Test paper aging test device adopting xenon lamp

The multi-dimensional fixation and flattening of label paper can be achieved through the automated clamping components, which solves the problems of tedious manual operation and uneven lighting, and improves the efficiency and accuracy of label paper aging tests.

CN120628974AInactive Publication Date: 2025-09-12SHENZHEN SUNNY XIAO TECH CO LTD
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Patent Information

Application Number
CN202510917739.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-03
Publication Date
2025-09-12
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, when performing aging tests on label paper, manual operations are cumbersome and labor-intensive, and it is difficult to ensure the consistency of clamping force and position, resulting in uneven illumination and affecting the accuracy of the test results.

Method used

An automated clamping assembly, including an electric telescopic rod, a rotating block, a pressure roller, and a clamping rod, is used to achieve automated clamping and flattening of the label paper through a multi-dimensional fixing method. The rolling and frictional force of the roller ensures that the label paper remains flat during the test.

Benefits of technology

It improves test efficiency, reduces operator labor intensity, ensures uniformity of illumination, improves the accuracy of test results, and adapts to label papers of different thicknesses and widths.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of xenon lamp aging tests, and particularly discloses a test paper aging test device adopting a xenon lamp, which comprises a test box, one side of the test box is connected with a box door, the lower end of the inner wall of the test box is connected with a shell, the middle part of the upper end of the shell is connected with a xenon lamp column, and the upper end of the xenon lamp column is connected with the upper end of the inner wall of the test box. The upper end of the shell is rotationally connected with a gear ring; according to the xenon lamp aging test device, rapid and stable fixing and flattening treatment of label paper are achieved through the automatic clamping assembly, the problems that traditional manual clamping is tedious, labels are prone to wrinkling, and the test effect is poor are effectively solved, and the xenon lamp aging test efficiency, accuracy and universality are remarkably improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of xenon lamp aging tests, and in particular relates to a test paper aging test device using a xenon lamp. Background Art

[0002] Xenon lamp aging testing is an accelerated aging test method that uses a xenon lamp light source to simulate the full spectrum of sunlight (including ultraviolet, visible light, and infrared) and climatic conditions. It is used to evaluate the durability and stability of materials under long-term light exposure and changes in temperature and humidity. Its core mechanism is to use the high irradiance of the xenon lamp and controllable environmental parameters (temperature, humidity, and rainfall) to accelerate reactions such as photooxidation and hydrolysis of the material, reproducing the aging effects of months or even years outdoors in the laboratory. Xenon lamp aging tests are widely used in the field of label paper quality inspection. By irradiating label paper with light of a specific wavelength emitted by a xenon lamp, the aging characteristics of label paper, such as fading, deformation, and strength loss, can be quickly evaluated under long-term light exposure, providing key data support for product development and quality control.

[0003] Currently, xenon lamp aging tests on label paper typically use manual clamping to secure the paper. Workers must place each label individually on a test stand and secure it with tools like clamps or tape. This process is cumbersome, time-consuming, and labor-intensive. Manual operation also makes it difficult to ensure consistent clamping force and position, which can easily lead to wrinkled or uneven labels. An uneven surface can alter the reflection and absorption properties of light, resulting in uneven light intensity across different parts of the label. This can lead to biased test results and a failure to accurately reflect the aging performance of the label. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a test paper aging test device using a xenon lamp.

[0005] To achieve the above objectives, the present invention provides a test paper aging test device using a xenon lamp, comprising a test box, wherein one side of the test box is connected to a box door, and the middle part of one side of the inner wall of the test box is connected to a visual inspection device, the lower end of the inner wall of the test box is connected to a shell, the middle part of the upper end of the shell is connected to the xenon lamp column, the upper end of the xenon lamp column is connected to the upper end of the inner wall of the test box, the upper end of the shell is rotatably connected to a gear ring, the upper ends of the gear rings are circumferentially connected to a connecting rod, the outer walls of multiple connecting rods are circumferentially connected to a connecting ring, the number of the connecting rings is six groups, the outer walls of multiple connecting rings are connected to mounting rings through fixed blocks, the number of the mounting rings is six groups, the outer walls of multiple mounting rings are circumferentially clamped with a clamping assembly, both sides of the inner wall of the frame are rotatably connected to a rotating shaft, one end of multiple rotating shafts are connected to a rotating roller, both sides of the inner wall of the frame are slidably connected to a slide, the cross-section of the slide is L-shaped, and one side of two slides is rotatably connected to a clamping rod.

