A mobile intelligent lighting lighthouse

The hydraulically driven scissor lift mechanism and hydraulic outrigger assembly, combined with an adjustable chuck for getting out of trouble, solve the problems of height adjustment and wheel detachment during transportation of mobile intelligent lighting towers, improving the convenience and safety of transportation.

CN115773474BActive Publication Date: 2025-12-23HUALIANG LIGHTING TECH CO LTD
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Patent Information

Application Number
CN202211483723.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-24
Publication Date
2025-12-23
Estimated Expiration
2042-11-24

AI Technical Summary

Technical Problem

Existing mobile intelligent lighting towers cannot be height adjusted during land transportation, which leads to cloud cover affecting loading and transportation. They are also heavy and require cranes for operation, making them inconvenient. Furthermore, their wheels are prone to getting stuck in muddy pits on muddy roads.

Method used

The system employs a hydraulically driven scissor lift mechanism and hydraulic outrigger assembly, combined with an adjustable chuck for getting out of trouble, to achieve height adjustment of the lighthouse and wheel traction.

Benefits of technology

It enables flexible adjustment of the lighthouse height and rapid wheel traction, reducing reliance on cranes and improving the convenience and safety of transportation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115773474B_ABST
Patent Text Reader

Abstract

The application provides a mobile intelligent lighting lighthouse, comprising: a vehicle body, the bottom of the vehicle body is provided with self-unloading wheels, the top of the vehicle body is fixed with a support frame, the top of the support frame is movably connected with a lifting mechanism, the vehicle body is provided with a hydraulic system, a generator set and a control console; the bottom of the vehicle body is provided with two reinforcing ribs; the periphery of the support frame is provided with hydraulic leg assemblies; the end of the lifting mechanism is connected with a reinforcing column; the upper end of the lifting mechanism is provided with a top frame; the top frame is provided with multiple lighting lamps which can be horizontally and vertically rotated to change the projection angle; the top center of the top frame is provided with a 5G control ball component; a heat insulation component is arranged between the hydraulic system and the generator set; the hydraulic leg assembly comprises a swing arm which is rotationally connected with the vehicle body and a hydraulic lifting leg which is arranged at the free end of the swing arm, and the hydraulic leg assemblies are used to form a support space. The lifting mechanism can drive the lighting lamps to rise to the maximum height, realizing large-range lighting of the loading and unloading site and facilitating the transport vehicle to complete the loading and transportation work.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of lighting lamps, and particularly relates to a mobile intelligent lighting tower. BACKGROUND

[0002] In large construction operations, rescue and repair operations, and night operation sites, in order to ensure the smooth operation, sufficient lighting must be provided for the workers, so mobile lighting towers are often used in these places. However, the existing tower structure is simple, the position is fixed, the height of the tower installed on the land transportation site cannot be adjusted, which affects the loading and transportation work when the cloud and fog block the tower, and the existing lighting tower generally has a heavy weight, so in the process of transfer, the lighting tower is first lifted by the lifting line and the crane, and then gradually moved and placed on the transfer truck. This transfer method needs to be matched with large equipment such as cranes, and the operation is not convenient. In addition, when the mobile intelligent lighting tower travels on a muddy road during the transfer process, the self-unloading wheels of the mobile intelligent lighting tower often sink into the mud pit due to weather conditions or geographical environment factors, so it cannot drive away and is trapped.

[0003] Therefore, the application is proposed. SUMMARY

[0004] The application aims to provide a mobile intelligent lighting tower, and aims to solve the problems in the prior art that the tower structure is simple, the position is fixed, the height of the tower installed on the land transportation site cannot be adjusted, which affects the loading and transportation work when the cloud and fog block the tower, and the existing lighting tower generally has a heavy weight, so in the process of transfer, the lighting tower is first lifted by the lifting line and the crane, and then gradually moved and placed on the transfer truck. This transfer method needs to be matched with large equipment such as cranes, and the operation is not convenient. In addition, when the mobile intelligent lighting tower travels on a muddy road during the transfer process, the self-unloading wheels of the mobile intelligent lighting tower often sink into the mud pit due to weather conditions or geographical environment factors, so it cannot drive away and is trapped.

