Assembly structure for electronic barrier of laser curtain wall, disassembly and assembly method and adjustment method
By designing the assembly structure for the electronic barrier of the laser curtain wall, the drilling and ground positioning mechanism and the voltage-dividing positioning mechanism are used to achieve rapid installation and disassembly, and the height of the laser probe is adjusted through the driving mechanism, the problem of difficult to quickly disassemble and repair the electronic barrier in the prior art is solved, and the working efficiency and safety are improved.
Patent Information
- Application Number
- CN202510407788.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2025-05-23
AI Technical Summary
The existing electronic barrier structure is difficult to disassemble quickly after the project is completed, and when electronic components are repaired or replaced during use, staff need to use the climbing ladder, which is inefficient and has safety risks.
An assembly structure for the electronic barrier of laser curtain wall is designed, including a ground base, a support spindle, a mounting spindle and a laser probe. The rapid installation and disassembly are achieved through a drilling positioning mechanism and a voltage-dividing positioning mechanism, and the height of the laser probe is adjusted through a driving mechanism.
It realizes rapid disassembly and installation of electronic barriers, improves work efficiency, reduces safety hazards, and facilitates height adjustment of laser probes, improving maintenance efficiency.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of laser screen installation, and in particular to an assembly structure, a disassembly and assembly method, and an adjustment method for a laser curtain wall electronic barrier. Background Art
[0002] The laser curtain wall is mainly achieved by installing Beidou positioning and alarm devices on large machinery, installing laser radar at the intersection of the construction area and the line, forming an electronic fence and laser curtain wall, and monitoring the operation of large machinery around the clock through up and down swing scanning and horizontal scanning, so as to achieve the purpose of precise control of the construction site.
[0003] For example, the invention patent with application number CN202110815230.3, a surveying instrument with adjustable bracket angle and height, includes a retracting rod, a bottom support unit and a support locking unit; the inner lower end of the retracting rod is slidably connected with a main support rod; the bottom support unit includes a bottom movable seat, a bottom rotating shaft, a support leg, a movable support rod, a main rod bottom movable seat and a limit clamping plate, and three bottom movable seats are installed at the bottom end of the retracting rod. The three bottom movable seats are all installed with a bottom rotating shaft, one end of the support leg is rotatably connected to the bottom movable seat through the bottom rotating shaft, a secondary movable seat is installed on the support leg, one end of the movable support rod is rotatably connected to the secondary movable seat through the secondary rotating shaft, and three main rod bottom movable seats are installed at the bottom end of the main support rod.
[0004] At present, the electronic barrier structure assembly is mainly installed at the construction site through a bracket. In order to ensure stability, the bracket base needs to be poured into the ground with cement. This makes it difficult to quickly disassemble the bracket and the device after the project is completed. In addition, during the use of the device, the electronic components sometimes need to be repaired or replaced. The overall use height of the existing bracket needs to be more than two meters. When repairing or replacing electronic components, the staff needs to use a ladder to operate, which has low work efficiency and certain safety hazards in the climbing operation. Summary of the invention
[0005] The purpose of the present invention is to provide an assembly structure, disassembly and assembly method, and adjustment method for a laser curtain wall electronic barrier. The device is convenient and quick to install and remove, and the height of electronic components can be adjusted, making maintenance and inspection more convenient, thereby improving work efficiency and reducing safety hazards.
[0006] In order to achieve the above-mentioned invention object, the technical solution adopted by the present invention is specifically as follows: an assembly structure for a laser curtain wall electronic barrier, comprising a ground base, a supporting spindle, an installation spindle and a laser probe, wherein a through groove is provided inside the ground base, and one end of the supporting spindle is fixedly connected to the inner wall of one end of the through groove, and the other end of the supporting spindle is detachably connected to one end of the installation spindle;
[0007] An installation cavity is provided inside the supporting main shaft, the installation cavity is communicated with the through groove, a ground drilling positioning mechanism is fixed inside the installation cavity, and a pressure dividing positioning mechanism is provided on the outer surface of the supporting main shaft;
[0008] A movable cavity is provided inside the installation spindle, a driving mechanism is fixed inside the movable cavity, an adjustment long groove is provided on the outer surface of the installation spindle, a movable seat is movably provided on the outer surface of the adjustment long groove, and the laser probe is fixedly provided on the outer surface of the movable seat.
