CN205741716U - Function fabric and the clothing being made from - Google Patents

Function fabric and the clothing being made from Download PDF

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CN205741716U
CN205741716U CN201520904990.1U CN201520904990U CN205741716U CN 205741716 U CN205741716 U CN 205741716U CN 201520904990 U CN201520904990 U CN 201520904990U CN 205741716 U CN205741716 U CN 205741716U
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functional layer
function fabric
fabric
layer
clothing
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杨剑青
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Shenzhen Asian American Intelligent Technology Co Ltd
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Chuang Fang Development Co Ltd
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Abstract

This utility model relates to a kind of function fabric and the clothing being made from, this function fabric includes: base cloth layer, described base cloth layer includes cloth, and it is positioned at the functional layer on described base cloth layer, described functional layer includes silica gel masterbatch and anionic additive, and there is spatial configuration, wherein said functional layer has a thickness so that described function fabric can release concentration be 1,000 6000 anion of every cubic centimetre.

Description

Function fabric and the clothing being made from
Technical field
The present invention relates to a kind of function fabric that can discharge high-concentration anion and manufacture method thereof, a kind of function fabric being combined with the three-dimensional silica gel structure that can discharge high-concentration anion and manufacture method thereof.
Background technology
In atmospheric environment, being affected by cosmic ray, ultraviolet, soil and the air lonizing radiation of nature, some air molecule can discharge electronics.Neutral molecule in these electronics and air combines, thus becomes anion.
In air, the concentration of anion is one of mark of air quality quality.The standard delimited according to World Health Organization (WHO), the negative oxygen ion content of fresh air is to be not less than 1000-1500 in every cc of air.In practice it has been discovered that anion is to kill pathogenic bacteria, improve air quality and improve healthy effective means.Anion is after being combined with antibacterial, it is possible to makes antibacterial charged and easily settles and remove.In addition anion is also as reducing agent and bacterial reaction, causes the change of bacterial structure or the transfer of energy, thus reaches bactericidal effect.U.S. Environmental Protection Agency's EPA laboratory research finds, anion can be made an initiative sally by aerial Brownian movement and catch granule micronic dust, make it condense and precipitate, effectively remove in air 2.5 microns (PM2.5) and below, the micronic dust of even 1 micron, thus reduce the PM2.5 harm to health.Experiment finds, when in room air, the concentration of anion reaches 20,000 every cubic centimetre, the floating dust amount in air can reduce more than 98%, endangers the micronic dust of diameter less than 1 micron of maximum, antibacterial, virus etc. almost nil in particularly PM2.5.Additionally, anion can also can produce impact to the organism physiology activity of people by the nervous system of people and blood circulation.Anion can make the cerebral cortex process of inhibition of people strengthen and adjust corticocerebral function, therefore can play calmness, hypnosis and hypotensive activity;After negative oxygen ion enters human respiratory tract, make bronchial smooth muscle relax, release its spasm;Negative oxygen ion enters blood of human body, red blood born of the same parents' sedimentation rate can be made slack-off, cruor time extending, moreover it is possible to making red blood born of the same parents and blood calcium increase, leukocyte, blood calcium and blood glucose decline, and in tired muscle, the content of lactic acid reduces the most therewith.Negative oxygen ion can make the oxidizing process of the tissues such as the kidney of human body, liver, brain strengthen.
The concentration of anion in air, is affected by geographical conditions particularity and different.Table 1 shows the concentration of anion in common environmental.It will be seen that the anion concentration in the natural environment such as waterfall, forest, high mountain, seashore is higher, and the anion concentration in the urban environments such as park, street, office is relatively low, is even unable to reach the fresh air standard that World Health Organization delimit.
The negative ion concentration of table 1-diverse geographic location
Geographical position Negative ion concentration (every cubic centimetre)
Waterfall, forest 10000-20000
High mountain, seashore 5000-10000
Park 400-1000
Street <200
Office, automobile 60-150
Accordingly, it is considered to the beneficial effect of anion, and the reality that anion concentration in mankind's activity environment is relatively low, it would be desirable to provide the means of artificially generated anion.Can the means of artificially generated anion it is more desirable that these can be carried with.One preferred method be exactly manufacture can the wearable device of anion releasing, particularly clothing.
Providing that several method formed in the prior art can the wearable device of anion releasing or clothing.A kind of method is directly the material of anion releasing can manufacture wearable device or clothing.A kind of negative ion silicon rubber bra is disclosed in CN101513276A.This medicated bra directly with silicone rubber as carrier, the chemical powder that anion can be produced of 0.1%-3% in mixing;Or manufacture bra pad with silicone rubber and negative ion chemical powder to insert in conventional bra.Another kind of method is that manufacture can the functional cloth of anion releasing.Disclosing a kind of blended negative-ion fiber fabric in CN103643375A, it is formed by nano composite ceramic fiber, nano-antibacterial wool fiber, nano bamboo fiber and four kinds of face liber blending wovens of artificial cotton fiber.These nanofibers accounting 47-59% in fabric weight, and it is said can anion releasing.