[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme.

[0006] A mobile intelligent lighting tower comprises a vehicle body, a self-unloading wheel is arranged at the bottom of the vehicle body, a support frame is fixed at the top of the vehicle body, a lifting mechanism is movably connected to the top of the support frame, a hydraulic system, a generator set and a control console are arranged on the vehicle body, and two reinforcing ribs are arranged at the bottom of the vehicle body.

[0007] Hydraulic leg assemblies are arranged around the support frame.

[0008] A reinforcing column is connected to the end of the lifting mechanism.

[0009] The upper end of the lifting mechanism is provided with a top end frame body;

[0010] A plurality of lighting lamps are arranged on the top end frame body and can rotate horizontally and vertically to change the projection angle;

[0011] A 5G control ball component is arranged at the top center of the top end frame body;

[0012] A heat insulation component is arranged between the hydraulic system and the generator set;

[0013] The hydraulic leg assembly comprises a swing arm rotationally connected with the vehicle body and a hydraulic lifting leg arranged at the free end of the swing arm, and a support space is formed between the hydraulic leg assemblies.

[0014] In one embodiment, the lifting mechanism comprises a scissor lifting component and a driving hydraulic cylinder arranged on the scissor lifting component;

[0015] The driving hydraulic cylinder is connected with the hydraulic system.

[0016] In one embodiment, a steering shaft is connected with the top bearing of the top end frame, and the lighting lamps are installed on the top of the steering shaft; the bottom of the steering shaft is connected with the output end of the motor.

[0017] In one embodiment, the control console comprises a main control panel and a storage box arranged above the main control panel.

[0018] In one embodiment, a receiver is arranged on one side of the control console; a hydraulic system starting switch and a remote controller are arranged on the other side of the control console.

[0019] In one embodiment, the self-unloading wheels are provided with a latch on the vehicle body; after the vehicle body is lifted by extending the hydraulic lifting legs until the bottom surface of the vehicle body is higher than a specified height, the self-unloading wheels are detached from the vehicle body.

[0020] In one embodiment, the self-unloading wheels have a locking structure; after the vehicle body is lifted by extending the hydraulic lifting legs until the bottom surface of the vehicle body is higher than a specified height, the self-unloading wheels are locked by the locking structure.

[0021] In one embodiment, a wind-resistant rope fixing ring is arranged on the support frame.

[0022] In one embodiment, a foot pad is arranged at the bottom of the hydraulic lifting leg.

[0023] In one embodiment, the control panel of the control console comprises a storage battery power display screen, a voltage / time display screen and a platform lifting switch.

[0024] Compared with the prior art, the present application has the following advantages:

[0025] (1) When the hydraulic system 5 is started, the driving hydraulic cylinder 42 is connected with the hydraulic system 5, the driving hydraulic cylinder 42 drives the scissor lifting component 41, the scissor lifting component 41 is in an unfolded state, and the multiple illuminating lamps 10 can be driven to rise to the maximum height, wherein the multiple illuminating lamps 10 can be horizontally and vertically rotated to change the projection angle; when the platform is raised to a height of about 10 meters, the projection angle can be changed within a range of 0-360° in horizontal rotation and 0-135° in vertical rotation, and the farthest illumination distance can reach 220 meters; in addition, high-brightness LED light sources are adopted, the light efficiency is high, the service life is long, and different illumination angles can be adjusted according to the needs of the use site. In order to expand the illumination range, the illuminating lamp 10 generally adopts a flat plate structure, and the illuminating lamp can be further stored in the lamp lifting mechanism 4 after being turned over, which is convenient for transportation and can prevent the illuminating lamp 10 from being damaged during transportation.

