Partition assembly, bone-seeking module and round collar machine

By introducing a separator component and a boning module into the round neck sewing machine, and using a drive component and a tensioning rotation module to separate the round neck and the top, combined with correction detection, accurate positioning of the boning position of the round neck and the top is achieved, improving sewing efficiency and reducing labor costs.

CN117888295BActive Publication Date: 2026-02-17深圳速英科技有限公司
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Patent Information

Application Number
CN202410151716.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-02-02
Publication Date
2026-02-17
Estimated Expiration
2044-02-02

AI Technical Summary

Technical Problem

When sewing crew necks and tops with existing equipment, the crew neck is easily pulled by the top, resulting in inaccurate seam alignment of the top, reducing sewing efficiency and increasing labor costs.

Method used

Using a separator component and a bone-finding module, the separator is controlled by a drive unit to extend into the round neck limiting groove to separate the round neck and the top. Combined with a tensioning rotation module and a correction module, the relative position of the round neck and the top is ensured to be accurate. The bone position is quickly located using a dual-stroke cylinder and a bone position detection sensor.

Benefits of technology

It improves the efficiency and accuracy of sewing crew necks and tops, reduces manual intervention, and lowers labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a separating assembly, a bone searching module and a round collar machine. The separating assembly is used in a round collar machine, and the round collar machine comprises an operation table, wherein the operation table is formed with a round collar limiting groove used for sleeving a round collar. The separating assembly comprises a separating piece and a driving piece, and the separating piece is slidingly arranged on the operation table. The driving piece is configured to drive the separating piece to at least partially extend into the round collar limiting groove after searching for the round collar, so as to separate the round collar and a shirt sleeved on the separating piece. In this way, the bone searching detection sensor cannot detect the bone position of the round collar as the bone position of the shirt by controlling the separating piece to extend into the round collar limiting groove to separate the round collar and the shirt when the shirt is searched for, so that the accuracy of the shirt searching is ensured, the sewing efficiency of the round collar and the shirt is improved, and the labor cost is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of clothing sewing equipment, and more particularly to a separation assembly, a bone searching module and a round collar machine. BACKGROUND

[0002] Clothing includes a round collar and a top, and when the round collar is sewn to the top, the top and the round collar need to be searched for bones respectively to ensure the relative position of the bone position of the round collar and the bone position of the top. At present, related equipment is because the round collar and the clothing are sleeved on the same cloth guide roller, and after the round collar is searched for bones, the round collar is easily driven by the top when the top is searched for bones, so the top is usually searched for bones manually, thereby reducing the sewing efficiency of the round collar and the top and increasing the labor cost. SUMMARY

[0003] The present application provides a separation assembly, a bone searching module and a round collar machine.

[0004] The separation assembly of the present application is used in a round collar machine, and the round collar machine includes an operation table, and the operation table is formed with a round collar limiting groove for sleeving the round collar. The separation assembly includes a separation piece and a driving piece, and the separation piece is slidingly arranged on the operation table. The driving piece is configured to drive the separation piece to at least partially extend into the round collar limiting groove after the round collar is searched for bones, so as to separate the round collar and the top sleeved on the separation piece.

[0005] In this way, the round collar and the top are separated by controlling the separation piece to extend into the round collar limiting groove when the top is searched for bones, so that the bone position of the round collar is not detected as the bone position of the top by the bone searching detection sensor, thereby ensuring the accuracy of the top searching for bones, and finally controlling the relative position of the bone position of the round collar and the bone position of the top, thereby improving the sewing efficiency of the round collar and the top.

[0006] In some embodiments, the operation table includes an operation table top, a first limiting block and a second limiting block, the first limiting block is arranged on the operation table top, and the second limiting block is slidingly arranged on the operation table top, and the first limiting block and the second limiting block form the round collar limiting groove.