[0006] In the above technical solution, further, both sides of the lower end of the gear ring are connected with stabilizing blocks, the upper end of the shell is connected with a stabilizing groove, the lower ends of the two stabilizing blocks are located inside the stabilizing groove and are slidably connected, one side of the lower end of the inner wall of the shell is connected with a driving motor, the output end of the driving motor extends through the interior of the shell, and the output end of the driving motor is connected with a gear, and one side of the gear is meshed and connected with the lower part of one side of the gear ring.

[0007] In the above technical solution, further, the clamping assembly includes a frame, the lower end of the frame is evenly rotatably connected to a rotating seat, multiple rotating seats are rotatably connected to one side with a clamping block, multiple clamping blocks are clamped to the corresponding inside of the mounting ring, the lower part of one side of the frame is connected to a connecting motor, the output end of the connecting motor is connected to a first connecting shaft, one end of the first connecting shaft extends through the interior of the frame, the inner wall of the frame is rotatably connected to a second connecting shaft on the side away from the first connecting shaft, and a roller is connected between the first connecting shaft and the second connecting shaft.

[0008] In the above technical solution, further, pulleys are connected to the middle portion of the outer wall of the first connecting shaft, the middle portion of the outer wall of the second connecting shaft and the middle portions of the outer walls of multiple rotating shafts, and several of the pulleys are connected to other pulleys through transmission belts.

[0009] In the above technical solution, further, support plates are evenly connected to both sides of the upper end of the frame, and the number of the support plates is four groups. The upper part of one side of multiple support plates is rotatably connected to an electric telescopic rod, and the upper end of the frame is connected to one side of each of the multiple support plates respectively. The number of the connecting plates is four groups, and the upper part of one side of multiple connecting plates is rotatably connected to a rotating block, and one end of the multiple electric telescopic rods is respectively rotatably connected to the lower part of one side of multiple rotating blocks, wherein a rotating rod is connected between two of the rotating blocks and the other two rotating blocks.

[0010] In the above technical solution, further, a fixed rod is connected to the middle of the outer wall of one of the rotating rods, and pressure rollers are rotatably connected to both sides of the fixed rod, and the two pressure rollers are located above the supporting rollers.

[0011] In the above technical solution, further, support rods are connected on both sides of the upper ends of the two slides, and the upper ends of multiple support rods extend through the upper end of the frame. The upper ends of multiple support rods are connected to pressure blocks, and the number of pressure blocks is four groups. One side of the upper ends of multiple pressure blocks is respectively in contact with one side of the lower ends of multiple rotating blocks, and sliding grooves are provided on both sides of the inner wall of the frame.

[0012] In the above technical solution, further, a slider is connected to the middle of one side of the two slides, and the two sliders are respectively located inside the two sliding grooves and are slidably connected.

