Clothing piece redundant position device
The redundant adjustment mechanism of the garment piece redundant device solves the problem of automatic adjustment of the redundant amount in the zipper sewing process, improves production efficiency and avoids sewing defects, and adapts to the redundant requirements of different garments.
Patent Information
- Application Number
- CN202410390917.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-02
- Publication Date
- 2025-10-14
AI Technical Summary
The existing zipper sewing process relies on manual operation, which requires high skills, has low production efficiency, and is difficult to achieve automatic adjustment of the redundancy, and cannot adapt to the redundancy requirements of different categories of clothing.
A redundant device for garment pieces is designed, which includes a redundant adjustment mechanism, including a redundant slide rail, a cloth pressing structure and a redundant drive. The redundant drive controls the cloth pressing structure to move along the redundant slide rail to achieve redundant adjustment between the pressing positions of the garment pieces.
It realizes the automatic adjustment of the redundant amount of garment pieces, improves the production efficiency of the zipper sewing process, avoids the arching and wrinkling of the zipper during sewing, and adapts to the redundant amount requirements of different categories of clothing.
Smart Images

Figure CN120776523A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of garment sewing, in particular to a garment piece overlength device. BACKGROUND
[0002] In the field of garment sewing, the process of sewing a zipper is one of the most complex and skill-demanding garment processes. Because the length of the zipper is not the same as that of the garment piece, the garment piece needs to be overlengthed during the manual sewing process, and different categories of garments have different requirements for the overlength. Moreover, the left and right sides of the zipper are sewn on the left and right garment pieces respectively, so the garment process has requirements for the overlength of the left and right garment pieces and the left and right zippers.
[0003] At present, the process of sewing a zipper is completed by manual work, which requires high skill and consumes a lot of time, resulting in low production efficiency. There are template machines on the market to complete the process of sewing a zipper, but different specifications of templates need to be matched to achieve various overlengths by using the template machine to sew a zipper, which cannot solve the problem of automatic adjustment of overlength. SUMMARY
[0004] The purpose of the present application is to provide a garment piece overlength device that can complete the overlength movement of the garment piece during the process of sewing a zipper and solve the problem of automatic adjustment of overlength.
[0005] To achieve the above purpose, the present application provides a garment piece overlength device, which comprises an overlength adjustment mechanism, the overlength adjustment mechanism comprises an overlength slide rail, a pressing structure and an overlength driving part, the overlength slide rail extends in the overlength adjustment direction of the garment piece, the pressing structure is slidingly assembled on the overlength slide rail, the pressing structure is used to press the garment piece, and the overlength driving part is connected with the pressing structure, and the overlength driving part is used to control the pressing structure to adjust the overlength between the pressing position of the garment piece by the pressing structure.
[0006] In some embodiments, the pressing structures and the overlength driving parts in the overlength adjustment mechanism are arranged in pairs, the pressing structures arranged in pairs are slidingly assembled on the same overlength slide rail, and the pressing structures are independently controlled by the corresponding overlength driving parts to adjust the overlength between the pressing positions of the garment piece by different pressing structures.
[0007] In some embodiments, each of the pressing structures in the overlength adjustment mechanism comprises a plurality of pressing parts, the pressing parts are used to press the garment piece, the plurality of pressing parts are connected through a variable-distance assembly, and the plurality of pressing parts are synchronously controlled by the same overlength driving part to adjust the overlength between the pressing positions of the garment piece by different pressing parts.
[0008] In some embodiments, the variable distance assembly is a scissor assembly, which includes a plurality of cross-hinged scissor plates, and the cloth pressing member is movably assembled at the central hinge position of the scissor plates.
[0009] In some embodiments, the redundant adjustment mechanism also includes a head end fixing structure, a manual adjustment structure and a tail end fixing structure. The manual adjustment structure is slidably assembled on the redundant slide rail, the head end fixing structure is fixedly assembled on the head end of the redundant slide rail, and the tail end fixing structure is fixedly assembled on the tail end of the redundant slide rail. The cloth pressing structure is provided between the manual adjustment structure and the head end fixing structure, and between the manual adjustment structure and the tail end fixing structure.
