A detection device for bulb production with multi-directional synchronization function
By designing a detection device with multi-directional synchronous function, the problem of inaccurate waterproof detection results for in-ground lights was solved. It enables comprehensive detection and automatic cleaning of water droplets under simulated water pressure conditions, improving detection accuracy and saving resources.
Patent Information
- Application Number
- CN202511440503.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2045-10-10
AI Technical Summary
Existing waterproof testing methods for in-ground lights cannot simulate water pressure and side testing under actual usage conditions, resulting in inaccurate and incomplete test results.
A detection device with multi-directional synchronous function was designed. The device moves the in-ground light in the detection box by rotating the wheel. Combined with the clamping component, the tossing component and the spin-drying component, the in-ground light can continuously enter and exit the water and swing, simulating the water pressure under actual use conditions, and fully detecting each side. Then, the water droplets are automatically spun out.
This technology enables comprehensive testing of in-ground lights under simulated actual water pressure conditions, improving the accuracy and comprehensiveness of test results, saving resources, and reducing production costs.
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Figure CN120907739B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of bulb production, in particular to a detection device with multi-directional synchronous function for bulb production. BACKGROUND
[0002] The ground lamp is also called ground light or hidden ground light, which is a lighting facility embedded in the ground. The ground lamp illuminates the ground, vegetation and other objects, making the landscape more beautiful and the pedestrians safer. At present, the LED energy-saving light source is often used, and the surface is made of stainless steel polishing or aluminum alloy panel, which can prevent water, dust and leakage and is corrosion-resistant.
[0003] Since the ground lamp is embedded in the ground for use, it often comes into contact with water, so the ground lamp must be waterproof tested during production. Normally, there are two ways:
[0004] The first way is to put the assembled ground lamp into the water tank for a period of time, and then take it out to detect whether there is water leakage. However, this detection method does not conform to the actual use of the ground lamp, because when the ground lamp is actually used, it is often accompanied by pressure when it is watered, rather than static in water. Therefore, the detection result is different from the actual use result because it is not subjected to pressure. The second way is to spray water on the ground lamp, but this method has the disadvantages of incomplete detection of the side of the ground lamp and short detection time, which can result in low reliability of the detection result. SUMMARY
[0005] The purpose of the present application is to provide a detection device with multi-directional synchronous function for bulb production to solve the problems raised in the background.
[0006] In order to solve the above technical problems, the present application provides the following technical scheme: a detection device with multi-directional synchronous function for bulb production, comprising a detection box, a rotating wheel, and a detection tool arranged on the rotating wheel, the rotating wheel drives the detection tool to move when rotating, and the detection tool passes through the detection box under control;
[0007] and a clamping assembly, the ground lamp is inserted into the detection tool, and the clamping assembly is used to clamp and fix the ground lamp in the detection tool;
[0008] and a pushing assembly, the detection tool is connected with the rotating wheel, and the pushing assembly drives the detection tool to swing when the detection tool moves to the set position;
[0009] and a spin-dry assembly, the spin-dry assembly is used to drive the ground lamp to rotate and dry the water droplets on the outer wall of the ground lamp.
[0010] Further, the rotating wheel comprises a central shaft, a sleeve and annular plates, the central shaft is fixedly connected with an output shaft of the driving motor, the sleeve is sleeved on the outer wall of the central shaft, the sleeve rotates synchronously with the central shaft, the annular plates are arranged at the two ends of the sleeve, and the detection area is arranged between the two annular plates.
[0011] Further, the detection tool is located in the detection area, the detection tool comprises a clamp, the clamp is a hollow part, one end of the buried lamp is inserted into the center of the clamp, and the clamp drives the buried lamp to move into the detection box for waterproof detection.
[0012] Further, the clamping assembly comprises a clamping ring and a driving member, the clamping ring is rotatably connected with the clamp, the driving member is used for controlling the rotation of the clamping ring, a notch is formed in the side wall of the clamping ring, a limiting frame is arranged in the notch in a rotatable manner, a clamping rod penetrates through the limiting frame, one end of the clamping rod extends to the outer wall of the limiting frame and is provided with a clamping wheel, and the other end of the clamping rod is rotatably connected with the clamp through a connecting shaft.
