Automatic lifting thread groove for improving suture shooting definition and intelligent suture cabinet

The automatic lifting thread groove design solves the problem of inconvenient adjustment of sewing thread roll height, and achieves efficient automation of thread color matching and improved image clarity.

CN223500874UActive Publication Date: 2025-10-31浙江海蜂智能科技有限公司
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Patent Information

Application Number
CN202422782103.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-10-31
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

The height adjustment of the sewing thread roll in the existing intelligent sewing cabinet is inconvenient, which affects the efficiency of thread color matching.

Method used

An automatic lifting thread trough is adopted, which combines linear guide rails and connecting sliders with the drive assembly to achieve automatic adjustment of the sewing thread roll height, ensuring the clarity of the colorimeter camera's focus position.

Benefits of technology

It enables automatic adjustment of the sewing thread roll height, improves the efficiency of thread color matching and image clarity, and reduces the complexity of manual intervention and equipment disassembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic lifting thread groove for improving the sewing thread shooting definition and an intelligent sewing thread cabinet in the technical field of garment sewing. The automatic lifting thread groove comprises a thread groove shell, and the thread groove shell is provided with a groove cavity used for containing a sewing thread coil; the lifting supporting plate is horizontally contained in the groove cavity; the linear guide rail is accommodated in the slot cavity and is fixedly connected with the wire slot shell; one end of the connecting sliding block is in sliding connection with the linear guide rail in the vertical direction, and the other end of the connecting sliding block is fixedly connected with the lifting supporting plate; the driving assembly is installed between the lifting supporting plate and the wire duct shell and can drive the lifting supporting plate to ascend and descend. According to the utility model, the height of the sewing thread can be automatically adjusted, and the color of the detected sewing thread can be conveniently and quickly identified, so that the colorimetric efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of garment sewing technology, specifically to an automatic lifting thread trough and intelligent sewing cabinet for improving the clarity of sewing line photography. Background Technology

[0002] In garment factory pattern rooms, sample garment production requires pattern makers to match the corresponding color of thread to the sample fabric. Especially in large and medium-sized pattern rooms, there are a large number of pattern makers, ranging from a hundred to several hundred, and hundreds or even thousands of different types of thread. Pattern makers need to rely on experience to compare the colors of the sample fabric and the thread. Manual color matching is time-consuming and laborious. Moreover, with the many types and colors of thread, and the differences in each person's eyes, different people may find different threads on the same sample fabric, resulting in inconsistent sample garment production standards. At the same time, the results of manual color matching are also affected by the employee's mood, the brightness of the ambient light, and the external lighting. If the employee is wearing clothing with high reflectivity, it will also affect the color matching results.

[0003] Patent document CN220854634U discloses an intelligent sewing cabinet. This intelligent sewing cabinet detects the color information of fabric pieces or sewing threads through a colorimetric module. The controller automatically and accurately locates the corresponding sewing thread stored in the sewing thread storage cabinet, allowing users to conveniently, quickly, and accurately find the sewing thread and avoiding the errors that occur with manual identification. However, in actual use, this intelligent sewing cabinet still has the following technical problems: the size and height of the sewing thread rolls used in different pattern-making rooms are different, and the focal length of the colorimetric camera installed on the intelligent sewing cabinet is fixed and cannot be adjusted. The colorimetric module needs to keep the sewing thread rolls at the same height to collect clear image data. However, the thread groove structure of the aforementioned intelligent sewing cabinet is complex, and the thread groove needs to be removed from the cabinet to adjust the height of the sewing thread rolls, resulting in inconvenience in adjusting the height of the sewing thread rolls and seriously affecting the color matching efficiency of the sewing threads.

[0004] Therefore, how to achieve automatic adjustment of the height of the sewing thread roll in the thread groove has become a technical problem that urgently needs to be solved by those skilled in the art. Summary of the Invention

[0005] In view of this, the purpose of this utility model is to provide an automatic lifting thread trough for improving the clarity of sewing thread photography, so as to solve the technical problem of inconvenient adjustment of sewing thread roll height in existing intelligent sewing cabinets.

[0006] The technical solution adopted in this utility model is an automatic lifting groove for improving the clarity of suture photography, the automatic lifting groove comprising:

[0007] A thread trough housing having a cavity for accommodating a spool of sewing thread;

[0008] A lifting tray, which is horizontally housed in a groove cavity;

[0009] A linear guide rail, wherein the linear guide rail is housed in a slot cavity and fixedly connected to the outer shell of the slot;

[0010] A connecting slider is provided, one end of which is slidably connected to a linear guide rail in the vertical direction, and the other end of which is fixedly connected to a lifting support plate.