But there are some defects in said method.For first method, the wearing comfort of the clothing made with silica gel and negative ion powder completely is the highest, and it often has relatively large weight, and texture not as cloth the most comfortable.For second method, its function ingredients content really being able to anion releasing is the most relatively low, causes negative ion concentration on the low side.Applicant further found that, in the clothing that these functional clothes are formed, the main cause producing anion is the friction between fabric.In other words, being in as people in the static situations such as sleep, office, this functional cloth is almost without at anion releasing.
Summary of the invention
The present invention proposes a kind of new function fabric for this, and it can the most stably discharge the anion of high concentration in static state.And the clothing being made up of this function fabric have more preferable comfortableness.
The present invention solves the problems referred to above the most by the following technical programs.
In one embodiment, the invention discloses a kind of function fabric, including: base cloth layer, described base cloth layer includes cloth, and it is positioned at the functional layer on described base cloth layer, described functional layer includes silica gel masterbatch and anionic additive, and has spatial configuration, and wherein said functional layer has a thickness so that described function fabric can release concentration be the anion of 1000-6000 every cubic centimetre.
In another embodiment, described functional layer has a thickness so that the negative ion concentration that function fabric can discharge is 2000-5000 every cubic centimetre.
In another embodiment, described functional layer has a thickness so that the negative ion concentration that function fabric can discharge is 3500 every cubic centimetre.
In another embodiment, described functional layer has honeycomb, star, sun shape, the cross section of decorative pattern.
In another embodiment, described functional layer has the longitudinal section of boss shape.
In another embodiment, the thickness of described functional layer is uneven on textile plane.
In another embodiment, described functional layer is applied only to one or more regional areas of described base cloth layer.
In another embodiment, described functional layer also includes that nano heating film layer, described nano heating film layer include the nano-particles reinforcement carbon fiber powder being applied on insulation polyester film.
In another embodiment, described anionic additive is for including ZnS, CaO, CePO4、Th(NO3)4、LaNO3Powder.
In another embodiment, one or more additional additive during described functional layer also includes far-infrared material, anti-biotic material, aromatic material and reinforcing material.
In another embodiment, described heat is released material and is included nano-particles reinforcement carbon fiber powder.
In one embodiment, the invention discloses a kind of clothing being made up of aforementioned function fabric.
In another embodiment, described clothing are gym suit, swimming suit, medicated bra, mask or binder.
In another embodiment, the described clothing one or more positions in its cervical region, shoulder, back, waist, thigh, shank, knee have the functional layer of concentration.
In one embodiment, the invention discloses a kind of 3D printing process manufacturing function fabric, comprise the following steps: (a) provides the cloth of the substrate layer as described function fabric, b () carries out microcomputer modelling to the functional layer of described function fabric, c () provides silica gel masterbatch and anionic additive, and by its melting mixing, and (d) utilizes 3D printer 3D on described substrate layer to print described functional layer.
In another embodiment, described 3D printing process is further comprising the steps of: (e) provides heat to release one or more additional additive in material, far-infrared material, anti-biotic material, aromatic material and reinforcing material, and described additional additive is melted separately or arrives described 3D printer with described silica gel masterbatch and anionic additive mixed melting to provide.
In another embodiment, described 3D printing process is further comprising the steps of: (f) prints the functional layer of different-thickness and/or various configuration and/or different component in the various location of substrate layer.
In one embodiment, the invention discloses a kind of mould pressing method manufacturing function fabric, comprise the following steps: (a) provides the cloth of the substrate layer as described function fabric, b () provides silica gel masterbatch and anionic additive, and by its melting mixing, c () utilizes mould the molten mixture of silica gel masterbatch and anionic additive to be molded into described substrate layer to form functional layer on molding device, and (d) separates described mould.
In another embodiment, described mould pressing method is further comprising the steps of: (e) provides heat to release one or more additional additive in material, far-infrared material, anti-biotic material, aromatic material and reinforcing material, and described additional additive is melted separately and arrives described molding device with described silica gel masterbatch and anionic additive mixed melting to provide.
In another embodiment, described mould limits the die cavity complementary with described functional layer configuration, and described die cavity has the different degree of depth and/or different configurations in various location.
By technique scheme, the function fabric that the present invention obtains can the most stably discharge the high-concentration anion of 1000-6000 every cubic centimetre, and this fabric is originally in comfortableness aspect not the biggest difference.Additionally, the fabric of the present invention also has the mechanical property of excellence.Also by multiple experiments, inventor shows that the clothing being made up of fabric of the present invention have significant effect at aspects such as minimizing motion muscle injury and alleviation inflammation.
Accompanying drawing explanation
In order to be more fully understood that the present invention, in conjunction with accompanying drawing, related embodiment is illustrated, wherein:
Fig. 1 shows function fabric structure according to an embodiment of the invention.
