An electrical automation equipment detection device
By designing clamping, adjustment and cleaning mechanisms in the detection device of electrical automation equipment, the problem of dust interference during the detection process is solved, the detection accuracy and sensitivity are improved, and thermal interference is prevented.
Patent Information
- Application Number
- CN202510170832.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2045-02-17
AI Technical Summary
During the inspection process of electrical automation equipment, static electricity near the detection probe will cause dust to adsorption, interfering with the detection results.
A detection device including a clamping mechanism, an adjustment mechanism and a cleaning mechanism is designed. The clamping mechanism is used to fix the electrical automation equipment, the adjustment mechanism enables the detection probe to contact the detection position, and the cleaning mechanism removes dust from the probe through airflow injection.
It effectively prevents dust from interfering with the detection results, improves the sensitivity of the detection probe, and prevents heat from affecting the detection results through airflow cooling.
Smart Images

Figure CN119619570B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of detection, and particularly to a detection device for electrical automation equipment. Background Art
[0002] Automation equipment, also known as an automated device, is a large-scale complete set of equipment in an automation system, which refers to a machine or device that automatically operates or controls according to a specified program or instruction without human intervention. When electrical automation equipment is put into use, various detections need to be carried out on it.
[0003] After retrieval, a Chinese patent application with the application publication number CN112444695A discloses a detection device for electrical automation equipment, which relates to the field of automation equipment, including a conveyor belt, a support drive assembly, a first adjustment assembly, a second adjustment assembly, and a detection probe. A sliding through groove is provided on a vertical rectangular rod, and a first slider slides up and down in the sliding through groove. A rotating round rod is rotatably connected to a mounting base block, and a rectangular telescopic rod is provided at the lower end of the rotating round rod. A detection probe is installed at one end of the rectangular telescopic rod away from the rotating round rod. By inserting a limit post into a limit groove, the height position of the first slider can be vertically changed, which is convenient for adjusting the distance between the detection probe and the conveyor belt, so that the detection probe is at the optimal detection height. By rotating the rotating round rod and telescoping the rectangular telescopic rod, the detection probe is adjusted to a suitable position above the conveyor belt. Then, according to the part of the electrical automation equipment that needs to be detected, the detection probe can be adjusted to the optimal detection position to meet different detection requirements.
[0004] When detecting and processing electrical automation equipment, the equipment is placed on the detection device, and the electrical automation equipment is detected and processed by the detection probe. However, during the detection process, due to the operation of the detection probe, static electricity will be generated near the detection probe, and due to the action of static electricity, dust will be adsorbed on the detection probe, which will interfere with the detection of electrical automation equipment. Summary of the Invention
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] A detection device for electrical automation equipment includes a detection table. A clamping mechanism is provided on one side of the top of the detection table. An adjustment mechanism is provided on one side of the top of the detection table, and a support plate is provided on one side of the adjustment mechanism. A controller is bolted to the top of the support plate, and a detection probe is bolted to the bottom of the support plate, and the detection probe is electrically connected to the controller. A cleaning mechanism is provided between the adjustment mechanism and the support plate, and the cleaning mechanism forms a cooperation with the adjustment mechanism.
[0007] Preferably, the clamping mechanism includes a support base, a double-headed screw, and a first motor. The bottom of the support base is bolted to the top of the detection table. Moving grooves are formed on both sides of the top of the support base. The two moving grooves and the double-headed screw are rotationally connected through bearings. One side of the support base is bolted to the first motor, and one end of the first motor is fixedly connected to the double-headed screw. The thread directions on both sides of the double-headed screw are opposite. Moving blocks are slidably connected to the inner walls of the two moving grooves. Threaded holes are formed through one side of each of the two moving blocks, and the two threaded holes are threadedly connected to the double-headed screw. The tops of the two moving blocks are bolted with backing plates, and the tops of the two backing plates are bolted with clamping plates.