[0013] Compared with the prior art, the present invention has the following beneficial effects: This clamping assembly realizes automatic clamping of label paper through the coordinated operation of the electric telescopic rod, rotating block, pressure roller and clamping rod. After the electric telescopic rod is started, its extension drives the rotating block to rotate, so that the pressure roller automatically presses down to press the label paper tightly on the roller. At the same time, the rotating block pushes the pressure block, driving the slide plate to slide down, so that the clamping rod automatically clamps both sides of the label paper. The entire clamping process does not require manual delicate operation. The label paper only needs to be placed in the initial position to be fixed within seconds. Compared with traditional manual operation, the efficiency is improved, the test preparation time is greatly reduced, and the labor intensity of the operator is reduced. By adopting a multi-dimensional fixing method that combines upper and lower pressure with side clamping, the pressure roller and the support roller cooperate to apply uniform pressure to the label paper from the top and bottom directions, and the clamping rod firmly clamps from both sides to form an all-round constraint. The support roller and the rotating roller rotate synchronously under the drive of the connected motor. Through the transmission of the pulley and the transmission belt, during the conveying process of the label paper, the rolling and friction of the roller body are used to automatically smooth the surface of the label paper, ensuring that the label paper always remains flat during the clamping and testing process, effectively avoiding problems such as light reflection and uneven absorption caused by wrinkles, and improving the accuracy of the test results. The electric telescopic rod can accurately adjust the downward pressure distance and pressure of the pressure roller according to the thickness of the label paper. Whether it is thinner thermal label paper or thicker coated paper label, it can achieve stable clamping without damaging the sample. The sliding fit of the slide in the slide groove can adaptively adjust the clamping force and position of the clamping rod to ensure that label paper of different widths can be stably fixed. Compared with the traditional single fixing mode, the adaptability of the device is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the overall structure proposed by the present invention; Figure 2 This is a schematic diagram of the installation structure of the clamping assembly proposed by the present invention; Figure 3 This is a schematic diagram of the installation structure of the gear proposed in the present invention; Figure 4 This is a schematic diagram of the installation structure of the xenon lamp column proposed in the present invention; Figure 5 This is a schematic diagram of the installation structure of the roller proposed in the present invention; Figure 6 This is a schematic diagram of the installation structure of the rotating shaft proposed in the present invention; Figure 7 This is a schematic diagram of the installation structure of the roller proposed in the present invention; Figure 8 This is a schematic diagram of the installation structure of the fixing rod proposed in the present invention; Figure 9 This is a schematic diagram of the installation structure of the roller proposed in the present invention; Figure 10 The present invention proposes Figure 9 Schematic diagram of the enlarged structure of A; Figure 11 This is a schematic diagram of the installation structure of the slide proposed by the present invention; Figure 12 This is a schematic diagram of the installation structure of the pressing block proposed in the present invention.

[0015] In the figure: 1. test chamber; 2. chamber door; 3. shell; 4. xenon lamp column; 5. gear ring; 6. drive motor; 7. gear; 8. connecting rod; 9. connecting ring; 10. fixed block; 11. mounting ring; 12. frame; 13. rotating seat; 14. clamping block; 15. connecting motor; 16. first connecting shaft; 17. second connecting shaft; 18. roller; 19. rotating shaft; 20. rotating roller; 21. pulley; 22. transmission belt; 23. support plate; 24. electric telescopic rod; 25. connecting plate; 26. rotating block; 27. rotating rod; 28. fixed rod; 29. ​​pressure roller; 30. slide plate; 31. clamping rod; 32. support rod; 33. pressure block; 34. slider; 35. slide trough; 36. visual inspection equipment. DETAILED DESCRIPTION

[0016] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0017] like Figures 1-12The test paper aging test device shown in the figure uses a xenon lamp, including a test box 1, a box door 2 is connected to one side of the test box 1, and a visual inspection device 36 is connected to the middle of one side of the inner wall of the test box 1, which is convenient for monitoring multiple test label papers and facilitating real-time understanding of the test results of the label papers. The lower end of the inner wall of the test box 1 is connected to a shell 3, and the middle of the upper end of the shell 3 is connected to a xenon lamp column 4. The upper end of the xenon lamp column 4 is connected to the upper end of the inner wall of the test box 1. The upper end of the shell 3 is rotatably connected to a gear ring 5, which can drive a connecting rod 8 and multiple connecting rings 9 is rotated to facilitate the rotation of multiple clamping assemblies. The upper ends of the gear rings 5 ​​are circumferentially connected to connecting rods 8. The outer walls of the multiple connecting rods 8 are circumferentially connected to connecting rings 9. There are six groups of connecting rings 9. The outer walls of the multiple connecting rings 9 are connected to mounting rings 11 through fixing blocks 10. The number of mounting rings 11 is six groups. The outer walls of the multiple mounting rings 11 are circumferentially clamped with clamping assemblies. Each clamping assembly is circumferentially clamped to the outer walls of two adjacent mounting rings 11. Multiple mounting rings 11 can ensure the stability of the clamping assembly. The door 2 facilitates the operator's placement and removal of test samples. The xenon lamp column 4 is the core component of the aging test. It ages the test samples by emitting light of a specific wavelength to simulate the lighting conditions found in the natural environment. The gear ring 5, connecting rod 8, connecting ring 9, and mounting ring 11 form the sample rotation bearing structure. The gear ring 5 is rotatably connected to the housing 3 and can rotate about the xenon lamp column 4. Connecting rods 8 are evenly distributed at the upper end of the gear ring 5 and transmit the rotation of the gear ring 5 to the connecting ring 9. The rotation of the gear ring 5 can drive the synchronous rotation of all clamping components, allowing the test samples to be illuminated by the xenon lamp at different angles, simulating a more comprehensive aging environment.

