CN108741344B - Sleeve matching method for controlling forward tilting angle of sleeve and sleeve prepared by sleeve matching method - Google Patents
Sleeve matching method for controlling forward tilting angle of sleeve and sleeve prepared by sleeve matching method Download PDFInfo
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- CN108741344B CN108741344B CN201810477753.XA CN201810477753A CN108741344B CN 108741344 B CN108741344 B CN 108741344B CN 201810477753 A CN201810477753 A CN 201810477753A CN 108741344 B CN108741344 B CN 108741344B
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- 238000000034 method Methods 0.000 title claims abstract description 35
- 239000003337 fertilizer Substances 0.000 claims abstract description 14
- 238000010586 diagram Methods 0.000 claims abstract description 5
- 230000001154 acute effect Effects 0.000 claims description 6
- 238000002360 preparation method Methods 0.000 claims 1
- 238000009958 sewing Methods 0.000 description 4
- 238000004519 manufacturing process Methods 0.000 description 3
- 238000005452 bending Methods 0.000 description 2
- 230000007547 defect Effects 0.000 description 2
- 238000010276 construction Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000002708 enhancing effect Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000007493 shaping process Methods 0.000 description 1
- 230000003068 static effect Effects 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
Classifications
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- A—HUMAN NECESSITIES
- A41—WEARING APPAREL
- A41H—APPLIANCES OR METHODS FOR MAKING CLOTHES, e.g. FOR DRESS-MAKING OR FOR TAILORING, NOT OTHERWISE PROVIDED FOR
- A41H3/00—Patterns for cutting-out; Methods of drafting or marking-out such patterns, e.g. on the cloth
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- A—HUMAN NECESSITIES
- A41—WEARING APPAREL
- A41D—OUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
- A41D27/00—Details of garments or of their making
- A41D27/10—Sleeves; Armholes
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Details Of Garments (AREA)
- Outer Garments And Coats (AREA)
- Sewing Machines And Sewing (AREA)
Abstract
The invention discloses a sleeve matching method for controlling the forward tilting angle of sleeves and a sleeve matching method prepared by the sleeve matching method, comprising the following steps: setting an angle line at the sleeve bottom during plate making; copying armhole lines in the completed clothing body structure diagram; making a forward inclination angle line of 4-10 degrees of the sleeve bottom along the angle line, and then making a vertical line of the front sleeve bottom and the rear sleeve bottom; determining sleeve heights; making a front sleeve arc line; making a rear sleeve arc line; making a sleeve elbow line and a sleeve long line; making a front sleeve midline and a rear sleeve midline; folding the front sleeve fertilizer and the rear sleeve fertilizer; making a sleeve long line, a sleeve elbow line and a sleeve opening line according to the common practice, thereby completing the configuration process of one sleeve; a biased cuff comprising: sleeve line and sleeve dividing line are made; armholes, armholes and armholes are arranged on the sleeve body. The invention accords with the sleeve matching method of the human arm natural forward tilting angle and can change along with the angle change of the human arm, so as to adapt to the requirement of high-end brands on the model, and can meet the requirement of changing individual custom-made models so as to change the angle of the arm into special model.
Description
Technical Field
The invention relates to the technical field of clothing sewing, in particular to a sleeve matching method for controlling the forward tilting angle of sleeves and a sleeve matching method prepared by the sleeve matching method.
Background
The meaning of the word "collar" is known in general and is also suitable for use in the structural design of garments to illustrate the importance of the sleeve to the garment. The design of the sleeve structure generally comprises a sleeve structure and a sleeve body structure, and the static and dynamic requirements of a human body are required to be considered when the sleeve structure is designed.
