Lace splicing template
By designing a lace stitching template and using anti-slip and positioning components to quickly lay lace fabric, the problems of difficult lace stitching and inaccurate positioning were solved, achieving a highly efficient and stable lace stitching effect and improving the quality of garment production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHENCLOUDCREATOR FASHION DESIGN CO LTD
- Filing Date
- 2025-04-15
- Publication Date
- 2026-05-12
AI Technical Summary
In existing technologies, it is difficult to sew lace to the main fabric, and the lace is not accurately positioned during the sewing process, making it easy to shift.
Design a lace patchwork template, including a base plate, a middle plate and a cover plate, with anti-slip components and positioning components, for quickly laying and positioning lace fabric and fabric to be patched, and for patching with automated sewing equipment.
It improves the efficiency and stability of lace stitching, ensures the accuracy of stitching positions, reduces the difficulty of manual operation, and enhances the precision and aesthetics of garment production.
Smart Images

Figure CN224227392U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of garment manufacturing technology, and in particular to a lace stitching template. Background Technology
[0002] Lace is a decorative openwork product made from cotton, linen, silk, or various fabrics through embroidery or weaving. In the field of clothing design and manufacturing, lace can be used on the neckline, cuffs, and hem of garments. Its unique texture and exquisite patterns can emphasize and decorate these key areas, adding rich details and making the garment more visually appealing and artistic. At the same time, lace has a certain degree of elasticity and stretch. When used in key areas of clothing, such as the neckline, cuffs, or waist, it can be adjusted appropriately according to the wearer's body curves, making the garment more form-fitting, more comfortable, and also improving the slimming effect. Furthermore, during the garment manufacturing process, if the seams or cut edges are not neat, lace can cover up the imperfections, making the garment look more perfect. Lace can also cleverly conceal minor defects or unevenness in the fabric itself, enhancing the overall quality of the garment.
[0003] When sewing lace to the main fabric, the operator first draws lines on the main fabric to determine the lace's sewing position. Then, through a combination of manual and machine work, the operator pushes the main fabric while simultaneously pulling the lace to keep it flat and aligned with the sewing position. The drawback of this method is that it requires a high level of skill from the operator and is quite difficult. Because lace is lightweight and sewing speed is relatively slow, it's difficult to accurately position the lace during the sewing process, making it prone to misalignment.
[0004] Therefore, the existing technology still needs to be improved and enhanced. Utility Model Content
[0005] In view of the shortcomings of the prior art, the purpose of this utility model is to provide a lace stitching template, which aims to solve the problem that the lace stitching is difficult and the effect is not good in the prior art.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A lace patchwork template, comprising:
[0008] A base plate for placing lace fabric, a first sewing groove is provided on the base plate, a first anti-slip element is provided on one side of the first sewing groove, and a positioning line is provided on the other side of the first sewing groove.
[0009] The middle plate has one side that can cover the base plate to press the lace fabric, and the other side of the middle plate is used to lay the fabric to be sewn; the middle plate is provided with a second sewing groove corresponding to the first sewing groove, and the side of the second sewing groove is provided with a second anti-slip component and a positioning component.
[0010] A cover plate, which is connected to one side of the base plate to form a hinged folding structure; the cover plate is provided with a third sewing groove corresponding to the second sewing groove.
[0011] The cover plate is provided with a third anti-slip component, and the distance between the third anti-slip component and the third sewing groove is the same as the distance between the second anti-slip component and the second sewing groove.
[0012] At least one second anti-slip component is provided, and the second anti-slip component is provided on one or both sides of the second seam groove.
[0013] When the second anti-slip component and the positioning component are located on the same side of the second seam groove, the distance between the positioning component and the second seam groove is greater than the distance between the second anti-slip component and the second seam groove.
[0014] The second anti-slip component includes a second upper anti-slip component and a second lower anti-slip component, which are equally spaced on both sides of the second seam groove.
[0015] The second lower anti-slip component is disposed opposite to the third anti-slip component.
[0016] The width of the second anti-slip component is 0.3cm-1cm, the width of the first anti-slip component is 0.3cm-0.5cm, and the width of the third anti-slip component is the same as the width of the second anti-slip component.
[0017] The first anti-slip component is sandpaper, the second anti-slip component is double-sided tape, and the third anti-slip component is a sponge strip or double-sided tape.
[0018] The outline shape of the positioning line is the same as the edge outline shape of the lace fabric.
