Wiring construction device for power equipment installation

By designing a wire construction device for power equipment installation including a trolley, mounting frame, guide conveyor mechanism, flattening mechanism and scraping mechanism, the problem of labor and unevenness of manual cable laying is solved, and the effect of automated cable laying and flattering is achieved.

CN120033585AInactive Publication Date: 2025-05-23SHANXI CONSTR ENG CO LTD
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Patent Information

Application Number
CN202510515790.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-05-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the installation of power equipment, manual traction cable laying is laborious and the cable laying groove is not flat enough, resulting in uneven cable laying.

Method used

Design a wire construction device for installation of power equipment, including a trolley, a mounting frame, a cable roll support mechanism, a guide conveyor mechanism, a flattening mechanism, an auxiliary mobile mechanism, a scraping mechanism and a mobile power supply. The device automatically lays the cable into the cable buried trough and ensures the flatness of the cable laying through the flattening and scraping mechanism.

Benefits of technology

Automatic cable laying is realized, saving manpower, and ensuring that cable laying is smoother through flattening and scraping mechanisms is solved, solving the problems of manual laying labor and uneven laying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of cable erection, and discloses a stringing construction device for electrical equipment installation, which comprises a trolley, an installation frame, a cable roll supporting mechanism, a guide conveying mechanism, a flattening mechanism, an auxiliary moving mechanism, a slicking mechanism and a mobile power supply, the installation frame is welded and fixed on the trolley, and the cable roll supporting mechanism is installed on the installation frame; a guiding conveying mechanism is installed on the portion, on the front side of the installation frame, of the small trolley, a flattening mechanism is installed on the portion, on one side of the guiding conveying mechanism, of the small trolley, an auxiliary moving mechanism is installed at the bottom of the small trolley, a slicking mechanism is installed on the portion, on the rear side of the installation frame, of the small trolley, and the slicking mechanism penetrates through the small trolley. And the laying of the cable is smoother.
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Description

Technical Field

[0001] The invention relates to the technical field of cable laying, and in particular to a cable laying construction device for installing electric power equipment. Background Art

[0002] A large number of cables need to be laid when constructing various power equipment. There are two ways to lay cables, one is to lay them in the air, and the other is to lay them underground. At present, when laying cables underground, most of them are laid by manual pulling, which is very laborious. In addition, the pre-dug cable laying troughs are often not flat enough. When laying cables manually, the raised soil in the cable laying troughs cannot be cleaned in time, resulting in uneven laying of the cables. Therefore, in view of the above situation, it is urgent to develop a wire construction device for power equipment installation that can automatically lay cables, save manpower, and lay cables more smoothly, so as to overcome the shortcomings in current practical applications and meet current needs. Summary of the invention

[0003] The object of the present invention is to provide a wiring construction device for installing electric power equipment, which can automatically lay cables, save manpower, and lay cables more smoothly.

[0004] In order to achieve the above object, the present invention adopts the following technical solutions: A wire-laying construction device for installing electric power equipment comprises a trolley, a mounting frame, a cable reel support mechanism, a guide conveying mechanism, a flattening mechanism, an auxiliary moving mechanism, a flattening mechanism and a mobile power source, wherein the mounting frame is welded and fixed on the trolley, the cable reel support mechanism is installed on the mounting frame, the guide conveying mechanism is installed on the front side of the mounting frame on the trolley, the flattening mechanism is installed on one side of the guide conveying mechanism on the trolley, the auxiliary moving mechanism is installed on the bottom of the trolley, the flattening mechanism is installed on the rear side of the mounting frame on the trolley, the flattening mechanism runs through the trolley, the flattening mechanism comprises: a bearing seat, a transfer rod, an outer frame, a flattening roller and a flipping drive mechanism, the bearing seat is welded and fixed on the trolley, the transfer rod is rotatably connected to the bearing seat through a bearing, the lower end of the transfer rod is fixed to the outer frame, the flattening roller is rotatably connected in the outer frame, and a flipping drive mechanism for driving the transfer rod, the outer frame and the flattening roller to flip is installed on the trolley. When in use, first place the cable reel on the cable reel supporting mechanism, then push the trolley to the cable buried groove, then pass the cable on the cable reel through the guiding and conveying mechanism and place it in the cable buried groove, then flip the flattening mechanism downward into the cable buried groove to press the cable, and then insert the flattening mechanism into the cable buried groove, drive the trolley to move forward along the cable buried groove through the auxiliary moving mechanism, and flatten the bottom end of the inner part of the cable buried groove through the flattening mechanism, so that the laying of the cable is more stable, and at the same time, the cable reel is driven to rotate through the cable reel supporting mechanism, so that the cable on the cable reel can be output outward, and the cable is conveyed into the cable buried groove through the guiding and conveying mechanism, and the cable is pressed into the cable buried groove through the flattening mechanism, so that the cable can be installed flatly in the cable buried groove, and after the cable is laid, the cable buried groove can be buried.