[0008] Preferably, guiding grooves are formed on both sides of the top of the support base, and guiding blocks are slidably connected to the inner walls of the two guiding grooves. The top of the guiding block is bolted to the bottom of the backing plate.
[0009] Preferably, the adjusting mechanism includes an adjusting base, a threaded rod, and a second motor. The bottom of the adjusting base is bolted to the top of the detection table. An adjusting opening is formed through the position near the top on one side of the detection table. The two opposite sides of the adjusting opening and the two ends of the threaded rod are rotationally connected through bearings. An adjusting block is slidably connected to the inner wall of the adjusting opening. A threaded opening is formed through the top of the adjusting block, and the threaded opening is threadedly connected to the threaded rod. The top of the adjusting base is bolted to the second motor, and one end of the second motor is fixedly connected to the top of the threaded rod. One side of the adjusting block is bolted to the support plate.
[0010] Preferably, positioning openings are formed through the inner walls on the two opposite sides of the adjusting opening, and positioning blocks are slidably connected to the inner walls of the positioning openings. One side of the positioning block is welded to the adjusting block.
[0011] Preferably, a through opening is formed through the position near the bottom on one side of the adjusting base, and one end of the cleaning mechanism is located inside the through opening. The cleaning mechanism includes a first sleeve, a second sleeve, a pressing plate, and an airbag. The top of the first sleeve is fixedly connected to the bottom of the threaded rod. Guide openings are formed through the inner walls on the two opposite sides of the through opening, and guide blocks are slidably connected to the inner walls of the two guide openings. The guide block is bolted to the pressing plate. The airbag is located between the bottom of the pressing plate and the bottom of the through opening. The bottom of the second sleeve is fixedly connected to the top of the pressing plate. A plurality of jacking ends are arranged on the opposite sides of the first sleeve and the second sleeve. A cooperation is formed between the first sleeve and the second sleeve. A cavity is formed inside the support plate. A conduit is arranged between the cavity and the airbag. The conduit is made of an elastic material. Jets are arranged on both sides of the bottom of the cavity. A jet pipe is arranged on the inner wall of the jet, and one end of the jet pipe is inclined towards the position of the detection probe.
[0012] Preferably, fixing mechanisms are provided on the opposite sides of the two clamping plates, and a cooperation is formed between the fixing mechanisms and the clamping mechanism.
[0013] Preferably, the fixing mechanism includes a clamping block and two support blocks, and the two support blocks are symmetrically distributed on both sides of the clamping block. A first limiting rod is connected between one side of the clamping block and the clamping plate by a bolt. A first spring is sleeved on the outer wall of the first limiting rod. A plurality of anti-slip ridges are provided on one side of the clamping block. A second limiting rod is fixed between one side of the support block and the clamping block. A second spring is sleeved on the outer wall of the second limiting rod. Both the first limiting rod and the second limiting rod are made of telescopic materials. A transmission component is provided between the clamping block and the support block.
[0014] Preferably, the transmission component is composed of a first gear, a first rack, a second gear and a second rack. The first rack meshes with the first gear. A sliding groove is formed on one side of the clamping plate. A slider is slidably connected to the inner wall of the sliding groove. One side of the slider is fixedly connected to the first rack. A push rod is connected between one side of the slider and the clamping block by a hinge. A bracket is connected to one side of the clamping plate by a bolt. A rotating shaft is rotatably connected between the opposite sides of the bracket through a bearing. The first gear is fixedly sleeved on the outer wall of the rotating shaft. The second gear is fixedly sleeved on the outer wall of the rotating shaft. One end of the second rack is fixedly connected to one side of the support block. The second gear meshes with the second rack.
