Clothing sewing template
By designing a modular garment sewing template and utilizing replaceable components and a positioning hole structure, the problem of the template's inability to adapt to local changes is solved, achieving an efficient sewing process and reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANTA (CHINA) CO LTD
- Filing Date
- 2025-03-07
- Publication Date
- 2026-04-21
AI Technical Summary
Existing garment sewing templates cannot adapt to local changes, resulting in template waste and increased production costs.
Design a modular garment sewing template that allows for flexible combination and positioning of the template through replaceable components and positioning hole structure, adapting to different sewing needs.
It improves template utilization, reduces production costs, enhances production efficiency and sewing quality, and avoids misalignment problems caused by vibration and disturbance.
Smart Images

Figure CN224148304U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of garment manufacturing mold technology, specifically to a garment sewing template. Background Technology
[0002] In existing technologies, the sewing of the front piece of a garment is often achieved by combining and fixing templates corresponding to each piece of fabric in the front piece. The fabric pieces are then placed on the combined template to sew multiple pieces at once, eliminating the problem of frequently changing templates during the sewing process. However, when a piece of fabric in the front piece of the garment changes, the entire template cannot adapt to the change. For example, when the pattern or logo in the front piece of the garment changes, the existing template cannot be adapted to it, and a new template must be created to adapt to the local change, resulting in the waste of the original template and increasing production costs. Utility Model Content
[0003] The purpose of this utility model is to overcome the above-mentioned defects or problems in the background art and provide a garment sewing template that is suitable for replacing local components to meet different sewing needs, improve template utilization, reduce production costs, and improve production efficiency.
[0004] To achieve the above objectives, the various embodiments of this utility model adopt the following technical solutions, but are not limited to the following solutions:
[0005] The first technical solution relates to a garment sewing template, which includes:
[0006] The base plate is provided with a first stitching part, a first slot and at least two positioning parts;
[0007] A first component is adapted to be inserted into the first slot or stacked on top of the base plate; the first component is provided with a second stitching part, a third stitching part, and a first positioning hole corresponding to the positioning part; when the first component is stacked on top of the base plate, the third stitching part is aligned with the first stitching part by aligning the corresponding positioning part through each first positioning hole.
[0008] The second technical solution is based on the first technical solution, wherein the positioning part is a protrusion suitable for insertion into the corresponding first positioning hole.
[0009] The third technical solution is based on the first or second technical solution, wherein the first component is adapted to be inserted into the first slot along the first direction;
[0010] The first component includes a first base plate and a first cover plate that are rotatably connected to each other about a first rotation axis extending in a first direction;
[0011] The first substrate is provided with a first wire guide groove, a second wire guide groove, and a first substrate positioning hole corresponding to the positioning part;
[0012] The first cover plate is provided with a third wire passage groove, a fourth wire passage groove, and a first cover plate positioning hole corresponding to the positioning part;
[0013] When the first cover plate is rotated to be stacked on the first substrate, the positioning holes of the first cover plate are aligned with the positioning holes of the first substrate, so that the third wire groove is aligned with the first wire groove to form the second stitching part, and the fourth wire groove is aligned with the second wire groove to form the third stitching part.
[0014] When the first component is stacked on top of the base plate, the first cover plate is stacked under the first substrate, and the positioning hole of the first substrate is aligned with the positioning hole of the first cover plate to form the first positioning hole.
[0015] The fourth technical solution is based on the third technical solution and also includes the second component;
[0016] The base plate is also provided with a second slot and a fourth stitching section;
[0017] The second component is adapted to be inserted into the second slot or stacked on top of the base plate; the second component is provided with a fifth stitching part and a second positioning hole corresponding to the positioning part; when the second component is stacked on top of the base plate, the fifth stitching part is aligned with the fourth stitching part by aligning the corresponding positioning part through each second positioning hole.
[0018] The fifth technical solution is based on the fourth technical solution, wherein the slot opening of the second slot and the slot opening of the first slot are opposite to each other along a first direction.
[0019] The sixth technical solution is based on the fifth technical solution. The second component includes a second substrate and a second cover plate that are rotatably connected to each other about a second rotation axis, and the second rotation axis extends along a first direction.
[0020] The second substrate is provided with a fifth wire groove and a second substrate positioning hole corresponding to the positioning part;
[0021] The second cover plate is provided with a seventh wire groove and a second cover plate positioning hole corresponding to the positioning part;
[0022] When the second cover plate is rotated to be stacked on the second substrate, the positioning holes of the second cover plate are aligned with the positioning holes of the second substrate, so that the seventh wire groove is aligned with the fifth wire groove to form the fifth stitching part.
