An inspection device for the production of waterproof bag lining polyester fabric

CN224633733UActive Publication Date: 2026-08-14CHANGXING HONGFENG PRINTING & DYEING
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提供一种防水箱包内衬涤纶面料生产用检验装置,以解决上述背景技术中提出的该检测装置在调节放大镜的高度位置时,锁定需要工作人员逐圈的绕转对应的定位螺栓取下后,将放大镜提起至合适位置后,一只手将其托举住保持在原位,再将定位螺栓塞入对应的螺纹孔处逐圈绕转重新进行锁定,调节较为费时繁琐,进而影响了调节效率的问题

Benefits of technology

[0015]本实用新型中,通过将面料至于底座上,随后开启照明灯对面料进行照明,工作人员可经过放大镜进行观察,握住握把可带动限位柱扭转,凸字形的限位柱可带动限位筒和活动盘进行旋转,使得活动辊随之逐圈旋转,将拉绳一圈一圈缠绕在其表面,利用滑移组件带动活动架进行活动,收卷组件控制滑移组件的位置,结构简单、操作方便,工作人员可快速调整放大镜的高度位置,减轻了工作人员的劳动量,操作省时省力,提高了调节效率。

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Abstract

This utility model relates to the field of fabric production technology, specifically to an inspection device for the production of waterproof bag lining polyester fabric. It includes a base, with multiple sets of side plates installed at both ends of the outer wall of the base. Adjacent sets of side plates are rotatably connected by take-up and release rollers. Columns are installed at both ends of the top of the base, with sliding grooves at the top of each column. A movable frame is mounted on the sliding groove via a telescopic adjustment mechanism. A magnifying glass is installed at one bottom end of the movable frame. A light is embedded in the center of the top of the base. The telescopic adjustment mechanism includes a sliding component and a take-up component, with the sliding component driving the movable frame. This utility model has a simple structure and is easy to operate. Workers can quickly adjust the height of the magnifying glass, reducing workload and saving time and effort, thus improving adjustment efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of fabric production technology, specifically to an inspection device for the production of waterproof bag lining polyester fabric. Background Technology

[0002] To maintain competitiveness, textile companies continuously innovate their products to attract consumers. The development and application of polyester fabrics have provided new market opportunities for these companies. Some large textile enterprises have increased their R&D investment to develop functional and fashionable polyester fabrics, thereby increasing their market share. As market demand increases, the production scale of polyester fabrics expands and costs decrease, attracting more companies to join and driving the development of the entire industry. During the production and processing of polyester fabrics, inspection equipment is often required to inspect the fabrics. The current method of fabric inspection often involves passing the fabric through a illuminated workbench, where workers observe the fabric and label it when defects are found so that the defective fabric can be cut off later. However, existing fabric inspection equipment has the following problems: it is not convenient to observe the fabric, so workers cannot find all the defective parts of the fabric, affecting the quality of the fabric.

[0003] To address the aforementioned technical issues, Chinese Patent No. CN212955876U discloses an inspection device for the production of waterproof bag lining polyester fabric. The device includes a machine body with an inspection light on the top and guide rollers symmetrically arranged at both ends. A storage rod is located in the middle of both sides of the machine body, with a magnifying glass at the top of the storage rod. Two support rods are symmetrically arranged at one end of the machine body along the lower part of the guide rollers, and a locking rod is symmetrically arranged at the other end along the bottom of the guide rollers.

[0004] While the aforementioned existing technical solution enables the fabric inspection device to stably pass the fabric through the inspection workbench and ensure the inspection effect, the locking process for adjusting the height of the magnifying glass requires the operator to remove the corresponding positioning bolts by rotating them one by one, lift the magnifying glass to the appropriate position, hold it in place with one hand, and then insert the positioning bolts into the corresponding threaded holes and rotate them one by one to re-lock it. This adjustment is time-consuming and cumbersome, which affects the adjustment efficiency. Utility Model Content