[0013] Further, the driving member comprises a connecting block one, a connecting block two and a threaded rod one, the connecting block one is fixedly arranged on the outer wall of the clamp, a connecting block three is arranged on the outer wall of the clamping ring, the connecting block two is rotatably connected with the connecting block three, the threaded rod one penetrates through the connecting block one and the connecting block two, the threaded rod one is rotatably connected with the connecting block one, one end of the threaded rod one is provided with a rotating handle, a threaded hole matched with the threaded rod one is arranged in the inner wall of the connecting block two, and the threaded rod one is controlled to move when rotating, the connecting block two drives the clamping ring to rotate.
[0014] Further, the driving assembly comprises a driving rod, a connecting shaft one is arranged on the side wall of the driving rod, one end of the connecting shaft one is fixedly connected with the detection tool, the rotating wheel drives the driving rod to make circular motion, a limiting rod is arranged in the detection box, the angle of the driving rod changes when the driving rod contacts with the limiting rod, the driving rod drives the detection tool to rotate, the end of the driving rod is connected with a reset member, and the reset member drives the driving rod to reset when the driving rod is separated from the limiting rod.
[0015] Further, the reset member comprises a reset rod, a sliding block one and a sliding block two, one end of the reset rod is fixedly connected with one end of the driving rod, the sliding block one and the sliding block two are located on the two sides of the reset rod, the sliding block one and the sliding block two move along the track of the arc-shaped sliding groove, a positioning block is arranged between the sliding block one and the sliding block two, the positioning block is fixedly arranged on the outer wall of the annular baffle, and a reset spring is arranged between the sliding block one and the sliding block two.
[0016] Further, one end of the limiting rod is provided with a guide block, the guide block moves along the track of the guide rail, a second rotatingly connected threaded rod is arranged in the guide rail, the second threaded rod penetrates the guide block, and the second threaded rod drives the guide block to move when rotating.
[0017] Further, the spin-drying assembly comprises a connecting frame and a rotating disc, the connecting frame is arranged on the top of the detection box, the rotating disc is rotationally connected with the connecting frame, an automatic telescopic rod is arranged in the rotating disc, the outer wall of the rotating disc is symmetrically provided with a first hinged connecting arm, the end of the first connecting arm is provided with a clamping arm, the end of the clamping arm is provided with a hinged V-shaped clamping block, the V-shaped clamping block clamps the buried lamp, a second hinged connecting arm is arranged on the side wall of the first connecting arm, and the end of the automatic telescopic rod is provided with a connecting disc, and the second connecting arm is hinged with the connecting disc.
[0018] Further, the outer wall of the rotating disc is provided with a ring gear one, the ring gear one is engaged with a gear two, the gear two is arranged on the outer wall of the output shaft of the driving motor two, the connecting frame comprises an inlet and an outlet, and a water curtain is arranged on the inlet and the outlet, when the V-shaped clamping block drives the buried lamp to rotate, the water curtain is closed, and when the V-shaped clamping block is separated from the buried lamp, the water curtain is opened.