[0010] In some embodiments, the garment piece redundant position device further includes a translation adjustment mechanism, which is connected to the redundant position adjustment mechanism, and the translation adjustment mechanism is used to control the redundant position adjustment mechanism to adjust the translation position of the redundant position adjustment mechanism.
[0011] In some embodiments, the translation adjustment mechanism includes a translation rail and a translation slider, the translation slider is slidably mounted on the translation rail, the translation slider is connected to the redundant position adjustment mechanism, and the translation slider is used to control the redundant position adjustment mechanism to move along the translation rail.
[0012] In some embodiments, the redundant garment piece device further comprises a lifting adjustment mechanism, which is connected to the translation adjustment mechanism and is used to control the translation adjustment mechanism to adjust the lifting position of the redundant position adjustment mechanism.
[0013] In some embodiments, the lifting adjustment mechanism includes a lifting slide rail and a lifting drive member, the translation adjustment mechanism is slidably mounted on the lifting slide rail, the lifting drive member is connected to the translation adjustment mechanism, and the lifting drive member is used to control the translation adjustment mechanism to move along the lifting slide rail.
[0014] In some embodiments, the extension direction of the translation slide rail is perpendicular to the extension direction of the redundant slide rail, and the extension line of the translation slide rail intersects vertically with the extension line of the redundant slide rail in a horizontal plane; the extension direction of the lifting slide rail is perpendicular to the extension direction of the translation slide rail and the extension direction of the redundant slide rail, and the extension line of the lifting slide rail is perpendicular to the horizontal plane where the extension line of the translation slide rail intersects vertically with the extension line of the redundant slide rail.
[0015] Compared with the above-mentioned background technology, the redundant device for garment pieces provided in the present application mainly includes a redundant adjustment mechanism, which includes a redundant slide rail, a cloth pressing structure and a redundant driving member. The redundant slide rail extends in the redundant adjustment direction of the garment pieces, and the cloth pressing structure is slidably assembled on the redundant slide rail. The cloth pressing structure is used to press the garment pieces, and the redundant driving member is connected to the cloth pressing structure. The redundant driving member is used to control the cloth pressing structure to adjust the redundancy amount between the pressing positions of the garment pieces by the cloth pressing structure.
[0016] During use, the redundant garment piece positioning device can be used in combination with a zipper clamping device, etc. The zipper clamping device clamps and moves the zipper, and the zipper is aligned with the garment piece by moving the zipper, and the redundant garment piece positioning device realizes the redundant movement of the garment piece. Because the purpose of this application is only to provide a redundant garment piece positioning device, other devices used in combination with the redundant garment piece positioning device will not be further described. Only the redundant garment piece positioning device is described below. The necessity of the redundant amount is explained as follows: because the materials of the zipper and the garment piece are different, the thickness, softness and hardness of the upper and lower layers of the zipper and the garment piece will differ. If a certain amount of redundant amount is not prepared, the zipper will be arched and wrinkled when it is sewn on the garment piece. Based on this, the redundant position device for garment pieces presses the garment pieces through the cloth pressing structure during the zipper sewing process, and controls the cloth pressing structure to move along the redundant slide rail through the redundant driving component, which is equivalent to controlling the movement of the pressing position of the garment pieces. In this way, under the premise that the pressing state of the garment pieces by the cloth pressing structure does not change, the actual spacing between the pressing positions of the garment pieces becomes smaller, but the length of the garment pieces between the pressing positions of the garment pieces remains unchanged, which is equivalent to increasing the length of the garment pieces within a fixed spacing, thereby realizing the adjustment of the redundant amount between the pressing positions of the garment pieces by the cloth pressing structure. In this way, the garment pieces with the prepared redundant amount can be free of arching and wrinkling as a whole after the zipper is sewn.
[0017] In combination with the above structure and process description, it can be seen that the redundant garment piece device has at least the following beneficial effects: the redundant garment piece device can complete the redundant movement of the garment pieces during the zipper sewing process, solving the problem of automatic adjustment of the redundant amount. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without any creative work.
