Movable lighting and flood drainage integrated working platform for power station
By using transmission and drive components, the lighting unit can be automatically adjusted in angle and flipped and folded for storage, solving the problems of inconvenient operation and large space occupation of existing equipment, and improving the ease of use and transportation efficiency of the equipment.
Patent Information
- Application Number
- CN202422646509.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-10-31
AI Technical Summary
Existing integrated lighting and drainage equipment requires manual movement of the equipment when adjusting the lighting direction, which is inconvenient to operate, and the equipment occupies a large amount of transportation space when not in use.
Using transmission and drive components, and through annular grooves, arc-shaped slides, connecting seats, adjusting shafts, bevel gears, bevel gear rings, brake motors, and flipping components, the lighting parts can be automatically adjusted in angle and flipped for storage.
No need to manually adjust the lighting position; the lighting angle is automatically adjusted, reducing the space occupied during transportation.
Smart Images

Figure CN223564141U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to city road emergency drainage technical field, concretely is a movable power station lighting drainage integrated work platform. BACKGROUND
[0002] At present, natural disasters occur frequently, especially in recent years, urban waterlogging caused by heavy rain, causing road traffic paralysis, power supply, water supply interruption, low-lying buildings, underground buildings, etc. If water cannot be drained in time, it will cause a lot of property and equipment loss, so the lighting drainage integrated equipment is usually used for urban road waterlogging emergency treatment, part of the lighting drainage integrated equipment, when moving, the bottom shell is equipped with a generator and a drainage pump inside the moving bottom shell, and the lighting equipment is installed on the top of the moving bottom shell through the vertical support. When the waterlogging of the city road is drained, the water in the waterlogging part is led out to other places through the drainage pump combined with the external pipeline, and the lighting equipment provides a bright environment for the staff to drain the waterlogging of the city road. However, the lighting part of the device is fixed with the moving bottom shell through the vertical support, and if the lighting direction of the equipment is changed during the drainage process, the staff needs to manually move the equipment itself to adjust the lighting direction of the equipment. This operation needs to move the whole equipment, which is inconvenient and needs to be improved. UTILITY MODEL CONTENT
[0003] The utility model solves the technical problem of overcoming the defects of the prior art and provides a movable power station lighting drainage integrated work platform. The device can automatically adjust the irradiation angle of the lighting part according to the waterlogging environment of the city road through the transmission element and the driving element, without the need for the staff to move the device. At the same time, the lighting part of the device can be folded and stored when not in use, reducing the storage space occupied during transportation, and effectively solving the problems in the background art.
[0004] To achieve the above purpose, the utility model provides the following technical scheme: a movable power station lighting drainage integrated work platform, comprising a moving shell and a lighting adjusting mechanism.
[0005] The moving shell is provided with two lifting seats on the upper side, and the lifting seats are provided with lighting lamps inside.
[0006] The lighting adjusting mechanism comprises annular grooves, arc-shaped sliding seats, connecting seats one, adjusting shafts, bevel gears and bevel gear rings, the annular grooves are respectively formed in the inner walls of the lifting seats, the inner parts of the annular grooves are slidably connected with the arc-shaped sliding seats, the inner arcs of the arc-shaped sliding seats are provided with the connecting seats one, the inner parts of the connecting seats one are rotatably connected with the adjusting shafts through bearings one, the middle parts of the adjusting shafts are provided with the bevel gears, the inner parts of the lifting seats are provided with the bevel gear rings, and the bevel gears are meshedly connected with the adjacent bevel gear rings, the device can automatically adjust the irradiation angle of the lighting part according to the urban road waterlogging environment through the transmission element and the driving element, the staff need not move the device, and the lighting part of the device can be folded and stored when not in use, so that the occupied space in the transportation process is reduced.
[0007] Further, the bottom wall of the mobile shell is provided with a generator and a water pump, the front side of the mobile shell is provided with a single-chip microcomputer, the input end of the single-chip microcomputer is electrically connected with the output end of the generator, and the output end of the single-chip microcomputer is electrically connected with the input end of the water pump and the illuminating lamp respectively, so that the control of the electrical elements is facilitated, and the water pump is provided for the urban road waterlogging process.
