A testing device for processing automotive ambient lights
By designing a car ambient light detection device with fixed components, rotating components, and detection components, the problem of low detection efficiency in existing devices is solved, achieving efficient position adjustment and all-round detection, thus improving detection efficiency and range.
Patent Information
- Application Number
- CN202510083210.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2045-01-20
AI Technical Summary
Existing testing equipment for automotive ambient lighting processing cannot perform simultaneous testing when ambient lights need to be frequently changed during the testing process, resulting in low testing efficiency.
A detection device comprising a fixing component, a rotating component, and a detection component is designed. The fixing component adjusts the position of the ambient light through a fixing base and a rotating cylinder. The detection component performs omnidirectional detection through a photosensitive element and a temperature sensor. The rotating component realizes the adjustment and replacement of the position of the ambient light through a rotating motor and a connecting structure.
It improves the efficiency of automotive ambient lighting inspection, reduces labor intensity, expands the inspection scope, and achieves comprehensive quality inspection.
Smart Images

Figure CN119827110B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of feeding system technology, specifically a detection device for automotive ambient lighting processing. Background Technology
[0002] Ambient lighting, also known as LED ambient lighting, is a type of lighting device installed inside a car. It can enhance the atmosphere inside the car and improve its overall quality. It is becoming increasingly popular and widespread, gradually moving from being an exclusive feature of high-end cars to being available in mainstream vehicles. Currently, most automotive ambient lights use LED light sources and are typically long and thin in various shapes. After the automotive ambient lights are manufactured, they need to be tested for quality using testing equipment.
[0003] Existing testing devices for automotive ambient lighting processing have certain drawbacks. These devices typically use mounting components to fix the ambient lights in place, and then use testing components to inspect their quality. However, if the ambient light needs to be installed or replaced during the testing process, the testing components must be stopped to allow for the installation of the new ambient light, thus reducing testing efficiency and failing to meet user needs. Summary of the Invention
[0004] The present invention aims to solve the technical problems existing in the prior art; to this end, the present invention proposes a testing device for the processing of automotive ambient lights.
[0005] A testing device for automotive ambient lighting processing includes a fixing component, a rotating component, and a testing component. The fixing component includes several sets of fixing seats for fixing and connecting the automotive ambient lights, and the fixing seats have fixing grooves inside for fixing the automotive ambient lights. The rotating component includes a rotating cylinder that controls the rotation of the several sets of fixing seats to adjust the position of the automotive ambient lights. The testing component includes a photosensitive element movably disposed on the outside of the rotating cylinder for detecting the automotive ambient lights and a temperature sensor detachably mounted on the inside of the fixing seats and in contact with the automotive ambient lights. The photosensitive element detects the brightness, color temperature, and color of the automotive ambient lights by moving its position, and the temperature sensor monitors the temperature distribution of the ambient lights during operation to detect whether there are overheated areas or poor heat dissipation problems.
[0006] As a further embodiment of the present invention: the fixing component further includes a fixing head movably connected to the fixing seat, a fixing strip symmetrically arranged on the fixing head, and a locking block arranged on the inner side of the fixing strip and engaging with the fixing seat. The vertical cross-section of the fixing head is the same as that of the fixing seat. The fixing seat is symmetrically provided with fixing grooves that match the fixing strips. The interior of the fixing seat is provided with a locking groove that engages with the locking block. The fixing groove and the locking groove are in communication.
[0007] As a further aspect of the present invention: the fixing assembly further includes a movable component movably mounted on the fixing seat, a first electric telescopic rod detachably mounted on the outer surface of the movable component, and a limiting plate disposed on the inner side of the movable component and detachably connected to the output shaft of the first electric telescopic rod. The inner side of the limiting plate is provided with a buffer strip that fits against the car ambient light. The movable component may be in the shape of an "L". The first electric telescopic rod controls the buffer strip to squeeze and limit the car ambient light through the limiting plate.
