BACKGROUND
[0001] A quick drying textile (Patent Application
US2016/090669A, filed by the present applicant, published after the present priority date) includes
a composite fabric layer and a moisture absorbing fabric layer. The composite fabric
layer includes a plurality of hydrophobic regions and a plurality of hydrophilic regions.
The moisture absorbing fabric layer is combined with the composite fabric layer, whereby
moisture is collected in the hydrophilic regions and is absorbed by the moisture absorbing
fabric layer for vaporization. However, this textile may have the following drawbacks:
- 1. The fabric as made by jacquard knitting of the two layers, namely the inner composite
fabric layer (110) proximate to the wearer's skin and the outer moisture absorbing
fabric layer (120) for absorbing the moisture which evaporates outwardly, may increase
the thickness and weight of the fabric product (such as garment or sportswear), thereby
causing uncomfortableness of the wearer.
- 2. The composite fabric layer (110) comprise a plurality of hydrophobic regions (112)
and a plurality of hydrophilic regions (114), in which an area ratio of the hydrophobic
regions to the hydrophilic regions should be designed and fabricated carefully, to
thereby increase the production complexity and cost when designing and manufacturing
such a textile.
- 3. Only the hydrophilic regions (114) in the composite fabric layer (110) may transfer
the moisture (sweat) into the outer moisture absorbing fabric layer (120), thereby
reducing the sweat expelling speed or efficiency and still causing unsatisfactory
comfortableness for the wearer.
[0002] The present inventor has found the drawbacks of the prior art, and invented the present
fabric for comfortably expelling sweat.
THE INVENTION
[0003] The object of the present invention is to provide a light and thin fabric which is
made by juxtapositionally knitting a hydrophilic yarn on a hydrophobic yarn by repeatedly
juxtapositionally plating the hydrophilic yarn on the hydrophobic yarn to form an
inner hydrophobic sublayer consisting of a plurality of hydrophobic loops, and an
outer hydrophilic sublayer consisting of a plurality of hydrophilic loops, whereby
the inner hydrophobic loops are adapted to be proximate or contacted with a wearer's
skin or body to capillarily transfer the moisture or sweat as discharged from the
wearer towards the outer hydrophilic loops; and whereby the outer hydrophilic loops
are adapted to absorb the moisture or sweat from the inner hydrophobic loops to diffuse
the moisture and evaporate as vapor outwardly to make the wearer comfortable without
clammy or uncomfortable feeling.
BRIEF DESCRIPTION OF THE DRAWINGS
[0004]
Fig. 1 is an illustration showing a fabric as made in accordance with the present
invention.
Fig. 2 is a simulated illustration showing sweat, as discharged from a wearer, being
capillarily transferred and evaporated outwardly in accordance with the present invention.
DETAILED DESCRIPTION
[0005] As shown in Fig. 1, the fabric of the present invention comprises: an inner hydrophobic
sublayer 1; and an outer hydrophilic sublayer 2.
[0006] A hydrophilic yarn is repeatedly juxtapositionally plated on a hydrophobic yarn to
obtain the inner hydrophobic sublayer 1 consisting of a plurality of hydrophobic loops
and the outer hydrophilic sublayer 2 consisting of a plurality of hydrophilic loops.
[0007] A plurality of ventilating apertures 3 are formed through the inner hydrophobic sublayer
1 and the outer hydrophilic sublayer 2 for well ventilating purpose.
[0008] The hydrophobic yarn and the hydrophilic yarn are fed into the double feeding ports
of a yarn feeder of a single-knit circular knitting machine and are repeatedly knitted
to plate the outer hydrophilic yarn on the inner hydrophobic yarn to juxtapositionally
superimpose the outer hydrophilic yarn on the inner hydrophobic yarn to form a plurality
of inner hydrophobic loops for constructing an inner hydrophobic sublayer 1 and a
plurality of outer hydrophilic loops for constructing an outer hydrophilic sublayer
2.
[0009] The "sublayer" 1 or 2, as aforementioned, is thus defined because either the inner
hydrophobic sublayer 1 or the outer hydrophilic sublayer 2 is not really a "single
layer" of yarn. The inner hydrophobic yarn is served as a "ground yarn", while the
outer hydrophilic yarn is served as a "plating yarn". Both yarns can be fed into the
double feeding ports of a yarn feeder of a single-knit circular knitting machine.