[0007] In this way, the first limiting block and the second limiting block are arranged on the operation table top of the operation table, and the first limiting block and the second limiting block can form the round collar limiting groove, so that the round collar is sleeved in the round collar limiting groove, and the round collar can be prevented from deviating during rotation. The second limiting block can be slidingly arranged on the operation table top, so that the position of the second limiting block on the operation table top can be adjusted, thereby adjusting the width of the round collar limiting groove to adapt to round collars of different sizes.

[0008] In some embodiments, the collar machine comprises a sewing machine, and when the distance between the collar and the upper garment is less than a preset number of stitches, the driving member drives the separating piece to exit the collar limiting groove, and then the sewing machine sews the collar and the upper garment to complete the preset number of stitches, thereby achieving thread cutting and thread removal.

[0009] In this way, when the distance between the collar and the upper garment is less than a preset number of stitches, the driving member controls the separating piece to exit the collar limiting groove, so that the sewing thread is removed from the collar and the upper garment during the process of the sewing machine sewing the preset number of stitches, and the thread cutting and thread removal of the collar and the upper garment are prepared.

[0010] The bone searching module of the embodiments of the present application comprises the separating assembly of any one of the above.

[0011] In some embodiments, the bone searching module comprises a bone position detection assembly and a driving assembly, the driving assembly is configured to drive the bone position detection assembly to move a first stroke to press against the collar to search for the bone position when the collar is sleeved in the collar limiting groove, and the driving assembly is configured to drive the bone position detection assembly to move a second stroke to press against the upper garment to search for the bone position when the upper garment is sleeved in the separating piece.

[0012] In this way, the bone position detection assembly included in the bone searching module is driven by the driving assembly to move a first stroke to press against the collar, so that the collar can be searched for the bone position, and the bone position detection assembly is driven by the driving assembly to move a second stroke to press against the upper garment, so that the upper garment can be searched for the bone position, thereby avoiding the interference of the bone position of the collar on the searching of the bone position of the upper garment.

[0013] In some embodiments, the bone searching module comprises a mounting frame and a third sliding rail, the driving assembly comprises a double-stroke cylinder, the third sliding rail is arranged on the mounting frame, the bone position detection assembly is slidingly arranged on the third sliding rail and is configured to slide along the guide of the third sliding rail, and the double-stroke cylinder is arranged on the mounting frame and is configured to drive the bone position detection assembly to move along the guide of the third sliding rail, and the double-stroke cylinder is configured to drive the bone position detection assembly to move a first stroke when searching for the bone position of the collar and to drive the bone position detection assembly to move a second stroke when searching for the bone position of the upper garment.

[0014] In this way, the bone position detection assembly is driven by the double-stroke cylinder to slide on the third sliding rail, so that the bone position of the collar and the upper garment can be quickly and conveniently searched for, thereby accurately controlling the relative position of the bone position of the collar and the bone position of the upper garment after sewing, and improving the sewing efficiency of the collar machine.

[0015] In some embodiments, the bone position detection assembly comprises a bone position detection sensor, two detection rollers, and two connecting rods, the two connecting rods are respectively connected to the two detection rollers and coupled to the bone position detection sensor, the two connecting rods are used to transfer the height difference between the two detection rollers to the bone position detection sensor, and the bone position detection sensor determines that the bone position of the collar or the upper garment is in place when the height difference between the two detection rollers is detected.

[0016] In this way, the bone position of the collar and the upper garment is determined by detecting the height difference between the two detection rollers through the bone position detection sensor, which can quickly determine the bone position of the collar and the upper garment and improve the efficiency of finding the bone position of the collar and the upper garment.

[0017] The collar machine of the embodiments of the present application comprises the separation assembly of any one of the above and the bone searching module of any one of the above.

[0018] In some embodiments, the collar machine comprises a tensioning and rotating module, the tensioning and rotating module is used to tension the collar and the upper garment sleeved on the tensioning and rotating module, the tensioning and rotating module is used to drive the collar to rotate in a first direction in the collar limiting groove when the collar is searched for the bone position, and the tensioning and rotating module is used to drive the upper garment to rotate in a second direction on the separation sheet when the upper garment is searched for the bone position, the first direction being opposite to the second direction.