[0018] Both sides of the lower end of the gear ring 5 are connected to stabilizing blocks, the upper end of the shell 3 is connected to a stabilizing groove, the lower ends of the two stabilizing blocks are located inside the stabilizing groove and are slidably connected, one side of the lower end of the inner wall of the shell 3 is connected to a drive motor 6, the drive motor 6 can drive the gear 7 to rotate, the output end of the drive motor 6 extends through the interior of the shell 3, the output end of the drive motor 6 is connected to a gear 7, the gear 7 can drive the gear ring 5, multiple connecting rods 8, multiple connecting rings 9 and multiple clamping components to rotate, and one side of the gear 7 is meshed and connected with the lower part of one side of the gear ring 5; The cooperation between the stabilizing block and the stabilizing groove provides guidance and stable support for the rotation of the gear ring 5, preventing the gear ring 5 from deflecting or shaking during the rotation process, ensuring the smooth rotation process of the sample, and thus ensuring the consistency and accuracy of the test conditions. The driving motor 6 drives the gear 7 to rotate through the output shaft. The gear 7 engages with the gear ring 5 and transmits the rotational motion of the motor to the gear ring 5 to achieve uniform rotation of the gear ring 5. The driving structure has high transmission efficiency and can accurately control the rotation speed of the gear ring 5 according to the test requirements, thereby adjusting the angle and time for the test sample to receive light to meet the parameter requirements of different aging tests.

