Electric pole foundation and rotary digging construction rapid installation device thereof

CN115522798BActive Publication Date: 2026-08-11NINGXIA ZHONGLI PIPE GALLERY TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-22
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]水泥电杆开挖安装配套产品形式多样,例如卡盘为长方形、底盘为正方形,且各有很多种规格型号,尺寸大小不一致,基坑开挖不一致:并需要配置挖掘机、起重机、还需要人工夯实作业,配套设施多,且很多施工现场环境条件致使机械设备难以进入,严重影响水泥电杆安装施工工作

Benefits of technology

本发明将水泥电杆固定在输送小车上,然后通过履带行走车将水泥电杆移动至适宜的位置,通过旋挖机对水泥电杆的定位点进行转孔,转孔完成后通过机械臂将预制套筒置于孔洞内,然后再通过机械臂将水泥电杆对准置于预制套筒内,最后再进行回土并通过机器进行夯实,即可实现对水泥电杆进行安装,通过该施工安装方法,对水泥电杆的施工快速、高效,不需要在同时使用挖掘机、起重机等机械进行共同施工,能够降低管理成本。

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Abstract

This invention discloses a pole foundation and its rapid installation device using rotary drilling, relating to the field of cement pole installation technology. It includes an integrated machine body comprising a tracked vehicle. A rotary drilling rig for drilling holes in the ground is positioned at the front of the tracked vehicle, and a robotic arm is inclined upwards on the top of the tracked vehicle. This invention features a rational design. The tracked vehicle moves the cement pole to a suitable position, the rotary drilling rig drills holes at the pole's positioning points, and after drilling, the robotic arm places a prefabricated sleeve into the hole. Then, the robotic arm aligns the cement pole and places it into the prefabricated sleeve. Finally, backfilling and compaction by machine complete the installation of the cement pole. This construction method provides rapid and efficient cement pole installation, eliminating the need for simultaneous use of excavators, cranes, and other machinery, thus reducing management costs.
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Description

Technical Field

[0001] This invention relates to the field of cement pole installation, and more specifically, to a pole foundation and a rapid installation device for rotary drilling. Background Technology

[0002] Cement poles, commonly known as utility poles or concrete poles, are poles made of concrete and reinforcing steel bars or wires. The cross-sectional shapes of these poles include square, octagonal, I-shaped, ring-shaped, and other irregular shapes. The most common cross-sections are ring-shaped and square. Pole lengths typically range from 4.5 to 15 meters. Ring-shaped poles come in two types: tapered and uniform diameter. Tapered poles generally have a tip diameter of 100–230 mm and a taper of 1:75; uniform diameter poles have a diameter of 300–550 mm; both types have a wall thickness of 30–60 mm. Concrete poles include ordinary reinforced concrete poles and prestressed concrete poles.

[0003] The products used for excavating and installing cement poles come in various forms, such as rectangular chucks and square bases, and each has many specifications and models with inconsistent sizes, resulting in different excavation methods. In addition, excavators, cranes, and manual compaction are required, resulting in numerous supporting facilities. Furthermore, the environmental conditions at many construction sites make it difficult for machinery to enter, which seriously affects the installation of cement poles. Summary of the Invention

[0004] In order to overcome the shortcomings of the prior art, the technical problem to be solved by the present invention is to propose a rapid installation device and construction method for rotary drilling of utility pole foundations.

[0005] To achieve this objective, the present invention adopts the following technical solution: The present invention provides a pole foundation, including a circular base, a circular sleeve at the top of the base, and a pole inserted into the sleeve. The base and the sleeve are integrally formed by a prefabricated template and are buried in a foundation pit with a diameter of 1000mm.

[0006] A rapid installation device for rotary drilling of utility pole foundations is also provided, comprising an integrated machine body, the integrated machine body including a tracked trolley, a rotary drilling machine for drilling holes in the ground is arranged at the front of the tracked trolley, a mechanical arm is inclined upward on the top of the tracked trolley, a conveying trolley for transporting cement poles is arranged on the back of the tracked trolley, the conveying trolley is fixedly connected to the tracked trolley through a connecting component on one side, and a fixing component for binding the cement poles is arranged on the conveying trolley, and a dust suppression component is arranged on the front of the tracked trolley inside the rotary drilling machine.