The superimposed yarn product consists of the inner hydrophobic yarn and the outer
hydrophilic yarn. Either inner yarn or outer yarn may thus be defined as a "subunit"
or "sublayer" of a single layer, rather than as a single or discrete layer.
[0010] Accordingly, the present invention discloses a knitted fabric consisting of an inner
sublayer 1 and an outer sublayer 2, to be totally thinner and lighter than a conventional
knitted fabric which is made by a double-knit circular knitting machine to be a double-layer
fabric.
[0011] Such a light and thin fabric as produced in accordance with the present invention
will, of course, have the following advantages:
- 1. As shown in Fig. 2, the moisture M of the wearer's sweat S will be capillarily
transferred from the inner hydrophobic sublayer 1 to the outer hydrophilic sublayer
2 to evaporate as vapor V which will be diffused and emit to the environment to quickly
dry the fabric of the present invention. Since both sublayers 1, 2 are so thin, the
moisture M will be quickly evaporated as vapor V by passing a short path (thin thickness)
of the fabric so soon. Therefore, the vapor will not be condensed as a condensate
which may blockade the outward discharge of moisture.
- 2. All loops of the inner and outer sublayers 1, 2 will form a plurality of ventilating
apertures 3, each aperture 3 playing a role like a ventilation window or chimney to
help a well ventilation of the air, vapor or water molecules of the moisture through
the apertures 3 from the wearer's skin to the outside surrounding or environment,
thereby efficiently dissipating heat and humid air outwardly from the wearer to make
him or her more comfortable.
- 3. The outer hydrophilic yarn is juxtapositionally superimposed on the inner hydrophobic
yarn so that the water molecules of the sweat moisture as capillarily moving from
the fiber voids in the inner hydrophobic yarn or through the interstices among the
yarns will be instantly absorbed by the outer hydrophilic yarn, which in turn will
be quickly evaporated from the outer hydrophilic yarn. Therefore, the moisture, as
rapidly evaporated outwardly, will not be condensed due to over saturation in the
outer yarn, and will not "re-enter" (as reverse flow) onto the wearer's skin or body,
really making him or her dry and comfortable without clammy, cold, or "chill" feeling.
[0012] The hydrophobic yarns as used in the present invention may be selected, but not limited,
from hydrophobic polyester or nylon. The hydrophilic yarn may be directly selected
from those yarns which are hydrophilic inherently including hydrophilic polyester
or nylon, or the hydrophilic yarn may be obtained by converting a hydrophobic yarn
to be a hydrophilic yarn.
[0013] The polyester yarns as used herein may include an inner fine hydrophobic polyester
yarn having a fineness of 20∼50 deniers and an outer coarse hydrophilic polyester
yarn having a fineness of 40∼200 deniers.
[0014] The knitting machine may be selected from single-knit circular knitting machines
(24G-42G) for knitting the fabric consisting of the inner hydrophobic sublayer 1 and
the outer hydrophilic sublayer 2 as aforementioned, but is not limited in the present
invention.
[0015] In order to further increase the water affinity or hydrophilic property of the hydrophilic
yarn or sublayer of the present invention, the fabric after knitting the inner fine
denier yarn (or the inner hydrophobic yarn) with the outer coarse yarn (or the outer
hydrophilic yarn), may be further processed by adding water absorbent agent in dyeing
or heat-set process to increase its hydrophilic or water absorbing property. Since
the inner fine denier yarn is hydrophobic, it is uninfluenced by the wetting treatment
as added with water absorbent agent. In other words, the inner fine denier yarn is
not "attacked" or influenced by the wetting agent or water absorbent agent, and will
remain its water repellent (hydrophobic) property.
[0016] This is very helpful for the factory production because the fabric product may be
subjected to further processing to increase the water affinity or hydrophilic property
of the outer sublayer 2 without considering the inner sublayer 1 opposite to the outer
sublayer 2.
[0017] The fabric by knitting the inner hydrophobic sublayer 1 and the outer hydrophilic
sublayer 2 may obtain a light weight and thin thickness for the fabric product.
[0018] The area density (or weight per unit area) of a fabric made of 100% polyester is
usually at least 110 g/m
2, while the area density of a fabric containing spandex and polyester yarns therein
is usually at least 130 g/m
2.
[0019] The elasticity of the fabric is desirably ranging from 30∼200%.
[0020] The thickness of the fabric is desirably ranging from 0.45 mm to 0.55 mm. So, the
fabric as made by the present invention can be very light and thin.