[0011] A drive assembly is installed between the lifting tray and the cable tray housing and is capable of driving the lifting tray to rise and fall.

[0012] Preferably, the drive assembly includes a drive motor, a moving gear, and a stationary rack. The stationary rack is arranged vertically and fixedly connected to the wire groove housing. The drive motor is located below the lifting pallet and fixedly connected to the lifting pallet. The moving gear is mounted on the power output shaft of the drive motor and meshes with the stationary rack for transmission.

[0013] Preferably, the drive assembly includes a drive motor, a transmission screw, and a lifting slider. The transmission screw is arranged vertically and rotatably connected to the outer shell of the wire groove. The lifting slider is mounted on the transmission screw and fixedly connected to the lifting support plate. The drive motor is fixedly connected to the outer shell of the wire groove, and the power output shaft of the drive motor is connected to the bottom end of the transmission screw.

[0014] Preferably, the drive assembly includes a drive motor, a timing belt, and a connecting plate. The timing belt is arranged vertically and connected to the outer shell of the wire groove. The drive motor is fixedly installed on the outer shell of the wire groove and is drivenly connected to the bottom end of the timing belt. One end of the connecting plate is fixedly connected to one side of the timing belt, and the other end of the connecting plate is fixedly connected to the lifting support plate.

[0015] Preferably, the drive assembly includes a linear motor, which is arranged vertically, with its fixed part fixedly connected to the outer shell of the wire groove and its movable part fixedly connected to the lifting support plate.

[0016] Preferably, the lifting platform is fixedly connected to a vertical column for horizontal positioning of the sewing thread roll.

[0017] Preferably, an upper limit switch and a lower limit switch are installed on the outer casing of the wire trough.

[0018] Preferably, the upper limit switch and the lower limit switch are photoelectric sensors.

[0019] Preferably, an L-shaped support plate is provided below the lifting pallet. The L-shaped support plate includes a horizontal section and a vertical section that are vertically fixedly connected. The horizontal section is detachably fixedly connected to the lifting pallet, and the vertical section is detachably fixedly connected to the connecting slider.

[0020] The second objective of this utility model is to provide an intelligent sewing cabinet, including the aforementioned automatic lifting trough for improving the clarity of sewing photography, a cabinet body, and a colorimeter camera. The automatic lifting trough is fixedly connected to the cabinet body, the colorimeter camera is fixedly connected to the cabinet body, and the colorimeter camera is located directly above the automatic lifting trough.

[0021] The beneficial effects of this utility model are:

[0022] This invention employs an automatic lifting mechanism. A lifting support plate is housed within the cavity of the thread trough housing. The lifting support plate is slidably connected to the thread trough housing in a vertical direction via a linear guide rail and a connecting slider. A drive assembly is installed between the lifting support plate and the thread trough housing. This drive assembly can raise and lower the lifting support plate, thereby automatically adjusting the height of the sewing thread roll on the lifting support plate. This allows the sewing thread roll to be quickly raised and lowered to the focal position of the colorimeter camera, achieving the purpose of adjusting image clarity. Attached Figure Description

[0023] Figure 1 This is one of the structural schematic diagrams of the automatic lifting groove for improving the clarity of sewing images according to this utility model;

[0024] Figure 2 This is one of the schematic diagrams of the internal structure of the automatic lifting groove for improving the clarity of sewing images according to this utility model;

[0025] Figure 3 This is the second schematic diagram of the automatic lifting groove for improving the clarity of sewing line photography according to this utility model;

[0026] Figure 4 This is the second schematic diagram of the internal structure of the automatic lifting groove for improving the clarity of sewing images according to this utility model;

[0027] Figure 5 This is the third schematic diagram of the automatic lifting groove for improving the clarity of stitch photography according to this utility model;

[0028] Figure 6 This is the third schematic diagram of the internal structure of the automatic lifting groove for improving the clarity of sewing images according to this utility model;

[0029] Figure 7 This is the fourth structural schematic diagram of the automatic lifting groove for improving the clarity of sewing line photography according to this utility model;

[0030] Figure 8 This is the fourth schematic diagram of the internal structure of the automatic lifting groove for improving the clarity of sewing images according to this utility model;

[0031] Figure 9This is a structural diagram of an intelligent sewing cabinet.