The conventional sleeve matching technique shown in figure 1 is characterized in that the construction is performed in an armhole 1 from top to bottom, and the structure of the sleeve is firstly made into a sleeve cap 2 structure and then the structure of the sleeve body 3 is made into a sleeve body 3 structure. As can be seen from the conventional sleeve matching technique described above: the sleeve body 2 is straight (as shown in fig. 2), obviously does not accord with the forward tilting angle of the arm of the human body, and is also adjusted: the front and back angles of the sleeves are controlled by adopting the sleeve bottom opposite points and the sleeve top opposite points to make front and back adjustment.
However, the adjustment method described above cannot effectively control the forward tilting angle of the sleeve, which is mainly because: the forward tilting angle of the sleeve is determined to have no absolute relation with the alignment points, and the relation is that the forward tilting angle is formed after the upper alignment points and the lower alignment points are adjusted. When sewing, the sewing workers skilled in the art often need to repeatedly adjust the alignment points in the sleeve mounting process: the alignment knife eyes of the sleeve bottom and the sleeve cover are adjusted, and the knife eyes are moved forwards or backwards, so that a forward tilting angle is formed, and the forward tilting bending potential of the sleeve can be controlled. However, defects often occur, and the technical requirements of high-end brands cannot be met. Meanwhile, the requirements on technical workers are very high, and great waste is caused to the repetition in the production link.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a sleeve matching method for controlling the forward inclination angle of sleeves and a sleeve matching method prepared by the sleeve matching method, which can accord with the sleeves of the human arms with the natural forward inclination angle and can change along with the angle change of the human arms, so as to adapt to the requirements of high-end brands on the models, and can further meet the requirements of changing individual customized models so as to change the angles of the arms into special models.
In order to achieve the above purpose, the invention adopts the following technical scheme:
in one aspect, a sleeve matching method for controlling a forward tilting angle of a sleeve includes the steps of:
1) Setting an angle line at the sleeve bottom during plate making;
2) Copying armhole lines in the completed clothing body structure diagram;
3) Making a forward inclination angle line of 4-10 degrees of the sleeve bottom along the angle line, and then making a vertical line of the front sleeve bottom and the rear sleeve bottom;
4) Determining the sleeve height, comprising: connecting the front shoulder point and the rear shoulder point, connecting one half of the points on the connecting line with the bottom points of the armholes to form armholes, measuring the actual armholes deep line value, and calculating the armholes according to the actual armholes deep line value;
5) Making a front sleeve arch line, comprising: making a front sleeve mountain high line by parallel sleeve bottom lines; the armhole bottom point is used for intersecting an arc line with an armhole high line according to the difference between the arc length of the front armhole and the arc line, so as to find a point A; the sleeve bottom arc line is drawn along according to the arc shape of the armhole, and the sleeve convex amount is drawn along 1.8 upwards and is connected with the sleeve bottom arc line;
6) Making a rear sleeve arch line, comprising: making a rear sleeve mountain high line by using the parallel sleeve bottom line; the armhole bottom point is used for making an arc line to intersect with the armhole high line according to the difference between the arc line and the arc line of the rear armhole arc length, and a point B is found; the sleeve bottom arc line is drawn along according to the arc shape of the armhole, and the sleeve convex amount is drawn upwards by 2 along and is connected with the sleeve bottom arc line;
7) Making a sleeve elbow line and a sleeve length line, comprising: making sleeve elbow lines parallel to the sleeve mountain high lines; making sleeve long lines by parallel sleeve mountain high lines;
8) The front and rear sleeve midlines are made, comprising: making a vertical line downwards from the point A, and intersecting the vertical line at the point C to obtain a front sleeve midline; making a vertical line downwards from the point B, and intersecting the vertical line at the point D to obtain a rear sleeve midline;
9) Make the doubling line of front, back sleeve fertilizer, include: a folding line is formed between the auxiliary point E and the bottom point of the armhole and is intersected with the sleeve line and the sleeve long line, so that a folding line of the front sleeve fertilizer is obtained; a folding line is formed between the auxiliary point F and the bottom point of the armhole and is intersected with the sleeve line and the sleeve long line, so that a folding line of the rear sleeve fertilizer is obtained, and the front sleeve arc line and the rear sleeve arc line are reflected and copied according to the folding line, so that the whole sleeve arc line is obtained;
10 Making sleeve long line, sleeve elbow line and sleeve opening line according to the common practice, thereby completing the configuration process of one sleeve;
11 A biased cuff comprising: sleeve line and sleeve dividing line are made;
12 Armholes, armholes and armholes, sleeve positions, comprising: determining and distributing eating vigor, setting front counterpoint points, setting rear counterpoint points, setting sleeve corresponding points and setting sleeve body counterpoint points.
