Xenon lamp aging test box device
By introducing filtration, knocking and spraying structures into the xenon lamp aging test chamber, the problems of filter plate blockage and pollutant removal are solved, ensuring gas purity and improving the accuracy and reliability of the experiment.
Patent Information
- Application Number
- CN202421458077.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-06-24
AI Technical Summary
The filter plate in the aging test chamber of the existing xenon lamp is prone to clogging, resulting in a decrease in gas circulation and filtration efficiency, and the inability to effectively remove contaminants in the test chamber, affecting the accuracy of the experimental results.
A xenon lamp aging test chamber was designed, which includes a filter structure, a knock structure and a spray structure. The gas is filtered through the filter plate, and the knock structure is used to prevent blockage. The spray structure cleans the filter plate to ensure that the gas is pure.
Effectively remove pollutants in the test chamber, keep the gas components in line with experimental requirements, and improve the accuracy and repeatability of experimental results.
Smart Images

Figure CN223154801U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aging boxes, in particular to a xenon lamp aging test box device. Background Technique
[0002] The aging of polymer materials (including plastics, rubbers, fibers, coatings, etc.) mainly refers to the phenomenon that during the processing, storage or use of materials, due to the influence of external factors such as heat, light, oxygen, mechanical stress, ozone, harmful metal ions, radiation, etc., physical or chemical changes occur inside the materials, the performance deteriorates, and the materials gradually lose their use value. Xenon lamp aging means that under the irradiation of a xenon arc lamp, the aging of polymer materials is accelerated. The xenon arc lamp has the most similar spectral energy distribution to sunlight, so it is widely used in the aging test of plastics.
[0003] After long-term use in the prior art, the filter plate may be blocked due to the accumulation of particulate matter. Without a knocking structure for cleaning, the blockage problem will be more serious, affecting the gas flow and filtration efficiency. The pollutants on the filter plate may not be completely removed. Without a spraying structure, the pollutants inside the test box cannot be effectively removed, and the harmful substances or odors in the gas cannot be removed, making the gas components inside the test box not meet the experimental requirements, thus making it difficult to ensure the accuracy of the experimental results. Content of the Utility Model
[0004] The purpose of the utility model is to provide a xenon lamp aging test box device to solve the problems put forward in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solution:
[0006] A xenon lamp aging test box device includes a placement structure. The placement structure includes a test box body and a box door. The box door is rotatably installed on one side of the test box body. A handle is fixedly installed on the box door. A test structure is arranged inside the test box body. A filtering structure is arranged on the side of the test box body away from the box door. The filtering structure includes a filtering box. A circulation structure is arranged outside the test box body. A knocking structure is arranged inside the filtering box. A spraying structure is arranged on one side of the test box body.
[0007] As a further scheme of the utility model: The test structure includes a xenon lamp. The xenon lamp is fixedly installed at the top end inside the test box body. A support frame is fixedly installed at the bottom end inside the test box body. A support plate is installed on the support frame.
[0008] As a further solution of the present utility model: The filtering box is installed on one side of the test box body. A through groove is provided on one side of the filtering box. A drain valve is installed at the bottom end of the filtering box. A filter plate is arranged inside the filtering box. Sliding grooves are fixedly installed on both sides of the filter plate. Slide rails are respectively fixedly installed on both sides inside the filtering box. The sliding grooves extend onto the slide rails. The filter plate is slidably connected to the filtering box through the sliding grooves and the slide rails. A sealing plate is fixedly installed on one side of the filter plate. A handle is fixedly installed on the sealing plate.
[0009] As a further solution of the present utility model: The circulation structure includes an air pump, an air inlet pipe, an air outlet pipe and a conduit. The air pump is installed on one side of the test box body. The air inlet end of the air pump is communicated with the inside of the test box body through the air inlet pipe. The air outlet end of the air pump is communicated with the filtering box through the conduit. The conduit is at the bottom end of the filter plate. The top end of the filtering box is communicated with the inside of the test box body through the air outlet pipe.