Fig. 2 shows the 3D printing process manufacturing function fabric according to an embodiment of the invention.
Fig. 3 shows the mould pressing method manufacturing function fabric according to an embodiment of the invention.
Fig. 4 A-4D shows the Thermogram experiment utilizing function fabric according to an embodiment of the invention to carry out lumbar vertebra pain patient.
Fig. 5 A-5E shows the Thermogram experiment utilizing function fabric according to an embodiment of the invention to carry out cervical pain patient.
Fig. 6 A-6C shows the Thermogram experiment utilizing function fabric according to an embodiment of the invention to carry out back pain patient.
Fig. 7 A-7D shows the Thermogram experiment utilizing function fabric according to an embodiment of the invention to carry out flank pain patient.
Detailed description of the invention
The present invention will be explained in greater detail below fabric structure and the manufacture method of the inventive method.But the present invention is not intended to limit these structures and methods.For those skilled in the art after with reference to structure described below and method it is contemplated that equivalents and equipment, also among the scope of protection of present invention.
Fabric construction
Fig. 1 shows the function fabric structure of the present invention.In one embodiment, the function fabric 10 of the present invention includes a base cloth layer 1 and a functional layer 2.This base cloth layer 1 can be common cloth, such as, spun the one in fiber, elastic fiber, acetate fiber, polyester fiber by cotton, nylon, Caulis et Folium Lini, natural leather, dermatine, pure wool, silkworm silk, acrylic, bamboo carbon fiber, change and be formed by weaving or the textile cloth of many persons blending or the nonwoven cloth that formed by one or more in them.According to different application scenarios, such as gym suit, underwear, mask, vamp etc., can use different clothes accordingly.
One key property of functional layer 2 is that it has D structure.By spatial configuration, functional layer is the invention enables to have the biggest volume and the biggest surface area/volume ratio.The biggest volume makes the function fabric of the present invention can carry the anionic additive far more than like product, and the anion of function fabric that the biggest surface area/volume ratio makes the present invention can be discharged effectively by stable.
First aspect, the D structure of functional layer 2 means have certain thickness, this thickness is sufficient so that the function fabric of the present invention can the most stably discharge 1000-6000 every cubic centimetre, particularly 2000-5000 every cubic centimetre, the anion of more particularly 3500 about every cubic centimetre concentration.
On the other hand, the functional layer 2 thickness on the direction being perpendicular to textile plane can be uniformly or non-uniformly.As discussed below, the thickness of change can bring different parts on clothing to have different anion releasabilities and different mechanical characteristics, and this would is that particularly advantageous.
Another aspect, the functional layer 2 pattern in textile plane can be regular or irregular.Such as functional layer 2 can have the cross section of honeycomb as shown in Figure 1, and the cross section of other shapes, such as star or sun shape is also possible.Or for aesthetic function, functional layer 2 can have the cross section of decorative pattern or other patterns.
Another further aspect, functional layer 2 longitudinal section in a thickness direction can be identical or different.Such as functional layer 2 can have the longitudinal section of boss configuration.The longitudinal section of this change can form functional layer 2 configuration of hollow porous, thus improves surface area/volume ratio further.
Further aspect, functional layer 2 can be continually applied on whole base cloth layer 1, or is applied only to one or more regional areas of base cloth layer 1.
The stereochemical structure of the functional layer 2 of the function fabric 10 of the present invention can be changed in above-mentioned many aspects and other modes can being rationally susceptible to those skilled in the art.These changes make functional layer 2 can have D structure different, that change on demand.This is the most helpful at utmost playing effect of anion.From technique effect part hereafter it is found that the inflammation etc. reducing motion muscle injury and alleviation body part region is had significant effect according to the fabric of the present invention.Therefore, preferably fabric functional layer 2 is arranged such, when the clothing made with this function fabric 10 are worn on the person, functional layer 2 is it may happen that the regional area of athletic injury or inflammation is concentrated the most, thus the negative ion concentration discharged at these regional areas is the highest.These regions can include the positions such as cervical region, shoulder, back, waist, thigh, shank, knee.The mode realizing functional layer concentration is the most such as included in the thickness that above-mentioned zone provides bigger, more close pattern, more complicated spatial configuration, the active ingredient etc. of higher amount.
The fabric so obtained also can realize different mechanical characteristics at different parts.As discussed below, the material of functional layer can have the mechanical property different from base cloth layer cloth, the most higher or lower elastic, higher wearability etc..By the D structure non-homogeneous, irregular of functional layer, the mechanical property of base cloth layer can be carried out autotelic reinforcement.Therefore the clothing that cutting obtains on woven base of the present invention can have mechanical property non-homogeneous, irregular.Such as, at positions such as the ancon of clothing, knees by providing thicker functional layer can obtain higher wearability.Further for example, the abdomen area at function underwear can provide the functional layer of different component to make fabric have lower elasticity, thus obtain effect of preferably drawing the abdomen.Further for example, can provide in the leg area of sportswear, there is more elastomeric functional layer so that fabric herein has more preferable elasticity.