[0019] Figure 1 A schematic diagram of the structure of a redundant garment piece device provided in an embodiment of the present application;
[0020] Figure 2 A schematic diagram of the structure of the redundancy adjustment mechanism provided in an embodiment of the present application.
[0021] in:
[0022] Redundant position adjustment mechanism 1, redundant position slide rail 11, cloth pressing structure 12, cloth pressing member 121, calibration member 122, redundant position drive member 13, manual adjustment structure 14, manual cloth pressing member 141, scissor assembly 15, head end fixing structure 16, head end fixing cloth pressing member 161, tail end fixing structure 17, tail end fixing cloth pressing member 171,
[0023] Translation adjustment mechanism 2, translation rail 21, translation slider 22,
[0024] Lifting adjustment mechanism 3, lifting slide rail 31, lifting drive member 32. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0026] In order to enable those skilled in the art to better understand the present application, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0027] In response to the deficiencies in the prior art described above, the present application provides a redundant garment piece device that can complete the redundant movement of garment pieces during the zipper sewing process, specifically before sewing the zipper, thereby solving the problem of automatic adjustment of the redundant amount.
[0028] Please refer to Figure 1 and Figure 2 ,in, Figure 1 This is a schematic diagram of the structure of the redundant garment piece device provided in the embodiment of the present application. Figure 2 A schematic diagram of the structure of the redundancy adjustment mechanism provided in an embodiment of the present application.
[0029] In a first specific embodiment, the redundant device for garment pieces provided by the embodiment of the present application mainly includes a redundant adjustment mechanism 1, which includes a redundant slide rail 11, a cloth pressing structure 12 and a redundant drive 13. The redundant slide rail 11 extends in the redundant adjustment direction of the garment pieces, and the cloth pressing structure 12 is slidably assembled on the redundant slide rail 11. The cloth pressing structure 12 is used to press the garment pieces. The redundant drive 13 is connected to the cloth pressing structure 12, and the redundant drive 13 is used to control the cloth pressing structure 12 to adjust the redundancy amount between the pressing positions of the garment pieces by the cloth pressing structure 12.
[0030] During use, the redundant garment piece positioning device can be used in combination with a zipper clamping device, etc. The zipper clamping device clamps and moves the zipper, and the zipper is aligned with the garment piece by moving the zipper, and the redundant garment piece positioning device realizes the redundant movement of the garment piece. Because the purpose of this application is only to provide a redundant garment piece positioning device, other devices used in combination with the redundant garment piece positioning device will not be further described. Only the redundant garment piece positioning device is described below. The necessity of the redundant amount is explained as follows: because the materials of the zipper and the garment piece are different, the thickness, softness and hardness of the upper and lower layers of the zipper and the garment piece will differ. If a certain amount of redundant amount is not prepared, the zipper will be arched and wrinkled when it is sewn on the garment piece. Based on this, the redundant position device for garment pieces presses the garment pieces through the cloth pressing structure 12 during the zipper sewing process, and controls the cloth pressing structure 12 to move along the redundant slide rail 11 through the redundant driving component 13, which is equivalent to controlling the movement of the pressing position of the garment pieces. In this way, under the premise that the pressing state of the garment pieces by the cloth pressing structure 12 does not change, the actual spacing of the pressing positions of the garment pieces becomes smaller, but the length of the garment pieces between the pressing positions of the garment pieces remains unchanged, which is equivalent to increasing the length of the garment pieces within a fixed spacing, thereby realizing the adjustment of the redundant amount between the pressing positions of the garment pieces by the cloth pressing structure 12. In this way, the garment pieces with the prepared redundant amount can be free of arching and wrinkling as a whole after the zipper is sewn.
[0031] In combination with the above structure and process description, it can be seen that the redundant garment piece device has at least the following beneficial effects: the redundant garment piece device can complete the redundant movement of the garment pieces during the zipper sewing process, solving the problem of automatic adjustment of the redundant amount.
