Electronic engineering information acquisition system and acquisition method

By designing an electronic engineering information acquisition system, the automatic switching of the circular pallet and the automatic coding of the three-dimensional scanner is achieved by using a transmission motor and a hydraulic push rod, the time-consuming and labor-intensive problem of manual alignment of barcodes and QR codes in the prior art is solved, and scanning efficiency and convenience are improved.

CN120506582APending Publication Date: 2025-08-19LUZHOU HONGJIN COMPUTER TECH CO LTD
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Patent Information

Application Number
CN202510593968.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2025-08-19

AI Technical Summary

Technical Problem

The existing handheld three-dimensional scanner requires staff to manually align the barcode and QR code when scanning the code, which is time-consuming and labor-intensive, and the collection efficiency is low, which increases the work intensity of staff.

Method used

An electronic engineering information acquisition system is designed, which drives the turntable rotation through the transmission motor, links the first hydraulic push rod and the drive motor to realize the cyclic switching of the circular pallet and the automatic coding of the three-dimensional scanner, and combines the material pushing mechanism and cleaning mechanism to improve scanning efficiency and convenience.

Benefits of technology

It realizes the rapid scanning and collection of QR codes and barcodes on items by a three-dimensional scanner, which reduces the work intensity of staff and improves the efficiency and convenience of information collection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an electronic engineering information acquisition system which comprises an outer cylinder, an annular limiting groove is formed in an inner cavity of the outer cylinder, and an annular limiting plate matched with the annular limiting groove is rotatably connected to an inner cavity of the annular limiting groove. Therefore, the positions of the three circular supporting plates can be circularly switched, a first lifting plate can be pushed to vertically move upwards through a first hydraulic push rod, a first square hole circular pipe is connected to a transmission square rod in a sleeving mode, the transmission square rod is driven to rotate through a driving motor, and the transmission square rod rotates to drive the circular supporting plates to rotate by 360 degrees; in addition, a worker can pull the handle and take out the three-dimensional scanner from the inner cavity of the protective shell, so that a portrait can be scanned and recognized in a handheld state, and the information collection efficiency and the collection convenience are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of electronic information collection, and in particular to an electronic engineering information collection system and collection method. Background Art

[0002] A handheld 3D scanner is a scientific instrument used to detect and analyze the shape (geometry) and appearance (such as color and surface albedo) of real-world objects or environments. The captured data is often used for 3D reconstruction, creating digital models of the actual object in the virtual world. These models have a wide range of applications, including industrial design, defect detection, reverse engineering, robot guidance, topographic surveying, medical informatics, bioinformatics, criminal forensics, digital artifact archiving, film production, and game creation.

[0003] In the existing technology, when workers use handheld 3D scanners to scan objects, they need to align the 3D scanner with barcodes, QR codes and portraits. However, due to the angle at which the workers place the objects, they also need to find the barcodes and QR codes accurately, which is not only time-consuming and labor-intensive, but also reduces the collection efficiency. In addition, during the collection process, workers need to constantly place and retrieve materials, which increases their workload. Summary of the Invention

[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an electronic engineering information acquisition system, comprising an outer cylinder, an inner cavity of the outer cylinder is provided with an annular limiting groove, and the inner cavity of the annular limiting groove is rotatably connected to an annular limiting plate adapted thereto, the inner cavity of the annular limiting plate is fixedly connected to a turntable, and the turntable is provided with three fixing grooves distributed in an annular array, the inner cavity top of each fixing groove is rotatably connected to a circular supporting plate adapted thereto, and the bottom of the circular supporting plate is provided with a linkage mechanism, a transmission motor is provided at the center of the bottom circle of the inner cavity of the outer cylinder, and the power output end of the transmission motor is fixedly connected to a rotating shaft, the top of the rotating shaft is fixedly connected to the bottom circle center of the turntable, two first hydraulic push rods distributed on the left and right are provided near the rear side of the bottom of the inner cavity of the outer cylinder, and the power ends of the two first hydraulic push rods are fixedly connected to the same first lifting plate, and the four corners of the first lifting plate are slidably penetrated by The cam is connected with the first support plate and the second support plate is connected with the support plate, and the cam is connected with the first support plate to the support plate.

[0005] Preferably, the linkage mechanism includes a horizontal plate, and the horizontal plate is located at the bottom of the circular support plate, the outer wall of the horizontal plate is fixedly connected to the inner wall of the fixed groove, and a first square hole is opened on the horizontal plate, and the inner cavity of the first square hole is inserted with a transmission square rod adapted thereto, a second square hole is opened at the center of the circular support plate, and the inner cavity of the second square hole is slidably penetrated by a limiting square rod adapted thereto, the bottom end of the limiting square rod is fixedly connected to the top end of the transmission square rod, a pressure ring is fixedly sleeved on the outer wall of the limiting square rod, and an extrusion spring is sleeved on the outer wall of the limiting square rod, and the two ends of the extrusion spring are respectively fitted with the pressure ring and the horizontal plate.

[0006] Preferably, the pushing mechanism includes a fixed plate, and the fixed plate is fixedly connected to the front side of the outer cylinder, the fixed plate is provided with a second bearing, and the inner cavity of the second bearing is rotatably connected to the second square rod, the top end of the second square rod is sleeved with a second square hole round tube that matches it, the top of the second hydraulic push rod is provided with a second hydraulic push rod, and the power end of the second hydraulic push rod is fixedly connected to the second lifting plate, the second lifting plate is provided with a third bearing, the top end of the second square hole round tube passes through the inner cavity of the third bearing and is fixedly connected to the pushing plate, and the left side of the pushing plate is fixedly connected to a rubber pad, the outer wall of the first square rod is sleeved and fixed with a transmission sheave, the outer wall of the second square rod is sleeved and fixed with a driven sheave, and a belt is provided between the driven sheave and the transmission sheave, the front side of the outer cylinder is provided with a through groove that matches the belt, and the transmission sheave and the driven sheave are connected by belt transmission.

