Fluorescent penetration detection device

By designing a fluorescence penetration detection device with a motor drive transmission system, the problem of difficulty in storage and cleaning of existing devices is solved, and convenient device storage and efficient cleaning of detection lamps is achieved.

CN120142310APending Publication Date: 2025-06-13JIANGSU ZHONGRE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510200893.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

The existing fluorescence penetration detection devices are difficult to store easily when they do not use ultraviolet detection lamps, and they cannot easily clean the ultraviolet detection lamps, which affects their irradiation effect.

Method used

A fluorescence penetration detection device including a storage housing, a rotating assembly, a transmission assembly, a moving leg, an ultraviolet fluorescence penetration detection assembly and a cleaning assembly is designed. The storage and cleaning of the ultraviolet light detection lamp is realized through the motor-driven transmission system.

Benefits of technology

It realizes a convenient storage device when no UV light detection lamp is used, simplifies the carrying process, and improves the detection effect of the UV light detection lamp through cleaning components, reducing processing costs.

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Abstract

The invention discloses a fluorescent penetrant detection device, which belongs to the technical field of fluorescent penetrant detection, and comprises a storage shell used for storing an ultraviolet fluorescent penetrant detection assembly; the rotating assembly is used for driving the first transmission assembly, the second transmission assembly, the third transmission assembly and the fourth transmission assembly to rotate; the first transmission assembly is used for driving the fourth transmission assembly to rotate; the second rotating assembly is used for opening the storage shell; the third transmission assembly is used for folding the moving legs; the moving leg is used for moving the fluorescent penetrant detection device; and the ultraviolet fluorescent penetrant detection assembly is used for carrying out fluorescent penetrant detection. A motor is started to drive a first rotating rod to rotate, the first rotating rod rotates to drive a first main belt wheel to rotate, a first belt drives a first auxiliary belt wheel to rotate so as to drive a second rotating rod to rotate, the second rotating rod rotates to drive a second gear to rotate, and the second gear rotates to drive a second rack to move. And the second rack moves to drive the moving plate to move.
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Description

Technical Field

[0001] The present invention relates to a fluorescence penetrant testing device, and particularly to a fluorescence penetrant testing device, belonging to the technical field of fluorescence penetrant testing. Background Art

[0002] Fluorescence analysis is a method for qualitative and quantitative analysis based on the fluorescence spectral characteristics and intensity of substances. The main advantage of this method is high sensitivity. Therefore, there are many on-site analysis methods based on fluorescence analysis, such as fluorescence spectrometers.

[0003] However, in the actual use process of the existing fluorescence penetrant testing device, it is not convenient to store the ultraviolet light detection lamp when the ultraviolet light detection lamp is not in use, which leads to inconvenient carrying. Moreover, it is not convenient to clean the ultraviolet light detection lamp, affecting the irradiation effect of the ultraviolet light detection lamp. Summary of the Invention

[0004] The main purpose of the present invention is to solve the problems of inconvenient carrying and inconvenient cleaning of the ultraviolet light detection lamp, and to provide a fluorescence penetrant testing device.

[0005] The purpose of the present invention can be achieved by adopting the following technical solutions:

[0006] A fluorescence penetrant testing device includes

[0007] A storage housing for storing the ultraviolet light fluorescence penetrant testing component;

[0008] A rotating component for driving the first transmission component, the second transmission component, the third transmission component, and the fourth transmission component to rotate;

[0009] The first transmission component for driving the fourth transmission component to rotate;

[0010] The second rotating component for opening the storage housing;

[0011] The third transmission component for folding the moving legs;

[0012] The moving legs for moving the fluorescence penetrant testing device;

[0013] The ultraviolet light fluorescence penetrant testing component for performing fluorescence penetrant testing;

[0014] The fourth transmission component for driving the ultraviolet light fluorescence penetrant testing component to move for storing the ultraviolet light fluorescence penetrant testing component;

[0015] The cleaning component for cleaning the ultraviolet light fluorescence penetrant testing component.

[0016] Preferably, the storage housing includes a storage housing, a protection plate, a first side rod, a guide ring and a guide rod. Guide rods are installed on both sides of the storage housing. A guide ring is slidably installed on the guide rod. A first side rod is installed on the guide ring. A protection plate is installed at one end of the first side rod.

[0017] Preferably, the rotation assembly includes a motor, a support frame, a top rod and a first rotating rod. A top rod is installed on the top of the storage housing. A support frame is installed at one end of the top rod. A motor is installed on the support frame. A first rotating rod is installed at the output end of the motor.