[0008] As a further aspect of the present invention: the fixing assembly further includes a first rack detachably mounted on the outer surface of the fixing base, a first gear rotatably disposed on the inner side of the moving part and meshing with the first rack, several sets of auxiliary rollers detachably mounted on the inner wall of the moving part and rollingly connected to the fixing base, and a first motor disposed on the moving part and controlling the rotation of the first gear. The fixing base is symmetrically provided with two sets of roller grooves that match the auxiliary rollers. The auxiliary rollers make it easier for the moving part to move. The first motor controls the moving part to move horizontally on the fixing base through the first gear and the first rack.
[0009] As a further aspect of the present invention: the detection assembly further includes a detection component rotatably disposed inside the fixed head and electrically connected to the automotive ambient light, a rotating rod symmetrically disposed on the outer surface of the detection component, a second motor disposed outside the fixed head and controlling the rotation of the rotating rod, and several sets of second electric telescopic rods detachably mounted on the outer wall of the rotating cylinder and controlling the horizontal movement of the fixed head. The second motor can control the rotation of the detection component through the rotating rod, and the second electric telescopic rod drives the detection component to move horizontally through the fixed head, facilitating the connection of the automotive ambient light to the detection component by the operator. The detection component can connect the automotive ambient light to a power supply device. The detection component is internally equipped with an electrical testing unit for testing the automotive ambient light. The electrical testing unit can detect the voltage, current, and resistance of the automotive ambient light and transmit the test results to a display device.
[0010] As a further embodiment of the present invention: the fixing assembly further includes a fixing block symmetrically arranged on the outer surface of the detection piece, a fixing rod inserted into the fixing block, a reinforcing rod coaxial with the fixing rod, and a first spring sleeved on the reinforcing rod. One end of the reinforcing rod extends into the interior of the fixing seat and can fit against the outer surface of the card block. The interior of the fixing seat is provided with a through groove for horizontal movement of the fixing rod and the reinforcing rod. The fixing block is provided with a fixing hole connected to the fixing rod.
[0011] As a further embodiment of the present invention: the detection assembly further includes a first moving carriage disposed outside the rotating cylinder, a detection seat detachably mounted on one side of the first moving carriage, a display device disposed on the other side of the first moving carriage, and a third motor detachably mounted on the outside of the detection seat. Several sets of fixed seats are arranged in a circular array on the rotating cylinder. The display device is equipped with an alarm module, which can display data indicating unqualified detection results and remind users to classify them. Each set of fixed seats is assigned a different number and connected to the display device, displaying data corresponding to the assigned number. The detection seat is internally equipped with a screw drive device for controlling the horizontal movement of the photosensitive element. A mounting block is mounted on the screw drive device, and a mounting rod detachably fixed to the mounting block is vertically mounted on the photosensitive element. The mounting block has mounting holes for connecting to the mounting rod. The first moving carriage controls the horizontal movement of the detection seat, and the third motor controls the horizontal reciprocating movement of the photosensitive element via the screw drive device.
[0012] As a further aspect of the present invention: the rotating assembly further includes a second moving carriage capable of horizontal movement, a support seat vertically disposed on the upper end of the second moving carriage and rotatably connected to the rotating cylinder, a reinforcing cylinder detachably disposed on the inner side of the rotating cylinder, and a power supply device disposed inside the reinforcing cylinder and providing electrical energy. The support seat has a "U"-shaped structure, and both ends of the reinforcing cylinder are detachably provided with cylinder covers. The power supply device is detachably and fixedly installed inside the reinforcing cylinder. The rotating assembly further includes a rotary motor disposed on the outer surface of the support seat and controlling the rotation of the rotating cylinder, a connecting seat rotatably disposed on the inner side of the support seat and detachably connected to the output shaft of the rotary motor, and a first connecting rod disposed at both ends of the outer surface of the reinforcing cylinder and detachably fixed to the connecting seat. One end of the first connecting rod is attached to one end of the connecting seat, and the connecting seat has a cylindrical structure.