[0019] The clamping assembly includes a frame 12, and the lower end of the frame 12 is evenly rotated and connected to a rotating seat 13, which can adjust the angular position of the clamping block 14, so that the frame 12 can be stably fixed to the outer wall of the two mounting rings 11. Multiple rotating seats 13 are rotatably connected to the clamping block 14 on one side. The number of the clamping blocks 14 is four groups, which are convenient for respectively clamping to the corresponding two mounting rings 11. Multiple clamping blocks 14 are clamped to the corresponding mounting rings 11. The lower part of one side of the frame 12 is connected to a connecting motor 15, and the output end of the connecting motor 15 is connected to a first connecting shaft 16, which can drive the roller 18 to rotate. One end of the first connecting shaft 16 The frame 12 extends through the interior of the frame 12, and the inner wall of the frame 12 is rotatably connected to the second connecting shaft 17 at one side away from the first connecting shaft 16. A roller 18 is connected between the first connecting shaft 16 and the second connecting shaft 17. The roller 18 can sort the label paper. The inner walls of the frame 12 are rotatably connected to rotating shafts 19 on both sides, and one end of multiple rotating shafts 19 is connected to rollers 20. The middle part of the outer wall of the first connecting shaft 16, the middle part of the outer wall of the second connecting shaft 17 and the middle part of the outer wall of multiple rotating shafts 19 are all connected to pulleys 21, wherein several pulleys 21 are connected to other pulleys 21 through transmission belts 22. The first connecting shaft 16 is rotatably connected to the second connecting shaft 17. The pulley 21 on the outer wall of the connecting shaft 16 is connected to the pulleys 21 on the outer walls of several of the rotating shafts 19 through one of the transmission belts 22, and the pulley 21 on the outer wall of the second connecting shaft 17 is connected to the pulleys 21 on the outer walls of several other rotating shafts 19 through another transmission belt 22. Support plates 23 are evenly connected to both sides of the upper end of the frame 12. The number of support plates 23 is four groups. The upper part of one side of the multiple support plates 23 is rotatably connected to an electric telescopic rod 24. The upper end of the frame 12 is connected to a connecting plate 25 corresponding to one side of the multiple support plates 23, which can rotate the upper part of one side of the rotating block 26. The lower end of the movable block 26 is arranged in a semi-arc structure, and the number of the connecting plates 25 is four groups. The upper part of one side of the multiple connecting plates 25 is rotatably connected to the rotating block 26, and one end of the multiple electric telescopic rods 24 is rotatably connected to the lower part of one side of the multiple rotating blocks 26. A rotating rod 27 is fixedly connected between two rotating blocks 26 and the other two rotating blocks 26. A fixed rod 28 is rotatably sleeved on the middle part of the outer wall of one rotating rod 27. Both sides of the fixed rod 28 are rotatably connected to pressure rollers 29. The pressure rollers 29 can press the label paper to the top of the roller 18, which can clamp the label paper. The two pressure rollers 29 are located above the roller 18; The frame 12 of the clamping assembly is connected to the mounting ring 11 through a rotating seat 13 and a clamping block 14. The rotating seat 13 can flexibly adjust the angle of the clamping block 14 so that the frame 12 can be tightly and stably fixed between the two mounting rings 11 to ensure that it will not loosen during the test. The connecting motor 15 drives the first connecting shaft 16 to rotate. The first connecting shaft 16 is driven by the pulley 21 and the transmission belt 22 to drive the roller 18, the second connecting shaft 17 and the multiple rollers 20 to rotate synchronously. The rotation of the rollers 18 and 20 can sort and transport the label paper placed thereon, so that the label paper remains flat during the test. To prevent wrinkles from affecting the test results, the electric telescopic rod 24, the connecting plate 25, the rotating block 26, the rotating rod 27, the fixed rod 28 and the pressure roller 29 constitute a label paper clamping and adjustment structure. When the electric telescopic rod 24 is extended or retracted, the rotating block 26 is pushed to rotate around the connecting plate 25, and the rotating block 26 drives the rotating rod 27 and the pressure roller 29 to move. When the pressure roller 29 descends, the label paper can be pressed tightly against the roller 18 to achieve clamping and fixing of the label paper. By adjusting the telescopic length of the electric telescopic rod 24, the pressure of the pressure roller 29 can be controlled, which is suitable for label papers of different thicknesses and materials, ensuring the clamping effect while avoiding damage to the sample.

[0020] The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33, and the support rods 32 are connected to the support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. The cam 33 is provided with a plurality of support rods 32 on the top of the cam 33. When the rotating block 26 rotates and presses down, the lower end of the rotating block 26 contacts the pressing block 33 and pushes the pressing block 33 to move downward. The pressing block 33 drives the slide plate 30 to slide downward in the slide groove 35 through the support rod 32, and the clamping rod 31 on the slide plate 30 drops accordingly, clamping both sides of the label paper above the roller 20, further fixing the label paper to prevent the label paper from being displaced or tilted during the test. The cooperation between the L-shaped slide plate 30, the slide groove 35 and the slider 34 ensures the stability and accuracy of the up and down movement of the slide plate 30, so that the clamping rod 31 can evenly and reliably clamp both sides of the label paper, ensuring that the test sample always remains in a good fixed state during the aging test.

