A garment diversification neckline positioning cutting device

CN118621562BActive Publication Date: 2026-09-11NINGBO JIANA CLOTHING CO LTD
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Patent Information

Application Number
CN202410762096.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-13
Publication Date
2026-09-11
Estimated Expiration
2044-06-13

AI Technical Summary

Technical Problem

[0003]采用负压吸附薄膜对布料的定位方式,当经过一次裁切后,薄膜就会切开,使得薄膜负压状态被破坏,在继续裁切布料,布料容易发生晃动、偏位,无法保证裁切精度,使用效果不理想

Benefits of technology

[0019] This versatile neckline positioning and cutting device allows for adjustment of the distance between adjusting rods two and three. This ensures that the size of the rectangular frame formed by positioning pads one and two matches the size of the neckline area to be cut, guaranteeing the stability of the fabric cutting process, preventing fabric misalignment, and achieving higher cutting precision to meet user needs.

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Abstract

This invention discloses a diversified neckline positioning and cutting device for clothing, relating to the field of clothing processing technology. It includes a cutting bed and a positioning device. A gantry frame is installed on the top of the cutting bed, and a set of cutting blades is mounted on the gantry frame. The positioning device includes a first lead screw drive mechanism, a sliding plate, a second lead screw drive mechanism, and an adjusting rod. The first lead screw drive mechanism is installed inside both sides of the cutting bed, and sliding plates are movably installed on both sides of the inner wall of the cutting bed. Two sliding plates are driven by two first lead screw drive mechanisms respectively. The second lead screw drive mechanism is installed on one side of each sliding plate. The distance between the second and third adjusting rods is adjustable, ensuring that the size of the rectangular frame formed by the first and second positioning pads matches the size of the neckline area to be cut. This guarantees the stability of the fabric cutting process, prevents fabric misalignment, and achieves higher cutting accuracy, meeting user needs.
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Description

Technical Field

[0001] This invention relates to the field of clothing processing technology, specifically to a diversified neckline positioning and cutting device for clothing. Background Technology

[0002] After the rolled-up fabric is processed, it needs to be cut into parts such as the neckline and body using a cutting machine. Although there are many styles of clothing necklines, the neckline occupies a small amount of fabric, and the cutting area is also small. Existing fabric cutting machines consist of a cutting bed, a gantry frame that can move forward, backward, left, and right, and a cutting blade that can be raised and lowered. The fabric needs to be laid on a film on the cutting bed, and then the film is absorbed by negative pressure to maintain the stability of the fabric. However, this method of fabric positioning still has the following shortcomings when used:

[0003] The method of positioning the fabric using a negative pressure adsorption film will break the negative pressure state of the film after one cut. If the fabric is cut again, it will easily shake and deviate, which will not guarantee the cutting accuracy and the effect will be unsatisfactory. Summary of the Invention

[0004] To achieve the above objectives, the present invention provides the following technical solution: a diversified neckline positioning and cutting device for clothing, comprising a cutting bed and a positioning device, wherein a gantry frame is provided on the top of the cutting bed, and a cutting knife assembly is provided on the gantry frame;

[0005] The positioning device includes a first lead screw transmission mechanism, a sliding plate, a second lead screw transmission mechanism, and an adjusting rod. The first lead screw transmission mechanism is installed inside both sides of the cutting bed, and sliding plates are movably installed on both sides of the inner wall of the cutting bed. The two sliding plates are driven by the two first lead screw transmission mechanisms respectively.

[0006] A second lead screw transmission mechanism is provided on one side of the slide plate, and a lifting cylinder for driving the second lead screw transmission mechanism to rise and fall is provided on the top of the slide plate. There are two first adjustment rods, and the two ends of the first adjustment rods are respectively connected to the two second lead screw transmission mechanisms. An adjustment frame is provided on the two first adjustment rods.

[0007] The adjustment frame includes two symmetrically arranged adjustment rods 2 and two adjustment rods 3. The two adjustment rods 2 are respectively sleeved with the two adjustment rods 1. The adjustment rod 2 includes a movable block 1 and a movable block 2 movably sleeved on the adjustment rod 1. The top of the movable block 1 is provided with an adjustment cylinder whose output end is connected to the top of the movable block 2.

[0008] An adjusting rod three is provided between the two movable blocks one and between the two movable blocks two. The adjusting rod two includes a movable seat and a movable plate movably sleeved inside the movable seat. An adjusting motor for driving the movable block one is provided on one side of one of the adjusting rods one.

