Garment laser template machine capable of sewing and cutting off cloth simultaneously

By introducing a fixed base, scale lines, limit components, and a moving mechanism into the garment laser template machine, the problem of finished product defects caused by template position deviation is solved, and accurate template positioning and stable movement are achieved, thereby improving processing efficiency and finished product quality.

CN223971030UActive Publication Date: 2026-03-06FOSHAN SHUNDE HONGYING GARMENT FACTORY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

In the garment processing process, defects in finished products can be caused by the misalignment of the template placement position, and existing technologies cannot guarantee the accuracy and repeatability of the template position.

Method used

It adopts a combination design of fixed base, scale line, limit component and moving mechanism. The scale line measures the position of the template, the limit component fixes the template, and the horizontal and vertical moving mechanism realizes the precise positioning and stable movement of the template. Combined with the suction component, it automatically cleans the cutting wire ends.

Benefits of technology

It improved the accuracy of template placement, reduced finished product defects, simplified the template replacement process, and improved processing efficiency and finished product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of garment processing, in particular to a garment laser template machine capable of sewing and cutting cloth simultaneously, which comprises a workbench, a sewing machine body, a cutting machine body, a template, a fixing mechanism, a transverse moving mechanism and a longitudinal moving mechanism are arranged on the workbench, and the fixing mechanism comprises a fixing seat; a plurality of fixed driving parts and a limiting assembly are arranged on the fixed seat, scale marks are arranged on the fixed seat, the position of a template is measured through the scale marks on the fixed seat, after the limiting assembly is adjusted to a proper position according to the positions of the scale marks, a worker puts the template into the fixed seat, and the template is fixed by the fixed driving parts; when the template is repeatedly replaced subsequently to process new clothes, the placement position of the template every time is accurate, then the transverse moving mechanism and the longitudinal moving mechanism are started to drive the fixing mechanism to move and process, and the situation that the placement position of the template deviates due to fatigue caused by long-time repeated work of workers is avoided.
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Description

Technical Field

[0001] This application relates to the field of garment processing technology, and in particular to a garment laser template machine that can simultaneously sew and cut fabric. Background Technology

[0002] With the continuous improvement of China's scientific and technological strength, the pattern making process technology has gradually become popular. With the development of clothing drawing software, the operation method of pattern making has changed. Computers have replaced the traditional tools. Clothing ridge plate laser cutting machines mainly use materials such as PVC and transparent acrylic as plates. The template is designed on the computer and output, so the edge smoothness and stitching effect can be easily achieved.

[0003] When workers use template equipment to sew or cut garments of different sizes, they need to change to templates of different sizes to place the garments. Therefore, it is necessary to remeasure the placement of the templates to adapt to the processing of the laser cutting machine.

[0004] However, since garment processing is a repetitive task, the repeated changing of the templates for placing garments over a long period of time may cause the workers to misplace the templates, resulting in defects in the finished garments. Therefore, further improvements can be made. Utility Model Content

[0005] To increase the accuracy of template placement and reduce finished product defects caused by inaccurate template placement, this application provides a garment laser template machine that can simultaneously sew and cut fabric.

[0006] The technical solution provided in this application for a garment laser template machine capable of simultaneously sewing and cutting fabric is as follows:

[0007] A garment laser template machine capable of simultaneously sewing and cutting fabric includes a worktable. The worktable is equipped with a sewing machine body, a cutting machine body, a template, a fixing mechanism, a lateral moving mechanism, and a longitudinal moving mechanism. The sewing machine body, cutting machine body, template, fixing mechanism, and lateral moving mechanism are all located on the upper surface of the worktable, while the longitudinal moving mechanism is located on the lower surface of the worktable. Both the fixing mechanism and the lateral moving mechanism are arranged along the width of the worktable, and are positioned below the output ends of the sewing machine body and the cutting machine body. The lateral moving mechanism drives the fixing mechanism and the template to move laterally, and the longitudinal moving mechanism, arranged along the width of the worktable, drives the lateral moving mechanism, the fixing mechanism, and the template to move longitudinally.

[0008] The fixing mechanism includes a fixing base, a plurality of fixing drive components and a limiting component on the fixing base, the template is fixedly set on the fixing base by the fixing drive components, the fixing base is provided with scale lines, and the limiting component calculates the position by means of the scale lines and then adjusts to limit and fix the position of the template.