[0018] Preferably, the first transmission assembly includes a first main pulley, a first belt, a first auxiliary pulley and a second rotating rod. A first main pulley is installed on the first rotating rod. A second rotating rod is rotatably installed on the storage housing. A first auxiliary pulley is installed on the second rotating rod. A first main pulley is installed on the first rotating rod. The first main pulley is connected to the first auxiliary pulley through the first belt.

[0019] Preferably, the second transmission assembly includes a second main pulley, a second belt, a second auxiliary pulley, a third rotating rod, a first gear and a first rack. A first rack is installed on the guide ring. A third rotating rod is rotatably installed on the storage housing. A second auxiliary pulley is installed on the third rotating rod. A second main pulley is installed on the first rotating rod. The second main pulley is connected to the second auxiliary pulley through the second belt. A first gear meshingly connected with the first rack is installed on the third rotating rod.

[0020] Preferably, the third transmission assembly includes a third auxiliary pulley, a third belt, a third main pulley, a fourth rotating rod, a third gear, a fourth auxiliary pulley, a fifth rotating rod, a fourth belt and a fourth main pulley. A plurality of fourth rotating rods are rotatably installed on the storage housing. A third main pulley is installed on the first rotating rod. A third auxiliary pulley is installed on one of the fourth rotating rods. The third auxiliary pulley is connected to the third main pulley through the third belt. Intermeshing third gears are installed on the plurality of fourth rotating rods. A fourth main pulley is installed on the fourth rotating rod. A fifth rotating rod is rotatably installed on the storage housing. A fourth auxiliary pulley is installed on the fifth rotating rod. The fourth auxiliary pulley is connected to the fourth main pulley through the fourth belt.

[0021] Preferably, the moving leg includes a first connecting column, a support leg and a moving wheel. A support leg is rotatably installed on the storage housing. One end of the fifth rotating rod is connected to the support leg. A first connecting column is installed on the first connecting column. A moving wheel is installed at one end of the support leg.

[0022] Preferably, the ultraviolet fluorescence penetration detection assembly includes a first moving rod, a moving ring, a second side rod, a moving plate, a bottom rod, an ultraviolet detection lamp, and a connecting frame. The first moving rod is installed on the storage housing. A moving ring is slidably installed on the first moving rod. The second side rod is installed on the moving ring. One end of the second side rod is installed with a moving plate. The bottom rod is installed on the top of the moving plate. One end of the bottom rod is installed with a connecting frame. The ultraviolet detection lamp is installed on the connecting frame.

[0023] Preferably, the fourth transmission assembly includes a second rack, a second gear, and a third side rod. The second gear is installed on the second rotating rod. The third side rod is installed on one side of the moving plate. One end of the third side rod is installed with a second rack that is meshed and connected with the second gear.

[0024] Preferably, the cleaning assembly includes a pressing plate, a pressing block, a bottom column, a cleaning plate, a cleaning cotton, a second connecting column, a top plate, a sliding plate, a first spring, a sliding block, a moving block, a second moving rod, and a second spring. The pressing plate is slidably installed on the storage housing. The pressing block is installed on the pressing plate. The second connecting column is installed on the top of the pressing plate. One end of the second connecting column is installed with a top plate. The second moving rod is slidably installed on the top plate. One end of the second moving rod is connected to the top plate through the second spring. The other end of the second moving rod is installed with a sliding plate. The bottom column is installed on the bottom of the sliding plate. One end of the bottom column is installed with a cleaning plate. The cleaning cotton is installed on the cleaning plate. The pressing plate is connected to the storage housing through the bottom column. The sliding block is installed on the pressing plate. A sliding groove that cooperates with the sliding block is opened on the storage housing. The moving block is installed on the top plate. A moving groove that cooperates with the moving block is opened on the storage housing.

[0025] The beneficial technical effects of the present invention:

[0026] 1. According to the fluorescence penetration detection device of the present invention, when the motor is started, the first rotating rod rotates. When the first rotating rod rotates, the first main pulley rotates. The first auxiliary pulley is driven to rotate through the first belt, and then the second rotating rod is driven to rotate. When the second rotating rod rotates, the second gear rotates. When the second gear rotates, the second rack moves. When the second rack moves, the moving plate moves, and then the ultraviolet detection lamp can be moved into the storage housing for storage. The ultraviolet detection lamp can be stored when not in use, which is convenient for carrying the fluorescence penetration detection device.