[0005] The purpose of this utility model is to provide an inspection device for the production of waterproof bag lining polyester fabric, in order to solve the problem mentioned in the background art that when adjusting the height of the magnifying glass, the operator needs to rotate the corresponding positioning bolts one by one to remove them, lift the magnifying glass to the appropriate position, hold it in place with one hand, and then insert the positioning bolts into the corresponding threaded holes and rotate them one by one to re-lock it. This adjustment is time-consuming and cumbersome, which affects the adjustment efficiency.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] An inspection device for the production of waterproof bag lining polyester fabric includes a base. Multiple sets of side plates are installed at both ends of the outer wall of the base. A take-up / release roller is rotatably connected between adjacent sets of side plates. Columns are installed at both ends of the top of the base. A sliding groove is formed at the top of each column. A movable frame is installed on the sliding groove via a telescopic adjustment mechanism. A magnifying glass is installed at one bottom end of the movable frame. A light is embedded in the center of the top of the base. The telescopic adjustment mechanism includes a sliding component and a take-up component. The sliding component drives the movable frame to move, and the take-up component controls the position of the sliding component.

[0008] As a preferred embodiment of this utility model, the sliding assembly includes a sliding column slidably connected to the inner side of the sliding groove. A first spring is installed between the bottom two ends of the sliding column and the inner wall of the sliding groove. The other end of the sliding column is fixedly connected to one end of the movable frame.

[0009] As a preferred embodiment of this utility model, the winding assembly includes a fixing rod installed on one side of the outer wall of one of the columns, and a fixing plate installed on the other end of the fixing rod. An annular groove is formed on one side of the outer wall of the fixing plate.

[0010] As a preferred embodiment of this utility model, a movable disc is rotatably connected to the center of the fixed plate, a movable roller is installed between one side of the movable disc and the column, a limiting cylinder is installed at the center of the other side of the outer wall of the movable disc, a limiting post is slidably connected to the inner side of the limiting cylinder, and the side cross-section of the limiting post is convex.

[0011] As a preferred embodiment of this utility model, a connecting seat is installed at the other end of the limiting post, a handle is installed at the other end of the connecting seat, a push rod is installed on the outer wall of the connecting seat on one side of the limiting post, a rubber column is installed at the other end of the push rod, the rubber column is slidably connected to the annular groove, a pull rope is installed on one side of the outer side of the sliding post, an extension hole is opened at one end of the column, the pull rope is slidably connected to the extension hole, and the other end of the pull rope is fixedly connected to one side of the outer wall of the movable roller.

[0012] As a preferred embodiment of this utility model, a docking seat is installed on the outer wall of the movable disc on the other side of the limiting cylinder. A splicing groove is provided on one side of the docking seat. A splicing block that is slidably connected to the splicing groove is installed on the outer wall of the connecting seat away from the push rod. An extrusion groove is provided inside the docking seat on one side of the splicing groove. An extrusion plate is slidably connected to the inner side of the extrusion groove.

[0013] As a preferred embodiment of this utility model, a second spring is installed between one side of the outer wall of the extrusion plate and the inner wall of the extrusion groove. A drag rod is installed on one side of the outer wall of the extrusion plate. A pull ring is rotatably connected to one end of the drag rod extending to the outside of the docking seat. A hanging rod is installed on the outer wall of the docking seat on one side of the drag rod. A drag groove extending to the inside of the extrusion groove is opened on one side of the outer wall of the docking seat. The drag groove and the drag rod are slidably connected. Corresponding inclined surfaces are opened at the opposite ends of the extrusion plate and the splicing block. A magnetic block is embedded in the bottom end of the splicing block. An iron block that is attracted to the magnetic block is embedded in the other side of the inner wall of the splicing groove.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] In this invention, the fabric is placed on the base, and then illuminated by a light. The worker can observe the fabric through a magnifying glass. Holding the handle can rotate the limiting post, which in turn rotates the limiting cylinder and the movable disc, causing the movable roller to rotate round by round, winding the pull rope around its surface. The sliding component drives the movable frame to move, and the winding component controls the position of the sliding component. The structure is simple and easy to operate. The worker can quickly adjust the height of the magnifying glass, reducing the workload of the worker, saving time and effort, and improving adjustment efficiency. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a partial three-dimensional structural diagram of the column of this utility model;

[0018] Figure 3 This is a partial cross-sectional view of the docking seat of this utility model;

[0019] Figure 4 This is a partial cross-sectional view of the column structure of this utility model.

