CN220343720U - Three-dimensional shaping structure of lower dress - Google Patents

Three-dimensional shaping structure of lower dress Download PDF

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Publication number
CN220343720U
CN220343720U CN202321562452.XU CN202321562452U CN220343720U CN 220343720 U CN220343720 U CN 220343720U CN 202321562452 U CN202321562452 U CN 202321562452U CN 220343720 U CN220343720 U CN 220343720U
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fabric
fishbone
sewn
garment
edge
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CN202321562452.XU
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Chinese (zh)
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万方铭
王媛
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Yunchuang Design Shenzhen Group Co ltd
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Yunchuang Design Shenzhen Group Co ltd
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Abstract

The utility model discloses a three-dimensional forming structure for lower garment, which comprises a wrapping fabric, a supporting fabric and fishbone strips, wherein the wrapping fabric is sewn on the outer side of the supporting fabric, the wrapping fabric and the supporting fabric are of a double-layer torus structure, and a plurality of fishbone strips for shaping are sewn on the double-layer torus structure. According to the utility model, the wrapping fabric and the supporting fabric are in a double-layer torus structure, the whole wrapping fabric is supported by the supporting fabric, and the double-layer torus structure is shaped by the fishbone strips, so that the three-dimensional shaping effect of the lower garment is realized, the structure is simple, the cost is low, and the problem of poor three-dimensional shaping effect of the lower garment in the prior art is solved.