[0032] Please continue to refer to Figure 1 In some embodiments, the cloth pressing structure 12 and the redundant driving member 13 in the redundant adjustment mechanism 1 are arranged in pairs, and the paired cloth pressing structures 12 are slidably assembled on the same redundant slide rail 11. The cloth pressing structures 12 are independently controlled by the corresponding redundant driving member 13 to achieve the adjustment of the redundant amount between the pressing positions of the garment pieces by different cloth pressing structures 12.
[0033] In this embodiment, it is understood that at least two cloth-pressing structures 12 in the redundant adjustment mechanism 1 are independently controlled by corresponding redundant drivers 13. The movement of these two cloth-pressing structures 12 can be asynchronous, but synchronization can also be achieved by controlling the redundant drivers 13. When the two cloth-pressing structures 12 move asynchronously, the spacing between them changes. Because redundant movement of the garment parts is involved, the spacing between the two cloth-pressing structures 12 generally decreases. With the position where the first cloth-pressing structure 12 presses the garment parts as the first position and the position where the second cloth-pressing structure 12 presses the garment parts as the second position, the spacing between the first and second positions decreases. Because the pressing state of the cloth-pressing structures 12 on the garment parts remains unchanged, the length of the garment parts between the first and second positions remains unchanged, effectively increasing the length of the garment parts within a fixed spacing. This allows for adjustment of the amount of redundancy between the positions where the different cloth-pressing structures 12 press the garment parts. This allows the garment parts, after the zipper is sewn with the prepared redundancy, to be free of overall arching and wrinkling. The redundancy amount can be adjusted in a non-uniform manner.
[0034] Please continue to refer to Figure 2 In some embodiments, each cloth pressing structure 12 in the redundant adjustment mechanism 1 includes a plurality of cloth pressing members 121, which are used to press the garment pieces. The plurality of cloth pressing members 121 are connected through a variable distance assembly, and the plurality of cloth pressing members 121 are synchronously controlled by the same redundant driving member 13 to achieve the adjustment of the redundancy between the pressing positions of the garment pieces by different cloth pressing members 121.
[0035] In this embodiment, it is understood that each cloth-pressing structure 12 of the redundant adjustment mechanism 1 comprises at least two cloth-pressing members 121. These two cloth-pressing members 121 are synchronously controlled by the same redundant drive member 13 under the action of a variable pitch assembly. When the two cloth-pressing members 121 move synchronously, the spacing between them changes under the action of the variable pitch assembly. Because redundant movement of the garment parts is involved, the spacing between the two cloth-pressing members 121 generally decreases. With the first cloth-pressing member 121 pressing the garment parts in the first position and the second cloth-pressing member 121 pressing the garment parts in the second position, the spacing between the first and second positions decreases. Because the pressing state of the cloth-pressing members 121 on the garment parts remains unchanged, the garment parts length between the first and second positions remains unchanged, effectively increasing the garment parts length within a fixed spacing. This allows for adjustment of the redundant spacing between the positions where the different cloth-pressing members 121 press the garment parts. This allows the garment parts, after the zipper is sewn with the prepared redundant spacing, to be free of overall arching and wrinkling.
[0036] On this basis, taking three pressing cloth pieces 121 as an example, there are two intervals between every two of the three pressing cloth pieces 121, and the three pressing cloth pieces 121 are synchronously controlled by the same redundant position driving piece 13 under the action of the interval changing assembly. When the three pressing cloth pieces 121 move in a synchronous manner, the intervals of the three pressing cloth pieces 121 change under the action of the interval changing assembly, and the changes of the two intervals are the same. This adjustment mode of the redundant position is uniform redundant position.
[0037] In some cases, a calibration piece 122 is arranged in the redundant position adjustment mechanism 1, and the positional relationship between the calibration position in the redundant position adjustment mechanism 1 and the positioning feature on the cloth piece is determined by using the calibration piece 122.