In other examples, the fabric of the present invention can be not limited to a base cloth layer 1 and a functional layer 2.In one embodiment, the fabric of the present invention can include two base cloth layers 1 and be positioned at a functional layer 2 of between which.But inventor finds, it is preferred for functional layer being exposed, which ensure that effective release of high-concentration anion.In another embodiment, the fabric of the present invention can include a base cloth layer 1 and two functional layers 2 in base cloth layer both sides.This is for needing the application of special high-concentration anion, and such as sportswear and function underwear, be preferred.The functional layer 2 of the present invention is also not limited to preferred single layer structure.
Fabric component
The primary raw material of functional layer 2 is silica gel masterbatch and anionic additive, and can add heat the most further and release the additives such as material, far-infrared material, anti-biotic material, aromatic material and reinforcing material.
The silica gel masterbatch of the present invention is formed with different microcellular structures.These microcellular structures make silica gel have a strongest absorbability, thus are particularly suitable for keeping anionic additive and other kinds of additive, and ensure that anion stablize lasting release.
Meanwhile, silica gel stable in properties, water insoluble and any solvent, do not react with any material in addition to highly basic, Fluohydric acid., there is the fire resistance of brilliance, even if burning also will not give off heavy smoke or toxic gas.Therefore, both can protection group layer of cloth 1 as masterbatch using silica gel, it is possible to other components in defencive function layer 2; the fabric making the present invention is suitable for using under various complicated weather conditions; and repeatedly wash, high-temperature steam cleaning and sterilization etc., and be unlikely to damage or loss of function.
Silica gel character based on itself also has low resilience characteristic, and this makes functional layer embody the elasticity of excellence, thus is particularly suitable for motion class clothing.
Anionic additive for example, slurry or powder body, preferably nanometer powder.Anionic additive can include ZnS, CaO, CePO4、Th(NO3)4、LaNO3Etc. component.Other suitable anion materials may also include natural minerals, such as tourmaline, opal (aqueous noncrystalline or the active SiO of colloid2And a small amount of Fe2O3、Al2O3Deng) and rare ice stone (the inorganic porous material that the metal-oxide of silicate and aluminum, ferrum is constituted), and marine mineral, such as coral fossil, bottom sediment and aethiops vegetabilis etc..
In a preferred embodiment, the raw material of functional layer 2 also includes that heat releases material.Inventor is found by research, and certain heat can promote the ability of anionic additive anion releasing.In the experiment that inventor is carried out, use two groups of identical function fabrics according to the present invention.Matched group is in room temperature, and experimental group is maintained at 28 degrees centigrade with heater.Matched group and the negative ion concentration of experimental group fabric is measured respectively after heating 10,15 and 20 minutes.It is found that the releasability of the function fabric of present invention anion after heating at least enhances about 10-25% from table 2.
Table 2 negative ion concentration is influenced by temperature
Heat time heating time/minute Experimental group negative ion concentration/cm3 Matched group negative ion concentration/cm3
10 2135 2339
15 2054 2582
20 2150 2705
Therefore, the present invention releases material to promote the anion releasability of anionic additive in view of adding heat in functional layer 2.In one embodiment, this heat is released material and is made by conducting electricity the nano-particles reinforcement carbon fiber powder of level.In a preferred embodiment, this nano-particles reinforcement carbon fiber powder is made flow-like material and is formed on insulation polyester film material and becomes nano heating film form, exists as an individual course in functional layer 2.In a further advantageous embodiment, only this nano-particles reinforcement carbon fiber powder certain density need to be mixed with silica gel masterbatch.The advantage of the heating film being made up of nano-particles reinforcement carbon fiber powder is the highest electric conversion efficiency (about 99%, the electric conversion efficiency of common electric blanket is about 75% by contrast), and the power source only needing 5V, 5W gets final product stabilized driving, its surface temperature is uniform, and may be up to 55 degrees Celsius, but it is preferred for maintaining 27-29 degrees centigrade.Additionally, the fabric containing nano-particles reinforcement carbon fiber powder does not has specific conductive structure, it belongs to the form of planar heat carrier.Therefore.Even if fabric face occurs breakage, do not interfere with conduction and the ability heated, because whole surface is all continuous conduction heat conduction yet.In addition to heat release, the far red light of 8-15 mum wavelength can also be discharged after the heating of this nano-particles reinforcement carbon fiber powder material, thus play certain health care.There is provided the mode of energy such as to include the USB line extended from fabric to this fabric, thus have only to common portable power source and function fabric can be driven to heat.