Description

Three-dimensional shaping structure of lower dress
Technical Field
The utility model relates to the technical field of clothing design, in particular to a three-dimensional forming structure of a lower garment.
Background
Along with the development of society and the continuous improvement of living standard, the diversified requirements of people on clothes are also higher and higher, and designers are also pursuing fashion aesthetic feeling in the design process. In order to make the lower garment have a stereoscopic impression, a designer in the prior art generally adds a plurality of layers of hard nets between the fabric and the lining of the lower garment to support and form a stereoscopic space between the fabric and the lining, so that the lower garment has a fluffy modeling effect.
However, the three-dimensional effect is formed by supporting the fabric and the lining through the multi-layer hard nets, more hard nets are needed, the cost is high, and the modeling effect is affected by the quality; in addition, after placing the hard network between surface fabric and lining, still need with multilayer hard network and surface fabric and lining skip seam, the tang after the sewing is thicker on the one hand, and the molding effect after the stack of multilayer hard network is difficult to control on the other hand, and receives the resilience poor after the extrusion.
There is thus a need for improvements and improvements in the art.
Disclosure of Invention
In view of the above-mentioned shortcomings of the prior art, the present utility model aims to provide a three-dimensional molding structure for a lower garment, which aims to solve the problem of poor three-dimensional molding effect of the lower garment in the prior art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a three-dimensional shaping structure of suit down, includes parcel surface fabric, supports surface fabric and fish bone strip, parcel surface fabric skip stitch in the outside of supporting the surface fabric, just parcel surface fabric with the supporting the surface fabric is double-deck loop surface structure, double-deck loop surface structure sewing has a plurality of fish bone strip that is used for the design.
The width of the fishbone strip is 0.5cm-1.5cm.
The fishbone strip is bent to be annular and sewn on the support fabric through a first suture.
The fishbone strip is sewn on the inner side of the supporting fabric.
The fishbone strips are arranged in an annular array, and the included angle formed by two adjacent fishbone strip arrays is not more than 45 degrees.
The support fabric is a hard gauze.
The upper edge of the wrapping fabric, the lower edge of the wrapping fabric, the upper edge of the supporting fabric and the lower edge of the supporting fabric are sewn through a second stitching line; the left edge of the wrapping fabric and the right edge of the wrapping fabric are sewn through a third stitch; the left edge of the supporting fabric and the right edge of the supporting fabric are sewn through a fourth sewing line.
The wrapping fabric comprises an inner layer fabric and an outer layer fabric, wherein the lower edge of the inner layer fabric and the lower edge of the outer layer fabric are spliced through a fifth stitching line to form the wrapping fabric.
The longitudinal length of the outer layer fabric is longer than that of the inner layer fabric.
The inner layer fabric is folded towards one side of the outer layer fabric along a folding line to form a folding edge, the front face of the folding edge is opposite to the front face of the outer layer fabric, and the inner layer fabric and the outer layer fabric are sewn along a overturning line; the back of the inner layer fabric is opposite to the back of the outer layer fabric, and the inner layer fabric, the flanging edges and the outer layer fabric are sewn through a sixth sewing line.
Compared with the prior art, the lower-loading three-dimensional forming structure provided by the utility model comprises a wrapping fabric, a supporting fabric and fishbone strips, wherein the wrapping fabric is sewn on the outer side of the supporting fabric, the wrapping fabric and the supporting fabric are of a double-layer annular structure, and a plurality of fishbone strips for shaping are sewn on the double-layer annular structure. According to the utility model, the wrapping fabric and the supporting fabric are in a double-layer torus structure, the whole wrapping fabric is supported by the supporting fabric, and the double-layer torus structure is shaped by the fishbone strips, so that the three-dimensional shaping effect of the lower garment is realized, the structure is simple, the cost is low, and the problem of poor three-dimensional shaping effect of the lower garment in the prior art is solved.
Drawings
Fig. 1 is a schematic structural view of a three-dimensional molding structure of a lower package according to the present utility model.
Fig. 2 is a cross-sectional view of a three-dimensional molding structure of a lower package according to the present utility model.
Fig. 3 is a view showing an interface of the under-garment of the present utility model after being worn.
Fig. 4 is a plan development view of a support fabric and a fishbone bar in the three-dimensional molding structure of the under-garment provided by the utility model.
FIG. 5 is a schematic view of the seam between the inner layer fabric and the outer layer fabric provided by the utility model.
Detailed Description
In order to make the objects, technical solutions and effects of the present utility model clearer and more specific, the present utility model will be described in further detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
It is noted that when an element is referred to as being "mounted," "secured," or "disposed" on another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or intervening elements may also be present.
It should be noted that, in the embodiments of the present utility model, terms such as left, right, up, and down are merely relative concepts or references to normal use states of the product, and should not be construed as limiting.
The utility model provides a three-dimensional forming structure for lower garment, referring to fig. 1-5, comprising a wrapping fabric 1, a supporting fabric 2 and fishbone strips 3, wherein the wrapping fabric 1 is sewn on the outer side of the supporting fabric 2, the wrapping fabric 1 and the supporting fabric 2 are of a double-layer torus structure, and a plurality of fishbone strips 3 for shaping are sewn on the double-layer torus structure. According to the utility model, the wrapping fabric 1 and the supporting fabric 2 are of a double-layer torus structure, the wrapping fabric 1 is integrally supported by the supporting fabric 2, and the double-layer torus structure is shaped by the fishbone strips 3, so that the three-dimensional shaping effect of the lower garment is realized, the structure is simple, the cost is low, and the problem of poor three-dimensional shaping effect of the lower garment in the prior art is solved.
Further, the width of the fishbone strip 3 is 0.5cm-1.5cm. Preferably, the width of the fishbone strip 3 is 0.8cm, so that on one hand, the shaping effect of the double-layer torus structure is affected due to the fact that the fishbone strip 3 is too narrow is avoided, and on the other hand, the problems that the fishbone strip 3 is too wide, materials are wasted and rebound effect is poor after extrusion are avoided.
Further, the fishbone strip 3 is bent to be annular and sewn on the support fabric 2 through a first suture 4; the annular fishbone 3 can be better matched with the double-layer annular structure, so that the double-layer annular structure is effectively supported, and the lower garment has a fluffy three-dimensional effect.