[0013] As a further embodiment of the present invention: the rotating assembly further includes a connecting sleeve sleeved on the first connecting rod and inserted into the connecting seat, a second spring sleeved on the first connecting rod and connected to the reinforcing cylinder and the connecting sleeve respectively, a first connecting block symmetrically and movably disposed inside the connecting seat and able to fit with the connecting sleeve, and a second connecting rod vertically disposed at the other end of the first connecting block. A third spring is sleeved on the second connecting rod. The connecting sleeve has an annular structure. The connecting seat has a first connecting groove for connecting with the connecting sleeve. The second spring connects the connecting sleeve to the first connecting rod, and the third spring connects the second connecting rod to the connecting seat. The rotating assembly further includes a second connecting block that can be inserted and fixed to the first connecting rod, a second rack symmetrically and vertically disposed on one side of the second connecting block, a second gear meshing with the second rack, and a third rack disposed on the inner side of the first connecting block and meshing with the second gear. One end of the first connecting rod has a second connecting groove for connecting with the second connecting block. The first connecting block controls the second connecting block to move horizontally through the third rack, the second gear, and the second rack.
[0014] As a further aspect of the present invention: the detection assembly further includes a detection box for detecting automotive ambient lights, several sets of detection probes detachably installed on the top surface inside the detection box, a detection window located on the side of the detection box near the first moving vehicle, and a box door located on the other side of the detection box. The detection probes are capable of visually inspecting the automotive ambient lights. The box door is equipped with a closable feed door. The detection window can be opened to facilitate the first moving vehicle to move the detection seat and photosensitive element to the detection box to detect the automotive ambient lights.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] (1) The present invention controls the fixed seat to rotate by setting a rotating component, a rotating motor, a connecting seat, a first connecting rod, a reinforcing cylinder and a rotating cylinder, and adjusts the position of several groups of car ambient lights to perform quality inspection of car ambient lights while replacing the car ambient lights to be inspected, thereby improving the inspection efficiency of car ambient lights. The connecting sleeve, the second spring, the first connecting block, the second connecting rod, the third spring, the second connecting block, the second rack, the second gear and the third rack can disassemble or fix the first connecting rod and the connecting seat, which facilitates the disassembly and maintenance of the rotating cylinder, improves the disassembly and installation efficiency of the rotating cylinder and reduces the labor intensity of the workers.
[0017] (2) The present invention can connect the car ambient light by setting a fixed component, a second electric telescopic rod, a second motor, a detection component and a fixing head. The second electric telescopic rod, the fixing head and the fixing strip work together to adjust the distance between the detection component and the fixing seat, so as to connect and detect car ambient lights of different sizes, improve the application range of the detection device. The fixing head, fixing strip, card block, reinforcing rod, first spring, fixing rod and fixing block fix the detection component. The detection component can be limited and fixed without starting the second motor, saving power. The first motor, first gear, first rack and auxiliary roller control the movement of the moving component. The moving component, the first electric telescopic rod, the limiting plate and the buffer strip limit the car ambient light, so as to quickly disassemble or replace the car ambient light, improve the space utilization of the fixing seat and improve the detection efficiency of the car ambient light.
[0018] (3) The present invention uses a detection component, a detection seat, a third motor, a lead screw transmission device, a mounting block and a mounting rod to drive the photosensitive element to move. The photosensitive element, the detection probe and the temperature sensor perform all-round detection of the car ambient light, thereby improving the detection effect of the car ambient light. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention.
[0020] Figure 2 This is a partial structural diagram of the rotating component and the detection component in this invention.
[0021] Figure 3 In this invention Figure 2 Enlarged view of point A in the middle.
[0022] Figure 4 This is a partial structural diagram of the rotating component and the fixed component in this invention.
[0023] Figure 5 This is a partial structural diagram of the fixing component in this invention.
[0024] Figure 6 This is a partial structural diagram of the fixing head and fixing strip in this invention.
[0025] Figure 7 In this invention Figure 6 Enlarged view of point B in the middle.
[0026] Figure 8 This is a partial structural diagram of the fixing component in this invention.
[0027] Figure 9 This is a partial structural diagram of the photosensitive element and the lead screw drive device in this invention.