[0015] The beneficial effects of the present invention are as follows:
[0016] 1. When detecting and processing an electrical automation device, the electrical automation device to be detected and processed is placed on the clamping mechanism through the provided adjusting mechanism and cleaning mechanism. The electrical automation device is fixed by the clamping mechanism. At the same time, the detection position of the electrical automation device is located directly above the detection probe. After fixing, the adjusting mechanism is started. The adjusting mechanism will drive the detection probe to move downward, so that the detection probe contacts the detection position of the electrical automation device, facilitating the detection and processing of the electrical automation device. During this period, the first sleeve will rotate with the rotation of the adjusting mechanism. Since a plurality of jacking ends are provided between the first sleeve and the second sleeve, when the first sleeve rotates, the second sleeve will be jacked downward under the action of the first sleeve. At this time, the second sleeve will drive the pressing plate to move downward, and when the pressing plate moves downward, it will squeeze the airbag. At this time, the gas inside the airbag will be conveyed to the inside of the cavity through the conduit and the air flow will be ejected onto the detection probe through the air jet pipe. Thus, the adhesion of dust on the detection probe can be processed through the ejection of the air flow, facilitating the improvement of the detection sensitivity of the detection probe, preventing the detection sensitivity of the detection probe from being reduced due to the interference of dust, thereby affecting the detection data of the electrical automation device. At the same time, the ejection of the air flow can facilitate the cooling of the detection probe, preventing the heat from causing deviation in the detection result of the detection probe;
[0017] 2. When the present invention is used to detect and process an electrical automation device, the electrical automation device to be detected is placed on the clamping mechanism. At this time, the clamping mechanism is started, and the clamping mechanism will clamp the electrical automation device. When the clamping block contacts the electrical automation device, as the clamping mechanism continues to move, at this time, the clamping block will move to one side under the action of pressure. When the clamping block moves, it will push the push rod to expand to both sides, and the slider will drive the first rack to move along with the movement of the push rod. At this time, when the first rack contacts the first gear, the first rack drives the first gear and the rotating shaft to rotate through the meshing between the first gear and the first rack. When the rotating shaft rotates, it will drive the second gear to rotate. At this time, through meshing, the second gear drives the second rack to move to one side, so that the support block is pushed towards one side of the electrical automation device through the second rack. Thus, through the cooperation between the support block and the clamping block, the electrical automation device can be effectively fixed, thereby improving the detection effect of the device on the electrical automation device, preventing the detection position from shifting due to the poor stability of the electrical automation device during detection, and thus affecting the detection of the electrical automation device. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of a detection device for an electrical automation device proposed by the present invention;
[0019] Figure 2 is a schematic structural diagram of the clamping mechanism of a detection device for an electrical automation device proposed by the present invention;
[0020] Figure 3 is a schematic structural diagram of the fixing mechanism of a detection device for an electrical automation device proposed by the present invention;
[0021] Figure 4 is a schematic partial structural diagram of a detection device for an electrical automation device proposed by the present invention;
[0022] Figure 5 is Figure 4 a schematic structural diagram of the part A shown in
[0023] Figure 6 is a schematic structural diagram of the adjustment mechanism of a detection device for an electrical automation device proposed by the present invention;
[0024] Figure 7 is a schematic structural diagram of the cleaning mechanism of a detection device for an electrical automation device proposed by the present invention.