[0019] In this way, when the collar is searched for the bone position, the collar can be controlled to rotate in a forward direction in the collar limiting groove, and when the upper garment is searched for the bone position, the upper garment can be controlled to rotate in a reverse direction on the separation sheet, so that the bone position of the collar is not moved when the upper garment is searched for the bone position, and the relative position of the bone positions of the collar and the upper garment can be ensured.

[0020] In some embodiments, the collar machine comprises a deviation correction module, the deviation correction module comprises an upper garment deviation correction detection sensor, and the upper garment deviation correction detection sensor is used to detect whether the upper garment deviates on the separation sheet.

[0021] In this way, by arranging the upper garment deviation correction detection sensor in the deviation correction module, the upper garment on the separation sheet can be detected to prevent the upper garment from deviating during rotation.

[0022] Additional aspects and advantages of the embodiments of the present application will be in part apparent and in part pointed out hereinafter in the description of the embodiments of the present application, which will be realized and attained by the practice of the embodiments of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0023] The above and / or additional aspects and advantages of the present application will become apparent and be readily appreciated from the description of the embodiments of the present application, which will be realized and attained by the practice of the embodiments of the present application, taken in conjunction with the accompanying drawings.

[0024] Figure 1 is a plan view of a round collar machine according to some embodiments of the present application;

[0025] Figure 2 is a plan view of a partition assembly according to some embodiments of the present application;

[0026] Figure 3 is a plan view of a partition assembly according to some embodiments of the present application;

[0027] Figure 4 is a plan view of a bone searching module according to some embodiments of the present application.

[0028] Reference Signs:

[0029] 100, round collar machine; 10, operation table; 11, operation table top; 111, round collar limiting groove; 12, first limiting block; 13, second limiting block; 14, first sliding rail; 15, first sliding block; 16, second sliding rail; 17, fixed block; 18, through hole; 20, partition assembly; 21, partition sheet; 22, driving member; 221, driving motor; 222, synchronous gear; 30, bone searching module; 31, driving assembly; 311, double stroke air cylinder; 32, bone position detecting assembly; 321, bone position detecting sensor; 322, detection roller; 323, connecting rod; 33, mounting rack; 34, third sliding rail; 40, tensioning and rotating module; 41, cloth guide roller; 50, deviation correcting module; 51, upper garment deviation correcting detecting sensor; 60, sewing machine. DETAILED DESCRIPTION

[0030] Embodiments of the present application are described below in detail with reference to the accompanying drawings, wherein the same or similar components are denoted by the same or similar reference numerals throughout the drawings. The embodiments described below are examples for explaining the present application, and are not intended to limit the embodiments of the present application.

[0031] In the description of the present application, it should be understood that the terms "thickness", "upper", "top", "bottom", "inner", "outer", and the like indicate the orientation or positional relationship shown in the drawings based on the orientation or positional relationship shown in the drawings, and are merely for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second" are for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include one or more features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly specified.

[0032] In the description of the present application, it should be noted that unless specifically stated and limited otherwise, the terms "mounting", "connected", "connection" should be understood broadly, in one example, it can be fixedly connected, or detachably connected, or integrally connected; it can be mechanically connected, or electrically connected, or can communicate with each other; it can be directly connected, or indirectly connected through an intermediate medium, or the internal communication of two elements or the interaction relationship between two elements.

[0033] In the embodiments of the present application, the first feature is "on" or "under" the second feature, which can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "over" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the first feature is higher in horizontal height than the second feature. The first feature "under", "below" and "under" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the first feature is lower in horizontal height than the second feature.

[0034] Please refer to Figure 1 and Figure 2 , the separation assembly 20 of the embodiment of the present application is used for a round collar machine 100, the round collar machine 100 includes an operation table 10, the operation table 10 is formed with a round collar limiting groove 111 for sleeving a round collar. The separation assembly 20 includes a separation sheet 21 and a driving member 22, the separation sheet 21 is slidingly arranged on the operation table 10; the driving member 22 is configured to drive the separation sheet 21 to at least partially extend into the round collar limiting groove 111 after the bone position of the round collar is found, so as to separate the round collar and a shirt sleeved on the separation sheet 21.