[0023] When the second component is stacked on top of the base plate, the second cover plate is stacked under the second substrate, and the positioning hole of the second substrate is aligned with the positioning hole of the second cover plate to form the second positioning hole.
[0024] The seventh technical solution is based on the sixth technical solution, and the second component further includes:
[0025] A third substrate is rotatably connected to the second substrate about a third rotation axis, which is perpendicular to the first direction;
[0026] A third cover plate is rotatably connected to the third substrate about the second rotation axis and is adapted to be stacked on the third cover plate;
[0027] The second substrate is further provided with a sixth wire passing groove, and the second cover plate is further provided with an eighth wire passing groove. When the second cover plate is stacked on the second substrate, the positioning hole of the second cover plate is aligned with the positioning hole of the second substrate, so that the eighth wire passing groove is aligned with the sixth wire passing groove.
[0028] The third substrate is provided with a ninth wire passing groove, and the third cover plate is provided with an eleventh wire passing groove;
[0029] When the third cover plate is stacked on the third substrate, the eleventh wire groove is aligned with the ninth wire groove.
[0030] The third substrate is adapted to rotate the third cover plate stacked thereon to a state where the third cover plate is stacked on the second cover plate, so that the ninth wire groove and the eleventh wire groove are aligned with the eighth wire groove and the sixth wire groove.
[0031] The eighth technical solution is based on the seventh technical solution. The second component further includes a flap that is rotatably connected to the third cover plate about a fourth rotation axis, the fourth rotation axis being parallel to the second rotation axis.
[0032] The third substrate is also provided with a tenth wire groove and a first recess;
[0033] The third cover plate is also provided with a twelfth wire groove and a second recess;
[0034] The flap is provided with a thirteenth wire groove and a third recess;
[0035] When the third cover plate is stacked on the third substrate, the flip plate is adapted to rotate to be stacked on the third cover plate so that the thirteenth wire groove is aligned with the twelfth wire groove and the tenth wire groove, and the third groove is aligned with the second groove and the first groove.
[0036] As can be seen from the above description of the various embodiments of the present utility model, compared with the prior art, the various embodiments of the present utility model have the following beneficial effects:
[0037] 1. In the first technical solution, the first component is separated from the template of other parts. The first component is limited by the first slot of the base plate. This non-fixed connection addresses different production needs. For example, when sewing garment pieces with different markings, the first component is removed from the base plate, and the first component that meets the production requirements is inserted into the first slot to achieve the sewing requirements of different second seams. The positioning hole on the first component works with the positioning part on the base plate to achieve the positioning function during the sewing process, avoiding disturbance between the first component and the first seam due to stitching, which could cause misalignment of the sewing position. Its structure is simple and easy to implement. The modular template design avoids the need to replace the entire garment template due to sewing requirements for local changes in the garment, avoiding waste and redundancy, and improving utilization and production efficiency. At the same time, the simple limiting structure, such as the positioning part, the first positioning hole, and the first slot, achieves limiting and positioning during the sewing process, avoiding the problem of misalignment of the sewing caused by disturbance and vibration.
[0038] 2. In the second technical solution, the protruding positioning part is inserted into the first positioning hole of the first component, so that the first component can be reliably restricted when it is stacked on the base plate, avoiding disturbance and shaking during the sewing process, which would lead to a decrease in production quality. Moreover, its structure is simple and easy to implement.
[0039] 3. In the third technical solution, the first substrate and the first cover plate are rotatably connected around the first rotation axis. When the first cover plate is placed on the first substrate, it helps to fix the first piece and the second piece. During the sewing process, the two pieces are limited to avoid misalignment caused by disturbance or shaking.
[0040] 4. In the fourth technical solution, the garment sewing template also includes a second component, and the base plate is provided with a second slot. The second component is inserted into the second slot, which ensures its positioning during the sewing process and facilitates the replacement of different second components. This allows for flexible combination of different first and second components, further improving the utilization rate of the garment sewing template, reducing production costs, and increasing production efficiency. The second positioning hole on the second component, when stacked on top of the base plate, works in conjunction with the positioning part to fix the relative position of the second component to the base plate, ensuring sewing quality.