[0019] Compared with the prior art, the present application has the following beneficial effects:
[0020] 1、The buried lamp is sequentially immersed in water by the rotating wheel, the waterproof detection of the buried lamp can be carried out, the buried lamp is continuously taken out of water and immersed in water, the buried lamp is contacted with water under increased pressure, the detection of the buried lamp is fully carried out, the buried lamp swings after being immersed in water, the flowability of water in the detection box is maintained, the problem that the detection result is inaccurate under the static state is overcome, the angle of the buried lamp is changed every time when the buried lamp is immersed in water, the different sides of the buried lamp can be directly contacted with the water surface every time when the buried lamp is immersed in water, the sides of the buried lamp can be detected when immersed in water under high pressure, so that the sides of the buried lamp can be fully detected, the water droplets adhered to the outer wall of the buried lamp can be automatically spun dry after detection, the purpose of automatically cleaning the water droplets on the outer wall of the buried lamp is achieved, and whether the water droplets penetrate into the interior of the buried lamp can be observed. BRIEF DESCRIPTION OF DRAWINGS
[0021] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, illustrate the present application together with the embodiments thereof, and explain the present application, and do not constitute a limitation of the present application. In the drawings:
[0022] Figure 1 is a schematic diagram of the overall structure of the present application;
[0023] Figure 2is a schematic view of the perspective structure of another aspect of the present application as a whole;
[0024] Figure 3 is a schematic view of the perspective structure of another aspect of the present application as a whole; Figure 2 is a schematic view of the enlarged structure at A in the present application;
[0025] Figure 4 is a schematic view of the side sectional structure of the present application as a whole;
[0026] Figure 5 is a schematic view of the perspective structure of another aspect of the present application as a whole; Figure 4 is a schematic view of the enlarged structure at B in the present application;
[0027] Figure 6 is a schematic view of the structure of the clamping arm of the present application;
[0028] Figure 7 is a schematic view of the structure of the clamping ring of the present application;
[0029] In the figure: 1, detection box;
[0030] 2, rotating wheel; 21, central shaft; 22, sleeve; 23, annular plate; 24, driving motor one;
[0031] 3, detection tooling;
[0032] 4, clamping assembly; 41, clamping ring; 42, notch one; 43, limiting frame; 45, clamping rod; 46, clamping wheel; 47, connecting shaft two; 48, connecting block one; 49, connecting block two; 410, threaded rod one; 411, connecting block three;
[0033] 5, actuating assembly; 51, actuating rod; 52, connecting shaft one; 53, limiting rod; 54, reset rod; 55, sliding block one; 56, sliding block two; 57, arc-shaped sliding groove; 58, positioning block; 59, reset spring; 510, guide block; 511, guide rail; 512, threaded rod two;
[0034] 6, spin-drying assembly; 61, connecting frame; 62, rotating disc; 63, automatic telescopic rod; 64, connecting arm one; 65, clamping arm; 66, V-shaped clamping block; 67, connecting arm two; 68, annular gear one; 69, gear two; 610, driving motor two; 611, water curtain. DETAILED DESCRIPTION
[0035] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0036] Please refer to Figures 1-7 The application provides a technical scheme: a bulb production detection device with multi-directional synchronous function, comprising a detection box 1, a rotating wheel 2, and a detection tool 3 arranged on the rotating wheel 2, wherein the rotating wheel 2 drives the detection tool 3 to move when rotating, and the detection tool 3 is controlled to pass through the detection box 1.
[0037] The rotating wheel 2 comprises a central shaft 21, a sleeve 22, and an annular plate 23, wherein the central shaft 21 is fixedly connected with an output shaft of a driving motor 24, the sleeve 22 is sleeved on the outer wall of the central shaft 21, the sleeve 22 rotates synchronously with the central shaft 21, and the annular plate 23 is arranged at both ends of the sleeve 22, and the detection area is between the two annular plates 23.
[0038] The detection tool 3 is located in the detection area, and the detection tool 3 comprises a clamp, wherein the clamp is a hollow part, one end of the buried lamp is inserted into the center of the clamp, and the clamp drives the buried lamp to move into the detection box 1 for waterproof detection.
[0039] The detection tool 3 is inserted into the detection tool 3, and the clamping assembly 4 is used for clamping and fixing the buried lamp in the detection tool 3.
[0040] The clamping assembly 4 comprises a clamping ring 41 and a driving member, wherein the clamping ring 41 is rotationally connected with the clamp, the driving member is used for controlling the rotation of the clamping ring 41, a slot 42 is formed in the side wall of the clamping ring 41, a rotationally connected limiting frame 43 is arranged in the slot 42, a clamping rod 45 penetrates through the limiting frame 43, a clamping wheel 46 is arranged at one end of the clamping rod 45 extending to the outer wall of the limiting frame 43, and the other end of the clamping rod 45 is rotationally connected with the clamp through a connecting shaft 47.