[0009] By adopting the above technical solution, when it is necessary to change to different sizes of clothing for sewing or cutting, the staff can measure the position of the template to be placed by means of the scale lines on the fixed seat. After the measurement is completed, the limiting component is adjusted to the appropriate position according to the scale line position. The staff then puts the template into the fixed seat and it is fixed by the fixed drive component. When the template is repeatedly changed to process new clothing, the limiting component ensures that the template is placed accurately each time. Then, the horizontal and vertical moving mechanisms are activated to drive the fixed mechanism to move and process. The template placement position will not be offset due to fatigue caused by long-term repetitive work by the staff, thus ensuring the quality of the processed finished product.

[0010] Optionally, the fixing seat is U-shaped, and the opening side of the fixing seat faces the template direction. A plurality of fixing driving members are sequentially and spaced apart on the inner top surface of the fixing seat along the length direction of the fixing seat, and the template is disposed on the inner bottom surface of the fixing seat.

[0011] The limiting component includes two limiting posts, two limiting sliders, and a limiting slide rail. The limiting slide rail is located on the top of the fixed base near the template along the length of the fixed base. Both limiting sliders can be slidably mounted on the limiting slide rail. The two limiting posts are respectively located on the sides of the two limiting sliders near the template, so that the limiting posts can be moved and adjusted on the limiting slide rail by the limiting sliders. The two limiting posts on opposite sides limit the two sides of the template. The scale line is located on the top of the fixed base away from the template along the length of the fixed base.

[0012] By adopting the above technical solution, when the staff changes to templates of different sizes, the placement position of the template is calculated by the scale lines. Then, the distance between the two limit posts is adjusted by the cooperation of the limit slider and the limit rail to adapt to the length of the template. This ensures that the template is limited by the two limit posts every time it is changed, thereby reducing the occurrence of placement deviations.

[0013] Optionally, the lateral movement mechanism includes a lateral movement seat, on which a lateral movement slider, a lateral movement lead screw, and a lateral movement drive are disposed. The lateral movement seat is disposed on its upper surface along the width direction of the worktable. The lateral movement lead screw is rotatably disposed within the lateral movement seat. The lateral movement slider is threadedly connected to the lateral movement lead screw. The lateral movement drive is rotatably connected to the lateral movement lead screw. The fixed seat is fixedly connected to one end of the lateral movement slider. The lateral movement drive drives the lateral movement lead screw to rotate, causing the lateral movement slider to move, thereby driving the fixed seat to move laterally.

[0014] By adopting the above technical solution, when the fixed seat needs to move laterally, the lateral movement drive can drive the lateral movement screw to rotate. During the rotation, the lateral movement slider connected to the thread on the lateral movement screw moves, thereby driving the fixed seat connected to it to move synchronously, thus realizing the lateral movement function of the fixed seat.

[0015] Optionally, the longitudinal moving mechanism includes a longitudinal lead screw, a longitudinal slider, and a longitudinal driving component. The longitudinal lead screw is disposed on the lower surface of the worktable along its length direction. The longitudinal slider is threadedly connected to the longitudinal lead screw. The longitudinal driving component is rotatably connected to the longitudinal lead screw. A moving opening is provided on the worktable. The top of the longitudinal slider passes through the moving opening and is fixedly connected to the bottom of the transverse moving seat. Thus, the longitudinal driving component drives the longitudinal lead screw to rotate, causing the longitudinal slider to move, thereby driving the transverse moving seat to move longitudinally.

[0016] By adopting the above technical solution, when it is necessary to drive the fixed seat and the transverse moving seat to move longitudinally, the longitudinal moving screw can be rotated by the longitudinal moving drive component. During the rotation, the longitudinal moving slider connected to the thread on the longitudinal moving screw moves, thereby driving the transverse moving seat connected to it to move synchronously, and thus the fixed seat also moves synchronously, thereby realizing the longitudinal movement function of the fixed seat and the transverse moving seat.

[0017] Optionally, there are two longitudinal lead screws, which are spaced apart from each other. Correspondingly, there are also two longitudinal sliders and two moving ports. The bottom of the transverse moving seat is fixedly connected to the two longitudinal sliders through the two moving ports respectively.

[0018] By adopting the above technical solution, two longitudinal lead screws are set up to cooperate with two longitudinal sliders, making the longitudinal movement of the lateral moving seat connected to them more stable, and improving the stability of the movement of the lateral moving mechanism and the fixed seat.