[0027] 2. By setting a moving plate, when the moving plate moves, it squeezes the pressing block. When the moving plate squeezes the pressing block, it drives the pressing plate to slide on the storage housing, shortening the bottom column, and then driving the second connecting column to move. When the second connecting column moves, it drives the top plate to descend. When the top plate descends, it can drive the cleaning cotton to descend to clean the ultraviolet light detection lamp, which is convenient for cleaning the ultraviolet light detection lamp, improves the detection effect of the ultraviolet light detection lamp, and all are driven by one motor, reducing the number of driving parts used, thereby reducing the processing cost and increasing the sales effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0029] Figure 2 is a schematic diagram of the moving wheel structure of the present invention;

[0030] Figure 3 is a schematic diagram of the guide rod structure of the present invention;

[0031] Figure 4 is a schematic diagram of the second gear structure of the present invention;

[0032] Figure 5 is a schematic diagram of the moving plate structure of the present invention;

[0033] Figure 6 is a schematic diagram of the cleaning cotton structure of the present invention;

[0034] Figure 7 is a schematic diagram of the protective plate structure of the present invention;

[0035] Figure 8 is a schematic diagram of the motor structure of the present invention;

[0036] Figure 9 is a schematic diagram of the first auxiliary belt pulley structure of the present invention;

[0037] Figure 10 is a schematic diagram of the support leg structure of the present invention;

[0038] Figure 11 is a schematic diagram of the second spring structure of the present invention.

[0039] In the figure: 1. Storage housing; 11. Protection plate; 12. First side rod; 13. Guide ring; 14. Guide rod; 2. Motor; 21. Support frame; 22. Jack rod; 23. First rotating rod; 3. First main pulley; 31. First belt; 32. First auxiliary pulley; 33. Second rotating rod; 4. Second main pulley; 41. Second belt; 42. Second auxiliary pulley; 44. Third rotating rod; 45. First gear; 46. First rack; 5. Third auxiliary pulley; 51. Third belt; 52. Third main pulley; 53. Fourth rotating rod; 54. Third gear; 55. Fourth auxiliary pulley; 56. Fifth rotating rod; 57. Fourth belt; 58. Fourth main pulley; 6. First connecting column; 61. Support leg; 62. Movable wheel; 7. First movable rod; 71. Movable ring; 72. Second side rod; 73. Movable plate; 74. Bottom rod; 75. Ultraviolet light detection lamp; 76. Connecting frame; 8. Second rack; 81. Second gear; 82. Third side rod; 9. Pressing plate; 91. Pressing block; 92. Bottom column; 93. Cleaning plate; 94. Cleaning cotton; 95. Second connecting column; 96. Top plate; 97. Slide plate; 98. First spring; 99. Slide block; 991. Movable block; 992. Second movable rod; 993. Second spring. Detailed implementation mode

[0040] To make the technical solutions of the present invention clearer and more definite to those skilled in the art, the present invention will be further described in detail below in conjunction with embodiments and the accompanying drawings, but the implementation manners of the present invention are not limited thereto.

