CN205167714U - Antibacterial, antistatic high performance non -woven fabrics - Google Patents

Antibacterial, antistatic high performance non -woven fabrics Download PDF

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Publication number
CN205167714U
CN205167714U CN201520961257.3U CN201520961257U CN205167714U CN 205167714 U CN205167714 U CN 205167714U CN 201520961257 U CN201520961257 U CN 201520961257U CN 205167714 U CN205167714 U CN 205167714U
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layer
bamboo carbon
woven fabrics
carbon magnetic
fiber layer
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CN201520961257.3U
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Chinese (zh)
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肖乐中
苏凤川
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Xiantao Xinfa Plastic Products Co Ltd
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Xiantao Xinfa Plastic Products Co Ltd
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  • Chemical Or Physical Treatment Of Fibers (AREA)

Abstract

The utility model provides an antibacterial, antistatic high performance non -woven fabrics, this non -woven fabrics of its characterized in that includes flax fiber layer, last polypropylene layer, bamboo carbon magnetic fiber layer, the flax fiber level is between last polypropylene layer and bamboo carbon magnetic fiber layer, be equipped with thru hole aluminium thin layer between flax fiber layer and the bamboo carbon magnetic fiber layer, be equipped with down the polypropylene layer below the bamboo carbon magnetic fiber layer, the higher authority of going up the polypropylene layer still is equipped with nanometer titanium dioxide photocatalyst layer. The utility model discloses microcirculation can effectively be improved to the function of having utilized magnetic fiber can release far infrared, and the body regulation pH valve guides human static electricity discharge, plays the function of health care to a certain extent. Novel bamboo carbon magnetic fiber layer structure has advantages such as intensity is big, light in weight, can improve the microcirculation, has dredged little hematal function. The skin makeup subtracts fat, and prevention old person skin is titillateed, the skin care of disinfecting, ventilative moisturizing.

