Street lamp pole vertical erecting mounting device with vertical detection function
The installation device with a vertical detection system and enhanced support structures addresses alignment and stability issues in road lamp installation, ensuring precise and stable pole positioning.
Patent Information
- Application Number
- CN202510542489.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-07-15
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing street lamp pole installation device cannot accurately overlap the vertical sensor center when automatically lifted up, and the auxiliary support rod cannot be effectively restrained when the lamp pole is inclined, resulting in insufficient installation convenience and stability.
The vertical vertical installation device of the street lamp pole with vertical detection is adopted. Through the combination of parallel base, the lamp pole connection end, auxiliary support structure, driver, extension rod, positioning block and rotary connector, the vertical lifting and verticality detection are achieved using vertical sensors and laser detection lamps, and the connection stability is improved through magnetic suction plates and pulley sets.
The accuracy of automatic lifting of the lamp pole and verticality detection is realized, the convenience and stability of the installation device are improved, the lamp pole is prevented from tilting and connecting and disengaging, and the vertical installation strength and safety of the street lights are ensured.
Smart Images

Figure CN120313014A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of vertical installation of street lamp poles, and more specifically to a vertical erection installation device for street lamp poles with vertical detection. Background Art
[0002] The main purpose of street lamps is to provide road lighting, so that they can provide light sources for the road at night, thereby improving the safety of night travel and reducing the risk of accidents. It can help people see the surrounding environment clearly, reduce the chance of being attacked by criminals, and improve the safety of walking at night; However, when installing street lamps, they need to be positioned using a dedicated installation device, and then be installed vertically on both sides of the road, so that the light source of the street lamps can be accurately projected into the road surface, achieving a stable use effect; In summary, the inventors have found that the existing installation device mainly has the following defects: when the current installation device automatically lifts the lamp pole to maintain a vertical state, the lamp pole cannot directly coincide with the center point of the vertical sensor, so that the vertical force sensor position needs to be manually debugged to ensure that it overlaps with the center point of the lamp pole before vertical detection can be performed. Therefore, based on the above factors, the convenience and intensity of use of the installation device are reduced; At the same time, when the auxiliary support rod carried by the current installation device supports the lamp pole in an inclined triangular position, it and the lamp pole only form a simple interlaced support effect. If the lamp pole tilts in the opposite direction, the current auxiliary support rod cannot effectively restrain it and may cause disconnection, which will further reduce the use effect of the installation device. Summary of the invention
[0003] The technical solution adopted by the present invention to achieve the technical purpose is: a vertically erected installation device for a street light pole with vertical detection, whose structure includes: a parallel base, a pole connecting end, an auxiliary support structure, a driver, an extension rod, a positioning block, and a rotating connector. The center of the upper end of the parallel base positions the pole connecting end and the auxiliary support structure is positioned on the side. The driver is installed at the center of the left and right sides of the parallel base and sets the extension rod in a parallel orientation. The extension rod passes through the center of the positioning block and is connected to the center of the rotating connector. The rotating connector is connected to the edge of the pole connecting end through the positioning block.
[0004] As a further improvement of the present invention, a parallel frame is provided at the connecting end of the lamp pole, the parallel frame covers the edge of the parallel plate and the inner surface of the parallel plate is connected to a vertical sensor, a power-carrying body is also provided on the top of the parallel frame, a plug is connected to the top of the power-carrying body, a partition frame is also connected to the right side of the parallel plate to position the magnetic plate, and a clamp frame is provided in the center of the magnetic plate to position the bottom of the auxiliary support structure.
[0005] As a further improvement of the present invention, the vertical sensor is further provided with a locking head. The top of the locking head is welded to the center of the lower end of the support column, and a power-on groove is opened on the surface of the support column for insertion and electrical connection with the power-on body. The top of the support column is connected with a strengthened outer shell to position the laser detection lamp at the upper edge, and a slot is opened at the center of the top. Inside the slot, a power-on key is connected to the laser detection lamp and the power-on groove of the support column for electrical connection of the circuit.
[0006] As a further improvement of the present invention, through the parallel plate at the lamp post connection end, the lamp post is parallelly inserted. Then the driver uses the extension rod and the rotating connector to connect with the edge of the lamp post. Then the surface of the parallel plate contacts the surface of the lamp post. When the rotating connector automatically raises the lamp post, the bottom of the lamp post will gradually be inserted into the slot inside the strengthened outer shell of the vertical sensor. Subsequently, the power-on key is squeezed to trigger the laser detection lamp at the edge. Furthermore, the power-on body of the parallel plate receives the electric energy from the driver to make the laser detection lamp and the power-on key operate.
