CN113995181A - Functional imitation woven stripe shirt and manufacturing method thereof - Google Patents
Functional imitation woven stripe shirt and manufacturing method thereof Download PDFInfo
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- CN113995181A CN113995181A CN202111498744.7A CN202111498744A CN113995181A CN 113995181 A CN113995181 A CN 113995181A CN 202111498744 A CN202111498744 A CN 202111498744A CN 113995181 A CN113995181 A CN 113995181A
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Images
Classifications
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- B32B5/02—Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by structural features of a fibrous or filamentary layer
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- B32B5/02—Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by structural features of a fibrous or filamentary layer
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- A41B2400/20—Air permeability; Ventilation
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Abstract
The invention is suitable for the field of clothes and provides a functional imitation woven stripe shirt, which comprises a left front piece, a right front piece, a front pocket, a front fly, a back piece, a shoulder piece, a sleeve piece, a left sleeve cap, a right sleeve cap, a collar stand, a collar surface and an elbow patch, wherein the elbow patch is sewn at the lower side of the middle part of the sleeve piece; the cross-over piece, the left sleeve head, the right sleeve head, the collar seat and the collar surface are of a double-layer structure, wherein: the inner layers of the shoulder pieces, the left sleeve heads, the right sleeve heads, the collar seats and the collar surface are made of combed cotton, antibacterial polyester and spandex filaments. The inner layer of the fabric adopts combed cotton, antibacterial polyester and spandex yarn, so that the antistatic effect is achieved, and the outer layer of the fabric adopts viscose yarn, nylon yarn and spandex yarn, so that the wear-resistant effect is achieved; solves the problem that the traditional shirt can breed a large amount of bacteria; the friction between the shirt cuffs, elbows and collars and the skin easily generates static electricity to adsorb dust, thus influencing the beauty of the clothes and the wearing comfort.
Description
Technical Field
The invention belongs to the field of clothes, and particularly relates to a functional woven stripe-imitated shirt and a manufacturing method thereof.
Background
The shirt is a piece of ever-falling wild classic clothes in the fashion world and in our daily life, and more than one shirt is arranged in a wardrobe of each person.
Most of traditional shirts select woven fabrics, the texture woven by the warps and the wefts in a staggered mode and the characteristics of stiff and smooth woven fabrics and difficult deformation are deeply loved by people, but the woven shirts are easy to incline in the warp and weft directions in the process of making the shirts, the shape of the shirts is affected, and especially the elasticity and the air permeability of the woven fabrics are far inferior to those of knitted fabrics, so that the traditional shirts are often accompanied with the problems of tightness, sultry and the like, and the wearing comfort of people is seriously affected. In addition, sweat and sebum secreted by the skin of the shirt are adhered to the shirt in the wearing process of the shirt, a large number of bacteria can be bred, the bacteria can decompose the sebum, an unpleasant smell can be generated, and a lot of troubles are brought to a wearer; meanwhile, the friction between the shirt cuffs, elbows, collar and skin easily generates static electricity to adsorb dust, so that the attractiveness and wearing comfort of the clothes are affected, and therefore, the development of the functional imitation woven stripe shirt is very important.
Disclosure of Invention
The embodiment of the invention aims to provide a functional imitation woven stripe shirt and a manufacturing method thereof, aiming at solving the problems that sweat and sebum secreted by skin are adhered on the shirt to breed a large amount of bacteria in the traditional shirt in the wearing process, and the bacteria decompose the sebum to generate unpleasant odor to bring much trouble to a wearer; meanwhile, the friction between the shirt cuffs, elbows and collars and the skin easily generates static electricity to adsorb dust, so that the attractiveness and the wearing comfort of the clothes are affected.