[0041] 5. In the fifth technical solution, the slot of the second slot is opposite to the slot of the first slot. The two slots that are opposite to each other are conducive to preparing two components at the same time, so that the two components are spatially staggered to avoid interference, facilitate flexible replacement of each component, optimize the spatial layout, and improve production efficiency.
[0042] 6. In the sixth technical solution, the second substrate and the second cover plate are rotatably connected around the second rotation axis. When the second cover plate is placed on the second substrate, it ensures that the cut piece is clamped and limited during the sewing process, avoiding misalignment caused by disturbance or shaking. The second positioning holes of the second substrate and the second cover plate are aligned with each other, which ensures that when stacked on top of the base plate, they can cooperate with the positioning part to ensure that there is no relative movement between the second component and the base plate, so as to ensure production quality. In addition, the second positioning holes on the second substrate and the second cover plate are beneficial for the operator to quickly identify the placement position of the sewing component and the base plate, so that the operator can quickly insert the second component into the second slot until the bottom of the slot.
[0043] 7. In the seventh technical solution, based on the principle of garment piece assembly, the third base plate is connected to the second base plate, and the connection is made perpendicular to the first direction around the third rotation axis. This is beneficial for the positional layout of multiple pieces for sewing. At the same time, after the third base plate is connected to the second base plate, its appearance is significantly different from that of the first component, which helps the operator to identify the installation relationship between the sewing component and the base plate, enabling quick identification. In addition, the connection between the third base plate and the second base plate restricts the third base plate and the third cover plate when they are folded onto the second cover plate and the second base plate, making them relatively fixed to the second component and preventing movement, thus improving the sewing quality. When the third cover plate covers the third base plate, it helps to clamp the pieces, preventing them from moving and improving the sewing quality.
[0044] 8. In the eighth technical solution, the flip plate is rotatably connected to the third cover plate, and the third cover plate is rotatably connected to the third base plate. Thus, the third cover plate is both the cover plate of the third base plate and the base plate of the flip plate. This structure reduces the material consumption of the template, reduces the space occupied by the template, and the template is highly integrated, making it easy to stack, store and manage. In addition, the third cover plate is rotatably connected to the flip plate, and the flip plate rotates to cover the third cover plate to fix the cut pieces, which helps to prevent the cut pieces from moving during the sewing process and ensures the sewing quality.
[0045] In summary, this technical solution optimizes the existing combined template by utilizing a split structure to allow for quick replacement of components to meet different sewing needs. This enables flexible component selection based on varying sewing requirements, avoiding the need to replace the entire garment sewing template for different local sewing needs. The positioning part, along with the first and second positioning holes, forms a locking mechanism, achieving relative positioning between templates. This reduces misalignment caused by vibration and interference during sewing, improving the production efficiency and quality of garment piece assembly sewing. Placing the core component, the first assembly, on one side of the base plate and the corresponding sewing components for other pieces on the other side, with high integration, facilitates quick and accurate identification of the installation positions of each sewing component during template installation. Finally, this highly integrated template is easy to store, manage, and preserve. Attached Figure Description
[0046] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0047] Figure 1 This is a schematic diagram of the garment sewing template in the embodiment;
[0048] Figure 2 This is a schematic diagram of the base plate in the embodiment;
[0049] Figure 3 This is a schematic diagram of the structure of the first component in the embodiment;
[0050] Figure 4 This is a schematic diagram of the structure of the second component in the embodiment;
[0051] Explanation of key figure labels:
[0052] 1. Base plate; 2. First slot; 3. Positioning part; 4. First positioning hole; 5. First substrate positioning hole; 6. First cover plate positioning hole; 7. Second slot; 8. Second positioning hole; 9. Second substrate positioning hole; 10. Second cover plate positioning hole; 11. First stitching part; 12. Base plate slot; 22. Second stitching part; 33. Third stitching part; 44. Fourth stitching part; 55. Fifth stitching part; 66. Sixth stitching part; 77. Seventh stitching part; 88. Eighth stitching part; 100. First assembly; 101. First substrate; 102. First cover plate; 103. First wire guide groove; 04. Second wire guide groove; 105. Third wire guide groove; 106. Fourth wire guide groove; 200. Second component; 201. Second substrate; 202. Second cover plate; 203. Fifth wire guide groove; 204. Sixth wire guide groove; 205. Seventh wire guide groove; 206. Eighth wire guide groove; 301. Third substrate; 302. Third cover plate; 303. Ninth wire guide groove; 304. Tenth wire guide groove; 305. First groove; 306. Eleventh wire guide groove; 307. Twelfth wire guide groove; 308. Second groove; 400. Flip plate; 401. Thirteenth wire guide groove; 402. Third groove; Detailed Implementation
[0053] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are preferred embodiments of the present utility model and should not be considered as excluding other embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.