[0032] Explanation of the reference numerals in the figure:

[0033] 100. Automatic lifting cable tray;

[0034] 110. Cable tray housing; 120. Lifting support plate; 130. Linear guide rail; 140. Connecting slider; 150. Drive assembly; 160. Vertical column; 170. L-shaped support plate;

[0035] 111. Slot cavity; 112. Upper limit switch; 113. Lower limit switch; 151. Drive motor; 152. Moving gear; 153. Stationary rack; 154. Transmission screw; 155. Lifting slider; 156. Synchronous belt; 157. Connecting plate; 158. Linear motor;

[0036] 200. Cabinet;

[0037] 300. Camera. Detailed Implementation

[0038] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings. These embodiments are only used to illustrate this utility model and are not intended to limit it.

[0039] In the description of this utility model, it should be noted that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this utility model. In addition, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0040] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0041] Furthermore, in the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0042] Examples, such as Figures 1-9 As shown, an automatic lifting thread trough for improving the clarity of sewing thread photography is used to automatically raise and lower the sewing thread spool to the focal height of the colorimeter camera 300 when the colorimeter camera 300 is taking colorimetric photographs of the sewing thread spool. The automatic lifting thread trough 100 includes: a thread trough housing 110, a lifting support plate 120, a linear guide rail 130, a connecting slider 140, and a drive assembly 150.

[0043] The thread trough housing 110 has a top opening and a cavity 111 for accommodating a spool of sewing thread.

[0044] The lifting pallet 120 is horizontally housed in the slot cavity 111.

[0045] The linear guide 130 is housed in the slot cavity 111 and is fixedly connected to the slot housing 110.

[0046] One end of the connecting slider 140 is slidably connected to the linear guide rail 130 in the vertical direction, and the other end of the connecting slider 140 is fixedly connected to the lifting plate 120 so that the lifting plate 120 and the wire groove housing 110 can move relative to each other in the vertical direction.

[0047] The drive assembly 150 is installed between the lifting tray 120 and the thread trough housing 110, and the drive assembly 150 can drive the lifting tray 120 to rise and fall, so as to realize the height adjustment of the sewing thread roll placed on the lifting tray 120.

[0048] This utility model adopts an automatic lifting method. A lifting support plate 120 is placed in the cavity 111 of the wire groove housing 110. The lifting support plate 120 is slidably connected to the wire groove housing 110 in the vertical direction through the linear guide rail 130 and the connecting slider 140. At the same time, a drive component 150 is installed between the lifting support plate 120 and the wire groove housing 110. The drive component 150 can drive the lifting support plate 120 to rise and fall, realize the automatic adjustment of the height of the sewing thread roll on the lifting support plate 120, and quickly raise and lower the sewing thread roll to the focal position of the colorimeter camera 300 to achieve the purpose of adjusting the image clarity.

[0049] Specific embodiment 1, such as Figure 1 and Figure 2 As shown, an automatic lifting groove for improving the clarity of stitch photography is disclosed. The automatic lifting groove 100 includes: a groove housing 110, a lifting support plate 120, a linear guide rail 130, a connecting slider 140, and a drive assembly 150.

[0050] The outer casing 110 of the thread groove is a rectangular structure with an open top, and the interior of the outer casing 110 is hollow and forms a cavity 111 for accommodating the sewing thread roll.

[0051] The lifting pallet 120 is a square plate, which is horizontally housed in the groove 111.

[0052] The number of linear guides 130 is at least two, and multiple linear guides 130 (also called linear rails) are housed in the groove cavity 111. The linear guides 130 are arranged vertically on the inner wall of the groove housing 110, and the linear guides 130 are detachably and fixedly connected to the groove housing 110.

[0053] The number of connecting sliders 140 is equal to the number of linear guides 130, and there is a one-to-one correspondence between the connecting sliders 140 and the linear guides 130. One end of the connecting slider 140 is slidably connected to the linear guide 130, and the other end of the connecting slider 140 is fixedly connected to the lifting plate 120, so that the lifting plate 120 and the wire groove housing 110 can move relative to each other in the vertical direction.