[0008] Further, it further comprises two fixed seats one, the two fixed seats one are arranged on the upper side of the mobile shell, the inner part of the fixed seat one is rotatably connected with a hollow rod through a rotating shaft one, the inner part of the hollow rod is slidably connected with a solid rod, the upper end of the solid rod is fixedly connected with the lower side of the adjacent lifting seat, the bottom wall of the lifting seat is rotatably connected with a rotating shaft through a bearing two, the upper end of the rotating shaft is provided with a connecting seat two, the inner part of the connecting seat two is rotatably connected with a turnover rod through a rotating shaft two, and the upper end of the turnover rod is fixedly connected with the bottom of the adjacent illuminating lamp, so that the lighting part of the device is supported and arranged.
[0009] Further, the lighting adjusting mechanism further comprises a brake motor, the brake motor is arranged on the left side of the connecting seat one, the input end of the brake motor is electrically connected with the output end of the single-chip microcomputer, and the output shaft of the brake motor is electrically connected with the left end of the adjusting shaft, so as to provide power for the automatic horizontal illumination angle adjustment of the lighting part of the device.
[0010] Further, the lighting adjusting mechanism further comprises a turnover assembly, the turnover assembly comprises a fixed seat two, a sleeve one and an electro-hydraulic push rod one, the fixed seat two is arranged on the outer side of the turnover rod and the inner arc of the arc-shaped sliding seat, the inner part of the fixed seat two is rotatably connected with the sleeve one through a rotating shaft three, one electro-hydraulic push rod one is arranged between two vertically adjacent sleeve ones, and the input end of the electro-hydraulic push rod one is electrically connected with the output end of the single-chip microcomputer, so as to automatically adjust the vertical illumination angle of the lighting part of the device according to the urban road waterlogging environment.
[0011] Further, the outer sides of the hollow rods and the solid rods are respectively provided with fixing bases three, the interiors of the fixing bases three are respectively connected with sleeves two through rotating shafts four, one electro-hydraulic push rod two is arranged between every two vertically adjacent sleeves two, the upper side of the moving shell is provided with two fixing bases four, the interiors of the fixing bases four are respectively connected with sleeves three through rotating shafts five, one electro-hydraulic push rod three is arranged between every two vertically adjacent sleeves three, the input ends of the electro-hydraulic push rod three and the electro-hydraulic push rod two are electrically connected with the output end of the single-chip microcomputer, and the lighting part of the device can be folded and stored by turning over.
[0012] Further, the right side of the moving shell is provided with a traction hook, so that the movable power station lighting and drainage integrated working platform can be hung and moved.
[0013] Compared with the prior art, the movable power station lighting and drainage integrated working platform has the following advantages.
[0014] 1. When the movable power station lighting and drainage integrated working platform is used for drainage operation of urban road waterlogging, the illumination angle of the lighting part can be automatically adjusted according to the urban road waterlogging environment through the annular groove, the arc-shaped sliding seat, the connecting seat one, the adjusting shaft, the bevel gear, the bevel gear ring, the brake motor and the turning-over assembly, so that the staff does not need to manually move the device to adjust the illumination angle.
[0015] 2. When the movable power station lighting and drainage integrated working platform is not used, the lighting part of the device can be folded and stored by turning over through the fixing base three, the sleeve two, the electro-hydraulic push rod two, the fixing base four, the sleeve three and the electro-hydraulic push rod three, so that the space occupied by the device during transportation is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a structural schematic view of the utility model;
[0017] Figure 2 It is an internal structural schematic view of the utility model;
[0018] Figure 3 It is a sectional view of the lifting seat of the utility model;
[0019] Figure 4 It is an enlarged structural schematic view of A of the utility model.
[0020] In the figure: 1 mobile shell, 2 single-chip microcomputer, 3 generator, 4 water pump, 5 fixed seat one, 6 hollow rod, 7 solid rod, 8 lifting seat, 9 lighting adjustment mechanism, 91 annular groove, 92 arc-shaped sliding seat, 93 connecting seat one, 94 adjustment shaft, 95 bevel gear, 96 bevel gear ring, 97 brake motor, 98 overturning assembly, 981 fixed seat two, 982 sleeve one, 983 electro-hydraulic push rod one, 10 rotating shaft, 11 connecting seat two, 12 overturning rod, 13 light, 14 fixed seat three, 15 sleeve two, 16 electro-hydraulic push rod two, 17 fixed seat four, 18 sleeve three, 19 electro-hydraulic push rod three, 20 traction hook. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0022] Please refer to Figures 1-4 The embodiment provides a technical solution: a movable power station lighting and drainage integrated working platform, comprising a mobile shell 1 and a lighting adjustment mechanism 9.