In order to achieve the purpose, the invention adopts the following technical scheme:
a functional imitation woven stripe shirt comprises a left front piece, a right front piece, a front pocket, a front fly, a back piece, a shoulder piece, a sleeve piece, a left sleeve cap, a right sleeve cap, a collar seat, a collar surface and an elbow patch, wherein the elbow patch is sewn at the lower side of the middle part of the sleeve piece; the cross-over piece, the left sleeve head, the right sleeve head, the collar seat and the collar surface are of a double-layer structure, wherein:
the cloth raw materials of the inner layers of the shoulder pieces, the left sleeve heads, the right sleeve heads, the collar seats and the collar surface adopt combed cotton, antibacterial polyester and spandex filaments, and the cloth raw materials of the outer layers of the shoulder pieces, the left sleeve heads, the right sleeve heads, the collar seats and the collar surface adopt viscose yarns, nylon filaments and spandex filaments;
the raw material of the shoulder-crossing piece is 75D/72F moisture-absorbing quick-drying terylene provided with a mesh weaving structure;
the meshes of the mesh weaving structure are hexagonal;
the shoulder strap is also attached with a moisture absorption layer.
Preferably, the raw materials of the left front piece, the right front piece, the top fly, the rear piece and the sleeve piece adopt combed cotton, antibacterial polyester and spandex yarn.
Preferably, the elbow patch is made of viscose yarn, nylon yarn and spandex yarn.
Preferably, the moisture absorption layer is woven by ramie fibers and aramid flame-retardant fibers.
Preferably, the aramid flame-retardant fibers are aramid 1414 fibers.
Preferably, the combed cotton is 7.3 tex; the antibacterial polyester is 50D; the spandex filament is 30D.
Preferably, the viscose yarn is 9.7 tex; the nylon yarn is 30D; the spandex filament is 50D.
The invention also provides a manufacturing method of the functional imitation woven stripe shirt, which comprises the following steps:
fabric pretreatment: vertically cutting the fabric according to the sample plate, wherein the vertical strips are in the radial direction; the back surfaces of the collar seat, the collar surface, the sleeve sheets, the left sleeve heads, the right sleeve heads and the front fly are ironed for standby;
front pocket treatment: marking the position of a front pocket on the right front piece by using scratch powder, and folding and ironing the front pocket by using a net sample plate; flatly turning the front pocket on the right front sheet;
elbow paster processing: buckling and ironing the two elbow patches, and sewing the elbow patches and the sleeve sheets through a flat car 0.1cm open line;
collar treatment: sewing the collar surface by a flat car, then clearing the sewing head, turning over, and pressing a 0.5cm open line by the flat car; aligning the two collar seats face to face, clamping the collar face between the two collar seats, and fixing the collar face by using a flat car;
front and back sheet treatment: sewing the front fly and the left front piece by the flat car, and pressing a 0.5cm open line; aligning the two cross shoulder pieces in a face-to-face manner, clamping the back piece in the middle, fixing the back piece through a flat car, turning and ironing the back piece after the back piece is fixed by a back needle of a loading and unloading machine, and pressing a 0.1cm open line by the flat car; finally, sewing the shoulder piece, the left front piece and the right front piece by a flat car, and finally pressing a 0.1cm open line on the front side to obtain a body;
body processing: sewing the collar seat and the collar surface with the body by the flat car, and pressing a 0.1cm open line on the front surface; sewing the sleeve and the body by three-needle five-thread sewing, and flatly turning the front side to be 0.1cm of open thread; side seams and sleeve seams are sewed by three-needle five-thread sewing, and open threads of 0.1cm are flatly turned on the front surface;
sleeve sheet treatment: the flat car is used for manufacturing sleeve dart arrows at the end parts of the two sleeve pieces; respectively sewing the left sleeve cap and the right sleeve cap with sleeve sheets through a flat car, and pressing a 0.5cm open line on the front side;
and (3) final treatment: obtaining the striped shirt.
Preferably, the cloth of the shoulder crossing piece, the sleeve piece, the left sleeve head, the right sleeve head, the collar seat and the inner layer of the collar surface is sewn through a double-faced machine, the number of needles of the double-faced machine is 2496N, the number of yarn inlets is 112 paths, and the rotating speed is 18 +/-2 revolutions per minute; the first 1, the second 2, the third 5, the fourth 6, the fifth 53 and the sixth 54 roads use antibacterial terylene and spandex yarns, in particular to core-spun yarns of antibacterial terylene spandex-covered yarns, the third 3, the fourth 4, the fifth 7, the sixth 8, the fifth 27 and the sixth 28 roads use combed cotton colored yarns, and the fourth 31, the fifth 32, the sixth 35, the sixth 36 roads use combed cotton white yarns.