[0020] In the diagram: 1. Base; 2. Take-up and take-down rollers; 3. Column; 4. Movable frame; 5. Magnifying glass; 6. Lighting lamp; 7. Sliding column; 8. First spring; 9. Fixing plate; 10. Movable disc; 11. Movable roller; 12. Limiting cylinder; 13. Limiting column; 14. Connecting seat; 15. Rubber column; 16. Pull rope; 17. Docking seat; 18. Splicing block; 19. Extrusion plate; 20. Second spring; 21. Trailing rod; 22. Magnetic block. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0022] Example: Please refer to Figures 1-4 This utility model provides a technical solution:

[0023] An inspection device for the production of waterproof bag lining polyester fabric includes a base 1. Multiple sets of side plates are installed at both ends of the outer wall of the base 1. A take-up / release roller 2 is rotatably connected between adjacent sets of side plates. Columns 3 are installed at both ends of the top of the base 1. A sliding groove is formed at the top of each column 3. A movable frame 4 is installed on the sliding groove via a telescopic adjustment mechanism. A magnifying glass 5 is installed at one bottom end of the movable frame 4. A lighting lamp 6 is embedded in the center of the top of the base 1. The lighting lamp 6 is electrically connected to the controller of the inspection device. The telescopic adjustment mechanism includes a sliding component and a retracting component. The sliding component drives the movable frame 4 to move, and the retracting component controls the position of the sliding component. In use, the device allows the sliding component to drive the movable frame 4 to move, and the retracting component to control the position of the sliding component. The device has a simple structure, is easy to operate, and allows operators to quickly adjust the height of the magnifying glass 5, reducing the workload of operators, saving time and effort, and improving adjustment efficiency.

[0024] In this embodiment, as Figure 1 , Figure 2 and Figure 3 As shown, the sliding assembly includes a sliding column 7 that is slidably connected to the inner side of the sliding groove. A first spring 8 is installed between the bottom two ends of the sliding column 7 and the inner wall of the sliding groove. The other end of the sliding column 7 is fixedly connected to one end of the movable frame 4. First, the fabric is placed on the base 1, and then the lighting lamp 6 is turned on to illuminate the fabric. The staff can observe it through the magnifying glass 5.

[0025] In this embodiment, as Figure 1 , Figure 2 and Figure 3As shown, the winding assembly includes a fixed rod installed on one side of the outer wall of one set of columns 3. A fixed plate 9 is installed at the other end of the fixed rod. An annular groove is formed on one side of the outer wall of the fixed plate 9. A movable disc 10 is rotatably connected to the center of the fixed plate 9. A movable roller 11 is installed between one side of the movable disc 10 and the column 3. A limiting cylinder 12 is installed at the center of the other side of the outer wall of the movable disc 10. A limiting post 13 is slidably connected to the inner side of the limiting cylinder 12. The side cross-section of the limiting post 13 is convex. A connecting seat 14 is installed at the other end of the limiting post 13. A handle is installed at the other end of the connecting seat 14. A push rod is installed on the outer wall of the connecting seat 14 on one side of the limiting post 13. A rubber post 15 is installed at the other end of the push rod. The rubber column 15 is slidably connected to the annular groove. A pull rope 16 is installed on one side of the outer side of the sliding column 7. An extension hole is opened at one end of the column 3. The pull rope 16 is slidably connected to the extension hole. The other end of the pull rope 16 is fixedly connected to one side of the outer wall of the movable roller 11. Then, by holding the handle, the limiting column 13 can be rotated. The U-shaped limiting column 13 can drive the limiting cylinder 12 and the movable disc 10 to rotate, so that the movable roller 11 rotates around the surface one circle at a time, and the pull rope 16 is wound around its surface one circle at a time, dragging the sliding column 7 downward and squeezing the two sets of first springs 8, thereby moving the movable frame 4 and the magnifying glass 5 on it downward. Conversely, releasing the first springs can reset the first springs 8 and drive the sliding column 7 upward and rise.