[0023] The mobile shell 1: its upper side is provided with two lifting seats 8, the inside of the lifting seat 8 is provided with a lighting lamp 13, the bottom wall of the mobile shell 1 is respectively provided with a generator 3 and a water pump 4, the front side of the mobile shell 1 is provided with a single-chip microcomputer 2, the input end of the single-chip microcomputer 2 is electrically connected with the output end of the generator 3, the output end of the single-chip microcomputer 2 is respectively electrically connected with the input end of the water pump 4 and the lighting lamp 13, further comprising a fixed seat one 5, the fixed seat one 5 is two, the two fixed seat one 5 is arranged on the upper side of the mobile shell 1, the inside of the fixed seat one 5 is rotatably connected with a hollow rod 6 through a rotating shaft one, the inside of the hollow rod 6 is slidably connected with a solid rod 7, the upper end of the solid rod 7 is fixedly connected with the lower side of the adjacent lifting seat 8, the bottom wall of the lifting seat 8 is rotatably connected with a rotating shaft 10 through a bearing two, the upper end of the rotating shaft 10 is provided with a connecting seat two 11, the inside of the connecting seat two 11 is rotatably connected with a turnover rod 12 through a rotating shaft two, the upper end of the turnover rod 12 is fixedly connected with the bottom of the adjacent lighting lamp 13, the outside of the hollow rod 6 and the solid rod 7 is provided with a fixed seat three 14, the inside of the fixed seat three 14 is rotatably connected with a sleeve two 15 through a rotating shaft four, a electro-hydraulic push rod two 16 is arranged between the vertically adjacent two sleeve two 15, the upper side of the mobile shell 1 is provided with two fixed seat four 17, the inside of the fixed seat four 17 is rotatably connected with a sleeve three 18 through a rotating shaft five, a electro-hydraulic push rod three 19 is arranged between the vertically adjacent two sleeve three 18, the input end of the electro-hydraulic push rod three 19 and the electro-hydraulic push rod two 16 is electrically connected with the output end of the single-chip microcomputer 2, the right side of the mobile shell 1 is provided with a traction hook 20, when the lighting and drainage integrated working platform is moved, the hook of the external traction device is hung with the traction hook 20, then the mobile shell 1 is moved to the position needing drainage in the city by the external traction device, when the city waterlogging position is drained, first, the external water pumping pipeline and the drainage pipeline are connected with the water pumping port and the drainage port of the water pump 4 respectively, the water pump 4 is started by the single-chip microcomputer 2, so that the water of the city waterlogging position is pumped out through the external drainage pipeline, so as to achieve the effect of drainage, the generator 3 operates to provide power support for the single-chip microcomputer 2, when the city waterlogging position is illuminated during the drainage process, the lighting lamp 13 is started by the single-chip microcomputer 2 to realize the illumination light supply, when the city road lighting and drainage is completed, the retractable end of the electro-hydraulic push rod two 16 and the retractable end of the electro-hydraulic push rod three 19 are retracted by the single-chip microcomputer 2, the retractable end of the electro-hydraulic push rod two 16 indirectly drives the lighting part of the device to move vertically downward through the solid rod 7, the retractable end of the electro-hydraulic push rod three 19 indirectly drives the hollow rod 6 to reverse around the axis of the rotating shaft one, so that the lighting part of the device is turned to the upper left end of the mobile shell 1, during the process, the sleeve three 18 is adaptively rotated around the axis of the corresponding rotating shaft five, the lighting part of the device is turned and stored, so as to reduce the space occupied by the device during the movement and transportation process, the lighting part of the device can be turned and folded for storage when not in use, so as to reduce the space occupied during the transportation process.