[0005] Preferably: the flip driving mechanism includes: a third motor, a driving wheel, a driven wheel and a transmission belt, the third motor is fixed to the trolley by screws, a driving wheel is fixedly mounted on the output shaft of the third motor, the driving wheel is transmission-connected to the driven wheel by the transmission belt, and the driven wheel is fixedly mounted on the transfer rod.

[0006] Preferably: the cable reel support mechanism includes: a first motor, a first cylindrical gear, a second cylindrical gear, a driving shaft, an extension shaft, a cross slot and a cross block, the first motor is fixed to the mounting frame by screws, the first cylindrical gear is fixedly mounted on the output shaft of the first motor, one side of the first cylindrical gear is provided with the second cylindrical gear meshing with the first cylindrical gear, the second cylindrical gear is fixedly mounted on the driving shaft, the end of the driving shaft is rotatably connected to the mounting frame through a bearing, the cross block is fixed to the front end of the extension shaft, and the driving shaft is provided with a cross slot for inserting the cross block.

[0007] Preferably, the mounting frame is provided with a mounting groove for extending the shaft to move.

[0008] Preferably, the guide conveying mechanism comprises: a second motor, a third cylindrical gear, a support shaft, a guide roller and a fourth cylindrical gear.

[0009] Preferably: the number of the support shafts is two, the bottom of each of the support shafts is rotatably connected to the trolley via a bearing, a guide roller is fixedly mounted on each of the support shafts, a fourth cylindrical gear is fixedly mounted on the upper end of each of the support shafts, the two fourth cylindrical gears are meshed with each other, the second motor is fixedly connected to the trolley via screws, the third cylindrical gear is fixedly mounted on the output shaft of the second motor, and the third cylindrical gear is meshed with one of the fourth cylindrical gears.

[0010] Preferably, the auxiliary moving mechanism comprises: a driving shaft, a supporting roller, a fourth motor, a fifth cylindrical gear and a sixth cylindrical gear.

[0011] Preferably: the driving shaft is rotatably connected to the lower side of the trolley, the supporting rollers are fixed to both ends of the driving shaft, the fourth motor is fixed to the lower side of the trolley, the fifth cylindrical gear is fixedly mounted on the output shaft of the fourth motor, the sixth cylindrical gear meshing with the fifth cylindrical gear is provided on one side of the fifth cylindrical gear, and the sixth cylindrical gear is fixedly mounted on the driving shaft.

[0012] Preferably, the scraping mechanism comprises: an electric telescopic rod and a scraping plate, the electric telescopic rod is fixedly mounted on the trolley, the scraping plate is located at the lower side of the trolley, and the telescopic end of the electric telescopic rod is fixed to the scraping plate.