[0019] Optionally, the workbench is also equipped with a suction assembly, which includes a suction fan and a suction pipe. The suction fan is located at the bottom of the workbench, one end of the suction pipe is connected to the suction fan, and the other end of the suction pipe is located on one side of the cutting machine body. The suction fan and the suction pipe work together to clean up the garment threads cut off by the cutting machine body.

[0020] By adopting the above technical solution, the wire ends cut off by the cutting machine body are cleaned by using a suction fan and suction pipe, eliminating the need for manual cleaning, saving a lot of time and improving processing efficiency.

[0021] Optionally, the suction pipe is composed of a flexible hose and a rigid pipe connected together. One end of the flexible hose is connected to the suction fan, and the other end of the flexible hose extends along the length of the cutting machine body to the head position of the cutting machine body and is connected to the rigid pipe. The other end of the rigid pipe faces the cutting position of the cutting machine body.

[0022] By adopting the above technical solutions, the flexibility of the flexible hose makes it easier to connect to the suction fan, easily adapting to different installation positions and angles, simplifying the installation process. The rigid hose provides a stable collection port for cleaning the wire ends, is not easily deformed, and ensures collection efficiency.

[0023] Optionally, a programmable controller is provided between the sewing machine body and the cutting machine body to control the overall processing actions of the equipment.

[0024] By adopting the above technical solution, the overall processing of the equipment is centrally controlled by a programmable controller, which increases the safety of the equipment.

[0025] In summary, this application includes at least one of the following beneficial technical effects:

[0026] 1. When changing to different sizes of garments for sewing or cutting, workers can measure the position of the template to be placed using the scale lines on the fixed base. After measurement, the limiting component is adjusted to the appropriate position according to the scale line position. Then, the worker places the template into the fixed base and it is fixed by the fixed drive component. When repeatedly changing templates to process new garments, the limiting component ensures that the template is placed accurately each time. Then, the horizontal and vertical moving mechanisms are activated to drive the fixed mechanism to move and process. The template placement position will not shift due to fatigue caused by long-term repetitive work by the worker, thus ensuring the quality of the finished product.

[0027] 2. When staff change to templates of different sizes, they calculate the placement position of the template using the scale lines. Then, by using the limit slider and the limit rail, they adjust the distance between the two limit posts to match the length of the template. This ensures that the template is limited by the two limit posts each time it is changed, thereby reducing the occurrence of placement deviations.

[0028] 3. The flexibility of the flexible hose makes it easier to connect to the suction fan, easily adapting to different installation positions and angles, simplifying the installation process. The rigid hose provides a stable collection port for cleaning the wire ends, is not easily deformed, and ensures collection efficiency. Attached Figure Description

[0029] Figure 1 This is a top view of the overall structure in an embodiment of this application.

[0030] Figure 2 This is a bottom view of the overall structure in an embodiment of this application.

[0031] Figure 3 This is a schematic diagram of the lateral movement mechanism in an embodiment of this application.

[0032] Figure 4 This is a schematic diagram of the overall structure of the workbench in an embodiment of this application.

[0033] Explanation of reference numerals in the attached figures:

[0034] 1. Workbench; 2. Sewing machine body; 3. Cutting machine body; 4. Template; 5. Fixing mechanism; 51. Fixing seat; 52. Fixing drive component; 53. Limiting assembly; 531. Limiting post; 532. Limiting slider; 533. Limiting slide rail; 54. Scale line; 6. Lateral movement mechanism; 61. Lateral movement seat; 62. Lateral movement slider; 63. Lateral movement screw; 64. Lateral movement drive component; 65. Lateral movement drive wheel; 66. Lateral movement driven wheel; 67. Lateral movement slide rail; 7. Longitudinal movement mechanism; 71. Longitudinal movement screw; 72. Longitudinal movement slider; 73. Longitudinal movement drive component; 74. Longitudinal movement drive wheel; 75. Longitudinal movement driven wheel; 76. Synchronizing wheel; 77. Moving port; 78. Guide rod; 8. Programmable controller; 9. Suction assembly; 91. Suction fan; 92. Suction pipe; 921. Flexible hose; 922. Rigid pipe. Detailed Implementation

[0035] The following is in conjunction with the appendix Figure 1-4 This application will be described in further detail.

[0036] This application discloses a garment laser template machine that can simultaneously sew and cut fabric.