[0041] The driving member comprises a connecting block 48, a connecting block 49, and a threaded rod 410, wherein the connecting block 48 is fixedly arranged on the outer wall of the clamp, a connecting block 411 is arranged on the outer wall of the clamping ring 41, the connecting block 49 is rotationally connected with the connecting block 411, the threaded rod 410 penetrates through the connecting block 48 and the connecting block 49, the threaded rod 410 is rotationally connected with the connecting block 48, one end of the threaded rod 410 is provided with a rotating handle, a threaded hole matched with the threaded rod 410 is arranged in the inner wall of the connecting block 49, and the threaded rod 410 is controlled to rotate, thereby controlling the connecting block 49 to move, and the connecting block 49 drives the clamping ring 41 to rotate.
[0042] The specific operation process of clamping the buried lamp is as follows: the buried lamp is inserted into the clamp, then the threaded rod one 410 is rotated to move the connecting block two 49, the connecting block two 49 drives the connecting block three 411 to move, the connecting block three 411 is hinged to the clamping ring 41, so the connecting block three 411 pulls the clamping ring 41 to rotate, the limiting frame 43 is also hinged to the clamping ring 41, so when the clamping ring 41 rotates, the limiting frame 43 moves, and the limiting frame 43 drives the clamping rod 45 to move, so that the clamping rod 45 moves to the side of the buried lamp through the slot one 42, and the clamping wheels 46 at the ends of the clamping rod 45 finally contact the buried lamp, when the three clamping wheels 46 contact the buried lamp, the buried lamp is clamped and fixed, and the fixation of the buried lamp is realized.
[0043] and the detection tool 3 is rotationally connected with the rotating wheel 2, when the detection tool 3 moves to a set position, the poking assembly 5 drives the detection tool 3 to swing;
[0044] The poking assembly 5 comprises a poking rod 51, a connecting shaft one 52 is arranged on the side wall of the poking rod 51, one end of the connecting shaft one 52 is fixedly connected with the detection tool 3, the rotating wheel 2 drives the poking rod 51 to do circular motion, a limiting rod 53 is arranged in the detection box 1, when the poking rod 51 contacts the limiting rod 53, the angle of the poking rod 51 changes, the poking rod 51 drives the detection tool 3 to rotate, the end of the poking rod 51 is connected with a reset member, when the poking rod 51 is separated from the limiting rod 53, the reset member drives the poking rod 51 to reset.
[0045] The specific process of controlling the swing of the buried lamp is as follows: when the buried lamp moves into the detection box 1 with the detection tool 3, the corresponding poking rod 51 is driven to move, when the poking rod 51 moves to a set position, it contacts the limiting rod 53, because the current position of the limiting rod 53 is fixed, the angle of the poking rod 51 changes, so the detection tool 3 is driven to rotate through the connecting shaft one 52, the detection tool 3 drives the buried lamp to rotate by a certain angle in direction one, when the poking rod 51 is separated from the limiting rod 53, the poking rod 51 is automatically reset under the action of the reset member, the poking rod 51 drives the buried lamp to rotate by a certain angle in direction two, the direction two is opposite to the direction one, because the reset member is a reset spring 59, the poking rod 51 swings under the action of the rebound force, so the buried lamp swings, the pressure between the buried lamp and water is increased, and the environment in which the buried lamp is subjected to pressure is simulated.
[0046] The reset member comprises a reset rod 54, a sliding block one 55 and a sliding block two 56, one end of the reset rod 54 is fixedly connected with one end of the toggle lever 51, the sliding block one 55 and the sliding block two 56 are located on both sides of the reset rod 54, the sliding block one 55 and the sliding block two 56 are both moved along the track of the arc-shaped sliding groove 57, the positioning block 58 is arranged between the sliding block one 55 and the sliding block two 56, and the reset spring 59 is arranged between the sliding block one 55 and the sliding block two 56.
[0047] The specific process of automatic reset of the toggle lever 51 is as follows: when the toggle lever 51 changes the angle, the toggle lever 51 drives the reset rod 54 to move, the reset rod 54 contacts the sliding block one 55 or the sliding block two 56, and the reset spring 59 is deformed, wherein the reset rod 54 contacts the sliding block one 55 or the sliding block two 56, and the reset rod 54 contacts the sliding block one 55 or the sliding block two 56, that is, the direction in which the rotating wheel 2 drives the detection tool 3 to rotate, so that various application requirements can be met, for example, the reset rod 54 contacts the sliding block one 55, drives the sliding block one 55 to move, the direction of movement causes the sliding block two 56 to be limited by the positioning block 58, so that the sliding block two 56 cannot move, so that the reset spring 59 between the sliding block one 55 and the sliding block two 56 is stretched and deformed, when the toggle lever 51 is separated from the limiting rod 53, under the rebounding force of the reset spring 59, the reset rod 54 drives the toggle lever 51 to automatically reset, and the purpose of controlling the reverse movement of the buried lamp is achieved.