[0041] As Figures 1-11As shown, the fluorescence penetrant testing device provided in this embodiment includes a storage housing for storing the ultraviolet light fluorescence penetrant testing component; a rotating component for driving the first transmission component, the second transmission component, the third transmission component, and the fourth transmission component to rotate; a first transmission component for driving the fourth transmission component to rotate; a second rotating component for opening the storage housing; a third transmission component for folding the moving legs; the moving legs for moving the fluorescence penetrant testing device; the ultraviolet light fluorescence penetrant testing component for performing fluorescence penetrant testing; and the fourth transmission component for driving the ultraviolet light fluorescence penetrant testing component to move for storing the ultraviolet light fluorescence penetrant testing component.Cleaning component, used for cleaning the ultraviolet fluorescence penetrant testing component. The rotating component includes a motor 2, a support frame 21, a top rod 22 and a first rotating rod 23. The top of the storage housing 1 is equipped with a top rod 22. One end of the top rod 22 is equipped with a support frame 21. The support frame 21 is equipped with a motor 2. The output end of the motor 2 is equipped with a first rotating rod 23. The first transmission component includes a first main pulley 3, a first belt 31, a first auxiliary pulley 32 and a second rotating rod 33. The first main pulley 3 is installed on the first rotating rod 23. The second rotating rod 33 is rotatably installed on the storage housing 1. The first auxiliary pulley 32 is installed on the second rotating rod 33. The first main pulley 3 is installed on the first rotating rod 23. The first main pulley 3 is connected to the first auxiliary pulley 32 through the first belt 31. The ultraviolet fluorescence penetrant testing component includes a first moving rod 7, a moving ring 71, a second side rod 72, a moving plate 73, a bottom rod 74, an ultraviolet detection lamp 75 and a connecting frame 76. The first moving rod 7 is installed on the storage housing 1. The moving ring 71 is slidably installed on the first moving rod 7. The second side rod 72 is installed on the moving ring 71. One end of the second side rod 72 is equipped with a moving plate 73. The bottom rod 74 is installed on the top of the moving plate 73. One end of the bottom rod 74 is equipped with a connecting frame 76. The ultraviolet detection lamp 75 is installed on the connecting frame 76. The fourth transmission component includes a second rack 8, a second gear 81 and a third side rod 82. The second gear 81 is installed on the second rotating rod 33. One side of the moving plate 73 is equipped with a third side rod 82. One end of the third side rod 82 is equipped with a second rack 8 that meshes with the second gear 81. The storage housing includes a storage housing 1, a protective plate 11, a first side rod 12, a guiding ring 13 and a guiding rod 14. Guiding rods 14 are installed on both sides of the storage housing 1. The guiding ring 13 is slidably installed on the guiding rods 14. The first side rod 12 is installed on the guiding ring 13. One end of the first side rod 12 is equipped with a protective plate 11. When the motor 2 is started, it drives the first rotating rod 23 to rotate. When the first rotating rod 23 rotates, it drives the first main pulley 3 to rotate. Through the first belt 31, it drives the first auxiliary pulley 32 to rotate and then drives the second rotating rod 33 to rotate. When the second rotating rod 33 rotates, it drives the second gear 81 to rotate. When the second gear 81 rotates, it drives the second rack 8 to move. When the second rack 8 moves, it drives the moving plate 73 to move, and thus the ultraviolet detection lamp 75 can be moved into the interior of the storage housing 1 for storage. The ultraviolet detection lamp 75 can be stored when not in use, which is convenient for carrying the fluorescence penetrant testing device. By setting the cooperation between the top rod 22 and the support frame 21, it is convenient to support the motor 2. By setting the cooperation between the first moving rod 7 and the moving ring 71, it is convenient to guide and limit the moving plate 73. By setting the cooperation between the guiding ring 13 and the guiding rod 14, it is convenient to guide and limit the protective plate 11.;

[0042] In this embodiment, as Figure 1 , Figure 7 andFigure 8 As shown, the second transmission assembly includes a second main pulley 4, a second belt 41, a second auxiliary pulley 42, a third rotating rod 44, a first gear 45 and a first rack 46. The first rack 46 is installed on the guiding ring 13. The third rotating rod 44 is rotatably installed on the storage housing 1. The second auxiliary pulley 42 is installed on the third rotating rod 44. The second main pulley 4 is installed on the first rotating rod 23. The second main pulley 4 is connected to the second auxiliary pulley 42 through the second belt 41. The first gear 45 meshed with the first rack 46 is installed on the third rotating rod 44. When the motor 2 is started, it can drive the second main pulley 4 to rotate. When the second main pulley 4 rotates, it drives the second auxiliary pulley 42 to rotate through the second belt 41. When the second auxiliary pulley 42 rotates, it further drives the third rotating rod 44 to rotate. When the third rotating rod 44 rotates, it can drive the first gear 45 to rotate. When the first gear 45 rotates, it can drive the first rack 46 to move, and further drive the protection plate 11 to move to close the storage housing 1, so as to store and protect the ultraviolet light detection lamp 75.

[0043] In this embodiment, as Figure 1 、 Figure 2 and Figure 10As shown in the figure, the third transmission assembly includes a third auxiliary pulley 5, a third belt 51, a third main pulley 52, a fourth rotating rod 53, a third gear 54, a fourth auxiliary pulley 55, a fifth rotating rod 56, a fourth belt 57, and a fourth main pulley 58. A plurality of fourth rotating rods 53 are rotatably installed on the storage housing 1. A third main pulley 52 is installed on the first rotating rod 23. A third auxiliary pulley 5 is installed on one of the fourth rotating rods 53. The third auxiliary pulley 5 is connected to the third main pulley 52 through the third belt 51. Mutually meshing third gears 54 are installed on the plurality of fourth rotating rods 53. A fourth main pulley 58 is installed on the fourth rotating rod 53. A fifth rotating rod 56 is rotatably installed on the storage housing 1. A fourth auxiliary pulley 55 is installed on the fifth rotating rod 56. The fourth auxiliary pulley 55 is connected to the fourth main pulley 58 through the fourth belt 57. The moving leg includes a first connecting column 6, a support leg 61, and a moving wheel 62. The support leg 61 is rotatably installed on the storage housing 1. One end of the fifth rotating rod 56 is connected to the support leg 61. A first connecting column 6 is installed on the first connecting column 6. A moving wheel 62 is installed at one end of the support leg 61. By setting the motor 2, starting the motor 2 can drive the third main pulley 52 to rotate. When the third main pulley 52 rotates, it can drive the third auxiliary pulley 5 to rotate. When the third auxiliary pulley 5 rotates, it drives one of the fourth rotating rods 53 to rotate. When the fourth rotating rod 53 rotates, it drives another fourth rotating rod 53 to rotate through the third gear 54, and then drives the fourth main pulley 58 to rotate. When the fourth main pulley 58 rotates, it drives the fourth auxiliary pulley 55 to rotate through the fourth belt 57, and then can drive the fifth rotating rod 56 to rotate, so that the moving wheel 62 can be folded and stored when not in use, which can facilitate reducing the occupied space of the moving wheel 62 and the support leg 61 during carrying. By setting the moving wheel 62, it is convenient to move the storage housing 1 when using the ultraviolet light detection lamp 75, and then the working position of the ultraviolet light detection lamp 75 can be adjusted.