[0026] (2) The hydraulic leg assembly 7 includes a swing arm 71 rotatably connected with the vehicle body 1 and a hydraulic lifting leg 72 arranged at a free end of the swing arm 71, and a support space is formed between the hydraulic leg assemblies 7. The swing arm 71 and the hydraulic lifting leg 72 are respectively provided with four, which is simple in structure and can ensure the stress intensity. One end of the swing arm 71 is provided with a swing arm positioning hole; the top end of the hydraulic lifting leg 72 is provided with a positioning insert, and a plurality of insert positioning holes corresponding to the swing arm positioning hole are arranged on the positioning insert, and the swing arm positioning hole and the insert positioning hole are fixed by a positioning pin. Among them, the swing arm positioning hole is provided with one. By rotating the swing arm 71, the swing arm positioning hole is aligned with different insert positioning holes on the insert, and then fixed by the positioning pin, so that the swing arm 71 has different included angles relative to the vehicle body 1, thereby facilitating the storage of the lifting mechanism 4 and supporting at different angles according to different use conditions, ensuring the stress intensity and universality.

[0027] (3) The support system is formed by the hydraulic leg assembly 7, the hydraulic leg assembly 7 has a large expansion area, strong support force, and good wind resistance, and can work reliably under 8-level wind. The self-unloading wheel 2 is provided with a latch on the vehicle body 1; after the vehicle body 1 is raised by the elongated hydraulic lifting leg 72 until the bottom surface of the vehicle body 1 is higher than the specified height, the self-unloading wheel 2 is detached from the vehicle body 1.

[0028] (4) by increasing the adjustable chuck escape structure 17 on one side of the self-unloading wheel 2; The adjustable chuck escape structure 17 includes a jaw disc body 171, a small bevel gear 172, a large bevel gear 173 (the other end is a flat thread), and three telescopic adjustable escape claws 174. The three telescopic adjustable escape claws 174 have the same thread as the flat thread, and the three telescopic adjustable escape claws 174 are uniformly distributed at an angle of 120 degrees in the guide groove in the jaw disc body 171. The taper hole of the jaw disc body 171 cooperates with the outer taper surface of the self-unloading wheel 2 through bolts, plays a centering role, and transmits torque through keys. If the wheel stuck in the mud is not the self-unloading wheel 2, it can move forward normally. By rotating the small bevel gear 172 to drive the large bevel gear 173 to rotate and drive the three telescopic adjustable escape claws 174 to open or retract synchronously, during movement, the escape claw 174 contacts the ground and / or the mud, which increases the friction and prevents slipping, so that the mobile intelligent lighting tower slowly escapes from the mud. The wheel stuck in the mud can be quickly escaped; the device can be conveniently and quickly installed on the self-unloading wheel 2, and has the advantages of simple structure, effective self-rescue, rapid escape, no slipping, and improved safety performance of the mobile intelligent lighting tower during transportation. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed in the embodiments. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor.

[0030] Figure 1 A three-dimensional structure schematic diagram of a mobile intelligent lighting tower in an extended state of the present application (removing the adjustable chuck escape structure);

[0031] Figure 2 A three-dimensional structure schematic diagram of a mobile intelligent lighting tower in a retracted state of the present application (removing the adjustable chuck escape structure);

[0032] Figure 3 A three-dimensional structure schematic diagram of a vehicle body adopted by the present application;

[0033] Figure 4 A three-dimensional structure schematic diagram of a 5G control ball component adopted by the present application;

[0034] Figure 5 A three-dimensional structure schematic diagram of a lifting mechanism adopted by the present application;

[0035] Figure 6 Fig. 1 is a schematic diagram of a three-dimensional installation structure of a generator set and a heat insulation component of the present application;

[0036] Figure 7 Fig. 2 is a schematic diagram of a three-dimensional structure of a hydraulic leg assembly used in the present application;

[0037] Figure 8 Fig. 3 is a schematic diagram of a three-dimensional sectional structure of an adjustable chuck escape structure of the present application;

[0038] Figure 9 Fig. 4 is a schematic diagram of a three-dimensional structure of an adjustable chuck escape structure of the present application;

[0039] Figure 10 Fig. 5 is a schematic diagram of an installation structure of an adjustable chuck escape structure and a self-unloading wheel of the present application. DETAILED DESCRIPTION

[0040] 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 of the present application. 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.