[0054] Unless otherwise expressly defined, the use of terms such as "first," "second," or "third" in the claims, description, and drawings of this utility model is for distinguishing different objects and not for describing a specific order.
[0055] Unless otherwise expressly defined, in the claims, description, and accompanying drawings of this utility model, the use of directional terms such as "center," "lateral," "longitudinal," "horizontal," "vertical," "top," "bottom," "inner," "outer," "upper," "lower," "front," "rear," "left," "right," "clockwise," and "counterclockwise" to indicate orientation or positional relationships is based on the orientation and positional relationships shown in the accompanying drawings and is only for the convenience of describing this utility model and simplifying the description. It does not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as limiting the specific protection scope of this utility model.
[0056] Unless otherwise expressly defined, the terms "fixed connection" or "fixed connection" used in the claims, description and drawings of this utility model shall be interpreted broadly to refer to any connection in which there is no displacement or relative rotation relationship between the two parties, including non-removable fixed connection, detachable fixed connection, integral connection and fixed connection through other devices or components.
[0057] In the claims, description and accompanying drawings of this utility model, the terms "comprising", "having", and variations thereof are used to mean "including but not limited to".
[0058] The garment sewing template of this embodiment is used to sew the front piece of a garment, which includes a first cut piece, a second cut piece, a third cut piece, a fourth cut piece, a fifth cut piece, a sixth cut piece, and a seventh cut piece. Specifically, the first cut piece is a label, the sixth cut piece is a pocket flap, and the seventh cut piece is a pocket lining. In other embodiments, the garment sewing template can be used to sew trouser products or components, etc.
[0059] See Figure 1 , Figure 1 The diagram shows the structure of a garment sewing template, including a base plate 1, a first component 100, and a second component 200.
[0060] See Figure 2 , Figure 2 The diagram shows the structure of the base plate 1. In this embodiment, the base plate 1 has a first sewing part 11, a fourth sewing part 44, a first slot 2, a second slot 7, two positioning parts 3, and a base plate slot 12. In the base plate 1, the openings of the first slot 2 and the second slot 7 are opposite to each other. The first sewing part 11 is located near the bottom of the first slot 2, and the fourth sewing part 44 is located near the bottom of the second slot 7. The positioning parts 3 are arranged at both ends along the front-back direction between the first sewing part 11 and the fourth sewing part 44. In this embodiment, the base plate 1 is I-shaped, and the base plate slot 12 is located at the front end of the base plate 1 along the front-back direction. The base plate slot 12 is used to position the template relative to the machine base.
[0061] See Figure 3 , Figure 3 The diagram shows the structure of the first component 100, which includes a first substrate 101 and a first cover plate 102. The first substrate 101 has a first wire guide groove 103, a second wire guide groove 104, and a first substrate positioning hole 5. The second wire guide groove 104 is located at the left end of the first substrate 101, and the first wire guide groove 103 is located to the right of the second wire guide groove 104. The first substrate positioning hole 5 is located at both ends of the first wire guide groove 103, and its position corresponds to the position of the positioning part 3. The first cover plate 102 has a third wire guide groove 105, a fourth wire guide groove 106, and a first cover plate positioning hole 6. The fourth wire guide groove 106 is located at the left end of the first cover plate 102, and the third wire guide groove 105 is located to its right. The third wire guide groove 105 has second cover plate positioning holes 10 at both ends of the third wire guide groove 105, and its position corresponds to the position of the positioning part 3.
[0062] The first substrate 101 and the first cover plate 102 are rotatably connected around a first rotation axis, which extends along a first direction. In this embodiment, the first direction is from left to right. The first substrate 101 and the first cover plate 102 are rotatably connected, specifically, by means of adhesive tape. When the first cover plate 102 rotates around the rotation axis and covers the first substrate 101, the third thread groove 105 is aligned with the first thread groove 103 to form a second sewing part 22. The second sewing part 22 is used to sew the first piece onto the second piece; the fourth thread groove 106 is aligned with the second thread groove 104 to form a third sewing part 33; the positioning hole 5 of the first substrate is aligned with the positioning hole 6 of the first cover plate to form a first positioning hole 4.