In a preferred embodiment, the raw material of functional layer 2 also includes far-infrared material.Described far-infrared material be suitable near room temperature (20-50 DEG C) can give off 3-15 μm far infrared.Mate with the infrared absorption spectrum with human body.Research shows, after far infrared is absorbed by the body, internal water can be made to produce resonance, make water molecule activation, strengthen its intermolecular adhesion, thus the biomacromolecules such as activation of protein, make biological cell be in the highest vibration level.Owing to biological cell produces resonance effect, far infrared heat energy can be delivered to the subcutaneous deeper part of human body, following deep layer temperature rises, and the warm of generation distributes from inside to outside.This action intensity, makes telangiectasis, blood circulation promoting, strengthens the metabolism between each tissue, increases the regeneration capacity of tissue, improves the immunocompetence of body, the exaltation state of regulation spirit, thus plays the effect of health care.Suitably far-infrared ceramic powder includes far-infrared ceramic powder.In one embodiment of the invention, far-infrared ceramic powder includes the SiO of 10-20 mass %2, the MnO of 10-20 mass %2, 15-30 mass %Al2O3, the Fe of MgO, 5-20 mass % of the CaO of 4-10 mass %, 15-30 mass %2O3, the ZrO of 20-50 mass %2And the AgCl of 1-5 mass %.In another embodiment, far-infrared ceramic powder includes SiO2、TiO2、Al2O3、Na2CO2, Borax mineral mix a small amount of Fe2O3、MnO2、Co2O3And CuO.Other far-infrared materials being suitable for also include charcoal (such as bamboo charcoal powder, bamboo carbon fiber), tourmaline etc..
In an additional preferred embodiment, the raw material of functional layer 2 also includes anti-biotic material and/or aromatic material.Described anti-biotic material has killing or suppresses the function of microorganism.And described aromatic material is suitable to continue to distribute fragrance in air.
In another preferred embodiment, functional layer 2 may also include reinforcing material, for the mechanical characteristic changing fabric.As it was previously stated, these reinforcing materials can anisotropically apply.Exemplary reinforcing material can include resin, tinsel etc..
The interpolation of above-mentioned multiple additional additive can be by mixing realization by it with silica gel masterbatch.
Manufacture method
The functional layer 2 of the present invention has bigger thickness so that it cannot use traditional coating process, such as machinery coating and dipping to be applied on base cloth layer 1.Using the adhesive phase between base cloth layer 1 and functional layer 2 is not preferably as adhesive phase may lose efficacy over time, causes functional layer 2 from the less desirable separation of base cloth layer 1.Inventor finds that functional layer 2 can be effectively applied to base cloth layer 1 by least two method.The strong bonded of base cloth layer and thicker functional layer can be realized by these methods.
3D Printing
Traditional 3D printing prints whole product with 3D printer.This makes it manufacture the very difficult application in field at clothing.Only having minimal amount of tentative technology at present and attempt complete print whole clothing, it, by clothing are decomposed into many widgets, is connected through the hinge between adjacent each widget.But this clothing major problem is that pliability is very poor, because each widget is non deformable comparatively speaking.These widgets are the thickest for the requirement of intensity, This further reduces the comfortableness of dress.The present invention then have employed different methods.The present invention not 3D prints whole clothing, but utilizes 3D printer functional layer 2 to be printed on base cloth layer 1.
Fig. 2 shows the step utilizing 3D printing technology manufacture function fabric of the present invention 10.Firstly the need of preparing base cloth layer 1.This base cloth layer 1 can be any suitable cloth as previously mentioned.Can be cleaned waiting necessary pretreatment operation in particular for the region carrying out 3D printing to this cloth subsequently.Meanwhile, print procedure is modeled by computer 3.Additionally need to prepare consumptive material.As it was previously stated, consumptive material includes silica gel masterbatch 4, anionic additive 5 and other desired additive 6.These consumptive materials carry out melted and married operation in being imported into melted chamber 7, to obtain slurry.In another embodiment, the most all of consumptive material all mixes in a melted chamber 7, and some additive 6 can melt in the most melted chamber 7.Because these additives 6(is the warmmest releases material, pigment etc.) in an individual manner apply there is more preferable effect or do not really want to be applied to by this additive in whole functional layer 2, or functional layer 2 zones of different need different types of additive 6(such as in order to obtain high-elastic region and low bullet region).Temperature sensor it is provided with to detect the temperature of consumptive material in melted chamber 7.
When starting to print, consumptive material is input to 3D printer 9 from melted chamber 7 by extrusion pump 8.This 3D printer 9 can include single mouth shower nozzle or spray broom.Under the driving of motor, shower nozzle can move back and forth in three dimensions of length, width and height according to default program, it is achieved 3D prints.Finally, the function fabric 10 completing to print is carried out surface process so that smooth surface.