[0010] As a further solution of the present utility model: The knocking structure includes a crankshaft, a motor and a belt. The crankshaft is rotatably installed inside the filtering box. There are two crankshafts. The motor is installed outside the filtering box. The motor shaft of the motor is fixedly connected to one end of the crankshaft. A knocking rod is rotatably installed on the crankshaft. A limiting plate is fixedly installed inside the filtering box. The knocking rod passes through the limiting plate and extends to the top end of the limiting plate, and the knocking rod is slidably connected to the limiting plate. A first pulley and a second pulley are respectively fixedly installed on the crankshaft. The first pulley and the second pulley are connected by a belt.
[0011] As a further solution of the present utility model: The spraying structure includes a storage tank, a water pump and a water pipe. The water pump is installed on one side of the test box body. The storage tank is installed on one side of the filtering box. The water inlet end of the water pump is communicated with the storage tank through the water pipe. A spraying disc is installed at the top end inside the filtering box. The water outlet end of the water pump is communicated with the spraying disc through the water pipe.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] 1. The gas is filtered by the filter plate. At the same time, the filter plate is knocked by the knocking structure to reduce the blockage of the filter plate and accelerate the filtering efficiency. The gas is cleaned by the spraying structure, which can effectively remove the pollutants inside the test box, thereby keeping the test environment clean, controlling the gas components inside the test box, removing harmful substances or peculiar smells in the gas, ensuring that the gas components inside the test box meet the experimental requirements, thus guaranteeing the accuracy of the experimental results, reducing the interference factors in the experimental process, and improving the repeatability and accuracy of the experimental results. Description of the Drawings
[0014] Figure 1 It is a three-dimensional schematic diagram of the present utility model.
[0015] Figure 2 It is a schematic diagram of the test structure of the utility model.
[0016] Figure 3 It is a rear view schematic diagram of the utility model.
[0017] Figure 4 It is a cross-sectional schematic diagram of the filter box of the present utility model.
[0018] Figure 5 It is a schematic diagram of the filtering structure of the utility model.
[0019] Figure 6 It is a schematic diagram of the knocking structure of the utility model.
[0020] Notes on the accompanying drawings: 1. placement structure; 11. test box; 12. box door; 2. test structure; 21. xenon lamp; 22. support frame; 23. support plate; 3. filtering structure; 31. filter box; 32. filter plate; 33. sealing plate; 34. slide; 4. circulation structure; 41. air pump; 42. air inlet pipe; 43. air outlet pipe; 44. duct; 5. knocking structure; 51. crankshaft; 52. motor; 53. limit plate; 54. knocking rod; 55. first pulley; 56. second pulley; 57. belt; 6. spraying structure; 61. storage box; 62. water pump; 63. water pipe; 64. spray disc. DETAILED DESCRIPTION
[0021] The following embodiments will be combined with the accompanying drawings to describe the utility model in detail. In the drawings or descriptions, similar or identical parts use the same reference numerals, and in actual applications, the shape, thickness or height of each component can be enlarged or reduced. The various embodiments listed in the utility model are only used to illustrate the utility model, and are not used to limit the scope of the utility model. Any obvious modifications or changes made to the utility model do not depart from the spirit and scope of the utility model.