[0035] In this way, by controlling the separation sheet 21 to extend into the round collar limiting groove 111 to separate the round collar and the shirt when the bone position of the shirt is found, the bone position of the round collar is prevented from being detected as the bone position of the shirt by the bone position detection sensor, so as to ensure the accuracy of the bone position detection of the shirt, and finally control the relative position of the bone position of the round collar and the bone position of the shirt, thereby improving the sewing efficiency of the round collar and the shirt.

[0036] Among them, the round collar machine 100 is a device for sewing a round collar to the collar of a shirt, by providing an operation table 10 on the round collar machine 100, and sleeving the round collar and the shirt on the operation table 10 to rotate, so as to sew a round collar on the collar of a shirt.

[0037] Specifically, the collar machine 100 comprises an operation table 10, the collar and the shirt are sleeved on the operation table 10, and the collar is sewn on the shirt on the operation table 10. Wherein, the operation table 10 is formed with a collar limiting groove 111, the width of the collar limiting groove 111 is matched with the size of the collar, so that the collar can be sleeved in the collar limiting groove 111, and the collar limiting groove 111 can limit the deviation of the collar in the rotating condition.

[0038] The collar machine 100 further comprises a separation assembly 20, which is arranged on the operation table 10 and can be inserted into the collar limiting groove 111 before the collar is completely positioned and the shirt is positioned, so that the collar and the shirt are separated, thereby avoiding the interference of the collar position on the shirt positioning.

[0039] Wherein, the separation assembly 20 comprises a separation piece 21 and a driving member 22. The separation piece 21 is generally rectangular in shape and is matched with the length of the collar limiting groove 111 in size. The driving member 22 can be a motor or a pneumatic cylinder, which can provide power for the movement of the separation piece 21. The separation piece 21 can be slidably arranged on the operation table 10 and can be inserted into or extended out of the collar limiting groove 111 under the driving of the driving member 22.

[0040] For example, the operation table 10 comprises an operation table 11, a first limiting block 12 and a second limiting block 13. The operation table 10 can be provided with a first sliding rail 14, the separation piece 21 is fixedly connected with a first sliding block 15 and can be arranged on the first sliding rail 14 through the first sliding block 15, a second sliding rail 16 is formed on the first sliding block 15, the second sliding rail 16 can be a rack, the driving member 22 can comprise a driving motor 221 and a synchronous gear 222, and the driving motor 221 is connected with the second sliding rail 16 through the synchronous gear 222, and the driving motor 221 drives the first sliding block 15 to slide on the first sliding rail 14 by driving the synchronous gear 222 to rotate on the second sliding rail 16, so that the first sliding block 15 drives the separation piece 21 to slide on the first sliding rail 14, so that the separation piece 21 is inserted into or extended out of the collar and the shirt.

[0041] The driving member 22 can also drive the separation piece 21 to at least partially extend into the collar limiting groove 111 after the collar is completely positioned and the shirt is positioned, so as to separate the collar and the shirt sleeved on the collar limiting groove 111, avoid mistaking the collar position as the shirt position during positioning, and cause the shirt positioning failure.

[0042] Optionally, the collar machine 100 further comprises a tensioning and rotating module 40 for tensioning and rotating the collar and the shirt. The tensioning and rotating module 40 comprises two cloth guide rollers 41, which are arranged on the two sides of the operation table 10. The collar and the shirt are sleeved on the two cloth guide rollers 41 and can rotate with the two cloth guide rollers 41. By moving one of the cloth guide rollers 41, the collar and the shirt sleeved on the two cloth guide rollers 41 can be tensioned.