Due to the characteristic of 3D printing itself, the method for the present invention is capable of thicker functional layer 2, and this is that current technology method cannot realize.Additionally, present invention also avoids the problems such as the suppleness caused completely is inadequate by 3D printing and making clothing.The present invention is by printing function layer 2 on base cloth layer 1 so that the suppleness of the clothing that the fabric of formation is made is in fabric clothes and 3D prints between clothing, almost close to general fabric clothes.The suppleness of function fabric of the present invention ensure that comfortable dress.Finally, another significant advantage of 3D printing is easy for controlling the characteristic of fabric zones of different.As it was previously stated, present invention contemplates that functional layer 2 can have the characteristics such as different thickness, component, structure at the diverse location (namely diverse location of clothing) of base cloth layer 1, this can be realized easily by 3D printing technology.
Mold
Another applying functional layer 2 of the present invention is to mold to the method for base cloth layer 1.As it is shown on figure 3, the method needs also exist for preparing and pretreatment base cloth layer 1, and melt and mixing consumptive material 20.Coining operation is carried out subsequently on molding device 11.Base cloth layer 1 carries on molding device 11 by means of roller 12,16.On base cloth layer 1, melted consumptive material 20 is applied by melted chamber 7 at molding device 11 upstream position.Covering mould 19 subsequently, by means of roller 13,14 and 15 to the Free Surface of melted consumptive material 20, this mould 19 has, towards the surface of melted consumptive material 20, the three-dimensional die cavity that spatial configuration desired with functional layer is complementary.Relend and help roller 17,18 mould 19, base cloth layer 1 and melted consumptive material 20 are compacted, obtain the function fabric 10 with desired function layer 2 configuration through after a while to allow base cloth layer 1 and consumptive material 20 fully to combine.It is subsequently isolated function fabric 10 and the mould 19 of acquisition.
The mould pressing method of the present invention allows to obtain thicker functional layer 2.The desired D structure of functional layer 2 and irregular thickness and architectural characteristic realize easily by the die cavity designing mould 19.
In another embodiment, the heat of the present invention release material can be as independent one layer of offer of functional layer.By the nano-particles reinforcement carbon fibre material of conduction level being made the material of flow-like, then by this material hot pressing on mylar.The nano heating film so obtained is subsequently incorporated on the function fabric of the present invention.
Technique effect
The function fabric 10 with present configuration according to the method for the invention manufacture can stablize anion releasing in the quiescent state.According to component and the difference of structure, utilize Japan COM SYSTEM, INC. COM-3010PRO anion measuring instrument can measure 1000-6000 every cubic centimetre, particularly 2000-5000 every cubic centimetre, more particularly 3500 negative ion concentrations of about every cubic centimetre.The a series of experiment that inventor is carried out shows, wears the clothing that fabric of the present invention makes and can significantly increase health level.
(1) motion inducing muscle injury experiment
In the muscle injury research that motion causes, often by the content of creatine kinase (Creatine Kinase) as the indirect indexes of muscle injury.Creatine kinase has another name called creatine phosphokinase (Creatine Phospholinase Kinase), be a kind of that manufactured by multiple bodily tissue, be converted to the energy that adenosine diphosphate (ADP) (ADP) produces by adenosine triphosphate (ATP) and creatine be converted into the enzyme of phosphoric acid flesh fat.During strenuous exercise, muscle carries out strong contraction, and creatine kinase is discharged in blood by muscular tissue, and related causes rupturing of muscle cell membrane.Such as, after completing marathon race, the content of creatine kinase may be up to 500-3300U/I.After high strength bias muscle contraction, the content of creatine kinase more may be up to 25000U/I.These serious muscle injurys can reduce by the muscle strength of at least 50% immediately, and needs could restore completely at least 10 days.
Inventor has invited 12 ages male between 45 to 65 years old to test, and wherein 6 people are matched group, and other 6 people are experimental group.All experiments person puts on mask on running, bicycle and 3 kinds of sports apparatus of marking time and carries out the training of 20 minutes.Difference is that the mask of matched group is common medical mask, and the mask of experimental group is mask that be made up of the fabric of the present invention, have at least 3000/ cubic centimetre of negative ion concentration through measurement.Before and after motion, for all experimenter's venous blood samples liquid samples, detect therein:
-white blood cell count
-cent lymphocytes
-serum creatine kinase (CK) content
-serum acidohydrogenase (LDH) content
-Serum lactate (lactate) content
In first experiment, the group difference of the change that inventor compares CK, LDH and lactate causes because of motion.Table 3 shows often organizes CK, LDH of average serum and lactate before training in 20 minutes and the measurement result of 1 hour afterwards.It will be seen that train front matched group and CK, LDH of experimental group and lactate levels essentially identical, and after training, there is difference in CK, LDH and the lactate levels of two groups.
Table 3-often group is at CK, LDH of motion forward backward averaging serum and lactate metric
Table 4 shows often organizes CK, LDH of average serum and lactate levels before training in 20 minutes and the change of 1 hour afterwards.It will be seen that CK, LDH of experimental group and lactate increase are less than the increase of matched group.The particularly lactate levels of experimental group increases the least.