[0044] In this embodiment, as Figure 1 、 Figure 4 、 Figure 5 、 Figure 6 and Figure 11As shown in the figure, the cleaning assembly includes a pressing plate 9, a pressing block 91, a bottom column 92, a cleaning plate 93, a cleaning cotton 94, a second connecting column 95, a top plate 96, a sliding plate 97, a first spring 98, a sliding block 99, a moving block 991, a second moving rod 992 and a second spring 993. A pressing plate 9 is slidably mounted on the storage housing 1. A pressing block 91 is mounted on the pressing plate 9. A second connecting column 95 is mounted on the top of the pressing plate 9. One end of the second connecting column 95 is mounted with a top plate 96. A second moving rod 992 is slidably mounted on the top plate 96. One end of the second moving rod 992 is connected to the top plate 96 through a second spring 993. The other end of the second moving rod 992 is mounted with a sliding plate 97. A bottom column 92 is mounted on the bottom of the sliding plate 97. One end of the bottom column 92 is mounted with a cleaning plate 93. A cleaning cotton 94 is mounted on the cleaning plate 93. The pressing plate 9 is connected to the storage housing 1 through the bottom column 92. A sliding block 99 is mounted on the pressing plate 9. A sliding groove matching with the sliding block 99 is formed on the storage housing 1. A moving block 991 is mounted on the top plate 96. A moving groove matching with the moving block 991 is formed on the storage housing 1. By providing a moving plate 73, when the moving plate 73 moves, it presses the pressing block 91. When the moving plate 73 presses the pressing block 91, it drives the pressing plate 9 to slide on the storage housing 1, and the bottom column 92 shortens. Further, it drives the second connecting column 95 to move. When the second connecting column 95 moves, it drives the top plate 96 to descend. When the top plate 96 descends, it can drive the cleaning cotton 94 to descend to clean the ultraviolet light detection lamp 75, which is convenient for cleaning the ultraviolet light detection lamp 75 and improves the detection effect of the ultraviolet light detection lamp 75. And all are driven by one motor 2, reducing the number of driving parts used, and further reducing the processing cost, which can increase the sales effect. By providing that the sliding block 99 is slidably connected to the sliding groove, it is convenient to guide and limit the pressing plate 9. By providing that the moving block 991 is slidably connected to the moving groove, it is convenient to guide and limit the top plate 96. By providing that the second moving rod 992 and the second spring 993 cooperate with each other, when the ultraviolet light detection lamp 75 moves, it pushes the cleaning cotton 94, and the second moving rod 992 slides on the top plate 96. When the cleaning cotton 94 is away from the ultraviolet light detection lamp 75, the second spring 993 can restore to drive the cleaning cotton 94 to restore, which can prevent the cleaning cotton 94 from easily blocking the movement of the ultraviolet light detection lamp 75.