[0048] One end of the limiting rod 53 is provided with a guide block 510, the guide block 510 moves along the track of the guide rail 511, the guide rail 511 is provided with a screw rod two 512 rotatably connected, the screw rod two 512 penetrates the guide block 510, and the screw rod two 512 drives the guide block 510 to move when the screw rod two 512 rotates; specifically, the position of the guide block 510 in the guide rail 511 can be controlled through the screw rod two 512, the guide block 510 drives the limiting rod 53 to move, so that the distance between the limiting rod 53 and the end of the toggle lever 51 can be changed, and then the angle range that can be changed by the toggle lever 51 can be changed, the swing angle of the buried lamp is controlled, and the applicability is increased.
[0049] The washing and drying assembly 6 is used for driving the buried lamp to rotate and drying water droplets on the outer wall of the buried lamp.
[0050] The spin-dry assembly 6 comprises a connecting frame 61 and a rotating disc 62, the connecting frame 61 is arranged on the top of the detection box 1, the rotating disc 62 is rotationally connected with the connecting frame 61, the rotating disc 62 is internally provided with an automatic telescopic rod 63, the outer wall of the rotating disc 62 is symmetrically provided with a hinged connecting arm 64, the end of the connecting arm 64 is provided with a clamping arm 65, the end of the clamping arm 65 is provided with a hinged V-shaped clamping block 66, the V-shaped clamping block 66 is controlled to clamp the ground buried lamp, the side wall of the connecting arm 64 is provided with a hinged connecting arm 67, the end of the automatic telescopic rod 63 is provided with a connecting disc, and the connecting arm 67 is hinged with the connecting disc.
[0051] The outer wall of the rotating disc 62 is provided with an annular gear 68, the annular gear 68 is engaged with a gear 69, the gear 69 is arranged on the outer wall of the output shaft of a driving motor 610, the connecting frame 61 comprises an inlet and an outlet, and the inlet and the outlet are both provided with a water curtain 611, when the V-shaped clamping block 66 drives the ground buried lamp to rotate, the water curtain 611 is closed, and when the V-shaped clamping block 66 is separated from the ground buried lamp, the water curtain 611 is opened.
[0052] The specific process of spinning the water droplets on the outer wall of the ground buried lamp is as follows: when the ground buried lamp moves to the middle of the two V-shaped clamping blocks 66, the automatic telescopic rod 63 can be used to drive the connecting disc to move, the connecting disc drives the hinged connecting arm 67 to move, the connecting arm 67 drives the hinged connecting arm 64 to move, the connecting arm 64 drives the clamping arm 65 to move towards the middle, so that the V-shaped clamping block 66 finally contacts the ground buried lamp, and the ground buried lamp is clamped and fixed, at this time, the driving motor 610 can be controlled to drive the gear 69 to rotate, the gear 69 drives the engaged annular gear 68 to rotate, the annular gear 68 drives the rotating disc 62 to rotate, the rotating disc 62 drives the clamping arm 65 to rotate through the connecting arm 64, so that the ground buried lamp is rotated, since the clamping assembly 4 clamps the ground buried lamp by using the clamping wheel 46, during the rotation of the ground buried lamp, the clamping wheel 46 rotates with the ground buried lamp, but does not separate from the ground buried lamp, and remains in the clamped state, during the high-speed rotation, the water droplets attached to the outer wall of the ground buried lamp can be spun dry, so that the purpose of automatically cleaning the water droplets on the outer wall of the ground buried lamp is achieved, and during the spinning of the water droplets, the water curtain 611 is closed, so as to avoid the water droplets from being spun to the surrounding environment and causing environmental pollution, and during the clamping process, the hinged connection between the V-shaped clamping block 66 and the clamping arm 65 can realize the multi-point connection between the V-shaped clamping block 66 and the ground buried lamp, so as to improve the stability of clamping.