[0007] In a preferred embodiment of the present invention, the connecting assembly includes an inverted U-shaped connecting rod, with a rotating plate fixedly disposed at both ends of the connecting rod. A hinge block is rotatably disposed on the outside of the rotating plate, and a square block is fixedly disposed at one end of the hinge block. The square block is fitted into a slot opened on the crossbeam, and a fixing bolt for fixing the square block is disposed at the bottom end of the crossbeam. A fixing rod is fixedly disposed in the middle of the connecting rod near the tracked vehicle side, and a baffle is disposed on the outside of the fixing rod.

[0008] In a preferred embodiment of the present invention, a fixed seat is slidably disposed on the outside of the fixed rod, the top end of the fixed seat is fixedly connected to the tracked vehicle, a connecting seat is fixedly disposed at the bottom end of the fixed seat, a plug rod is slidably inserted into the connecting seat, the top end of the plug rod is inserted into a hole opened on the fixed rod, a pull block is fixedly disposed through the connecting seat at the bottom end of the plug rod, and a clamping spring is disposed on the outside of the plug rod, the bottom end of the clamping spring is fixedly connected to the connecting seat, and the top end of the clamping spring is fixedly connected to a stop block disposed on the outside of the plug rod.

[0009] In a preferred embodiment of the present invention, the fixing component includes a fixing box and a fixing block. The fixing box and the fixing block are respectively fixedly disposed in the middle of the outer sides of the two crossbeams. A winding wheel is disposed inside the fixing box. A connecting shaft is fixedly disposed at the axis of the winding wheel. A screwing block is fixedly disposed at one end of the connecting shaft through the fixing box. A fixing screw is disposed on one side of the screwing block. One end of the fixing screw is threaded through the connecting shaft and fixedly connected to the inner wall of the fixing box.

[0010] In a preferred embodiment of the present invention, a steel strip is wound around the outside of the take-up reel, the inner wall of the steel strip is provided with anti-slip texture, and a hook is provided at the movable end of the steel strip. A hanging ring that cooperates with the hook is provided on the fixing block. An inverted U-shaped fixing frame is fixedly provided on one side of the take-up reel. An arc-shaped pressure block is provided on the inner side of the fixing frame. A push spring is fixedly provided on one side of the pressure block. One end of the push spring is fixedly connected to the fixing frame, and a sliding rod is slidably provided inside the push spring. One end of the sliding rod is fixedly connected to the pressure block, and the other end of the sliding rod slides through the fixing frame and is placed on one side of the fixing frame.

[0011] In a preferred embodiment of the present invention, the dust suppression component includes a water tank, which is fixedly connected to a tracked vehicle. A U-shaped spray pipe is provided on one side of the water tank. Spray nozzles are equidistantly arranged on the front and both sides of the spray pipe. Connecting plates are fixedly installed at both ends of one side of the spray pipe. A rotating plate is fixedly installed on the inner side of the connecting plate. A hinge block is rotatably mounted on the outer side of the rotating plate. The hinge block is fixedly connected to the water tank. A water pump is fixedly installed on the water tank. The inlet of the water pump is connected to the water tank. A telescopic hose is connected to the outlet of the water pump, and one end of the telescopic hose is connected to the spray pipe.

[0012] In a preferred embodiment of the present invention, the two rotating plates are fixedly provided with the same rotating shaft at their axis, a driven gear is fixedly provided in the middle of the rotating shaft, a driving gear is meshed with the top of the driven gear, a drive motor for driving the driving gear is provided on the water tank, soft sleeves are provided on both sides of the driven gear on the rotating shaft, a clamping screw is provided on the top of the soft sleeve, a connecting block is threaded to the external of the clamping screw, and the connecting block is fixedly connected to the water tank.