[0054] The drive assembly 150 includes a drive motor 151, a moving gear 152, and a stationary rack 153. The stationary rack 153 is vertically positioned between two linear guide rails 130 and is mounted on the inner wall of the thread trough housing 110 and fixedly connected to the thread trough housing 110. The drive motor 151 is located below the lifting pallet 120 and is fixedly connected to the lifting pallet 120. The moving gear 152 is mounted on the power output shaft of the drive motor 151 and meshes with the stationary rack 153 to drive the lifting pallet 120 to rise and fall smoothly, thereby achieving height adjustment of the sewing thread roll placed on the lifting pallet 120.

[0055] Preferably, a vertical column 160 is fixedly connected to the lifting pallet 120, and the bottom end of the vertical column 160 is vertically fixedly connected to the lifting pallet 120 for horizontal positioning of the sewing thread roll placed on the lifting pallet 120.

[0056] Specific embodiment 2, such as Figure 3 and Figure 4 As shown, an automatic lifting groove for improving the clarity of stitch photography is disclosed. The automatic lifting groove 100 includes: a groove housing 110, a lifting support plate 120, a linear guide rail 130, a connecting slider 140, and a drive assembly 150.

[0057] The thread trough housing 110 has a top opening and a cavity 111 for accommodating a spool of sewing thread.

[0058] The lifting plate 120 is a rectangular plate, which is horizontally housed in the groove 111.

[0059] The number of linear guides 130 is at least two, and the multiple linear guides 130 are housed in the groove cavity 111. The linear guides 130 are arranged vertically on the inner wall of the groove housing 110, and the linear guides 130 are detachably and fixedly connected to the groove housing 110.

[0060] It should be noted that the linear guide rail 130 can be fixedly connected to the wire groove housing 110 on one side of the lifting pallet 120, or it can be fixedly connected to the wire groove housing 110 on both sides of the lifting pallet 120.

[0061] The number of connecting sliders 140 is equal to the number of linear guides 130, and there is a one-to-one correspondence between the connecting sliders 140 and the linear guides 130. One end of the connecting slider 140 is slidably connected to the linear guide 130, and the other end of the connecting slider 140 is fixedly connected to the vertical section of the L-shaped support plate 170. The lifting plate 120 is located directly above the horizontal section of the L-shaped support plate 170, and the lifting plate 120 is detachably fixedly connected to the horizontal section of the L-shaped support plate 170 so that the lifting plate 120 and the wire groove housing 110 can move relative to each other in the vertical direction.

[0062] The drive assembly 150 is installed between the lifting pallet 120 and the wire trough housing 110. The rectangular plate includes a drive motor 151, a transmission screw 154, and a lifting slider 155. The transmission screw 154 is arranged vertically, and its two ends are rotatably connected to the wire trough housing 110 through bearing seats. The lifting slider 155 is installed on the transmission screw 154 and is fixedly connected to one end of the lifting pallet 120. The drive motor 151 is located directly below the transmission screw 154 and is fixedly connected to the wire trough housing 110. The power output shaft of the drive motor 151 is connected to the bottom end of the transmission screw 154 through a coupling, so that the drive motor 151 drives the lifting pallet 120 to rise and fall smoothly through the screw drive, thereby realizing the height adjustment of the sewing thread roll placed on the lifting pallet 120.

[0063] Specific embodiment 3, such as Figure 5 and Figure 6 As shown, an automatic lifting groove for improving the clarity of stitch photography is disclosed. The automatic lifting groove 100 includes: a groove housing 110, a lifting support plate 120, a linear guide rail 130, a connecting slider 140, and a drive assembly 150.

[0064] The outer shell 110 of the thread trough is a shell structure formed by connecting four rectangular plates end to end. The inner cavity of the shell structure is a groove 111 for accommodating the sewing thread roll.

[0065] The lifting platform 120 is a plate arranged in a horizontal direction. The plate is located in the cavity 111, and the horizontal dimension of the plate is smaller than the horizontal dimension of the cavity 111.

[0066] The number of linear guides 130 is at least two, and the multiple linear guides 130 are housed in the groove cavity 111. The linear guides 130 are arranged vertically on the inner wall of the groove housing 110, and the linear guides 130 are detachably and fixedly connected to the groove housing 110.

[0067] The number of connecting sliders 140 is equal to the number of linear guides 130, and there is a one-to-one correspondence between the connecting sliders 140 and the linear guides 130. One end of the connecting slider 140 is slidably connected to the linear guide 130, and the other end of the connecting slider 140 is fixedly connected to the vertical section of the L-shaped support plate 170. The lifting plate 120 is located directly above the horizontal section of the L-shaped support plate 170, and the lifting plate 120 is detachably fixedly connected to the horizontal section of the L-shaped support plate 170 so that the lifting plate 120 and the wire groove housing 110 can move relative to each other in the vertical direction.