[0038] For example, the calibration piece 122 can be a linear laser, and some pressing cloth pieces 121 in the redundant position adjustment mechanism 1 are selected as calibration positions, and the linear laser is installed on the pressing cloth piece 121 serving as the calibration position. In use, because the linear laser can emit linear laser, by controlling the movement of the pressing cloth piece 121 and aligning the linear laser with the positioning feature on the cloth piece, the alignment between the calibration position in the redundant position adjustment mechanism 1 and the positioning feature on the cloth piece is achieved, so as to facilitate the subsequent adjustment of the segmented redundant position. Regarding the positioning feature of the cloth piece, it can be the position of the collar, pocket, hem, splicing, etc.
[0039] Please continue to refer to Figure 2 In some embodiments, the interval changing assembly is a scissor assembly 15, and the scissor assembly 15 includes multiple groups of cross-hinged scissor plates, and the pressing cloth piece 121 is movably assembled at the center hinge position of the scissor plate.
[0040] In this embodiment, for each group of scissor plates, a first monomer and a second monomer are included, and the center positions of the two monomers are hinged to form a center hinge position. For multiple groups of scissor plates, the first monomer of the scissor plate of the target group is cross-hinged forward with the second monomer of the scissor plate of the previous group to form a lower edge hinge position, and the second monomer of the scissor plate of the target group is cross-hinged forward with the first monomer of the scissor plate of the previous group to form an upper edge hinge position. On this basis, the multiple groups of scissor plates are repeatedly crossed, that is, the first monomer of the scissor plate of the target group is cross-hinged backward with the second monomer of the scissor plate of the next group to form an upper edge hinge position, and the second monomer of the scissor plate of the target group is cross-hinged backward with the first monomer of the scissor plate of the next group to form a lower edge hinge position.
[0041] It should be noted that, because the scissor assembly 15 has the function of adjusting the interval, the intervals of the multiple pressing cloth pieces 121 connected by the scissor assembly 15 can be synchronously adjusted. In some cases, taking the example that the multiple pressing cloth pieces 121 are equidistantly distributed on the scissor assembly 15, the intervals of the multiple pressing cloth pieces 121 connected by the scissor assembly 15 can change uniformly, that is, the changes of each interval are the same.
[0042] In a specific embodiment, the cloth pressing member 121 is divided into a mobile calibration type cloth pressing member 121 and a driven type cloth pressing member 121. The mobile calibration type cloth pressing member 121 is used as a calibration position. A calibration member 122, i.e., a single-digit laser, is installed on the mobile calibration type cloth pressing member 121, and the movement of the mobile calibration type cloth pressing member 121 is controlled by the redundant drive member 13. The calibration member 122 is not installed on the driven type cloth pressing member 121, and the driven type cloth pressing member 121 is not directly connected to the redundant drive member 13. The driven type cloth pressing member 121 is connected to the mobile calibration type cloth pressing member 121 through a variable distance component, i.e., a scissors component 15. In this way, segmented redundancy can be achieved through different mobile calibration type cloth pressing members 121, and uniform redundancy can be achieved through the driven type cloth pressing members 121 between different mobile calibration type cloth pressing members 121. Therefore, the redundancy adjustment mechanism 1 achieves segmented uniform redundancy.
[0043] Please continue to refer to Figure 2 In some embodiments, the redundant adjustment mechanism 1 also includes a manual adjustment structure 14, which is slidably assembled on the redundant slide rail 11. Similar to the mobile calibration type cloth pressing piece 121, the manual adjustment structure 14 includes a manual cloth pressing piece 141 equipped with a calibration piece 122, i.e., a one-word laser. Different from the mobile calibration type cloth pressing piece 121, the manual cloth pressing piece 141 of the manual adjustment structure 14 is a manual calibration type manual cloth pressing piece 141, which is manually controlled to achieve alignment with the feature points of the garment piece.