[0009] As a preferred embodiment of the present invention, an extension seat is fixedly provided at the bottom of the movable block one, and an extension plate with one end extending into the interior of the extension seat is fixedly provided at the bottom of the movable block two. The bottoms of the extension seat and the extension plate are flush, and positioning pads are provided at both ends of the bottom of the extension seat and the bottom of the extension plate.

[0010] As a preferred embodiment of the present invention, the bottoms of the movable seat and the movable plate are flush, and positioning pads two are provided at both ends of the bottom of the movable seat and the bottom of the movable plate. The bottoms of positioning pads two and positioning pads one are flush, and the positioning pads one and two at the bottoms of the adjusting rods two and three form a rectangular frame.

[0011] As a preferred embodiment of the present invention, a stabilizing rod is fixedly provided at one end of the movable block one and movably sleeved inside the movable block two. Two gears are rotatably provided inside the adjusting rod one. The output end of the adjusting motor extends into the interior of the adjusting rod one and is connected to one of the gears for transmission.

[0012] As a preferred embodiment of the present invention, a transmission belt is fitted around the two gears together, and a sliding hole is provided at the top of the first adjusting rod located directly above the transmission belt. A fixing rod is provided at the top of the transmission belt and fixedly connected to the bottom of the first movable block.

[0013] As a preferred embodiment of the present invention, a guide rail is provided on one side of the cutting bed, a slide block is provided at one end of the gantry frame and slidably connected to the guide rail, at least two guide rails are provided on one side of the slide plate, and the screw transmission mechanism is slidably connected to the guide rails.

[0014] As a preferred embodiment of the present invention, a fixed plate is provided on the top of the slide plate, the lifting cylinder is fixedly mounted on the fixed plate, and a linear module is provided on the side of the cutting bed away from the guide rail for driving the gantry frame.

[0015] As a preferred embodiment of the present invention, a sensing column located on one side of the lifting cylinder is fixedly installed on the top of the sliding plate, and a groove-shaped photoelectric switch is installed at the bottom of the gantry frame, with the top of the sensing column extending into the interior of the groove-shaped photoelectric switch.

[0016] As a preferred embodiment of the present invention, the lead screw transmission mechanism includes a motor and a lead screw disposed at the output end of the motor, and a nut seat with one end threadedly connected to the lead screw is disposed on the side of the slide away from the guide rail.

[0017] As a preferred embodiment of the present invention, the second lead screw transmission mechanism includes a second motor and a second lead screw disposed at the output end of the second motor. The second lead screw has two threads with opposite directions on its surface, and the two threads are respectively threaded into the ends of the two first adjusting rods.

[0018] Compared with the prior art, the present invention provides a diversified neckline positioning and cutting device for clothing, which has the following beneficial effects:

[0019] This versatile neckline positioning and cutting device allows for adjustment of the distance between adjusting rods two and three. This ensures that the size of the rectangular frame formed by positioning pads one and two matches the size of the neckline area to be cut, guaranteeing the stability of the fabric cutting process, preventing fabric misalignment, and achieving higher cutting precision to meet user needs. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of a diversified neckline positioning and cutting device for clothing proposed in this invention;

[0021] Figure 2 This is a schematic diagram of the skateboard structure of a diversified neckline positioning and cutting device for clothing proposed in this invention;

[0022] Figure 3 This is a schematic diagram of the adjustment frame structure of a diversified neckline positioning and cutting device for clothing proposed in this invention;

[0023] Figure 4 This is a schematic diagram of the adjustment frame structure of a diversified neckline positioning and cutting device for clothing proposed in this invention; a bottom view of the adjustment frame structure.

[0024] Figure 5 This is a cross-sectional view of the adjusting rod structure of a clothing diversification neckline positioning and cutting device proposed in this invention;

[0025] Figure 6 This is a cross-sectional view of the screw drive mechanism of a diversified neckline positioning and cutting device for clothing proposed in this invention.

[0026] Figure 7 This is a cross-sectional view of the screw drive mechanism of a clothing neckline positioning and cutting device proposed in this invention.