[0028] In the diagram: 1. Fixed base; 2. Rotating cylinder; 3. Photosensitive element; 4. Temperature sensor; 5. Fixed head; 6. Fixed strip; 7. Clamping block; 8. Moving part; 9. First electric telescopic rod; 10. Limiting plate; 11. Buffer strip; 12. First rack; 13. First gear; 14. Auxiliary roller; 15. First motor; 16. Detection piece; 17. Second motor; 18. Second electric telescopic rod; 19. Fixed block; 20. Fixed rod; 21. Reinforcing rod; 22. First spring; 23. Detection base; 24. First moving cart; 25. ... 26. Three motors; 27. Screw drive device; 28. Mounting block; 29. Mounting rod; 20. Second moving carriage; 31. Support seat; 32. Reinforcing cylinder; 33. Rotary motor; 34. Connecting seat; 35. First connecting rod; 36. Connecting sleeve; 37. Second spring; 38. First connecting block; 39. Second connecting rod; 40. Third spring; 41. Second rack; 42. Second gear; 43. Third rack; 44. Detection box; 45. Detection probe; 46. Detection window; 47. Box door; 48. Feed door. Detailed Implementation
[0029] The technical solution of the present invention will be clearly and completely described below with reference to the embodiments. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0030] Example 1
[0031] Please see Figure 1 - Figure 8 This application provides a testing device for automotive ambient lighting processing, including a fixing component, a rotating component, and a testing component. The fixing component includes several sets of fixing seats 1 for fixing and connecting the automotive ambient lights. The fixing seats 1 have fixing grooves inside for fixing the automotive ambient lights. The fixing component facilitates the fixing and connection of automotive ambient lights and reduces the labor intensity of workers. The rotating component includes a rotating cylinder 2 for controlling the rotation of several sets of fixing seats 1 to adjust the position of the automotive ambient lights. The testing component includes a photosensitive element 3 movably disposed on the outside of the rotating cylinder 2 for detecting the automotive ambient lights and a temperature sensor 4 detachably installed on the inside of the fixing seats 1 and in contact with the automotive ambient lights. The photosensitive element 3 detects the brightness, color temperature, and color of the automotive ambient lights by moving its position. The temperature sensor 4 monitors the temperature distribution of the ambient lights during operation and detects whether there are overheated areas or poor heat dissipation problems.
[0032] The fixing component of the present invention also includes a fixing head 5 movably connected to the fixing base 1, a fixing strip 6 symmetrically arranged on the fixing head 5, and a locking block 7 arranged on the inner side of the fixing strip 6 and engaging with the fixing base 1. The vertical cross section of the fixing head 5 is the same as that of the fixing base 1. The fixing base 1 is symmetrically provided with fixing grooves that match the fixing strip 6. The interior of the fixing base 1 is provided with a locking groove that engages with the locking block 7. The locking block 7 can fix the fixing strip 6 without the need for the second motor 17 to limit the fixing strip 6, which can reduce the energy consumption of the second motor 17. The fixing groove and the locking groove are connected.
[0033] The fixing component of the present invention also includes a movable part 8 movably mounted on the fixing base 1, a first electric telescopic rod 9 detachably mounted on the outer surface of the movable part 8, and a limiting plate 10 disposed on the inner side of the movable part 8 and detachably connected to the output shaft of the first electric telescopic rod 9. The inner side of the limiting plate 10 is provided with a buffer strip 11 that fits against the car ambient light, and the outer surface of the limiting plate 10 is provided with a pressure sensor that can detect the compressive strength of the car ambient light. The movable part 8 can be in the shape of an "L". The first electric telescopic rod 9 controls the buffer strip 11 to squeeze and limit the car ambient light through the limiting plate 10.
[0034] The fixing assembly of the present invention also includes a first rack 12 detachably mounted on the outer surface of the fixing base 1, a first gear 13 rotatably disposed inside the movable part 8 and meshing with the first rack 12, several sets of auxiliary rollers 14 detachably mounted on the inner wall of the movable part 8 and rollingly connected to the fixing base 1, and a first motor 15 disposed on the movable part 8 and controlling the rotation of the first gear 13. The fixing base 1 is symmetrically provided with two sets of roller grooves that match the auxiliary rollers 14. The auxiliary rollers 14 make it easier for the movable part 8 to move. The first motor 15 controls the movable part 8 to move horizontally on the fixing base 1 through the first gear 13 and the first rack 12.