[0025] In the attached drawings: 1, test table; 2, clamping mechanism; 3, fixing mechanism; 4, adjusting mechanism; 5, support plate; 6, controller; 7, pad; 8, support seat; 9, guide groove; 10, guide block; 11, first motor; 12, double-headed screw; 13, moving groove; 14, moving block; 15, clamping plate; 16, clamping block; 17, anti-slip edge; 18, first spring; 19, first limiting rod; 20, support block; 21, second spring; 22, second limiting rod; 23, slide groove; 24, push rod; 25, transmission assembly; 26 , slider; 27, first rack; 28, bracket; 29, shaft; 30, first gear; 31, second rack; 32, second gear; 33, adjustment seat; 34, adjustment port; 35, adjustment block; 36, threaded rod; 37, second motor; 38, positioning block; 39, positioning port; 40, through port; 41, guide port; 42, cleaning mechanism; 43, detection probe; 44, cavity; 45, jet tube; 46, first sleeve; 47, second sleeve; 48, pressure plate; 49, guide block; 50, airbag; 51, catheter. DETAILED DESCRIPTION
[0026] Example 1, reference Figures 1 - 7 , an electrical automation equipment detection device, including a detection platform 1, a clamping mechanism 2 is arranged on one side of the top of the detection platform 1, an adjusting mechanism 4 is arranged on one side of the top of the detection platform 1, and a support plate 5 is arranged on one side of the adjusting mechanism 4, the top of the support plate 5 is connected to a controller 6 by bolts, the bottom of the support plate 5 is connected to a detection probe 43 by bolts, and the detection probe 43 is electrically connected to the controller 6, a cleaning mechanism 42 is arranged between the adjusting mechanism 4 and the support plate 5, and the cleaning mechanism 42 and the adjusting mechanism 4 form a match, and the dust adhering to the detection probe 43 can be processed by the injection of airflow, so as to improve the detection sensitivity of the detection probe 43, and prevent the sensitivity of the detection probe 43 from being reduced due to the interference of dust, thereby affecting the detection data of the electrical automation equipment, and at the same time, the injection of airflow can facilitate the cooling of the detection probe 43 to prevent the heat from causing deviations in the detection results of the detection probe 43.
[0027] On the basis described above, the clamping mechanism 2 includes a support base 8, a double-headed screw 12 and a first motor 11. The bottom of the support base 8 is bolted to the top of the inspection table 1. Moving grooves 13 are formed on both sides of the top of the support base 8. A rotational connection is formed between the two moving grooves 13 and the double-headed screw 12 through bearings. One side of the support base 8 is bolted to the first motor 11. One end of the first motor 11 is fixedly connected to the double-headed screw 12. The thread directions on both sides of the double-headed screw 12 are opposite. Moving blocks 14 are slidably connected to the inner walls of the two moving grooves 13. Threaded holes are formed through one side of the two moving blocks 14. Threaded connections are formed between the two threaded holes and the double-headed screw 12. The tops of the two moving blocks 14 are bolted to backing plates 7. The tops of the two backing plates 7 are bolted to clamping plates 15.
[0028] On the basis described above, guiding grooves 9 are formed on both sides of the top of the support base 8. Guide blocks 10 are slidably connected to the inner walls of the two guiding grooves 9. The tops of the guide blocks 10 are bolted to the bottoms of the backing plates 7.
[0029] On the basis described above, the adjusting mechanism 4 includes an adjusting base 33, a threaded rod 36 and a second motor 37. The bottom of the adjusting base 33 is bolted to the top of the inspection table 1. An adjusting opening 34 is formed through one side of the inspection table 1 near the top. A rotational connection is formed between the two opposite sides of the adjusting opening 34 and the two ends of the threaded rod 36 through bearings. An adjusting block 35 is slidably connected to the inner wall of the adjusting opening 34. A threaded opening is formed through the top of the adjusting block 35. A threaded connection is formed between the threaded opening and the threaded rod 36. The top of the adjusting base 33 is bolted to the second motor 37. One end of the second motor 37 is fixedly connected to the top of the threaded rod 36. One side of the adjusting block 35 is bolted to the support plate 5.
[0030] On the basis described above, positioning openings 39 are formed through the two opposite inner walls of the adjusting opening 34. Positioning blocks 38 are slidably connected to the inner walls of the positioning openings 39. One side of the positioning block 38 is welded to the adjusting block 35.