[0019] The first, second, and third seam grooves have the same width, which is 0.3cm to 0.5cm.
[0020] Compared to existing technologies, this utility model provides a lace stitching template, comprising:
[0021] A base plate for placing lace fabric, a first sewing groove is provided on the base plate, a first anti-slip element is provided on one side of the first sewing groove, and a positioning line is provided on the other side of the first sewing groove.
[0022] The middle plate has one side that can cover the base plate to press the lace fabric, and the other side of the middle plate is used to lay the fabric to be sewn; the middle plate is provided with a second sewing groove corresponding to the first sewing groove, and the side of the second sewing groove is provided with a second anti-slip component and a positioning component.
[0023] A cover plate, which is connected to one side of the base plate to form a hinged folding structure; the cover plate is provided with a third sewing groove corresponding to the second sewing groove.
[0024] The lace splicing template of this utility model can quickly complete the laying and positioning of lace fabric and fabric to be spliced, improving the efficiency of lace splicing and enhancing the stability and accuracy of the splicing position. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of an angle structure of the lace seam template provided by this utility model.
[0026] Figure 2 This is a schematic diagram of the lace seam template provided by this utility model from another angle.
[0027] Figure 3 for Figure 2 A schematic diagram of the cross section along section A-A.
[0028] Figure 4 for Figure 3 Enlarged view of part A in the middle.
[0029] Figure 5 for Figure 3 Enlarged view of section B.
[0030] Figure 6 for Figure 3 Enlarged view of section C.
[0031] Attached icon number
[0032] Base plate 1, first seam groove 11, first anti-slip component 12, positioning line 13, middle plate 2, second seam groove 21, second anti-slip component 22, second upper anti-slip component 221, second lower anti-slip component 222, positioning component 23, cover plate 3, third seam groove 31, third anti-slip component 32, first connecting component 41, second connecting component 42. Detailed Implementation
[0033] To make the objectives, technical solutions, and effects of this utility model clearer and more explicit, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0034] It should be noted that when a component is referred to as being "mounted on," "fixed to," or "set on" another component, it can be directly on the other component or may have an intervening component present. When a component is referred to as being "connected to" another component, it can be directly connected to the other component or may have an intervening component present.
[0035] It should also be noted that the directional terms such as left, right, up, and down in the embodiments of this utility model are only relative concepts or are based on the normal use state of the product, and should not be considered as restrictive.
[0036] Lace is a decorative openwork product made from cotton, linen, silk, or various fabrics through embroidery or weaving. In the field of clothing design and manufacturing, lace can be used on the neckline, cuffs, and hem of garments. Its unique texture and exquisite patterns can emphasize and decorate these key areas, adding rich details and making the garment more visually appealing and artistic. At the same time, lace has a certain degree of elasticity and stretch. When used in key areas of clothing, such as the neckline, cuffs, or waist, it can be adjusted appropriately according to the wearer's body curves, making the garment more form-fitting, more comfortable, and also improving the slimming effect. Furthermore, during the garment manufacturing process, if the seams or cut edges are not neat, lace can cover up the imperfections, making the garment look more perfect. Lace can also cleverly conceal minor defects or unevenness in the fabric itself, enhancing the overall quality of the garment.
[0037] When sewing lace to the main fabric, the operator first draws lines on the main fabric to determine the lace's sewing position. Then, through a combination of manual and machine work, the operator pushes the main fabric while simultaneously pulling the lace to keep it flat and aligned with the sewing position. The drawback of this method is that it requires a high level of skill from the operator and is quite difficult. Because lace is lightweight and sewing speed is relatively slow, it's difficult to accurately position the lace during the sewing process, making it prone to misalignment.
[0038] This utility model relates to a lace patchwork template. Please refer to [link / reference]. Figure 1 - Figure 6 ,include:
[0039] The base plate 1 is used to place lace fabric. The base plate 1 is provided with a first sewing groove 11. A first anti-slip part 12 is provided on one side of the first sewing groove 11, and a positioning line 13 is provided on the other side of the first sewing groove 11.
[0040] The middle plate 2 has one side that can cover the bottom plate 1 for pressing the lace fabric, and the other side of the middle plate 2 is used to lay the fabric to be sewn; the middle plate 2 is provided with a second sewing groove 21 corresponding to the first sewing groove 11, and the side of the second sewing groove 21 is provided with a second anti-slip part 22 and a positioning part 23.