[0043] When the collar is being positioned, the two cloth guide rollers 41 can rotate along a first direction, so that the collar can rotate along the first direction in the collar limiting groove 111. After the collar is positioned, the shirt is sleeved on the cloth guide rollers 41, and the separating piece 21 can extend into the collar limiting groove 111 under the driving of the driving member 22, so as to separate the collar and the shirt. At this time, the two cloth guide rollers 41 can rotate along a second direction, so that the shirt can rotate along the second direction on the separating piece 21. It should be noted that the first direction and the second direction are opposite, for example, the first direction can be counterclockwise and the second direction can be clockwise. In this way, when the collar is positioned, the collar can rotate along the first direction in the collar limiting groove 111, and when the shirt is positioned, the shirt can rotate along the second direction on the separating piece 21, so that the position of the collar is not moved when the shirt is positioned, and the relative position of the collar and the shirt can be ensured.

[0044] Optionally, the collar machine 100 further comprises a deviation correcting module 50. The deviation correcting module 50 comprises a shirt deviation detecting sensor 51, which can be an optical sensor or an ultrasonic sensor. The detecting point of the shirt deviation detecting sensor 51 is located on the shirt in the collar limiting groove 111. When the separating piece 21 extends into the collar limiting groove 111 and the shirt is sleeved on the separating piece 21, the shirt deviation detecting sensor 51 can detect whether the shirt deviates on the separating piece 21 at any time.

[0045] When the shirt is being positioned, the position of the shirt on the separating piece 21 needs to be detected at any time by the shirt deviation detecting sensor 51 to prevent the shirt from deviating. When the shirt deviates, that is, the shirt deviation detecting sensor 51 cannot find the shirt at the detecting point, the deviation correcting module 50 can correct the deviation of the shirt to make the shirt at the detecting point of the shirt deviation detecting sensor. In this way, by arranging the shirt deviation detecting sensor 51 in the deviation correcting module 50, the shirt on the separating piece 21 can be detected to prevent the shirt from deviating during rotation.

[0046] Please refer to Figure 2 and Figure 3In some embodiments, the operating table 10 comprises an operating table top 11, a first limiting block 12 and a second limiting block 13. The first limiting block 12 is arranged on the operating table top 11, and the second limiting block 13 is slidably arranged on the operating table top 11. The first limiting block 12 and the second limiting block 13 form a round collar limiting groove 111.

[0047] In this way, by arranging the first limiting block 12 and the second limiting block 13 on the operating table top 11 of the operating table 10, and the first limiting block 12 and the second limiting block 13 can form the round collar limiting groove 111, so that the round collar is sleeved in the round collar limiting groove 111, which can prevent the round collar from deviating during rotation. By slidably arranging the second limiting block 13 on the operating table top 11, the position of the second limiting block 13 on the operating table top 11 can be adjusted, so as to adjust the width of the round collar limiting groove 111 to adapt to round collars of different sizes.

[0048] Specifically, the operating table 10 comprises an operating table top 11, a first limiting block 12 and a second limiting block 13. The first limiting block 12 and the second limiting block 13 are arranged opposite to each other, i.e. the first limiting block 12 is fixedly arranged on one side of the operating table top 11, and the second limiting block 13 is slidably arranged on the other side of the operating table top 11, so that the first limiting block 12 and the second limiting block 13 can form the round collar limiting groove 111. Since the round collar contains different sizes, in order to make the round collar limiting groove 111 adapt to round collars of different sizes, the width of the round collar limiting groove 111 can be adjusted by adjusting the distance between the first limiting block 12 and the second limiting block 13.

[0049] For example, a through hole 18 and a fixing block 17 are formed on the operating table top 11. The through hole 18 is in an oval shape and extends along the front-rear direction of the operating table 10. The fixing block 17 fixes the second limiting block 13 by penetrating the through hole 18 through a bolt, so that the second limiting block 13 can adjust the distance between the first limiting block 12 and the second limiting block 13 by adjusting the position on the through hole 18, so that the width of the round collar limiting groove 111 is adjusted to adapt to the size of the round collar.

[0050] Please refer again to Figure 1 and Figure 2 In some embodiments, the round collar machine 100 comprises a sewing machine 60. When the distance between the round collar and the coat is a preset number of stitches away from being sewn, the driving member 22 drives the separation piece 21 to exit the round collar limiting groove 111, and then the sewing machine 60 sews the round collar and the coat to complete the preset number of stitches, thereby realizing the line withdrawal.