[0013] The beneficial effects of the present invention are as follows: the cable is passed between the two guide rollers, and then the cable is placed in the cable burying groove, the driving wheel and the driven wheel are driven to rotate by the third motor, the transfer rod is driven to rotate by the rotation of the driven wheel, the outer frame and the flattening roller are driven to rotate by the rotation of the transfer rod, so that the flattening roller is flipped into the cable burying groove to press the cable, and then the scraping plate is driven downward by the electric telescopic rod, so that the scraping plate moves into the cable burying groove, the fifth cylindrical gear is driven to rotate by the fourth motor, the sixth cylindrical gear is driven to rotate by the rotation of the fifth cylindrical gear, the driving shaft is driven to rotate by the rotation of the sixth cylindrical gear, the supporting roller is driven to rotate by the driving shaft, the supporting roller rolls on the ground and drives the trolley to move forward automatically, thereby saving manpower, and at the same time, the first cylindrical gear is driven to rotate by the first motor, and the first cylindrical gear is driven by the The rotation of the first cylindrical gear drives the second cylindrical gear to rotate, and the rotation of the second cylindrical gear drives the driving shaft to rotate, and the rotation of the driving shaft drives the extension shaft to rotate, and the rotation of the driving shaft and the extension shaft drives the cable reel to rotate, so that the cable on the cable reel is output outward, and the third cylindrical gear is driven to rotate by the second motor, and the fourth cylindrical gear is driven to rotate by the third cylindrical gear, and the support shaft and the guide roller are driven to rotate by the fourth cylindrical gear, and the cable is conveyed forward into the cable burying groove by the rotation of the guide roller, and when the scraping plate and the flattening roller move forward with the trolley, the bottom end of the inside of the cable burying groove is flattened by the scraping plate, and then the cable is pressed into the cable burying groove by the flattening roller, so that the laying of the cable is smoother; in summary, the present invention automatically lays the cable, saves manpower, and lays the cable smoother. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 The three-dimensional structure of the present invention is shown in FIG. Figure 1 .

[0015] Figure 2 The three-dimensional structure of the present invention is shown in FIG. Figure 2 .

[0016] Figure 3 The three-dimensional structure of the present invention is shown in FIG. Figure 3 .

[0017] Figure 4 It is a schematic diagram of the use state of the present invention.

[0018] Figure 5 For the present invention Figure 4 Internal cross-sectional view of .

[0019] Figure 6 It is a schematic diagram of the partial structure of the present invention Figure 1 .

[0020] Figure 7 For the present invention Figure 6Schematic diagram of the split state.

[0021] Figure 8 It is a schematic diagram of the partial structure of the present invention Figure 2 .

[0022] Fig. 9 It is a schematic diagram of the partial structure of the present invention Figure 3 .

[0023] Fig.10 It is a schematic diagram of the partial structure of the present invention Figure 4 .

[0024] Legend: 1. Trolley; 101. Operating handle; 2. Mounting frame; 201. Mounting slot; 3. Cable reel support mechanism; 301. First motor; 302. First cylindrical gear; 303. Second cylindrical gear; 304. Driving shaft; 305. Extension shaft; 306. Cross slot; 307. Cross block; 4. Guide conveying mechanism; 401. Second motor; 402. Third cylindrical gear; 403. Support shaft; 404. Guide roller; 405. Fourth cylindrical gear; 5. Flattening mechanism; 501. Bearing seat; 502. Transfer rod; 503, outer frame; 504, flattening roller; 505, flipping drive mechanism; 5051, third motor; 5052, driving wheel; 5053, driven wheel; 5054, transmission belt; 6, auxiliary moving mechanism; 601, driving shaft; 602, supporting roller; 603, fourth motor; 604, fifth cylindrical gear; 605, sixth cylindrical gear; 7, scraping mechanism; 701, electric telescopic rod; 702, scraping plate; 8, mobile power supply; 9, ground; 901, cable burying trough; 10, cable reel. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0026] Specific examples are given below.