Further, the fishbone strip 3 is sewn on the inner side of the supporting fabric 2, the supporting fabric 2 supports the wrapping fabric 1, and the fishbone strip 3 supports the supporting fabric 2, so that the double-layer annular structure is shaped, and the three-dimensional shaping effect of the lower garment is better. When the fishbone strip 3 and the supporting fabric 2 are in the unfolded state, the longitudinal length of the fishbone strip 3 is smaller than the longitudinal length of the supporting fabric 2 (namely, the length between the upper edge and the lower edge of the fishbone strip 3 is smaller than the length between the upper edge and the lower edge bracket of the supporting fabric 2), so that the fishbone strip 3 is prevented from being arranged in the seam between the supporting fabric 2 and the wrapping fabric 1, and discomfort is caused when the fishbone strip 3 in the seam is worn by a user. In addition, the seam generated after the support fabric 2 and the wrapping fabric 1 are sewn can be processed by edge wrapping or other modes, and the seam does not belong to the scope of protection of the application and is not repeated herein. The seam of the support fabric 2 and the wrapping fabric 1 when sewn is not shown in fig. 1, and the seam of the support fabric 2 and the wrapping fabric 1 when sewn is shown in fig. 2.
Further, the fishbone strips 3 are arranged in a ring-shaped array, and the included angle formed by two adjacent fishbone strip 3 arrays is not more than 45 degrees. Preferably, the included angle degree that two adjacent 3 arrays of fish bone strip formed is 22.5, under the prerequisite that satisfies support, design effect, has reduced the quantity of fish bone strip 3, and the cost is reduced has avoided simultaneously that hard support produced when the user wears uncomfortable when the fish bone strip 3 quantity is great to and avoid the poor problem of molding effect reply after the extrusion because of a plurality of 3 resilience effect uniformity of fish bone strip, lead to the lower dress.
Further, the supporting fabric 2 is hard gauze, the supporting fabric 2 and the wrapping fabric 1 are of an elliptical ring surface structure or a circular ring surface structure, the wrapping fabric 1 is supported by the hard gauze, and the double-layer ring surface structure is supported and shaped by the fishbone strips 3 on the hard gauze, so that the shaped lower mounting profile is more round.
Further, the upper edge of the wrapping fabric 1, the lower edge of the wrapping fabric 1, the upper edge of the supporting fabric 2 and the lower edge of the supporting fabric 2 are sewn through a second stitching line 5; the left edge of the wrapping fabric 1 and the right edge of the wrapping fabric 1 are sewn through a third stitch; the left edge of the support fabric 2 and the right edge of the support fabric 2 are sewn by a fourth stitch. The wrapping fabric 1 comprises an inner layer fabric 11 and an outer layer fabric 12, and the lower edge of the inner layer fabric 11 and the lower edge of the outer layer fabric 12 are spliced through a fifth stitching to form the wrapping fabric 1.
The support fabric 2 is an integrated plane fabric, and the wrapping fabric 1 can be an integrated plane fabric or a plane fabric formed by splicing seams. The upper edge of the wrapping fabric 1, the lower edge of the wrapping fabric 1, the left edge of the wrapping fabric 1, the right edge of the wrapping fabric 1, the upper edge of the supporting fabric 2, the lower edge of the supporting fabric 2, the left edge of the supporting fabric 2 and the right edge of the supporting fabric 2 refer to names of the edges of the wrapping fabric 1 and the supporting fabric 2 placed on a plane, and the names are only used for describing the sewing process of the torus structure conveniently; wherein the second suture 5, the third suture, the fourth suture and the fifth suture are all flat seams. When the double-layer torus structure is sewn, the fishbone strips 3 are sewn on the support fabric 2, the left edge of the support fabric 2 and the right edge of the support fabric 2 are sewn, the left edge of the wrapping fabric 1 and the right edge of the wrapping fabric 1 are sewn, and finally the support fabric 2 is placed on the inner side of the wrapping fabric 1 and the upper edge of the support fabric 2, the lower edge of the support fabric 2, the upper edge of the wrapping fabric 1 and the lower edge of the wrapping fabric 1 are sewn to form the double-layer torus structure. It should be noted that, the left edge of the support fabric 2 and the right edge of the support fabric 2 are sewn, and the seams generated by sewing the left edge of the wrapping fabric 1 and the right edge of the wrapping fabric 1 are located inside the double-layer torus structure.
The mode through the sewing in this application forms double-deck anchor ring structure with parcel surface fabric 1 and support surface fabric 2 to 3 design through the fish bone strip realize the three-dimensional shaping structure of lower dress, compare in the design structure of lower dress that directly adopts multilayer hard network to fold the sewing formation, three-dimensional fashioned molding effect in this application can be better control, has reduced the thickness of tang simultaneously, avoids the user to produce uncomfortable sense when wearing because of tang thickness is too thick. In the embodiment of the application, the wrapping fabric 1 is formed by splicing an inner layer fabric 11 and an outer layer fabric 12, the inner layer fabric 11 and the outer layer fabric 12 are different in material, and when a user wears the garment, the inner layer fabric is close to one side of the body, and soft and close-fitting materials can be selected; the outer layer fabric 12 is a fabric far away from one side of a body when a user wears the lower garment, and can be made of a material with strong ornamental value, a slightly hard fabric or convenient decoration, and the inner layer fabric 11 and the outer layer fabric 12 are made of different materials, so that the molded lower garment has attractive appearance while meeting the wearing comfort.
Further, the longitudinal length of the outer layer fabric 12 is greater than the longitudinal length of the inner layer fabric 11, that is, when the lower edge of the inner layer fabric 11 and the lower edge of the outer layer fabric 12 are spliced, the spliced seam is hidden at one side close to the body, so that the aesthetic feeling of the lower garment is prevented from being influenced by the exposure of the spliced seam.
The inner layer fabric 11 is folded towards one side of the outer layer fabric 12 along a folding line 61 to form a folding edge 62, the front surface of the folding edge 62 is opposite to the front surface of the outer layer fabric 12, and the inner layer fabric 11 and the outer layer fabric 12 are sewn along the folding line 61; the back of the inner layer fabric 11 is opposite to the back of the outer layer fabric 12, and the inner layer fabric 11, the turnup edges 62 and the outer layer fabric 12 are sewn through a sixth sewing thread 7. The seam mode of the inner layer fabric 11 and the outer layer fabric 12 can be a seam.
The distance between the folding line 61 and the sixth suture 7 is 0.6cm-1.2cm. Preferably, the distance between the turnup line 61 and the sixth 7 stitch is 0.6cm, and the seam between the inner layer fabric 11 and the outer layer fabric 12 is pressed by the sixth stitch 7, so as to ensure the seam effect.
In summary, the stereo forming structure of the lower garment provided by the utility model comprises a wrapping fabric, a supporting fabric and fishbone strips, wherein the wrapping fabric is sewn on the outer side of the supporting fabric, the wrapping fabric and the supporting fabric are of a double-layer torus structure, and a plurality of fishbone strips for shaping are sewn on the double-layer torus structure. According to the utility model, the wrapping fabric and the supporting fabric are in a double-layer torus structure, the whole wrapping fabric is supported by the supporting fabric, and the double-layer torus structure is shaped by the fishbone strips, so that the three-dimensional shaping effect of the lower garment is realized, the structure is simple, the cost is low, and the problem of poor three-dimensional shaping effect of the lower garment in the prior art is solved.
It will be understood that equivalents and modifications will occur to those skilled in the art in light of the present utility model and their spirit, and all such modifications and substitutions are intended to be included within the scope of the present utility model as defined in the following claims.