[0051] Thus, by driving the separating piece 21 to exit from the collar limiting groove 111 before the sewing of the collar and the shirt is completed by a preset number of stitches, the sewing thread can be withdrawn from the collar and the shirt during the sewing of the preset number of stitches by the sewing machine 60, and the cutting of the sewing thread from the collar and the shirt is facilitated.

[0052] Specifically, the collar machine 100 further comprises the sewing machine 60, which is used to sew the collar and the shirt. When the sewing of the collar and the shirt is completed by a preset number of stitches (the preset number of stitches can be 30, 40, or 50, etc.), the separating piece 21 needs to be driven by the driving member 22 to exit from the collar limiting groove 111, and the collar and the shirt need to be pushed out by the deviation rectifying module 50. At this time, the collar and the shirt have been sewn completely, and the sewing thread needs to be withdrawn from the collar and the shirt. If the separating piece 21 continues to separate the collar and the shirt, the collar and the shirt will be blocked by the deviation rectifying module 50, so that the driving member 22 needs to drive the separating piece 21 to slide out of the collar limiting groove 111, and then the deviation rectifying module 50 can push the collar and the shirt out to the position, so that the sewing machine 60 can continue to sew the collar and the shirt by the preset number of stitches to complete the cutting of the sewing thread.

[0053] Please refer to Figure 4 In some embodiments, the bone searching module 30 comprises the bone position detecting assembly 32 and the driving assembly 31. The driving assembly 31 is used to drive the bone position detecting assembly 32 to move a first stroke to press the collar to search the bone position when the collar is sleeved in the collar limiting groove 111, and the driving assembly 31 is used to drive the bone position detecting assembly 32 to move a second stroke to press the shirt to search the bone position when the shirt is sleeved in the separating piece 21.

[0054] Thus, by driving the bone position detecting assembly 32 included in the bone searching module 30 to move a first stroke to press the collar by the driving assembly 31, the collar can be searched for the bone position, and by driving the bone position detecting assembly 32 to move a second stroke to press the shirt by the driving assembly 31, the shirt can be searched for the bone position, so that the collar is prevented from interfering with the searching of the bone position of the shirt.

[0055] Specifically, the collar machine 100 further comprises the bone searching module 30, which is used to search the bone position of the collar and the shirt respectively to ensure the relative position of the bone position of the collar and the bone position of the shirt. The bone searching module 30 comprises the bone position detecting assembly 32 and the driving assembly 31, and the driving assembly 31 can be a motor or an air cylinder, etc.

[0056] When the collar is subjected to the bone searching, the driving assembly 31 can drive the bone position detection assembly 32 to move a first stroke and press against the collar sleeved on the collar limiting groove 111. In the process that the tensioning and rotating module 40 rotates in the first rotating direction to drive the collar to rotate on the collar limiting groove 111, the bone position detection assembly 32 can detect the bone position of the collar, so that when the bone position of the collar is detected, the tensioning and rotating module 40 is controlled to stop rotating, so as to determine that the bone position of the collar is in place.

[0057] When the shirt is subjected to the bone searching, the driving assembly 31 can drive the bone position detection assembly 32 to move a second stroke and press against the shirt sleeved on the partition sheet 21. In the process that the tensioning and rotating module 40 rotates in the second rotating direction to drive the shirt to rotate on the partition sheet 21, the bone position detection assembly 32 can detect the bone position of the shirt, so that when the bone position of the shirt is detected, the tensioning and rotating module 40 is controlled to stop rotating, so as to determine that the bone position of the shirt is in place.