[0063] The first component 100 can be inserted into the first slot 2 along the first direction and abut against the inner wall of the first slot 2 to form a limiting position. The first component 100 is limited by the first slot 2 of the base plate 1, which can meet different production needs in a non-fixed manner. For example, when facing different first and second cut pieces to sew, the first component 100 is removed from the base plate 1, and the first set of 100 pieces that meet the production needs is inserted into the first slot 2 to complete the sewing work.
[0064] When the first cover plate 102 rotates around the first rotation axis and covers the first base plate 101, the first component 100 is flipped along the bottom of the first slot 2 and stacked above the base plate 1. At this time, the positioning part 3 is inserted into the first positioning hole 4, and the third sewing part 33 is aligned with the first sewing part 11, so that the combination line of the second and third pieces can be sewn. The first positioning hole 4 on the first component 100 and the positioning part 3 on the base plate 1 work together to realize the positioning function in the process of sewing the combination line, avoiding disturbance between the first component 100 and the first sewing part 11 due to the thread routing, which would cause misalignment of the sewing position. Its structure is simple and easy to implement. The modular combination template design realizes the sewing of the second and third pieces and solves the requirements of different production needs. At the same time, the simple limiting structure, such as the positioning part 3, the first positioning hole 4, the second positioning hole 8, the first slot 2, and the second slot 7, realizes the limiting and positioning in the sewing process, avoiding the problem of misalignment of the sewing caused by disturbance and vibration.
[0065] See Figure 4 , Figure 4 The diagram shows the structure of the second component 200. The second component 200 includes a second substrate 201, a second cover plate 202, a third substrate 301, a third cover plate 302, and a flap 400. The second component 200 can be inserted into the second slot 7 in the opposite direction to the first direction, and abuts against the inner wall of the second slot 7 to form a limiting position.
[0066] The second substrate 201 is provided with a fifth wire guide groove 203, a sixth wire guide groove 204, and a second substrate positioning hole 9. The fifth wire guide groove 203 is located on the right side of the second substrate 201; the sixth wire guide groove 204 is located on the left side of the second substrate 201; and the second substrate positioning hole 9 is located at both ends of the second substrate 201 and corresponds to the positioning part 3. The second cover plate 202 is provided with a seventh wire guide groove 205, an eighth wire guide groove 206, and a second cover plate positioning hole 10. The seventh wire guide groove 205 is located on the right side of the second cover plate 202; the eighth wire guide groove 206 is located on the left side of the second cover plate 202; and the second cover plate positioning hole 10 is located at both ends of the second cover plate 202 and corresponds to the positioning part 3.
[0067] The second substrate 201 and the second cover plate 202 are rotatably connected to each other around a second rotation axis, which extends along a first direction. The rotatable connection between the second substrate 201 and the second cover plate 202 is achieved by adhesive tape. When the second cover plate 202 rotates around the rotation axis and flips over to cover the second substrate 201, the seventh wire groove 205 is aligned with the fifth wire groove 203 to form the fifth stitching part 55, the eighth wire groove 206 is aligned with the sixth wire groove 204 to form the sixth stitching part 66, and the second cover plate positioning hole 10 is aligned with the second substrate positioning hole 9 to form the second positioning hole 8.
[0068] When the second cover plate 202 rotates around the second rotation axis and flips over to cover the second base plate 201, the second component 200 is flipped along the bottom of the second slot 7 and stacked above the base plate 1. Each second positioning hole 8 is aligned with the positioning part 3 and inserted. At this time, the fifth sewing part 55 is aligned with the fourth sewing part 44, and the fourth piece and the third piece can be sewn together.
[0069] The third substrate 301 is provided with a ninth wire guide groove 303, a tenth wire guide groove 304, and a first groove 305. The ninth wire guide groove 303 is located on the right side of the third substrate 301; the tenth wire guide groove 304 is located on the left side of the third substrate 301; and the first groove 305 is located to the left of the tenth wire guide groove 304. The third cover plate 302 is provided with an eleventh wire guide groove 306, a twelfth wire guide groove 307, a second groove 308, and a pressure strip. The eleventh wire groove 306 is located on the right side of the third cover plate 302; the twelfth wire groove 307 is located on the left side of the eleventh wire groove 306; the second groove 308 is located on the left side of the twelfth wire groove 307; the shape of the pressure strip matches the shape of the second groove 308 and is suitable for embedding in the second groove 308. In this embodiment, the pressure strip has an L-shaped structure, its vertical part is suitable for pressing down the sixth piece, and its horizontal part is suitable for restricting its overall displacement. In addition, it is not connected to the second groove 308. In other embodiments, one end of the pressure strip can be bonded to the second groove 308 with tape to improve the template integration.