Preferably, the finishing treatment is ironing the package after the eyelet button is buttoned on the fly.
The invention has the following beneficial effects:
1. over the shoulder piece, left cuff, right cuff, neck seat and neck face set up to bilayer structure, adopt combed cotton, antibiotic dacron and spandex silk at the cloth raw materials of inlayer, thereby play the effect of preventing static, adopt viscose yarn at the cloth raw materials of inlayer, polyamide fibre silk and spandex silk, thereby play wear-resisting effect, it has sweat and the sebum of skin secretion to glue and can breed a large amount of bacteriums on the shirt to have solved traditional shirt and have the in-process of dress, the bacterium decomposes sebum and can produce the smell of making the people unpleasant, bring a great deal of vexation for the wearer.
2. Meanwhile, the shirt cuffs, elbows, collars and skin rub to easily generate static electricity to adsorb dust, so that the attractiveness and wearing comfort of the clothes are affected.
3. Adopt 75D 72F moisture absorption rapid-curing cutback dacron as the raw materials, weave the structure through the mesh and weave the piece 6 of crossing that obtains and play ventilative, moisture absorption sweat-discharging effect, simultaneously through the laminating of moisture absorption layer, the moisture absorption layer is that ramie fiber and aramid fiber flame retardant fiber are worked out and is formed, improvement sweat-discharging effect that can step forward to improve ventilative efficiency.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the structures shown in the drawings without creative efforts.
Fig. 1 is a schematic front structure diagram of a functional imitation woven stripe shirt provided by an embodiment of the invention;
FIG. 2 is a schematic diagram of a back structure of a functional imitation woven striped shirt provided by an embodiment of the invention;
FIG. 3 is a schematic structural diagram of a yoke strap according to an embodiment of the present invention;
FIG. 4 is a schematic illustration of a needle arrangement of a double facer provided in accordance with an embodiment of the present invention;
fig. 5 is a schematic view of a triangular arrangement of a double facer according to an embodiment of the present invention;
fig. 6 is a schematic structural view of a shoulder pad and a moisture absorption layer according to an embodiment of the invention.
In the drawings: 1. a left front panel; 2. a right front panel; 3. a front pocket; 4. a front fly; 5. a rear panel; 6. passing through the shoulder pieces; 7. elbow paster pasting; 8. sleeve pieces; 9. a left cuff; 10. a right sleeve cap; 11. a collar base; 12. a collar surface; 13. a moisture-absorbing layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It should be noted that all the directional indicators (such as up, down, left, right, front, and rear … …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the movement situation, etc. in a specific posture (as shown in the drawing), and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions related to "first", "second", etc. in the present invention are only for descriptive purposes and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, technical solutions between various embodiments may be combined with each other, but must be realized by a person skilled in the art, and when the technical solutions are contradictory or cannot be realized, such a combination should not be considered to exist, and is not within the protection scope of the present invention.
Example 1
Referring to fig. 1 to 6, in the functional woven stripe-like shirt of this embodiment, chemical fibers are used as raw materials including a left front piece 1, a right front piece 2, a front pocket 3, a front fly 4, a back piece 5, a shoulder piece 6, a sleeve piece 8, a left sleeve head 9, a right sleeve head 10, a collar seat 11, a collar surface 12 and an elbow patch 7, and the raw materials are sewn into the left front piece 1, the right front piece 2, the front pocket 3, the front fly 4, the back piece 5, the shoulder piece 6, the sleeve piece 8, the left sleeve head 9, the right sleeve head 10, the collar seat 11, the collar surface 12 and the elbow patch 7, and the elbow patch 7 is sewn on the lower side of the middle portion of the front piece 8, and since the contact between the elbow and the table top is the largest, the elbow patch 7 is added here to play a role of protection and improve the wear resistance effect.