[0013] A method for rapidly installing cement poles using rotary drilling rigs, comprising the following steps: S1: Determine the location of the cement pole and drill holes using a rotary drilling rig; S2: The pre-made annular sleeve is placed into the hole rotated in step S1 by a robotic arm; S3: Then, the mechanical arm aligns the cement pole and places it into the precast sleeve; S4: Finally, backfill the soil and compact it with a machine.

[0014] The beneficial effects of this invention are as follows: This invention fixes cement poles on a conveyor trolley, then moves them to a suitable position using a tracked vehicle. A rotary drilling rig drills holes at the pole's positioning points. After drilling, a robotic arm places a precast sleeve into the hole, and then the robotic arm aligns the cement pole into the sleeve. Finally, backfilling and compaction by machine completes the installation of the cement pole. This construction method is fast and efficient, eliminating the need for simultaneous use of excavators, cranes, and other machinery, thus reducing management costs.

[0015] The drive motor of this invention can drive two rotating plates to rotate. The rotation of the rotating plates can rotate the spray pipe. By rotating the spray pipe, the spray angle of the nozzle can be adjusted. After the angle is adjusted, the tightening screw can be turned. Through the friction between the tightening screw and the soft sleeve, the position of the rotating shaft can be fixed to prevent the rotating shaft from rotating due to force.

[0016] This invention involves wrapping a steel strip around the outside of a cement pole and attaching it with a hook and a hanging ring. Twisting the screw block drives the winding wheel to rotate, tightening any excess steel strip length. Once tightened, the steel strip is fixed to the winding wheel via a fixing screw, reducing the possibility of the steel strip loosening. The elasticity of the spring pushes a pressure block against the steel strip, confining it within the winding wheel and further reducing the possibility of the steel strip winding up. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the connection structure between the tracked trolley, the rotary drilling rig, and the robotic arm of the present invention; Figure 2 This is a schematic diagram of the conveying trolley structure of the present invention; Figure 3 This is a schematic diagram of the connection component structure of the present invention; Figure 4 This is a schematic diagram of the fixed component structure of the present invention; Figure 5 This is a schematic diagram of the connection structure between the pressure block and the pushing spring of the present invention; Figure 6 This is a schematic diagram of the connection structure between the water tank and the spray pipe of the present invention; Figure 7 This is a schematic diagram of the dust suppression component structure of the present invention; Figure 8 This is a schematic diagram of the position structure of the clamping screw and the soft sleeve of the present invention; Figure 9 This is a schematic diagram of the connection structure between the pole and the sleeve of the present invention.

[0018] In the picture: 1- Tracked vehicle; 2- Rotary drilling rig; 3- Robotic arm; 4- Conveyor trolley; 401- Crossbeam; 402- Limiting plate; 403- Collar; 404- Bracket; 405- Fixed column; 406- Traveling wheel; 5- Connecting assembly; 501- Connecting rod; 502- Rotating plate one; 503- Hinge block one; 504- Square block; 505- Fixing bolt; 506- Fixing rod; 507- Fixing seat; 508- Connecting seat; 509- Insert rod; 5010- Insertion hole; 5011- Pull block; 5012- Clamping spring; 6- Fixing assembly; 601- Fixing box; 602- Fixing block; 603- Winding wheel; 604- Connecting shaft; 605- 606-Fixing block; 607-Steel strip; 608-Hook; 609-Hanging ring; 6010-Fixing frame; 6011-Pressure block; 6012-Push spring; 6013-Slide rod; 6014-Anti-slip texture; 7-Dust suppression component; 701-Water tank; 702-Spray pipe; 703-Spray head; 704-Connecting plate; 705-Turn plate II; 706-Hinge block II; 707-Water pump; 708-Telescopic hose; 709-Rotating shaft; 7010-Driven gear; 7011-Drive gear; 7012-Drive motor; 7013-Soft sleeve; 7014-Securing screw; 7015-Connecting block; 8-Base; 9-Sleeve. Detailed Implementation