[0070] The third substrate 301 and the third cover plate 302 rotate about the second rotation axis. When the third cover plate 302 rotates about the rotation axis and flips over to cover the third substrate 301, the eleventh wire groove 306 aligns with the ninth wire groove 303 to form the seventh stitching part 77, the twelfth wire groove 307 aligns with the tenth wire groove 304, and the second groove 308 aligns with the first groove 305.
[0071] The third substrate 301 is connected to the second substrate 201 around the third rotation axis, which is perpendicular to the first direction (i.e., in this embodiment, the third rotation axis is the axis along the front-back direction). When the third cover plate 302 covers the third substrate 301, the third cover plate 302 together with the third substrate 301 is flipped around the third rotation axis to cover the second cover plate 202 and the second substrate 201. At this time, the seventh sewing part 77 is aligned with the sixth sewing part 66, and then the combination line of the fifth piece and the fourth piece can be sewn.
[0072] The flap 400 is provided with a thirteenth wire passage groove 401 and a third groove 402. The thirteenth wire passage groove 401 is located on the right side of the flap 400, and the third groove 402 is located on the left side of the thirteenth wire passage groove 401.
[0073] The flap 400 and the third cover 302 are rotatably connected around the fourth rotation axis, which is parallel to the second rotation axis. When the flap 400 rotates around the rotation axis and flips over to cover the third cover 302, the thirteenth wire groove 401 is aligned with the twelfth wire groove 307 and the tenth wire groove 304 to form the eighth stitching part 88, and the third groove 402 is aligned with the second groove 308 and the first groove 305.
[0074] The specific sewing order for the front panel and the label is as follows:
[0075] 1. Place the base plate 1 on the sewing machine table. Fix the base plate 1 to the machine table via the base plate slot 12. After confirming that the fixing is complete and the base plate 1 is flat with the table, insert the first component 100 into the first slot 2 along the first direction, and insert the second component 200 into the second slot 7 in the opposite direction of the first direction. Flip open the first cover plate 102 in the first component 100 so that the first cover plate 102 is flipped along the first rotation axis until the first component 100 is in an open state; flip open the second cover plate 202 in the second component 200 so that it is flipped around the second rotation axis until the second cover plate 202 and the second base plate 201 are in an open state; flip open the third cover plate 302 in the second component 200 so that it is flipped around the second rotation axis until the third cover plate 302 and the third base plate 301 are in an open state.
[0076] 2. First, place the first piece of fabric in the first thread guide 103. Then, place the second, third, fourth, and fifth pieces of fabric into the first substrate 101, the base plate 1, the second substrate 201, and the third substrate 301 respectively. Flip the first cover plate 102 around the first rotation axis to cover the first substrate 101. At this time, the first thread guide 103 and the third thread guide 105 are aligned to form the second sewing part 22. The positioning hole 6 of the first cover plate is aligned with the positioning hole 5 of the first substrate to form the first positioning hole 4. The needle passes through the second sewing part 22 to sew the first piece of fabric onto the second piece of fabric. The sewing of the first piece of fabric and the second piece of fabric is completed.
[0077] 3. Flip the third cover plate 302 around the second rotation axis to cover the third base plate 301 to clamp the fifth piece. Remove the pressure strip, fold the sixth piece along its long side, insert the vertical part of the pressure strip into the folded sixth piece and press it against the crease, and embed the pressure strip into the second groove 308. Place the seventh piece (pocket fabric) on the third cover plate 302 and simultaneously cover the sixth piece (pocket flap). Then, flip the flap 400 around the fourth rotation axis to cover the third cover plate 302. At this time, the thirteenth thread groove 401, the twelfth thread groove 307, and the tenth thread groove 304 are aligned to form the eighth seam 88. The needle passes through the eighth seam 88 to sew the sixth piece onto the seventh piece (pocket fabric) and the fifth piece. At the same time, sew the seventh piece (pocket fabric) onto the fifth piece. Flip the flap 400 around the fourth rotation axis to move away from the third cover plate 302. Remove the pressure strip. The sixth piece is now sewn, and the pocket flap is now sewn.