[0027] In the diagram: 1. Cutting bed; 11. Gantry frame; 12. Linear module; 13. Cutting knife assembly; 14. Guide rail one; 15. Slide block; 16. Groove type photoelectric switch; 2. Positioning device; 21. Screw transmission mechanism one; 211. Motor one; 212. Screw one; 22. Slide plate; 221. Fixed plate; 222. Lifting cylinder; 223. Guide rail two; 224. Induction column; 225. Nut seat; 23. Screw transmission mechanism two; 231. Motor two; 232. Screw two 24. Adjusting rod one; 241. Adjusting motor; 242. Gear; 243. Transmission belt; 244. Sliding hole; 25. Adjusting frame; 251. Adjusting rod two; 2511. Movable block one; 2512. Movable block two; 2513. Stabilizing rod; 2514. Extension seat; 2515. Extension plate; 2516. Positioning rubber pad one; 252. Adjusting rod three; 2521. Movable seat; 2522. Movable plate; 2523. Positioning rubber pad two; 253. Adjusting cylinder. Detailed Implementation

[0028] To provide a more detailed understanding of the features and technical content of the embodiments of this disclosure, the implementation of the embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. The accompanying drawings are for illustrative purposes only and are not intended to limit the embodiments of this disclosure. In the following technical description, for ease of explanation, several details are used to provide a full understanding of the disclosed embodiments. However, one or more embodiments may still be implemented without these details. In other cases, well-known structures and devices may be simplified in their depiction to simplify the drawings.

[0029] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this disclosure are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the purposes of describing embodiments of this disclosure herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion.

[0030] In the embodiments of this disclosure, the terms "upper," "lower," "inner," "middle," "outer," "front," and "rear," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for better describing the embodiments of this disclosure and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation. Furthermore, some of the aforementioned terms may be used to indicate other meanings besides orientation or positional relationship; for example, the term "upper" may in some cases indicate a dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in the embodiments of this disclosure according to the specific circumstances.

[0031] Furthermore, the terms "set up," "connect," and "fix" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, or it can be an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this disclosure according to the specific circumstances.

[0032] Unless otherwise stated, the term "multiple" means two or more.

[0033] It should be noted that, unless otherwise specified, the embodiments and features described in the present disclosure can be combined with each other.

[0034] Please see Figure 1-7 A versatile neckline positioning and cutting device for clothing includes a cutting bed 1 and a positioning device 2. A gantry frame 11 is provided on the top of the cutting bed 1, and a cutting knife group 13 is provided on the gantry frame 11.

[0035] The positioning device 2 includes a lead screw transmission mechanism 21, a sliding plate 22, a lead screw transmission mechanism 23, and an adjusting rod 24. The interior of both sides of the cutting bed 1 is provided with lead screw transmission mechanisms 21, and the inner walls of the cutting bed 1 are movably provided with sliding plates 22. The two sliding plates 22 are driven by the two lead screw transmission mechanisms 21 respectively.

[0036] A second lead screw transmission mechanism 23 is provided on one side of the slide plate 22, and a lifting cylinder 222 for driving the second lead screw transmission mechanism 23 to rise and fall is provided on the top of the slide plate 22. There are two adjusting rods 24, and the two ends of the two adjusting rods 24 are respectively connected to the two lead screw transmission mechanisms 23. An adjusting frame 25 is provided on both adjusting rods 24.

[0037] The adjusting frame 25 includes two adjusting rods 251 and two adjusting rods 252 arranged symmetrically. The two adjusting rods 251 are respectively sleeved with two adjusting rods 24. The adjusting rods 251 include a movable block 2511 and a movable block 2512 movably sleeved on the adjusting rod 24. The top of the movable block 2511 is provided with an adjusting cylinder 253 whose output end is connected to the top of the movable block 2512.

[0038] An adjusting rod 252 is provided between the two movable blocks 2511 and between the two movable blocks 2512. The adjusting rod 251 includes a movable seat 2521 and a movable plate 2522 movably sleeved inside the movable seat 2521. An adjusting motor 241 for driving the movable block 2511 is provided on one side of one of the adjusting rods 2511.

[0039] As a specific technical solution in this embodiment, an extension seat 2514 is fixedly provided at the bottom of the movable block 2511, and an extension plate 2515 extending into the interior of the extension seat 2514 is fixedly provided at the bottom of the movable block 2512. The bottoms of the extension seat 2514 and the extension plate 2515 are flush. Positioning pads 2516 are provided at both ends of the bottom of the extension seat 2514 and the bottom of the extension plate 2515. The extension plate 2515 cooperates with the extension seat 2514 so that when the adjusting cylinder 253 at the top of the movable block 2511 pushes the movable block 2512, the extension plate 2515 slides inside the extension seat 2514. This design allows the positioning pads 2516 at the bottom of the extension plate 2515 and the extension seat 2514 to press down the fabric, ensuring the stability of the fabric cutting process.