[0019] The technical solution of the present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0020] like Figure 1-8 As shown, an embodiment provides a pole foundation, including a circular base 8, with a circular sleeve 9 at the top of the base 8. A pole is inserted into the sleeve 9. The base 8 and sleeve 9 are integrally formed by a prefabricated template, and the base 8 and sleeve 9 are buried in a foundation pit with a diameter of 1000mm. A rapid installation device for rotary drilling of pole foundations includes an integrated machine body, which includes a tracked vehicle 1. A rotary drilling machine 2 for drilling holes in the ground is set at the front of the tracked vehicle 1. A mechanical arm 3 is inclined upward on the top of the tracked vehicle 1. A conveying trolley 4 for conveying cement poles is set on the back of the tracked vehicle 1. The conveying trolley 4 is fixedly connected to the tracked vehicle 1 by a connecting component 5 on one side, and a fixing component 6 for binding the cement poles is set on the conveying trolley 4. A dust suppression component 7 is set on the front of the tracked vehicle 1 inside the rotary drilling machine 2.

[0021] The conveying trolley 4 includes two crossbeams 401. At the bottom of both ends of the two crossbeams 401, there are concave arc-shaped limiting plates 402. At both ends of the limiting plates 402, there are fixed collars 403. The collars 403 are fixedly sleeved on the outside of the crossbeams 401. At the bottom of the two crossbeams 401, there are fixed supports 404. The two supports 404 are fixedly connected by fixed columns 405. At the bottom of the two supports 404, there is the same fixed shaft. At both ends of the fixed shaft, there are traveling wheels 406.

[0022] The conveying trolley 4 is connected to the tracked vehicle 1. The two ends of the cement pole can be supported and placed by the limiting plates 402 on the two conveying trolleys 4. The number of conveying trolleys 4 in the middle can be set according to the actual length of the cement pole. When the tracked vehicle 1 moves, the conveying trolley 4 can drive the cement pole to move together with the tracked vehicle 1 through the provided wheels 406.

[0023] The connecting assembly 5 includes an inverted U-shaped connecting rod 501. Both ends of the connecting rod 501 are fixedly provided with a rotating plate 502. A hinge block 503 is rotatably provided on the outside of the rotating plate 502. A square block 504 is fixedly provided on one end of the hinge block 503. The square block 504 is fitted into a slot opened on the crossbeam 401. A fixing bolt 505 is provided at the bottom end of the crossbeam 401 to fix the square block 504. A fixing rod 506 is fixedly provided in the middle of the connecting rod 501 near the tracked vehicle 1. A baffle is provided on the outside of the fixing rod 506.

[0024] By rotatably connecting the hinge block 503 and the rotating plate 502, the connecting rod 501 and the conveying trolley 4 can be rotatably connected. By cooperating with the slot, the connecting rod 501 and the conveying trolley 4 can be connected. Then, by fixing the bolt 505, the position of the square block 504 can be fixed, thereby fixing the position between the connecting rod 501 and the conveying trolley 4.

[0025] A fixed seat 507 is slidably mounted on the outside of the fixed rod 506. The top of the fixed seat 507 is fixedly connected to the tracked vehicle 1. A connecting seat 508 is fixedly mounted on the bottom of the fixed seat 507. A plug rod 509 is slidably inserted into the connecting seat 508. The top of the plug rod 509 is inserted into the insertion hole 5010 opened on the fixed rod 506. The bottom of the plug rod 509 passes through the connecting seat 508 and is fixedly mounted with a pull block 5011. A retaining spring 5012 is mounted on the outside of the plug rod 509. The bottom of the retaining spring 5012 is fixedly connected to the connecting seat 508, and the top of the retaining spring 5012 is fixedly connected to a stop block provided on the outside of the plug rod 509.

[0026] When it is necessary to connect the conveyor trolley 4 with the tracked vehicle 1, the pull block 5011 can be pulled to drive the insertion rod 509 downward, and then the fixing rod 506 can be inserted into the fixing seat 507. Then, the baffle plate can be made to abut against the fixing seat 507. At this time, the pulling force on the pull block 5011 can be released. Through the elastic action of the clamping spring 5012, the insertion rod 509 can be pushed to cooperate with the insertion hole 5010 to connect, thereby realizing the connection between the conveyor trolley 4 and the tracked vehicle 1.