[0078] 4. Flip the first component 100 around the bottom of the first slot 2 and stack it on the base plate 1. Insert the positioning part 3 into the first positioning hole 4. At this time, the second thread guide groove 104 and the fourth thread guide groove 106 are aligned to form the third sewing part 33. The third sewing part 33 is aligned with the first sewing part 11. The needle passes through the third sewing part 33 and the first sewing part 11 to sew the combination line of the second and third cut pieces. The combination line of the second and third cut pieces is now sewn. Flip the first component 100 around the bottom of the first slot 2 so that the first component 100 is folded back into the first slot 2. Flip the first cover plate 102 around the first rotation axis so that the first component 100 is in the open state. Remove the first component 100. The combination line of the second and third cut pieces is now sewn.
[0079] 5. Flip the second cover plate 202 around the second rotation axis to cover the second base plate 201 to clamp the fourth piece. At this time, the seventh thread groove 205 is aligned with the fifth thread groove 203 to form the fifth sewing part 55, and the eighth thread groove 206 is aligned with the sixth thread groove 204 to form the sixth sewing part 66. Meanwhile, the third cover plate 302 covers the third substrate 301, and the eleventh thread groove 306 is aligned with the ninth thread groove 303 to form the seventh stitching part 77. The third cover plate 302 and the third substrate 301, which are stacked together, are folded around the third rotation axis. At this time, the second substrate 201 is located at the bottom, the second cover plate 202 is stacked on the second substrate 201, the third cover plate 302 is stacked on the second cover plate 202, and the third substrate 301 is stacked on the third cover plate 302, forming the seventh stitching part 77 aligned with the sixth stitching part 66. The needle passes through the seventh stitching part 77 and the sixth stitching part 66 to sew the combination line of the fourth and fifth pieces. After the sewing is completed, the third substrate 301 and the third cover plate 302 are flipped back to their original positions around the third rotation axis, and the combination line of the fourth and fifth pieces is completed.
[0080] 6. After the second substrate 201 and the second cover plate 202 (at this time, the second cover plate 202 is stacked on the second substrate 201) in the second component 200 are flipped around the bottom of the second slot 7, the positioning part 3 is inserted into the second positioning hole 8 to form a fixation. The needle passes through the fifth sewing part 55 and the fourth sewing part 44 to sew the combination line of the fourth piece and the third piece. After the sewing is completed, the second substrate 201 and the second cover plate 202 are folded back to their original positions. The combination line of the fourth piece and the third piece is now sewn. At this time, the front piece of the garment is assembled.
[0081] 7. Open the third cover plate 302 and the second cover plate 202, take out the front piece of the garment, and the processing is complete.
[0082] 9. When any piece of the front panel of the garment changes, remove the corresponding component and replace it. For example, when the first piece changes, remove the first component 100 and replace it with the first component 100 corresponding to the first piece. Repeat steps 1-7 above to complete the splicing of the front panel.
[0083] The foregoing description of the specifications and embodiments is intended to explain the scope of protection of this utility model, but does not constitute a limitation on the scope of protection of this utility model. Modifications, equivalent substitutions, or other improvements to the embodiments of this utility model or a portion thereof that can be obtained by those skilled in the art through logical analysis, reasoning, or limited experimentation, based on the teachings of this utility model or the foregoing embodiments, should all be included within the scope of protection of this utility model.
Claims
1. A garment sewing template characterized in that it include: The base plate (1) is provided with a first stitching part (11), a first slot (2) and at least two positioning parts (3); The first component (100) is adapted to be inserted into the first slot (2) or stacked on top of the base plate (1); the first component (100) is provided with a second stitching part (22), a third stitching part (33) and a first positioning hole (4) corresponding to the positioning part (3); when the first component (100) is stacked on top of the base plate (1), the third stitching part (33) is aligned with the first stitching part (11) by aligning the corresponding positioning part (3) through each first positioning hole (4).
2. A garment construction template according to claim 1, wherein, The positioning part (3) is a protrusion suitable for insertion into the corresponding first positioning hole (4).