CK, LDH of table 4-serum and lactic acid salinity altercation
In another is tested, a selected experimenter wears common medical mask respectively and the mask made with the fabric of the present invention carries out training in above-mentioned 20 minutes, and measures CK, LDH of serum and lactate before training in 20 minutes and the level of 1 hour afterwards.It will be seen that CK, LDH of experimental group and lactate levels rise less from table 5.
CK, LDH of table 5-serum and lactate numerical value before and after motion
Above-mentioned experiment shows, wears the medicated clothing that fabric of the present invention makes and can reduce the muscle injury that motion causes to a certain extent.
(2) inflammation Thermogram experiment
Inventor has also carried out series of experiments and has tested the fabric of the present invention beneficial effect to alleviating human body inflammation.Human body inflammation part with Thermogram imaging, is applied, at inflammation part, the binder that fabric of the present invention is made, and observes Thermogram change over time by inventor subsequently.In Thermogram, red position represents relatively hot spot (i.e. inflammation part indicates in the drawings) with arrow, and redness is more deeply felt and shown that inflammation is the most serious.Green then represents normal region.
Fig. 4 A-4D shows the Thermogram experiment of a lumbar vertebra pain patient.Fig. 4 A shows the back Thermogram not applied before binder of the present invention, it can be seen that has a small amount of red area A, large stretch of orange areas B and yellow area C of its periphery along lumbar vertebra, represents that these positions exist inflammation.Fig. 4 B shows applying binder Thermogram after 5 minutes, it can be seen that at least orange in binder applying region and yellow all has turned to green D, and in other words the area of inflammation part is existing is reduced.Fig. 4 C and Fig. 4 D respectively illustrates the Thermogram after 10 minutes and 15 minutes, it can be seen that red area A disappears substantially, and orange areas B at whole back and yellow area C are substantially reduced the most.Above-mentioned description of test is after the binder being applied with the present invention, and the inflammation at lumbar vertebra position has obtained the biggest alleviation.
Fig. 5 A-5E shows the Thermogram experiment of a right neck pain patients.Fig. 5 A shows the anterior Thermogram not applied before binder of the present invention, it can be seen that there is orange areas C of obvious red area A, the darkorange region B of its periphery and periphery again at right neck area, represents that these positions exist inflammation.Fig. 5 B shows applying binder Thermogram after 5 minutes, it can be seen that the area of red area A, darkorange region B and orange areas C is all greatly reduced.Thermogram 5C after 10 minutes illustrates that red area A disappears the most substantially, and the area of darkorange region B and orange areas C reduces further.Thermogram 5D after 15 minutes illustrates that darkorange region B disappears the most substantially, only exists orange areas C.Thermogram 5E after 20 minutes and basically identical when 15 minutes, illustrates that the alleviation of symptom is maintained.Above-mentioned description of test is after the binder being applied with the present invention, and the inflammation of right cervical region position has obtained the biggest alleviation.
Fig. 6 A-6C shows the Thermogram experiment of a back two side areas pain patients.Fig. 6 A shows the back Thermogram not applied before binder of the present invention, it can be seen that there is banded yellow area B and little area orange areas A therein in back two side areas, represents that this position exists inflammation.Fig. 6 B and 6C respectively illustrates the applying binder of the present invention back Thermogram after 5 minutes and 10 minutes.It will be seen that applying binder of the present invention, within 5 minutes, ribbon yellow area B and orange areas A disappear the most substantially afterwards.As comparison, orange areas C and yellow area D of shoulder regions are then held essentially constant.Above-mentioned description of test is after the binder being applied with the present invention, and the inflammation at position, both sides, back has obtained the biggest alleviation.
Fig. 7 A-7D shows the Thermogram experiment of a flank pain patient.Fig. 7 A shows the waist Thermogram not applied before binder of the present invention, it can be seen that there is yellow area B of obvious orange areas A and periphery in lumbar region, represents that this position exists inflammation.Fig. 7 B shows the binder applying present invention Thermogram after 5 minutes.It can be seen that the area of orange areas A and yellow area B is substantially reduced.Fig. 7 C and 7D respectively illustrates the binder applying present invention Thermogram after 10 minutes and 15 minutes.It can be seen that orange areas A disappears the most substantially, and the area of yellow area B reduces further and keeps.Above-mentioned description of test is after the binder being applied with the present invention, and the inflammation of waist has obtained the biggest alleviation.
The function fabric of the above-mentioned two description of test present invention is significantly improved effect by the anion of high concentration to health.
The above is only the some embodiments of the present invention, therefore all equivalence changes done according to structure, feature and the principle described in the present patent application scope or modification, or the combination in any of the multiple embodiments to the present invention, all it is included in the scope of the present invention.