[0031] On the basis described above, a through opening 40 is formed through a position near the bottom on one side of the adjusting seat 33, and one end of the cleaning mechanism 42 is located inside the through opening 40. The cleaning mechanism 42 includes a first sleeve 46, a second sleeve 47, a pressing plate 48 and an airbag 50. The top of the first sleeve 46 is fixedly connected to the bottom of the threaded rod 36. Guide openings 41 are formed through the inner walls on opposite sides of the through opening 40. Guide blocks 49 are slidably connected to the inner walls of the two guide openings 41. The guide blocks 49 are bolted to the pressing plate 48. The airbag 50 is located between the bottom of the pressing plate 48 and the bottom of the through opening 40. The bottom of the second sleeve 47 is fixedly connected to the top of the pressing plate 48. A plurality of jacking ends are provided on opposite sides of the first sleeve 46 and the second sleeve 47. A cooperation is formed between the first sleeve 46 and the second sleeve 47. A cavity 44 is formed inside the support plate 5. A conduit 51 is provided between the cavity 44 and the airbag 50. The conduit 51 is made of an elastic material. Jets are provided on both sides at the bottom of the cavity 44. A jet pipe 45 is provided on the inner wall of the jet. One end of the jet pipe 45 is inclined towards the position of the detection probe 43.
[0032] Example 2. Refer to Figures 1 - 6 , an electrical automation equipment detection device. Compared with Example 1, on the basis of Example 1, fixing mechanisms 3 are provided on opposite sides of the two clamping plates 15, and a cooperation is formed between the fixing mechanisms 3 and the clamping mechanism 2.
[0033] On the basis described above, the fixing mechanism 3 includes a clamping block 16 and two support blocks 20, and the two support blocks 20 are symmetrically distributed on both sides of the clamping block 16. A first limiting rod 19 is bolted between one side of the clamping block 16 and the clamping plate 15. A first spring 18 is sleeved on the outer wall of the first limiting rod 19. A plurality of anti-slip edges 17 are provided on one side of the clamping block 16. A second limiting rod 22 is fixed between one side of the support block 20 and the clamping block 16. A second spring 21 is sleeved on the outer wall of the second limiting rod 22. Both the first limiting rod 19 and the second limiting rod 22 are made of telescopic materials. A transmission assembly 25 is provided between the clamping block 16 and the support block 20.
[0034] On the basis described above, the transmission assembly 25 is composed of a first gear 30, a first rack 27, a second gear 32 and a second rack 31. The first rack 27 meshes with the first gear 30. A chute 23 is formed on one side of the clamping plate 15. A slider 26 is slidably connected to the inner wall of the chute 23. One side of the slider 26 is fixedly connected to the first rack 27. A push rod 24 is hinged between one side of the slider 26 and the clamping block 16. One side of the clamping plate 15 is bolted with a bracket 28. A rotating shaft 29 is rotatably connected between the opposite sides of the bracket 28 through bearings. The first gear 30 is fixedly sleeved on the outer wall of the rotating shaft 29. The second gear 32 is fixedly sleeved on the outer wall of the rotating shaft 29. One end of the second rack 31 is fixedly connected to one side of the support block 20. The second gear 32 meshes with the second rack 31.