[0009] Furthermore, the ground drilling positioning mechanism comprises a ground drilling drive assembly and a positioning insert, the ground drilling drive assembly is fixedly arranged at the inner wall of the installation cavity, and two positioning inserts are respectively fixedly arranged on both sides of the ground drilling drive assembly;
[0010] The drilling drive assembly includes a stepper motor and a vertical track. The vertical track is fixed to the inner wall of the installation cavity. The stepper motor is fixed to the end of the vertical track. The output end of the stepper motor is connected to a ball screw. A slider is slidably arranged on the inner wall of the vertical track. The slider is fitted and sleeved on the outer surface of the ball screw. The two positioning inserts are respectively fixedly connected to the opposite sides of the slider.
[0011] Furthermore, the positioning plug includes a plug body and a ground drilling tip, one side of the plug body is fixedly connected to the side of the slider, and the other side is provided with an inclined slope, and the bottom of the plug body is integrally formed with the ground drilling tip.
[0012] Furthermore, the pressure dividing positioning mechanism comprises a movable ring and a pressure dividing assembly, the movable ring is slidably mounted on the outer surface of the supporting main shaft, and a plurality of the pressure dividing assemblies are radially distributed on the outer surface of the movable ring.
[0013] Furthermore, the pressure dividing assembly includes a pressure dividing support shaft and an inclined support shaft, one end of the pressure dividing support shaft is movably connected to the outer wall of the supporting main shaft, and the other end is fixed with a counterweight ball, one end of the inclined support shaft is movably connected to the outer surface of the movable ring, and the other end is movably connected to the outer surface of the pressure dividing support shaft through a movable ball shaft.
[0014] Furthermore, the driving mechanism includes a driving motor and a belt transmission assembly, wherein the driving motor is fixedly mounted on the outside of the mounting spindle, and the belt transmission assembly is fixedly mounted on the inner wall of the active cavity and connected to the output end of the driving motor.
[0015] Furthermore, the belt drive assembly includes a transmission belt and an electromagnet block, an active roller shaft and a driven roller shaft are rotatably provided at the inner wall of the movable cavity, the active roller shaft is connected to the output end of the driving motor, the transmission belt is movably sleeved on the outer surfaces of the active roller shaft and the driven roller shaft, the electromagnet block is fixedly arranged on the outer surface of the transmission belt, a connecting block is arranged on the side of the electromagnet block away from the transmission belt, the connecting block slides through the adjustment long groove away from the side of the electromagnet block, and is fixedly connected to the movable seat.
[0016] Furthermore, a limiting track parallel to the transmission belt is fixedly provided on the inner wall of the movable cavity, a magnet strip is fixedly provided on the inner wall of the limiting track, and one side of the electromagnet block slides into the interior of the limiting track and is close to the magnet strip.
[0017] The present invention provides a method for disassembling an assembly structure, comprising the following steps:
[0018] S1. During installation, first assemble the electronic screen assembly structure, and connect the installation spindle and the support spindle into a whole through a fixing nut;
[0019] S2. Place the assembled electronic screen assembly structure perpendicular to the ground at the installation site. At this time, the counterweight ball contacts the ground, and the support main shaft is pressed against the ground, so that the ground base gradually approaches the ground. At this time, the counterweight ball slides outward along the ground. Under the linkage action of the inclined support shaft, the movable ring moves upward along the support main shaft, thereby driving the inclination angle of the pressure-dividing support shaft to increase, until the ground base contacts the ground, and the pressure-dividing support shaft forms a conical support structure along the outer side of the support main shaft;
[0020] S3. After the ground base is attached to the ground, the stepper motor is connected to the power supply. At this time, the stepper motor drives the ball screw to rotate, and the ball screw drives the slider to move downward along the vertical track. The slider drives the positioning plug to move downward along the installation cavity. The positioning plug is inserted into the ground through the drilling tip and deep into the ground, so that the electronic screen assembly structure is stably installed on the ground, and the installation is completed;
[0021] S4. When the electronic screen assembly structure needs to be dismantled at the end of the project, power is turned on to reverse the stepper motor, driving the ball screw to reverse, and the slider drives the positioning plug to move upward. The positioning plug is pulled out from the ground, and the staff can directly lift the electronic screen assembly structure upward to complete the dismantling.