[0058] Please refer again to Figure 4 In some embodiments, the bone searching module 30 comprises a mounting frame 33 and a third sliding rail 34, the driving assembly 31 comprises a double-stroke cylinder 311, the third sliding rail 34 is arranged on the mounting frame 33, the bone position detection assembly 32 is slidingly arranged on the third sliding rail 34 and is configured to slide along the guide of the third sliding rail 34, and the double-stroke cylinder 311 is arranged on the mounting frame 33 and is configured to drive the bone position detection assembly 32 to move along the guide of the third sliding rail 34. In the case of searching the bone position of the collar, the double-stroke cylinder 311 drives the bone position detection assembly 32 to move a first stroke, and in the case of searching the bone position of the shirt, the double-stroke cylinder 311 drives the bone position detection assembly 32 to move a second stroke.

[0059] In this way, the bone position detection assembly 32 is driven by the double-stroke cylinder 311 to slide on the third sliding rail 34, so that the bone positions of the collar and the shirt can be quickly and conveniently found, the relative positions of the bone positions of the collar and the shirt after sewing can be accurately controlled, and the sewing efficiency of the collar machine 100 is improved.

[0060] Specifically, the bone searching module 30 further comprises a mounting frame 33 and a third sliding rail 34, the third sliding rail 34 and the driving assembly 31 are both mounted on different positions of the mounting frame 33, and the bone position detection assembly 32 is slidingly arranged on the third sliding rail 34 and is configured to slide along the guide of the third sliding rail 34 under the driving of the driving assembly 31.

[0061] The driving assembly 31 can be a double-stroke cylinder 311, and the bone position detection assembly 32 comprises a bone position detection sensor 321, two detection rollers 322 and two connecting rods 323. The double-stroke cylinder 311 is arranged on the mounting frame 33 and is used to drive the two detection rollers 322 to move along the third slide rail 34. The connecting rods 323 are connected to the two detection rollers 322 and are coupled to the bone position detection sensor 321. The connecting rods 323 can transmit the height difference between the bone position and the non-bone position of the collar or the shirt detected by the two detection rollers 322 to the bone position detection sensor 321.

[0062] Optionally, the bone searching module 30 can be automatically adjusted to adapt to collars and shirts of different thicknesses. The two detection rollers 322 are fixed on different connecting rods 323, and the bone position detection sensor 321 is also fixed on one of the connecting rods 323. When the two detection rollers 322 have a height difference, the two connecting rods 323 will move close to or away from each other. It should be noted that the rotation axes of the two connecting rods 323 are coaxial. Thus, the connecting rods 323 can trigger or not trigger the bone position detection sensor 321 on the connecting rods 323.

[0063] In the case of replacing collars and shirts of different thicknesses, whether thick or thin, since the two detection rollers 322 are pressed on the same reference surface, the height difference of the two detection rollers 322 will not change, and the relative positions of the two connecting rods 323 will only change slightly. (Since the rotation arms of the two connecting rods 323 are not the same length, the relative positions of the two connecting rods 323 cannot be completely unchanged.) The bone position detection sensor 321 will not be triggered to a certain extent. Therefore, the bone searching module 30 can adapt to collars and shirts of different thicknesses without the need to fine-tune the position of the bone position detection sensor 321 according to the thickness.

[0064] In the case of searching for the bone position of a collar, the double-stroke cylinder 311 drives the two detection rollers 322 to move a first stroke so that the two detection rollers 322 press against the rotating collar in the collar limiting groove 111. When the connecting rods 323 detect a height difference between the two detection rollers 322 and upload it to the bone position detection sensor 321 during the rotation of the collar, the bone position detection sensor 321 can determine that the bone position of the collar is in place.

[0065] In the case of searching for the bone position of a shirt, the double-stroke cylinder 311 drives the two detection rollers 322 to move a second stroke so that the two detection rollers 322 press against the rotating shirt on the partition piece 21. When the connecting rods 323 detect a height difference between the two detection rollers 322 and upload it to the bone position detection sensor 321 during the rotation of the shirt, the bone position detection sensor 321 can determine that the bone position of the shirt is in place.

[0066] Therefore, the collar and the shirt bone position can be quickly determined by detecting the height difference between the two detection rollers 322 through the bone position detection sensor 321, and the efficiency of finding the collar and the shirt bone position is improved.