[0037] Reference Figure 1 , 2A laser garment template machine capable of simultaneously sewing and cutting fabric includes a worktable 1. The upper surface of the worktable 1 is provided with a sewing machine body 2, a cutting machine body 3, a template 4, a fixing mechanism 5, and a transverse moving mechanism 6. The lower surface of the worktable 1 is provided with a longitudinal moving mechanism 7. The sewing machine body 2 and the cutting machine body 3 are spaced apart in the middle of the worktable 1. The template 4 is detachably mounted on the fixing mechanism 5, which is mounted on the transverse moving mechanism 6. The fixing mechanism 5 and the transverse moving mechanism 6 are positioned along the width of the worktable 1 below the output ends of the sewing machine body 2 and the cutting machine body 3, allowing the sewing machine body 2 or the cutting machine body 3 to process the garment within the template 4. The longitudinal moving mechanism 7 is positioned along the length of the worktable 1. The longitudinal moving mechanism 7 is set on the workbench 1, and its top passes through the workbench 1 and is fixedly connected to the transverse moving mechanism 6 above it. The transverse moving mechanism 6 drives the fixing mechanism 5 and the template 4 to move laterally, so that the template 4 can move laterally and longitudinally on the workbench 1 for processing by the equipment. The fixing mechanism 5 includes a fixing base 51, a number of fixing drive components 52 and a limiting component 53 on the fixing base 51. The template 4 is fixedly set on the fixing base 51 by the fixing drive components 52. The fixing base 51 is provided with scale lines 54. The limiting component 53 calculates the position according to the scale lines 54 and then adjusts to limit and fix the position of the template 4.

[0038] In addition, a programmable controller 8 is installed between the sewing machine body 2 and the cutting machine body 3. The programmable controller 8 is used to centrally control the overall processing actions of the equipment and centrally control the switching on and off of the equipment, thereby increasing the safety of the equipment.

[0039] In actual use, when it is necessary to change to different sizes of clothing for sewing or cutting, the staff can measure the position of the template 4 to be placed through the scale line 54 on the fixed seat 51. After the measurement is completed, the limiting component 53 is adjusted to the appropriate position according to the position of the scale line 54. The staff then puts the template 4 into the fixed seat 51 and fixes it by the fixed drive component 52. When the template 4 is repeatedly changed to process new clothing, the limiting component 53 ensures that the template 4 is placed accurately each time. Then, the horizontal moving mechanism 6 and the vertical moving mechanism 7 are activated to drive the fixed mechanism 5 to move and process. The template 4 will not shift due to fatigue caused by the staff working for a long time, thus ensuring the quality of the finished product.

[0040] Reference Figure 1 , 3Specifically, in this embodiment, the fixing seat 51 is U-shaped, and the opening side of the fixing seat 51 faces the template 4 so that the template 4 can be placed into the fixing seat 51 for fixing. Several fixing driving members 52 are arranged at intervals along the length of the fixing seat 51 on its inner top surface. The template 4 is disposed on the inner bottom surface of the fixing seat 51. The movable end of the fixing driving member 52 is arranged downward so as to clamp and fix the template 4. In this embodiment, the fixing driving member 52 is a cylinder as the driving member.

[0041] The limiting component 53 includes two limiting posts 531, two limiting sliders 532, and a limiting slide rail 533. The limiting slide rail 533 is disposed along the length of the fixed base 51 on its top side near the template 4. Both limiting sliders 532 are slidably disposed on the limiting sliders 532, and the two limiting sliders 532 are respectively disposed on both sides of the limiting slide rail 533. The two limiting posts 531 are respectively disposed opposite to the two limiting sliders 532 on the side near the template 4, so that the limiting posts 531 pass through the limiting sliders 532. The template 4 is moved and adjusted along the length of the fixed seat 51 on the limiting slide rail 533 so that the two limiting posts 531 limit the two sides of the template 4 on opposite sides. In order to place the template 4 better and more accurately, the scale line 54 is set on the top of the fixed seat 51 away from the template 4 along the length of the fixed seat 51. After the staff confirms that the template 4 is of the appropriate length, the limiting slider 532 can be moved to the appropriate position and then locked from top to bottom by bolts. Finally, the limiting strip is adjusted according to the scale line 54 to limit and fix the template 4.