[0024] The lighting adjusting mechanism 9 comprises annular grooves 91, arc-shaped sliding seats 92, connecting seats one 93, adjusting shafts 94, bevel gears 95 and bevel gear rings 96, the annular grooves 91 are formed in the inner walls of the lifting seats 8 respectively, the inner parts of the annular grooves 91 are slidably connected with the arc-shaped sliding seats 92, the inner arcs of the arc-shaped sliding seats 92 are all provided with the connecting seats one 93, the inner parts of the connecting seats one 93 are all rotatably connected with the adjusting shafts 94 through bearings one, the middle parts of the adjusting shafts 94 are all provided with the bevel gears 95, the inner parts of the lifting seats 8 are all provided with the bevel gear rings 96, the bevel gears 95 are all meshedly connected with the adjacent bevel gear rings 96, the lighting adjusting mechanism 9 further comprises a brake motor 97, the brake motor 97 is arranged at the left side of the connecting seat one 93, the input end of the brake motor 97 is electrically connected with the output end of the singlechip 2, the output shaft of the brake motor 97 is electrically connected with the left end of the adjusting shaft 94, the lighting adjusting mechanism 9 further comprises a turnover assembly 98, the turnover assembly 98 comprises fixed seats two 981, sleeve one 982 and electro-hydraulic push rods one 983, the fixed seats two 981 are arranged at the outer sides of the turnover rods 12 and the inner arcs of the arc-shaped sliding seats 92 respectively, the inner parts of the fixed seats two 981 are all rotatably connected with the sleeve one 982 through rotating shafts three, one electro-hydraulic push rod one 983 is arranged between every two vertically adjacent sleeve one 982, the input end of the electro-hydraulic push rod one 983 is electrically connected with the output end of the singlechip 2, the singlechip 2 drives the electro-hydraulic push rod two 16 to make the indirect driving of the corresponding sleeve two 15 vertical movement, the sleeve two 15 drives the corresponding solid rod 7 to vertically slide along the hollow rod 6, so that the drainage lighting height of the device is adjusted according to the urban road drainage demand, the singlechip 2 drives the brake motor 97 to make the output shaft of the brake motor 97 drive the adjusting shaft 94 to rotate, the adjusting shaft 94 drives the bevel gear 95 to rotate, the bevel gear 95 drives the bevel gear ring 96 to rotate through the meshing connection between them, so that the arc-shaped sliding seat 92 slides along the annular groove 91, the indirect driving of the lighting lamp 13 by the arc-shaped sliding seat 92 makes the horizontal rotation of the lighting lamp 13 around the axis of the rotating shaft 10, so that the horizontal rotation adjustment of the drainage lighting angle of the device is realized according to the urban road drainage demand, after the brake motor 97 is electrified, the armature in the brake motor 97 is electromagnetically attracted, so that the brake disc is in a rotatable state, and the brake motor 97 is free to rotate, when the brake motor 97 is de-energized, the electromagnet is de-energized, the armature is immediately pushed against the spring, so that the brake disc and the rear end cover of the motor are pressed together, and the rotation is stopped, the output shaft of the brake motor 97 has a self-locking function, the arc-shaped sliding seat 92 is controlled by the singlechip 2 to make the forward and reverse rotation of the arc-shaped sliding seat 92 around the axis of the rotating shaft 10 not more than 360 degrees, so that the winding phenomenon is avoided, the singlechip 2 drives the electro-hydraulic push rod one 983 to make the movement of the extension end of the electro-hydraulic push rod one 983, so that the turnover rod 12 drives the lighting lamp 13 to rotate around the axis of the rotating shaft two, the sleeve one 982 is self-adaptively rotated around the axis of the corresponding rotating shaft three, so that the vertical rotation adjustment of the drainage lighting angle of the device is realized according to the urban road drainage demand, the lighting coverage angle and range of the device in the urban road drainage process are effectively improved, and the device is convenient to use, the transmission elements and the driving elements of the device are used toThe illumination angle of the lighting part can be automatically adjusted according to the urban road waterlogging environment, without the need for staff to move the device.