[0022] The present invention also provides a method for adjusting the assembly structure, comprising the following steps:
[0023] Step 1: When the height of the laser probe needs to be adjusted, firstly, the electromagnet block is powered off to make the magnetic attraction between the electromagnet block and the magnet strip disappear, thus releasing the positioning of the electromagnet block;
[0024] Step 2: Start the driving motor to drive the active roller to rotate, thereby driving the transmission belt to drive the electromagnet block to move up and down along the limit track. The limit track drives the moving seat to move to the appropriate position through the connecting block, and the moving seat drives the laser probe to move to the appropriate position.
[0025] Step 3: Power on the electromagnet block, which generates magnetic force and attracts the magnet strip. The magnet strip positions the electromagnet block, thereby positioning the laser probe. The height adjustment of the laser probe is completed.
[0026] Compared with the prior art, the present invention has the following beneficial effects:
[0027] 1. The present invention provides an assembly structure for a laser curtain wall electronic barrier, in which the installation main shaft and the supporting main shaft are fixedly connected as a whole by a fixing nut, and at the same time, the counterweight ball contacts the ground, and the supporting main shaft is pressed toward the ground, so that the ground base gradually approaches the ground. At this time, the counterweight ball slides outward along the ground, and under the linkage action of the inclined support shaft, the movable ring moves upward along the supporting main shaft, thereby driving the inclination angle of the pressure dividing support shaft to increase, until the ground base contacts the ground, and the pressure dividing support shaft forms a conical supporting structure along the outer side of the supporting main shaft, thereby improving the pressure dividing and stabilizing effects of the electronic barrier assembly structure.
[0028] 2. The assembly structure of the electronic barrier for the laser curtain wall drives the ball screw to rotate through a stepper motor, thereby moving the slide downward along the vertical track, so that the positioning plug moves downward along the installation cavity, and is inserted into the ground and deep into the ground through the drilling tip. The structural design of the inclined surface and the drilling tip makes the positioning plug have less resistance during the insertion process and the insertion is smoother. When the slider moves to the lowest end, the insertion and positioning process is completed, so that the ground base is tightly connected to the ground. By setting up a disassembly structure, the trouble of disassembling the laser probe is reduced. At the same time, it cooperates with the pressure-dividing positioning mechanism to improve the installation firmness of the laser probe and reduce installation looseness.
[0029] 3. The assembly structure of the electronic barrier for the laser curtain wall drives the active roller to rotate through the driving motor, thereby driving the transmission belt to drive the electromagnet block up and down along the limit track, and at the same time drives the moving seat to move to the appropriate position, so as to realize the height adjustment of the laser probe, which is more flexible to use and convenient for lowering the high laser probe for maintenance without disassembling the laser probe.
[0030] 4. The present invention provides a method for disassembling and assembling an assembly structure. The installation method is simple to operate, and the electronic barrier assembly structure can be stably installed on the ground through a ground drilling positioning mechanism and a voltage divider positioning mechanism. The installation is firm and stable, and the disassembly is also convenient. This overcomes the technical problem in the prior art that in order to ensure stability, the bracket base is poured into the ground with cement, which makes it difficult to quickly disassemble the bracket and the device after the project is completed. This improves the disassembly and assembly efficiency and reduces the construction difficulty.