[0042] In actual use, when the staff changes to template 4 of different sizes, the placement position of template 4 is calculated by the scale line 54. Then, the distance between the two limit posts 531 is adjusted by the cooperation of the limit slider 532 and the limit rail 533 to adapt to the length of template 4. This ensures that each time template 4 is changed, it is limited by the two limit posts 531, thereby reducing the occurrence of placement deviation.

[0043] Reference Figure 1 , 3Specifically, in this embodiment, the lateral movement mechanism 6 includes a rectangular lateral movement seat 61. The lateral movement seat 61 is equipped with a lateral sliding block 62, a lateral lead screw 63, and a lateral drive component 64. The lateral movement seat 61 is disposed on its upper surface along the width direction of the worktable 1. The lateral lead screw 63 is rotatably disposed within the lateral movement seat 61 along its length direction. The lateral sliding block 62 is threadedly connected to the lateral lead screw 63. A connection port is provided on the side of the lateral movement seat 61 near the fixed base 51 along its length direction, allowing the lateral sliding block 62 to pass through the connection port. The movable seat 61 is fixedly connected to the fixed seat 51, so that the fixed seat 51 is connected to the transverse movable seat 61. The transverse drive member 64 is disposed at the end of the transverse movable seat 61 away from the fixed seat 51. A transverse drive wheel 65 is disposed on the movable end of the transverse drive member 64. One end of the transverse lead screw 63 passes through the transverse movable seat 61 and is provided with a transverse driven wheel 66. The transverse drive wheel 65 and the transverse driven wheel 66 are connected by belt drive, so that the transverse drive member 64 drives the transverse lead screw 63 to rotate, so that the transverse slider 62 moves, thereby driving the fixed seat 51 to move laterally.

[0044] In addition, a transverse slide rail 67 is provided in the transverse movement, and the bottom of the transverse slider 62 is slidably mounted on the transverse slide rail 67. The transverse slide rail 67 guides the movement of the transverse slider 62, thereby increasing the stability of the transverse slider 62 in the process of driving the fixed base 51 to move laterally.

[0045] In actual use, when the fixed seat 51 needs to move laterally, the lateral movement drive 64 can drive the lateral movement screw 63 to rotate. During the rotation, the lateral movement slider 62 connected to the thread on the lateral movement screw 63 moves, thereby driving the fixed seat 51 connected to it to move synchronously, thus realizing the lateral movement function of the fixed seat 51.

[0046] Reference Figure 1 , 24. Specifically, in this embodiment, the longitudinal movement mechanism 7 includes two longitudinal lead screws 71, two longitudinal sliders 72, and a longitudinal drive 73. The two longitudinal lead screws 71 are parallel to each other and spaced apart along the length of the worktable 1 on the lower surface of the worktable 1. The two longitudinal sliders 72 are threadedly connected to the two longitudinal lead screws 71 respectively. The longitudinal lead screws 71 are mounted on the lower surface of the worktable 1 through mounting bases, so that the longitudinal lead screws 71 are rotatably mounted in the mounting bases. The longitudinal drive 73 is fixedly mounted on the lower surface of the worktable 1 through a motor mounting base and is located on one side of one of the longitudinal lead screws 71. The output end of the longitudinal drive 73 is provided with a longitudinal drive wheel 74, and the same side end of the two longitudinal lead screws 71 is provided with a longitudinal driven wheel 75, and the one closest to the drive wheel 74 is the drive wheel 75. In addition to the driven wheel 75, a synchronous wheel 76 is coaxially connected to the longitudinal lead screw 71 on the side near the longitudinal drive member 73. The longitudinal drive wheel 74 and the synchronous wheel 76 are connected by belt drive. The driven wheel 75 coaxial with the synchronous wheel 76 is also connected to another driven wheel 75 by belt drive. When the longitudinal drive member 73 drives the longitudinal drive wheel 74 to rotate, the synchronous wheel 76 is driven to rotate by the belt. The synchronous wheel 76 drives the driven wheel 75 coaxial with it to rotate. The rotating driven wheel 75 then drives the individual driven wheel 75 to rotate synchronously by the belt. This causes the two longitudinal lead screws 71 to rotate synchronously, so that the longitudinal sliders 72 on the two longitudinal lead screws 71 can move synchronously.