[0025] The utility model provides a kind of movable power station lighting drainage integrated work platform working principle as follows: when moving lighting drainage integrated work platform, the hook of external traction device is hung by traction hook 20, then moves to the part needing drainage in city by external traction device driving mobile shell 1, when carrying out drainage operation to the waterlogged part in city, first, the external water pumping pipeline and drainage pipeline are connected with the water pumping port and drainage port of water pump 4 respectively, water pump 4 is started by single-chip microcomputer 2, so as to extract the water body of the waterlogged part in city, and drainage is drained through external drainage pipeline by drainage port, so as to achieve drainage effect, generator 3 operates to provide power support for single-chip microcomputer 2, when carrying out lighting operation in the process of drainage to the waterlogged part in city, single-chip microcomputer 2 starts lighting lamp 13 to realize lighting light supply, single-chip microcomputer 2 starts electro-hydraulic push rod two 16 to indirectly drive corresponding sleeve two 15 vertical movement, sleeve two 15 drives corresponding solid rod 7 vertical sliding along hollow rod 6, so as to adjust the drainage lighting height of device according to the drainage demand of city road, single-chip microcomputer 2 starts brake motor 97 to make its output shaft drive adjusting shaft 94 rotation, adjusting shaft 94 drives bevel gear 95 rotation, bevel gear 95 is connected by meshing between bevel gear ring 96, so that arc slide 92 slides along annular groove 91, lighting lamp 13 is indirectly driven around the horizontal rotation of rotating shaft 10 by arc slide 92, so as to adjust the drainage lighting angle of device horizontally rotation according to the drainage demand of city road, after brake motor 97 is electrified, the armature in brake motor 97 is attracted by electromagnet, so that brake disc is in rotatable state, and brake motor 97 is free to rotate, when brake motor 97 is de-energized, electromagnet is de-energized, and the armature is immediately pushed against spring, so that brake disc and motor rear end cover are pressed together, stop rotating, the output shaft of brake motor 97 has self-locking function, the positive and negative rotation of arc slide 92 around the axis of rotating shaft 10 is not more than 360 degrees by single-chip microcomputer 2 control brake motor 97, so as to avoid winding phenomenon, single-chip microcomputer 2 starts electro-hydraulic push rod one 983 to make its telescopic end move, so that turnover rod 12 drives lighting lamp 13 to rotate around the axis of rotating shaft two, sleeve one 982 is adaptively rotated around the axis of corresponding rotating shaft three, so as to adjust the drainage lighting angle of device vertically rotation according to the drainage demand of city road, effectively improve the lighting coverage angle and range of device in the process of city road drainage, convenient to use, when city road lighting drainage is completed, the telescopic end of electro-hydraulic push rod two 16 and the telescopic end of electro-hydraulic push rod three 19 are all retracted by single-chip microcomputer 2 control, the telescopic end of electro-hydraulic push rod two 16 indirectly drives the lighting part of device vertical downward, the telescopic end of electro-hydraulic push rod three 19 indirectly drives hollow rod 6 to reverse around the axis of rotating shaft one, so that the lighting part of device is turned to the upper left end of mobile shell 1, in this process, sleeve three 18 is adaptively rotated around the axis of corresponding rotating shaft five, the lighting part of device is handled by turning over and storing,Thus, the space occupied by the device during self-moving transportation is reduced.
[0026] It is worth noting that the single-chip microcomputer 2 in the above embodiment can be COP8CBE9, the generator 3 can be DMD12000LE / 3, the water pump 4 can be 50ZW20-12, the brake motor 97 can be HDWZ1-50, the electro-hydraulic push rod 1 983 can be DYZW integral straight micro electro-hydraulic push rod, the illuminating lamp 13 can be LED floodlight, the electro-hydraulic push rod 2 16 and the electro-hydraulic push rod 3 19 can both be DYTZ-1000, and the single-chip microcomputer 2 controls the water pump 4, the brake motor 97, the electro-hydraulic push rod 1 983, the illuminating lamp 13, the electro-hydraulic push rod 2 16 and the electro-hydraulic push rod 3 19 to work, all of which adopt the method commonly used in the prior art.
[0027] The above is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process conversion, or direct or indirect application in other related technical fields, which is based on the content of the present application specification and drawings, is also included in the patent protection range of the present application.