[0027] See also Figure 1 to Figure 10In an embodiment of the present invention, a wiring construction device for installing power equipment includes a trolley 1, an installation frame 2, a cable roll support mechanism 3, a guide conveying mechanism 4, a flattening mechanism 5, an auxiliary moving mechanism 6, a scraping mechanism 7, a mobile power supply 8, a ground 9 and a cable roll 10. An operating handle 101 is welded and fixed on the trolley 1. A person can adjust the moving direction of the trolley 1 by operating the handle 101. The trolley 1 is directly located on the ground 9. A cable burying groove 901 is dug on the ground 9. The cable burying groove 901 is pre-dug before installing the cable. A mounting frame 2 is welded and fixed on the trolley 1, and a cable reel support mechanism 3 is installed on the mounting frame 2, and the cable is supported by the cable reel support mechanism 3. A guide conveying mechanism 4 is installed on the front side of the mounting frame 2 on the trolley 1, and a flattening mechanism 5 is installed on one side of the guide conveying mechanism 4 on the trolley 1, and the flattening mechanism 5 can be turned up and down. An auxiliary moving mechanism 6 is installed at the bottom of the trolley 1, and the trolley 1 can be automatically moved on the ground 9 by the auxiliary moving mechanism 6. A scraping mechanism 7 is installed on the rear side of the mounting frame 2 on the trolley 1, and the scraping mechanism 7 penetrates the trolley. The trolley 1, when not in use, the flattening mechanism 5 and the scraping mechanism 7 are both folded above the ground 9, so that the trolley 1 can move on the ground 9. When in use, the cable roll 10 is first placed on the cable roll support mechanism 3, and then the trolley 1 is pushed to the cable buried groove 901, and then the cable on the cable roll 10 is placed in the cable buried groove 901 through the guide conveying mechanism 4, and then the flattening mechanism 5 is turned down into the cable buried groove 901 to press the cable, and then the scraping mechanism 7 is inserted into the cable buried groove 901, and the auxiliary moving mechanism 6 drives the cable roll 10 to move. The trolley 1 moves forward along the cable buried groove 901, and the bottom of the cable buried groove 901 is scraped flat by the scraping mechanism 7, so that the laying of the cable is more stable. At the same time, the cable roll 10 is driven to rotate by the cable roll support mechanism 3, so that the cable on the cable roll 10 is output outward, and the cable is transported into the cable buried groove 901 by the guide conveying mechanism 4, and the cable is pressed into the cable buried groove 901 by the flattening mechanism 5, so that the cable is installed flatly in the cable buried groove 901. After the cable is laid, the cable buried groove 901 can be buried; The cable roll support mechanism 3 includes: a first motor 301, a first cylindrical gear 302, a second cylindrical gear 303, a driving shaft 304, an extension shaft 305, a cross slot 306 and a cross block 307. The first motor 301 is fixed to the mounting frame 2 by screws. The first cylindrical gear 302 is fixedly installed on the output shaft of the first motor 301. A second cylindrical gear 303 meshing with the first cylindrical gear 302 is provided on one side of the first cylindrical gear 302. The second cylindrical gear 303 is fixedly installed on the driving shaft 304. The end of the driving shaft 304 is rotatably connected to the mounting frame 2 through a bearing. A cross block 307 is fixed to the front end of the extension shaft 305. A cross slot 306 for inserting the cross block 307 is provided on the driving shaft 304. The mounting frame 2 is provided with a mounting groove 201 for moving the extension shaft 305. When installing the cable reel 10, first separate the extension shaft 305 from the drive shaft 304, then insert the right end of the cable reel 10 onto the drive shaft 304, and then insert the extension shaft 305 into the cable reel 10 so that the cross block 307 is inserted into the cross slot 306. Similarly, when disassembling, first unplug the extension shaft 305 and then remove the cable reel 10. When laying the cable, the first cylindrical gear 302 is driven to rotate by the first motor 301, and the second cylindrical gear 303 is driven to rotate by the first cylindrical gear 302. The drive shaft 304 is driven to rotate by the second cylindrical gear 303, and the extension shaft 305 is driven to rotate by the drive shaft 304. The cable reel 10 is driven to rotate by the rotation of the drive shaft 304 and the extension shaft 305, so that the cable on the cable reel 10 is output outward; The guide conveying mechanism 4 includes: a second motor 401, a third cylindrical gear 402, a support shaft 403, a guide roller 404 and a fourth cylindrical gear 405. There are two support shafts 403. The bottom of each support shaft 403 is rotatably connected to the trolley 1 through a bearing. A guide roller 404 is fixedly installed on each support shaft 403. A fourth cylindrical gear 405 is fixed on the upper end of each support shaft 403. The two fourth cylindrical gears 405 are meshed with each other. The second motor 401 is fixedly connected to the trolley 1 through a screw. The third cylindrical gear 402 is fixedly installed on the output shaft of the second motor 401. When in use, the cable is passed between the two guide rollers 404, and the third cylindrical gear 402 is driven to rotate by the second motor 401. The fourth cylindrical gear 405 is driven to rotate by the rotation of the third cylindrical gear 402. The support shaft 403 and the guide roller 404 are driven to rotate by the rotation of the fourth cylindrical gear 405. The cable is conveyed forward by the rotation of the guide roller 404. The flattening mechanism 5 includes: a bearing seat 501, a transfer rod 502, an outer frame 503, a flattening roller 504 and a flipping drive mechanism 505. The bearing seat 501 is welded and fixed on the trolley 1. The transfer rod 502 is rotatably connected to the bearing seat 501 through a bearing. The lower end of the transfer rod 502 is fixed to the outer frame 503. The flattening roller 504 is rotatably connected in the outer frame 503. The trolley 1 is equipped with a flipping drive mechanism 505 for driving the transfer rod 502, the outer frame 503 and the flattening roller 504 to flip. The flipping drive mechanism 505 includes: a third motor 5051, a driving wheel 5052, a driven wheel 5053 and a transmission belt 5054. The third motor 5051 is connected by screws The driving wheel 5052 is fixed to the output shaft of the third motor 5051, and the driving wheel 5052 is connected to the driven wheel 5053 through the transmission belt 5054. The driven wheel 5053 is fixed to the transfer rod 502. When in use, the driving wheel 5052 and the driven wheel 5053 are driven to rotate by the third motor 5051, and the transfer rod 502 is driven to rotate by the rotation of the driven wheel 5053, and the outer frame 503 and the flattening roller 504 are driven to rotate by the rotation of the transfer rod 502, so that the flattening roller 504 is turned over to the cable burying groove 901 to press the cable. After use, the flattening roller 504 can be turned over and transferred out of the cable burying groove 901; The auxiliary moving mechanism 6 includes: a driving shaft 601, a supporting roller 602, a fourth motor 603, a fifth cylindrical gear 604 and a sixth cylindrical gear 605. The driving shaft 601 is rotatably connected to the lower side of the trolley 1, and the supporting rollers 602 are fixed at both ends of the driving shaft 601. The fourth motor 603 is fixed to the lower side of the trolley 1. The fifth cylindrical gear 604 is fixedly installed on the output shaft of the fourth motor 603. A sixth cylindrical gear 605 is provided on one side of the fifth cylindrical gear 604 that meshes with the fifth cylindrical gear 604. The cylindrical gear 605 and the sixth cylindrical gear 605 are fixedly mounted on the driving shaft 601. When in use, the fourth motor 603 drives the fifth cylindrical gear 604 to rotate, the fifth cylindrical gear 604 drives the sixth cylindrical gear 605 to rotate, the sixth cylindrical gear 605 drives the driving shaft 601 to rotate, the driving shaft 601 drives the supporting roller 602 to rotate, the supporting roller 602 rolls on the ground 9 to drive the trolley 1 to move forward automatically, thereby saving manpower; The scraping mechanism 7 includes: an electric telescopic rod 701 and a scraping plate 702. The electric telescopic rod 701 is fixedly mounted on the trolley 1. The scraping plate 702 is located at the lower side of the trolley 1. The telescopic end of the electric telescopic rod 701 is fixed to the scraping plate 702. When in use, the scraping plate 702 is driven downward by the electric telescopic rod 701 to move the scraping plate 702 into the cable burying groove 901. When the scraping plate 702 moves forward with the trolley 1, the scraping plate 702 scrapes the bottom end of the cable burying groove 901 flat, so that the cable is laid more smoothly. A mobile power source 8 is installed on the trolley 1, and power is supplied to various electrical appliances through the mobile power source 8.