Description

A kind of antibacterial, antistatic high-performance non-woven fabrics
Technical field
The utility model relates to a kind of non-woven fabrics, particularly a kind of antibacterial, antistatic high-performance non-woven fabrics.
Background technology
Non-woven fabrics is at medical supplies, and large-scale application has been carried out in the fields such as medicine equipment.But the easy balling-up of non-woven fabrics common in the market, in use procedure, antistatic effect is not enough.Fibrage in general non-woven fabrics does not possess yet and effectively improves microcirculation in human body, regulates human body acid-base value, guides the Electro-static Driven Comb of human body, does not possess obvious sterilizing skin beautifying health-care effect; And common non-woven fabric due to its insufficient strength, easily balling-up, gas permeability not, fast and efficient absorbent, can not can not be used for the high-end fields such as medical as desirable cloth.
Summary of the invention
The utility model object is to provide a kind of antibacterial, antistatic high-performance non-woven fabrics, to solve, non-woven fabrics antistatic effect in prior art is poor, easily balling-up, poor air permeability, can not fast and the problem such as efficient absorbent, insufficient strength, and realize sterilizing skin beautifying effect and prevent the health-care effect of pruitus.
For solving the problem, the utility model provides following technical scheme:
A kind of antibacterial, antistatic high-performance non-woven fabrics, it is characterized in that this non-woven fabrics comprises flax fiber layer, upper polypropylene layer, bamboo carbon magnetic fibre layer, described flax fiber layer is between upper polypropylene layer and bamboo carbon magnetic fibre layer, open-work aluminum film layer is provided with between described flax fiber layer and bamboo carbon magnetic fibre layer, be provided with lower polypropylene layer below described bamboo carbon magnetic fibre layer, above described upper polypropylene layer, be also provided with nano-titania photocatalyst layer.
As preferably, described bamboo carbon magnetic fibre layer is interweaved is formed by red polyster fibre far away, bamboo charcoal polyester fiber, magnetic fibre, wherein red polyster fibre far away is warp, and after bamboo charcoal polyester fiber, magnetic fibre plying, formation parallel and warp knitting form bamboo carbon magnetic fibre layer.
The utility model make use of the function that magnetic fibre can be releasing far infrared, effectively can improve microcirculation in human body, regulates human body acid-base value, guides the Electro-static Driven Comb of human body, plays the function of health care to a certain extent.Novel bamboo carbon magnetic fibre Rotating fields has the advantages such as intensity is large, lightweight, can improve microcirculation, dredge the function of thin vessels.Skin makeup, fat reducing, prevention the elderly skin itching, sterilizing skin-protective, air permeable humidity retaining.Nano-titania photocatalyst layer can prevent bacterium, viral invasion and grow; The powerful adsorption capacity of bamboo carbon fibre, can play the effect of effective sterilization, deodorizing.Open-work aluminium film can strengthen tensile strength of the present utility model, long-time by compression after can effectively keep excellent elasticity, there is higher compression durability.The utility model application speciality polymer material makes, and not easily balling-up, can be widely used in the making of high-grade medical accessory, medical garment or high-grade household articles.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the utility model bamboo carbon magnetic fibre Rotating fields schematic diagram;
Fig. 3 is production line schematic diagram of the present utility model.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, the utility model is described in further detail:
Composition graphs 1,2, shown in 3, this is antibacterial, antistatic high-performance non-woven fabrics, comprise flax fiber layer 2 and upper polypropylene layer 3 and lower polypropylene layer 6, flax fiber layer 2, between upper polypropylene layer 3 and lower polypropylene layer 6, arranges bamboo carbon magnetic fibre layer 5 between flax fiber layer 2 and lower polypropylene layer 6, be provided with open-work aluminum film layer 4 between flax fiber layer 2 and bamboo carbon magnetic fibre layer 5, upper polypropylene layer 3 is also provided with nano-titania photocatalyst layer 1.
As shown in Figure 2, bamboo carbon magnetic fibre layer 5 is interweaved is formed by red polyster fibre 51 far away, bamboo charcoal polyester fiber 52, magnetic fibre 52.Wherein red polyster fibre 51 far away is warp, and bamboo charcoal polyester fiber 52, magnetic fibre 53 form parallel after pooling capital and warp knitting forms bamboo carbon magnetic fibre layer 5.
Manufacture method: 1. weave bamboo carbon magnetic fibre layer 5 in advance, putting into vacuum aluminum-plating machine carries out vacuum aluminum-coated to bamboo carbon magnetic fibre layer, by adding express delivery aluminium speed, reducing evaporation boat electric current, form the open-work aluminum film layer 4 of band hole, then flax fiber layer 2 and open-work aluminum film layer 4, bamboo carbon magnetic fibre layer 5 are compounded to form grey cloth, first level that is placed on by grey cloth is again held on net conveyer belt 28, makes bamboo carbon magnetic fibre layer 5 down;
2. adopt polypropylene (PP) particulate material to be raw material, extrude through screw extruder high-temperature fusion, by melt spraying non-woven fabrics shower nozzle 10 die head spray silk, be sprayed on flax fiber layer 2, polypropylene layer 3 in formation;
3. grey cloth holds net conveyer belt 12 coiling through the second level, makes bamboo carbon magnetic fibre layer 2 upward, and another screw extruder sprays silk, air drawing by spun-bonded non-woven fabrics shower nozzle 25, is sprayed on the lower polypropylene layer 6 of formation on bamboo carbon magnetic fibre layer 5;
4. grey cloth is after vertically holding net conveyer belt 11 and the 3rd level and holding net conveyer belt 22 coiling, upper polypropylene layer 3 upward, through nano titanium oxide shower nozzle 23, be sprayed on the upper polypropylene layer 3 of grey cloth containing nano titanium oxide liquid, then form photocatalyst layer 1 after baker 210;
Manufacturing equipment: the device making above-mentioned cloth comprises the first level and holds net conveyer belt 28, described holding above net conveyer belt 28 is provided with melt spraying non-woven fabrics shower nozzle 10, be provided with the second level above the end holding net conveyer belt 28 in the first level and hold net conveyer belt 12, be provided with in the left side that the second level holds net conveyer belt 12 and vertically hold net conveyer belt 11, hold on net conveyer belt 12 in the second level and be provided with spun-bonded non-woven fabrics shower nozzle 25, vertically hold and be provided with the 3rd level on the right side of net conveyer belt 11 upper end and hold net conveyer belt 22, hold on net conveyer belt 22 in the 3rd level and be respectively equipped with nano titanium oxide shower nozzle 23 and baker 210.
Described first level is held bottom net conveyer belt 28 and is provided with first negative pressure trough 31 corresponding with melt spraying non-woven fabrics shower nozzle 10, hold bottom net conveyer belt 12 in the second level and be provided with second negative pressure trough corresponding with spun-bonded non-woven fabrics shower nozzle 25, described first negative pressure trough, the second negative pressure trough are connected with air exhauster 29 respectively.
In order to verify effect of the present utility model, the compound nonwoven cloth prepare above-mentioned detailed description of the invention and existing non-woven fabrics carry out contrast test, and its result is as shown in table 1.
Can be found by contrast experiment's data of table 1, by the non-woven fabrics after this manufacture method compound, its hot strength is obtained for and significantly improves.Bamboo carbon magnetic fibre layer 5 can be releasing far infrared function, effectively can improve microcirculation in human body, regulate human body acid-base value, guide the Electro-static Driven Comb of human body, create the health-care effect of significant sterilizing skin beautifying effect and prevention pruitus.Magnetic fibre not only has that anti-inflammatory is anti-swollen, step-down, improve the curative effect such as blood viscosity and microcirculation, and comfortable and easy to wear.