[0040] As a specific technical solution in this embodiment, the bottoms of the movable seat 2521 and the movable plate 2522 are flush. Positioning pads 2523 are provided at both ends of the bottom of the movable seat 2521 and the bottom of the movable plate 2522. The bottoms of the positioning pads 2523 and 2523 are flush. The positioning pads 2516 and 2523 at the bottom of the adjusting rods 251 and 352 form a rectangular frame. The positioning pads 2523 and 2516 have the same function, and their flush bottoms further ensure the stability of the fabric cutting process. The rectangular frame formed by the positioning pads 2516 and 2523 can accurately position the cutting range of the cutting blade group 13, making the fabric cutting process more stable, preventing misalignment, and achieving higher fabric cutting accuracy.

[0041] As a specific technical solution in this embodiment, one end of the movable block 2511 is fixedly provided with a stabilizing rod 2513 that is movably sleeved inside the movable block 2512. The adjusting rod 24 is rotatably provided with two gears 242. The output end of the adjusting motor 241 extends into the adjusting rod 24 and is connected to one of the gears 242 for transmission. When the adjusting cylinder 253 is activated to push the movable block 2512, the movable block 2512 slides on the stabilizing rod 2513. The setting of the stabilizing rod 2513 further ensures the stability of the movable block 2512.

[0042] As a specific technical solution of this embodiment, the two gears 242 are jointly fitted with a transmission belt 243. The top of the adjusting rod 24 has a sliding hole 244 located directly above the transmission belt 243. The top of the transmission belt 243 is provided with a fixing rod whose top end is fixedly connected to the bottom of the movable block 2511. When it is necessary to control the position of the adjusting frame 25, the adjusting motor 241 is started to drive one of the gears 242 to rotate. The two gears 242 rotate synchronously through the transmission belt 243. When the synchronous belt rotates, it moves the movable block 2511 through the fixing rod, so that the movable block 2511 pulls the entire adjusting frame 25 to adjust its left and right position.

[0043] As a specific technical solution in this embodiment, a guide rail 14 is provided on one side of the cutting bed 1, a slide block 15 is provided at one end of the gantry frame 11 and is slidably sleeved with the guide rail 14, at least two guide rails 223 are provided on one side of the slide plate 22, the screw transmission mechanism 23 is slidably sleeved with the guide rails 223, a fixing plate 221 is provided on the top of the slide plate 22, the lifting cylinder 222 is fixedly mounted on the fixing plate 221, and a linear module 12 is provided on the side of the cutting bed 1 away from the guide rail 14 for driving the gantry frame 11, when the adjusting frame 25 After the position is adjusted, the lifting cylinder 222 is activated to drive the lead screw transmission mechanism 23 to descend. The lead screw transmission mechanism 23 slides on the guide rail 223. The guide rail 223 ensures the stability of the lead screw transmission mechanism 23 during the lifting process. The linear module 12 is activated to drive the gantry frame 11 to move back and forth. The gantry frame 11 drives the slide block 15 to slide on the guide rail 223. The guide rail 223 ensures the stability of the gantry frame 11. The gantry frame 11 is also equipped with a linear module 12. The linear module 12 inside the gantry frame 11 can drive the cutting knife group 13 to move left and right.

[0044] As a specific technical solution in this embodiment, a sensing column 224 located on one side of the lifting cylinder 222 is fixedly installed on the top of the sliding plate 22, and a groove-shaped photoelectric switch 16 is installed at the bottom of the gantry frame 11. The top of the sensing column 224 extends into the interior of the groove-shaped photoelectric switch 16. The groove-shaped photoelectric switch 16, in conjunction with the sensing column 224, is used to position the relative position of the sliding plate 22 and the gantry frame 11. When the gantry frame 11 drives the cutting blade assembly 13 to move for collar position recognition and positioning, the screw transmission mechanism is activated. 21 drives the slide plate 22 to move, and the slide plate 22 drives the induction column 224 to move into the inside of the groove-shaped photoelectric switch 16, completing the initial positioning of the adjustment frame 25. At this time, the adjustment frame 25 is located directly below the gantry frame 11. Then, the adjustment motor 241 is started to drive the transmission belt 243 to rotate. The transmission belt 243 drives the movable block 2511 to move, so that the movable block 2511 drives the entire adjustment frame 25 to move directly below the cutting blade group 13. Then, the size of the rectangular frame is adjusted according to the neckline cutting range identified by the cutting blade group 13.