In the step 4), the formula of the sleeve height is the actual armhole deep line value 0.83=sleeve height.
In the step 11), a sleeve line is formed, including: the I point is found 0.5cm upwards from the sleeve long line, the sleeve elbow line is connected with the auxiliary point K point 1cm inwards, then the sleeve elbow line is made into a straight arc line, the sleeve opening is big backwards from the sleeve long line, the J point is found 0.5cm downwards, and the sleeve elbow line is made into a straight arc line 0.5cm after being connected with the auxiliary point L point.
In the step 11), a cuff is formed, which includes: according to the front sleeve line, respectively 3cm outwards and inwards to obtain a front big sleeve line and a front small sleeve line, respectively 1.5cm outwards and inwards to obtain a sleeve fertilizer line, respectively 1cm outwards and inwards to obtain a sleeve line, respectively 1cm outwards and inwards to obtain a rear big sleeve line and a rear small sleeve line, respectively making big and small sleeve lines, respectively connecting N points and O points to obtain small sleeve lines, and respectively connecting M points and P points to obtain big sleeve lines.
In the step 12), the determining and distributing of the eating state comprises: the actual armhole arc length-actual armhole arc length = total eating vignetting, rear armhole eating vignetting = 55% total eating vignetting, front armhole eating vignetting = 45% total eating vignetting; the arrangement of the front pair of sites comprises: taking a front armhole point Q point by one half of the arc length of the front armhole; the arrangement of the rear pair of sites comprises: the rear armhole is used for determining R double points upwards from the armhole bottom according to the total eating state of the rear small armhole arc length-16%.
In the step 12), the setting of the corresponding points of the sleeve mountain includes: measuring +10% total eating potential from the bottom point of the armhole to the point Q, taking the point S forwards from the bottom of the armhole, measuring +35% total eating potential from the point Q to the shoulder seam point, and obtaining the point T of the armhole from the point Q upwards; sleeve body counterpoint setting includes: front sleeve seam pair site, make front big sleeve V point pair site from auxiliary point V1 point down 8cm, make front little sleeve W point pair site from auxiliary point W1 point down 8cm, make front big sleeve X point pair site from auxiliary point X1 point up 12cm, make front little sleeve Y point pair site from auxiliary point Y1 point up 12cm, rear sleeve seam pair site, make rear big sleeve Z2 point pair site from auxiliary point Z3 point down 8cm, make rear little sleeve Z1 point pair site from auxiliary point Z4 point down 8cm, make rear little sleeve A1 point pair site from auxiliary point A4 point up 14cm, make rear big sleeve A2 point pair site from auxiliary point A3 point up 14 cm.
On the other hand, the sleeve matching device for controlling the forward tilting angle of the sleeves comprises a sleeve body, wherein the sleeve body comprises an upper sleeve pipe and a lower sleeve pipe, and the upper sleeve pipe and the lower sleeve pipe are connected in a forward tilting mode, so that a forward tilting included angle with an acute angle is formed between the sleeve center line of the sleeve body and a vertical line.
The acute angle of the forward inclined angle is 4-10 degrees.