[0007] As a further improvement of the present invention, the lamp post connection end at the upper end of the parallel base is in a rectangular concave shape and forms an "L" shape with the auxiliary support structure on the side. There are two groups of the driver, the extension rod, the positioning block, and the rotating connector provided on the upper end of the parallel base and arranged symmetrically on the left and right sides of the lamp post connection end.
[0008] As a further improvement of the present invention, the parallel frame is rectangular and covers and positions the parallel plate. The vertical sensor of the parallel plate is circular and fits the shape of the lamp post. An electric connection line is connected between the power-on body and the plug. The magnetic attraction plate of the partition frame positions the rubber clip frame.
[0009] As a further improvement of the present invention, the locking head is a bolt product and coincides with the center of the support column. The size of the power-on groove of the support column fits the size of the power-on body. The strengthened outer shell is a carbon steel product and is circular. There are multiple groups of laser detection lamps carried on the surface edge and arranged in a circular direction to vertically detect the lamp post through the slot.
[0010] As a further improvement of the present invention, the auxiliary support structure is further provided with an insertion block. The upper end of the insertion block is connected with a metal plate and the metal plate is located at the lower end of the solid block. An activity groove is opened at the center of the upper end of the solid block to position the center block. A pulley group is also arranged at the center of the top of the center block to control the movement of the support rod. A restraint block is also fixed at the top of the support rod.
[0011] As a further improvement of the present invention, the insertion block is perpendicular to the metal plate and the metal plate covers the lower layer of the solid block. The activity groove of the solid block is in a concave shape to allow the pulley group of the center block to drive the support rod for orientation adjustment.
[0012] As a further improvement of the present invention, the pulley block is further provided with a restraint disc. A chute is opened in the center of the restraint disc to position the wheel body, and a locking groove is opened in the edge area of the wheel body and communicated with the vertical connecting groove inside.
[0013] As a further improvement of the present invention, the restraint disc is in a circular ring shape and the inner wall of the inner chute is in a finely polished shape and contacts the wheel body. The wheel body is in a spherical shape and a circular vertical connecting groove is also opened at the top, which is in mutual conformity with the shape and size of the support rod.
[0014] As a further improvement of the present invention, the rotating connector is provided with a connecting groove. A limiting ring is arranged at the edge of the connecting groove and is arranged in the central area of the main turntable. A sub-turntable is also arranged in the central area of the main turntable, and a connecting block is fixed in the central area of the sub-turntable.
[0015] As a further improvement of the present invention, the connecting groove is circular in shape and is arranged at the center of the main turntable through the limiting ring. There is a safe movement distance between the main turntable and the sub-turntable, and the sub-turntable and the connecting block are in a circular convex solid shape.
[0016] As a further improvement of the present invention, a main runner is also arranged between the main turntable and the sub-turntable. The lower end of the main runner is connected with a balance rod, and the sub-runner is positioned through the balance rod. The main runner and the sub-runner are respectively connected to the centers of the main turntable and the sub-turntable and their centers coincide with each other.
[0017] As a further improvement of the present invention, the diameter of the main runner is larger than that of the sub-runner. The two are connected through the balance rod and an electric self-locking device is also arranged at the connection area with the balance rod.
[0018] Compared with the prior art, the present invention has the following beneficial effects: 1. After the lamp post connection end of the present invention is further improved, based on the vertical sensor on the surface of the parallel plate, combined with the extension rod and the rotating connector of the driver, the lamp post is automatically erected. The bottom of the lamp post is embedded in the central slot of the strengthened shell of the vertical sensor, and then the internal switch can be squeezed to trigger the edge laser detection lamp to detect the verticality of the lamp post in real time. Therefore, the detection accuracy and convenience of the verticality of the lamp post can be improved. Then, the strengthened shell of the vertical sensor is made of carbon steel material, which can achieve the effect of protecting the laser detection lamp and avoid the extrusion and damage during the parallel placement of the lamp post. As a result, the detection accuracy, convenience of the installation device for the verticality of the lamp post and the effect of protecting the laser detection lamp are improved.