[0031] 5. The present invention provides an adjustment method for an assembly structure. The method can adjust the height of the laser probe through a driving mechanism and is easy to operate, which is convenient for staff to repair and replace. It overcomes the technical problems in the prior art that when repairing or replacing electronic components, staff need to use a ladder to operate, which has low work efficiency and certain safety hazards in climbing operations. It greatly improves the maintenance efficiency of electronic components and also reduces the safety hazards of construction operations. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] The accompanying drawings are used to provide further understanding of the present invention and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention and do not constitute a limitation of the present invention.
[0033] Figure 1 The overall structure of the embodiment of the present invention is shown in FIG. Figure 1 .
[0034] Figure 2 The overall structure of the embodiment of the present invention is shown in FIG. Figure 2 .
[0035] Figure 3 It is a schematic diagram of the internal cross-section structure of the supporting main shaft in the present invention.
[0036] Figure 4 It is a schematic diagram of the structure of installing the main shaft in the present invention.
[0037] Figure 5 It is a schematic diagram of the internal cross-section structure of the main shaft installed in the present invention.
[0038] Figure 6 for Figure 5 Enlarged structural diagram at A in the middle.
[0039] Among them, the accompanying drawings are marked as follows: 1. ground base; 2. through groove; 3. support spindle; 4. installation cavity; 5. installation spindle; 6. movable cavity; 7. adjustment long groove; 8. movable seat; 9. laser probe; 10. positioning plug; 101. plug body; 102. inclined slope; 103. drilling tip; 11. vertical track; 12. stepping motor; 13. ball screw; 14. slider; 15. movable ring; 16. inclined support shaft; 17. pressure-dividing support shaft; 18. counterweight ball; 19. movable ball shaft; 20. driving motor; 21. active roller shaft; 22. driven roller shaft; 23. transmission belt; 24. electromagnet block; 25. connecting block; 26. limiting track; 27. magnet strip; 28. flexible dustproof sheet; 29. friction block; 30. rough surface. DETAILED DESCRIPTION
[0040] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. Of course, the specific embodiments described here are only used to explain the present invention and are not used to limit the present invention.
[0041] Example 1
[0042] like Figure 1-6 As shown, this embodiment provides an assembly structure for a laser curtain wall electronic barrier, including a ground base 1, a supporting spindle 3, an installation spindle 5 and a laser probe 9. A through groove 2 is provided inside the ground base 1, and one end of the supporting spindle 3 is fixedly connected to the inner wall of one end of the through groove 2. The other end of the supporting spindle 3 is detachably connected to one end of the installation spindle 5 by bolts. A mounting cavity 4 is provided inside the supporting spindle 3, and the mounting cavity 4 is connected to the through groove 2. A drilling positioning mechanism is provided inside the installation cavity 4, and a pressure dividing positioning mechanism is provided on the outer surface of the supporting spindle 3. An active cavity 6 is provided inside the installation spindle 5, and a driving mechanism is provided in the active cavity 6. An adjusting long groove 7 is provided on the outer surface of the adjusting long groove 7, and a movable seat 8 is movably provided on the outer surface of the movable slot 7. The laser probe 9 is fixedly provided on the outer surface of the movable seat 8.
[0043] The ground drilling positioning mechanism includes a ground drilling drive assembly and a positioning insert 10. The ground drilling drive assembly is fixedly mounted on the inner wall of the mounting cavity 4. Two positioning inserts 10 are respectively arranged on the outer two side surfaces of the ground drilling drive assembly.
[0044] The ground drilling drive assembly includes a stepper motor 12 and a vertical track 11. The vertical track 11 is fixedly arranged on the inner wall of the installation cavity 4. The stepper motor 12 is fixedly arranged at the end of the vertical track 11. The output end of the stepper motor 12 is connected to a ball screw 13. A slider 14 is movably arranged on the inner wall of the vertical track 11. The slider 14 is fitted on the outer surface of the ball screw 13. Two positioning plugs 10 are respectively fixed on the opposite sides of the slider 14. During construction and installation, after the ground base 1 is placed stably, the stepper motor 12 is connected to the power supply. After the stepper motor 12 is started, it drives the ball screw 13 to rotate. The ball screw 13 drives the slider 14 to move downward along the vertical track 11. The slider 14 simultaneously drives the positioning plugs 10 on both sides to move downward. The positioning plugs 10 are inserted into the ground and penetrate deep into the underground.