[0041] The cover plate 3 and the bottom plate 1 are connected on one side to form a hinged folding structure; the cover plate 3 is provided with a third sewing groove 31 corresponding to the second sewing groove 21.
[0042] The lace stitching template of this utility model can quickly complete the laying and positioning of lace fabric and fabric to be stitched, improving the efficiency of lace stitching and enhancing the stability and accuracy of the stitching position. It should be noted that the lace fabric in this application is symmetrical. When using the lace stitching template, first place the lace fabric face down on the base plate 1, aligning the edge of the lace fabric with the positioning line 13. Then, cover the base plate 1 with the middle plate 2 to press the lace fabric firmly. Next, place the stitching portion of the fabric to be stitched on the middle plate 2, ensuring the face of the fabric is face down and the lower edge of the fabric to be stitched is flush with the edge of the positioning piece 23. Finally, cover the middle plate 2 with the cover plate 3 to press the stitching portion of the lace fabric and the fabric to be stitched firmly. After this, the lace stitching template can be placed under an automated sewing machine to sew the lace fabric and the fabric to be stitched. Using the lace splicing template of this application, users can complete the placement and positioning of the lace fabric and the fabric to be spliced in one go, and complete the sewing through automated sewing equipment. This greatly reduces the manual intervention, improves the inconvenience of manually pushing the fabric to be spliced and pulling the lace to align it, reduces the difficulty of lace splicing, and improves the accuracy of lace splicing position.
[0043] In this application, the base plate 1 and the intermediate plate 2 are connected by a first connector 41. The intermediate plate 2 can be flipped around the connection between the base plate 1 and the intermediate plate 2 in a direction closer to or away from the base plate 1. The cover plate 3 and the base plate 1 are connected by a second connector 42. The cover plate 3 can be flipped around the connection between the cover plate 3 and the base plate 1 in a direction closer to or away from the base plate 1. When the cover plate 3 is pressed onto the base plate 1, the intermediate plate 2 is located between the cover plate 3 and the base plate 1. The first connector 41 and the second connector 42 can be adhesive tape. Of course, alternatively, the same side of the base plate 1, the intermediate plate 2 and the cover plate 3 can also be connected by a hinge to form a hinged folding structure, which can also achieve the above-mentioned functions of the base plate 1 and the cover plate 3 being flip-connected and the intermediate plate 2 and the base plate 1 being flip-connected.
[0044] Furthermore, a third anti-slip element 32 is provided on the cover plate 3. The distance between the third anti-slip element 32 and the third sewing groove 31 is the same as the distance between the second anti-slip element 22 and the second sewing groove 21. In this embodiment, when the cover plate 3 is placed on the intermediate plate 2, the second anti-slip element 22 and the third anti-slip element 32 are distributed relative to or staggered on the side of the second sewing groove 21. The cooperation of the second anti-slip element 22 and the third anti-slip element 32 allows the fabric to be sewn to be pressed more stably between the cover plate 3 and the intermediate plate 2, preventing the sewing equipment's needle from pulling the fabric to be sewn on the template and causing displacement, thus affecting the accuracy of the sewing position.
[0045] Furthermore, at least one second anti-slip member 22 is provided, and the second anti-slip member 22 is provided on one side or both sides of the second seam groove 21. In this application, when at least one second anti-slip member 22 is provided, the second anti-slip member 22 may be provided above the second seam groove 21 (i.e., near the connection between the middle plate 2 and the cover plate 3) or the second anti-slip member 22 may be provided below the second seam groove 21 (i.e., away from the connection between the middle plate 2 and the cover plate 3); when two or more second anti-slip members 22 are provided, the second anti-slip members 22 may be provided on both sides of the second seam groove 21 respectively. In this embodiment, two second anti-slip members 22 are provided and are respectively provided on both sides of the second sewing groove 21. The second anti-slip member 22 near the connection between the middle plate 2 and the bottom plate 1 is located between the positioning member 23 and the second sewing groove 21. The advantage of setting the positions of the second anti-slip member 22 and the positioning member 23 in the aforementioned manner is that when the sewing part of the fabric to be sewn is placed on the middle plate 2, the two second anti-slip members 22 can better position the two sides of the sewing part of the fabric to be sewn, which can effectively ensure the stability of the position of the fabric to be sewn during the sewing process and improve the sewing accuracy.