[0019] 2. After the auxiliary support structure of the present invention is further improved, the magnetic attraction plate and the clamping frame on the right side of the parallel plate can improve the connection stability with the metal plate at the bottom of the solid block. Furthermore, the movable groove of the solid block can use the central block to position the pulley group, so that the support rod on the pulley group can use the wheel body to adjust the inclination azimuth after the lamp post is perpendicular to the center of the vertical sensor. Then, the restraint block is inserted into the lamp post for clamping connection, thereby improving the connection firmness with the lamp post and preventing the reduction of the restraint force on the lamp post caused by simple insertion. Furthermore, the spherical wheel in the restraint disc of the pulley group can lock the bolt into the connection with the support rod through the side locking groove, so that the support rod can form a detachable effect in the vertical connection groove.
[0020] 3. After the rotary connector of the present invention is further improved, the limit ring and the connection groove of the main turntable can be fixedly connected to one end of the extension rod. Then, by pushing out the extension rod, the combined rotation effect of the sub-turntable can enable the connection block to be fixedly connected to the edge of the lamp post in a threaded connection manner. After the connection block of the sub-turntable is completely fixed to the lamp post, the sub-rotating wheel connected to the sub-turntable will stop operating and be fixed at the origin in combination with the self-locking device arranged in the balance rod area. Subsequently, the large-diameter main rotating wheel of the main turntable drives the overall sub-turntable to rotate through the balance rod, so as to improve the stability and firmness of the automatic lifting of the lamp post and avoid the failure of automatic lifting caused by the instability between connections. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It belongs to a schematic structural diagram of an installation device for vertically erecting a street lamp post with vertical detection.
[0022] Figure 2 It belongs to a schematic top view structural diagram after the improvement of the connection end of the lamp post.
[0023] Figure 3 It belongs to a schematic three-dimensional structural diagram after the improvement of the vertical sensor.
[0024] Figure 4 It belongs to a schematic sectional structural diagram after the improvement of the auxiliary support structure.
[0025] Figure 5 It belongs to a schematic three-dimensional structural diagram after the improvement of the pulley group.
[0026] Figure 6 It belongs to a schematic three-dimensional structural diagram after the improvement of the rotary connector.
[0027] Figure 7 It belongs to a schematic sectional structural diagram of the connecting component between the main turntable and the sub-turntable.
[0028] In the figure: parallel base - 1, lamp post connection end - 2, auxiliary support structure - 3, driver - 4, extension rod - 5, positioning block - 6, rotating connector - 7; Parallel frame - 21, parallel plate - 22, vertical sensor - 23, energized body - 24, plug - 25, partition frame - 26, magnetic attraction plate - 27, clamping frame - 28; Locking head - 231, support column - 232, energized slot - 233, reinforced housing - 234, laser detection lamp - 235, slot - 236, power - on key - 237; Insert block - 31, metal plate - 32, solid block - 33, movable slot - 34, center block - 35, pulley block - 36, support rod - 37, restraint block - 38; Restraint disc - 361, sliding slot - 362, wheel body - 363, locking slot - 364, vertical connection slot - 365; Connection slot - 71, limit ring - 72, main turntable - 73, sub - turntable - 74, connection block - 75; Main runner - 731, balance rod - 732, sub - runner - 733. Specific implementation mode
[0029] The present invention will be further described below with reference to the accompanying drawings: Embodiment
[0030] Figures 1 to 5 As shown: The present invention provides an installation device for vertically erecting a street lamp post with vertical detection, The structure thereof includes a parallel base 1, a lamp post connection end 2, an auxiliary support structure 3, a driver 4, an extension rod 5, a positioning block 6, and a rotating connector 7. The center of the upper end of the parallel base 1 positions the lamp post connection end 2, and an auxiliary support structure 3 is positioned at the side part. The driver 4 is installed at the centers of the left and right sides of the parallel base 1 and sets the extension rod 5 in a parallel orientation. The extension rod 5 passes through the center of the positioning block 6 and is connected to the center of the rotating connector 7. The rotating connector 7 communicates with the edge of the lamp post connection end 2 through the positioning block 6.
[0031] Among them, the lamp post connection end 2 is provided with a parallel frame 21. The parallel frame 21 covers the edge of the parallel plate 22, and a vertical sensor 23 is connected to the inner surface layer of the parallel plate 22. An energized body 24 is further provided at the top of the parallel frame 21, and a plug 25 is connected to the top of the energized body 24. A partition frame 26 is also connected to the right side of the parallel plate 22 to position the magnetic attraction plate 27. A clamping frame 28 is arranged at the center of the magnetic attraction plate 27 to position the bottom of the auxiliary support structure 3.