[0007] Preferably, a storage platform is fixedly connected to the left front side of the outer cylinder, and the top of the storage platform is flush with the top of the turntable.

[0008] Preferably, the cleaning mechanism includes a mounting plate, and the mounting plate is fitted on the top of the inner cavity of the opening, a slot is provided on the top of the inner cavity of the opening, and a plug-in plate matching it is slidably inserted into the inner cavity of the slot, the plug-in plate is fixedly connected to the mounting plate, and a fixing hole is provided on the plug-in plate, a through-hole communicating with the inner cavity of the slot is provided on the front side of the protective shell, and a T-shaped rod is slidably passed through the inner cavity of the through-hole, the longest end of the T-shaped rod is inserted in the inner cavity of the fixing hole, a reset spring is provided on the outer wall of the T-shaped rod, and the two ends of the reset spring are respectively fixedly connected to the protective shell and the T-shaped rod, and soft bristles are provided on the back side of the mounting plate.

[0009] Preferably, an air inlet is provided at the bottom of the front side of the outer tube, and a first fixed frame is provided at the front side of the inner cavity of the air inlet, a first dustproof net is provided in the inner cavity of the first fixed frame, an air inlet fan is provided on the rear side of the inner cavity of the air inlet, an air outlet is provided on the rear side of the outer tube facing the air inlet, an air exhaust port is provided on the rear side of the fixed box, and a second fixed frame is provided on the rear side of the inner cavity of the exhaust port, and a second dustproof net is provided in the inner cavity of the second fixed frame.

[0010] Preferably, an annular ball groove is provided at the bottom of the inner cavity of the annular limiting groove, and a plurality of balls are rollingly connected to the inner cavity of the annular ball groove.

[0011] Preferably, the magnetic attraction mechanism includes a base plate, and the base plate is fixedly connected to the bottom of the three-dimensional scanner, the right side of the base plate is fixedly connected to the handle, a groove is provided on the top of the rectangular support plate, and a first magnet block is fixedly connected to the bottom of the inner cavity of the groove, a second magnet block is magnetically attracted to the top of the first magnet block, and the second magnet block is fixedly connected to the base plate.

[0012] A collection method of an electronic engineering information collection system comprises the following steps:

[0013] S1: First, the staff places the object to be collected on top of the circular support plate on the right. When the object exerts downward pressure on the limiting square rod, it pushes the limiting square rod to slide downward, overcoming the resistance of the extrusion spring and pushing the transmission square rod out of the inner cavity of the first square hole;

[0014] S2: When the transmission motor is started to drive the shaft to rotate, the shaft rotation drives the turntable to rotate counterclockwise, and the turntable rotates counterclockwise to drive the circular support plate with the items placed on it to rotate to just above the first square hole circular tube;

[0015] S3: The first lifting plate is pushed upward by activating the first hydraulic push rod under the limiting action of the vertical rod. The upward movement of the first lifting plate drives the first square hole circular tube to move upward and be sleeved on the outer wall of the transmission square rod;

[0016] S4: Subsequently, the electric telescopic rod is started to drive the rectangular support plate to rise and fall vertically. The movement of the rectangular support plate drives the movement of the 3D scanner, so that the 3D scanner can be highly aligned with the QR code and barcode on the object. When the driving motor is started to drive the first square rod to rotate, the rotation of the first square rod drives the rotation of the first square hole round tube, the rotation of the first square hole round tube drives the rotation of the transmission square rod, the rotation of the transmission square rod drives the rotation of the limit square rod, and the rotation of the limit square rod drives the circular support plate to rotate 360 degrees. Therefore, the QR code and barcode can be aligned with the 3D scanner during the rotation of the object, and rapid scanning and acquisition can be achieved.

[0017] S5: When the item information is collected, the first hydraulic push rod is activated to pull the first lifting plate downward to reset, and the transmission motor is restarted to drive the rotating shaft to continue rotating. The rotation of the rotating shaft drives the turntable to continue rotating, so that the circular support plate can be switched. When the uncollected items are switched to the 3D scanner position, the collected items can be moved to a position close to the storage table;

[0018] S6: When the above scanning operation is repeated, the driving motor drives the first square rod to rotate, and the rotation of the first square rod drives the driving groove wheel to rotate, and the belt drives the driven groove wheel to rotate, and the rotation of the driven groove wheel drives the second square rod to rotate, and the rotation of the second square rod drives the second square hole circular tube to rotate counterclockwise, so that the collected objects can be pushed from the circular support plate and the top of the outer cylinder to the storage table;

[0019] S7: After the push plate pushes the item onto the storage table, the second hydraulic push rod is activated to push the second lifting plate to move vertically upward, and the push plate is driven to move to the top of the item, so that the push plate can be rotated and reset under the rotation of the driving motor;

[0020] S8: While the device is working, the air inlet fan is started. The air inlet fan can filter the outside air through the first dustproof screen and pump it into the inner cavity of the outer tube, and discharge the heat in the inner cavity of the outer tube through the air outlet and the exhaust port, thereby accelerating the flow rate of the air in the inner cavity of the outer tube and improving the heat dissipation performance;

[0021] S9: When there is too much dust on the 3D scanner lens, the electric telescopic rod can be activated to push the rectangular support plate to move upward continuously, so that the front lens of the 3D scanner comes into contact with the soft brush bristles, thereby cleaning the dust on the 3D scanner lens and ensuring the normal use of the 3D scanner;

[0022] S10: When it is necessary to capture a portrait, the handle can be pulled to drive the bottom plate to move upward, thereby separating the second magnet block from the first magnet block, and then the 3D scanner can be taken out of the inner cavity of the protective shell, making it convenient for staff to scan and identify the portrait by hand.