[0045] The positioning plug 10 includes a plug body 101 and a drilling tip 103. One side of the plug body 101 is fixedly connected to the side wall of the slider 14, and the other side of the plug body 101 is provided with an inclined surface 102. The bottom of the plug body 101 is integrally formed with a drilling tip 103. The structural design of the inclined surface 102 and the drilling tip 103 makes the positioning plug 10 have less resistance during insertion into the ground and smoother insertion. When the slider 14 moves to the lowest end, the insertion and positioning process is completed, so that the ground base 1 can be tightly connected to the ground. The electronic barrier assembly structure can reduce the trouble of disassembling the laser probe 9, and at the same time cooperate with the voltage-dividing positioning mechanism to improve the installation firmness of the laser probe 9 and reduce loose installation.
[0046] The pressure dividing positioning mechanism comprises a movable ring 15 and pressure dividing components. The movable ring 15 is movably sleeved on the outer surface of the supporting main shaft 3 , and a plurality of pressure dividing components are radially distributed on the outer surface of the movable ring 15 .
[0047] The pressure-dividing component includes a pressure-dividing support shaft 17 and an inclined support shaft 16. One end of the inclined support shaft 16 is movably connected to the outer surface of the movable ring 15, and the other end is movably connected to the side wall of the pressure-dividing support shaft 17. One end of the pressure-dividing support shaft 17 is movably connected to the outer wall of the supporting main shaft 3, and the other end is fixedly provided with a counterweight ball 18. The electronic barrier assembly structure is moved to a suitable installation position. At this time, the counterweight ball 18 contacts the ground, presses the supporting main shaft 3 to the ground, and makes the ground base 1 gradually approach the ground. At this time, the counterweight ball 18 slides outward along the ground. Under the linkage action of the inclined support shaft 16, the movable ring 15 moves upward along the supporting main shaft 3, thereby driving the inclination angle of the pressure-dividing support shaft 17 to increase until the ground base 1 contacts the ground. The pressure-dividing support shaft 17 forms a conical support structure along the outer side of the supporting main shaft 3, so that the electronic barrier assembly structure has the effect of pressure division and stability.
[0048] The driving mechanism includes a driving motor 20 and a belt transmission assembly. The driving motor 20 is fixedly arranged on the outer surface of the mounting spindle 5 . The belt transmission assembly is arranged on the inner wall of the active cavity 6 and connected to the output end of the driving motor 20 .
[0049] The belt drive assembly includes a transmission belt 23, an electromagnet block 24, and an active roller shaft 21 and a driven roller shaft 22 rotatably arranged on the inner wall of the active cavity 6, the active roller shaft 21 is connected to the output end of the driving motor 20, the transmission belt 23 is movably sleeved on the outer surfaces of the active roller shaft 21 and the driven roller shaft 22, one side of the electromagnet block 24 is fixedly connected to the side wall of the transmission belt 23, and the other side of the electromagnet block 24 is fixedly connected to a connecting block 25, the connecting block 25 slides through the adjusting long groove 7 away from the side of the electromagnet block 24, and is fixedly connected to the movable seat 8.
[0050] A limit track 26 is fixedly arranged on the inner wall of the movable cavity 6, and the limit track 26 is parallel to the transmission belt 23. A magnet strip 27 is fixedly arranged on the inner wall of the limit track 26. One side of the electromagnet block 24 extends into the limit track 26 and is close to the magnet strip 27. When the laser probe 9 needs to be adjusted in height for maintenance, the electromagnet block 24 is powered off, so that the magnetic attraction between the electromagnet block 24 and the magnet strip 27 disappears, and the positioning effect of the electromagnet block 24 is released. The active roller 21 is driven to rotate by the driving motor 20, thereby driving the transmission belt 23 to drive, so that the electromagnet block 24 moves up and down along the limit track 26, and the electromagnet block 24 drives the moving seat 8 to move, so that the laser probe 9 moves to a suitable position, thereby realizing the height adjustment of the laser probe 9. When performing maintenance, the staff only needs to lower the laser probe 9, and no need to perform high-altitude operations, thereby improving work efficiency and reducing safety risks for the staff.