[0035] The fixing assembly of the present invention also includes a fixing block 19 symmetrically arranged on the outer surface of the detection piece 16, a fixing rod 20 inserted into the fixing block 19, a reinforcing rod 21 coaxial with the fixing rod 20, and a first spring 22 sleeved on the reinforcing rod 21. One end of the reinforcing rod 21 extends into the interior of the fixing seat 1 and can fit against the outer surface of the locking block 7. The interior of the fixing seat 1 is provided with a through groove for horizontal movement of the fixing rod 20 and the reinforcing rod 21. The fixing block 19 is provided with a fixing hole connected to the fixing rod 20.
[0036] The rotating assembly of this invention also includes a second moving carriage 29 capable of horizontal movement, a support base 30 vertically disposed on the upper end of the second moving carriage 29 and rotatably connected to the rotating cylinder 2, a reinforcing cylinder 31 detachably disposed inside the rotating cylinder 2, and a power supply device disposed inside the reinforcing cylinder 31 and providing electrical energy. The support base 30 has a "U" shaped structure, and both ends of the reinforcing cylinder 31 are detachably provided with cylinder covers. The power supply device is detachably and fixedly installed inside the reinforcing cylinder 31. The rotating assembly also includes a rotary motor 32 disposed on the outer surface of the support base 30 and controlling the rotation of the rotating cylinder 2, a connecting seat 33 rotatably disposed on the inner side of the support base 30 and detachably connected to the output shaft of the rotary motor 32, and a first connecting rod 34 disposed at both ends of the outer surface of the reinforcing cylinder 31 and detachably fixed to the connecting seat 33. One end of the first connecting rod 34 is attached to one end of the connecting seat 33, and the connecting seat 33 has a cylindrical structure.
[0037] The rotating assembly of this invention further includes a connecting sleeve 35 sleeved on the first connecting rod 34 and inserted into the connecting seat 33; a second spring 36 sleeved on the first connecting rod 34 and connected to the reinforcing cylinder 31 and the connecting sleeve 35 respectively; a first connecting block 37 symmetrically and movably disposed inside the connecting seat 33 and capable of fitting with the connecting sleeve 35; and a second connecting rod 38 vertically disposed at the other end of the first connecting block 37. A third spring 39 is sleeved on the second connecting rod 38. The connecting sleeve 35 has an annular structure. The connecting seat 33 has a first connecting groove for connecting with the connecting sleeve 35. The second spring 36 connects the connecting sleeve 35 and the first connecting rod 34. 4. The third spring 39 connects the second connecting rod 38 to the connecting seat 33. The rotating assembly also includes a second connecting block 40 that can be inserted and fixed to the first connecting rod 34, a second rack 41 symmetrically and vertically arranged on one side of the second connecting block 40, a second gear 42 meshing with the second rack 41, and a third rack 43 arranged on the inner side of the first connecting block 37 and meshing with the second gear 42. One end of the first connecting rod 34 is provided with a second connecting groove that connects to the second connecting block 40. The first connecting block 37 controls the second connecting block 40 to move horizontally through the third rack 43, the second gear 42, and the second rack 41.
[0038] In summary, the car ambient light is placed inside the mounting base 1 and connected to the mounting head 5. Connecting the mounting head 5 to the mounting base 1 allows the mounting strip 6 to move inside the mounting base 1, causing the locking block 7 to engage with the mounting base 1. The locking block 7 then presses against the reinforcing rod 21, causing the reinforcing rod 21 to move. This causes the first spring 22 to extend and retract, and the movement of the reinforcing rod 21 moves the fixing rod 20, connecting it to the fixing block 19 and securing the detection piece 16. This eliminates the need to start the second motor 17. The detection piece 16 can be limited and fixed. The first motor 15 is started, which drives the first gear 13 to rotate. The first gear 13 meshes with the first rack 12, so that the first gear 13 drives the moving part 8 to drive the auxiliary roller 14 to move on the fixed seat 1. The moving part 8 is moved to the rear of the car ambient light. The first electric telescopic rod 9 is started, which drives the limiting plate 10 to move. The limiting plate 10 drives the buffer strip 11 to move, so that the buffer strip 11 fits against the outer surface of the car ambient light and squeezes and limits the car ambient light.