[0067] In the description of the present specification, the description referring to the terms "certain embodiments", "in one example", "exemplarily" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiments or examples are included in at least one embodiment or example of the present application. In the present specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the present specification and the features of the different embodiments or examples without contradiction.

[0068] Any process or method descriptions in flow charts or described elsewhere herein can be understood as representing code modules, segments, or portions of code that include one or more executable instructions for performing specific logic functions or steps in the process. The various embodiments of the application can include additional or fewer steps or processes in addition to or other than those of the specific examples described herein, and the order of the steps can be changed from the order described.

[0069] Although the embodiments of the present application have been shown and described above, it is understood that the above-described embodiments are optional and should not be construed as limiting the present application, and those skilled in the art can make changes, modifications, replacements and variations to the above-described embodiments within the scope of the present application.

Claims

1. A round collar machine characterized by, The application relates to a separating assembly for a round collar machine, the round collar machine comprising an operation table, the operation table being formed with a round collar limiting groove for sleeving a round collar, the separating assembly comprising: a separating sheet, the separating sheet being slidingly arranged on the operation table; a driving member, the driving member being configured to drive the separating sheet to at least partially extend into the round collar limiting groove after the round collar is positioned, so as to separate the round collar and a shirt sleeved on the separating sheet. A bone positioning module, the bone positioning module comprising a bone position detection assembly and a driving assembly, the driving assembly being used to drive the bone position detection assembly to move a first stroke to press against the round collar to position the bone in the case where the round collar is sleeved in the round collar limiting groove; the driving assembly being used to drive the bone position detection assembly to move a second stroke and press against the shirt sleeved on the separating sheet to position the bone in the case where the shirt is sleeved on the separating sheet. The bone position detection assembly comprises a bone position detection sensor, two detection rollers and two connecting rods, the two connecting rods being connected with the two detection rollers and coupled with the bone position detection sensor, the two connecting rods being used to transmit a height difference of the two detection rollers to the bone position detection sensor, the bone position detection sensor determining that the bone position of the round collar or the shirt is in place in the case where the two detection rollers have a height difference. The round collar machine further comprises a tension rotating module, the tension rotating module being used to tension the round collar and the shirt sleeved on the tension rotating module, the tension rotating module being used to drive the round collar to rotate along a first rotating direction in the round collar limiting groove in the case where the round collar is positioned, the tension rotating module being used to drive the shirt to rotate along a second rotating direction on the separating sheet in the case where the shirt is positioned, the first rotating direction being opposite to the second rotating direction. The operation table comprises an operation table top, a first limiting block and a second limiting block, the first limiting block being arranged on the operation table top, the second limiting block being slidingly arranged on the operation table top, the first limiting block and the second limiting block forming the round collar limiting groove.

2. The collar machine according to claim 1, wherein The round collar machine comprises a sewing machine, the sewing machine being used to sew the round collar and the shirt to complete a preset number of stitches in the case where the round collar and the shirt are away from sewing completion by the preset number of stitches after the driving member drives the separating sheet to exit the round collar limiting groove, so as to realize thread cutting and thread withdrawing.

3. The collar machine according to claim 1, wherein The bone positioning module comprises a mounting frame and a third sliding rail, the driving assembly comprises a double-stroke air cylinder, the third sliding rail being arranged on the mounting frame, the bone position detection assembly being slidingly arranged on the third sliding rail and being configured to slide along a guide of the third sliding rail, the double-stroke air cylinder being arranged on the mounting frame and being used to drive the bone position detection assembly to move along the guide of the third sliding rail, the double-stroke air cylinder being configured to drive the bone position detection assembly to move a first stroke in the case where the round collar is positioned and to drive the bone position detection assembly to move a second stroke in the case where the shirt is positioned.

4. The collar machine according to claim 1, wherein ​ 5. The collar machine according to claim 1, wherein The round collar machine comprises a deviation rectifying module, which comprises a shirt deviation detection sensor for detecting whether the shirt deviates on the separating sheet.

Citation Information

Patent Citations

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