Turnover fabric detection table

The automatic flipping of the fabric is achieved by using a motor-driven clamping structure and axial movement device, which solves the problems of space occupation and complexity in traditional fabric flipping detection methods, and improves the efficiency and safety of detection.

CN224247732UActive Publication Date: 2026-05-15ZHEJIANG BUREAU VERITAS CONSUMER PROD SERVICES SHENYUE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG BUREAU VERITAS CONSUMER PROD SERVICES SHENYUE CO LTD
Filing Date
2025-07-10
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Traditional fabric flipping detection methods occupy a lot of space, are complex and inconvenient, make it difficult to achieve integrated and compact equipment design, and pose safety hazards.

Method used

The clamping structure is driven by a motor and the fabric is automatically flipped through an axial movement device. Combined with elastic elements and anti-slip protrusions, it ensures stable fabric fixation and precision in the flipping process.

Benefits of technology

It improves the space utilization efficiency and operational convenience of fabric inspection, reduces labor intensity, reduces safety hazards, and enhances the automation level and overall quality of inspection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fabric detection tables, and discloses a turnable fabric detection table which comprises a supporting table and a turning assembly, the top of the supporting table is of a hollow rectangular frame structure, the turning assembly is arranged in the supporting table and comprises two axial moving devices which are symmetrical about the original point, and the axial moving devices are arranged on the supporting table. A fabric body is arranged between the two axial moving devices, the two ends of the fabric body are clamped with the interiors of the axial moving fixing devices in a pressing fit mode to achieve the overturning effect on the fabric body, the fabric detection table remarkably improves the space utilization efficiency and operation convenience of fabric detection, complex manual operation is avoided, and the fabric detection efficiency is improved. The labor intensity is reduced, potential safety hazards caused by manual operation are also reduced, and the overall quality and efficiency of fabric detection are effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of fabric testing platform technology, specifically a flip-up fabric testing platform. Background Technology

[0002] Fabric testing is a core part of quality control in the textile industry. By testing for appearance defects, physical properties, and chemical indicators, it ensures that the fabric meets the standards. Its function is to screen qualified raw materials, monitor the production process, and prevent defective products from entering the market.

[0003] In the field of textile fabric inspection, traditional fabric flipping inspection methods have many drawbacks. In the past, to achieve fabric flipping, it was usually necessary to rely on large rotating mechanisms or manual operation. This method not only occupies a lot of production space, but the flipping process is also extremely complicated. The operation of large rotating mechanisms requires sufficient activity area, which increases the difficulty of enterprise site planning and equipment layout, and limits the integration and compact design of inspection equipment. Therefore, we have proposed a flippable fabric inspection table. Utility Model Content

[0004] To address the shortcomings of existing technologies, this invention provides a flip-up fabric inspection station, which solves the aforementioned problems.

[0005] To achieve the above-mentioned objectives, this utility model provides the following technical solution: a flip-up fabric inspection table, comprising:

[0006] A support platform, the top of which has a hollow rectangular frame structure;

[0007] A flipping assembly is disposed inside the support platform. The flipping assembly includes two axially moving devices symmetrical about the origin. A fabric body is disposed between the two axially moving devices. Both ends of the fabric body are pressed and engaged with the interior of the axially moving fixing device to achieve the flipping effect of the fabric body.

[0008] Preferably, the outer sidewall of the support platform is provided with a control device, and each of the two opposite sidewalls of the support platform is provided with two side plates that are symmetrically distributed. The top of the support platform is provided with a connecting plate corresponding to the side of the side plate. Each of the two opposite inner walls of the support platform is provided with two sliding grooves that are symmetrically distributed. The sliding grooves are perpendicular to the side plates.

[0009] Preferably, the axial moving device includes a clamping structure and two motors that are symmetrically distributed on an axis. The motors are fixedly connected to the four corners of the side wall of the side plate by adapter screws. The threaded output rods of the motors are inserted into the support platform, and the threaded output rods of the two motors are connected to the internal threads on both sides of the clamping structure.

[0010] Preferably, the clamping structure includes a positioning block, a clamping member, and two elastic members distributed symmetrically on an axis. The main body of the clamping structure is the positioning block, which has two elastic members distributed symmetrically on an axis. The positioning block also has a clamping member inside it. The clamping member is slidably connected to the inside of the positioning block, and the elastic members are sleeved with the clamping member.