[0021] Working principle: When using the device, before the test begins, open the box door 2 and place the label paper to be tested in the clamping assembly. The frame 12 is connected to the mounting ring 11 through the rotating seat 13 and the clamping block 14. The operator can flexibly adjust the rotating seat 13 according to the position of the mounting ring 11 so that the clamping block 14 is accurately inserted into the corresponding mounting ring 11 to firmly install the frame 12 on the device; inside the frame 12, the connecting motor 15 is in the initial stop state, and the label paper is spread flat on the roller 18 and the rotating roller 20. At this time, the electric telescopic rod 24 is started, and the electric telescopic rod 24 extends, pushing the rotating block 26 to rotate around the connecting plate 25. The rotating block 26 drives the rotating rod 27 and the pressure roller 29 to move downward. When the pressure roller 29 drops to cooperate with the roller 18, the label paper is tightly pressed against the roller 18, completing the preliminary fixation of the label paper in the up and down directions; When the label paper is put into the rack 35, the label paper is put into the rack 35, and the label paper is put into the rack 35. When the label paper is put into the rack 35, the label paper is put into the rack 35, and the label paper is put into the rack 35. When the label paper is put into the rack 35, the label paper is put into the rack 35, and the label paper is put into the rack 35. When the label paper is put into the rack 35, the label paper is put into the rack 35, and the label paper is put into the rack 35. When the label paper is put into the rack 35, the label paper is put into the rack 35, and the label paper is put into the rack 35. When the label paper is put into the rack 35, the label paper is put into the rack 35, and the label paper is put into the rack 35, the label paper is put into the rack 35, and the label paper is put into the rack 35. When the label paper is put into the rack 35, the label paper is put into the rack 35, and the label paper is put into the rack 35 After the sample is fixed, the box door 2 is closed and the drive motor 6 is started. The output end of the drive motor 6 drives the gear 7 to rotate. Since the gear 7 is engaged with the gear ring 5, the rotation of the gear 7 is transmitted to the gear ring 5, so that the gear ring 5 rotates in the stable groove on the shell 3 with the xenon lamp column 4 as the center. When the gear ring 5 rotates, the connecting rod 8 connected in the circumference drives the connecting ring 9 to rotate. The connecting ring 9 then drives the mounting ring 11 to rotate synchronously via the fixing block 10. Ultimately, all the clamping components perform a circular motion around the xenon lamp column 4. The label paper placed in the clamping components can be exposed to the light emitted by the xenon lamp column 4 at different angles, simulating aging conditions closer to the actual environment, ensuring the comprehensiveness and accuracy of the test results. During the test, the visual inspection equipment 36 can monitor the status of the label paper in real time. When the aging test reaches the predetermined time or completes the corresponding test requirements, turn off the drive motor 6 and the xenon lamp column 4, stop the device operation, start the electric telescopic rod 24 again to retract it, drive the rotating block 26 and the pressure roller 29 to move upward, and release the clamping of the label paper. At the same time, during the rising process of the rotating block 26, the pressure block 33 loses pressure, the clamping rod 31 releases both sides of the label paper, and the box door 2 is opened to take out the label paper that has completed the aging test.

[0022] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions only describe the principles of the present invention. Various changes and improvements are possible without departing from the spirit and scope of the present invention, and such changes and improvements fall within the scope of the invention as claimed.

Claims

1. A test paper aging test device using a xenon lamp, comprising a test chamber (1), characterized in that: The test box (1) is connected to a box door (2) on one side, a visual inspection device (36) is connected to the middle of one side of the inner wall of the test box (1), the lower end of the inner wall of the test box (1) is connected to a shell (3), the middle of the upper end of the shell (3) is connected to a xenon lamp column (4), the upper end of the xenon lamp column (4) is connected to the upper end of the inner wall of the test box (1), the upper end of the shell (3) is rotatably connected to a gear ring (5), the upper end of the gear ring (5) is circumferentially connected to a connecting rod (8), the outer walls of multiple connecting rods (8) are circumferentially connected to connecting rings (9), the number of the connecting rings (9) is six, and the multiple connecting rods (8) are connected to the outer walls of the connecting rings (9). The outer walls of the rings (9) are connected to mounting rings (11) through fixed blocks (10), and the number of the mounting rings (11) is six groups. The outer walls of multiple mounting rings (11) are circumferentially clamped with clamping assemblies, and the clamping assembly includes a frame (12). Both sides of the inner wall of the frame (12) are rotatably connected to rotating shafts (19), and one end of multiple rotating shafts (19) is connected to a roller (20). Both sides of the inner wall of the frame (12) are slidably connected to slides (30), and the cross-section of the slides (30) is L-shaped. One side of two slides (30) is rotatably connected to a clamping rod (31).

