Adjusting device for explosion-proof infrared camera
Technical Field
The utility model belongs to the technical field of infrared cameras, and particularly relates to an adjusting device for an explosion-proof infrared camera.
Background
The video camera has various kinds, and the basic principle of the work is that optical image signals are converted into electric signals so as to be convenient for storage or transmission, wherein an infrared filter lens is additionally arranged between a lens and a CCD (charge coupled device) of the digital video camera, and the infrared filter lens has the function of blocking infrared rays from entering the CCD, so that the CCD can only sense visible light, and the image shot by the digital video camera is consistent with the image seen by naked eyes.
At present, when the infrared camera is used, the monitoring angle adjustment of the infrared camera is manually carried out, the infrared camera is installed at a high position, the follow-up automatic adjustment is inconvenient after the monitoring angle is fixed, in addition, the infrared camera cannot be used for achieving the purposes of energy conservation and environmental protection by using solar energy during outdoor installation and use, and the infrared camera is inconvenient to be subjected to explosion prevention and heat dissipation protection, so that an adjusting device for the explosion-proof infrared camera is urgently needed to solve the problems.
Disclosure of utility model
Aiming at the situation, the utility model provides an adjusting device for an explosion-proof infrared camera in order to overcome the defects of the prior art.
In order to realize the functions, the technical scheme adopted by the utility model is as follows: the utility model provides an adjusting device for explosion-proof infrared camera, includes explosion-proof shell to and fixed setting is in the eaves board pillar at explosion-proof shell top, eaves board pillar top fixedly connected with rain-proof eaves board still includes infrared camera angle modulation mechanism, infrared camera angle modulation mechanism sets up on explosion-proof shell, and it includes pitch angle adjustment subassembly and rotatory angle modulation subassembly, pitch angle adjustment subassembly sets up on explosion-proof shell, rotatory angle modulation subassembly sets up in pitch angle adjustment subassembly, still includes infrared camera cooling mechanism, infrared camera cooling mechanism sets up on explosion-proof shell lateral wall, still includes environmental protection energy supply mechanism, environmental protection energy supply mechanism sets up on infrared camera angle modulation mechanism.
For smoothly realizing the purpose of conveniently monitoring the pitching angle of infrared camera automatic adjustment, pitch angle adjustment subassembly includes fixedly connected's shell pivot on the explosion-proof shell lateral wall, rotate in the shell pivot and be connected with the pivot extension board, fixedly connected with bull stick support on the explosion-proof shell bottom lateral wall, rotate between bull stick support both sides wall and be connected with the angle modulation bull stick, be connected with flexible hydraulic stem on bull stick support one end, fixedly connected with hydraulic stem extension board on the flexible hydraulic stem.
In order to smoothly realize the purpose of conveniently adjusting the angle of the infrared camera in all directions, the rotary angle adjusting assembly comprises a supporting turntable fixedly connected with the bottom of a hydraulic rod support plate, an angle adjusting rotating shaft is fixedly connected to the bottom wall of the supporting turntable, a rotary motor is connected to the angle adjusting rotating shaft, and a supporting box body is fixedly connected to the rotary motor.
In order to smoothly realize the purpose of conveniently radiating and protecting the infrared camera, the infrared camera radiating mechanism comprises a radiating motor fixedly connected with the top of the side wall of the explosion-proof shell, a fan blade rotating shaft is connected to the output end of the radiating motor, and radiating fan blades are uniformly distributed and fixedly connected on the fan blade rotating shaft in a circumference manner.
In order to achieve the purpose of conveniently utilizing solar energy to supply energy to achieve energy conservation and environmental protection, the environmental protection energy supply mechanism comprises a fixed vertical frame which is fixedly connected with the top of a supporting turntable, a solar panel is fixedly connected to the fixed vertical frame, an inverter is fixedly connected to the solar panel, and a storage battery is fixedly connected to the fixed vertical frame.
Further, explosion-proof shell lateral wall bottom fixedly connected with dustproof ventilation net, be equipped with the support spout on the support box body roof, fixedly connected with and support spout sliding connection's slip pillar on the support carousel diapire, fixedly connected with installs the extension board on the support box body.
Further, the storage battery is electrically connected with the rotating motor, the storage battery is electrically connected with the heat dissipation motor, and the storage battery is electrically connected with the inverter.
Further, the shell rotating shaft and the rotating shaft support plates are symmetrically arranged at two ends of the explosion-proof shell.
Preferably, the rotating rod support is arranged in a U shape, the supporting turntable is arranged in a round shape, and the fixed vertical frame is arranged in a trapezoid shape.
The beneficial effects obtained by the utility model by adopting the structure are as follows: according to the adjusting device for the explosion-proof infrared camera, the purpose of conveniently and automatically adjusting the monitoring angle of the infrared camera can be achieved through the angle adjusting mechanism of the infrared camera, the purpose of conveniently and automatically radiating and protecting the infrared camera can be achieved through the radiating mechanism of the infrared camera, and the purpose of conveniently utilizing solar energy to supply energy can be achieved through the environment-friendly energy supply mechanism.
Drawings
Fig. 1 is a schematic structural diagram of an adjusting device for an explosion-proof infrared camera according to the scheme;
Fig. 2 is a schematic view of another angle structure of an adjusting device for an explosion-proof infrared camera according to the present disclosure;
Fig. 3 is a cross-sectional view of an adjusting device for an explosion-proof infrared camera according to the present embodiment.