[0041] It should be understood that the terms "first", "second", etc. are used to describe various information in the present application, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, the "first" information can also be referred to as "second" information without departing from the scope of the present application, and similarly, the "second" information can also be referred to as "first" information.

[0042] As Figures 1 to 10 shown: the present embodiment provides a mobile intelligent lighting lighthouse, which is suitable for various industries such as emergency rescue, large-scale rescue and repair, construction, temporary lighting and other large-scale lighting environments.

[0043] Specifically includes: the car body 1, the bottom of the car body 1 is provided with a self-unloading wheel 2, the top of the car body 1 is fixed with a support frame 3, the top of the support frame 3 is movably connected with a lifting mechanism 4, the car body 1 is provided with a hydraulic system 5, a generator set 6 and a control console 13; the bottom of the car body 1 is provided with two reinforcing ribs 14; wherein the generator set 6 is powered by a Yamaha brand gasoline generator set, and can be connected to the mains for long-term use. The generator set has an output power of 5kw, an output voltage of 220v and a frequency of 50Hz. The generator set 6 is connected to the bottom of the car body 1 through a generator bracket 18. The generator bracket 18 is designed to resist deformation and breakage, and is made of hollow stainless steel material with certain strength and rigidity. The cavity of the generator bracket 18 is filled with cooling liquid. The generator bracket 18 is provided with openings for adding and discharging the cooling liquid, and the openings are sealed during normal use. The material of the cooling liquid is not limited, which can be the cooling liquid used in the wind power industry and the converter of the generator set.

[0044] The support frame 3 is provided with a hydraulic outrigger assembly 7 around the periphery;

[0045] The end of the lifting mechanism 4 is connected with a reinforcing column 8;

[0046] The upper end of the lifting mechanism 4 is provided with a top end frame 9;

[0047] The top end frame 9 is provided with a plurality of lighting lamps 10 which can rotate horizontally and vertically to change the projection angle;

[0048] The top end of the top end frame 9 is provided with a 5G control ball component 11; the control ball is internally integrated with a group of hardware video encoding chips to complete the functions of encoding, video recording and storage of the system; it has the functions of acquisition, recording, recording, positioning and transmission. The video is collected by the built-in camera, then encoded, compressed and stored in the main chip for preview, and transmitted to the streaming media server through the 5G network; it is connected to the online reporting center platform through the 5G network; the control ball transmits the live pictures to the command center in real time through the 5G network, and the command center remotely commands through the live high-definition video image, voice intercom and real-time location information; it provides technical support for emergency communication, wireless image transmission, emergency control, remote control, and is suitable for remote emergency command and dispatch, remote real-time monitoring.

[0049] The 5G control ball component 11 includes a lamp holder assembly 111, a jack assembly 112 and a camera assembly 113; the jack assembly 112 is connected to the bottom of the lamp holder assembly 111 through a fixing seat, and the upper end of the jack assembly 112 is connected with the lighting lamp 10 and the 5G control ball at the top through a connecting shaft, and the lifting function of the lighting lamp 10 and the camera assembly 113 is realized by controlling the jack.

[0050] A heat insulation component 12 is arranged between the hydraulic system 5 and the generator set 6; the heat insulation component 12 plays a role of insulating the heat source of the hydraulic system 5 and the generator set 6, preventing the heat of the engine set from softening the high-pressure oil pipe of the hydraulic system 5.

[0051] Preferably, the heat insulation component 12 can be at least one of a single aluminum alloy plate, a hollow aluminum alloy profile, or a composite plate with a honeycomb sound insulation plate in the middle.

[0052] When the single aluminum alloy plate is adopted, a side close to the generator set 6 is provided with a transversely or longitudinally interpenetrating V-shaped or U-shaped cross section, which guarantees the mechanical properties of the single aluminum alloy plate and enables the generator set 6 to form a heat dissipation path or channel in the transversely or longitudinally interpenetrating V-shaped or U-shaped cross section, so that the heat dissipated at different heights by the generator set 6 can be timely dissipated in the channel; meanwhile, the transversely or longitudinally interpenetrating V-shaped or U-shaped cross section also increases the heat dissipation surface area, thereby improving the heat insulation performance.