[0045] As a specific technical solution of this embodiment, the lead screw transmission mechanism 21 includes a motor 211 and a lead screw 212 disposed at the output end of the motor 211. The slide plate 22 is provided with a nut seat 225 on the side away from the guide rail 223, one end of which is threadedly connected to the lead screw 212.

[0046] As a specific technical solution in this embodiment, the second lead screw transmission mechanism 23 includes a second motor 231 and a second lead screw 232 disposed at the output end of the second motor 231. The second lead screw 232 has two sections of threads with opposite directions on its surface, and the two sections of threads are respectively threaded into the ends of the two first adjusting rods 24. When the second motor 231 is started, it drives the second lead screw 232 to rotate. The second lead screw 232 drives the two first adjusting rods 24 to move towards each other or away from each other. When moving towards each other, the movable plate 2522 moves into the interior of the movable seat 2521, so that the distance between the two first adjusting rods 24 becomes shorter. When moving away from each other, the distance between the two first adjusting rods 24 becomes longer. When the adjusting cylinder 253 is started, the distance between the first movable block 2511 and the second movable block 2512 can be adjusted, thereby adjusting the distance between the two second adjusting rods 251, thereby adjusting the size of the rectangular frame, which is more suitable for the positioning range of the neckline size, ensuring the stability of the fabric during the neckline cutting process and preventing misalignment.

[0047] In use, positioning pad 1 2516 and positioning pad 2523 form a rectangular frame. The neckline fabric to be cut is laid inside the cutting bed 1. The linear module 12 is activated, which drives the cutting blade assembly 13 to move back, forth, left, and right through the gantry frame 11 to identify and position the neckline. Then, the screw drive mechanism 1 21 is activated, which drives the slide plate 22 to move. The slide plate 22 drives the sensing column 224 to move into the recessed photoelectric switch 16, completing the initial positioning of the adjusting frame 25. At this time, the adjusting frame 25 is located directly below the gantry frame 11. Then, the adjusting motor 241 is activated, which drives the transmission belt 243 to rotate. The transmission belt 243 drives the movable block 1 2511 to move, so that the movable block 2511 drives the entire adjusting frame 25 to move directly below the cutting blade assembly 13. Then, the size of the rectangular frame is adjusted according to the neckline cutting range identified by the cutting blade assembly 13. The motor 231 is activated, which drives the screw 232 to rotate. The screw 232 drives the two adjusting rods. The two adjusting rods 24 move towards each other or away from each other. When moving towards each other, the movable plate 2522 moves into the interior of the movable seat 2521, making the distance between the two adjusting rods 24 shorter. When moving away from each other, the distance between the two adjusting rods 24 becomes longer. Activating the adjusting cylinder 253 can adjust the distance between the movable block 2511 and the movable block 2512, thereby adjusting the distance between the two adjusting rods 251 and thus adjusting the size of the rectangular frame. After the position of the adjusting frame 25 is adjusted, the lifting cylinder 222 is activated to drive the screw transmission mechanism 23 to descend, so that the bottom of the positioning pad 2516 and the positioning pad 2523 presses down on the neckline fabric, allowing for cutting. After cutting, the linear module 12 is activated to drive the cutting knife group 13 to continue moving forward, backward, left, and right through the gantry 11 to identify and position the neckline. Then, the above operation is repeated to adjust the position of the adjusting frame 25.

[0048] In summary, this versatile neckline positioning and cutting device allows for adjustment of the distance between adjusting rod 251 and adjusting rod 252. This ensures that the size of the rectangular frame formed by positioning pad 1 2516 and positioning pad 2523 matches the size of the neckline area to be cut, guaranteeing the stability of the fabric cutting process, preventing fabric misalignment, and achieving higher cutting precision to meet user needs.