[0023] Compared with the prior art, the present invention has the following beneficial effects:

[0024] 1. The present invention drives the turntable to rotate through a transmission motor, thereby cyclically switching the positions of the three circular support plates. Furthermore, the first lifting plate can be pushed vertically upward by the first hydraulic push rod, and the first square hole round tube is sleeved on the transmission square rod. The transmission square rod is driven to rotate by the driving motor, and the rotation of the transmission square rod drives the circular support plate to rotate 360 degrees, so that the three-dimensional scanner can quickly scan and collect the QR code and barcode on the object. In addition, the staff can also pull the handle and remove the three-dimensional scanner from the inner cavity of the protective shell, so that the portrait can be scanned and identified in a handheld state, thereby improving the efficiency and convenience of information collection.

[0025] 2. The present invention drives the turntable to rotate and switches the position of the circular support plate through a transmission motor, so that when the staff places the object to be collected on the top of the circular support plate on the right, the object can be automatically driven close to the three-dimensional scanner and quickly collected. After collection, the turntable can drive the object close to the storage table, so that the transmission groove wheel, the driven groove wheel, the belt, the second square rod, the second square hole round tube, the second hydraulic push rod and the second lifting plate can be linked to drive the push plate to rise and fall and rotate, so that the collected objects can be pushed to the storage table, thereby facilitating the staff to take the objects intermittently and slowly, reducing the work intensity of the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a left-side structural schematic diagram of the present invention;

[0027] Figure 2 A top view of the present invention;

[0028] Figure 3 This is a schematic diagram of the cross-sectional structure of the outer cylinder of the present invention;

[0029] Figure 4 for Figure 1 Enlarged view of point A in the middle;

[0030] Figure 5 for Figure 1 Enlarged view of point B in the middle;

[0031] Figure 6 for Figure 1 Enlarged view of point C in the middle.

[0032] Numbers in the figure: 1. outer cylinder; 2. turntable; 3. fixing groove; 4. circular support plate; 5. horizontal plate; 6. transmission square rod; 7. limiting square rod; 8. pressure ring; 9. extrusion spring; 10. transmission motor; 11. rotating shaft; 12. annular limiting groove; 13. annular limiting plate; 14. annular ball groove; 15. ball; 16. fixing box; 17. protective shell; 18. electric telescopic rod; 19. rectangular support plate; 20. 3D scanner; 21. PC; 22. first hydraulic push rod; 23. first lifting plate; 24. vertical rod; 25. first square hole round tube; 26. first square rod; 27. driving motor ; 28. Push plate; 29. Rubber pad; 30. Second square hole round tube; 31. Fixed plate; 32. Second hydraulic push rod; 33. Second lifting plate; 34. Second square rod; 35. Driven sheave; 36. Transmission sheave; 37. Belt; 38. Air intake fan; 39. First fixed frame; 40. First dustproof net; 41. Second fixed frame; 42. Second dustproof net; 43. Storage table; 44. Mounting plate; 45. Soft brush; 46. Slot; 47. Insert plate; 48. T-bar; 49. Return spring; 50. Bottom plate; 51. Handle; 52. First magnet block; 53. Second magnet block. DETAILED DESCRIPTION

[0033] See also Figure 1-6The present invention provides a technical solution: an electronic engineering information acquisition system, comprising an outer cylinder 1, an inner cavity of the outer cylinder 1 is provided with an annular limiting groove 12, and the inner cavity of the annular limiting groove 12 is rotatably connected to an annular limiting plate 13 adapted thereto, the inner cavity of the annular limiting plate 13 is fixedly connected to a turntable 2, an inner cavity bottom of the annular limiting groove 12 is provided with an annular ball groove 14, and the inner cavity of the annular ball groove 14 is rollingly connected to a plurality of balls 15, thereby improving the flexibility of the turntable 2 during rotation, and the turntable 2 is provided with three fixed grooves 3 distributed in an annular array, and the inner cavity top of each fixed groove 3 is rotatably connected to a circular support adapted thereto. Plate 4, and a linkage mechanism is provided at the bottom of the circular support plate 4, a transmission motor 10 is provided at the center of the bottom circle of the inner cavity of the outer cylinder 1, and the power output end of the transmission motor 10 is fixedly connected to the rotating shaft 11, and the top of the rotating shaft 11 is fixedly connected to the bottom center of the turntable 2, and two left and right first hydraulic push rods 22 are provided near the rear side of the bottom of the inner cavity of the outer cylinder 1, and the power ends of the two first hydraulic push rods 22 are fixedly connected to the same first lifting plate 23, and the four corners of the first lifting plate 23 are slidably penetrated by vertical rods 24, and the bottom end of the vertical rod 24 is fixedly connected to the bottom of the inner cavity of the outer cylinder 1, and a first bearing is provided on the first lifting plate 23, and The inner cavity of the first bearing is rotatably connected to the first square hole circular tube 25, and the inner cavity of the first square hole circular tube 25 is slidably connected to the first square rod 26 adapted thereto. A driving motor 27 is provided at the bottom of the inner cavity of the outer cylinder 1 near the rear side, and the bottom end of the first square rod 26 is fixedly connected to the power output end of the driving motor 27. A pushing mechanism is provided at the top front side of the turntable 2. A fixed box 16 is provided at the rear side of the outer cylinder 1, and a PC 21 is provided at the bottom of the inner cavity of the fixed box 16. A protective shell 17 is fixedly connected to the top of the fixed box 16, and an opening is provided on the front side of the protective shell 17. The inner cavity of the opening is slidably connected to a rectangular support plate 19. The protective shell 17 has an inner cavity with a plurality of holes. An electric telescopic rod 18 is provided on the rear side of the inner cavity, and the power end of the electric telescopic rod 18 is fixedly connected to the rectangular support plate 19. A three-dimensional scanner 20 is provided on the top of the rectangular support plate 19. The electric telescopic rod 18 drives the rectangular support plate 19 to rise and fall vertically, so that the height of the three-dimensional scanner 20 can be adjusted, and then the QR code and barcode on the object can be quickly scanned and collected. A cleaning mechanism is provided on the top of the inner cavity of the protective shell 17. The left front side of the outer cylinder 1 is fixedly connected to a storage table 43, and the top of the storage table 43 is flush with the top of the turntable 2. The scanned items can be taken intermittently, leaving the staff with a certain amount of relaxation time.