[0068] The drive assembly 150 is installed between the lifting pallet 120 and the trough housing 110. The drive assembly 150 is an electric drive assembly, which includes a drive motor 151, a synchronous belt 156, and a connecting plate 157. The synchronous belt 156 includes a belt, a drive pulley, and a driven pulley. The driven pulley is located directly above the drive pulley and is connected to the trough housing 110. The drive motor 151 is located on the side of the drive pulley away from the trough housing 110. The drive motor 151 is fixedly connected to the trough housing 110 through a fixing bracket, and the drive pulley is fixedly mounted on the power output shaft of the drive motor 151. The belt drive is connected between the drive pulley and the driven pulley, and the belt is fixedly connected to one end of the connecting plate 157. The other end of the connecting plate 157 is fixedly connected to the lifting pallet 120, so that the drive motor 151 drives the lifting pallet 120 to rise and fall smoothly through the belt drive, thereby realizing the height adjustment of the sewing thread roll placed on the lifting pallet 120.

[0069] Preferably, the drive motor 151 is a stepper motor.

[0070] Specific embodiment 4, such as Figure 7 and Figure 8 As shown, an automatic lifting groove for improving the clarity of stitch photography is provided. The automatic lifting groove 100 includes: a groove housing 110, a lifting support plate 120, a linear guide rail 130, a connecting slider 140, a drive assembly 150, and a vertical column 160.

[0071] The thread trough housing 110 has a top opening and a cavity 111 for accommodating a spool of sewing thread.

[0072] The lifting plate 120 is a rectangular plate, which is horizontally housed in the groove 111.

[0073] The number of linear guides 130 is at least two, and the multiple linear guides 130 are housed in the groove cavity 111. The linear guides 130 are arranged vertically on the inner wall of the groove housing 110, and the linear guides 130 are detachably and fixedly connected to the groove housing 110.

[0074] The number of connecting sliders 140 is equal to the number of linear guides 130, and there is a one-to-one correspondence between the connecting sliders 140 and the linear guides 130. One end of the connecting slider 140 is slidably connected to the linear guide 130, and the other end of the connecting slider 140 is fixedly connected to the vertical section of the L-shaped support plate 170. The lifting plate 120 is located directly above the horizontal section of the L-shaped support plate 170, and the lifting plate 120 is detachably fixedly connected to the horizontal section of the L-shaped support plate 170 so that the lifting plate 120 and the wire groove housing 110 can move relative to each other in the vertical direction.

[0075] The drive assembly 150 includes a linear motor 158, which is vertically disposed on the inner wall of the wire trough housing 110. The fixed part of the linear motor 158 is fixedly connected to the wire trough housing 110, and the moving part of the linear motor 158 is fixedly connected to the lifting support plate 120.

[0076] Preferably, an upper limit switch 112 and a lower limit switch 113 are installed on the housing 110 of the wire groove. The upper limit switch 112 is used to detect the upper limit height of the lifting pallet 120 to prevent the sewing thread roll from colliding with the colorimeter camera 300 due to excessive height. The lower limit switch 113 is used to detect the lower limit height of the lifting pallet 120 to enable the lifting pallet 120 to quickly return to the original position.

[0077] Specifically, both the upper limit switch 112 and the lower limit switch 113 are photoelectric sensors.

[0078] Examples, such as Figure 9 As shown, an intelligent sewing cabinet includes the aforementioned automatic lifting sewing trough 100, cabinet body 200, and colorimeter camera 300. The automatic lifting sewing trough 100 is fixedly connected to the cabinet body 200, and the colorimeter camera 300 is fixedly connected to the cabinet body 200, with the colorimeter camera 300 located directly above the automatic lifting sewing trough 100.

[0079] The working process of this intelligent sewing cabinet is as follows:

[0080] The sewing thread roll is placed into the cavity 111 of the automatic lifting thread trough 100. The automatic adjustment function is activated through the control panel. The lifting plate 120 is lowered to the origin position under the drive of the drive component 150. Then, the drive component 150 drives the lifting plate 120 to rise slowly. The colorimetric camera 300 continuously captures sewing thread images. The control host controls the drive motor to rotate forward or backward according to the clarity of the captured sewing thread images to adjust the height of the sewing thread roll. By comparing the clarity of the sewing thread images at different heights, the optimal clarity height is obtained. The adjustment is stopped and the parameters are saved. The sewing thread color data with the optimal clarity is captured by taking a picture.