[0011] Preferably, the positioning block has an internal cavity, and the two opposite sidewalls of the support platform have rounded sides corresponding to the bottom of the internal cavity. The two opposite sidewalls at the bottom of the internal cavity are rectangular opening structures parallel to the rounded sides. The top of the positioning block has two axially symmetrically distributed mating holes that communicate with the inside of the internal cavity.

[0012] Preferably, the positioning block has two threaded bushings that are symmetrically distributed on both ends of the inner cavity, and the threaded bushings are axially perpendicular to the inner cavity. The threaded bushings are threadedly connected to the motor output shaft. The positioning block has sliders on both opposite sidewalls of the threaded bushings, and the sliders are slidably connected to the inside of the groove.

[0013] Preferably, the clamping member consists of two parts: a pressure plate and a handle. The pressure plate has a rectangular plate structure and a handle. The handle has a curved rod structure, and the two shaft ends of the handle are welded to the top of the pressure plate. The two shaft ends of the handle are slidably connected to the mating holes. A set of anti-slip protrusions are provided at the bottom of the pressure plate.

[0014] Preferably, the elastic element is fitted into the two shaft ends of the handle, and the elastic element is placed inside the inner cavity.

[0015] Compared with the prior art, the present invention provides a flip-up fabric inspection table, which has the following advantages:

[0016] This flip-up fabric inspection station significantly improves the space utilization efficiency and operational convenience of fabric inspection. Compared to traditional fabric flipping methods that rely on large rotating mechanisms or manual operation, it eliminates the need for a large working area. The motor-driven clamping structure moves and flips the fabric itself, resulting in a compact structure that effectively reduces the space required for flipping. This facilitates equipment layout and site planning for businesses. Furthermore, the inspection process is highly automated; operators only need to control the device to perform clamping, tensioning, and flipping operations, avoiding complex manual operations, reducing labor intensity, and minimizing safety hazards associated with manual operation. The elastic components in the clamping structure, combined with anti-slip protrusions, ensure the stability of the fixed fabric, making the inspection process more accurate and efficient, effectively improving the overall quality and efficiency of fabric inspection. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the flip-up fabric testing platform of this utility model;

[0018] Figure 2 This is a cross-sectional schematic diagram of the reversible fabric inspection table of this utility model;

[0019] Figure 3 for Figure 2 A magnified view of part A in the diagram;

[0020] Figure 4 This is a schematic diagram of the support platform of this utility model;

[0021] Figure 5 This is a schematic diagram of the clamping structure of this utility model;

[0022] Figure 6 This is a cross-sectional schematic diagram of the clamping structure of this utility model;

[0023] Figure 7 This is a schematic diagram of the clamping component of this utility model.

[0024] In the diagram: 1. Support platform; 2. Motor; 3. Positioning block; 4. Clamping component; 5. Fabric body; 6. Elastic component; 7. Control device; 8. Connecting plate; 9. Side plate; 10. Slide groove; 11. Inner cavity; 12. Rounded side edge; 13. Threaded bushing; 14. Slider; 15. Mating hole; 16. Pressure plate; 17. Handle; 18. Anti-slip protrusion. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] Please see Figure 1-7 A flip-up fabric inspection station, comprising:

[0027] Support platform 1, the top of support platform 1 is a hollow rectangular frame structure;

[0028] The flipping assembly is located inside the support platform 1. The flipping assembly includes two axially moving devices that are symmetrical about the origin. A fabric body 5 is provided between the two axially moving devices. Both ends of the fabric body 5 are pressed and engaged with the inside of the axially moving fixing device to achieve the flipping effect of the fabric body 5.

[0029] Furthermore, the outer sidewall of the support platform 1 is equipped with a control device 7, and the two opposite sidewalls of the support platform 1 are equipped with two side plates 9 distributed axially symmetrically. The top of the support platform 1 is equipped with a connecting plate 8 corresponding to the side of the side plate 9. The two opposite inner walls of the support platform 1 are equipped with two sliding grooves 10 distributed axially symmetrically, and the sliding grooves 10 are perpendicular to the side plates 9. The control device 7 controls two axially moving devices that are symmetrical about the origin to move axially, so that the fabric body 5 is flipped. The connecting plate 8 can be connected to external testing instruments or lighting tools to improve the testing effect and quality.