[0027] The fixing component 6 includes a fixing box 601 and a fixing block 602. The fixing box 601 and the fixing block 602 are respectively fixedly installed in the middle of the outer side of the two crossbeams 401. A winding wheel 603 is provided inside the fixing box 601. A connecting shaft 604 is fixedly installed at the axis of the winding wheel 603. One end of the connecting shaft 604 passes through the fixing box 601 and a screwing block 605 is fixedly installed thereon. A fixing screw 606 is provided on one side of the screwing block 605. One end of the fixing screw 606 is threaded through the connecting shaft 604 and fixedly connected to the inner wall of the fixing box 601.

[0028] The winding wheel 603 can be rotated by the provided screw block 605. When it is necessary to fix the position of the winding wheel 603 by the provided fixing screw 606, the fixing screw 606 can be turned to fix it to the fixing box 601, so that the position of the winding wheel 603 will be fixed.

[0029] A steel strip 607 is wound around the outside of the take-up reel 603. The inner wall of the steel strip 607 is provided with anti-slip texture 6014, and a hook 608 is provided at the movable end of the steel strip 607. A hanging ring 609 that cooperates with the hook 608 is provided on the fixing block 602. An inverted U-shaped fixing frame 6010 is fixedly provided on one side of the take-up reel 603. An arc-shaped pressure block 6011 is provided on the inner side of the fixing frame 6010. A push spring 6012 is fixedly provided on one side of the pressure block 6011. One end of the push spring 6012 is fixedly connected to the fixing frame 6010, and a sliding rod 6013 is slidably provided inside the push spring 6012. One end of the sliding rod 6013 is fixedly connected to the pressure block 6011, and the other end of the sliding rod 6013 slides through the fixing frame 6010 and is placed on one side of the fixing frame 6010.

[0030] The steel strip 607 is wrapped around the outside of the cement pole and the hook 608 is engaged with the hanging ring 609 for hanging. Then, the turning block 605 can be turned to drive the winding wheel 603 to rotate, which can tighten the excess length of the steel strip 607. After the steel strip 607 is tightened, it can be fixed to the fixing box 601 by the fixing screw 606 to fix the position of the winding wheel 603, which can reduce the possibility of the steel strip 607 loosening. The anti-slip texture 6014 can improve the binding effect of the steel strip 607 on the cement pole. By pushing the elastic action of the spring 6012, the pressure block 6011 can be pushed to abut against the steel strip 607, which can limit the steel strip 607 within the winding wheel 603, thereby reducing the possibility of the steel strip 607 winding.

[0031] The dust suppression component 7 includes a water tank 701, which is fixedly connected to the tracked vehicle 1. A spray pipe 702 in an inverted U-shape is provided on one side of the water tank 701. Spray nozzles 703 are provided at equal intervals on the front and both sides of the spray pipe 702. A connecting plate 704 is fixedly provided at both ends of one side of the spray pipe 702. A rotating plate 705 is fixedly provided on the inner side of the connecting plate 704. A hinge block 706 is rotatably provided on the outer side of the rotating plate 705. The hinge block 706 is fixedly connected to the water tank 701. A water pump 707 is fixedly provided on the water tank 701. The inlet of the water pump 707 is connected to the water tank 701. A telescopic hose 708 is connected to the outlet of the water pump 707. One end of the telescopic hose 708 is connected to the spray pipe 702.

[0032] By using the inverted U-shaped spray pipe 702 in conjunction with the nozzle 703, three-sided water spraying can be achieved, which can more comprehensively reduce dust around the rotary drilling rig 2. By using the rotating plate 705 in conjunction with the hinge block 706, the angle of the spray pipe 702 can be adjusted, and the spraying angle of the nozzle 703 can be adjusted according to actual needs.