[0053] In an embodiment, when the heat insulation component 12 adopts the composite plate with the honeycomb sound insulation plate in the middle, the composite plate can also play a role of heat insulation and sound absorption; the honeycomb sound insulation plate can be formed by 3D printing; the composite plate with the honeycomb sound insulation plate comprises an aluminum honeycomb plate core, aluminum face plates arranged on both sides of the aluminum honeycomb plate core, a plurality of composite protrusions with a circular outer part and a hexagonal inner part arranged on the inner side surface of the aluminum face plates, and a plurality of grooves matched with the composite protrusions and extending to the edges of the aluminum honeycomb plate core without a stopper on the two side surfaces of the aluminum honeycomb plate core. The composite protrusions with a circular outer part and a hexagonal inner part arranged on the aluminum face plates enable the aluminum honeycomb plates to be connected without using adhesive, which is convenient for assembly; meanwhile, the limiting strips prevent the assembled aluminum honeycomb plates from slipping off and protect the aluminum honeycomb plate core, thereby guaranteeing the sound insulation performance of the aluminum honeycomb plates. In addition, the connection relationship between the generator set 6 and the composite protrusions with a circular outer part and a hexagonal inner part enables the connection relationship area to bear the concentrated load transmitted by the generator set 6, the double-layer structure of the connection part improves the distribution of the axial stress and shear stress of the connection part along the interface, better adapts to vibrations under various road conditions and complex situations, and ensures that the aluminum honeycomb plate core can be firmly connected in the aluminum face plate, thereby guaranteeing the heat insulation and sound absorption effects.

[0054] The hydraulic outrigger assembly 7 comprises a swing arm 71 rotatably connected to the vehicle body 1 and a hydraulic lifting outrigger 72 arranged at the free end of the swing arm 71, and a support space is formed between the hydraulic outrigger assemblies 7.

[0055] Further, the lifting mechanism 4 comprises a scissor-type lifting component 41 and a driving hydraulic cylinder 42 arranged on the scissor-type lifting component 41.

[0056] The driving hydraulic cylinder 42 is connected to the hydraulic system 5.

[0057] The above implementation, specifically, when the hydraulic system 5 is started, the driving hydraulic cylinder 42 is connected with the hydraulic system 5, the driving hydraulic cylinder 42 drives the scissor lifting component 41 (supports the upper and lower ends of the adjacent X-shaped rod to be opened to the maximum distance), the scissor lifting component 41 is in an expanded state, and the lighting lamp 10 can be lifted to the maximum height. The plurality of lighting lamps 10 can be horizontally and vertically rotated to change the projection angle. When the platform is lifted to a height of about 10 meters, the projection angle can be changed in a range of 0-360° horizontally and 0-135° vertically, and the farthest illumination distance can reach 220 meters. In addition, high-brightness LED light sources are used, the light efficiency is high, the service life is long, and different illumination angles can be adjusted according to the needs of the use site. In order to expand the illumination range, the lighting lamp 10 generally adopts a flat plate structure, and the lighting lamp can be further stored in the lamp lifting mechanism 4 after the lighting lamp is turned over, which is convenient for transportation and can prevent the lighting lamp 10 from being damaged during transportation.

[0058] Furthermore, the hydraulic leg assembly 7 includes a swing arm 71 rotatably connected with the vehicle body 1 and a hydraulic lifting leg 72 arranged at a free end of the swing arm 71, and the hydraulic leg assemblies 7 are used to form a support space. The swing arm 71 and the hydraulic lifting leg 72 are respectively provided with four, which is simple in structure and can ensure the stress intensity. One end of the swing arm 71 is provided with a swing arm positioning hole, and the top end of the hydraulic lifting leg 72 is provided with a positioning insert. The positioning insert is provided with a plurality of insert positioning holes corresponding to the swing arm positioning hole. The swing arm positioning hole and the insert positioning hole are fixed by a positioning pin. The swing arm positioning hole is provided with one. By rotating the swing arm 71, the swing arm positioning hole is aligned with different insert positioning holes on the insert, and then fixed by the positioning pin. The swing arm 71 has different included angles relative to the vehicle body 1, which facilitates the storage of the lifting mechanism 4 and the support at different angles according to different use conditions, and ensures the stress intensity and versatility.