[0053] The working principle of the present application is that the buried lamp to be detected is inserted into the clamp, the clamp assembly 4 is used to clamp and fix the buried lamp, an appropriate amount of water is injected into the detection box 1, the buried lamp is gradually moved into the water by the rotating wheel 2, until the buried lamp is completely immersed in the water, the waterproof detection of the buried lamp is carried out, and with the rotation of the rotating wheel 2, the buried lamp will be taken out of the water and immersed in the water, so that the buried lamp is in contact with the water under increased pressure, and the buried lamp is fully detected, and after entering the water, the buried lamp will swing to keep the water in the detection box 1 flowing, overcoming the problem that the detection result is inaccurate in a static state.
[0054] During the detection process, when the buried lamp moves to the middle of the two V-shaped clamping blocks 66, the V-shaped clamping blocks 66 are used to clamp the buried lamp, and the buried lamp is controlled to rotate by a certain angle, such as 45 degrees at a time, so that different sides of the buried lamp can be in direct contact with the water surface when entering the water each time, so that the sides of the buried lamp are detected in water under high pressure, so that the sides of the buried lamp are fully detected.
[0055] When the detection is completed, the buried lamp moves to the middle of the two V-shaped clamping blocks 66 again, and can be clamped and fixed again, but this time the buried lamp can be controlled to rotate at high speed to shake off the water droplets attached to the outer wall of the buried lamp, achieving the purpose of automatically cleaning the water droplets on the outer wall of the buried lamp, and also facilitating observation of whether water droplets have penetrated into the interior; the waterproof detection of the buried lamp is completed.
[0056] And when the device detects multiple buried lamps, the resources used remain unchanged, for example, if the first water tank detection method is used, the volume and water quantity of the water tank will change with the number of buried lamps; if the second water showering method is used, the water quantity used will increase with the number of buried lamps to be detected, but the device can always use the same size detection box 1 and the same water quantity to detect multiple buried lamps, saving resources and reducing production costs.
[0057] Finally, it should be noted that the above description is only a preferred embodiment of the present application and is not intended to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent replacements of some technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A detection device for bulb production with multi-orientation synchronization function, comprising a detection box (1), characterized in that: Also include the rotating wheel (2), and be located in the detection tool (3) on the rotating wheel (2), the rotating wheel (2) rotates and drives the detection tool (3) to move, control the detection tool (3) from the detection box (1) through; And clamping assembly (4), the detection tool (3) is inserted into the buried lamp, the clamping assembly (4) is used for clamping and fixing the buried lamp in the detection tool (3); And the dialing assembly (5), the detection tool (3) is rotatably connected with the rotating wheel (2), when the detection tool (3) moves to the set position, the dialing assembly (5) drives the detection tool (3) to swing; And spin-dry assembly (6), the spin-dry assembly (6) is used for driving the buried lamp to rotate, and the water droplets on the outer wall of the buried lamp are spun dry; The detection tool (3) includes a clamp, the clamp drives the buried lamp to move into the detection box (1) for waterproof detection; The clamping assembly (4) includes a clamping ring (41) and a driving piece, the clamping ring (41) is rotatably connected with the clamp, the driving piece is used for controlling the rotation of the clamping ring (41), a slot one (42) is formed in the side wall of the clamping ring (41), a rotatingly connected limiting frame (43) is arranged in the slot one (42), a clamping rod (45) penetrates through the limiting frame (43), a clamping wheel (46) is arranged on one end of the clamping rod (45) extending to the outer wall of the limiting frame (43), and the other end of the clamping rod (45) is rotatably connected with the clamp through a connecting shaft two (47); The dialing assembly (5) includes a dialing rod (51), a connecting shaft one (52) is arranged on the side wall of the dialing rod (51), one end of the connecting shaft one (52) is fixedly connected with the detection tool (3), the rotating wheel (2) drives the dialing rod (51) to do circular motion, a limiting rod (53) is arranged in the detection box (1), when the dialing rod (51) is in contact with the limiting rod (53), the angle of the dialing rod (51) changes, the dialing rod (51) drives the detection tool (3) to rotate, the end of the dialing rod (51) is connected with a reset piece, when the dialing rod (51) is separated from the limiting rod (53), the reset piece drives the dialing rod (51) to reset; The spin-dry assembly (6) includes a connecting frame (61) and a rotating disc (62), the connecting frame (61) is arranged on the top of the detection box (1), the rotating disc (62) is rotatably connected with the connecting frame (61), an automatic telescopic rod (63) is arranged in the rotating disc (62), a pair of hingedly connected connecting arms one (64) are symmetrically arranged on the outer wall of the rotating disc (62), a clamping arm (65) is arranged on the end of the connecting arm one (64), a hingedly connected V-shaped clamping block (66) is arranged on the end of the clamping arm (65), the V-shaped clamping block (66) is controlled to clamp the buried lamp, a hingedly connected connecting arm two (67) is arranged on the side wall of the connecting arm one (64), and a connecting disc is arranged on the end of the automatic telescopic rod (63).
