth are the softish pliabilities that have, weight is also quite light and handy, be worn on and do not have constriction on the human body head, dress considerably comfortable.
[description of drawings]
Below by most preferred embodiment and accompanying drawing this utility model far infrared ray negative ions eyeshield is elaborated, in the accompanying drawing:
Fig. 1 is the axonometric chart of general eyeshield.
Fig. 2 is the axonometric chart of this utility model far infrared ray negative ions eyeshield one preferred embodiment, illustrates mainly to be made of a glance cover body and male and female magic tape.
Fig. 3 is the cutaway view of above-mentioned preferred embodiment, illustrates that this eyeshield body mainly has a far infrared nonwoven fabric layer and an anion nonwoven fabric layer.
Fig. 4 is the flow chart of manufacturing of above-mentioned preferred embodiment, and the process of manufacturing of this far infrared nonwoven fabric layer (anion nonwoven fabric layer) is described.
Fig. 5 is the microstructure enlarged drawing of the eyeshield body of above-mentioned preferred embodiment, and the situation that material is dispersed in the inner fiber implantation distribution of this far infrared nonwoven fabric layer (or anion nonwoven fabric layer) is described.
[specific embodiment]
See also Fig. 2, shown in Figure 3, in one preferred embodiment of this utility model far infrared ray negative ions eyeshield, the magic tape 30,40 that consists predominantly of a glance cover body 20 and be connected to a public mother of these eyeshield body both sides, can flexibly adjust length by these male and female magic tape 30,40 mutual thread gluings, but be worn on the head of user, what this utility model was improved focuses on with making these eyeshield body 20 quick and convenient:
This eyeshield body 20, it has a far infrared nonwoven fabric layer 21, spongy layer 23 in the middle of the one anion nonwoven fabric layer 22 and, this centre spongy layer 23 is embedded in the middle of far infrared nonwoven fabric layer 21 and the anion nonwoven fabric layer 22, far infrared nonwoven fabric layer 21 and anion nonwoven fabric layer 22 are provided with a rolling 24 at place, two ends up and down, sew up along these rolling 24 peripheries, can make far infrared nonwoven fabric layer 21 and anion nonwoven fabric layer 22 be together with each other, in the present embodiment, the fibre structure of this far infrared nonwoven fabric layer 21 and anion nonwoven fabric layer 22 is as described below, itself can not produce far infrared and anion because weave cotton cloth, on the material that therefore must be able to produce far infrared and anion is combined in and weaves cotton cloth, if but these materials just adhere to the surface of weaving cotton cloth merely, to remove because of the cleaning behavior easily, for solving this problem, the nanotechnology that this utility model utilization can have been implemented at present is as engagement means.
See also shown in Figure 4, at first, it is the microparticle (powder) that the material that can produce far infrared or anion is made into nano-scale, the material of present embodiment far infrared powder is to adopt the zirconium oxide of polycrystalline phase, the material of negative ion powder then adopts titanium dioxide, the nanometer processing procedure can adopt modes such as laser lift-off or chemical stripping, because the nano-particle method for making belongs to prior art, this just few introduction, far infrared powder (or negative ion powder) is after process pelletize (chip), sneak into general yarn again and can become the artificial silk agglomerate, to the operation of reeling off raw silk from cocoons of artificial silk agglomerate, then utilize silk thread braiding the becoming cloth that extracts again, just can weave out far infrared nonwoven fabric layer 21 (or anion nonwoven fabric layer 22) through above-mentioned operation.
See also shown in Figure 5, no matter be far infrared nonwoven fabric layer 21 or anion nonwoven fabric layer 22, enlarged drawing with regard to its internal fiber structure, the material 200 of dispersing that can exhale far infrared or anion is to be dispersed in fiber 100 inside in the implantation mode, it is not the position, top layer, make this weave cotton cloth and itself just have the ability that exhales far infrared or anion, again with regard to the structure of eyeshield body 20, because far infrared is easier to reduce energy because of obstruct, therefore this far infrared nonwoven fabric layer 21 is fit to do in the inboard, touch with the subsides of human body eye skin, can directly distribute far infrared to human body, anion nonwoven fabric layer 22 is fit to do contact with outside air in the outside, can give out a large amount of anion, just the air around the human body nose be produced purification.

Claims (5)

1. far infrared ray negative ions eyeshield, it comprises the male and female magic tape that a glance cover body and is located at these eyeshield body both sides respectively, it is characterized in that:
This eyeshield body is sewed up by a far infrared nonwoven fabric layer and an anion nonwoven fabric layer and to form, and this far infrared nonwoven fabric layer is positioned at the inboard, and this anion nonwoven fabric layer is positioned at the outside.
2. far infrared ray negative ions eyeshield as claimed in claim 1 is characterized in that: the fibrous inside of this far infrared nonwoven fabric layer has the far infrared powder of nano-scale.
3. far infrared ray negative ions eyeshield as claimed in claim 2 is characterized in that: the material of this far infrared nanometer powder is the zirconium oxide of tool polycrystalline phase.
4. far infrared ray negative ions eyeshield as claimed in claim 1 is characterized in that: the fibrous inside of this anion nonwoven fabric layer has the negative ion powder of nano-scale.
5. far infrared ray negative ions eyeshield as claimed in claim 4 is characterized in that: the material of this anion nanometer powder is a titanium dioxide.
CN 03202156 2003-01-14 2003-01-14 Far infrared negative ion tye cover Expired - Fee Related CN2595344Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 03202156 CN2595344Y (en) 2003-01-14 2003-01-14 Far infrared negative ion tye cover

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 03202156 CN2595344Y (en) 2003-01-14 2003-01-14 Far infrared negative ion tye cover

Publications (1)

Publication Number Publication Date
CN2595344Y true CN2595344Y (en) 2003-12-31

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN 03202156 Expired - Fee Related CN2595344Y (en) 2003-01-14 2003-01-14 Far infrared negative ion tye cover

Country Status (1)

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CN (1) CN2595344Y (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106137524A (en) * 2015-04-17 2016-11-23 上海暖友实业有限公司 Spontaneous heating steam eye protection health-care patch containing anion and preparation method thereof
CN109172133A (en) * 2018-09-30 2019-01-11 浙江和也健康科技有限公司 A kind of acupuncture point magnetic eye shield
CN110353880A (en) * 2019-06-28 2019-10-22 四川省一直牛健康管理有限公司 A far infrared and the fever eyeshade of fragrant plant compatibility and preparation method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106137524A (en) * 2015-04-17 2016-11-23 上海暖友实业有限公司 Spontaneous heating steam eye protection health-care patch containing anion and preparation method thereof
CN109172133A (en) * 2018-09-30 2019-01-11 浙江和也健康科技有限公司 A kind of acupuncture point magnetic eye shield
CN110353880A (en) * 2019-06-28 2019-10-22 四川省一直牛健康管理有限公司 A far infrared and the fever eyeshade of fragrant plant compatibility and preparation method thereof

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C14 Grant of patent or utility model
GR01 Patent grant
C19 Lapse of patent right due to non-payment of the annual fee
CF01 Termination of patent right due to non-payment of annual fee