[0039] Start the rotary motor 32 to drive the connecting seat 33 to rotate. The connecting seat 33 drives the first connecting rod 34 to rotate. The first connecting rod 34 drives the reinforcing cylinder 31 to rotate. The reinforcing cylinder 31 drives the rotating cylinder 2 to rotate. The rotating cylinder 2 drives several groups of car ambient lights to adjust their positions through the fixed seat 1, thereby performing quality inspection of the car ambient lights and replacing the car ambient lights to be inspected.
[0040] The movable connecting sleeve 35 compresses the second spring 36. The movement of the connecting sleeve 35 causes the third spring 39 to compress the first connecting block 37, causing the first connecting block 37 to move. The first connecting block 37 drives the third rack 43 to move, which in turn drives the second gear 42 to rotate. The second gear 42 drives the second rack 41 to move, which in turn drives the second connecting block 40 to move. This allows the second connecting block 40 to connect or separate from the first connecting rod 34, thereby fixing or disassembling the first connecting rod 34 from the connecting seat 33.
[0041] Example 2
[0042] Reference Figure 1 - Figure 2 and Figure 7 and Figure 9This is the second embodiment of the present invention. The detection assembly further includes a detection element 16 rotatably disposed inside the fixed head 5 and electrically connected to the automotive ambient light; a rotating rod symmetrically disposed on the outer surface of the detection element 16; a second motor 17 disposed outside the fixed head 5 and controlling the rotation of the rotating rod; and several sets of second electric telescopic rods 18 detachably mounted on the outer wall of the rotating cylinder 2 and controlling the horizontal movement of the fixed head 5. One end of the automotive ambient light is provided with a terminal connected to the detection element 16. The second motor 17 can control the rotation of the detection element 16 through the rotating rod, adjusting the position of the detection element 16, and quickly connecting the detection element 16 to the automotive ambient light, thereby detecting the ambient light within a small space. The connection of the car ambient light does not require additional space in the fixing slot. The second electric telescopic rod 18 drives the detection component 16 to move horizontally through the fixing head 5, making it easy for staff to connect the car ambient light to the detection component 16. The second electric telescopic rod 18, the fixing head 5, and the fixing strip 6 work together to adjust the distance between the detection component 16 and the fixing seat 1, thereby enabling connection testing of car ambient lights of different sizes. The detection component 16 can connect the car ambient light to the power supply device. The detection component 16 is equipped with an electrical testing unit for testing the car ambient light. The electrical testing unit can detect the voltage, current, and resistance of the car ambient light and transmit the test results to the display device.
[0043] The detection assembly of this invention also includes a first moving carriage 24 disposed outside the rotating cylinder 2, a detection seat 23 detachably mounted on one side of the first moving carriage 24, a display device disposed on the other side of the first moving carriage 24, and a third motor 25 detachably mounted on the outside of the detection seat 23. The display device is equipped with an alarm module, which can display the data of unqualified detection results and remind people to classify them. Several sets of fixed seats 1 are assigned different numbers and connected to the display device, which can display the data corresponding to the numbers. The detection seat 23 is equipped with a screw drive device 26 for controlling the horizontal movement of the photosensitive element 3. The screw drive device 26 is equipped with a mounting block 27, and the photosensitive element 3 is vertically equipped with a mounting rod 28 detachably fixed to the mounting block 27. The mounting block 27 is provided with a mounting hole for connecting to the mounting rod 28. The first moving carriage 24 can control the horizontal movement of the detection seat 23, and the third motor 25 controls the horizontal reciprocating movement of the photosensitive element 3 through the screw drive device 26.