[0030] Furthermore, the axial movement device includes a clamping structure and two axially symmetrically distributed motors 2. The motors 2 are fixedly connected to the four corners of the side wall of the side plate 9 by adapter screws. The threaded output rods of the motors 2 are inserted into the support platform 1, and the threaded output rods of the two motors 2 are connected to the internal threads on both sides of the clamping structure. After the two clamping structures clamp and fix the two opposite sides of the fabric body 5, the threaded output rods of the motors 2 drive the two clamping structures to move in opposite or opposite directions. When moving in opposite directions, the fabric body 5 is stretched and unfolded for detection. After the detection is completed, the motors 2 are flipped, causing them to drive the two clamping structures to move relative to each other until they move in opposite directions and are stretched, thus completing the flipping of the fabric body 5. This effectively reduces the space required for flipping, greatly improves space utilization, and simplifies the process.

[0031] Furthermore, the clamping structure includes a positioning block 3, a clamping element 4, and two axially symmetrically distributed elastic elements 6. The main body of the clamping structure is the positioning block 3, which contains two axially symmetrically distributed elastic elements 6. The positioning block 3 also contains a clamping element 4, which is slidably connected to the positioning block 3. The elastic elements 6 are sleeved with the clamping element 4. Pulling the clamping element 4 upward causes the elastic elements 6 to continue to compress, placing the side of the fabric body 5 into the bottom of the clamping element 4. Releasing the clamping element 4 causes the springback elastic elements 6 to press the clamping element 4 against the side of the fabric body 5, thus fixing the fabric body 5.

[0032] Furthermore, the positioning block 3 has an inner cavity 11, and the two opposite side walls of the support platform 1 have rounded side edges 12 corresponding to the bottom of the inner cavity 11. The two opposite side walls at the bottom of the inner cavity 11 are rectangular opening structures parallel to the rounded side edges 12. The top of the positioning block 3 has two symmetrically distributed mating holes 15, which are connected to the inside of the inner cavity 11. The rounded side edges 12 can protect the fabric body 5 and prevent the fabric body 5 from being flipped and damaged.

[0033] Furthermore, the positioning block 3 has two threaded bushings 13 that are symmetrically distributed on both ends of the inner cavity 11. The threaded bushings 13 are axially perpendicular to the inner cavity 11 and are threadedly connected to the output shaft of the motor 2. The positioning block 3 has sliders 14 on both opposite sidewalls of the threaded bushings 13. The sliders 14 are slidably connected to the inside of the slide groove 10. The sliding connection between the sliders 14 and the slide groove 10 effectively ensures the stability of the axial movement of the clamping structure.

[0034] Furthermore, the clamping component 4 consists of two parts: a pressure plate 16 and a handle 17. The pressure plate 16 has a rectangular plate structure and a handle 17. The handle 17 has a curved rod structure, and the two shaft ends of the handle 17 are welded to the top of the pressure plate 16. The two shaft ends of the handle 17 are slidably connected to the mating holes 15. The bottom of the pressure plate 16 is provided with a set of anti-slip protrusions 18. The anti-slip protrusions 18 can greatly improve the clamping effect on the fabric body 5 and prevent the fabric body 5 from sliding.

[0035] Furthermore, the elastic element 6 is fitted with the two shaft ends of the handle 17, and the elastic element 6 is placed inside the inner cavity 11. The elastic element 6 is always in a compressed state, which effectively ensures the clamping and fixing effect on the fabric body 5.

[0036] Structural Description:

[0037] Support platform 1: Support platform 1 is the basic load-bearing structure of the testing platform. The top is a hollow rectangular frame, which provides installation space for the internal flipping components and bears the weight of various parts and the fabric body 5 during the fabric testing process.

[0038] Motor 2: Motor 2 is the power source of the testing table. It is fixed to the four corners of the side wall of the side plate 9 by the adapter screws. Its threaded output rod goes into the support table 1 and cooperates with the clamping structure to drive the clamping structure to move and realize the tensioning and flipping of the fabric.

[0039] Positioning block 3: Positioning block 3 is the main body of the clamping structure. It has an inner cavity 11 for installing the elastic element 6 and the clamping element 4. It has a mating hole 15 on the top and a threaded bushing 13 and a slider 14 on the side wall to achieve connection with the motor 2 and stable movement.