[0028] Working principle: When using the wiring construction device for installing power equipment, first push the trolley 1 to the cable burying groove 901. When installing the cable reel 10, first separate the extension shaft 305 from the drive shaft 304, then insert the right end of the cable reel 10 onto the drive shaft 304, and then insert the extension shaft 305 into the cable reel 10 so that the cross block 307 is inserted into the cross slot 306. Similarly, when disassembling, first unplug the extension shaft 305 and then remove the cable reel 10. The cable is passed between the two guide rollers 404, and then placed in the cable burying groove 901. The third motor 5051 drives the driving wheel 5052 and the driven wheel 5053 to rotate, and the driven wheel 5053 drives the transfer rod 502 to rotate, and the transfer rod 502 drives the outer frame 503 and the flattening roller 504 to rotate, so that the flattening roller 504 is turned over to the cable burying groove 901 to press the cable, and then the electric telescopic rod 701 drives the scraping plate 70 2 moves downward, so that the scraping plate 702 moves into the cable burying groove 901, and the fifth cylindrical gear 604 is driven to rotate by the fourth motor 603, and the sixth cylindrical gear 605 is driven to rotate by the fifth cylindrical gear 604, and the driving shaft 601 is driven to rotate by the sixth cylindrical gear 605, and the supporting roller 602 is driven to rotate by the driving shaft 601. The supporting roller 602 rolls on the ground 9 and drives the trolley 1 to move forward automatically, thereby saving manpower. At the same time, the first cylindrical gear 302 is driven to rotate by the first motor 301, and the second cylindrical gear 303 is driven to rotate by the first cylindrical gear 302, and the driving shaft 304 is driven to rotate by the second cylindrical gear 303, and the extension shaft 305 is driven to rotate by the driving shaft 304, and the cable reel 10 is driven to rotate by the driving shaft 304 and the extension shaft 305, so that the cable on the cable reel 10 is output outward, and the third cylindrical gear 402 is driven to rotate by the second motor 401, and the third cylindrical gear 402 is driven to rotate by the third cylindrical gear 402. The rotation drives the fourth cylindrical gear 405 to rotate, and the rotation of the fourth cylindrical gear 405 drives the support shaft 403 and the guide roller 404 to rotate, and the cable is transported forward to the cable burying groove 901 through the rotation of the guide roller 404. When the scraper plate 702 and the flattening roller 504 move forward with the trolley 1, the scraper plate 702 scrapes the bottom end of the inside of the cable burying groove 901, and then the flattening roller 504 presses the cable into the cable burying groove 901, so that the laying of the cable is smoother.