[0059] The hydraulic leg assembly 7 is used to form a support system, the hydraulic leg assembly 7 has a large expansion area, strong support force, and good wind resistance, and can work reliably under 8-level wind. Further, the self-unloading wheel 2 is provided with a latch on the vehicle body 1. After the vehicle body 1 is lifted by the extended hydraulic lifting leg 72 until the bottom surface of the vehicle body 1 is higher than a specified height, the self-unloading wheel 2 is detached from the vehicle body 1. It should be noted that the maximum lifting stroke of the hydraulic leg assembly 7 is 1.3m, and the maximum expansion width is 2.6m.

[0060] Further, the self-unloading wheel 2 has a locking structure. The self-unloading wheel 2 is locked by the locking structure, which is simple in structure, convenient to use, and good in locking effect. Removing the self-unloading wheel 2 can prevent the self-unloading wheel 2 from rolling inside the vehicle after loading, which is not conducive to the fixed situation.

[0061] Further comprising: locking the dumpable wheel 2 by the locking structure after the vehicle body 1 is lifted by the elongated hydraulic lifting leg 72 until the bottom surface of the vehicle body 1 is higher than the specified height. The hydraulic leg assembly 7 comprises a swing arm 71 rotationally fitted with the vehicle body 1 and a hydraulic lifting leg 72 arranged at the free end of the swing arm 71, and a support space is formed between the hydraulic leg assemblies 7. By rotating the swing arm 71 and lifting the hydraulic lifting leg 72, a support space can be formed below the vehicle body 1, and the pickup truck and the small truck can be automatically loaded and unloaded simultaneously without the cooperation of a crane, avoiding the use of a forklift or a crane for loading and unloading. Further, the loading step of the lighting equipment is completed; similarly, when unloading, the swing arm 71 is also rotated out to make the hydraulic lifting leg 72 elongate until the vehicle body 1 is lifted, and then the pickup truck and the small truck are driven away, and the vehicle body 1 is gradually lowered. Without the cooperation of a crane and other large equipment, the operation is safe, and the transfer cost can be effectively reduced. It is fast, efficient, safe and economical, and can simultaneously satisfy various shifting methods such as a forklift, a crane, and manual towing; it is suitable for outdoor transfer and lighting, and the overall height is 1.4 meters, the loading height of the pickup truck is 2.2 meters or less, which meets the 2.2-meter height limit in some villages, bridge holes and underground parking garages, avoiding detouring due to excessive height, and meeting the rapid response of emergency rescue. The large-area lighting at the loading and unloading site facilitates the loading and transportation of the transport vehicle.

[0062] Further, the top end frame 9 is connected with a steering shaft 13 at the top bearing, and the lighting lamp 10 is installed at the top of the steering shaft 13; the bottom of the steering shaft 13 is connected with the output end of the motor.

[0063] Further, the control console 13 comprises a main control panel 131 and a storage box 132 above the main control panel 131. The storage box 132 can accommodate emergency lights, maintenance tools and the like, facilitating on-site replacement of lamps.

[0064] Further, one side of the control console 13 is provided with a receiver, and the other side of the control console 13 is provided with a hydraulic system starting switch and a remote controller. A wireless remote controller is provided to control the self-lifting loading and unloading and the scissor lifting function of the lamp, and the remote control distance is within 30 meters, meeting the convenience of on-site command operation.

[0065] Further, the support frame 3 is provided with a wind-resistant rope fixing ring 16. The wind-resistant rope is convenient to install, so that the wind resistance is 8 or more.

[0066] Further, the bottom of the hydraulic lifting leg 72 is provided with a foot pad 15.