[0044] In this embodiment, it is understood that there are two different structures in the redundant adjustment mechanism 1 for pressing the garment parts and being movable and adjustable, namely, a cloth pressing structure 12 and a manual adjustment structure 14. With respect to the cloth pressing structure 12, the cloth pressing member 121 in the cloth pressing structure 12 is controlled by a redundant driving member 13, which controls the movement of the cloth pressing member 121 of the cloth pressing structure 12 to thereby achieve redundant adjustment of the garment parts. With respect to the manual adjustment structure 14, the manual cloth pressing member 141 of the manual adjustment structure 14 achieves feature point alignment after manual adjustment. In some cases, the manual cloth pressing member 141 of the manual adjustment structure 14 is connected to the cloth pressing member 121 together with the cloth pressing member 121 through a variable distance assembly, i.e., a scissors assembly 15.
[0045] As an option, Figure 2 For example, it can be seen that five calibration members 122 are provided in the redundant position adjustment mechanism 1 , and the calibration members 122 are used to determine the positional relationship between the five calibration positions in the redundant position adjustment mechanism 1 and the positioning features on the garment pieces.
[0046] In some embodiments, the redundant adjustment mechanism 1 also includes a head end fixing structure 16 and a tail end fixing structure 17. The head end fixing structure 16 is fixedly assembled at the head end of the redundant slide rail 11, and the tail end fixing structure 17 is fixedly assembled at the tail end of the redundant slide rail 11. There is a cloth pressing structure 12 between the manual adjustment structure 14 and the head end fixing structure 16, and between the manual adjustment structure 14 and the tail end fixing structure 17. Similar to the mobile calibration type cloth pressing piece 121, the head end fixed structure 16 includes a head end fixed cloth pressing piece 161 equipped with a calibration piece 122, i.e., a one-word laser, and the tail end fixed structure 17 includes a tail end fixed cloth pressing piece 171 equipped with a calibration piece 122, i.e., a one-word laser. Different from the mobile calibration type cloth pressing piece 121, the head end fixed cloth pressing piece 161 of the head end fixed structure 16 serves as a fixed calibration type head end fixed cloth pressing piece 161, and the tail end fixed cloth pressing piece 171 of the tail end fixed structure 17 serves as a fixed calibration type tail end fixed cloth pressing piece 171, which are aligned with the characteristic points of the garment pieces.
[0047] In this embodiment, the redundant slide 11 has a head-end fixing structure 16 at its front end and a tail-end fixing structure 17 at its rear end. The middle section of the redundant slide 11 features two cloth-pressing structures 12 and a manual adjustment structure 14 located between the two cloth-pressing structures 12. Five positioning points are used to achieve a positional relationship with the positioning features on the garment piece. During use, the garment piece is placed flat on the table, with the center of the piece aligned as closely as possible with the center of the redundant adjustment mechanism 1. Once positioned, the lasers at the front and rear ends are aligned with the front and rear ends of the garment piece. The remaining three positioning points are then moved to align with the features on the garment piece. A manual cloth-pressing member 141 located between the three positioning points can be manually adjusted. Once the positions are determined, segmented redundancy can be implemented, with the space between each positioning point considered a uniform redundancy segment. Depending on process requirements, the amount of redundancy may vary across different areas of the same garment piece. For example, a thicker area with pockets may require less redundancy than other areas.
[0048] It should be noted that there are many ways to implement the redundant drive element 13, including but not limited to coordinated movement methods such as motor screws, motor gears, and motor synchronous belts, which should all fall within the scope of the description of this embodiment.
[0049] Please continue to refer to Figure 2 As an option, the redundant driving member 13 adopts a screw motor, and a moving block is installed on the output shaft of the screw motor, and the moving block is connected to the cloth pressing member 121. When in use, the screw motor controls the movement of the moving block, and the moving block drives the cloth pressing member 121 to move, thereby realizing the screw motor controlling the movement of the cloth pressing member 121.
[0050] In some cases, the cloth pressing member 121 is divided into a moving calibration type cloth pressing member 121 and a driven type cloth pressing member 121. The moving block is connected to the moving calibration type cloth pressing member 121. The moving calibration type cloth pressing member 121 moves under the control of the screw motor, and the driven type cloth pressing member 121 moves under the drive of the moving calibration type cloth pressing member 121 and the variable distance assembly, namely the scissors assembly 15.
