Hydraulic engineering flashboard with impurity filtering function
Technical Field
The utility model relates to the technical field of flashboard, in particular to a hydraulic engineering flashboard with a impurity filtering function.
Background
In hydraulic engineering, the sluice is as manger plate, sluicing or the building of water intaking, uses extensively, can control rivers flow and regulation water level through the flashboard in the sluice, closes the flashboard and can block flood and keep off the tide, opens the gate and can release flood and waterlogging, and current most sluice carries out behind the rivers control, generally has in the sluice along with the debris retention that rivers flow, can need the manual work to salvage inside impurity with the instrument generally, comparatively waste time and energy.
Searching and finding to the above problem, in the prior art that has been disclosed so far, as the double-deck flashboard is used in hydraulic engineering that the publication No. CN211816108U proposed a have filter effect, the device is through the side-mounting filter at first flashboard, go up and down the processing through hydraulic stem to the gate on the first flashboard, after rivers pass through the gate, stay impurity on the filter through the filter, the filter is placed in the slope, and the threaded rod is carried in filter side-mounting, impurity passes through the filter and gets into on the threaded rod, carry it out, rivers then flow into on the bottom plate through the filter plate, but if there is impurity or earth that is sticky in the rivers, then can be detained on the filter and be difficult to flow into in carrying the threaded rod, thereby jam the filtration of following rivers can be influenced.
Disclosure of utility model
The utility model provides a hydraulic engineering flashboard with a impurity filtering function, which solves the problem that in the related art, if the water flow is provided with attached impurities or soil, the filtering holes of a filtering plate can be blocked, and the subsequent water flow filtering can be influenced.
The technical scheme of the utility model is as follows:
The utility model provides a hydraulic engineering flashboard with strain miscellaneous function, includes elevating system, still includes flashboard, gate, filter, connecting axle, cleaning roller, drive assembly and lifting unit, gate slidable mounting is in on the flashboard, filter slidable mounting is in on the flashboard, the connecting axle sets up to a plurality of, every two are a set of connecting axle, and the connecting axle rotates to be installed on the flashboard, the cleaning roller sets up to a plurality of, and cleaning roller fixed mounting is in every group between the connecting axle, drive assembly sets up on the cleaning roller, lifting unit sets up on the flashboard.
Further, the transmission assembly comprises a plurality of transmission rollers, a first connecting belt and a first motor, wherein the transmission rollers are fixedly installed on the connecting shaft in a penetrating mode, the first connecting belt is arranged on the plurality of transmission rollers in a tensioning mode in a sleeved mode, the first motor is installed on the flashboard, and the output end of the first motor is fixedly installed on one of the transmission rollers.
Further, lifting assembly includes receipts line roller, connecting wire, spliced pole, motor two and connecting band two, receive line roller sets up to two, and receive line roller through the pivot rotation install on the flashboard, the connecting wire winding is in receive line roller is last, and the other end fixed mounting of connecting wire is in on the filter, spliced pole fixed mounting is two receive between the line roller, motor two is installed the top of flashboard, connecting band two's one end tensioning cover is established on the spliced pole, connecting band two's the other end tensioning cover is established on motor two's the output, and connecting band two runs through the top of flashboard.
Further, the device also comprises a collecting assembly, wherein the collecting assembly comprises a collecting box, an air cylinder and a scraping plate, the collecting box is fixedly arranged on the flashboard, the air cylinder is arranged on the collecting box, and the scraping plate is fixedly connected with the output end of the air cylinder.
Still further, the collection bin is positioned in a horizontal position with the filter plate.
Further, the bottom end of the scraping plate is in a sharp cone shape.
The working principle and the beneficial effects of the utility model are as follows:
1. According to the utility model, the filter plate can be lifted to the cleaning roller through the lifting assembly, so that the cleaning roller can clean the surface of the filter plate, and the problem that certain impurities easy to adhere to the surface of the filter plate are difficult to clean is avoided, so that the subsequent water flow filtration is influenced;
2. in the utility model, the plurality of cleaning rollers can be driven to rotate through the transmission assembly, so that the surfaces of the filter plates can be comprehensively cleaned, and the situation that other places of the filter plates cannot be cleaned is avoided;
3. According to the utility model, impurities polished and cleaned on the filter plate can be collected into the collecting box through the collecting assembly, so that the cleanness of the filter plate is ensured, and the subsequent water flow is not influenced;
To sum up, the device is through flashboard, gate, filter, connecting axle, cleaning roller, drive assembly and lifting unit between mutually supporting, makes the impurity on the filter can carry out effectual cleanness and collect, has avoided the impurity to be stained with and has attached and be difficult to the clearance on the filter.