Claims (10)

1. The utility model provides a three-dimensional shaping structure of suit down, its characterized in that, including parcel surface fabric, support surface fabric and fishbone strip, parcel surface fabric car stitch in the outside of support surface fabric, just parcel surface fabric with support surface fabric is double-deck anchor ring structure, double-deck anchor ring structure sewing has a plurality of fishbone strip that is used for the design.
2. The under-garment three-dimensional forming structure of claim 1, wherein the fishbone bar has a width of 0.5cm to 1.5cm.
3. The under-garment three-dimensional forming structure of claim 2, wherein the fishbone strip is bent in a loop and sewn to the support fabric by a first stitch.
4. The under-garment three-dimensional forming structure of claim 3, wherein the fishbone bar is sewn to the inside of the support fabric.
5. The under-fitting three-dimensional forming structure according to claim 2, wherein the fishbone bars are arranged in a ring-shaped array, and the angle formed by two adjacent fishbone bar arrays is not more than 45 °.
6. The under-garment three-dimensional forming structure of claim 1, wherein the support fabric is a stiff gauze.
7. The under-garment three-dimensional forming structure of claim 1, wherein an upper edge of the wrap fabric, a lower edge of the wrap fabric, an upper edge of the support fabric, and a lower edge of the support fabric are stitched by a second stitch; the left edge of the wrapping fabric and the right edge of the wrapping fabric are sewn through a third stitch; the left edge of the supporting fabric and the right edge of the supporting fabric are sewn through a fourth sewing line.
8. The under-garment three-dimensional forming structure of claim 7, wherein the wrap fabric comprises an inner layer fabric and an outer layer fabric, a lower edge of the inner layer fabric and a lower edge of the outer layer fabric being stitched by a fifth stitch to form the wrap fabric.
9. The under-garment three-dimensional forming structure of claim 8, wherein the outer layer of material has a longitudinal length greater than a longitudinal length of the inner layer of material.
10. The under-garment three-dimensional forming structure of claim 8, wherein the inner shell fabric is folded along a fold line toward one side of the outer shell fabric to form a fold edge, a front side of the fold edge is opposite to a front side of the outer shell fabric, and the inner shell fabric and the outer shell fabric are sewn along a roll line; the back of the inner layer fabric is opposite to the back of the outer layer fabric, and the inner layer fabric, the flanging edges and the outer layer fabric are sewn through a sixth sewing line.
CN202321562452.XU 2023-06-19 2023-06-19 Three-dimensional shaping structure of lower dress Active CN220343720U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321562452.XU CN220343720U (en) 2023-06-19 2023-06-19 Three-dimensional shaping structure of lower dress

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321562452.XU CN220343720U (en) 2023-06-19 2023-06-19 Three-dimensional shaping structure of lower dress

Publications (1)

Publication Number Publication Date
CN220343720U true CN220343720U (en) 2024-01-16

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ID=89478612

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321562452.XU Active CN220343720U (en) 2023-06-19 2023-06-19 Three-dimensional shaping structure of lower dress

Country Status (1)

Country Link
CN (1) CN220343720U (en)

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