3. A garment sewing template as described in claim 1 or 2, characterized in that: The first component (100) is adapted to be inserted into the first slot (2) in a first direction; The first component (100) includes a first substrate (101) and a first cover plate (102) rotatably connected to each other about a first rotation axis extending in a first direction; The first substrate (101) is provided with a first wire passing groove (103), a second wire passing groove (104) and a first substrate positioning hole (5) corresponding to the positioning part (3); The first cover plate (102) is provided with a third wire passage groove (105), a fourth wire passage groove (106) and a first cover plate positioning hole (6) corresponding to the positioning part (3); When the first cover plate (102) is rotated to be stacked on the first substrate (101), the first cover plate positioning holes (6) are aligned with the first substrate positioning holes (5), so that the third wire groove (105) is aligned with the first wire groove (103) to form the second stitching part (22), and the fourth wire groove (106) is aligned with the second wire groove (104) to form the third stitching part (33). When the first component (100) is stacked on top of the base plate (1), the first cover plate (102) is stacked under the first substrate (101), and the positioning hole (5) of the first substrate is aligned with the positioning hole (6) of the first cover plate to form the first positioning hole (4).
4. A garment sewing template as described in claim 3, characterized in that: It also includes a second component (200); The base plate (1) is also provided with a second slot (7) and a fourth stitching part (44). The second component (200) is adapted to be inserted into the second slot (7) or stacked on top of the base plate (1); the second component (200) is provided with a fifth stitching part (55) and a second positioning hole (8) corresponding to the positioning part (3); when the second component (200) is stacked on top of the base plate (1), the fifth stitching part (55) is aligned with the fourth stitching part (44) by aligning the corresponding positioning part (3) through each second positioning hole (8).
5. A garment construction template according to claim 4, wherein, The opening of the second slot (7) is opposite to the opening of the first slot (2) along a first direction.
6. A garment sewing template as described in claim 5, characterized in that: The second component (200) includes a second substrate (201) and a second cover plate (202) rotatably connected to each other about a second rotation axis extending in a first direction; The second substrate (201) is provided with a fifth wire groove (203) and a second substrate positioning hole (9) corresponding to the positioning part (3); The second cover plate (202) is provided with a seventh wire groove (205) and a second cover plate positioning hole (10) corresponding to the positioning part (3); When the second cover plate (202) is rotated to be stacked on the second substrate (201), the positioning holes (10) of the second cover plate are aligned with the positioning holes (9) of the second substrate, so that the seventh wire groove (205) is aligned with the fifth wire groove (203) to form the fifth stitching part (55). When the second component (200) is stacked on top of the base plate (1), the second cover plate (202) is stacked under the second substrate (201), and the positioning hole (9) of the second substrate is aligned with the positioning hole (10) of the second cover plate to form the second positioning hole (8).
7. A garment construction template according to claim 6, wherein: The second component (200) also includes: The third substrate (301) is rotatably connected to the second substrate (201) about a third rotation axis, which is perpendicular to the first direction; The third cover plate (302) is rotatably connected to the third substrate (301) about the second rotation axis and is adapted to be stacked on the third cover plate (302); The second substrate (201) is also provided with a sixth wire passage groove (204), and the second cover plate (202) is also provided with an eighth wire passage groove (206). When the second cover plate (202) is stacked on the second substrate (201), the second cover plate positioning hole (10) is aligned with the second substrate positioning hole (9), so that the eighth wire passage groove (206) is aligned with the sixth wire passage groove (204). The third substrate (301) is provided with a ninth wire passage groove (303), and the third cover plate (302) is provided with an eleventh wire passage groove (306). When the third cover plate (302) is stacked on the third substrate (301), the eleventh wire groove (306) is aligned with the ninth wire groove (303). The third substrate (301) is adapted to drive the third cover plate (302) stacked thereon to rotate to the state where the third cover plate (302) is stacked on the second cover plate (202), so that the ninth wire groove (303) and the eleventh wire groove (306) are aligned with the eighth wire groove (206) and the sixth wire groove (204).
8. A garment sewing template as described in claim 7, characterized in that: The second component (200) also includes a flap (400) rotatably connected to the third cover plate (302) about a fourth rotation axis, the fourth rotation axis being parallel to the second rotation axis; The third substrate (301) is also provided with a tenth through groove (304) and a first groove (305); The third cover plate (302) is also provided with a twelfth wire groove (307) and a second groove (308); The flap (400) is provided with a thirteenth (401) wire groove and a third groove (402); When the third cover plate (302) is stacked on the third substrate (301), the flip plate (400) is adapted to rotate to be stacked on the third cover plate (302) so that the thirteenth wire groove (401) is aligned with the twelfth wire groove (307) and the tenth wire groove (304), and the third groove (402) is aligned with the second groove (308) and the first groove (305).