[0045] In this embodiment, as Figures 1-11 shown, the working process of a fluorescence penetrant testing device provided in this embodiment is as follows:

[0046] Step 1: The motor 2 starts to drive the second main pulley 4 to rotate. When the second main pulley 4 rotates, it drives the second auxiliary pulley 42 to rotate through the second belt 41. When the second auxiliary pulley 42 rotates, it further drives the third rotating rod 44 to rotate. When the third rotating rod 44 rotates, it drives the first gear 45 to rotate. When the first gear 45 rotates, it can drive the first rack 46 to move. When the first rack 46 moves, it drives the guide ring 13 to slide on the guide rod 14, and further drives the protection plate 11 to move to open the storage housing 1;

[0047] Step 2: The motor 2 starts to drive the third main pulley 52 to rotate. When the third main pulley 52 rotates, it drives the third auxiliary pulley 5 to rotate. When the third auxiliary pulley 5 rotates, it drives one of the fourth rotating rods 53 to rotate. When the fourth rotating rod 53 rotates, it drives the other fourth rotating rod 53 to rotate through the third gear 54, and further drives the fourth main pulley 58 to rotate. When the fourth main pulley 58 rotates, it drives the fourth auxiliary pulley 55 to rotate through the fourth belt 57, and further drives the fifth rotating rod 56 to rotate, and the moving wheel 62 is rotated out of the storage housing 1;

[0048] Step 3: The motor 2 starts to drive the first rotating rod 23 to rotate. When the first rotating rod 23 rotates, it drives the first main pulley 3 to rotate. It drives the first auxiliary pulley 32 to rotate through the first belt 31 and further drives the second rotating rod 33 to rotate. When the second rotating rod 33 rotates, it drives the second gear 81 to rotate. When the second gear 81 rotates, it drives the second rack 8 to move. When the second rack 8 moves, it drives the moving plate 73 to move, and further moves the ultraviolet light detection lamp 75 out of the storage housing 1;

[0049] When the moving plate 73 moves, the moving plate 73 moves away from the pressing block 91. The ultraviolet light detection lamp 75 drives the cleaning cotton 94 to move. The second moving rod 992 slides on the top plate 96, and the second spring 993 elongates. The moving plate 73 moves away from the pressing block 91, and the bottom column 92 elongates, and further drives the cleaning cotton 94 to recover and move away from the ultraviolet light detection lamp 75, and move into the groove at the top of the storage housing 1 for storage. The second spring 993 recovers, and further drives the cleaning cotton 94 to reset.

[0050] In summary, in this embodiment, for the fluorescence penetrant testing device according to this embodiment, when the motor 2 starts, it drives the first rotating rod 23 to rotate. When the first rotating rod 23 rotates, it drives the first main pulley 3 to rotate. The first main pulley 3 drives the first auxiliary pulley 32 to rotate through the first belt 31, and then drives the second rotating rod 33 to rotate. When the second rotating rod 33 rotates, it drives the second gear 81 to rotate. When the second gear 81 rotates, it drives the second rack 8 to move. When the second rack 8 moves, it drives the moving plate 73 to move, and then the ultraviolet light detection lamp 75 can be moved into the storage housing 1 for storage. The ultraviolet light detection lamp 75 can be stored when not in use, which is convenient for carrying the fluorescence penetrant testing device. By setting the ejector rod 22 and the support frame 21 to cooperate with each other, it is convenient to support the motor 2. By setting the first moving rod 7 and the moving ring 71 to cooperate with each other, it is convenient to guide and limit the moving plate 73. By setting the guide ring 13 and the guide rod 14 to cooperate with each other, it is convenient to guide and limit the protection plate 11. When the motor 2 starts, it can drive the second main pulley 4 to rotate. When the second main pulley 4 rotates, it drives the second auxiliary pulley 42 to rotate through the second belt 41. When the second auxiliary pulley 42 rotates, it drives the third rotating rod 44 to rotate. When the third rotating rod 44 rotates, it can drive the first gear 45 to rotate. When the first gear 45 rotates, it can drive the first rack 46 to move, and then drive the protection plate 11 to move to close the storage housing 1 to protect the ultraviolet light detection lamp 75. By setting the motor 2, when the motor 2 starts, it can drive the third main pulley 52 to rotate. When the third main pulley 52 rotates, it can drive the third auxiliary pulley 5 to rotate. When the third auxiliary pulley 5 rotates, it drives one of the fourth rotating rods 53 to rotate. When the fourth rotating rod 53 rotates, it drives the other fourth rotating rod 53 to rotate through the third gear 54, and then drives the fourth main pulley 58 to rotate. When the fourth main pulley 58 rotates, it drives the fourth auxiliary pulley 55 to rotate through the fourth belt 57, and then can drive the fifth rotating rod 56 to rotate. The moving wheels 62 can be folded and stored when not in use, which is convenient to reduce the occupied space of the moving wheels 62 and the support legs 61 when carrying. By setting the moving wheels 62, it is convenient to move the storage housing 1 when using the ultraviolet light detection lamp 75, and then the working position of the ultraviolet light detection lamp 75 can be adjusted. By setting the moving plate 73, when the moving plate 73 moves, it presses the pressing block 91. When the moving plate 73 presses the pressing block 91, it drives the pressing plate 9 to slide on the storage housing 1, and the bottom column 92 shortens, and then drives the second connecting column 95 to move. When the second connecting column 95 moves, it drives the top plate 96 to descend. When the top plate 96 descends, it can drive the cleaning cotton 94 to descend to clean the ultraviolet light detection lamp 75, which is convenient to clean the ultraviolet light detection lamp 75 and improve the detection effect of the ultraviolet light detection lamp 75. And all are driven by one motor 2, reducing the number of driving parts used, and then reducing the processing cost, which can increase the sales effect. By setting the slider 99 to be slidably connected with the chute, it is convenient to guide and limit the pressing plate 9.By setting the moving block 991 to be slidably connected to the moving groove, it is possible to facilitate the guiding and limiting of the top plate 96. By setting the second moving rod 992 and the second spring 993 to cooperate with each other, when the ultraviolet light detection lamp 75 moves, it pushes the cleaning cotton 94, and the second moving rod 992 slides on the top plate 96. When the cleaning cotton 94 moves away from the ultraviolet light detection lamp 75, the restoration of the second spring 993 can drive the cleaning cotton 94 to restore, so that the cleaning cotton 94 is not likely to block the movement of the ultraviolet light detection lamp 75.