Claims
1. A mobile power station lighting and drainage integrated work platform, characterized in that: The mobile shell (1) and the lighting adjusting mechanism (9) are included. The mobile shell (1) is provided with two lifting seats (8) on the upper side, and the inner part of the lifting seat (8) is provided with a lighting lamp (13). The lighting adjusting mechanism (9) includes an annular groove (91), an arc-shaped sliding seat (92), a connecting seat (93), an adjusting shaft (94), a bevel gear (95) and a bevel gear ring (96), the annular groove (91) is respectively arranged on the inner wall of the lifting seat (8), the inner part of the annular groove (91) is slidably connected with the arc-shaped sliding seat (92), the inner arc surface of the arc-shaped sliding seat (92) is provided with the connecting seat (93), the inner part of the connecting seat (93) is rotatably connected with the adjusting shaft (94) through a bearing, the middle part of the adjusting shaft (94) is provided with the bevel gear (95), the inner part of the lifting seat (8) is provided with the bevel gear ring (96), and the bevel gear (95) is meshedly connected with the adjacent bevel gear ring (96).
2. The mobile power station, lighting, and flood drainage integrated work platform according to claim 1, characterized in that: The bottom wall of the mobile shell (1) is respectively provided with a generator (3) and a water pump (4), the front side of the mobile shell (1) is provided with a single-chip microcomputer (2), the input end of the single-chip microcomputer (2) is electrically connected with the output end of the generator (3), and the output end of the single-chip microcomputer (2) is respectively electrically connected with the input end of the water pump (4) and the lighting lamp (13).
3. The mobile power station, lighting, and flood drainage integrated work platform according to claim 1, characterized in that: It also includes two fixed seats (5), the two fixed seats (5) are arranged on the upper side of the mobile shell (1), the inner part of the fixed seat (5) is rotatably connected with a hollow rod (6) through a rotating shaft, the inner part of the hollow rod (6) is slidably connected with a solid rod (7), the upper end of the solid rod (7) is fixedly connected with the lower side of the adjacent lifting seat (8), the bottom wall of the lifting seat (8) is rotatably connected with a rotating shaft (10) through a bearing, the upper end of the rotating shaft (10) is provided with a connecting seat (11), the inner part of the connecting seat (11) is rotatably connected with a turnover rod (12) through a rotating shaft, and the upper end of the turnover rod (12) is fixedly connected with the bottom of the adjacent lighting lamp (13).
4. The mobile power station, lighting, and flood drainage integrated work platform according to claim 2, characterized in that: The lighting adjusting mechanism (9) also includes a brake motor (97), the brake motor (97) is arranged on the left side of the connecting seat (93), the input end of the brake motor (97) is electrically connected with the output end of the single-chip microcomputer (2), and the output shaft of the brake motor (97) is electrically connected with the left end of the adjusting shaft (94).
5. The mobile power station, lighting, and flood drainage integrated work platform according to claim 3, characterized in that: The lighting adjusting mechanism (9) also includes a turnover assembly (98), the turnover assembly (98) includes a fixed seat (981), a sleeve (982) and an electro-hydraulic push rod (983), the fixed seat (981) is arranged on the outer side of the turnover rod (12) and the inner arc surface of the arc-shaped sliding seat (92), the inner part of the fixed seat (981) is rotatably connected with the sleeve (982) through a rotating shaft, one electro-hydraulic push rod (983) is arranged between the vertically adjacent two sleeves (982), and the input end of the electro-hydraulic push rod (983) is electrically connected with the output end of the single-chip microcomputer (2).
6. The mobile power station, lighting and drainage integrated work platform according to claim 3, characterized in that: The outer sides of the hollow rod (6) and the solid rod (7) are respectively provided with fixing seat three (14), the inner sides of the fixing seat three (14) are rotatably connected with sleeve two (15) through rotating shaft four, one electro-hydraulic push rod two (16) is arranged between every two vertically adjacent sleeve two (15), the upper side of the moving shell (1) is provided with two fixing seat four (17), the inner sides of the fixing seat four (17) are rotatably connected with sleeve three (18) through rotating shaft five, one electro-hydraulic push rod three (19) is arranged between every two vertically adjacent sleeve three (18), the input ends of the electro-hydraulic push rod three (19) and the electro-hydraulic push rod two (16) are electrically connected with the output end of the singlechip (2).
7. The mobile power station, lighting, and flood drainage integrated work platform according to claim 1, characterized in that: The right side of the moving shell (1) is provided with a traction hook (20).