[0034] The linkage mechanism includes a transverse plate 5, and the transverse plate 5 is located at the bottom of the circular support plate 4, the outer wall of the transverse plate 5 is fixedly connected to the inner wall of the fixed groove 3, and a first square hole is opened on the transverse plate 5, and the inner cavity of the first square hole is plugged with a transmission square rod 6 adapted thereto, a second square hole is opened at the center of the circular support plate 4, and the inner cavity of the second square hole slides through a limiting square rod 7 adapted thereto, the bottom end of the limiting square rod 7 is fixedly connected to the top end of the transmission square rod 6, the outer wall of the limiting square rod 7 is sleeved with a pressure ring 8, and the outer wall of the limiting square rod 7 is sleeved with an extrusion spring 9, the two ends of the extrusion spring 9 are respectively fitted with the pressure ring 8 and the transverse plate 5, when the first hydraulic push rod 22 is started to push the first lifting plate 23 to rise vertically The first square hole circular tube 25 is lowered, thereby driving the first square hole circular tube 25 to rise and fall vertically, and then the first square hole circular tube 25 can be sleeved on the outer wall of the transmission square rod 6 directly above it. When the driving motor 27 is started, the driving motor 27 drives the first square rod 26 to rotate, and the rotation of the first square rod 26 drives the first square hole circular tube 25 to rotate, and the rotation of the first square hole circular tube 25 drives the transmission square rod 6 to rotate, and the rotation of the transmission square rod 6 drives the limiting square rod 7 to rotate, and the rotation of the limiting square rod 7 drives the circular supporting plate 4 to rotate, so that the objects placed on the circular supporting plate 4 can be rotated 360 degrees, and then the three-dimensional scanner 20 can quickly and accurately scan the QR code and barcode on the object, which is beneficial to improving the efficiency of information collection.

[0035] The pushing mechanism includes a fixed plate 31, and the fixed plate 31 is fixedly connected to the front side of the outer cylinder 1, a second bearing is provided on the fixed plate 31, and the inner cavity of the second bearing is rotatably connected to the second square rod 34, the top end of the second square rod 34 is sleeved with a second square hole round tube 30 adapted thereto, a second hydraulic push rod 32 is provided on the top of the fixed plate 31, and the power end of the second hydraulic push rod 32 is fixedly connected to the second lifting plate 33, a third bearing is provided on the second lifting plate 33, the top end of the second square hole round tube 30 passes through the inner cavity of the third bearing and is fixedly connected to the pushing plate 28, and the left side of the pushing plate 28 is fixedly connected to the rubber pad 29, the outer wall of the first square rod 26 is sleeved and fixed with a transmission groove wheel 36, and the outer wall of the second square rod 34 is sleeved A driven sheave 35 is fixed, and a belt 37 is provided between the driven sheave 35 and the transmission sheave 36. A through groove adapted to the belt 37 is opened on the front side of the outer cylinder 1, and the transmission sheave 36 and the driven sheave 35 are connected through the belt 37. The rotation of the first square rod 26 drives the transmission sheave 36 to rotate, and the rotation of the transmission sheave 36 drives the driven sheave 35 to rotate through the belt 37. The rotation of the driven sheave 35 drives the second square rod 34 to rotate. The rotation of the second square rod 34 drives the second square hole circular tube 30 to rotate. The rotation of the second square hole circular tube 30 drives the push plate 28 to rotate, so that the scanned items can be pushed from the circular support plate 4 and the top of the outer cylinder 1 to the storage table 43, which makes it convenient for the staff to intermittently take the items.