[0044] The detection assembly of this invention also includes a detection box 44 for detecting automotive ambient lights, several sets of detection probes 45 detachably installed on the top surface of the inner side of the detection box 44, a detection window 46 located on the side of the detection box 44 near the first moving vehicle 24, and a box door 47 located on the other side of the detection box 44. The detection probes 45 can perform visual inspection of the automotive ambient lights. The box door 47 is provided with a closable feed door 48. The detection window 46 can be opened, which facilitates the first moving vehicle 24 to move the detection seat 23 and the photosensitive element 3 to the detection box 44 to detect the automotive ambient lights.
[0045] In summary, starting the second electric telescopic rod 18 moves the fixed head 5 outward, causing the fixed head 5 to move the fixed strip 6. Starting the second motor 17 rotates the rotating rod, which in turn rotates the detection element 16 inside the fixed head 5. The detection element 16 is rotated to 90 degrees, connecting the car ambient light to the detection element 16. The detection element 16 is then reset, thus connecting the car ambient light to the fixed base 1.
[0046] The first moving car 24 is moved, which moves the detection seat 23 to the detection box 44. The detection window 46 is opened, so that the photosensitive element 3 moves to the vicinity of the fixed seat 1. The third motor 25 is started, which drives the lead screw transmission device 26 to move. The lead screw transmission device 26 drives the mounting block 27 to move. The mounting block 27 drives the mounting rod 28 to move. The mounting rod 28 drives the photosensitive element 3 to move horizontally on the detection seat 23 to detect the car ambient light. The detection probe 45 performs an appearance inspection of the car ambient light. The feed door 48 is opened, and the rotating cylinder 2 moves the detected car ambient light to the feed door 48. The car ambient light is then disassembled and fixed to be tested.
[0047] Example 3
[0048] Reference Figure 1 - Figure 9 This embodiment is obtained by combining Embodiment 1 and Embodiment 2.
[0049] The second electric telescopic rod 18, the second motor 17, the detection component 16, and the fixing head 5 can connect the car ambient light. The fixing head 5, the fixing strip 6, the clamping block 7, the reinforcing rod 21, the first spring 22, the fixing rod 20, and the fixing block 19 fix the detection component 16. The first motor 15, the first gear 13, the first rack 12, and the auxiliary roller 14 control the movement of the moving component 8. The moving component 8, the first electric telescopic rod 9, the limiting plate 10, and the buffer strip 11 limit the car ambient light. The rotary motor 32, the connecting seat 33, the first connecting rod 34, the reinforcing cylinder 31, and the rotary cylinder 2 control the rotation of the fixing seat 1. The position of several groups of car ambient lights is adjusted to perform quality inspection of the car ambient lights while replacing the car ambient lights to be inspected. The detection seat 23, the third motor 25, the screw drive device 26, the mounting block 27, and the mounting rod 28 drive the photosensitive element 3 to move. The photosensitive element 3, the detection probe 45, and the temperature sensor 4 inspect the car ambient light.
[0050] The connecting sleeve 35, the second spring 36, the first connecting block 37, the second connecting rod 38, the third spring 39, the second connecting block 40, the second rack 41, the second gear 42, and the third rack 43 can disassemble or fix the first connecting rod 34 and the connecting seat 33.
[0051] The above embodiments are only used to illustrate the technical methods of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical methods of the present invention without departing from the spirit and scope of the technical methods of the present invention.