Claims (11)

1. a function fabric (10), including:
Base cloth layer (1), described base cloth layer (1) includes cloth, and
The functional layer (2) being positioned on described base cloth layer (1), described functional layer (2) includes silica gel masterbatch (4) and anionic additive (5), and has spatial configuration,
Wherein said functional layer (2) has a thickness so that described function fabric (10) can release concentration be the anion of 1000-6000 every cubic centimetre.
Function fabric the most according to claim 1 (10), wherein said functional layer (2) has a thickness so that the negative ion concentration that function fabric (10) can discharge is 2000-5000 every cubic centimetre.
Function fabric the most according to claim 1 (10), wherein said functional layer (2) has a thickness so that the negative ion concentration that function fabric (10) can discharge is 3500 every cubic centimetre.
Function fabric the most according to claim 1 (10), wherein said functional layer (2) has honeycomb, star, sun shape or the cross section of decorative pattern.
Function fabric the most according to claim 1 (10), wherein said functional layer (2) has the longitudinal section of boss shape.
Function fabric the most according to claim 1 (10), the thickness of wherein said functional layer (2) is the most uneven.
Function fabric the most according to claim 1 (10), wherein said functional layer (2) is applied only to one or more regional areas of described base cloth layer (1).
Function fabric the most according to claim 1 (10), wherein said functional layer (2) also includes that nano heating film layer, described nano heating film layer include the nano-particles reinforcement carbon fiber powder being applied on insulation polyester film.
9. one kind by the clothing made according to the function fabric (10) according to any one of claim 1-8.
Clothing the most according to claim 9, wherein said clothing are gym suit, swimming suit, medicated bra, mask or binder.
11. clothing according to claim 9, the wherein said clothing one or more positions in its cervical region, shoulder, back, waist, thigh, shank, knee have the functional layer (2) of concentration.
CN201520904990.1U 2015-11-13 2015-11-13 Function fabric and the clothing being made from Active CN205741716U (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106702724A (en) * 2015-11-13 2017-05-24 创方拓展有限公司 Functional fabric and production method thereof
CN110891795A (en) * 2017-02-27 2020-03-17 沃克索8股份有限公司 3D printing device including mixing nozzle
CN112406095A (en) * 2020-11-05 2021-02-26 三阳纺织有限公司 Fabric with antibacterial function and rapid forming method thereof
US11470908B2 (en) 2017-02-27 2022-10-18 Kornit Digital Technologies Ltd. Articles of footwear and apparel having a three-dimensionally printed feature
US11647805B2 (en) 2017-02-27 2023-05-16 Kornit Digital Technologies Ltd. 3D printed articles of footwear with sensors and methods of forming the same
US11701813B2 (en) 2017-02-27 2023-07-18 Kornit Digital Technologies Ltd. Methods for three-dimensionally printing and associated multi-input print heads and systems
US11857023B2 (en) 2017-02-27 2024-01-02 Kornit Digital Technologies Ltd. Digital molding and associated articles and methods
US11904614B2 (en) 2017-02-27 2024-02-20 Kornit Digital Technologies Ltd. Multi-input print heads for three-dimensionally printing and associated systems and methods

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106702724B (en) * 2015-11-13 2020-06-30 创方拓展有限公司 Functional fabric and method for producing same
CN106702724A (en) * 2015-11-13 2017-05-24 创方拓展有限公司 Functional fabric and production method thereof
US11647805B2 (en) 2017-02-27 2023-05-16 Kornit Digital Technologies Ltd. 3D printed articles of footwear with sensors and methods of forming the same
EP3585620A4 (en) * 2017-02-27 2020-12-23 Voxel8, Inc. 3d printing devices including mixing nozzles
US11470908B2 (en) 2017-02-27 2022-10-18 Kornit Digital Technologies Ltd. Articles of footwear and apparel having a three-dimensionally printed feature
US11497275B2 (en) 2017-02-27 2022-11-15 Kornit Digital Technologies Ltd. 3D printed articles of footwear with particles
CN110891795A (en) * 2017-02-27 2020-03-17 沃克索8股份有限公司 3D printing device including mixing nozzle
US11701813B2 (en) 2017-02-27 2023-07-18 Kornit Digital Technologies Ltd. Methods for three-dimensionally printing and associated multi-input print heads and systems
US11857023B2 (en) 2017-02-27 2024-01-02 Kornit Digital Technologies Ltd. Digital molding and associated articles and methods
US11904614B2 (en) 2017-02-27 2024-02-20 Kornit Digital Technologies Ltd. Multi-input print heads for three-dimensionally printing and associated systems and methods
CN112406095A (en) * 2020-11-05 2021-02-26 三阳纺织有限公司 Fabric with antibacterial function and rapid forming method thereof
CN112406095B (en) * 2020-11-05 2021-09-28 三阳纺织有限公司 Fabric with antibacterial function and rapid forming method thereof
WO2022095110A1 (en) * 2020-11-05 2022-05-12 三阳纺织有限公司 Fabric having antibacterial function and rapid forming method therefor

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