According to the sleeve matching method for controlling the forward inclination angle of the sleeve and the sleeve matching method for preparing the sleeve, the sewn sleeve is matched with the natural curvature of the arm of a human body, is close to the natural curvature of the arm of the human body, is simple and convenient to manufacture, can be formed at one time by a sewing worker with common technology only by aligning alignment points, and finally achieves the purposes of simplifying the process with high difficulty from the perspective of ready-made clothes shaping, saving production links and reducing cost and enhancing efficiency.
Drawings
FIG. 1 is a schematic diagram of a prior art sleeve dispensing technique;
FIG. 2 is a schematic illustration of a finished sleeve dispensing technique;
FIG. 3 is a schematic illustration of the present invention after copying armhole lines during sleeve making;
FIG. 4 is a schematic view of the forward tilting angle line, the vertical line of the bottom of the front and rear sleeves, taken during sleeve making according to the present invention;
FIG. 5 is a schematic illustration of determining the sleeve height in sleeve making according to the present invention;
FIG. 6 is a schematic view of a front sleeve arch line, a rear sleeve arch line, a sleeve elbow line, a sleeve length line, a front sleeve center line and a rear sleeve center line during sleeve matching plate making according to the present invention;
FIG. 7 is a schematic illustration of the front and rear sleeve fertilizer versus fold lines made during sleeve making in accordance with the present invention;
FIG. 8 is a schematic view of a finished sleeve in accordance with the present invention in sleeve making;
FIG. 9 is a schematic illustration of a biased cuff used in sleeve making in accordance with the present invention;
FIG. 10 is a schematic view of a sleeve-dividing line used in sleeve-making according to the present invention;
FIG. 11 is a schematic illustration of armholes, armholes and armholes versus sites for sleeve making in accordance with the present invention;
figure 12 is a finished view of a sleeve according to the present invention.
Detailed Description
The technical scheme of the invention is further described below with reference to the accompanying drawings and examples.
Referring to fig. 3 to 12, the sleeve matching method for controlling the forward tilting angle of sleeves provided by the invention comprises the following steps:
1) Setting an angle line 4 at the sleeve bottom during plate making;
2) Copying armhole lines in the completed clothing body structure diagram;
3) A sleeve bottom 4-10 degrees forward inclination angle line 5 is made along the angle line 4, and a front sleeve bottom vertical line 6 is made;
4) Determining the sleeve height, comprising: connecting the front shoulder point 7 and the rear shoulder point 8, connecting a half point with the armhole bottom point 9 on the connecting line to form an armhole deep line 10, measuring the value of the actual armhole deep line 10, and calculating the armhole height according to the value of the actual armhole deep line 10, wherein the armhole height=the value of the actual armhole deep line 10 is 0.83;
5) Making a front sleeve arch line, comprising: a front sleeve mountain high line 11 is formed by parallel sleeve bottom lines; an arc line 13 is made by an armhole bottom point 9 according to (a front armhole arc length 12= delta) - (the difference between an arc line and a straight line = 0.8 cm) and is intersected with an armhole high line 11, so as to find a point A; the sleeve bottom arc line is drawn along according to the arc shape of the armhole, and the sleeve convex amount is drawn along 1.8cm upwards and is connected with the sleeve bottom arc line;
6) Making a rear sleeve arch line, comprising: a rear sleeve ridge 14 is formed by parallel sleeve bottom lines; the armhole bottom point 9 is used for making an arc 16 to intersect with the armhole high line 11 according to the (back armhole arc length= o) - (the difference between the arc and the straight line = 0.5 cm), so as to find a point B; the sleeve bottom arc line is drawn along according to the arc shape of the armhole, and the sleeve convex amount is drawn along with the sleeve bottom arc line by 2cm upwards;
7) Making a sleeve elbow line and a sleeve length line, comprising: making sleeve elbow lines parallel to the sleeve mountain high lines; making sleeve long lines by parallel sleeve mountain high lines;