[0026] In this embodiment, as Figure 2 , Figure 3 and Figure 4 As shown, a docking seat 17 is installed on the outer wall of the movable plate 10 on the other side of the limiting cylinder 12. A splicing groove is opened on one side of the docking seat 17. A splicing block 18 is installed on the outer wall of the connecting seat 14 away from the push rod and is slidably connected to the splicing groove. An extrusion groove is opened inside the docking seat 17 on one side of the splicing groove. An extrusion plate 19 is slidably connected inside the extrusion groove. Further, after adjustment, the handle can be pushed back to drive the splicing block 18 on the connecting seat 14 to slide into the splicing groove. The splicing block 18 and the extrusion plate 19 are released, and the corresponding inclined surfaces abut against each other, so that the extrusion plate 19 retracts to the inside of the extrusion groove and extrudes the second spring 20 to retract until the splicing block 18 is completely pushed in. Then the magnetic block 22 is attracted to the iron block. The reset of the second spring 20 can drive the extrusion plate 19 to pop out and lock the position of the splicing block 18, so that the rubber column 15 on the push rod is pressed tightly inside the annular groove, and the position of the movable frame 4 is fixed.

[0027] In this embodiment, as Figure 2 , Figure 3 and Figure 4As shown, a second spring 20 is installed between one side of the outer wall of the extrusion plate 19 and the inner wall of the extrusion groove. A drag rod 21 is installed on one side of the outer wall of the extrusion plate 19. A pull ring is rotatably connected to one end of the drag rod 21 extending to the outside of the docking seat 17. A hanging rod is installed on the outer wall of the docking seat 17 on one side of the drag rod 21. A drag groove extending to the inside of the extrusion groove is opened on one side of the outer wall of the docking seat 17. The drag groove and the drag rod 21 are slidably connected. Corresponding grooves are opened on the opposite ends of the extrusion plate 19 and the splicing block 18. On the inclined surface, a magnetic block 22 is embedded at the bottom of the splicing block 18, and an iron block that attracts the magnetic block 22 is embedded on the other side of the inner wall of the splicing groove. Furthermore, after locking, the pull ring can be held and deflected to hang on the hanging rod to enhance positioning. When it is necessary to unlock, simply hold the pull ring to drive the drag rod 21 to slide inside the drag groove, drive the compression plate 19 to reset, and squeeze the second spring 20 until it is far away from the splicing block 18, then the connecting seat 14 can be taken out along with it again.

[0028] The implementation principle of the inspection device for the production of waterproof bag lining polyester fabric in this embodiment is as follows: The fabric is placed on the base 1, and then the lighting lamp 6 is turned on to illuminate the fabric. The staff can observe it through the magnifying glass 5. Holding the handle can drive the limiting column 13 to rotate. The U-shaped limiting column 13 can drive the limiting cylinder 12 and the movable plate 10 to rotate, so that the movable roller 11 rotates around the surface one circle at a time. The pull rope 16 is wound around its surface one circle at a time, and the sliding column 7 is dragged downward to squeeze the two sets of first springs 8, thereby moving the movable frame 4 and the magnifying glass 5 on it downward. Conversely, releasing it can reset the first springs 8 and drive the sliding column 7 to move upward. After adjustment, the handle can be pushed back to drive the splicing block 18 on the connecting seat 14 to slide into the splicing. Inside the groove, the splicing block 18 and the extrusion plate 19 are in contact, and their corresponding inclined surfaces abut against each other, causing the extrusion plate 19 to retract to the inside of the extrusion groove and press the second spring 20 to retract until the splicing block 18 is fully pushed in. Then the magnetic block 22 is attracted to the iron block. The reset of the second spring 20 can cause the extrusion plate 19 to pop out, locking the position of the splicing block 18. This causes the rubber column 15 on the push rod to press tightly against the inside of the annular groove, fixing the position of the movable frame 4. After locking, the pull ring can be fastened and deflected to hang on the hanging rod for enhanced positioning. When it is necessary to unlock, simply fasten the pull ring to drive the drag rod 21 to slide inside the drag groove, causing the extrusion plate 19 to reset and press the second spring 20 until it is far away from the splicing block 18. Then the connecting seat 14 can be taken out along with it again.