[0021] The polyester yarn may be made more elastic by adding, mixing, blending with spandex
yarn. In the present invention, the inner yarn may be selected from hydrophobic Tetoron
(polyester) or Nylon, while the outer yarn may be selected from hydrophilic Tetoron
(polyester), Nylon, cotton, rayon, etc.
[0022] According to the present invention, a sportswear, shirt or garment may be made with
the following steps, which are exemplified, but not limited:
- 1. Knitting: by using single-knit circular knitting machine to produce the knitted
fabric consisting of the inner hydrophobic sublayer and the outer hydrophilic sublayer.
- 2. Pre-processing: washing the fabric to remove any dirt which may affect the dyeing
quality.
- 3. Dyeing: the fabric is dyed according to the customer's requirements.
- 4. Processed with water absorbent agent: in the dyeing bath, the fabric is processed
to be hydrophilic as treated with water absorbent agent.
- 5. Heat setting: for stabilizing the size of the fabric, a heat setting is performed.
- 6. Further processed with water absorbent agent: this step may be simultaneously done
when heat setting for enhancing the water affinity, but it is optional and may not
be necessary.
- 7. Cutting and/or sewing: the processed fabric is cut and sewn to obtain a final product
of garment or sportswear.
1. A method for making a fabric comprising:
repeatedly knitting an outer hydrophilic yarn (2) on an inner hydrophobic yarn (1)
by juxtapositionally feeding said hydrophilic yarn and said hydrophobic yarn into
double feeding ports of a single-knit circular knitting machine and repeatedly plating
said outer hydrophilic yarn (2) on said inner hydrophobic yarn (1) to juxtapositionally
superimpose said outer hydrophilic yarn (2) on said inner hydrophobic yarn (1) to
form a plurality of hydrophobic loops for constructing an inner hydrophobic sublayer
adapted to be proximate or contacted with a wearer's skin or body to capillarily transfer
moisture of a wearer's sweat outwardly, and form a plurality of hydrophilic loops
for constructing an outer hydrophilic sublayer adapted for absorbing moisture as transferred
from said inner hydrophobic sublayer to be outwardly diffused and evaporated as vapor
to be released from said outer hydrophilic sublayer.
2. A method according to Claim 1, wherein said hydrophobic yarn is selected from hydrophobic
polyester and hydrophobic nylon.
3. A method according to Claim 1 or 2, wherein said hydrophilic yarn is selected from
hydrophilic polyester and hydrophilic nylon.
4. A method according to Claim 1, wherein said inner hydrophobic yarn (1) is a fine denier
hydrophobic polyester yarn having a fineness of 20∼50 deniers; and said outer hydrophilic
yarn (2) is a coarse denier hydrophilic polyester yarn having a fineness of 40∼200
deniers.
5. A method according to any one of the preceding claims wherein said fabric has an area
density (weight per unit area) of at least 110 g/m2.
6. A method according to any one of the preceding claims wherein said fabric includes
an elastic yarn, having an area density of at least 130 g/m2.
7. A method according to Claim 4, wherein said fabric has an elasticity ranging from
30∼200%.
8. A fabric comprising:
an inner hydrophobic sublayer consisting of a plurality of inner hydrophobic loops
adapted to be proximate or contacted with a wearer's skin or body for capillarily
transferring the wearer's sweat or moisture outwardly; and
an outer hydrophilic sublayer consisting of a plurality of outer hydrophilic loops,
each said outer hydrophilic loop juxtapositionally superimposed on each said inner
hydrophobic loop for absorbing moisture as outwardly transferred from said inner hydrophobic
loop to be diffused or evaporated as vapor outwardly for quickly drying the wearer's
skin or body; and
each said inner hydrophobic loop formed with an inner hydrophobic yarn (1);
each said outer hydrophilic loop formed with an outer hydrophilic yarn (2) juxtapositionally
plated by knitting on said inner hydrophobic yarn (1) of said inner hydrophobic loop.
9. A fabric according to Claim 8, wherein said hydrophobic yarn is selected from a hydrophobic
polyester and a hydrophobic nylon.
10. A fabric according to Claim 8 or 9 wherein said hydrophilic yarn is selected from
a hydrophilic polyester and a hydrophilic nylon.
11. A fabric according to Claim 8, wherein said inner hydrophobic yarn (1) is a fine denier
hydrophobic polyester yarn having a fineness of 20∼50 deniers; and said outer hydrophilic
yarn (2) is a coarse denier hydrophilic polyester yarn having a fineness of 40∼200
deniers.