[0051] Working principle: During installation, the installation main shaft 5 and the supporting main shaft 3 are fixedly connected as a whole by fixing nuts. Before installation, the installation main shaft 5 and the supporting main shaft 3 are assembled, and then the installation main shaft 5 and the supporting main shaft 3 are placed vertically, and the electronic barrier assembly structure is moved to a suitable installation position. At this time, the counterweight ball 18 contacts the ground, and the supporting main shaft 3 is pressed against the ground, so that the ground base 1 gradually approaches the ground. At this time, the counterweight ball 18 slides outward along the ground, and under the linkage action of the inclined support shaft 16, the movable ring 15 moves upward along the supporting main shaft 3, thereby driving the inclination angle of the pressure-dividing support shaft 17 to increase, until the ground base 1 contacts the ground, and the pressure-dividing support shaft 17 forms a conical support structure along the outside of the supporting main shaft 3, which has the effect of pressure division and stability;
[0052] After the ground-mounted base 1 is placed stably, the stepper motor 12 is connected to the power supply. At this time, the ball screw 13 is driven by the stepper motor 12 to rotate, so that the slider 14 moves downward along the vertical track 11, so that the positioning plug 10 moves downward along the installation cavity 4, and is inserted into the ground through the drilling tip 103 and deep into the ground. The structural design of the inclined surface 102 and the drilling tip 103 makes the positioning plug 10 have less resistance during the insertion process and smoother insertion. When the slider 14 moves to the lowest end, the insertion and positioning process is completed, so that the ground-mounted base 1 is tightly connected to the ground, the installation firmness of the electronic barrier assembly structure is increased, and the possibility of loose installation is reduced. The technical problem that the bracket base is poured into the ground by cement in order to ensure stability in the prior art, resulting in difficulty in quickly disassembling the bracket and the device after the project is completed, is overcome, and the installation and disassembly efficiency of the electronic barrier assembly structure is improved;
[0053] When the height of the laser probe 9 needs to be adjusted, the electromagnet block 24 is powered off, so that the magnetic attraction between the electromagnet block 24 and the magnet strip 27 disappears, and the positioning effect of the electromagnet block 24 is released. The active roller 21 is driven by the driving motor 20 to rotate, and then the transmission belt 23 is driven to drive, so that the electromagnet block 24 moves up and down along the limit track 26. The electromagnet block 24 drives the moving seat 8 to move up and down through the connecting block 25, so that the laser probe 9 can be moved to a suitable position and the height of the laser probe 9 can be adjusted. It is more flexible to use and it is also convenient to lower the laser probe 9 at a high place for maintenance without disassembling the laser probe 9, thereby improving the maintenance efficiency and eliminating the safety hazards of the staff.
[0054] Example 2
[0055] like Figure 5-Figure 6 As shown, on the basis of Example 1, two flexible dustproof sheets 28 in contact with each other are set at the inner wall of the adjusting long groove 7, the connecting block 25 is in active contact with the contact surface of the flexible dustproof sheet 28, and the flexible dustproof sheet 28 is used to prevent dust from entering the movable cavity 6, a friction block 29 is fixedly provided on the surface of one side of the movable seat 8, and a rough surface 30 is fixedly provided on the outer surface of the mounting spindle 5, and the friction block 29 is in active contact with the rough surface 30, and the friction force during the movement of the electromagnet block 24 is increased, so that the stability during the up and down movement is better, and the damage of the laser probe 9 caused by sudden stop and rise is avoided.