[0035] In summary, by means of the above technical solutions of the present invention: when detecting and processing an electrical automation device, the electrical automation device to be detected and processed is placed on the clamping mechanism 2, and the electrical automation device is fixed by the clamping mechanism 2. When the clamping block 16 contacts the electrical automation device, as the clamping mechanism 2 continues to move, at this time, the clamping block 16 will move to one side under the action of pressure. When the clamping block 16 moves, it will push the push rod 24 to expand to both sides, and the slider 26 will drive the first rack 27 to move along with the movement of the push rod 24. At this time, when the first rack 27 contacts the first gear 30, the first rack 27 drives the first gear 30 and the rotating shaft 29 to rotate through the meshing between the first gear 30 and the first rack 27. When the rotating shaft 29 rotates, it will drive the second gear 32 to rotate. At this time, the second gear 32 drives the second rack 31 to move to one side through meshing, so that the support block 20 is pushed towards one side of the electrical automation device by the second rack 31. Thus, through the cooperation between the support block 20 and the clamping block 16, the electrical automation device can be effectively fixed, thereby improving the detection effect of the device on the electrical automation device, preventing the detection position from shifting due to the poor stability of the electrical automation device during detection, which affects the detection of the electrical automation device. At the same time, the detection position of the electrical automation device is located directly above the detection probe 43. After the fixation is completed, the adjustment mechanism 4 is started, and the adjustment mechanism 4 will drive the detection probe 43 to move downward, so that the detection probe 43 contacts the detection position of the electrical automation device to facilitate the detection and processing of the electrical automation device. During this period, the first sleeve 46 will rotate along with the rotation of the adjustment mechanism 4. Since there are multiple jacking ends between the first sleeve 46 and the second sleeve 47, when the first sleeve 46 rotates, the second sleeve 47 will be jacked downward under the action of the first sleeve 46. At this time, the second sleeve 47 will drive the pressing plate 48 to move downward, and when the pressing plate 48 moves downward, it will squeeze the airbag 50. At this time, the gas inside the airbag 50 will be transported to the inside of the cavity 44 through the conduit 51 after being squeezed, and the air flow will be sprayed onto the detection probe 43 through the air spray pipe 45. Thus, the dust adhering to the detection probe 43 can be processed through the spraying of the air flow, so as to improve the detection sensitivity of the detection probe 43, prevent the sensitivity of the detection probe 43 from being reduced due to the interference of dust, which affects the detection data of the electrical automation device. At the same time, the spraying of the air flow can facilitate the cooling of the detection probe 43, preventing the heat from causing deviation in the detection result of the detection probe 43.
[0036] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes should be covered within the protection scope of the present invention.
Claims
1. An electrical automation equipment testing device, comprising a testing platform (1), characterized in that: A clamping mechanism (2) is provided on one side of the top of the detection platform (1), an adjusting mechanism (4) is provided on one side of the top of the detection platform (1), and a support plate (5) is provided on one side of the adjusting mechanism (4), the top of the support plate (5) is connected to a controller (6) by bolts, the bottom of the support plate (5) is connected to a detection probe (43) by bolts, and the detection probe (43) and the controller (6) are electrically connected, a cleaning mechanism (42) is provided between the adjustment mechanism (4) and the support plate (5), and the cleaning mechanism (42) and the adjustment mechanism (4) are matched, the clamping mechanism (2) comprises a support seat (8), a double-headed screw (12) and a first motor (11), and the bottom of the support seat (8) is connected to the detection platform The tops of the support seat (8) are connected by bolts, both sides of the top of the support seat (8) are provided with moving grooves (13), the two moving grooves (13) and the double-headed screw (12) are rotatably connected by bearings, one side of the support seat (8) is connected to the first motor (11) by bolts, one end of the first motor (11) is fixedly connected to the double-headed screw (12), the threads on both sides of the double-headed screw (12) are in opposite directions, the inner walls of the two moving grooves (13) are slidably connected with moving blocks (14), one side of the two moving blocks (14) is provided with threaded holes, the two threaded holes are threadedly connected to the double-headed screw (12), the tops of the two moving blocks (14) are connected to pads (7) by bolts, and the tops of the two pads (7) are connected by A clamping plate (15) is connected by bolts, and a fixing mechanism (3) is provided on opposite sides of the two clamping plates (15), and the fixing mechanism (3) cooperates with the clamping mechanism (2), and the fixing mechanism (3) comprises a clamping block (16) and two support blocks (20), and the two support blocks (20) are symmetrically distributed on both sides of the clamping block (16), a first limiting rod (19) is connected between one side of the clamping block (16) and the clamping plate (15) by bolts, and a first spring (18) is sleeved on the outer wall of the first limiting rod (19), a plurality of anti-slip edges (17) are provided on one side of the clamping block (16), and a second limiting rod (22) is fixed between one side of the support block (20) and the clamping block (16), and a second spring (18) is sleeved on the outer wall of the second limiting rod (22). (21), the first limiting rod (19) and the second limiting rod (22) are both made of telescopic material, a transmission assembly (25) is arranged between the clamping block (16) and the supporting block (20), the transmission assembly (25) is composed of a first gear (30), a first rack (27), a second gear (32) and a second rack (31), and the first rack (27) is meshed with the first gear (30), a slide groove (23) is provided on one side of the clamping plate (15), a slider (26) is slidably connected to the inner wall of the slide groove (23), one side of the slider (26) is fixedly connected to the first rack (27), one side of the slider (26) is connected to the clamping block (16) by a hinge with a push rod (24), and one side of the clamping plate (15) is connected to a bracket (28) by bolts,A rotating shaft (29) is rotatably connected between two opposite sides of the bracket (28) via bearings, a first gear (30) is fixedly sleeved on the outer wall of the rotating shaft (29), a second gear (32) is fixedly sleeved on the outer wall of the rotating shaft (29), one end of the second rack (31) is fixedly connected to one side of the support block (20), and the second gear (32) is meshed with the second rack (31).