[0046] Furthermore, when the second anti-slip member 22 and the positioning member 23 are located on the same side of the second sewing groove 21, the distance between the positioning member 23 and the second sewing groove 21 is greater than the distance between the second anti-slip member 22 and the second sewing groove 21. In this application, when the second anti-slip member 22 and the positioning member 23 are located on the same side of the second sewing groove 21, since the fabric to be sewn is facing down and the lower edge of the fabric to be sewn needs to be sewn with the upper edge of the lace fabric, it is necessary to position the lower edge of the fabric to be sewn to ensure the accuracy of the placement of the fabric to be sewn and the lace fabric. Therefore, the position of the positioning member 23 is closer to the connection between the middle plate 2 and the bottom plate 1 than the second anti-slip member 22. In this way, when the fabric to be sewn is placed on the middle plate 2, the lower edge of the fabric to be sewn is flush with the edge of the positioning member 23, and the sewing part of the fabric to be sewn is located at the second sewing groove 21. The second anti-slip member 22 can effectively limit the position of the fabric to be sewn to improve the sewing accuracy of the lace fabric and the fabric to be sewn.
[0047] Furthermore, the second anti-slip component 22 includes a second upper anti-slip component 221 and a second lower anti-slip component 222, which are equally spaced on both sides of the second sewing groove 21. In this embodiment, the second upper anti-slip member 221 is located near the connection between the middle plate 2 and the bottom plate 1, while the second lower anti-slip member 222 is located away from the connection between the middle plate 2 and the bottom plate 1. The second upper anti-slip member 221 and the second lower anti-slip member 222 can better position the fabric to be sewn when it is placed on the middle plate 2. At the same time, the second upper anti-slip member 221 and the second lower anti-slip member 222 are equidistant from the second sewing groove 21, which can ensure that the fabric to be sewn is subjected to a uniform fixing force in the second sewing groove 21. If the distance between the second upper anti-slip member 221 and the second sewing groove 21 and the distance between the second lower anti-slip member 222 and the second sewing groove 21 are different, the fabric may shift during the sewing process due to uneven force, resulting in inaccurate sewing position and affecting the manufacturing precision and quality of the garment. The symmetrically arranged second upper anti-slip member 221 and the second lower anti-slip member 222 can keep the fabric flat during sewing, avoiding wrinkles or twisting, so that the sewn stitches are straighter and more uniform, and the appearance of the garment is more beautiful. The second lower anti-slip component 222 is arranged opposite to the third anti-slip component 32, and its position can be positioned from both sides of the fabric to be sewn, further ensuring the stability of the position of the fabric to be sewn, which is conducive to improving the sewing accuracy.
[0048] Furthermore, the width of the second anti-slip component 22 is 0.3cm-1cm, the width of the first anti-slip component 12 is 0.3cm-0.5cm, and the width of the third anti-slip component 32 is the same as the width of the second anti-slip component 22. The first anti-slip component 12 is sandpaper, the second anti-slip component 22 is double-sided adhesive, and the third anti-slip component 32 is a sponge strip or double-sided adhesive.
[0049] Preferably, the width of the first anti-slip component 12 is 0.35cm. On the one hand, this ensures that the lace fabric has sufficient contact area with the first anti-slip component 12, thereby preventing the lace fabric from shifting during the sewing process. On the other hand, it prevents the contact area between the lace fabric and the first anti-slip component 12 from being too large, reducing the risk of the lace fabric being hooked by the first anti-slip component 12, resulting in pattern damage or fuzzing. The widths of the second anti-slip component 22 and the third anti-slip component 32 are 0.5cm. On the one hand, this ensures that the sewing part of the fabric to be sewn can be stably pressed onto the template. On the other hand, it saves costs. The first anti-slip component 12 is sandpaper, which is intended to increase the friction between the lace fabric and the template to prevent the lace fabric from shifting during the splicing process. If the first anti-slip component 12 is double-sided adhesive, the lace fabric is relatively fragile and is prone to damage to the pattern and pilling during the process of tearing it off from the double-sided fabric. Preferably, the second anti-slip component 22 and the third anti-slip component 32 can be double-sided adhesive, which can bond the fabric to be spliced to the template, which is low in cost and has a good fixing effect.
[0050] Furthermore, the outline shape of the positioning line 13 is the same as the edge outline shape of the lace fabric. The positioning line 13 can clearly mark the position of the lace fabric on the base plate 1, which facilitates the quick and accurate placement of the lace fabric on the base plate 1 by manual labor, reduces the time spent on adjustments due to inaccurate positioning, improves the efficiency of sewing, and ensures accurate sewing position.