[0036] The cleaning mechanism includes a mounting plate 44, and the mounting plate 44 is fitted on the top of the inner cavity of the opening. A slot 46 is provided at the top of the inner cavity of the opening, and a plug-in plate 47 matching it is slidably inserted into the inner cavity of the slot 46. The plug-in plate 47 is fixedly connected to the mounting plate 44, and a fixing hole is provided on the plug-in plate 47. A through-hole communicating with the inner cavity of the slot 46 is provided on the front side of the protective shell 17, and a T-shaped rod 48 is slidably passed through the inner cavity of the through-hole. The longest end of the T-shaped rod 48 is inserted into the inner cavity of the fixing hole, and a return spring 49 is provided on the outer wall of the T-shaped rod 48, and the two ends of the return spring 49 are fixedly connected to the protective shell 17 and the T-shaped rod 48 respectively. Soft bristles 45 are provided on the rear side of the mounting plate 44, and the rectangular support plate 19 is pushed vertically upward by the electric telescopic rod 18, and the three-dimensional scanner 20 is driven to contact the soft bristles 45, so that the soft bristles 45 can be used to clean the dust attached to the front lens of the three-dimensional scanner 20, thereby ensuring the normal operation of the three-dimensional scanner 20.

[0037] An air inlet is provided at the bottom of the front side of the outer tube 1, and a first fixed frame 39 is provided on the front side of the inner cavity of the air inlet, a first dust-proof net 40 is provided in the inner cavity of the first fixed frame 39, an air inlet fan 38 is provided on the rear side of the inner cavity of the air inlet, an air outlet is provided on the rear side of the outer tube 1 directly opposite the air inlet, an air exhaust port is provided on the rear side of the fixed box 16, and a second fixed frame 41 is provided on the rear side of the inner cavity of the air exhaust port, a second dust-proof net 42 is provided in the inner cavity of the second fixed frame 41. When the acquisition system is put into use, the air inlet fan 38 is started. The air inlet fan 38 can filter the outside air through the first dust-proof net 40 and then pump it into the inner cavity of the outer tube 1, and discharge the heat in the inner cavity of the outer tube 1 through the air outlet and the exhaust port, thereby improving the heat dissipation performance of the device by accelerating the flow rate of the air in the inner cavity of the outer tube 1.

[0038] The magnetic attraction mechanism includes a base plate 50, and the base plate 50 is fixedly connected to the bottom of the three-dimensional scanner 20. The right side of the base plate 50 is fixedly connected to the handle 51. A groove is provided on the top of the rectangular support plate 19, and a first magnet block 52 is fixedly connected to the bottom of the inner cavity of the groove. A second magnet block 53 is magnetically attracted to the top of the first magnet block 52, and the second magnet block 53 is fixedly connected to the base plate 50. This makes it convenient for the staff to pull the handle 51 and remove the three-dimensional scanner 20 to identify the portrait and collect information in a handheld state.

[0039] A collection method of an electronic engineering information collection system comprises the following steps:

[0040] S1: First, the staff places the object to be collected on top of the right circular support plate 4. When the object exerts downward pressure on the limiting square rod 7, it pushes the limiting square rod 7 to overcome the resistance of the extrusion spring 9 and slide downward, and pushes the transmission square rod 6 out of the inner cavity of the first square hole;

[0041] S2: When the transmission motor 10 is started to drive the rotating shaft 11 to rotate, the rotating shaft 11 rotates the turntable 2 counterclockwise, and the counterclockwise rotation of the turntable 2 drives the circular support plate 4 with the items placed thereon to rotate to just above the first square hole circular tube 25;

[0042] S3: The first hydraulic push rod 22 is activated to push the first lifting plate 23 to move vertically upward under the limiting action of the vertical rod 24. The upward movement of the first lifting plate 23 drives the first square hole circular tube 25 to move upward and be sleeved on the outer wall of the transmission square rod 6;

[0043] S4: Subsequently, the electric telescopic rod 18 is started to drive the rectangular support plate 19 to rise and fall vertically. The movement of the rectangular support plate 19 drives the 3D scanner 20 to move, so that the 3D scanner 20 can be highly aligned with the QR code and barcode on the object. When the drive motor 27 is started to drive the first square rod 26 to rotate, the rotation of the first square rod 26 drives the first square hole circular tube 25 to rotate. The rotation of the first square hole circular tube 25 drives the transmission square rod 6 to rotate. The rotation of the transmission square rod 6 drives the limiting square rod 7 to rotate. The rotation of the limiting square rod 7 drives the circular support plate 4 to rotate 360 degrees. Therefore, the QR code and barcode can be aligned with the 3D scanner 20 during the rotation of the object, and rapid scanning and acquisition can be achieved.

[0044] S5: When the object information is collected, the first hydraulic push rod 22 is activated to pull the first lifting plate 23 downward to reset, and the transmission motor 10 is restarted to drive the rotating shaft 11 to continue rotating. The rotation of the rotating shaft 11 drives the turntable 2 to continue rotating, so that the circular support plate 4 can be switched. When the uncollected objects are switched to the position of the three-dimensional scanner 20, the collected objects can be moved to a position close to the storage table 43;

[0045] S6: When the above scanning operation is repeated, the driving motor 27 drives the first square rod 26 to rotate, and the rotation of the first square rod 26 drives the driving sheave 36 to rotate, and the driven sheave 35 is driven by the belt 37 to rotate, and the rotation of the driven sheave 35 drives the second square rod 34 to rotate, and the rotation of the second square rod 34 drives the second square hole circular tube 30 to rotate counterclockwise, so that the collected objects can be pushed from the circular support plate 4 and the top of the outer cylinder 1 to the storage table 43;

[0046] S7: After the push plate 28 pushes the article onto the storage platform 43, the second hydraulic push rod 32 is activated to push the second lifting plate 33 to move vertically upward, and the push plate 28 is driven to move to the top of the article, so that the push plate 28 can be rotated and reset under the rotation of the drive motor 27;

[0047] S8: While the device is working, the air inlet fan 38 is started. The air inlet fan 38 can filter the outside air through the first dustproof net 40 and then pump it into the inner cavity of the outer tube 1, and discharge the heat in the inner cavity of the outer tube 1 through the air outlet and the exhaust port, thereby accelerating the flow rate of the air in the inner cavity of the outer tube 1 and improving the heat dissipation performance.