[0047] Two parallel and spaced-apart movable openings 77 are provided on the worktable 1 along its length. The two movable openings 77 are arranged opposite to the two longitudinal sliding screws 71. The top of the longitudinal sliding slider 72 passes through the movable openings 77 and is fixedly connected to the bottom of the transverse sliding seat 61. Thus, the longitudinal sliding screws 71 are rotated by the longitudinal driving component 73, causing the longitudinal sliding slider 72 to move, thereby driving the transverse sliding seat 61 to move longitudinally.

[0048] In addition, a guide rod 78 is provided inside the movable port 77, and the longitudinal sliding block 72 passes through the guide rod 78. The guide rod 78 guides the movement of the longitudinal sliding block 72, thereby increasing the stability of the longitudinal sliding block 72 in the process of driving the fixed seat 51 and the transverse moving seat 61 to move longitudinally.

[0049] In actual use, when it is necessary to move the fixed seat 51 and the transverse moving seat 61 longitudinally, the longitudinal moving screw 71 can be rotated by the longitudinal moving drive 73. During the rotation, the longitudinal moving slider 72 connected to the thread on the longitudinal moving screw 71 moves, thereby driving the transverse moving seat 61 connected to it to move synchronously, and thus the fixed seat 51 also moves synchronously, thereby realizing the longitudinal movement function of the fixed seat 51 and the transverse moving seat 61.

[0050] Reference Figure 1 , 2 Specifically, in this embodiment, the workbench 1 is also provided with a suction assembly 9, which includes a suction fan 91 and a suction pipe 92. The suction fan 91 is located at the bottom of the workbench 1. The suction pipe 92 includes a flexible hose 921 and a rigid pipe 922 connected together. One end of the flexible hose 921 is connected to the suction fan 91, and the other end of the flexible hose 921 extends along the length of the cutting machine body 3 to the head position of the cutting machine body 3 and is connected to the rigid pipe 922. The other end of the rigid pipe 922 faces the cutting position of the cutting machine body 3.

[0051] In practical use, the suction fan 91 and suction pipe 92 work together to clean the wire ends cut by the cutting machine body 3, eliminating the need for manual cleaning, saving a lot of time and improving processing efficiency. Furthermore, the flexibility of the flexible hose 921 makes it easier to connect to the suction fan 91, easily adapting to different installation positions and angles, simplifying the installation process. The rigid pipe 922 provides a stable collection port for cleaning wire ends, is not easily deformed, and ensures efficient collection.

[0052] The implementation principle of a garment laser template machine capable of simultaneously sewing and cutting fabric according to an embodiment of this application is as follows: When it is necessary to change to different sizes of garments for sewing or cutting, the operator can measure the position of the template 4 to be placed through the scale line 54 on the fixed seat 51, thereby calculating the placement position of the template 4 through the scale line 54. Then, by cooperating with the limiting slider 532 and the limiting slide rail 533, the distance between the two limiting posts 531 is adjusted to match the length of the template 4. The operator places the template 4 into the fixed seat 51 and fixes it by the fixed drive component 52. When the template 4 is repeatedly changed to process new garments, the limiting component 53 ensures that the position of the template 4 is accurate each time.

[0053] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be covered within the scope of protection of this application.

Claims

1. A garment laser template machine capable of simultaneously sewing and cutting away fabric, characterized by: The utility model provides a kind of sewing machine and cutting machine integrated workbench, including workbench (1), the workbench (1) is provided with sewing machine body (2), cutting machine body (3), template (4), fixed mechanism (5), transverse moving mechanism (6) and longitudinal moving mechanism (7), the sewing machine body (2), cutting machine body (3), template (4), fixed mechanism (5) and transverse moving mechanism (6) are all set on workbench (1) upper surface, longitudinal moving mechanism (7) is set on workbench (1) lower surface, fixed mechanism (5) and transverse moving mechanism (6) are all along the width direction of workbench (1) are set, and fixed mechanism (5) and transverse moving machine are all set below the output end of sewing machine body (2) and cutting machine body (3), the transverse moving mechanism (6) drives fixed mechanism (5) and template (4) to move transversely, longitudinal moving mechanism (7) is along the width direction of workbench (1) is set, longitudinal moving mechanism (7) drives transverse moving mechanism (6), fixed mechanism (5) and template (4) to move longitudinally; The fixed mechanism (5) includes fixed seat (51), a plurality of fixed driving elements (52) and limiting components (53) are arranged on the fixed seat (51), the template (4) is fixedly arranged on the fixed seat (51) by the fixed driving elements (52), the fixed seat (51) is provided with a scale line (54), and the limiting components (53) are adjusted to limit and fix the position of the template (4) after calculating the good position by the scale line (54).