[0056] Example 3
[0057] In Example 1 or Example 2, the fixed connection between the counterweight ball 18 and the pressure-dividing support shaft 17 is replaced by a movable connection between the counterweight ball 18 and the pressure-dividing support shaft 17. Since the counterweight ball 18 is rotatable, when the ground base 1 is pressed down, the counterweight ball 18 can roll outward, thereby reducing the friction between the counterweight ball 18 and the ground, making the installation of the electronic barrier assembly structure more labor-saving.
[0058] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims
1. The assembly structure for the laser curtain wall electronic barrier is characterized by: The invention comprises a ground base (1), a supporting spindle (3), an installation spindle (5) and a laser probe (9); a through groove (2) is provided inside the ground base (1); one end of the through groove (2) is fixedly connected to the inner wall of one end of the supporting spindle (3); and the other end of the supporting spindle (3) is detachably connected to one end of the installation spindle (5); The support main shaft (3) is provided with a mounting cavity (4) inside, the mounting cavity (4) is communicated with the through groove (2), a ground drilling positioning mechanism is fixed inside the mounting cavity (4), and a pressure dividing positioning mechanism is provided on the outer surface of the support main shaft (3); The interior of the installation spindle (5) is provided with a movable cavity (6), a driving mechanism is fixedly arranged in the movable cavity (6), the outer surface of the installation spindle (5) is provided with an adjustment slot (7), the outer surface of the adjustment slot (7) is provided with a movable seat (8) movably arranged, and the laser probe (9) is fixedly arranged on the outer surface of the movable seat (8).
2. The assembly structure for the laser curtain wall electronic barrier according to claim 1 is characterized in that: The ground drilling positioning mechanism comprises a ground drilling drive assembly and a positioning insert (10), wherein the ground drilling drive assembly is fixedly arranged on the inner wall of the installation cavity (4), and two positioning inserts (10) are respectively fixedly arranged on both sides of the ground drilling drive assembly; The ground drilling drive assembly comprises a stepper motor (12) and a vertical track (11), wherein the vertical track (11) is fixedly arranged on the inner wall of the mounting cavity (4), the stepper motor (12) is fixedly arranged on the end of the vertical track (11), the output end of the stepper motor (12) is connected to a ball screw (13), a slider (14) is slidably arranged on the inner wall of the vertical track (11), the slider (14) is fitted and sleeved on the outer surface of the ball screw (13), and the two positioning inserts (10) are respectively fixedly connected to the opposite side surfaces of the slider (14).
3. The assembly structure for the laser curtain wall electronic barrier according to claim 2 is characterized in that: The positioning plug (10) comprises a plug body (101) and a ground-boring tip (103); one side of the plug body (101) is fixedly connected to the side of the slider (14); the other side is provided with an inclined surface (102); and the bottom of the plug body (101) is integrally formed with the ground-boring tip (103).
4. The assembly structure for the laser curtain wall electronic barrier according to claim 1 is characterized in that: The pressure dividing positioning mechanism comprises a movable ring (15) and a pressure dividing assembly. The movable ring (15) is slidably mounted on the outer surface of the supporting main shaft (3). A plurality of the pressure dividing assemblies are radially distributed on the outer surface of the movable ring (15).
5. The assembly structure for the laser curtain wall electronic barrier according to claim 4 is characterized in that: The pressure dividing assembly comprises a pressure dividing support shaft (17) and an inclined support shaft (16); one end of the pressure dividing support shaft (17) is movably connected to the outer side wall of the supporting main shaft (3), and the other end is fixedly provided with a counterweight ball (18); one end of the inclined support shaft (16) is movably connected to the outer surface of the movable ring (15), and the other end is movably connected to the outer surface of the pressure dividing support shaft (17) through a movable ball shaft (19).
6. The assembly structure for the laser curtain wall electronic barrier according to claim 1 is characterized in that: The driving mechanism comprises a driving motor (20) and a belt transmission assembly, wherein the driving motor (20) is fixedly arranged on the outside of the mounting main shaft (5), and the belt transmission assembly is fixedly arranged on the inner wall of the movable cavity (6) and connected to the output end of the driving motor (20).