Claims
1. A testing device for processing automotive ambient lights, characterized in that, include: The mounting components include several sets of mounting brackets for fixing and connecting automotive ambient lights; Rotating assembly, including a rotating cylinder that controls the rotation of several sets of fixed seats to adjust the position of the car ambient light; The detection assembly includes a photosensitive element that is movably mounted on the outside of the rotating cylinder and detects the car ambient light, and a temperature sensor that is detachably mounted on the inside of the mounting base and in contact with the car ambient light. The fixing assembly also includes a fixing head that is movably connected to the fixing seat, a fixing strip symmetrically arranged on the fixing head, and a locking block arranged on the inner side of the fixing strip and engaging with the fixing seat; The fixing assembly also includes a movable part movably mounted on the fixing seat, a first electric telescopic rod detachably mounted on the outer surface of the movable part, and a limiting plate disposed on the inner side of the movable part and detachably connected to the output shaft of the first electric telescopic rod. The inner side of the limiting plate is provided with a buffer strip that fits against the car ambient light. The fixing assembly also includes a first rack detachably mounted on the outer surface of the fixing seat, a first gear rotatably disposed on the inner side of the moving part and meshing with the first rack, several sets of auxiliary rollers detachably mounted on the inner wall of the moving part and rollingly connected to the fixing seat, and a first motor disposed on the moving part and controlling the first gear to rotate. The detection assembly also includes a detection component that is rotatably disposed inside the fixed head and electrically connected to the automotive ambient light, a rotating rod symmetrically disposed on the outer surface of the detection component, a second motor disposed outside the fixed head and controlling the rotation of the rotating rod, and several sets of second electric telescopic rods that are detachably mounted on the outer wall of the rotating cylinder and controlling the horizontal movement of the fixed head. The detection component is equipped with an electrical testing unit for testing the automotive ambient light. The fixing assembly also includes a fixing block symmetrically arranged on the outer surface of the detection piece, a fixing rod inserted into the fixing block, a reinforcing rod coaxial with the fixing rod, and a first spring sleeved on the reinforcing rod. One end of the reinforcing rod extends into the interior of the fixing seat and can fit against the outer surface of the locking block.
2. The testing device for automotive ambient lighting processing according to claim 1, characterized in that, The detection assembly also includes a first moving vehicle disposed outside the rotating cylinder, a detection seat detachably mounted on one side of the first moving vehicle, a display device disposed on the other side of the first moving vehicle, and a third motor detachably mounted on the outside of the detection seat. The detection seat is equipped with a lead screw drive device for controlling the horizontal movement of the photosensitive element. The lead screw drive device is provided with a mounting block, and the photosensitive element is provided with a mounting rod that is detachably fixed to the mounting block.
3. The testing device for automotive ambient lighting processing according to claim 2, characterized in that, The rotating assembly also includes a second moving vehicle that can move horizontally, a support base that is vertically arranged on the upper end of the second moving vehicle and rotatably connected to the rotating cylinder, a reinforcing cylinder that is detachably arranged inside the rotating cylinder, and a power supply device that is arranged inside the reinforcing cylinder and provides electrical energy. The rotating assembly also includes a rotary motor disposed on the outer surface of the support base and controlling the rotation of the rotating cylinder, a connecting seat rotatably disposed on the inner side of the support base and detachably connected to the output shaft of the rotary motor, and a first connecting rod disposed at both ends of the outer surface of the reinforcing cylinder and detachably fixed to the connecting seat.
4. The testing device for automotive ambient lighting processing according to claim 3, characterized in that, The rotating assembly further includes a connecting sleeve sleeved on the first connecting rod and inserted into the connecting seat, a second spring sleeved on the first connecting rod and connected to the reinforcing cylinder and the connecting sleeve respectively, a first connecting block symmetrically and movably disposed inside the connecting seat and able to fit with the connecting sleeve, and a second connecting rod vertically disposed at the other end of the first connecting block, wherein a third spring is sleeved on the second connecting rod. The rotating assembly also includes a second connecting block that can be inserted and fixed to the first connecting rod, a second rack symmetrically and vertically arranged on one side of the second connecting block, a second gear meshing with the second rack, and a third rack arranged on the inner side of the first connecting block and meshing with the second gear.
5. The testing device for automotive ambient lighting processing according to claim 4, characterized in that, The detection assembly also includes a detection box for detecting automotive ambient lights, several sets of detachable detection probes installed on the top inner surface of the detection box, a detection window located on the side of the detection box near the first moving vehicle, and a box door located on the other side of the detection box, wherein the box door is equipped with a closable feed door.
Citation Information
Patent Citations
Waterproof testing device for LED automobile bulb
CN218066883U
Lamp performance detection platform suitable for multiple models
CN220251364U