[0051] Furthermore, the widths of the first sewing groove 11, the second sewing groove 21, and the third sewing groove 31 are all the same, ranging from 0.3cm to 0.5cm. Preferably, the widths of the first sewing groove 11, the second sewing groove 21, and the third sewing groove 31 are 0.35cm. When the sewing groove is too large, the needle of the sewing equipment is prone to deviation when piercing the fabric, causing the thread to not follow the predetermined sewing line, which may result in skipped stitches, missing stitches, and other problems, affecting the quality and strength of the seam. When the sewing groove is too small, it will cause greater compression and damage to the fabric, which may lead to wear, wrinkles, or even tears on the fabric surface, reducing the quality of the fabric and the quality of the sewn product. It will also cause the needle of the sewing equipment to experience greater resistance during the sewing process, increasing the wear of the needle, shortening the life of the needle, and affecting the continuity of the sewing work.
[0052] In summary, the lace seam template provided by this utility model includes:
[0053] A base plate for placing lace fabric, a first sewing groove is provided on the base plate, a first anti-slip element is provided on one side of the first sewing groove, and a positioning line is provided on the other side of the first sewing groove.
[0054] The middle plate has one side that can cover the base plate to press the lace fabric, and the other side of the middle plate is used to lay the fabric to be sewn; the middle plate is provided with a second sewing groove corresponding to the first sewing groove, and the side of the second sewing groove is provided with a second anti-slip component and a positioning component.
[0055] A cover plate, which is connected to one side of the base plate to form a hinged folding structure; the cover plate is provided with a third sewing groove corresponding to the second sewing groove.
[0056] The lace splicing template of this utility model can quickly complete the laying and positioning of lace fabric and fabric to be spliced, improving the efficiency of lace splicing and enhancing the stability and accuracy of the splicing position.
[0057] It is understood that those skilled in the art can make equivalent substitutions or changes based on the technical solution and inventive concept of this utility model, and all such substitutions or changes should fall within the protection scope of the appended claims of this utility model.
Claims
1. A lace stitch template, characterized by, include: A base plate for placing lace fabric, a first sewing groove is provided on the base plate, a first anti-slip element is provided on one side of the first sewing groove, and a positioning line is provided on the other side of the first sewing groove. The middle plate has one side that can cover the base plate to press the lace fabric, and the other side of the middle plate is used to lay the fabric to be sewn; the middle plate is provided with a second sewing groove corresponding to the first sewing groove, and the side of the second sewing groove is provided with a second anti-slip component and a positioning component. A cover plate, which is connected to one side of the base plate to form a hinged folding structure; the cover plate is provided with a third sewing groove corresponding to the second sewing groove.
2. The lace seam template according to claim 1, characterized in that, The cover plate is provided with a third anti-slip component, and the distance between the third anti-slip component and the third sewing groove is the same as the distance between the second anti-slip component and the second sewing groove.
3. The lace seam template according to claim 2, characterized in that, At least one second anti-slip component is provided, and the second anti-slip component is provided on one or both sides of the second seam groove.
4. The lace seam template according to claim 3, characterized in that, When the second anti-slip component and the positioning component are located on the same side of the second seam groove, the distance between the positioning component and the second seam groove is greater than the distance between the second anti-slip component and the second seam groove.
5. The lace seam template according to claim 3, characterized in that, The second anti-slip component includes a second upper anti-slip component and a second lower anti-slip component, which are equally spaced on both sides of the second seam groove.
6. The lace seam template according to claim 5, characterized in that, The second lower anti-slip component is disposed opposite to the third anti-slip component.
7. The lace seam template according to claim 2, characterized in that, The width of the second anti-slip component is 0.3cm-1cm, the width of the first anti-slip component is 0.3cm-0.5cm, and the width of the third anti-slip component is the same as the width of the second anti-slip component.
8. The lace seam template according to claim 7, characterized in that, The first anti-slip component is sandpaper, the second anti-slip component is double-sided tape, and the third anti-slip component is a sponge strip or double-sided tape.
9. The lace seam template according to claim 1, characterized in that, The outline shape of the positioning line is the same as the edge outline shape of the lace fabric.
10. The lace seam template according to claim 1, characterized in that, The first, second, and third seam grooves have the same width, which is 0.3cm-0.5cm.