[0051] like Figure 2 As shown, there are two screw motors, which are opposite to each other and located on the same side of the redundant slide rail 11 . The two screw motors control two movable calibrated cloth pressing parts 121 .
[0052] Please continue to refer to Figure 1 In some embodiments, the garment piece redundant device further includes a translation adjustment mechanism 2.
[0053] In this embodiment, the translation adjustment mechanism 2 is connected to the redundancy adjustment mechanism 1 , and the translation adjustment mechanism 2 is used to control the redundancy adjustment mechanism 1 to adjust the translation position of the redundancy adjustment mechanism 1 .
[0054] Optionally, the translation adjustment mechanism 2 includes a translation rail 21 and a translation slider 22. The translation slider 22 is slidably mounted on the translation rail 21. The translation slider 22 is connected to the redundant position adjustment mechanism 1. The translation slider 22 is used to control the movement of the redundant position adjustment mechanism 1 along the translation rail 21.
[0055] The translation slider 22 may be a pneumatic slider.
[0056] Please continue to refer to Figure 1 In some embodiments, the garment piece redundant device further includes a lifting and adjusting mechanism 3.
[0057] In this embodiment, the lifting adjustment mechanism 3 is connected to the translation adjustment mechanism 2 , and the lifting adjustment mechanism 3 is used to control the translation adjustment mechanism 2 to adjust the lifting position of the redundant position adjustment mechanism 1 .
[0058] As an option, the lifting adjustment mechanism 3 includes a lifting slide rail 31 and a lifting drive 32. The translation adjustment mechanism 2 is slidably mounted on the lifting slide rail 31. The lifting drive 32 is connected to the translation adjustment mechanism 2. The lifting drive 32 is used to control the translation adjustment mechanism 2 to move along the lifting slide rail 31.
[0059] The lifting drive member 32 may be a lifting cylinder.
[0060] In a specific embodiment, the extension direction of the translation rail 21 is perpendicular to the extension direction of the redundant slide rail 11, and the extension line of the translation rail 21 intersects the extension line of the redundant slide rail 11 vertically in the horizontal plane; the extension direction of the lifting rail 31 is perpendicular to the extension direction of the translation rail 21 and the extension direction of the redundant slide rail 11, and the extension line of the lifting rail 31 is perpendicular to the horizontal plane where the extension line of the translation rail 21 intersects the extension line of the redundant slide rail 11 vertically.
[0061] In this embodiment, the movement direction generated by the redundant adjustment mechanism 1 is the left-right direction, the movement direction generated by the translation adjustment mechanism 2 is the front-back direction, and the movement direction generated by the lifting adjustment mechanism 3 is the up-down direction.
[0062] In the processing before sewing the garment pieces, the garment pieces are pressed on the frame by the redundant adjustment mechanism 1. The movement of the translation adjustment mechanism 2 and the lifting adjustment mechanism 3 is used to control the movement of the redundant adjustment mechanism 1, so that the compressed and fixed garment pieces are moved to the bottom of the zipper. The redundant movement function is realized by the cloth pressing structure 12 in the redundant adjustment mechanism 1. The controller specifies the redundant size, i.e., the redundant amount, of each part of the garment piece according to the process parameters of the garment piece. The redundant driving member 13 controls the cloth pressing structure 12 to move to the corresponding position. The cloth pressing structure 12 will drive the garment piece to move under the premise of pressing the garment piece, thereby completing the redundant movement of the garment piece, thereby completing the processing before sewing the garment piece.
[0063] It should be noted that many of the components mentioned in this application are universal standard parts or components known to those skilled in the art, and their structures and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods.
[0064] It should be noted that, in this specification, relational terms such as first and second are merely used to distinguish one entity from other entities, but do not necessarily require or imply any actual relationship or order between these entities.
[0065] The above is a detailed introduction to the redundant garment piece device provided by the present application. This article uses specific examples to illustrate the principles and implementation methods of the present application. The description of the above examples is only intended to help understand the method and core concept of the present application. It should be noted that for ordinary technicians in this technical field, without departing from the principles of the present application, several improvements and modifications can be made to the present application, and these improvements and modifications also fall within the scope of protection of the claims of the present application.