Drawings
The utility model will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic view of the drive assembly of the present utility model in combination with a scrub roller, a connecting shaft, a shutter, and a gate;
FIG. 3 is a schematic view of the lifting assembly of the present utility model in combination with a filter plate and a shutter plate;
Fig. 4 is a schematic structural view of the collecting assembly of the present utility model.
In the figure, 1, a flashboard, 2, a gate, 3, a filter plate, 4, a connecting shaft, 5, a cleaning roller, 101, a driving roller, 102, a connecting belt I, 103, a motor I, 201, a wire collecting roller, 202, a connecting wire, 203, a connecting column, 204, a motor II, 205, a connecting belt II, 301, a collecting box, 302, an air cylinder, 303, a scraper, 401, a fixing frame, 402 and a hydraulic rod.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by one of ordinary skill 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 to 4, this embodiment provides a hydraulic engineering flashboard with impurity filtering function, including a lifting mechanism, the lifting mechanism includes a fixing frame 401 and a hydraulic rod 402, the fixing frame 401 sets up to two, and fixing frame 401 fixed mounting is at the top of flashboard 1, hydraulic rod 402 sets up to two, and hydraulic rod 402 one end fixed mounting is on fixing frame 401, the other end fixed mounting of hydraulic rod 402 is on gate 2, still include flashboard 1, gate 2, filter 3, connecting axle 4, cleaning roller 5, drive assembly and lifting unit, gate 2 slidable mounting is on flashboard 1, filter 3 slidable mounting is on flashboard 1, connecting axle 4 sets up to a plurality of, connecting axle 4 every two are a set of, and connecting axle 4 rotation is installed on flashboard 1, cleaning roller 5 sets up to a plurality of, and cleaning roller 5 fixed mounting is between each set of connecting axle 4, drive unit sets up on cleaning roller 5, lifting unit sets up on flashboard 1, can clean filter 3 through lifting unit to cleaning roller 5 department, clear away the easy attached filter of 3 surface.
In this embodiment, the transmission assembly includes a plurality of driving rollers 101, a first connecting belt 102 and a first motor 103, the driving rollers 101 are fixedly installed on the connecting shaft 4 in a penetrating manner, the first connecting belt 102 is tightly sleeved on the plurality of driving rollers 101, the first motor 103 is installed on the flashboard 1, and the output end of the first motor 103 is fixedly installed on one of the driving rollers 101.
In this embodiment, the lifting assembly includes take-up roller 201, connecting wire 202, spliced pole 203, motor two 204 and connecting belt two 205, take-up roller 201 sets up to two, and take-up roller 201 rotates through the pivot and installs on flashboard 1, connecting wire 202 twines on take-up roller 201, and the other end fixed mounting of connecting wire 202 is on filter 3, spliced pole 203 fixed mounting is between two take-up rollers 201, motor two 204 are installed on flashboard 1's top, the one end tensioning cover of connecting belt two 205 is established on spliced pole 203, the other end tensioning cover of connecting belt two 205 is established on motor two 204's output, and connecting belt two 205 runs through flashboard 1's top.
In this embodiment, still include collection subassembly, collection subassembly includes collection box 301, cylinder 302 and scraper blade 303, and collection box 301 fixed mounting is on flashboard 1, and cylinder 302 is installed on collection box 301, and scraper blade 303 and the output fixed connection of cylinder 302.
In this embodiment, the collecting tank 301 and the filter plate 3 are positioned at the same horizontal position, so that the scraping plate 303 can scrape the impurities on the surface of the filter plate 3.
In this embodiment, the bottom end of the scraper 303 is pointed, and the pointed cone can effectively remove impurities on the filter plate 3.
In this embodiment, when the shutter 1 filters the river, the gate 2 is pulled by the hydraulic rod 402 to open the shutter to allow the river to pass through, the river falls down to the lower surface through the filter plate 3, the impurities in the river are remained on the filter plate 3, after the river passes, the second motor 204 drives the second connecting belt 205 to rotate to drive the connecting post 203 to rotate, the connecting post 203 drives the take-up roller 201 to rotate, the take-up roller 201 drives the connecting wire 202 to lift the filter plate 3 to the cleaning roller 5, the first motor 103 is started to drive the driving roller 101 to rotate, the first connecting belt 102 drives the other driving rollers 101 to rotate, so that the cleaning roller 5 rotates, the second motor 204 is started again to lower the filter plate 3 to the collecting box 301, and finally the cleaned impurities on the filter plate 3 are scraped and recycled into the collecting box 301 by driving the scraper 303 through the starting cylinder 302.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.