Example 2
In this embodiment, core-spun yarns of 7.3tex combed cotton and 50D antibacterial polyester covered 30D spandex filaments are used as raw materials of the inner layers of the left front piece 1, the right front piece 2, the front fly 4 and the rear piece 5, as well as the passing shoulder piece 6, the sleeve piece 8, the left sleeve head 9, the right sleeve head 10, the collar seat 11 and the collar surface 12, and are sewn by a double-faced machine, wherein the number of needles of the double-faced machine is 2496N, the number of yarn inlets is 112, and the rotating speed is 18 ± 2 revolutions per minute, the machine needles of the double-faced machine are arranged as shown in fig. 4, and the triangular arrangement is shown in fig. 5.
Yarn arrangement: the first 1, the second 2, the third 5, the fourth 6, the fifth 53 and the sixth 54 roads use antibacterial terylene and spandex yarns, in particular to core-spun yarns of antibacterial terylene spandex-covered yarns, the third 3, the fourth 4, the fifth 7, the sixth 8, the fifth 27 and the sixth 28 roads use combed cotton colored yarns, and the fourth 31, the fifth 32, the sixth 35, the sixth 36 roads use combed cotton white yarns.
The technical parameters are as follows: 235mm/100 buckles of core-spun yarn of 30D spandex yarn covered by 50D antibacterial polyester, 240mm/100 buckles of combed cotton colored yarn and raw white yarn; a gram weight of 240g/m 2; breadth: 90cm + -5 cm.
In this embodiment, 9.7tex viscose yarns and 30D nylon yarns are used as raw materials for the shoulder pieces 6, the sleeve caps, the left sleeve caps 9, the right sleeve caps 10, the collar seats 11 and the outer layers of the collar faces 12 and the elbow patches 7, and the shell fabric is woven in a single-faced fabric weaving mode, wherein the gram weight of the shell fabric is 180 g/square meter.
As shown in FIG. 3, in this example, 75D/72F moisture-absorbing quick-drying polyester was used as a material for the shoulder pad 6, and the knitting was performed by a mesh knitting structure.
The fabric obtained by the method is sewn to obtain a left front piece 1, a right front piece 2, a front pocket 3, a front fly 4, a back piece 5, a shoulder-crossing piece 6, a sleeve piece 8, a left sleeve head 9, a right sleeve head 10, a collar seat 11, a collar surface 12 and an elbow patch 7.
Example 3
In this embodiment, the left front piece 1, the right front piece 2, the front pocket 3, the front fly 4, the back piece 5, the shoulder-crossing piece 6, the sleeve piece 8, the left sleeve head 9, the right sleeve head 10, the collar seat 11, the collar surface 12 and the elbow patch 7 obtained in the above embodiment are sewn into a shirt by the following steps:
fabric pretreatment: vertically cutting the fabric according to the sample plate, wherein the vertical strips are in the radial direction; the reverse sides of the collar seat 11, the collar surface 12, the sleeve sheets 8, the left sleeve heads 9, the right sleeve heads 10 and the front fly 4 are ironed for standby;
collar treatment: sewing the collar surface 12 by a flat car, then clearing and cutting the sewing head, then turning over, and pressing 0.5cm of open line by the flat car; aligning the two collar seats 11 face to face, clamping the collar surface 12 between the two collar seats 11, and fixing by using a flat car;
front and back sheet treatment: sewing the front fly 4 and the left front piece 1 by the flat car, and pressing a 0.5cm open line; the two over-shoulder pieces 6 are aligned face to face, the back piece 5 is clamped in the middle and fixed through a flat car, the upper machine and the lower machine are turned over and ironed after being fixed by a back needle, and then a 0.1cm open line is pressed through the flat car; finally, sewing the shoulder piece 6, the left front piece 1 and the right front piece 2 by a flat car, and finally pressing a 0.1cm open line on the front surface to obtain a body;
body processing: sewing the collar seat 11 and the collar surface 12 with the body by the flat car, and pressing a 0.1cm open line on the front side; sewing the sleeve 8 and the body with three needles and five lines, and flatly turning the front side with 0.1cm of open line; side seams and sleeve seams are sewed by three-needle five-thread sewing, and open threads of 0.1cm are flatly turned on the front surface;
and (4) processing sleeve pieces: the flat lathing is used for manufacturing sleeve dart arrows at the end parts of the two sleeve pieces 8; respectively sewing the left sleeve cap 9 and the right sleeve cap 10 with the sleeve piece 8 through a 15-degree flat car, and pressing a 0.5cm open line on the front surface;
and (3) final treatment: and (3) carrying out button sewing on the placket 4, and then ironing and packaging to obtain the striped shirt made of two fabrics shown in figures 1 and 2.