[0051] As used in the specification and claims, certain terms are used to refer to specific components. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. The specification and claims do not use the difference in names as a way to distinguish components, but use the difference in functions of components as the criterion for distinction. As mentioned throughout the specification and claims, the term "comprising" is an open-ended term, so it should be interpreted as "including but not limited to". "Substantially" means within an acceptable error range. Those skilled in the art can solve technical problems within a certain error range and basically achieve the technical effect.

[0052] It should be noted that the term "including", "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, so that a commodity or system including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such commodity or system. Without more limitations, the element defined by the statement "including one..." does not exclude the existence of another identical element in the commodity or system including the element.

[0053] The above description shows and describes several preferred embodiments of the present invention. However, as mentioned above, it should be understood that the present invention is not limited to the form disclosed herein, should not be regarded as excluding other embodiments, but can be used in various other combinations, modifications and environments, and can be changed within the scope of the inventive concept described herein through the above teachings or the technology or knowledge in related fields. And the changes and variations made by those skilled in the art without departing from the spirit and scope of the present invention should all be within the protection scope of the appended claims of the present invention.

Claims

1. A fluorescent penetrant detection device, characterized in that: include A storage shell, used for storing an ultraviolet fluorescent penetration detection component; A rotating assembly, used to drive the first transmission assembly, the second transmission assembly, the third transmission assembly and the fourth transmission assembly to rotate; The first transmission assembly is used to drive the fourth transmission assembly to rotate; A second rotating assembly, used for opening the storage housing; A third transmission assembly, used for folding the moving legs; A moving leg for moving the fluorescent penetrant inspection device; UV fluorescent penetrant testing kit, used for fluorescent penetrant testing; The fourth transmission assembly is used to drive the ultraviolet light fluorescent penetrant detection assembly to move and store the ultraviolet light fluorescent penetrant detection assembly; A cleaning component is used to clean the UV fluorescent penetrant detection component.

2. A fluorescent penetrant detection device according to claim 1, characterized in that: The storage shell comprises a storage shell (1), a protective plate (11), a first side rod (12), a guide ring (13) and a guide rod (14); guide rods (14) are installed on both sides of the storage shell (1); guide rings (13) are slidably installed on the guide rods (14); the first side rod (12) is installed on the guide ring (13); and the protective plate (11) is installed on one end of the first side rod (12).

3. A fluorescent penetrant detection device according to claim 2, characterized in that: The rotating assembly comprises a motor (2), a support frame (21), a push rod (22) and a first rotating rod (23); the top of the storage shell (1) is mounted with the push rod (22); one end of the push rod (22) is mounted with the support frame (21); the motor (2) is mounted on the support frame (21); and the output end of the motor (2) is mounted with the first rotating rod (23).

4. A fluorescent penetrant detection device according to claim 3, characterized in that: The first transmission assembly comprises a first main pulley (3), a first belt (31), a first auxiliary pulley (32) and a second rotating rod (33); the first main pulley (3) is mounted on the first rotating rod (23); the second rotating rod (33) is rotatably mounted on the storage shell (1); the first auxiliary pulley (32) is mounted on the second rotating rod (33); the first main pulley (3) is mounted on the first rotating rod (23); the first main pulley (3) is connected to the first auxiliary pulley (32) via a first belt (31).