2. The inspection apparatus for bulb production with multi-azimuth synchronization function according to claim 1, characterized in that: The rotating wheel (2) comprises a central shaft (21), a sleeve (22) and an annular plate (23), the central shaft (21) is fixedly connected with the output shaft of a driving motor (24), the sleeve (22) is sleeved on the outer wall of the central shaft (21), the sleeve (22) rotates synchronously with the central shaft (21), the annular plate (23) is arranged at the two end portions of the sleeve (22), and the detection area is formed between the two annular plates (23).
3. The inspection apparatus for bulb production with multi-azimuth synchronization function according to claim 2, characterized in that: The detection tool (3) is located in the detection area; the clamp is a hollow part, and one end of the buried lamp is inserted into the center of the clamp.
4. The inspection apparatus for bulb production with multi-azimuth synchronization function according to claim 1, characterized in that: The driving member comprises a connecting block one (48), a connecting block two (49) and a threaded rod one (410), the connecting block one (48) is fixedly arranged on the outer wall of the clamp, the outer wall of the clamping ring (41) is provided with a connecting block three (411), the connecting block two (49) is rotatably connected with the connecting block three (411), the threaded rod one (410) penetrates through the connecting block one (48) and the connecting block two (49), the inner wall of the connecting block two (49) is provided with a threaded hole matched with the threaded rod one (410), and the threaded rod one (410) is rotated to control the movement of the connecting block two (49), and the connecting block two (49) drives the rotation of the clamping ring (41).
5. The inspection apparatus for bulb production with multi-azimuth synchronization function according to claim 4, characterized in that: The reset member comprises a reset rod (54), a sliding block one (55) and a sliding block two (56), one end of the reset rod (54) is fixedly connected with one end of the pushing rod (51), the sliding block one (55) and the sliding block two (56) are located on the two sides of the reset rod (54), the sliding block one (55) and the sliding block two (56) move along the track of the arc-shaped sliding groove (57), a positioning block (58) is arranged between the sliding block one (55) and the sliding block two (56), and a reset spring (59) is arranged between the sliding block one (55) and the sliding block two (56).
6. The inspection apparatus for bulb production with multi-azimuth synchronization function according to claim 1, characterized in that: One end of the limiting rod (53) is provided with a guide block (510), the guide block (510) moves along the track of the guide rail (511), a threaded rod two (512) is rotatably arranged in the guide rail (511), the threaded rod two (512) penetrates through the guide block (510), and the threaded rod two (512) is rotated to drive the movement of the guide block (510).
7. The inspection apparatus for bulb production with multi-azimuth synchronization function according to claim 6, characterized in that: The outer wall of the rotating disc (62) is sleeved with an annular gear one (68), the annular gear one (68) is meshed with a gear two (69), the gear two (69) is sleeved on the outer wall of the output shaft of a driving motor two (610), the connecting frame (61) comprises an inlet and an outlet, the inlet and the outlet are both provided with a water curtain (611), when the V-shaped clamping block (66) drives the buried lamp to rotate, the water curtain (611) is closed, and when the V-shaped clamping block (66) is separated from the buried lamp, the water curtain (611) is opened.
Citation Information
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