[0022] Example
[0023] See also Figures 1 to 6, in the embodiment of the present utility model, a xenon lamp aging test chamber device includes a placement structure 1. The placement structure 1 includes a test chamber body 11 and a chamber door 12. The chamber door 12 is rotatably installed on one side of the test chamber body 11, and a handle is fixedly installed on the chamber door 12. A test structure 2 is arranged inside the test chamber body 11. The test structure 2 includes a xenon lamp 21. The xenon lamp 21 is fixedly installed at the top end inside the test chamber body 11. A support frame 22 is fixedly installed at the bottom end inside the test chamber body 11, and a support plate 23 is installed on the support frame 22. Open the chamber door 12, place the sample above the support plate 23, close the chamber door 12, and start the xenon lamp 21. The sample on the support plate 23 is subjected to an aging test by the light emitted by the xenon lamp 21. A filtering structure 3 is arranged on the side of the test chamber body 11 away from the chamber door 12. The filtering structure 3 includes a filtering box 31. The filtering box 31 is installed on one side of the test chamber body 11. A through groove is arranged on one side of the filtering box 31, and a drain valve is installed at the bottom end of the filtering box 31. A filter plate 32 is arranged inside the filtering box 31. Sliding grooves 34 are fixedly installed on both sides of the filter plate 32. Slide rails are respectively fixedly installed on both sides inside the filtering box 31. The sliding grooves 34 extend into the slide rails, and the filter plate 32 is slidably connected to the filtering box 31 through the sliding grooves 34 and the slide rails. A sealing plate 33 is fixedly installed on one side of the filter plate 32, and a handle is fixedly installed on the sealing plate 33. A circulation structure 4 is arranged outside the test chamber body 11. The circulation structure 4 includes an air pump 41, an air inlet pipe 42, an air outlet pipe 43, and a conduit 44. The air pump 41 is installed on one side of the test chamber body 11. The air inlet end of the air pump 41 is communicated with the inside of the test chamber body 11 through the air inlet pipe 42. The air outlet end of the air pump 41 is communicated with the filtering box 31 through the conduit 44. The conduit 44 is at the bottom end of the filter plate 32. The top end of the filtering box 31 is communicated with the inside of the test chamber body 11 through the air outlet pipe 43. A knocking structure 5 is arranged inside the filtering box 31. The knocking structure 5 includes a crankshaft 51, a motor 52, and a belt 57. The crankshaft 51 is rotatably installed inside the filtering box 31. There are two crankshafts 51. The motor 52 is installed outside the filtering box 31. The motor shaft of the motor 52 is fixedly connected to one end of the crankshaft 51. A knocking rod 54 is rotatably installed on the crankshaft 51. A limiting plate 53 is fixedly installed inside the filtering box 31. The knocking rod 54 passes through the limiting plate 53 and extends to the top end of the limiting plate 53, and the knocking rod 54 is slidably connected to the limiting plate 53. A first pulley 55 and a second pulley 56 are respectively fixedly installed on the crankshaft 51. The first pulley 55 and the second pulley 56 are connected by the belt 57. A spraying structure 6 is arranged on one side of the test chamber body 11. The spraying structure 6 includes a storage tank 61, a water pump 62, and a water pipe 63. The water pump 62 is installed on one side of the test chamber body 11. The storage tank 61 is installed on one side of the filtering box 31. The water inlet end of the water pump 62 is communicated with the storage tank 61 through the water pipe 63. A spray disc 64 is installed at the top end inside the filtering box 31. The water outlet end of the water pump 62 is communicated with the spray disc 64 through the water pipe 63;
[0024] Please refer to Figures 1 to 6, when testing materials inside the test chamber 11, harmful gases will be generated due to material aging. Start the air pump 41. The harmful gases inside the test chamber 11 are pumped out by the air pump 41, enter the interior of the filter box 31 through the intake pipe 42 and the conduit 44. The gas flows upward and is filtered by the filter plate 32. Start the motor 52. The motor shaft of the motor 52 drives the crankshaft 51 to rotate. The crankshaft 51 drives the first pulley 55 to rotate. Since the first pulley 55 is connected to the second pulley 56 by a belt 57, the first pulley 55 drives the second pulley 56 to rotate through the belt 57. The second pulley 56 drives another crankshaft 51 to rotate. The crankshaft 51 drives the knocking rod 54 to reciprocate in the limit plate 53. The knocking rod 54 knocks on the filter plate 32. By knocking on the filter plate 32, it prevents impurities in the gas from clogging on the filter plate 32 and improves the filtering effect. Start the water pump 62. The water pump 62 pumps out the water in the storage tank 61 through the water pipe 63 and pumps it into the spray disc 64. The water is sprayed out through the spray disc 64. The water spray dissolves the harmful substances in the gas. At the same time, the sprayed water cleans the filter plate 32 and improves the service life of the filter plate 32. The filtered and cleaned gas re-enters the test chamber 11 through the outlet pipe 43, which can effectively remove the pollutants inside the test chamber 11, including particulate matter, chemical substances, etc., thus keeping the test environment clean. The cleaned water can be discharged from the drain valve. When the filter plate 32 needs to be replaced, just pull the handle and pull out the filter plate 32.