[0048] S9: When too much dust adheres to the lens of the 3D scanner 20, the electric telescopic rod 18 can be activated to push the rectangular support plate 19 to move upward continuously, so that the front lens of the 3D scanner 20 contacts the soft brush bristles 45, thereby cleaning the dust on the lens of the 3D scanner 20 and ensuring the normal use of the 3D scanner 20;

[0049] S10: When it is necessary to capture a portrait, the handle 51 can be pulled to drive the bottom plate 50 to move upward, so that the second magnet block 53 can be separated from the first magnet block 52, and then the three-dimensional scanner 20 can be taken out of the inner cavity of the protective shell 17, making it convenient for the staff to scan and identify the portrait by hand.

[0050] Working principle: When the present invention is in use, first, the staff places the items to be collected on the top of the right circular support plate 4. When the items exert downward pressure on the limiting square rod 7, the limiting square rod 7 will be pushed to overcome the resistance of the extrusion spring 9 and slide downward, and the transmission square rod 6 will be pushed out from the inner cavity of the first square hole. When the transmission motor 10 is started to drive the rotating shaft 11 to rotate, the rotation of the rotating shaft 11 drives the turntable 2 to rotate counterclockwise. The counterclockwise rotation of the turntable 2 drives the circular support plate 4 with the items placed thereon to rotate to just above the first square hole circular tube 25. By starting the first hydraulic push rod 22, the first lifting plate 23 is pushed to move vertically upward under the limiting action of the vertical rod 24. The upward movement of the first lifting plate 23 drives the first square hole circular tube 25 to move upward and is sleeved on the outer surface of the transmission square rod 6. On the wall, then, the electric telescopic rod 18 is started to drive the rectangular support plate 19 to rise and fall vertically, and the movement of the rectangular support plate 19 drives the three-dimensional scanner 20 to move, so that the three-dimensional scanner 20 can be highly aligned with the QR code and barcode on the object, so that when the driving motor 27 is started to drive the first square rod 26 to rotate, the rotation of the first square rod 26 drives the first square hole round tube 25 to rotate, and the rotation of the first square hole round tube 25 drives the transmission square rod 6 to rotate, and the rotation of the transmission square rod 6 drives the limiting square rod 7 to rotate, and the rotation of the limiting square rod 7 drives the circular support plate 4 to rotate 360 degrees, so that the QR code and barcode can be aligned with the three-dimensional scanner 20 during the rotation of the object, and fast scanning and collection can be achieved. When the collection of the object information is completed, the first hydraulic push rod 22 is started to pull the first lifting plate 2 3 is reset downward, and the transmission motor 10 is restarted to drive the rotating shaft 11 to continue to rotate. The rotation of the rotating shaft 11 drives the turntable 2 to continue to rotate, so that the circular support plate 4 can be switched. When the uncollected items are switched to the position of the three-dimensional scanner 20, the collected items can be rotated to a position close to the storage table 43. When the above scanning operation is repeated, the driving motor 27 drives the first square rod 26 to rotate. The rotation of the first square rod 26 drives the transmission groove wheel 36 to rotate, and the belt 37 drives the driven groove wheel 35 to rotate. The rotation of the driven groove wheel 35 drives the second square rod 34 to rotate. The rotation of the second square rod 34 drives the second square hole round tube 30 to rotate counterclockwise, so that the collected items can be pushed from the circular support plate 4 and the top of the outer cylinder 1 to the storage table 43. After the push plate 28 pushes the article onto the storage platform 43, the second hydraulic push rod 32 is started to push the second lifting plate 33 to move vertically upward, and drive the push plate 28 to move to the top of the article, so that the push plate 28 can be rotated and reset under the rotation of the drive motor 27. While the device is working, the air intake fan 38 is started to work. The air intake fan 38 can filter the outside air through the first dustproof net 40 and then pump it into the inner cavity of the outer cylinder 1, and discharge the heat of the inner cavity of the outer cylinder 1 through the air outlet and exhaust port, thereby speeding up the flow rate of the air in the inner cavity of the outer cylinder 1 and improving the heat dissipation performance. When it is necessary to scan and identify the portrait, the handle 51 can be pulled and the three-dimensional scanner 20 can be removed, and the portrait can be identified and information collected in a handheld state. In addition,When too much dust accumulates on the lens of the 3D scanner 20, the electric telescopic rod 18 can be activated to push the rectangular support plate 19 upward, so that the front lens of the 3D scanner 20 comes into contact with the soft brush 45, thereby cleaning the dust on the lens of the 3D scanner 20 and ensuring the normal use of the 3D scanner 20.