8) The front and rear sleeve midlines are made, comprising: a vertical line is drawn downwards from the point A and intersected with the point C to obtain a front sleeve center line 17; making a vertical line downwards from the point B, and intersecting at the point D to obtain a rear sleeve midline 18;
9) Make the doubling line of front, back sleeve fertilizer, include: a folding line is formed between the auxiliary point E and the armhole bottom point 9 and is intersected with the sleeve line and the sleeve long line, so that a folding line 19 of the front sleeve fertilizer is obtained; a folding line is formed between the auxiliary point F and the armhole bottom point 9 and is intersected with the sleeve line and the sleeve long line, a folding line 20 of the rear sleeve fertilizer is obtained, and the front sleeve arc line and the rear sleeve arc line are reflected and copied according to the folding line, so that the whole sleeve arc line is obtained;
10 Making sleeve long line, sleeve elbow line and sleeve opening line according to the common practice, thereby completing the configuration process of one sleeve;
11 A biased cuff comprising: sleeve line and sleeve dividing line are made;
Sleeve line, comprising: the I point is found 0.5cm upwards from the long sleeve line, the elbow line is connected with the auxiliary point K point 1cm inwards, then the elbow line is made into a following arc line 21, the cuff is made to be big backwards from the long sleeve line, the J point is found 0.5cm downwards, and the elbow line is made into a following arc line 22 after being connected with the auxiliary point L point by 0.5 cm.
A split cuff comprising: according to the front sleeve line 23, a front big sleeve line 24 and a front small sleeve line 25 are obtained by respectively 3cm outwards and inwards in parallel, according to the rear sleeve line 26, sleeves are respectively 1.5cm outwards and inwards in parallel, sleeves are respectively 1cm outwards and inwards in parallel, the lines are connected in sequence to obtain a rear big sleeve line 27 and a rear small sleeve line 28, the big sleeve line and the small sleeve line are used as big sleeve line and small sleeve line, an auxiliary point N point and an auxiliary point O point are connected to obtain a small sleeve line 29, and an auxiliary point M point and an auxiliary point P point are connected to obtain a big sleeve line 30.
12 Armholes, armholes and armholes, sleeve positions, comprising: determining and distributing eating vigor, setting front counterpoint points, setting rear counterpoint points, setting sleeve corresponding points and setting sleeve body counterpoint points.
Determining and distributing eating vigor, comprising: the actual armhole arc length-actual armhole arc length = total eating vignetting, rear armhole eating vignetting = 55% total eating vignetting, front armhole eating vignetting = 45% total eating vignetting; the arrangement of the front pair of sites comprises: taking a front armhole point Q point by one half of the arc length of the front armhole; the arrangement of the rear pair of sites comprises: the rear armhole is used for determining R double points upwards from the armhole bottom according to the total eating state of the rear small armhole arc length-16%.
Sleeve mountain corresponding point sets up, includes: the total eating potential of +10% is measured from the bottom point of the armhole to the point Q, the point S is taken forwards from the bottom of the armhole, the total eating potential of +35% is measured from the point Q to the shoulder seam point, and the point T of the armhole is obtained upwards from the point Q.
Sleeve body counterpoint setting includes: front sleeve seam pair site, make front big sleeve V point pair site from auxiliary point V1 point down 8cm, make front little sleeve W point pair site from auxiliary point W1 point down 8cm, make front big sleeve X point pair site from auxiliary point X1 point up 12cm, make front little sleeve Y point pair site from auxiliary point Y1 point up 12cm, rear sleeve seam pair site, make rear big sleeve Z2 point pair site from auxiliary point Z3 point down 8cm, make rear little sleeve Z1 point pair site from auxiliary point Z4 point down 8cm, make rear little sleeve A1 point pair site from auxiliary point A4 point up 14cm, make rear big sleeve A2 point pair site from auxiliary point A3 point up 14 cm.