This example compares the antistatic and abrasion resistance of shirts of the two fabrics obtained in example 3, with GB/T12703.1-2008 assessment of electrostatic properties of textiles as the standard for antistatic, and with GB/T21196.2-2007 determination of abrasion resistance of textiles by the martindale method, section 2: measurement of specimen breakage "as a standard for abrasion resistance, comparative data obtained by the measurement are shown in the following table:
standard requirements | Example 1 | Example 2 | |
Antistatic/half-life period S | Grade A is less than or equal to 2 | 2.5 | 1.3 |
Wear resistance/time | ≥10000 | >12000 | >10000 |
To summarize: from the above table data, it can be seen that the antistatic property and abrasion resistance of the shirt obtained by sewing the fabric of example 2 as the fabric are both achieved and superior to the standard requirements, compared with the result of the test of the fabric of example 2 as the shirt, the fabric of example 1 is used as the fabric.
In conclusion, the shirt sewn from the fabric obtained in example 2 has good drapability, good stiffness, good crease resistance, good wear resistance and excellent antibacterial performance, and has 88.5% of antibacterial agents against staphylococcus aureus, 90% of antibacterial agents against escherichia coli and 67.5% of antibacterial agents against candida albicans.
In addition, 75D/72F moisture absorption quick-drying terylene is used as a raw material, and the shoulder piece 6 obtained by weaving through a mesh weaving structure plays roles of ventilation, moisture absorption and sweat releasing.
The invention has the beneficial effects that: the shirt collar is characterized in that the shoulder piece 6, the left sleeve 9, the right sleeve 10, the collar seat 11 and the collar surface 12 are of a double-layer structure, combed cotton, antibacterial polyester and spandex filaments are adopted as cloth raw materials of the inner layer, so that an anti-static effect is achieved, viscose yarns, nylon filaments and spandex filaments are adopted as cloth raw materials of the outer layer, so that a wear-resistant effect is achieved, and the problems that sweat and sebum secreted by skin are stuck on a shirt in the wearing process of a traditional shirt, a large amount of bacteria are bred, the bacteria decompose the sebum, unpleasant smell is generated, and a lot of troubles are brought to a wearer are solved;
meanwhile, the friction between the shirt cuffs, elbows and collars and the skin easily generates static electricity to adsorb dust, so that the attractiveness and the wearing comfort of the clothes are affected.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.
Claims (10)
1. A functional imitation woven stripe shirt is characterized by comprising a left front piece (1), a right front piece (2), a front pocket (3), a front fly (4), a back piece (5), a shoulder piece (6), sleeve pieces (8), a left sleeve head (9), a right sleeve head (10), a collar seat (11), a collar surface (12) and an elbow patch (7), wherein the elbow patch (7) is sewn at the lower side of the middle part of the sleeve pieces (8); the over-shoulder piece (6), the left sleeve head (9), the right sleeve head (10), the collar seat (11) and the collar surface (12) are all of a double-layer structure, wherein:
the inner-layer cloth raw materials of the shoulder crossing piece (6), the left sleeve cap (9), the right sleeve cap (10), the collar seat (11) and the collar surface (12) adopt combed cotton, antibacterial polyester and spandex yarns, and the outer-layer cloth raw materials of the shoulder crossing piece (6), the left sleeve cap (9), the right sleeve cap (10), the collar seat (11) and the collar surface (12) adopt viscose yarns, nylon yarns and spandex yarns;
the raw material of the shoulder piece (6) adopts 75D/72F moisture absorption quick-drying terylene and is provided with a mesh weaving structure;
the meshes of the mesh weaving structure are hexagonal;
the shoulder-crossing piece (6) is also adhered with a moisture absorption layer.
2. The functional imitation woven stripe shirt of claim 1, wherein raw materials of the left front piece (1), the right front piece (2), the top fly (4), the back piece (5) and the sleeve piece (8) are combed cotton, antibacterial polyester and spandex filaments.