[0029] Although embodiments of the present 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 present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An inspection device for the production of waterproof bag lining polyester fabric, comprising a base (1), characterized in that: Multiple sets of side plates are installed on both ends of the outer wall of the base (1). A take-up roller (2) is rotatably connected between two adjacent sets of side plates. A column (3) is installed on both ends of the top of the base (1). A sliding groove is opened at the top of the column (3). A movable frame (4) is installed on the sliding groove through a telescopic adjustment mechanism. A magnifying glass (5) is installed at one end of the bottom of the movable frame (4). A lighting lamp (6) is embedded in the center of the top of the base (1). The telescopic adjustment mechanism includes a sliding component and a winding component. The sliding component is used to drive the movable frame (4) to move. The winding component is used to control the position of the sliding component.

2. The waterproof luggage lining polyester fabric production inspection device according to claim 1, characterized in that: The sliding assembly includes a sliding column (7) slidably connected to the inner side of the sliding groove. A first spring (8) is installed between the bottom two ends of the sliding column (7) and the inner wall of the sliding groove. The other end of the sliding column (7) is fixedly connected to one end of the movable frame (4).

3. The waterproof luggage lining polyester fabric production inspection device according to claim 2, characterized in that: The winding assembly includes a fixing rod installed on one side of the outer wall of one of the columns (3), and a fixing plate (9) is installed at the other end of the fixing rod. An annular groove is provided on one side of the outer wall of the fixing plate (9).

4. The waterproof luggage lining polyester fabric production inspection device according to claim 3, characterized in that: A movable disc (10) is rotatably connected to the center of the fixed plate (9). A movable roller (11) is installed between one side of the movable disc (10) and the column (3). A limiting cylinder (12) is installed at the center of the other side of the outer wall of the movable disc (10). A limiting column (13) is slidably connected to the inner side of the limiting cylinder (12). The side cross section of the limiting column (13) is convex.

5. The waterproof luggage lining polyester fabric production inspection device according to claim 4, characterized in that: The other end of the limiting post (13) is equipped with a connecting seat (14), and the other end of the connecting seat (14) is equipped with a handle. The outer wall of the connecting seat (14) is equipped with a push rod on one side of the limiting post (13). The other end of the push rod is equipped with a rubber post (15). The rubber post (15) is slidably connected to the annular groove. A pull rope (16) is installed on one side of the outer side of the sliding post (7). An extension hole is opened at one end of the column (3). The pull rope (16) is slidably connected to the extension hole. The other end of the pull rope (16) is fixedly connected to one side of the outer wall of the movable roller (11).

6. The waterproof luggage lining polyester fabric production inspection device according to claim 5, characterized in that: The outer wall of the movable disc (10) is equipped with a docking seat (17) on the other side of the limiting cylinder (12). A splicing groove is provided on one side of the docking seat (17). A splicing block (18) that is slidably connected to the splicing groove is installed on the outer wall of the connecting seat (14) away from the push rod. An extrusion groove is provided inside the docking seat (17) on one side of the splicing groove. An extrusion plate (19) is slidably connected inside the extrusion groove.

7. The waterproof luggage lining polyester fabric production inspection device according to claim 6, characterized in that: A second spring (20) is installed between one side of the outer wall of the extrusion plate (19) and the inner wall of the extrusion groove. A drag rod (21) is installed on one side of the outer wall of the extrusion plate (19). A pull ring is rotatably connected to one end of the drag rod (21) extending to the outside of the docking seat (17). A hanging rod is installed on the outer wall of the docking seat (17) on one side of the drag rod (21). A drag groove extending to the inner side of the extrusion groove is opened on one side of the outer wall of the docking seat (17). The drag groove is slidably connected to the drag rod (21). Corresponding inclined surfaces are opened at the opposite ends of the extrusion plate (19) and the splicing block (18). A magnetic block (22) is embedded in the bottom end of the splicing block (18). An iron block that is attracted to the magnetic block (22) is embedded in the other side of the inner wall of the splicing groove.

Citation Information

Patent Citations

  • Inspection device for producing waterproof bag lining polyester fabric

    CN212955876U