[0029] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A wiring construction device for installing electric power equipment, characterized in that: The invention comprises a trolley (1), a mounting frame (2), a cable roll support mechanism (3), a guide conveying mechanism (4), a flattening mechanism (5), an auxiliary moving mechanism (6), a flattening mechanism (7) and a mobile power source (8), wherein the mounting frame (2) is welded and fixed to the trolley (1), the cable roll support mechanism (3) is installed on the mounting frame (2), the guide conveying mechanism (4) is installed on the front side of the mounting frame (2) on the trolley (1), the flattening mechanism (5) is installed on one side of the guide conveying mechanism (4) on the trolley (1), the auxiliary moving mechanism (6) is installed on the bottom of the trolley (1), the flattening mechanism (7) is installed on the rear side of the mounting frame (2) on the trolley (1), and the auxiliary moving mechanism (6) is installed on the bottom of the trolley (1). The flattening mechanism (7) runs through the trolley (1); the flattening mechanism (5) comprises: a bearing seat (501), a transfer rod (502), an outer frame (503), a flattening roller (504) and a turnover drive mechanism (505); the bearing seat (501) is welded and fixed to the trolley (1); the transfer rod (502) is rotatably connected to the bearing seat (501) via a bearing; the lower end of the transfer rod (502) is fixed to the outer frame (503); the flattening roller (504) is rotatably connected inside the outer frame (503); and the trolley (1) is provided with a turnover drive mechanism (505) for driving the transfer rod (502), the outer frame (503) and the flattening roller (504) to flip.