The invention also provides a sleeve matching device for controlling the forward tilting angle of sleeves, which comprises a sleeve body 100, wherein the sleeve body 100 comprises an upper sleeve pipe 80 and a lower sleeve pipe 90, and the connection between the upper sleeve pipe and the lower sleeve pipe is arranged in a forward tilting way, so that a forward tilting angle 103 with an acute angle is formed between a sleeve center line 101 of the sleeve body 100 and a vertical line 102, and the sleeve body 100 can be matched with the natural bending degree of an arm of a human body. The front parts of the cuffs are smooth, discomfort is avoided, and the attractive appearance is better.
Preferably, the acute angle of the rake angle 103 is 4 to 10 degrees, and most preferably.
It will be appreciated by persons skilled in the art that the above embodiments are provided for illustration only and not for limitation of the invention, and that variations and modifications of the above described embodiments are intended to fall within the scope of the claims of the invention as long as they fall within the true spirit of the invention.
Claims (8)
1. The sleeve matching method for controlling the forward tilting angle of the sleeves is characterized by comprising the following steps of:
1) Setting an angle line at the sleeve bottom during plate making;
2) Copying armhole lines in the completed clothing body structure diagram;
3) Making a forward inclination angle line of 4-10 degrees of the sleeve bottom along the angle line, and then making a vertical line of the front sleeve bottom and the rear sleeve bottom;
4) Determining the sleeve height, comprising: connecting the front shoulder point and the rear shoulder point, connecting one half of the points on the connecting line with the bottom points of the armholes to form armholes, measuring the actual armholes deep line value, and calculating the armholes according to the actual armholes deep line value;
5) Making a front sleeve arch line, comprising: making a front sleeve mountain high line by parallel sleeve bottom lines; the armhole bottom point is used for intersecting an arc line with an armhole high line according to the difference between the arc length of the front armhole and the arc line, so as to find a point A; the sleeve bottom arc line is drawn along according to the arc shape of the armhole, and the sleeve convex amount is drawn along 1.8 upwards and is connected with the sleeve bottom arc line;
6) Making a rear sleeve arch line, comprising: making a rear sleeve mountain high line by using the parallel sleeve bottom line; the armhole bottom point is used for making an arc line to intersect with the armhole high line according to the difference between the arc line and the arc line of the rear armhole arc length, and a point B is found; the sleeve bottom arc line is drawn along according to the arc shape of the armhole, and the sleeve convex amount is drawn upwards by 2 along and is connected with the sleeve bottom arc line;
7) Making a sleeve elbow line and a sleeve length line, comprising: making sleeve elbow lines parallel to the sleeve mountain high lines; making sleeve long lines by parallel sleeve mountain high lines;
8) The front and rear sleeve midlines are made, comprising: making a vertical line downwards from the point A, and intersecting the vertical line at the point C to obtain a front sleeve midline; making a vertical line downwards from the point B, and intersecting the vertical line at the point D to obtain a rear sleeve midline;
9) Make the doubling line of front, back sleeve fertilizer, include: a folding line is formed between the auxiliary point E and the bottom point of the armhole and is intersected with the sleeve line and the sleeve long line, so that a folding line of the front sleeve fertilizer is obtained; a folding line is formed between the auxiliary point F and the bottom point of the armhole and is intersected with the sleeve line and the sleeve long line, so that a folding line of the rear sleeve fertilizer is obtained, and the front sleeve arc line and the rear sleeve arc line are reflected and copied according to the folding line, so that the whole sleeve arc line is obtained;
10 Making sleeve long line, sleeve elbow line and sleeve opening line according to the common practice, thereby completing the configuration process of one sleeve;
11 A biased cuff comprising: sleeve line and sleeve dividing line are made;
12 Armholes, armholes and armholes, sleeve positions, comprising: determining and distributing eating vigor, setting front counterpoint points, setting rear counterpoint points, setting sleeve corresponding points and setting sleeve body counterpoint points.
2. A sleeve matching method for controlling the forward tilting angle of sleeves as claimed in claim 1, wherein: in the step 4), the formula of the sleeve height is the actual armhole deep line value 0.83=sleeve height.