[0025] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.
[0026] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A xenon lamp aging test chamber device, comprising a placement structure (1), the placement structure (1) includes a test chamber body (11) and a chamber door (12), the chamber door (12) is rotatably installed on one side of the test chamber body (11), and a handle is fixedly installed on the chamber door (12), characterized in that, A test structure (2) is arranged inside the test box body (11). A filtering structure (3) is arranged on one side of the test box body (11) away from the box door (12). The filtering structure (3) includes a filtering box (31). A circulating structure (4) is arranged outside the test box body (11). A knocking structure (5) is arranged inside the filtering box (31). A spraying structure (6) is arranged on one side of the test box body (11).
2. The xenon lamp aging test chamber device according to claim 1, wherein The test structure (2) includes a xenon lamp (21). The xenon lamp (21) is fixedly installed at the top end inside the test box body (11). A support frame (22) is fixedly installed at the bottom end inside the test box body (11). A support plate (23) is installed on the support frame (22).
3. The xenon lamp aging test chamber device according to claim 1, characterized in that, The filtering box (31) is installed on one side of the test box body (11). A through groove is arranged on one side of the filtering box (31). A drain valve is installed at the bottom end of the filtering box (31). A filter plate (32) is arranged inside the filtering box (31). Slide grooves (34) are fixedly installed on both sides of the filter plate (32). Slide rails are respectively fixedly installed on both sides inside the filtering box (31). The slide grooves (34) extend into the slide rails. The filter plate (32) is slidably connected to the filtering box (31) through the slide grooves (34) and the slide rails. A sealing plate (33) is fixedly installed on one side of the filter plate (32). A handle is fixedly installed on the sealing plate (33).
4. A xenon lamp aging test chamber device according to claim 1, characterized in that The circulating structure (4) includes an air pump (41), an air inlet pipe (42), an air outlet pipe (43) and a conduit (44). The air pump (41) is installed on one side of the test box body (11). The air inlet end of the air pump (41) is communicated with the inside of the test box body (11) through the air inlet pipe (42). The air outlet end of the air pump (41) is communicated with the filtering box (31) through the conduit (44). The conduit (44) is at the bottom end of the filter plate (32). The top end of the filtering box (31) is communicated with the inside of the test box body (11) through the air outlet pipe (43).
5. The xenon lamp aging test chamber device according to claim 1, characterized in that, The knocking structure (5) includes a crankshaft (51), a motor (52) and a belt (57). The crankshaft (51) is rotatably installed inside the filtering box (31). There are two crankshafts (51). The motor (52) is installed outside the filtering box (31). The motor shaft of the motor (52) is fixedly connected to one end of the crankshaft (51). A knocking rod (54) is rotatably installed on the crankshaft (51). A limiting plate (53) is fixedly installed inside the filtering box (31). The knocking rod (54) passes through the limiting plate (53) and extends to the top end of the limiting plate (53), and the knocking rod (54) is slidably connected to the limiting plate (53). A first pulley (55) and a second pulley (56) are respectively fixedly installed on the crankshaft (51). The first pulley (55) and the second pulley (56) are connected through the belt (57).
6. The xenon lamp aging test chamber device according to claim 1, characterized in that, The spray structure (6) includes a storage tank (61), a water pump (62) and a water pipe (63). The water pump (62) is installed on one side of the test box body (11), the storage tank (61) is installed on one side of the filter box (31), the water inlet end of the water pump (62) is connected to the storage tank (61) through the water pipe (63), a spray disc (64) is installed at the top end inside the filter box (31), and the water outlet end of the water pump (62) is interconnected with the spray disc (64) through the water pipe (63).