[0032] Among them, the vertical sensor 23 is further provided with a locking head 231. The top of the locking head 231 is welded to the center of the lower end of the support column 232. An energizing groove 233 is opened on the surface of the support column 232 for insertion and electrical connection with the energizing body 24. The top of the support column 232 is connected with a reinforced housing 234 to position the laser detection lamp 235 at the upper edge, and a slot 236 is opened at the center of the top. Inside the center of the slot 236, a switch key 237 is connected for electrical connection of the circuit with the laser detection lamp 235 and the energizing groove 233 of the support column 232.
[0033] Among them, through the parallel plate 22 of the lamp post connection end 2, the lamp post is embedded in parallel, and then the driver 4 is connected to the edge of the lamp post by means of the extension rod 5 and the rotary connector 7. Then, the surface of the parallel plate 22 contacts the surface of the lamp post. When the rotary connector 7 automatically raises the lamp post, the bottom of the lamp post will gradually be embedded into the slot 236 inside the reinforced housing 234 of the vertical sensor 23. Subsequently, the switch key 237 is squeezed to trigger the laser detection lamp 235 at the edge. Furthermore, the energizing body 24 of the parallel plate 22 receives the electric energy of the driver 4 to operate the laser detection lamp 235 and the switch key 237.
[0034] Among them, the lamp post connection end 2 at the upper end of the parallel base 1 is in a rectangular concave shape and forms an "L" shape with the auxiliary support structure 3 on the side. Two sets of the driver 4, the extension rod 5, the positioning block 6, and the rotary connector 7 are provided on the upper end of the parallel base 1 and are symmetrically arranged on the left and right sides of the lamp post connection end 2.
[0035] Among them, the parallel frame 21 is rectangular and covers and positions the parallel plate 22. The vertical sensor 23 of the parallel plate 22 is circular and fits the shape of the lamp post. An energizing circuit is connected between the energizing body 24 and the plug 25. The magnetic attracting plate 27 of the partition frame 26 positions the rubber clamping frame 28.
[0036] Among them, the locking head 231 is a bolt product and coincides with the center of the support column 232. The size of the energizing groove 233 of the support column 232 matches the size of the energizing body 24. The reinforced housing 234 is made of carbon steel and is circular in shape. A plurality of laser detection lamps 235 are carried on the surface edge and are arranged in a circular direction for vertical detection of the lamp post through the slot 236.
[0037] Among them, the auxiliary support structure 3 is further provided with a plug block 31. The upper end of the plug block 31 is connected with a metal plate 32, and the metal plate 32 is located at the lower end of the solid block 33. An activity groove 34 is opened at the center of the upper end of the solid block 33 to position the center block 35. A pulley group 36 is further arranged at the center of the top of the center block 35 to control the movement of the support rod 37. A restraint block 38 is also fixed at the top of the support rod 37.
[0038] Among them, the insertion block 31 is perpendicular to the metal plate 32, and the metal plate 32 covers the lower layer of the solid block 33. The movable groove 34 of the solid block 33 is in a concave shape, and the pulley set 36 of the central block 35 drives the support rod 37 to adjust the orientation.
[0039] Among them, the pulley set 36 is further provided with a restraint disk 361. A sliding groove 362 is opened in the center of the restraint disk 361 to position the wheel body 363. A locking groove 364 is opened in the edge area of the wheel body 363 and is connected to the internal vertical connection groove 365.
[0040] Among them, the restraint disk 361 is in a circular ring shape, and the inner wall of the internal sliding groove 362 is in a finely polished shape and contacts the wheel body 363. The wheel body 363 is in a spherical shape, and a circular vertical connection groove 365 is also opened at the top, which is in line with the shape and size of the support rod 37.