2. A wiring construction device for installing electric power equipment according to claim 1, characterized in that: The flipping driving mechanism (505) comprises: a third motor (5051), a driving wheel (5052), a driven wheel (5053) and a transmission belt (5054); the third motor (5051) is fixed to the trolley (1) via screws; a driving wheel (5052) is fixedly mounted on the output shaft of the third motor (5051); the driving wheel (5052) is transmission-connected to the driven wheel (5053) via the transmission belt (5054); and the driven wheel (5053) is fixedly mounted on the transfer rod (502).

3. A wiring construction device for electric power equipment installation according to claim 1, characterized in that: The cable reel support mechanism (3) comprises: a first motor (301), a first cylindrical gear (302), a second cylindrical gear (303), a drive shaft (304), an extension shaft (305), a cross clamping groove (306) and a cross clamping block (307); the first motor (301) is fixed to the mounting frame (2) by means of screws; the first cylindrical gear (302) is fixedly mounted on the output shaft of the first motor (301); one side of the first cylindrical gear (302) is provided with the second cylindrical gear (303) meshing with the first cylindrical gear; the second cylindrical gear (303) is fixedly mounted on the drive shaft (304); the end of the drive shaft (304) is rotatably connected to the mounting frame (2) by means of a bearing; the cross clamping block (307) is fixedly mounted on the front end of the extension shaft (305); and the drive shaft (304) is provided with a cross clamping groove (306) for inserting the cross clamping block (307) therein.

4. A wiring construction device for installing electric power equipment according to claim 3, characterized in that: The mounting frame (2) is provided with a mounting groove (201) for moving the extension shaft (305).

5. The wiring construction device for installing electric power equipment according to claim 1, characterized in that: The guide conveying mechanism (4) comprises: a second motor (401), a third cylindrical gear (402), a support shaft (403), a guide roller (404) and a fourth cylindrical gear (405).

6. A wiring construction device for installing electric power equipment according to claim 5, characterized in that: There are two support shafts (403), the bottom of each support shaft (403) is rotatably connected to the trolley (1) via a bearing, a guide roller (404) is fixedly mounted on each support shaft (403), a fourth cylindrical gear (405) is fixedly mounted on the upper end of each support shaft (403), and the two fourth cylindrical gears (405) are meshed with each other, the second motor (401) is fixedly connected to the trolley (1) via a screw, the third cylindrical gear (402) is fixedly mounted on the output shaft of the second motor (401), and the third cylindrical gear (402) is meshed with one of the fourth cylindrical gears (405).

7. A wiring construction device for electric power equipment installation according to claim 1, characterized in that: The auxiliary moving mechanism (6) comprises: a driving shaft (601), a supporting roller (602), a fourth motor (603), a fifth cylindrical gear (604) and a sixth cylindrical gear (605).

8. A wiring construction device for installing electric power equipment according to claim 7, characterized in that: The driving shaft (601) is rotatably connected to the lower side of the trolley (1); the supporting rollers (602) are fixed to both ends of the driving shaft (601); the fourth motor (603) is fixed to the lower side of the trolley (1); the fifth cylindrical gear (604) is fixedly mounted on the output shaft of the fourth motor (603); the sixth cylindrical gear (605) meshing with the fifth cylindrical gear (604) is provided on one side of the fifth cylindrical gear (604); and the sixth cylindrical gear (605) is fixedly mounted on the driving shaft (601).

9. A wiring construction device for installing electric power equipment according to claim 1, characterized in that: The scraping mechanism (7) comprises: an electric telescopic rod (701) and a scraping plate (702); the electric telescopic rod (701) is fixedly mounted on the trolley (1); the scraping plate (702) is located at the lower side of the trolley (1); and the telescopic end of the electric telescopic rod (701) is fixed to the scraping plate (702).

Citation Information

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