3. The functional imitation woven striped shirt of claim 1, wherein the elbow patch (7) is made of viscose yarn, nylon yarn and spandex yarn.
4. The functional imitation woven striped shirt of claim 1, wherein the moisture-absorbing layer is woven from ramie fibers and aramid flame-retardant fibers.
5. The functional imitation woven striped shirt of claim 4, wherein the aramid flame retardant fibers are aramid 1414 fibers.
6. A functional imitation woven striped shirt according to claim 1, wherein said combed cotton is 7.3 tex; the antibacterial polyester is 50D; the spandex filament is 30D.
7. The functional imitation woven striped shirt of claim 1, wherein said viscose yarns are 9.7 tex; the nylon yarn is 30D; the spandex filament is 50D.
8. A method of making the functional imitation woven striped shirt of any of claims 1-7, comprising the steps of:
fabric pretreatment: vertically cutting the fabric according to the sample plate, wherein the vertical strips are in the radial direction; the back surfaces of the collar seat (11), the collar surface (12), the sleeve sheets (8), the left sleeve heads (9), the right sleeve heads (10) and the front fly (4) are ironed for standby;
front pocket (3) treatment: marking the position of the front pocket (3) on the right front piece (2) by using the scratch powder, and folding and ironing the front pocket (3) by using the net template; flatly turning the front pocket (3) on the right front piece (2);
elbow patch (7) processing: buckling and ironing the two elbow patches (7), and sewing the elbow patches (7) with the sleeve sheets (8) through a flat car 0.1cm open line;
collar treatment: sewing the collar surface (12) by a flat car, then clearing the sewing head, turning over, and pressing 0.5cm of open line by the flat car; aligning the two collar seats (11) face to face, clamping the collar surface (12) between the two collar seats (11), and fixing by using a flat car;
front and back sheet treatment: the flat car is sewed with the front fly (4) and the left front piece (1) and is pressed with a 0.5cm open thread; the two over-shoulder pieces (6) are aligned face to face, the back piece (5) is clamped between the two over-shoulder pieces and fixed by a flat car, the over-shoulder pieces are turned and ironed after being fixed by a reverse needle of an upper machine and a lower machine, and then the flat car is used for pressing a 0.1cm open line; finally, sewing the shoulder piece (6), the left front piece (1) and the right front piece (2) by a flat car, and finally pressing a 0.1cm open line on the front surface to obtain a body piece;
body processing: sewing the collar seat (11) and the collar surface (12) with the body by the flat car, and pressing a 0.1cm open line on the front side; sewing the sleeve (8) and the body by three-needle five-line sewing, and flatly turning the front side to be 0.1cm of open line; side seams and sleeve seams are sewed by three-needle five-thread sewing, and open threads of 0.1cm are flatly turned on the front surface;
sleeve sheet (8) processing: the flat car is used for manufacturing sleeve arrowheads at the end parts of the two sleeve sheets (8); respectively sewing the left sleeve cap (9) and the right sleeve cap (10) with the sleeve sheet (8) through a flat car (15), and pressing a 0.5cm open line on the front surface;
and (3) final treatment: obtaining the striped shirt.
9. The method for manufacturing the functional imitation woven stripe shirt according to claim 8, wherein the cloth of the inner layer of the shoulder pieces (6), the sleeve pieces (8), the left sleeve caps (9), the right sleeve caps (10), the collar seat (11) and the collar surface (12) is sewn by a double-faced machine, the number of needles of the double-faced machine is 2496N, the number of yarn inlets is 112 paths, and the rotating speed is 18 +/-2 r/min; the first 1, the second 2, the third 5, the fourth 6, the fifth 53 and the sixth 54 roads use antibacterial terylene and spandex yarns, in particular to core-spun yarns of antibacterial terylene spandex-covered yarns, the third 3, the fourth 4, the fifth 7, the sixth 8, the fifth 27 and the sixth 28 roads use combed cotton colored yarns, and the fourth 31, the fifth 32, the sixth 35, the sixth 36 roads use combed cotton white yarns.
10. The method of claim 8, wherein the finishing process is carried out by ironing and packaging after eyelet button fastening on the fly (4).
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