A kind of embroidery hygroscopic sweat-discharging fabric
Technical field
The utility model relates to fabric construction field, particularly one embroidery hygroscopic sweat-discharging fabric.
Background technology
In recent years, people require more and more higher to the comfortableness of garment material, health, security and the feature of environmental protection etc., along with the increase of people's activity time out of doors, easy dress and gym suit interpenetrate and the trend that combines together also day by day by the favor of consumers in general, the fabric of this kind of clothes, had both required good comfortableness, required again when movable heartily, once there is situation soaked with sweat, clothes can not be pasted skin and produce cold wet sense.Traditional cloth is generally ventilative not enough, easily produces feeling of oppression and heat, also or perspiration functions is not enough, liable to illness after motion.
Utility model content
The utility model, for solving the problems of the technologies described above as providing a kind of fine air permeability that has, has an embroidery hygroscopic sweat-discharging fabric of moisture absorption sweat discharging functions.
For solving the problems of the technologies described above, the technical solution adopted in the utility model is:
A kind of embroidery hygroscopic sweat-discharging fabric, embroidery surface layer, fabric and connect the intermediate connecting layer of embroidery surface layer and fabric; Described embroidery surface layer is provided with multiple sweat discharging hole; Described intermediate connecting layer is chemical fibre material, is made up of many independent monofilament, and the adjacent independent monofilament of described intermediate connecting layer intersects in X-type structure or W type structure; Described fabric is the meshed fabric of tool of hygroscopic fibre warp-knitting.
The utility model beneficial effect is: by the sweat discharging hole on embroidery surface layer, cloth is made to have function of well having a good sweat, make sweat through wicking by hygroscopic fibre, spread, be transferred to design on fabric surface and disperse, thus reach the function of moisture absorbing and sweat releasing, better regulate body temperature, make skin keep dry and comfortable and pleasantly cool, meet the demand of human body.
As a kind of preferred structure of the present utility model, the problem of the passage of water translocation is lacked in order to improve hygroscopic fibre, the surface of described hygroscopic fibre is provided with inside and outside micropore of linking up, hygroscopic fibre inside is provided with the groove of tubulose, and described groove is used for providing passage for the migration of moisture.So moisture can be entered in micropore by micropore, then provide passage by the migration that groove is moisture, make fabric have better moisture absorption sweat discharging functions.
As a kind of preferred structure of the present utility model, cannot integrated problem in order to improve fabric, described embroidery surface layer, fabric and intermediate connecting layer are integrally made in the mode of warp-knitting.So fabric just can be made integrally to be made into by the mode of warp-knitting, and be superimposed after not needing being made in layer.
As a kind of preferred structure of the present utility model, effectively cannot carry out the problem of perspire in order to improve sweat discharging hole, the diameter of described sweat discharging hole is 10 microns.Sweat discharging hole like this more reasonably meets the demand of perspire, more effectively can carry out perspire.
As a kind of preferred structure of the present utility model, connect problem firm not to improve intermediate connecting layer, top and the bottom of described intermediate connecting layer are equipped with snag, for connecting embroidery surface layer and fabric.By the top of intermediate connecting layer and the snag of bottom, embroidery surface layer and fabric can be hooked, connect more firm, there will not be the situation that cloth is separated.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model embroidery hygroscopic sweat-discharging fabric.
Label declaration:
1, embroidery surface layer; 2, fabric; 3, intermediate connecting layer; 4, sweat discharging hole;
5, independent monofilament; 6, hygroscopic fibre; 7, snag.
Detailed description of the invention
By describing technology contents of the present utility model, structural feature in detail, realized object and effect, accompanying drawing is coordinated to be explained in detail below in conjunction with embodiment.
Please refer to Fig. 1, known as shown in the figure, the utility model embroidery hygroscopic sweat-discharging fabric comprises embroidery surface layer 1, fabric 2 and intermediate connecting layer 3, intermediate connecting layer 3 is chemical fibre material, be made up of many independent monofilament 5, adjacent independent monofilament 5 is in X-type structure or W type structure, the external force that this structure makes embroidery surface layer 1 or fabric 2 bear is dispersed to cloth surrounding, be unlikely to concentrate in one direction, effectively prevent embroidery surface layer 1 and fabric 2 mutual dislocation, guarantee the stability of cloth interlayer structure, improve cloth gas permeability.The top of intermediate connecting layer 3 and bottom are equipped with snag 7, for connecting embroidery surface layer 1 and fabric 2.By the top of intermediate connecting layer 3 and the snag 7 of bottom, embroidery surface layer 1 and fabric 2 can be hooked, connect more firm, there will not be the situation that cloth is separated.Embroidery surface layer 1 is provided with multiple sweat discharging hole 4, and the diameter of sweat discharging hole 4 is 10 microns, is more met the demand of perspire by the sweat discharging holes 4 of 10 microns, more effectively can carry out perspire.Fabric 2 is the meshed fabric of tool of hygroscopic fibre 6 warp-knitting, and further, embroidery surface layer 1, fabric 2 and intermediate connecting layer 3 are integrally made in the mode of warp-knitting.Fabric just can be made integrally to be made into by the mode of warp-knitting, and be superimposed after not needing being made in layer, more meet the globality of cloth.
The surface of hygroscopic fibre 6 is provided with inside and outside micropore of linking up, and hygroscopic fibre 6 inside is provided with the groove of tubulose, and groove is used for providing passage for the migration of moisture.The moisture absorbing and sweat releasing performance of hygroscopic fibre 6 depends on its chemical composition and physical arrangement form.First absorbed (i.e. moisture absorption) by hygroscopic fibre 6, then via the surperficial moisture releasing of hygroscopic fibre 6 from the gaseous state moisture of skin surface evaporation; And the capillary effect that the liquid moisture of skin surface is produced by the space between the groove of hygroscopic fibre 6 and fiber makes the absorption of moisture on storeroom surface, diffusion and evaporation (i.e. moisture releasing).The result of two kinds of effects causes moisture to there occurs migration, and front one effect is main relevant with the macromolecular chemical composition of fiber, and rear a kind of effect is then relevant with the physical arrangement form of fiber.Hygroscopic fibre 6 has higher specific area, and there is numerous micropores on surface, and its cross section is generally special different form, utilizes capillary effect, makes hygroscopic fibre 6 can absorb rapidly skin surface moisture and sweat, by diffusion, is delivered to outer band.In general, be that natural fiber or synthetic fibers are all difficult to have hygroscopicity and quick-drying concurrently simultaneously, but moisture absorbing and sweat releasing process technology can accomplish this point.Therefore, for the polyester fiber do not absorbed water completely, moisture absorbing and sweat releasing process technology gives again its new life.
The foregoing is only embodiment of the present utility model; not thereby the scope of the claims of the present utility model is limited; every utilize the utility model description and accompanying drawing content to do equivalent shapes or Structural Transformation; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present utility model.