2. The test paper aging test device using a xenon lamp according to claim 1, characterized in that: Both sides of the lower end of the gear ring (5) are connected to stabilizing blocks, the upper end of the shell (3) is connected to a stabilizing groove, the lower ends of the two stabilizing blocks are located inside the stabilizing groove and are slidably connected, one side of the lower end of the inner wall of the shell (3) is connected to a drive motor (6), the output end of the drive motor (6) extends through the inside of the shell (3), and the output end of the drive motor (6) is connected to a gear (7), and one side of the gear (7) is meshed with the lower part of one side of the gear ring (5).

3. The test paper aging test device using a xenon lamp according to claim 1, characterized in that: The lower end of the frame (12) is evenly rotatably connected to a rotating seat (13), and a plurality of the rotating seats (13) are rotatably connected to one side with a clamping block (14), and a plurality of the clamping blocks (14) are clamped to the inside of the corresponding mounting ring (11). The lower part of one side of the frame (12) is connected to a connecting motor (15), and the output end of the connecting motor (15) is connected to a first connecting shaft (16), and one end of the first connecting shaft (16) extends through the inside of the frame (12). The inner wall of the frame (12) is rotatably connected to a second connecting shaft (17) at a side away from the first connecting shaft (16), and a roller (18) is connected between the first connecting shaft (16) and the second connecting shaft (17).

4. The test paper aging test device using a xenon lamp according to claim 3, characterized in that: The middle portion of the outer wall of the first connecting shaft (16), the middle portion of the outer wall of the second connecting shaft (17), and the middle portions of the outer walls of the plurality of rotating shafts (19) are all connected with pulleys (21), wherein several of the pulleys (21) are connected to other pulleys (21) through transmission belts (22).

5. The test paper aging test device using a xenon lamp according to claim 3, characterized in that: Support plates (23) are evenly connected to both sides of the upper end of the frame (12), and the number of the support plates (23) is four groups. The upper parts of one side of the plurality of support plates (23) are rotatably connected to the electric telescopic rods (24). The upper end of the frame (12) is connected to one side of each of the plurality of support plates (23), and the number of the connecting plates (25) is four groups. The upper parts of one side of the plurality of connecting plates (25) are rotatably connected to the rotating blocks (26). One end of the plurality of electric telescopic rods (24) is rotatably connected to the lower parts of one side of the plurality of rotating blocks (26), and a rotating rod (27) is connected between two of the rotating blocks (26) and the other two rotating blocks (26).

6. The test paper aging test device using a xenon lamp according to claim 5, characterized in that: A fixed rod (28) is connected to the middle of the outer wall of one of the rotating rods (27), and pressure rollers (29) are rotatably connected to both sides of the fixed rod (28). The two pressure rollers (29) are located above the supporting roller (18).

7. The test paper aging test device using a xenon lamp according to claim 1, characterized in that: Both sides of the upper ends of the two slides (30) are connected to support rods (32), and the upper ends of the plurality of support rods (32) extend through the upper end of the frame (12). The upper ends of the plurality of support rods (32) are connected to pressure blocks (33), and the number of the pressure blocks (33) is four groups. One side of the upper ends of the plurality of pressure blocks (33) is in contact with one side of the lower ends of the plurality of rotating blocks (26), and sliding grooves (35) are provided on both sides of the inner wall of the frame (12).

8. The test paper aging test device using a xenon lamp according to claim 7, characterized in that: A slider (34) is connected to the middle of one side of the two slide plates (30), and the two sliders (34) are respectively located inside the two slide grooves (35) for sliding connection.