[0033] Two rotating plates 705 are fixedly mounted on the same rotating shaft 709 at their axis. A driven gear 7010 is fixedly mounted in the middle of the rotating shaft 709. A driving gear 7011 is meshed with the top of the driven gear 7010. A drive motor 7012 is mounted on the water tank 701 to drive the driving gear 7011. Soft sleeves 7013 are fitted on both sides of the driven gear 7010 on the rotating shaft 709. A clamping screw 7014 is mounted on the top of the soft sleeve 7013. A connecting block 7015 is threaded onto the external part of the clamping screw 7014. The connecting block 7015 is fixedly connected to the water tank 701.

[0034] The drive motor 7012 drives the drive gear 7011 to rotate, which in turn drives the driven gear 7010 to rotate. The driven gear 7010 then drives the rotating shaft 709 to rotate, which in turn drives the two rotating plates 705 to rotate. The rotation of the rotating plates 705 rotates the spray pipe 702, which in turn adjusts the spray angle of the nozzle 703. After the angle is adjusted, the clamping screw 7014 can be tightened. The friction between the clamping screw 7014 and the soft sleeve 7013 fixes the position of the rotating shaft 709, preventing it from rotating under stress.

[0035] A method for rapidly installing cement poles using rotary drilling rigs, comprising the following steps: S1: Determine the location of the cement pole and drill a hole using rotary drilling rig 2; S2: The pre-made sleeve in a ring shape is placed into the hole rotated in step S1 by the robotic arm 3; S3: Then, the mechanical arm 3 aligns the cement pole and places it into the precast sleeve; S4: Finally, backfill the soil and compact it with a machine.

[0036] Before installing the cement poles, the cement poles are first fixed on the conveying trolley 4. Then, the tracked vehicle 1 moves the cement poles to a suitable position. The rotary drilling machine 2 drills holes at the positioning points of the cement poles. After the holes are drilled, the robotic arm 3 places the precast sleeve into the hole. Then, the robotic arm 3 aligns the cement poles and places them into the precast sleeves. Finally, the soil is backfilled and compacted by machine, thus completing the installation of the cement poles. This construction and installation method is fast and efficient for cement pole construction, and it does not require the simultaneous use of excavators, cranes, and other machinery, which can reduce management costs.

[0037] Other techniques in this embodiment are based on existing technologies.

[0038] This invention has been described through preferred embodiments. Those skilled in the art will understand that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of the invention. This invention is not limited to the specific embodiments disclosed herein; other embodiments falling within the scope of the claims are also within the protection scope of this invention.

Claims

1. A quick installation device for rotary excavating construction of a pole foundation, comprising an all-in-one main body, characterized in that: The main body of the integrated machine includes a tracked vehicle (1), a rotary drilling machine (2) for drilling the ground is set in front of the tracked vehicle (1), a mechanical arm (3) is set on the top of the tracked vehicle (1) at an angle upward, a conveying trolley (4) for conveying cement poles is set on the back side of the tracked vehicle (1), the conveying trolley (4) is fixedly connected to the tracked vehicle (1) through a connecting component (5) on one side, and a fixing component (6) for binding cement poles is set on the conveying trolley (4). A dust suppression component (7) is set on the front of the tracked vehicle (1) inside the rotary drilling machine (2). The conveying trolley (4) includes two crossbeams (401). At the bottom of both ends of the two crossbeams (401), there are concave limiting plates (402). At both ends of the limiting plates (402), there are fixed collars (403). The collars (403) are fixedly sleeved on the outside of the crossbeams (401). At the bottom of the two crossbeams (401), there are fixed supports (404). The two supports (404) are fixedly connected by fixed columns (405). At the bottom of the two supports (404), there is a fixed shaft. At both ends of the fixed shaft, there are traveling wheels (406). The connecting assembly (5) includes an inverted U-shaped connecting rod (501). Both ends of the connecting rod (501) are fixedly provided with a rotating plate (502). A hinge block (503) is rotatably provided on the outside of the rotating plate (502). A square block (504) is fixedly provided on one end of the hinge block (503). The square block (504) is fitted into a slot on the crossbeam (401). A fixing bolt (505) for fixing the square block (504) is provided at the bottom of the crossbeam (401). A fixing rod (506) is fixedly provided in the middle of the connecting rod (501) on the side close to the tracked vehicle (1). A baffle is provided on the outside of the fixing rod (506). A fixed seat (507) is slidably provided on the outside of the fixed rod (506). The top of the fixed seat (507) is fixedly connected to the tracked vehicle (1). A connecting seat (508) is fixedly provided at the bottom of the fixed seat (507). A plug rod (509) is slidably inserted into the connecting seat (508). The top of the plug rod (509) is inserted into the insertion hole (5010) opened on the fixed rod (506). A pull block (5011) is fixedly provided through the connecting seat (508) at the bottom of the plug rod (509). A clamping spring (5012) is provided on the outside of the plug rod (509). The bottom of the clamping spring (5012) is fixedly connected to the connecting seat (508). The top of the clamping spring (5012) is fixedly connected to a stop block provided on the outside of the plug rod (509).