The solar energy storage device comprises a shell, an explosion-proof shell, 2, a cornice strut, 3, a rain-proof cornice, 4, an infrared camera angle modulation mechanism, 5, an infrared camera heat dissipation mechanism, 6, an environment-friendly energy supply mechanism, 7, a pitch angle adjusting assembly, 8, a rotary angle modulation assembly, 9, a shell rotating shaft, 10, a rotating shaft support plate, 11, a rotating rod support, 12, an angle modulation rotating rod, 13, a telescopic hydraulic rod, 14, a hydraulic rod support plate, 15, a supporting turntable, 16, an angle modulation rotating shaft, 17, a rotating motor, 18, a supporting box body, 19, a heat dissipation motor, 20, a fan blade rotating shaft, 21, a heat dissipation fan blade, 22, a fixed vertical frame, 23, a solar panel, 24, an inverter, 25 and a battery.
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model; all other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1-3, in order to realize the above functions, the technical scheme adopted by the utility model is as follows: the utility model provides an adjusting device for explosion-proof infrared camera, including explosion-proof housing 1, explosion-proof housing 1 lateral wall bottom fixedly connected with dustproof ventilation net, and fixed the setting is in the eaves board pillar 2 at explosion-proof housing 1 top, eaves board pillar 2 top fixedly connected with rain-proof eaves board 3, still include infrared camera angle modulation mechanism 4, infrared camera angle modulation mechanism 4 sets up on explosion-proof housing 1, it includes pitch angle adjustment subassembly 7 and rotatory angle modulation subassembly 8, pitch angle adjustment subassembly 7 sets up on explosion-proof housing 1, rotatory angle modulation subassembly 8 sets up in pitch angle adjustment subassembly 7, still include infrared camera cooling body 5, infrared camera cooling body 5 sets up on explosion-proof housing 1 lateral wall, still include environmental protection energy supply mechanism 6, environmental protection energy supply mechanism 6 sets up on infrared camera angle modulation mechanism 4.
As shown in fig. 1-3, pitch angle adjustment subassembly 7 includes fixed connection's on the explosion-proof housing 1 lateral wall shell pivot 9, rotate on the shell pivot 9 and be connected with pivot extension board 10, shell pivot 9 and pivot extension board 10 all symmetry set up in explosion-proof housing 1's both ends, fixed connection has bull stick support 11 on explosion-proof housing 1 bottom lateral wall, bull stick support 11 is the setting of U-shape, rotate between bull stick support 11 both sides wall and be connected with angle modulation bull stick 12, be connected with flexible hydraulic stem 13 on bull stick support 11 one end, fixedly connected with hydraulic stem extension board 14 on the flexible hydraulic stem 13, rotatory angle modulation subassembly 8 includes the support carousel 15 of hydraulic stem extension board 14 bottom fixedly connected with, fixedly connected with and support spout sliding connection's slip pillar on the support carousel 15 diapire, support carousel 15 is circular setting, fixedly connected with angle modulation pivot 16 on the support carousel 15 diapire, be connected with rotating electrical machines 17 on the angle modulation pivot 16, fixedly connected with support box 18 on the rotating electrical machines 17, be equipped with support spout on the support box 18 roof, fixedly connected with installs the extension board on the support box 18.
As shown in fig. 1-3, the infrared camera heat dissipation mechanism 5 comprises a heat dissipation motor 19 fixedly connected with the top of the side wall of the explosion-proof housing 1, a fan blade rotating shaft 20 is connected to the output end of the heat dissipation motor 19, heat dissipation fan blades 21 are uniformly and fixedly connected to the fan blade rotating shaft 20 in a circumference mode, the environment-friendly energy supply mechanism 6 comprises a fixed stand 22 fixedly connected with the top of the supporting turntable 15, the fixed stand 22 is in a trapezoid shape, a solar panel 23 is fixedly connected to the fixed stand 22, an inverter 24 is fixedly connected to the solar panel 23, a battery 25 is fixedly connected to the fixed stand 22, the battery 25 is electrically connected with the rotating motor 17, the battery 25 is electrically connected with the heat dissipation motor 19, and the battery 25 is electrically connected with the inverter 24.
When the device is specifically used, a user can fix an infrared camera in the explosion-proof shell 1 for explosion protection, the device can be installed and fixed through the installation support plate, the telescopic hydraulic rod 13 is opened to enable the telescopic hydraulic rod 13 to stretch out and draw back, then the rotary rod support 11 connected with the telescopic hydraulic rod 13 moves along with the telescopic hydraulic rod to drive the angle modulation rotary rod 12 to rotate around the rotary rod support 11, meanwhile, the explosion-proof shell 1 and the shell rotary shaft 9 rotate around the rotary shaft support plate 10, the pitching angle of the infrared camera can be adjusted, the rotary motor 17 is opened, then the angle modulation rotary shaft 16 rotates along with the rotary shaft to drive the supporting rotary disc 15 to rotate, meanwhile, the infrared camera rotates along with the rotary shaft to further adjust the monitoring angle, the heat dissipation motor 19 is started to drive the fan blade rotary shaft 20 to rotate, the fan blade 21 is driven to rotate to blow air into the explosion-proof shell 1 for heat dissipation protection of the infrared camera, the dustproof ventilation net can assist ventilation and heat dissipation, the solar panel 23 can absorb sunlight and store electric energy in the battery 25 through the inverter 24, the battery 25 can supply energy for the rotary motor 17 and the heat dissipation motor 19 in an environment-friendly mode, and the rain-proof cornice 3 can be protected for the infrared camera, and the whole explosion-proof camera is used for adjusting the whole process.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
The utility model and its embodiments have been described above with no limitation, and the actual construction is not limited to the embodiments of the utility model as shown in the drawings. In summary, if one of ordinary skill in the art is informed by this disclosure, a structural manner and an embodiment similar to the technical solution should not be creatively devised without departing from the gist of the present utility model.