[0081] Compared with the prior art, the present invention has at least the following beneficial technical effects:

[0082] This invention enables automatic adjustment of suture height, facilitating quick and easy identification of the color of the suture being tested, thereby improving color matching efficiency.

[0083] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.

Claims

1. An automatic lifting groove for improving the clarity of stitch photography, characterized in that, The automatic lifting cable tray (100) includes: A thread trough housing (110) having a cavity (111) for accommodating a spool of sewing thread; A lifting pallet (120) is horizontally housed in a groove cavity (111); A linear guide (130) is housed in a slot cavity (111) and fixedly connected to the slot housing (110); A connecting slider (140) is provided, one end of which is slidably connected to a linear guide rail (130) in the vertical direction, and the other end of which is fixedly connected to a lifting support plate (120). A drive assembly (150) is installed between the lifting pallet (120) and the cable tray housing (110) and is capable of driving the lifting pallet (120) to rise and fall.

2. The automatic lifting groove for improving the clarity of stitch photography according to claim 1, characterized in that, The drive assembly (150) includes a drive motor (151), a moving gear (152), and a stationary rack (153). The stationary rack (153) is arranged vertically and fixedly connected to the wire groove housing (110). The drive motor (151) is located below the lifting pallet (120) and fixedly connected to the lifting pallet (120). The moving gear (152) is mounted on the power output shaft of the drive motor (151) and meshes with the stationary rack (153) for transmission.

3. The automatic lifting groove for improving the clarity of stitch photography according to claim 1, characterized in that, The drive assembly (150) includes a drive motor (151), a transmission screw (154), and a lifting slider (155). The transmission screw (154) is arranged vertically and rotatably connected to the wire groove housing (110). The lifting slider (155) is mounted on the transmission screw (154) and fixedly connected to the lifting support plate (120). The drive motor (151) is fixedly connected to the wire groove housing (110), and the power output shaft of the drive motor (151) is connected to the bottom end of the transmission screw (154).

4. An automatic lifting groove for improving the clarity of stitch photography according to claim 1, characterized in that, The drive assembly (150) includes a drive motor (151), a timing belt (156), and a connecting plate (157). The timing belt (156) is arranged vertically and connected to the cable tray housing (110). The drive motor (151) is fixedly installed on the cable tray housing (110) and is drivenly connected to the bottom end of the timing belt (156). One end of the connecting plate (157) is fixedly connected to one side of the timing belt (156), and the other end of the connecting plate (157) is fixedly connected to the lifting support plate (120).

5. An automatic lifting groove for improving the clarity of stitch photography according to claim 1, characterized in that, The drive assembly (150) includes a linear motor (158) arranged in a vertical direction. The fixed part of the linear motor (158) is fixedly connected to the wire groove housing (110), and the moving part of the linear motor (158) is fixedly connected to the lifting plate (120).

6. An automatic lifting groove for improving the clarity of stitch photography according to claim 1, characterized in that, A vertical column (160) for horizontally positioning the sewing thread roll is fixedly connected to the lifting plate (120).

7. An automatic lifting groove for improving the clarity of stitch photography according to claim 1, characterized in that, An upper limit switch (112) and a lower limit switch (113) are installed on the cable tray housing (110).

8. An automatic lifting groove for improving the clarity of stitch photography according to claim 7, characterized in that, The upper limit switch (112) and the lower limit switch (113) are photoelectric sensors.

9. An automatic lifting groove for improving the clarity of stitch photography according to claim 1, characterized in that, An L-shaped support plate (170) is provided below the lifting plate (120). The L-shaped support plate (170) includes a horizontal section and a vertical section that are vertically fixedly connected. The horizontal section is detachably fixedly connected to the lifting plate (120), and the vertical section is detachably fixedly connected to the connecting slider (140).

10. A smart sewing cabinet, comprising the automatic lifting trough for improving the clarity of sewing photography as described in any one of claims 1-9, characterized in that, It also includes a cabinet (200) and a colorimeter camera (300), wherein the automatic lifting cable tray (100) is fixedly connected to the cabinet (200), the colorimeter camera (300) is fixedly connected to the cabinet (200), and the colorimeter camera (300) is located directly above the automatic lifting cable tray (100).

Citation Information

Patent Citations

  • Intelligent sewing cabinet

    CN220854634U