[0041] Specific functions and operation procedures of this embodiment: In the present invention, for the installation device with the lamp post vertically erected, the parallel base 1 can be first installed at the installation position of the street lamp. Then, the bottom area of the street lamp post is horizontally inserted into the lamp post connection end 2 by a crane or manual handling. Subsequently, the extension rod 5 is controlled by the drivers 4 on both left and right sides to push out the rotating connector 7 of the positioning block 6, so that it is locked and connected to the edge of the lamp post. Finally, the lamp post is automatically lifted by rotation, enabling the lamp post to stand vertically in the installation area. Furthermore, the auxiliary support structure 3 on the side supports the edge of the lamp post in a triangular orientation, improving the vertical support stability and ensuring the vertical installation strength effect of the street lamp post. Then, the parallel frame 21 of the lamp post connection end 2 can stably install the parallel plate 22 at the center of the parallel base 1. Then, the vertical sensor 23 can be electrically connected to the driver 4 through the circuit and plug 25 of the energized body 24, enabling the vertical sensor 23 to be electrically connected to the driver 4. At the same time, the partition frame 26 on the side can be fixedly connected to the bottom of the auxiliary support structure 3 through the magnetic attraction plate 27 and the clamping frame 28. Therefore, the vertical sensor 23 can contact one end of the street lamp post through the parallel plate 22, and then the carbon steel material of the strengthened outer shell 234 is used to prevent damage to the laser detection lamp 235 caused by the extrusion of the lamp post. During the process of the lamp post being automatically lifted by the rotating connector 7, the bottom end of the lamp post can be inserted into the slot 236 during the automatic lifting process. Subsequently, the power switch 237 is pressed according to the centrifugal force and vertical characteristics. Therefore, after the power switch 237 is pressed down, it can trigger the laser detection lamp 235 through the electrical connection effect. According to the vertical detection of the laser detection lamp 235, the verticality detection of the lamp post can be completed, ensuring that the lamp post can be in a stable vertical state with the road surface. At the same time, the strengthened outer shell 234 is embedded in the parallel plate 22, and the two are on the same horizontal plane, preventing obstacles caused by protrusions during the automatic lifting of the lamp post and improving the stability of the automatic lifting and installation of the lamp post. Furthermore, the support column 232 at the bottom of the strengthened outer shell 234 can be vertically installed inside the parallel base 1 through the locking head 231, and then the electrical connection with the energized body 24 is completed according to the energized slot 233 on the edge of the support column 232, enabling the power switch 237 and the laser detection lamp 235 to stably receive the power operation of the driver 4. Therefore, the installation stability of the installation device for the lamp post and the vertical detection stability effect can be effectively improved. Subsequently, the solid block 33 of the auxiliary support structure 3 can be inserted into the clamping frame 28 through the insertion block 31 of the bottom metal plate 32. At the same time, the metal plate 32 can contact the magnetic attraction plate 27 to achieve parallel connection. Furthermore, the position of the pulley block 36 can be determined by the central block 35 inside the moving slot 34 of the solid block 33, enabling the pulley block 36 to adjust the support orientation of the support rod 37. Then, the support column 37 will be clamped and connected to the edge area of the lamp post by the top restraint block 38, replacing the reduced restraint force and support stability caused by the original simple insertion. Therefore, the situation of the lamp post tilting can be prevented,Furthermore, the restraint disk 361 of the pulley block 36 can be embedded parallelly into the center of the center block 35. The position of the wheel body 363 is limited by the sliding groove 362, so that the wheel body 363 can rotate in the sliding groove 362. At the same time, the vertical connection groove 365 provided at the top can vertically embed the bottom of the support rod 37, ensuring that the support rod 37 can be spliced with the wheel body 363. Finally, the locking bolt is locked by the locking groove 364 on the side, improving the position restraint of the support rod 37 and achieving a detachable effect. Embodiment
[0042] Figures 6 to 7 as shown in The present invention provides an installation device for vertically erecting a street lamp pole with vertical detection. Its structure includes that the rotary connector 7 is provided with a connection groove 71. A limiting ring 72 is arranged at the edge of the connection groove 71 and is located in the central area of the main turntable 73. A secondary turntable 74 is also provided in the central area of the center of the main turntable 73, and a connection block 75 is fixed in the central area of the secondary turntable 74.
[0043] Among them, the connection groove 71 is circular in shape and is arranged at the center of the main turntable 73 through the limiting ring 72. There is a safe moving distance between the main turntable 73 and the secondary turntable 74. The secondary turntable 74 and the connection block 75 are in the form of circular convex solids.
[0044] Among them, a main runner 731 is also arranged between the main turntable 73 and the secondary turntable 74. The lower end of the main runner 731 is connected with a balance rod 732. The secondary runner 733 is positioned through the balance rod 732. The main runner 731 and the secondary runner 733 are respectively connected to the centers of the main turntable 73 and the secondary turntable 74 and their centers coincide with each other.