5. A fluorescent penetrant detection device according to claim 4, characterized in that: The second transmission assembly comprises a second main pulley (4), a second belt (41), a second auxiliary pulley (42), a third rotating rod (44), a first gear (45) and a first rack (46); the first rack (46) is mounted on the guide ring (13); the third rotating rod (44) is rotatably mounted on the storage shell (1); the second auxiliary pulley (42) is mounted on the third rotating rod (44); the second main pulley (4) is mounted on the first rotating rod (23); the second main pulley (4) is connected to the second auxiliary pulley (42) via a second belt (41); the third rotating rod (44) is mounted with a first gear (45) meshing with the first rack (46).

6. A fluorescent penetrant detection device according to claim 5, characterized in that: The third transmission assembly comprises a third auxiliary pulley (5), a third belt (51), a third main pulley (52), a fourth rotating rod (53), a third gear (54), a fourth auxiliary pulley (55), a fifth rotating rod (56), a fourth belt (57) and a fourth main pulley (58); a plurality of fourth rotating rods (53) are rotatably mounted on the storage housing (1); the third main pulley (52) is mounted on the first rotating rod (23); and the third auxiliary pulley (5) is mounted on one of the fourth rotating rods (53); The third auxiliary pulley (5) is connected to the third main pulley (52) via a third belt (51); a plurality of the fourth rotating rods (53) are each provided with a third gear (54) meshing with each other; a fourth main pulley (58) is provided on the fourth rotating rod (53); a fifth rotating rod (56) is rotatably provided on the storage shell (1); a fourth auxiliary pulley (55) is provided on the fifth rotating rod (56); and the fourth auxiliary pulley (55) is connected to the fourth main pulley (58) via a fourth belt (57).

7. A fluorescent penetrant detection device according to claim 6, characterized in that: The movable leg comprises a first connecting column (6), a supporting leg (61) and a movable wheel (62); the supporting leg (61) is rotatably mounted on the storage shell (1); one end of the fifth rotating rod (56) is connected to the supporting leg (61); the first connecting column (6) is mounted on the first connecting column (6); and the movable wheel (62) is mounted on one end of the supporting leg (61).

8. A fluorescent penetrant detection device according to claim 7, characterized in that: The ultraviolet fluorescent penetration detection component comprises a first moving rod (7), a moving ring (71), a second side rod (72), a moving plate (73), a bottom rod (74), an ultraviolet detection lamp (75) and a connecting frame (76); the first moving rod (7) is installed on the storage shell (1); the moving ring (71) is slidably installed on the first moving rod (7); the second side rod (72) is installed on the moving ring (71); the moving plate (73) is installed at one end of the second side rod (72); the bottom rod (74) is installed on the top of the moving plate (73); the connecting frame (76) is installed at one end of the bottom rod (74); and the ultraviolet detection lamp (75) is installed on the connecting frame (76).

9. A fluorescent penetrant detection device according to claim 8, characterized in that: The fourth transmission assembly comprises a second rack (8), a second gear (81) and a third side rod (82); the second gear (81) is mounted on the second rotating rod (33); the third side rod (82) is mounted on one side of the movable plate (73); and the second rack (8) meshingly connected with the second gear (81) is mounted on one end of the third side rod (82).

10. A fluorescent penetrant detection device according to claim 9, characterized in that: The cleaning assembly comprises a pressing plate (9), a pressing block (91), a bottom column (92), a cleaning plate (93), a cleaning cotton (94), a second connecting column (95), a top plate (96), a sliding plate (97), a first spring (98), a sliding block (99), a moving block (991), a second moving rod (992) and a second spring (993); the pressing plate (9) is slidably mounted on the storage shell (1); the pressing plate (9) is mounted on the pressing plate (9); the second connecting column (95) is mounted on the top of the pressing plate (9); one end of the second connecting column (95) is mounted on the top plate (96); the second moving rod (992) is slidably mounted on the top plate (96); one end of the second moving rod (992) is The top plate (96) is connected via a second spring (993); a slide plate (97) is installed at the other end of the second moving rod (992); a bottom column (92) is installed at the bottom of the slide plate (97); a cleaning plate (93) is installed at one end of the bottom column (92); a cleaning cotton (94) is installed on the cleaning plate (93); the pressing plate (9) is connected to the storage shell (1) via the bottom column (92); a slider (99) is installed on the pressing plate (9); a sliding groove that cooperates with the slider (99) is provided on the storage shell (1); a moving block (991) is installed on the top plate (96); a moving groove that cooperates with the moving block (991) is provided on the storage shell (1).