[0067] Further, the control panel of the control console 13 comprises a battery power display screen, a voltage / time display screen, a platform lifting switch, a horizontal forward and reverse rotation switch, a vertical forward and reverse rotation switch, and is equipped with an integrated visual operation panel, control switches, and control display screens integrated on the same panel. In order to improve the degree of automation of the equipment and facilitate the operation of the operator, the control console 13 is electrically connected with the lighting lamp 10 and the generator set 6. The operator can output commands to the generator set 6 through the control console 13 to control the hydraulic system 5 through the generator set 6, thereby controlling the driving hydraulic cylinder 42 and the hydraulic cylinder of the hydraulic leg assembly 7, and also controlling the lighting lamp 10. The lighting lamp 10 can be electrically connected with the control console 13 through the generator set 6, and the generator set 6 is used to provide electric energy.

[0068] It should be noted that the lifting mechanism 4 can be controlled by realizing electric or remote control; when using remote control operation, all legs can be fully extended or at least one can be extended, and in normal operation, the ground compactness or flatness is first detected, and when the ground is not compact or is a slope, the lifting platform is prohibited from being used. In order to ensure safety, an anti-wind rope is installed before use; in case of emergency, the "remote control emergency stop button" or "electric control box right side emergency stop button" is pressed at the first time; in specific operation, first, the power supply operation is started, the mains power supply is turned on, and the generator switch is started to turn on the power supply system main switch; secondly, the control box right side emergency stop switch is turned on, the remote control emergency stop switch and the remote control switch on the remote control are turned on, when getting on or off the pickup truck or light truck, the swing arm is first adjusted to keep 90 degrees with the vehicle body, the safety pin is inserted, the full extension or full retraction button of the leg is pressed, the four legs can be lifted simultaneously, the height is adjusted according to the vehicle type, when the platform is inclined, the corresponding leg button is adjusted to keep the platform horizontal, the maximum angle between the leg and the vehicle body is adjusted before lifting the platform, the safety pin is inserted, the four supporting legs are all supported on the ground or are solid, and the light tower is adjusted to be horizontal. Finally, the light tower platform is lifted. After the predetermined height is reached, the lighting lamp is turned on. After the utility is completed, the lifting platform is lowered, the legs are retracted, the system main power supply switch is turned off, the generator is turned off, and the remote control is collected. The lifting height of the lifting mechanism 4 is 10 m, and the retracted height is 1.4 m.

[0069] But when the mobile intelligent lighting lighthouse transfer process travels in the muddy soil road, due to the influence of weather conditions or geographical environment and other factors, the self-unloading wheel 2 of the mobile intelligent lighting lighthouse often sinks into the mud pit, at this time, it cannot drive away and is trapped; therefore, by increasing the adjustable chuck escape structure 17 on one side of the self-unloading wheel 2; the adjustable chuck escape structure 17 includes a claw disc body 171, a small bevel gear 172, a large bevel gear 173 (the other end is a flat thread) and three telescopic adjustable escape claws 174. The three telescopic adjustable escape claws 174 have the same thread as the flat thread, and are uniformly distributed at an angle of 120 degrees in the guide groove in the claw disc body 171. The taper hole of the claw disc body 171 cooperates with the outer taper surface of the self-unloading wheel 2 through bolts, which plays a centering role, and transmits torque through keys. If the wheel stuck in the mud pit is not the self-unloading wheel 2, it will proceed normally, and by rotating the small bevel gear 172 to drive the large bevel gear 173 to rotate and drive the three telescopic adjustable escape claws 174 to open or retract synchronously, during the movement process, the escape claw 174 contacts the ground and / or the mud pit, which increases the friction and prevents slipping, so as to slowly escape the mobile intelligent lighting lighthouse from the mud pit. During the rotation of the self-unloading wheel 2, each escape claw 174 can repeat the above process, so that the wheel stuck in the mud pit can quickly escape. The device can be conveniently and quickly installed on the self-unloading wheel 2, and has simple structure, can realize effective self-rescue and rapid escape, and will not slip, so as to realize effective self-rescue and rapid escape, thereby improving the safety performance of the mobile intelligent lighting lighthouse transfer.