[0045] Among them, the diameter of the main runner 731 is larger than that of the secondary runner 733. The two are connected through the balance rod 733 and an electric self-locking device is also arranged in the connection area with the balance rod 733.
[0046] The specific functions and operation processes of this embodiment: In the present invention, the limiting ring 72 and the connecting groove 71 of the main turntable 73 of the rotary connecting member 7 complete the splicing with the extension rod 5. Therefore, the extension rod 5 can, in combination with the positioning block 6, push the connecting blocks 75 of the main turntable 73 and the auxiliary turntable 74 in parallel. Then, the main runner 731 connected between the main turntable 73 and the auxiliary turntable 74 can complete the connection with the auxiliary runner 733 through the balance rod 732, ensuring the center overlap accuracy between the main turntable 73 and the auxiliary turntable 74. Therefore, when the lamp post is installed parallel on the surface of the parallel plate 22, the auxiliary turntable 74 can be driven to rotate by the driver 4 in combination with the auxiliary runner 733, so that the connecting block 75 can be locked into the inner area of the bottom edge of the lamp post according to its bolt shape, achieving a stable connection effect. During the rotation, the electric self-locking device in the area connected with the balance rod 732 will be in a released state. On the contrary, after the connecting block 75 completes the connection with the lamp post, the auxiliary runner 733 and the auxiliary turntable 74 stop working, so that the electric self-locking device locks again, making the auxiliary runner 733 and the auxiliary turntable 74 stationary at the origin. Subsequently, the large-diameter main runner 731 of the main turntable 73 can rotate by locking the balance rod 732, and then can stably drive the auxiliary turntable 74 to rotate as a whole. Then, by combining the splicing of the connecting block 75 and the lamp post, the automatic lifting operation of the lamp post can be completed. Therefore, the stability of the automatic lifting can be effectively improved, and the situation of automatic lifting failure caused by the looseness influence between components can be avoided. Therefore, the safety factor of the automatic lifting of the lamp post can be greatly improved.
[0047] Using the technical solution of the present invention, or those skilled in the art being inspired by the technical solution of the present invention to design a similar technical solution and achieving the above technical effects shall fall within the protection scope of the present invention.
Claims
1. An installation device for vertically erecting a street lamp pole with vertical detection, the structure of which includes: Parallel base (1), lamp post connection end (2), auxiliary support structure (3), driver (4), extension rod (5), positioning block (6), rotating connector (7). The center of the upper end of the parallel base (1) positions the lamp post connection end (2), and the auxiliary support structure (3) is positioned at the side part. The driver (4) is installed at the centers of the left and right sides of the parallel base (1) and sets the extension rod (5) in a parallel orientation. The extension rod (5) passes through the center of the positioning block (6) and is connected to the center of the rotating connector (7). The rotating connector (7) communicates with the edge of the lamp post connection end (2) through the positioning block (6). It is characterized in that: The lamp post connection end (2) is provided with a parallel frame (21). The parallel frame (21) covers the edge of the parallel plate (22), and a vertical sensor (23) is connected to the inner surface layer of the parallel plate (22). An energized body (24) is also provided at the top of the parallel frame (21). The top of the energized body (24) is connected to a plug (25). A partition frame (26) is also connected to the right side of the parallel plate (22) to position the magnetic attraction plate (27). A clamping frame (28) is arranged at the center of the magnetic attraction plate (27) to position the bottom of the auxiliary support structure (3); The vertical sensor (23) is also provided with a locking head (231). The top of the locking head (231) is welded to the center of the lower end of the support column (232), and a power supply slot (233) is opened on the surface of the support column (232) and is inserted and electrically connected to the energized body (24). The top of the support column (232) is connected to a strengthened housing (234) to position the laser detection lamp (235) at the upper edge, and a slot (236) is opened at the center of the top. A key switch (237) is connected to the center of the inside of the slot (236) and is electrically connected to the laser detection lamp (235) and the power supply slot (233) of the support column (232) through a circuit; The lamp post is inserted in parallel through the parallel plate (22) of the lamp post connection end (2), and then the driver (4) uses the extension rod (5) and the rotating connector (7) to connect with the edge of the lamp post. Then, the surface of the parallel plate (22) contacts the surface of the lamp post. When the rotating connector (7) automatically raises the lamp post, the bottom of the lamp post will gradually be inserted into the slot (236) inside the strengthened housing (234) of the vertical sensor (23). Subsequently, the key switch (237) is pressed to trigger the laser detection lamp (235) at the edge. Furthermore, the energized body (24) of the parallel plate (22) receives the electric energy of the driver (4) to make the laser detection lamp (235) and the key switch (237) operate.