3. A sleeve matching method for controlling the forward tilting angle of sleeves as claimed in claim 1, wherein: in the step 11), a sleeve line is formed, including: the I point is found 0.5cm upwards from the sleeve long line, the sleeve elbow line is connected with the auxiliary point K point 1cm inwards, then the sleeve elbow line is made into a straight arc line, the sleeve opening is big backwards from the sleeve long line, the J point is found 0.5cm downwards, and the sleeve elbow line is made into a straight arc line 0.5cm after being connected with the auxiliary point L point.
4. A sleeve matching method for controlling the forward tilting angle of sleeves as claimed in claim 1, wherein: in the step 11), a cuff is formed, which includes: according to the front sleeve line, respectively 3cm outwards and inwards to obtain a front big sleeve line and a front small sleeve line, respectively 1.5cm outwards and inwards to obtain a sleeve fertilizer line, respectively 1cm outwards and inwards to obtain a sleeve line, respectively 1cm outwards and inwards to obtain a rear big sleeve line and a rear small sleeve line, respectively making big and small sleeve lines, respectively connecting N points and O points to obtain small sleeve lines, and respectively connecting M points and P points to obtain big sleeve lines.
5. A sleeve matching method for controlling the forward tilting angle of sleeves as claimed in claim 1, wherein: in the step 12), the determining and distributing of the eating state comprises: the actual armhole arc length-actual armhole arc length = total eating vignetting, rear armhole eating vignetting = 55% total eating vignetting, front armhole eating vignetting = 45% total eating vignetting; the arrangement of the front pair of sites comprises: taking a front armhole point Q point by one half of the arc length of the front armhole; the arrangement of the rear pair of sites comprises: the rear armhole is used for determining R double points upwards from the armhole bottom according to the total eating state of the rear small armhole arc length-16%.
6. A sleeve matching method for controlling the forward tilting angle of sleeves as claimed in claim 5, wherein: in the step 12), the setting of the corresponding points of the sleeve mountain includes: measuring +10% total eating potential from the bottom point of the armhole to the point Q, taking the point S forwards from the bottom of the armhole, measuring +35% total eating potential from the point Q to the shoulder seam point, and obtaining the point T of the armhole from the point Q upwards; sleeve body counterpoint setting includes: front sleeve seam pair site, make front big sleeve V point pair site from auxiliary point V1 point down 8cm, make front little sleeve W point pair site from auxiliary point W1 point down 8cm, make front big sleeve X point pair site from auxiliary point X1 point up 12cm, make front little sleeve Y point pair site from auxiliary point Y1 point up 12cm, rear sleeve seam pair site, make rear big sleeve Z2 point pair site from auxiliary point Z3 point down 8cm, make rear little sleeve Z1 point pair site from auxiliary point Z4 point down 8cm, make rear little sleeve A1 point pair site from auxiliary point A4 point up 14cm, make rear big sleeve A2 point pair site from auxiliary point A3 point up 14 cm.
7. A sleeve prepared by the sleeve preparation method for controlling the forward tilting angle of sleeves according to any one of claims 1-6, comprising a sleeve body, characterized in that: the sleeve body comprises an upper sleeve pipe and a lower sleeve pipe, and the upper sleeve pipe and the lower sleeve pipe are connected in a forward inclined mode, so that a forward inclined included angle with an acute angle is formed between the sleeve center line and the vertical line of the sleeve body.
8. A sleeve according to claim 7, wherein: the acute angle of the forward inclined angle is 4-10 degrees.
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CN111543718B (en) * | 2020-05-22 | 2022-06-03 | 常州纺织服装职业技术学院 | Method for determining sleeve hill eating distribution of clothes |
CN112237311A (en) * | 2020-09-24 | 2021-01-19 | 上海燕莎服饰有限公司 | Pattern making method for suit sleeves |
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