Claims
1. A redundant garment piece device, characterized in that: The redundant device for positioning the garment pieces includes a redundant adjustment mechanism, which includes a redundant slide rail, a cloth pressing structure and a redundant drive component. The redundant slide rail extends in the redundant adjustment direction of the garment pieces, and the cloth pressing structure is slidably assembled on the redundant slide rail. The cloth pressing structure is used to press the garment pieces, and the redundant drive component is connected to the cloth pressing structure. The redundant drive component is used to control the cloth pressing structure to adjust the redundancy amount between the positions where the cloth pressing structure presses the garment pieces.
2. The redundant garment piece device according to claim 1, characterized in that: The cloth pressing structure and redundant driving member in the redundant adjustment mechanism are arranged in pairs, and the paired cloth pressing structures are slidably assembled on the same redundant slide rail. The cloth pressing structures are independently controlled by the corresponding redundant driving members to achieve adjustment of the redundant amount between the pressing positions of the garment pieces by different cloth pressing structures.
3. The redundant garment piece device according to claim 1, characterized in that: Each of the cloth-pressing structures in the redundant adjustment mechanism includes a plurality of cloth-pressing members, which are used to press the garment pieces. The plurality of cloth-pressing members are connected via a variable distance assembly, and the plurality of cloth-pressing members are synchronously controlled by the same redundant driving member to achieve adjustment of the redundancy between the pressing positions of the garment pieces by different cloth-pressing members.
4. The redundant garment piece device according to claim 3, characterized in that: The variable distance assembly is a scissor assembly, which includes a plurality of groups of cross-hinged scissor plates, and the cloth pressing member is movably assembled on the central hinge position of the scissor plates.
5. The redundant garment part device according to claim 1, characterized in that: The redundant adjustment mechanism also includes a head end fixing structure, a manual adjustment structure and a tail end fixing structure. The manual adjustment structure is slidably assembled on the redundant slide rail, the head end fixing structure is fixedly assembled on the head end of the redundant slide rail, and the tail end fixing structure is fixedly assembled on the tail end of the redundant slide rail. The cloth pressing structure is provided between the manual adjustment structure and the head end fixing structure, and between the manual adjustment structure and the tail end fixing structure.
6. The redundant garment part device according to any one of claims 1 to 5, characterized in that: The redundant position device for garment parts further comprises a translation adjustment mechanism, which is connected to the redundant position adjustment mechanism and is used to control the redundant position adjustment mechanism to adjust the translation position of the redundant position adjustment mechanism.
7. The redundant garment piece device according to claim 6, characterized in that: The translation adjustment mechanism includes a translation rail and a translation slider. The translation slider is slidably mounted on the translation rail. The translation slider is connected to the redundant position adjustment mechanism. The translation slider is used to control the redundant position adjustment mechanism to move along the translation rail.
8. The redundant garment piece device according to claim 6, characterized in that: The redundant position device for garment parts further comprises a lifting adjustment mechanism, which is connected to the translation adjustment mechanism and is used to control the translation adjustment mechanism to adjust the lifting position of the redundant position adjustment mechanism.
9. The redundant garment piece device according to claim 8, characterized in that: The lifting adjustment mechanism includes a lifting slide rail and a lifting drive member. The translation adjustment mechanism is slidably mounted on the lifting slide rail. The lifting drive member is connected to the translation adjustment mechanism. The lifting drive member is used to control the translation adjustment mechanism to move along the lifting slide rail.
10. The redundant garment piece device according to claim 9, characterized in that: The extension direction of the translation slide rail is perpendicular to the extension direction of the redundant slide rail, and the extension line of the translation slide rail intersects perpendicularly with the extension line of the redundant slide rail in a horizontal plane; the extension direction of the lifting slide rail is perpendicular to the extension direction of the translation slide rail and the extension direction of the redundant slide rail, and the extension line of the lifting slide rail is perpendicular to the horizontal plane where the extension line of the translation slide rail intersects perpendicularly with the extension line of the redundant slide rail.