2. The quick installation device for rotary digging construction of an electric pole foundation according to claim 1, characterized in that: The fixing component (6) includes a fixing box (601) and a fixing block (602). The fixing box (601) and the fixing block (602) are respectively fixedly installed in the middle of the outer side of the two crossbeams (401). A winding wheel (603) is provided inside the fixing box (601). A connecting shaft (604) is fixedly installed at the axis of the winding wheel (603). One end of the connecting shaft (604) passes through the fixing box (601) and a screwing block (605) is fixedly installed. A fixing screw (606) is provided on one side of the screwing block (605). One end of the fixing screw (606) is threaded through the connecting shaft (604) and fixedly connected to the inner wall of the fixing box (601).

3. The quick installation device for rotary digging construction of an electric pole foundation according to claim 2, characterized in that: The take-up reel (603) is wound with a steel strip (607) on its outside. The inner wall of the steel strip (607) is provided with anti-slip texture (6014), and the movable end of the steel strip (607) is provided with a hook (608). The fixing block (602) is provided with a hanging ring (609) that cooperates with the hook (608). A U-shaped fixing frame (6010) is fixedly provided on one side of the take-up reel (603), and an arc-shaped pressure block is provided on the inner side of the fixing frame (6010). 6011), a push spring (6012) is fixedly provided on one side of the pressure block (6011). One end of the push spring (6012) is fixedly connected to the fixed frame (6010), and a slide rod (6013) is slidably provided inside the push spring (6012). One end of the slide rod (6013) is fixedly connected to the pressure block (6011), and the other end of the slide rod (6013) slides through the fixed frame (6010) and is placed on one side of the fixed frame (6010).

4. The quick installation device for rotary digging construction of an electric pole foundation according to claim 1, characterized in that: The dust suppression component (7) includes a water tank (701), which is fixedly connected to the tracked vehicle (1). A spray pipe (702) in the shape of an inverted U is provided on one side of the water tank (701). Spray nozzles (703) are provided at equal intervals on the front and both sides of the spray pipe (702). A connecting plate (704) is fixedly provided at both ends of one side of the spray pipe (702). A rotating plate (705) is fixedly provided on the inner side of the connecting plate (704). The rotating plate 2 (705) is externally fitted with a hinge block 2 (706), which is fixedly connected to the water tank (701). A water pump (707) is fixedly installed on the water tank (701). The inlet of the water pump (707) is connected to the water tank (701), and a telescopic hose (708) is connected to the outlet of the water pump (707). One end of the telescopic hose (708) is connected to the spray pipe (702).

5. The quick installation device for rotary digging construction of an electric pole foundation according to claim 4, characterized in that: The two rotating plates (705) are fixedly provided with the same rotating shaft (709) at their axis. A driven gear (7010) is fixedly provided in the middle of the rotating shaft (709). A driving gear (7011) is meshed with the top of the driven gear (7010). A drive motor (7012) for driving the driving gear (7011) is provided on the water tank (701). Soft sleeves (7013) are provided on both sides of the driven gear (7010) on the rotating shaft (709). A clamping screw (7014) is provided on the top of the soft sleeve (7013). A connecting block (7015) is connected to the external thread of the clamping screw (7014). The connecting block (7015) is fixedly connected to the water tank (701).

Citation Information

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