[0040] Clamping component 4: Clamping component 4 consists of a pressure plate 16 and a handle 17. The handle 17 slides in the mating hole 15, which drives the pressure plate 16 to rise and fall. The anti-slip protrusion 18 at the bottom of the pressure plate 16 is used to press the fabric body 5 to ensure a secure fixation.

[0041] Fabric body 5: Fabric body 5 is the object of inspection. Its two ends are pressed and locked with the clamping structure. Under the drive of the inspection table, it completes the tensioning, unfolding and flipping actions to carry out comprehensive quality inspection.

[0042] Elastic element 6: The elastic element 6 is symmetrically distributed in the positioning block 3, sleeved with the clamping element 4 and always in a compressed state. It pushes the clamping element 4 through its own elastic force to enhance the clamping and fixing effect on the fabric body 5.

[0043] Control device 7: The control device 7 is installed on the outer side wall of the support platform 1 and serves as the control core of the testing platform. It is used to control the operation of the motor 2, thereby realizing a series of actions such as clamping, tensioning, and flipping the fabric body 5.

[0044] Connecting plate 8: The connecting plate 8 is set on the top of the support platform 1 corresponding to the side of the side plate 9. It can be connected to external testing instruments or lighting tools to provide auxiliary equipment connection for the fabric testing process and improve the testing effect and quality.

[0045] Side plate 9: Side plate 9 is symmetrically distributed on the two opposite side walls of support platform 1. It is used to fix motor 2 and at the same time provides lateral support for the internal structure of support platform 1, enhancing the overall structural stability of the testing platform.

[0046] Slide 10: Slide 10 is symmetrically distributed on two opposite inner walls inside the support platform 1 and is perpendicular to the side plate 9. It is used to slide with the slider 14 on the side wall of the positioning block 3 to ensure the smoothness of the axial movement of the clamping structure.

[0047] Inner cavity 11: The inner cavity 11 is opened inside the positioning block 3 to accommodate the elastic element 6 and the clamping element 4. Its bottom rectangular opening structure, combined with the rounded side edge 12, plays a protective role when the fabric is turned over.

[0048] Rounded side 12: The rounded side 12 is set at the bottom of the inner cavity 11 corresponding to the two opposite side walls of the support platform 1, which can prevent the fabric body 5 from being damaged by friction and collision during the flipping process and protect the integrity of the fabric.

[0049] Threaded bushing 13: Threaded bushing 13 is symmetrically distributed on both ends of the inner cavity 11 of the positioning block 3, and is threadedly connected to the output shaft of the motor 2 to convert the rotational motion of the motor 2 into the axial movement of the positioning block 3;

[0050] Slider 14: Slider 14 is installed on the two opposite side walls of the positioning block 3 corresponding to the threaded bushing 13, and slides in cooperation with the groove 10 on the inner wall of the support platform 1 to ensure that the clamping structure remains stable and does not deviate during movement;

[0051] Mating hole 15: The mating hole 15 is symmetrically opened on the top of the positioning block 3 and communicates with the inner cavity 11. It is used to slide the handle 17 to realize the lifting and lowering of the clamping part 4, and to complete the clamping and loosening of the fabric body 5.

[0052] Pressure plate 16: Pressure plate 16 is the main clamping component of clamping part 4. It has a rectangular plate structure. The anti-slip protrusions 18 at the bottom increase the friction with the fabric body 5 and improve the clamping effect.

[0053] Handle 17: Handle 17 is a curved rod structure, welded to the top of the pressure plate 16, with both ends sliding in the mating holes 15, making it convenient for the operator to lift the clamping part 4 and control the clamping operation on the fabric body 5.

[0054] Anti-slip protrusion 18: Anti-slip protrusion 18 is set at the bottom of pressure plate 16. By increasing the roughness of the contact surface, it greatly improves the clamping effect on the fabric body 5 and prevents the fabric from sliding during the inspection process.