[0049] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A versatile neckline positioning and cutting device for clothing, comprising a cutting bed (1) and a positioning device (2), characterized in that: The top of the cutting bed (1) is provided with a gantry frame (11), and the gantry frame (11) is provided with a cutting knife assembly (13); The positioning device (2) includes a first screw drive mechanism (21), a sliding plate (22), a second screw drive mechanism (23), and an adjusting rod (24). The first screw drive mechanism (21) is installed inside both sides of the cutting bed (1). Sliding plates (22) are movably installed on both sides of the inner wall of the cutting bed (1). The two sliding plates (22) are driven by the two first screw drive mechanisms (21) respectively. A second screw drive mechanism (23) is installed on one side of each sliding plate (22). A lifting cylinder (222) for driving the second screw drive mechanism (23) to rise and fall is installed on the top of each sliding plate (22). There are two adjusting rods (24). The two ends of each adjusting rod (24) are connected to the two second screw drive mechanisms (23) respectively. An adjusting frame (25) is installed on both adjusting rods (24). The adjusting frame (25) includes symmetrically arranged... Two adjusting rods 251 and two adjusting rods 352 are provided. The two adjusting rods 251 are respectively sleeved with two adjusting rods 1 (24). The adjusting rods 251 include a movable block 1 (2511) and a movable block 2 (2512) movably sleeved on the adjusting rod 1 (24). The top of the movable block 1 (2511) is provided with an adjusting cylinder (253) whose output end is connected to the top of the movable block 2 (2512). Adjusting rods 3 (252) are provided between the two movable blocks 1 (2511) and between the two movable blocks 2 (2512). The adjusting rods 3 (252) include a movable seat (2521) and a movable plate (2522) movably sleeved inside the movable seat (2521). One side of one of the adjusting rods 1 (24) is provided with an adjusting motor (241) for driving the movable block 1 (2511). The top of the slide plate (22) is fixedly provided with a sensing column (224) located on one side of the lifting cylinder (222), and the bottom of the gantry frame (11) is provided with a groove-shaped photoelectric switch (16). The top of the sensing column (224) extends into the interior of the groove-shaped photoelectric switch (16). The interior of the first adjusting rod (24) is rotatably provided with two gears (242). The output end of the adjusting motor (241) extends into the interior of the first adjusting rod (24) and is connected to one of the gears (242) in a transmission connection. The two gears (242) are together fitted with a transmission belt (243). The top of the transmission belt (243) is provided with a fixing rod whose top end is fixedly connected to the bottom of the first movable block (2511). An extension seat (2514) is fixedly installed at the bottom of the first movable block (2511), and an extension plate (2515) with one end extending into the interior of the extension seat (2514) is fixedly installed at the bottom of the second movable block (2512). The bottoms of the extension seat (2514) and the extension plate (2515) are flush. Positioning pads (2516) are provided at both ends of the bottom of the extension seat (2514) and at the bottom of the extension plate (2515). The bottoms of the seat (2521) and the movable plate (2522) are flush. Positioning pads 2 (2523) are provided at both ends of the bottom of the movable seat (2521) and the bottom of the movable plate (2522). Positioning pads 2 (2523) are flush with the bottom of positioning pads 1 (2516). Positioning pads 1 (2516) and 2 (2523) at the bottom of the adjusting rods 2 (251) and 3 (252) form a rectangular frame. The cutting bed (1) is provided with a guide rail (14) on one side, and a slide block (15) is provided at one end of the gantry frame (11) and is slidably connected to the guide rail (14). At least two guide rails (223) are provided on one side of the slide plate (22), and the screw transmission mechanism (23) is slidably connected to the guide rails (223).

2. The garment diversified neckline positioning and cutting device according to claim 1, characterized in that: One end of the movable block one (2511) is fixedly provided with a stabilizing rod (2513) that is movably sleeved inside the movable block two (2512).

3. The garment diversified neckline positioning and cutting device according to claim 2, characterized in that: The top of the adjusting rod (24) has a sliding hole (244) located directly above the transmission belt (243).

4. The garment diversified neckline positioning and cutting device according to claim 1, characterized in that: The top of the slide plate (22) is provided with a fixing plate (221), the lifting cylinder (222) is fixedly installed on the fixing plate (221), and the cutting bed (1) is provided with a linear module (12) on the side away from the guide rail (14) for driving the gantry frame (11).

5. The garment diversified neckline positioning and cutting device according to claim 1, characterized in that: The lead screw transmission mechanism (21) includes a motor (211) and a lead screw (212) disposed at the output end of the motor (211). A nut seat (225) with one end threadedly connected to the lead screw (212) is provided on the side of the slide plate (22) away from the guide rail (223).

6. The garment diversified neckline positioning and cutting device according to claim 1, characterized in that: The second lead screw transmission mechanism (23) includes a second motor (231) and a second lead screw (232) disposed at the output end of the second motor (231). The second lead screw (232) has two threads with opposite directions on its surface, and the two threads are respectively threaded into the ends of the two adjusting rods (24).

Citation Information

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