7. The assembly structure for the laser curtain wall electronic barrier according to claim 6 is characterized in that: The belt transmission assembly comprises a transmission belt (23) and an electromagnet block (24); an active roller shaft (21) and a driven roller shaft (22) are rotatably provided at the inner wall of the movable chamber (6); the active roller shaft (21) is connected to the output end of the driving motor (20); the transmission belt (23) is movably sleeved on the outer surfaces of the active roller shaft (21) and the driven roller shaft (22); the electromagnet block (24) is fixedly arranged on the outer surface of the transmission belt (23); a connecting block (25) is arranged on the side of the electromagnet block (24) away from the transmission belt (23); the connecting block (25) slides through the adjusting long slot (7) on the side away from the electromagnet block (24) and is fixedly connected to the moving seat (8).
8. The assembly structure for the laser curtain wall electronic barrier according to claim 7 is characterized in that: A limiting track (26) parallel to the transmission belt (23) is fixedly arranged on the inner wall of the movable cavity (6), a magnet strip (27) is fixedly arranged on the inner wall of the limiting track (26), and one side of the electromagnet block (24) slides into the interior of the limiting track (26) and is close to the magnet strip (27).
9. A method for disassembling an assembly structure, the method being based on the assembly structure for a laser curtain wall electronic barrier according to any one of claims 1 to 8, characterized in that: The steps include: S1. During installation, the electronic screen assembly structure is first assembled, and the installation main shaft (5) and the supporting main shaft (3) are connected as a whole through a fixing nut; S2. The assembled electronic screen assembly structure is placed perpendicular to the ground at the installation site. At this time, the counterweight ball (18) contacts the ground, and the support main shaft (3) is pressed against the ground, so that the ground base (1) gradually approaches the ground. At this time, the counterweight ball (18) slides outward along the ground. Under the linkage action of the inclined support shaft (16), the movable ring (15) moves upward along the support main shaft (3), thereby driving the inclination angle of the pressure dividing support shaft (17) to increase, until the ground base (1) contacts the ground, and the pressure dividing support shaft (17) forms a conical support structure along the outer side of the support main shaft (3); S3. After the ground-mounted base (1) is attached to the ground, the stepper motor (12) is connected to a power source. At this time, the stepper motor (12) drives the ball screw (13) to rotate. The ball screw (13) causes the slider (14) to move downward along the vertical track (11). The slider (14) drives the positioning insert (10) to move downward along the installation cavity (4). The positioning insert (10) is inserted into the ground through the drilling tip (103) and penetrates deep into the ground, so that the electronic screen assembly structure is stably installed on the ground. The installation is completed. S4. When the electronic screen assembly structure needs to be dismantled after the project is completed, power is supplied to reverse the stepper motor (12), driving the ball screw (13) to reverse, and the slider (14) drives the positioning plug (10) to move upwards together. The positioning plug (10) is pulled out from the ground, and the staff can directly lift the electronic screen assembly structure upwards to complete the dismantling.
10. A method for adjusting an assembly structure, the method being based on the assembly structure for a laser curtain wall electronic barrier according to any one of claims 1 to 8, characterized in that: The steps include: The first step: when the height of the laser probe (9) needs to be adjusted, the electromagnet block (24) is first powered off, so that the magnetic attraction between the electromagnet block (24) and the magnet strip (27) disappears, and the positioning of the electromagnet block (24) is released; Step 2: Start the driving motor (20) to drive the active roller (21) to rotate, thereby driving the transmission belt (23) to drive, so that the electromagnet block (24) moves up and down along the limiting track (26), the limiting track (26) drives the moving seat (8) to move to a suitable position through the connecting block (25), and the moving seat (8) drives the laser probe (9) to move to a suitable position; Step 3: The electromagnet block (24) is energized, the electromagnet block (24) generates magnetic force and attracts the magnet strip (27), the magnet strip (27) positions the electromagnet block (24), and then the laser probe (9) is positioned, and the height adjustment of the laser probe (9) is completed.
Citation Information
Patent Citations
Surveying instrument with adjustable bracket angle and height
CN113418111A