Claims (2)

1. antibacterial, an antistatic high-performance non-woven fabrics, it is characterized in that this non-woven fabrics comprises flax fiber layer, upper polypropylene layer, bamboo carbon magnetic fibre layer, described flax fiber layer is between upper polypropylene layer and bamboo carbon magnetic fibre layer, open-work aluminum film layer is provided with between described flax fiber layer and bamboo carbon magnetic fibre layer, be provided with lower polypropylene layer below described bamboo carbon magnetic fibre layer, above described upper polypropylene layer, be also provided with nano-titania photocatalyst layer.
2. antibacterial, the antistatic high-performance non-woven fabrics of one according to claim 1, it is characterized in that described bamboo carbon magnetic fibre layer is interweaved is formed by red polyster fibre far away, bamboo charcoal polyester fiber, magnetic fibre, wherein red polyster fibre far away is warp, and after bamboo charcoal polyester fiber, magnetic fibre plying, formation parallel and warp knitting form bamboo carbon magnetic fibre layer.
CN201520961257.3U 2015-11-28 2015-11-28 Antibacterial, antistatic high performance non -woven fabrics Active CN205167714U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520961257.3U CN205167714U (en) 2015-11-28 2015-11-28 Antibacterial, antistatic high performance non -woven fabrics

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Application Number Priority Date Filing Date Title
CN201520961257.3U CN205167714U (en) 2015-11-28 2015-11-28 Antibacterial, antistatic high performance non -woven fabrics

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CN205167714U true CN205167714U (en) 2016-04-20

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105365291A (en) * 2015-11-28 2016-03-02 周坤友 Polymer functional nonwoven fabric
CN107984857A (en) * 2017-12-25 2018-05-04 徐州仁和医疗科技有限公司 A kind of new medical non-woven fabrics

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105365291A (en) * 2015-11-28 2016-03-02 周坤友 Polymer functional nonwoven fabric
CN107984857A (en) * 2017-12-25 2018-05-04 徐州仁和医疗科技有限公司 A kind of new medical non-woven fabrics

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