2. The garment laser marker of claim 1, wherein: The fixed seat (51) is in U shape, and the opening side of the fixed seat (51) faces the direction of the template (4), a plurality of the fixed driving elements (52) are sequentially and spacedly arranged on the inner top surface of the fixed seat (51) along the length direction of the fixed seat (51), and the template (4) is arranged on the inner bottom surface of the fixed seat (51). The limiting components (53) include two limiting columns (531), two limiting sliding blocks (532) and a limiting sliding rail (533), the limiting sliding rail (533) is arranged on the top of the fixed seat (51) near the side of the template (4) along the length direction of the fixed seat (51), the two limiting sliding blocks (532) are slidably arranged on the limiting sliding rail (533), the two limiting columns (531) are respectively arranged on the side of the two limiting sliding blocks (532) close to the template (4), so that the limiting columns (531) are moved and adjusted on the limiting sliding rail (533) through the limiting sliding blocks (532), and the two limiting columns (531) limit the two sides of the template (4) on the opposite side, and the scale line (54) is arranged on the top of the fixed seat (51) away from the side of the template (4) along the length direction of the fixed seat (51).

3. The garment laser marker of claim 1, wherein: The transverse moving mechanism (6) comprises a transverse moving seat (61), a transverse sliding block (62), a transverse lead screw (63) and a transverse driving element (64), the transverse moving seat (61) is arranged on the upper surface of the workbench (1) in the width direction, the transverse lead screw (63) is rotatably arranged in the transverse moving seat (61), the transverse sliding block (62) is threadedly connected to the transverse lead screw (63), the transverse driving element (64) is rotatably connected to the transverse lead screw (63), one end of the fixed seat (51) is fixedly connected to the transverse sliding block (62), the transverse driving element (64) drives the transverse lead screw (63) to rotate, so that the transverse sliding block (62) moves, thereby driving the fixed seat (51) to move transversely.

4. The garment laser marker of claim 3, wherein: The longitudinal moving mechanism (7) comprises a longitudinal lead screw (71), a longitudinal sliding block (72) and a longitudinal driving element (73), the longitudinal lead screw (71) is arranged on the lower surface of the workbench (1) in the length direction, the longitudinal sliding block (72) is threadedly connected to the longitudinal lead screw (71), the longitudinal driving element (73) is rotatably connected to the longitudinal lead screw (71), the workbench (1) is provided with a moving port (77), the top of the longitudinal sliding block (72) is fixedly connected to the bottom of the transverse moving seat (61) through the moving port (77), so that the longitudinal driving element (73) drives the longitudinal lead screw (71) to rotate, so that the longitudinal sliding block (72) moves, thereby driving the transverse moving seat (61) to move longitudinally.

5. The garment laser marker of claim 4, wherein: The longitudinal lead screw (71) has two longitudinal lead screws (71) arranged at intervals, and correspondingly, the longitudinal sliding block (72) and the moving port (77) also have two longitudinal sliding blocks (72) and two moving ports (77), the bottom of the transverse moving seat (61) is fixedly connected to the two longitudinal sliding blocks (72) through the two moving ports (77).

6. The garment laser marker of claim 1, wherein: The workbench (1) is further provided with an air suction assembly (9), the air suction assembly (9) comprises an air suction fan (91) and an air suction pipe (92), the air suction fan (91) is arranged at the bottom of the workbench (1), one end of the air suction pipe (92) is in communication with the air suction fan (91), the other end of the air suction pipe (92) is arranged at one side of the cutting machine body (3), and the air suction fan (91) and the air suction pipe (92) are used to clean the garment thread cut by the cutting machine body (3).

7. A garment laser marker as claimed in claim 6, wherein: The air suction pipe (92) comprises a soft pipe (921) and a hard pipe (922) connected and integrated, one end of the soft pipe (921) is in communication with the air suction fan (91), the other end of the soft pipe (921) extends to the position of the machine head of the cutting machine body (3) along the length direction of the cutting machine body (3) and is in communication with the hard pipe (922), and the other end of the hard pipe (922) faces the cutting position of the cutting machine body (3).

8. The garment laser marker of claim 1, wherein: The sewing machine body (2) and the cutting machine body (3) are provided with a programming controller (8), and the programming controller (8) is used to control the overall machining action of the equipment.