[0070] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A mobile intelligent lighting lighthouse, characterized by: Include: The bottom of the vehicle body (1) is provided with a self-unloading wheel (2), the top of the vehicle body (1) is fixed with a support frame (3), the top of the support frame (3) is movably connected with a lifting mechanism (4), the vehicle body (1) is provided with a hydraulic system (5), a generator set (6) and a control console (13); The bottom of the vehicle body (1) is provided with two reinforcing ribs (14); The periphery of the support frame (3) is provided with a hydraulic outrigger assembly (7); The end of the lifting mechanism (4) is connected with a reinforcing column (8); The upper end of the lifting mechanism (4) is provided with a top frame body (9); The top frame body (9) is provided with a plurality of lighting lamps (10) which can be horizontally and vertically rotated to change the projection angle; The top of the top frame body (9) is provided with a 5G control ball part (11); The hydraulic system (5) and the generator set (6) are provided with a heat insulation part (12); The hydraulic outrigger assembly (7) includes a swing arm (71) rotatably connected with the vehicle body (1) and a hydraulic lifting outrigger (72) arranged at the free end of the swing arm (71), and the hydraulic outrigger assemblies (7) are used to form a support space; One side of the self-unloading wheel (2) is provided with an adjustable chuck escape structure (17); The adjustable chuck escape structure (17) includes a claw disc body (171), a small bevel gear (172), a large bevel gear (173) and three telescopic adjustable escape claws (174); Three telescopic adjustable escape claws (174) have the same thread as the flat thread and are matched with them, and three telescopic adjustable escape claws (174) are evenly distributed in the guide groove in the claw disc body (171) at an angle of 120 degrees; The taper hole of the claw disc body (171) is matched with the outer taper surface of the self-unloading wheel (2) through bolts, which plays a centering role.

2. The mobile intelligent lighting tower according to claim 1, wherein: The lifting mechanism (4) includes a scissor type lifting part (41) and a driving hydraulic cylinder (42) arranged on the scissor type lifting part (41); The driving hydraulic cylinder (42) is connected with the hydraulic system (5).

3. The mobile intelligent lighting tower according to claim 1, wherein: The top bearing of the top frame body (9) is connected with a steering shaft, and the lighting lamp (10) is installed on the top of the steering shaft; The bottom of the steering shaft is connected with the output end of the motor.

4. The mobile intelligent lighting tower according to claim 1, wherein: The control console (13) includes a main control panel table (131) and a storage box (132) located above the main control panel table (131).

5. The mobile intelligent lighting tower according to claim 4, wherein: One side of the control console (13) is provided with a receiver; The other side of the control console (13) is provided with a hydraulic system starting switch and a remote controller.

6. The mobile intelligent lighting tower according to claim 1, wherein: The self-dumping wheel (2) is provided with a latch member with the vehicle body (1); after the vehicle body (1) is lifted by elongating the hydraulic lifting leg (72) until the bottom surface of the vehicle body (1) is higher than a specified height, the self-dumping wheel (2) is further removed from the vehicle body (1).

7. The mobile intelligent lighting lighthouse of claim 1, wherein: The self-dumping wheel (2) has a locking structure; after the vehicle body (1) is lifted by elongating the hydraulic lifting leg (72) until the bottom surface of the vehicle body (1) is higher than a specified height, the self-dumping wheel (2) is locked through the locking structure.

8. The mobile intelligent lighting lighthouse of claim 1, wherein: The support frame (3) is provided with a wind-resistant rope fixing ring (16).

9. The mobile intelligent lighting lighthouse of claim 1, wherein: The bottom of the hydraulic lifting leg (72) is provided with a foot pad (15).

10. The mobile intelligent lighting lighthouse of claim 1, wherein: The control panel of the control console (13) includes a battery power display screen, a voltage / time display screen, and a platform lifting switch.

Citation Information

Patent Citations

  • Full automatic relief device for automobile

    CN107639974A

  • Method for loading light tower on truck

    CN109751580A

  • Three-jaw chuck

    CN210147028U