[0055] Working principle: The flip-up fabric inspection table is installed correctly according to the diagram. Based on support platform 1, its top has a hollow rectangular frame structure. During operation, the operator pulls upwards on handle 17 in clamping component 4, further compressing elastic component 6 and placing the side of fabric body 5 into the bottom of pressure plate 16. After releasing handle 17, the rebounding elastic component 6 pushes pressure plate 16, pressing the side of fabric body 5 tightly through the anti-slip protrusions 18 at the bottom. The two clamping structures fix the fabric body 5 from opposite sides. The control device 7 outside support platform 1 starts motor 2. The threaded output rod of motor 2 engages with the threaded bushing 13 inside positioning block 3. Simultaneously, the positioning block... The slider 14 on the side wall slides in the groove 10 on the inner wall of the support platform 1 to ensure the smoothness of the axial movement of the clamping structure. The two motors 2 drive the clamping structure to move in opposite directions, taut and unfolding the fabric body 5. At this time, the connecting plate 8 is connected to an external testing instrument or lighting tool to test the fabric. After the test is completed, the control device 7 controls the motor 2 to flip, driving the two clamping structures to move relative to each other. When it moves to the symmetrical position when it is taut in opposite directions, the fabric body 5 is flipped 180 degrees. Then the other side of the fabric can be tested. During this process, the rounded side 12 on the inner wall of the support platform 1 can protect the fabric body 5 to prevent it from being damaged due to friction or other reasons during the flipping process.

[0056] 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. A flip-up fabric inspection table, characterized in that, include: Support platform (1), the top of which is a hollow rectangular frame structure; A flipping assembly is disposed inside the support platform (1). The flipping assembly includes two axially moving devices symmetrical about the origin. A fabric body (5) is provided between the two axially moving devices. The two ends of the fabric body (5) are pressed and engaged with the inside of the axially moving fixing device to achieve the flipping effect of the fabric body (5).

2. The flip-up fabric inspection table according to claim 1, characterized in that, The support platform (1) has a control device (7) on its outer sidewall. The support platform (1) has two side plates (9) that are symmetrically distributed on both opposite sidewalls. The support platform (1) has a connecting plate (8) on the top of the support platform (1) corresponding to the side of the side plate (9). The support platform (1) has two sliding grooves (10) that are symmetrically distributed on both opposite inner walls. The sliding grooves (10) are perpendicular to the side plates (9).

3. The flip-up fabric inspection table according to claim 1, characterized in that, The axial moving device includes a clamping structure and two motors (2) that are symmetrically distributed on an axis. The motors (2) are fixedly connected to the four corners of the side wall of the side plate (9) by adapter screws. The threaded output rods of the motors (2) are inserted into the support platform (1), and the threaded output rods of the two motors (2) are connected to the internal threads on both sides of the clamping structure.

4. The flip-up fabric inspection table according to claim 3, characterized in that, The clamping structure includes a positioning block (3), a clamping member (4), and two elastic members (6) that are symmetrically distributed. The main body of the clamping structure is the positioning block (3). The positioning block (3) has two elastic members (6) that are symmetrically distributed inside, and the positioning block (3) has a clamping member (4) inside. The clamping member (4) is slidably connected to the positioning block (3), and the elastic member (6) is sleeved with the clamping member (4).

5. A flip-up fabric inspection table according to claim 4, characterized in that, The positioning block (3) has an inner cavity (11) inside. The two opposite side walls of the support platform (1) are provided with rounded side edges (12) at the bottom of the inner cavity (11). The two opposite side walls at the bottom of the inner cavity (11) are rectangular opening structures parallel to the rounded side edges (12). The top of the positioning block (3) has two symmetrically distributed mating holes (15), which are connected to the inside of the inner cavity (11).

6. The flip-up fabric inspection table according to claim 5, characterized in that, The positioning block (3) has two threaded bushings (13) that are symmetrically distributed on both ends of the inner cavity (11). The threaded bushings (13) are axially perpendicular to the inner cavity (11). The threaded bushings (13) are threadedly connected to the output shaft of the motor (2). The positioning block (3) has sliders (14) on both opposite sidewalls of the threaded bushings (13). The sliders (14) are slidably connected to the inside of the groove (10).

7. A flip-up fabric inspection table according to claim 4, characterized in that, The clamping member (4) consists of two parts: a pressure plate (16) and a handle (17). The pressure plate (16) has a rectangular plate structure and a handle (17) is provided on the pressure plate (16). The handle (17) has a curved rod structure and the two shaft ends of the handle (17) are welded to the top of the pressure plate (16). The two shaft ends of the handle (17) are slidably connected to the mating hole (15). A set of anti-slip protrusions (18) is provided at the bottom of the pressure plate (16).

8. A flip-up fabric inspection table according to claim 4, characterized in that, The elastic element (6) is fitted to the two shaft ends of the handle (17) and is placed inside the inner cavity (11).