Claims

1. An electronic engineering information acquisition system, comprising an outer cylinder (1), characterized in that: The inner cavity of the outer cylinder (1) is provided with an annular limiting groove (12), and the inner cavity of the annular limiting groove (12) is rotatably connected to an annular limiting plate (13) adapted thereto, the inner cavity of the annular limiting plate (13) is fixedly connected to a turntable (2), and the turntable (2) is provided with three fixing grooves (3) distributed in an annular array, the inner cavity top of each fixing groove (3) is rotatably connected to a circular supporting plate (4) adapted thereto, and the bottom of the circular supporting plate (4) is provided with a linkage mechanism, a transmission motor (10) is provided at the center of the inner bottom of the inner cavity of the outer cylinder (1), and the inner cavity of the outer cylinder (1) is provided with a transmission motor (10 ... The power output end of the transmission motor (10) is fixedly connected to the rotating shaft (11), the top end of the rotating shaft (11) is fixedly connected to the bottom center of the turntable (2), and two first hydraulic push rods (22) distributed left and right are provided near the rear side of the inner cavity bottom of the outer cylinder (1), and the power ends of the two first hydraulic push rods (22) are fixedly connected to the same first lifting plate (23), and vertical rods (24) are slidably passed through the four corners of the first lifting plate (23), and the bottom end of the vertical rod (24) is fixedly connected to the inner cavity bottom of the outer cylinder (1), and the first lifting plate (23) is fixedly connected to the inner cavity bottom of the outer cylinder (1). A first bearing is provided, and the inner cavity of the first bearing is rotatably connected to a first square hole circular tube (25), the inner cavity of the first square hole circular tube (25) is slidably connected to a first square rod (26) adapted thereto, a driving motor (27) is provided at the bottom of the inner cavity of the outer cylinder (1) near the rear side, and the bottom end of the first square rod (26) is fixedly connected to the power output end of the driving motor (27), a pushing mechanism is provided at the front side of the top of the turntable (2), a fixing box (16) is provided at the rear side of the outer cylinder (1), and a PC (21) is provided at the bottom of the inner cavity of the fixing box (16), The top of the fixed box (16) is fixedly connected to a protective shell (17), and an opening is provided on the front side of the protective shell (17). The inner cavity of the opening is slidably connected to a rectangular support plate (19). An electric telescopic rod (18) is provided on the rear side of the inner cavity of the protective shell (17), and the power end of the electric telescopic rod (18) is fixedly connected to the rectangular support plate (19). A three-dimensional scanner (20) is provided on the top of the rectangular support plate (19), and a magnetic attraction mechanism is provided between the three-dimensional scanner (20) and the rectangular support plate (19). A cleaning mechanism is provided on the top of the inner cavity of the protective shell (17).

2. The electronic engineering information acquisition system according to claim 1, characterized in that: The linkage mechanism includes a transverse plate (5), and the transverse plate (5) is located at the bottom of the circular support plate (4), the outer wall of the transverse plate (5) is fixedly connected to the inner wall of the fixing groove (3), and a first square hole is opened on the transverse plate (5), and a transmission square rod (6) adapted thereto is inserted into the inner cavity of the first square hole, a second square hole is opened at the center of the circular support plate (4), and a limiting square rod (7) adapted thereto is slidably passed through the inner cavity of the second square hole, the bottom end of the limiting square rod (7) is fixedly connected to the top end of the transmission square rod (6), the outer wall of the limiting square rod (7) is sleeved with a pressure ring (8), and the outer wall of the limiting square rod (7) is sleeved with an extrusion spring (9), and the two ends of the extrusion spring (9) are respectively fitted with the pressure ring (8) and the transverse plate (5).

3. The electronic engineering information acquisition system according to claim 1, characterized in that: The pushing mechanism includes a fixed plate (31), and the fixed plate (31) is fixedly connected to the front side of the outer cylinder (1), a second bearing is provided on the fixed plate (31), and the inner cavity of the second bearing is rotatably connected to a second square rod (34), the top end of the second square rod (34) is sleeved with a second square hole round tube (30) adapted thereto, a second hydraulic push rod (32) is provided on the top of the fixed plate (31), and the power end of the second hydraulic push rod (32) is fixedly connected to a second lifting plate (33), a third bearing is provided on the second lifting plate (33), and the second square hole round tube ( The top end of the outer tube (30) passes through the inner cavity of the third bearing and is fixedly connected to a push plate (28), and the left side of the push plate (28) is fixedly connected to a rubber pad (29), the outer wall of the first square rod (26) is sleeved and fixed with a transmission groove wheel (36), the outer wall of the second square rod (34) is sleeved and fixed with a driven groove wheel (35), and a belt (37) is provided between the driven groove wheel (35) and the transmission groove wheel (36), the front side of the outer tube (1) is provided with a through groove adapted to the belt (37), and the transmission groove wheel (36) and the driven groove wheel (35) are connected by the belt (37).

4. The electronic engineering information acquisition system according to claim 1, characterized in that: A storage platform (43) is fixedly connected to the left front side of the outer cylinder (1), and the top of the storage platform (43) is flush with the top of the turntable (2).

5. The electronic engineering information acquisition system according to claim 1, characterized in that: The cleaning mechanism includes a mounting plate (44), and the mounting plate (44) is fitted on the top of the inner cavity of the opening, a slot (46) is provided on the top of the inner cavity of the opening, and a plug-in plate (47) adapted thereto is slidably inserted into the inner cavity of the slot (46), the plug-in plate (47) is fixedly connected to the mounting plate (44), and a fixing hole is provided on the plug-in plate (47), the front side of the protective shell (17) is provided with a through hole connected to the inner cavity of the slot (46), and a T-shaped rod (48) is slidably passed through the inner cavity of the through hole, the longest end of the T-shaped rod (48) is inserted into the inner cavity of the fixing hole, the outer wall of the T-shaped rod (48) is provided with a reset spring (49), and the two ends of the reset spring (49) are respectively fixedly connected to the protective shell (17) and the T-shaped rod (48), and the rear side of the mounting plate (44) is provided with soft bristles (45).