2. The installation device for vertically erecting a street lamp pole with vertical detection according to claim 1, characterized in that: The lamp post connection end (2) at the upper end of the parallel base (1) is in a rectangular concave shape and forms an "L" shape with the auxiliary support structure (3) on the side. There are two groups of the driver (4), the extension rod (5), the positioning block (6), and the rotating connector (7) on the upper end of the parallel base (1), and they are symmetrically arranged on the left and right sides of the lamp post connection end (2).
3. The installation device for vertically erecting a street lamp pole with vertical detection according to claim 1, wherein: The parallel side frames (21) are rectangular in shape and cover and position the parallel plates (22). The vertical sensors (23) of the parallel plates (22) are circular in shape and match the shape of the lamp post. There is an energizing circuit connected between the energizing body (24) and the plug (25). The magnetic attraction plate (27) of the partition frame (26) positions the rubber clamping frame (28).
4. An installation device for vertically erecting a street lamp pole with vertical detection according to claim 1, characterized in that: The locking head (231) is a bolt product and coincides with the center of the support column (232). The size of the energizing groove (233) of the support column (232) matches the size of the energizing body (24). The reinforcement housing (234) is made of carbon steel, is circular in shape, and has multiple groups of laser detection lights (235) carried on the surface edge and arranged in a circular orientation to vertically detect the lamp post through the slot (236).
5. The installation device for vertically erecting a street lamp pole with vertical detection according to claim 1, characterized in that: The auxiliary support structure (3) further has an insertion block (31). The upper end of the insertion block (31) is connected to a metal plate (32), and the metal plate (32) is located at the lower end of the solid block (33). An activity groove (34) is opened at the center of the upper end of the solid block (33) to position the center block (35). A pulley set (36) is also provided at the center of the top of the center block (35) to control the activity of the support rod (37). A restraint block (38) is also fixed at the top of the support rod (37); The insertion block (31) is perpendicular to the metal plate (32), and the metal plate (32) covers the lower layer of the solid block (33). The activity groove (34) of the solid block (33) is in a concave shape to allow the pulley set (36) of the center block (35) to drive the support rod (37) for orientation adjustment.
6. An installation device for vertically erecting a street lamp pole with vertical detection according to claim 5, characterized in that: The pulley set (36) further has a restraint disk (361). A chute (362) is opened at the center of the restraint disk (361) to position the wheel body (363). A locking groove (364) is opened in the edge area of the wheel body (363) and is connected to the internal vertical connection groove (365); The restraint disk (361) is in a circular ring shape, and the inner wall of the internal chute (362) is in a finely polished shape and contacts the wheel body (363). The wheel body (363) is in a spherical shape, and a circular vertical connection groove (365) is also opened at the top, and its shape and size match those of the support rod (37).
7. An installation device for vertically erecting a street lamp pole with vertical detection according to claim 1, characterized in that: The rotary connector (7) has a connection groove (71). A limit ring (72) is provided at the edge of the connection groove (71) and is arranged in the central area of the main turntable (73). A sub-turntable (74) is also provided in the central area of the main turntable (73). A connection block (75) is also fixed in the central area of the sub-turntable (74); The connection groove (71) is circular in shape and is arranged at the center of the main turntable (73) through the limit ring (72). There is a safe activity spacing between the main turntable (73) and the sub-turntable (74). The sub-turntable (74) and the connection block (75) are in a circular convex solid shape.
8. An installation device for vertically erecting a street lamp pole with vertical detection according to claim 7, characterized in that: A main runner (731) is further arranged between the main turntable (73) and the auxiliary turntable (74). A balance rod (732) is connected to the lower end of the main runner (731). The auxiliary runner (733) is positioned through the balance rod (732). The main runner (731) and the auxiliary runner (733) are respectively connected to the centers of the main turntable (73) and the auxiliary turntable (74), and their centers coincide with each other; The diameter of the main runner (731) is larger than that of the auxiliary runner (733). The two are connected through a balance rod (733), and an electric self-locking device is further arranged at the connection area with the balance rod (733).