2. The electrical automation equipment detection device according to claim 1, characterized in that: Guide grooves (9) are provided on both sides of the top of the support seat (8), and guide blocks (10) are slidably connected to the inner walls of the two guide grooves (9), and the top of the guide block (10) is connected to the bottom of the pad (7) by bolts.
3. The electrical automation equipment detection device according to claim 1, characterized in that: The adjustment mechanism (4) comprises an adjustment seat (33), a threaded rod (36) and a second motor (37), wherein the bottom of the adjustment seat (33) is connected to the top of the detection platform (1) by bolts, an adjustment opening (34) is provided through a position near the top of one side of the detection platform (1), two opposite sides of the adjustment opening (34) and two ends of the threaded rod (36) are rotatably connected through bearings, an adjustment block (35) is slidably connected to the inner wall of the adjustment opening (34), a threaded opening is provided through the top of the adjustment block (35), the threaded opening is threadedly connected to the threaded rod (36), the top of the adjustment seat (33) is connected to the second motor (37) by bolts, one end of the second motor (37) is fixedly connected to the top of the threaded rod (36), and one side of the adjustment block (35) is connected to the support plate (5) by bolts.
4. The electrical automation equipment detection device according to claim 3, characterized in that: Positioning openings (39) are formed through inner walls on both sides of the adjusting opening (34), and a positioning block (38) is slidably connected to the inner wall of the positioning opening (39), and one side of the positioning block (38) is welded to the adjusting block (35).
5. The electrical automation equipment detection device according to claim 4, characterized in that: A through opening (40) is provided at a position near the bottom of one side of the adjustment seat (33), and one end of the cleaning mechanism (42) is located inside the through opening (40). The cleaning mechanism (42) comprises a first sleeve (46), a second sleeve (47), a pressure plate (48) and an air bag (50). The top of the first sleeve (46) is fixedly connected to the bottom of the threaded rod (36). Guide openings (41) are provided on the inner walls on both sides opposite to each other of the through opening (40). Guide blocks (49) are slidably connected to the inner walls of the two guide openings (41). The guide blocks (49) are connected to the pressure plate (48) by bolts. The air bag (50) is located at the bottom and the pressure plate (48). The bottom of the second sleeve (47) is fixedly connected to the top of the pressure plate (48), and the first sleeve (46) and the second sleeve (47) are provided with a plurality of jacking ends on opposite sides thereof. The first sleeve (46) and the second sleeve (47) are fitted with each other. A cavity (44) is provided inside the support plate (5), and a conduit (51) is provided between the cavity (44) and the airbag (50). The conduit (51) is made of elastic material. Jet holes are provided on both sides of the bottom of the cavity (44), and a jet pipe (45) is provided on the inner wall of the jet hole. One end of the jet pipe (45) is inclined toward the position of the detection probe (43).
Citation Information
Patent Citations
Detection device of electrical automation equipment
CN112444695A
Identification packaging equipment for box size detection
CN119262466A
Cited By
Fastening and supporting device for electrical automation equipment
CN121756258A