6. The electronic engineering information acquisition system according to claim 1, characterized in that: An air inlet is provided at the bottom of the front side of the outer tube (1), and a first fixed frame (39) is provided at the front side of the inner cavity of the air inlet, a first dustproof net (40) is provided in the inner cavity of the first fixed frame (39), an air inlet fan (38) is provided at the rear side of the inner cavity of the air inlet, an air outlet is provided at the rear side of the outer tube (1) facing the air inlet, an air outlet is provided at the rear side of the fixed box (16), and a second fixed frame (41) is provided at the rear side of the inner cavity of the air outlet, and a second dustproof net (42) is provided in the inner cavity of the second fixed frame (41).

7. The electronic engineering information acquisition system according to claim 1, characterized in that: An annular ball groove (14) is provided at the bottom of the inner cavity of the annular limiting groove (12), and a plurality of balls (15) are rollingly connected to the inner cavity of the annular ball groove (14).

8. The electronic engineering information acquisition system according to claim 1, characterized in that: The magnetic attraction mechanism includes a base plate (50), and the base plate (50) is fixedly connected to the bottom of the three-dimensional scanner (20), the right side of the base plate (50) is fixedly connected to the handle (51), the top of the rectangular support plate (19) is provided with a groove, and the bottom of the inner cavity of the groove is fixedly connected to a first magnet block (52), the top of the first magnet block (52) is magnetically attracted to a second magnet block (53), and the second magnet block (53) is fixedly connected to the base plate (50).

9. The electronic engineering information collection method according to any one of claims 1 to 8, characterized in that: The following steps are involved: S1: First, the staff places the object to be collected on the top of the circular support plate (4) on the right side. When the object exerts downward pressure on the limiting square rod (7), the limiting square rod (7) is pushed to overcome the resistance of the extrusion spring (9) and slide downward, and the transmission square rod (6) is pushed out from the inner cavity of the first square hole; S2: When the transmission motor (10) is started to drive the rotating shaft (11) to rotate, the rotating shaft (11) rotates and drives the turntable (2) to rotate counterclockwise, and the turntable (2) rotates counterclockwise to drive the circular support plate (4) on which the items are placed to rotate to the top of the first square hole circular tube (25); S3: The first lifting plate (23) is pushed to move vertically upward under the limiting action of the vertical rod (24) by starting the first hydraulic push rod (22). The upward movement of the first lifting plate (23) drives the first square hole circular tube (25) to move upward and is sleeved on the outer wall of the transmission square rod (6); S4: Subsequently, the electric telescopic rod (18) is started to drive the rectangular support plate (19) to move vertically, and the movement of the rectangular support plate (19) drives the three-dimensional scanner (20) to move, so that the three-dimensional scanner (20) can be aligned with the two-dimensional code and the barcode on the object. When the driving motor (27) is started to drive the first square rod (26) to rotate, the rotation of the first square rod (26) drives the first square hole round tube (25) to rotate, and the rotation of the first square hole round tube (25) drives the transmission square rod (6) to rotate, and the rotation of the transmission square rod (6) drives the limiting square rod (7) to rotate, and the rotation of the limiting square rod (7) drives the circular support plate (4) to rotate 360 degrees, so that the two-dimensional code and the barcode can be aligned with the three-dimensional scanner (20) during the rotation of the object, and rapid scanning and collection can be achieved; S5: When the information collection of the item is completed, the first hydraulic push rod (22) is started to pull the first lifting plate (23) downward to reset, and the transmission motor (10) is restarted to drive the rotating shaft (11) to continue to rotate. The rotation of the rotating shaft (11) drives the turntable (2) to continue to rotate, so that the circular support plate (4) can be switched. When the uncollected item is switched to the position of the three-dimensional scanner (20), the collected item can be rotated to a position close to the storage table (43); S6: When the above scanning operation is repeated, the driving motor (27) drives the first square rod (26) to rotate, the rotation of the first square rod (26) drives the driving groove wheel (36) to rotate, and the driven groove wheel (35) is driven to rotate through the transmission of the belt (37), and the rotation of the driven groove wheel (35) drives the second square rod (34) to rotate, and the rotation of the second square rod (34) drives the second square hole circular tube (30) to rotate counterclockwise, so that the collected objects can be pushed from the circular support plate (4) and the top of the outer cylinder (1) to the storage table (43); S7: After the push plate (28) pushes the article onto the storage platform (43), the second hydraulic push rod (32) is activated to push the second lifting plate (33) to move vertically upward, and the push plate (28) is driven to move to the top of the article, so that the push plate (28) can be rotated and reset under the rotation of the drive motor (27); S8: while the device is working, the air inlet fan (38) is started to work. The air inlet fan (38) can filter the outside air through the first dustproof net (40) and pump it into the inner cavity of the outer tube (1), and discharge the heat in the inner cavity of the outer tube (1) through the air outlet and the exhaust port, thereby accelerating the flow rate of the air in the inner cavity of the outer tube (1) and improving the heat dissipation performance; S9: When too much dust adheres to the lens of the three-dimensional scanner (20), the electric telescopic rod (18) can be activated to push the rectangular support plate (19) to move upward continuously, and the front lens of the three-dimensional scanner (20) can be brought into contact with the soft brush (45), thereby cleaning the dust on the lens of the three-dimensional scanner (20) and ensuring the normal use of the three-dimensional scanner (20); S10: When it is necessary to capture a portrait, the handle (51) can be pulled to drive the bottom plate (50) to move upward, thereby separating the second magnet block (53) from the first magnet block (52), and then the three-dimensional scanner (20) can be taken out of the inner cavity of the protective shell (17), making it convenient for the staff to scan and identify the portrait by hand.