Sludge dewatering device that water conservancy BIM river course ecological improvement was used
Technical Field
The utility model relates to a sludge dewatering device technical field, in particular to sludge dewatering device that water conservancy BIM river course ecological management used.
Background
Sludge is an inevitable product after sewage treatment in sewage treatment plants and sewage stations, and sludge which is not treated well enters the environment can directly bring secondary pollution to water and atmosphere, and also can form a serious threat to ecological environment and human activities, so that the sludge is very careful in treatment, the sludge can be divided into a sludge dewatering process and a sludge drying process in treatment, the respective advantages of sludge dewaterers of different types are mainly introduced below, the sewage treatment is a process for purifying the sewage so as to enable the sewage to reach the water quality requirement of draining a certain water body or reusing the water body, and the sewage treatment is widely applied to various fields of buildings, agriculture, traffic, energy, petrifaction, environmental protection, urban landscapes, medical treatment, catering and the like, and increasingly goes into daily life of common people.
The patent number 201811023018.8 discloses a sludge dewatering device for sewage treatment, a sludge dewatering device for sewage treatment includes urceolus, first inner tube, separable set, the subassembly and a drive mechanism that draws water, first inner tube accept in the urceolus, first inner tube rotate connect in the urceolus, week side of first inner tube is equipped with a plurality of through-holes, separable set including the cladding in filter cloth of first inner tube week side with be fixed in a plurality of helical blade of filter cloth, the subassembly that draws water includes the drinking-water pipe, drinking-water pipe one end stretches into in the first inner tube, the other end stretches out outside the urceolus, a drive mechanism is fixed in the urceolus top, with the drive first inner tube rotates. Mud is with the separation of water under the centrifugal force effect, and water gets into first inner tube through filter cloth and through-hole in, and the drinking-water pipe is taken out the water in the first inner tube to realize the sludge dewatering, and dehydration efficiency improves.
This sludge dewatering device that water conservancy BIM river course ecological management used has following drawback: 1. the efficiency of the device for dehydrating the sludge is reduced, so that the production efficiency of the device is reduced; 2. the device is inconvenient to collect the mud after the dehydration and leads to the inconvenient personnel of device to use. Therefore, a sludge dewatering device for water conservancy BIM river channel ecological management is provided.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims to provide a sludge dewatering device for ecological management of water conservancy BIM riverways, which can quickly dewater sludge through a dewatering mechanism and increase the production efficiency; and the sludge after dehydration is conveniently collected through the collecting mechanism, so that the problems in the background technology can be effectively solved.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a sludge dewatering device that water conservancy BIM river course ecological improvement was used, includes the bottom plate, still includes dewatering mechanism and plummer, dewatering mechanism is installed to the lateral wall of plummer, dewatering mechanism comprises riser, electronic hydraulic stem, connecting rod, pressure plate and collecting box combination, the riser of a set of symmetry is installed at the top of plummer, electronic hydraulic stem is installed to the lateral wall of riser, the connecting rod is installed to the output of electronic hydraulic stem, the collecting box is installed at the top of plummer, and the connecting rod runs through the collecting box, the pressure plate is installed to the other end of connecting rod.
Further, still include and collect the mechanism, the mechanism is collected to the lateral wall installation of plummer, collects the convenient mud collection to after the dehydration of mechanism.
Further, collect the mechanism and constitute by fixing base, collection box, electric telescopic handle and closing plate combination, the fixing base is installed to the bottom of plummer, electric telescopic handle is installed to the lateral wall of fixing base, the closing plate is installed to electric telescopic handle's output, and the closing plate runs through the lateral wall of collecting box, the collection box is installed at the top of bottom plate, and the collection box is convenient to be collected mud.
Furthermore, the collecting box runs through the top of the bearing table, and the collecting box is located at the bottom of the collecting box, so that sludge is conveniently collected.
Furthermore, the plummer is located the top of bottom plate, conveniently supports the plummer.
Compared with the prior art, the utility model discloses following beneficial effect has: 1. the top of the bottom plate is provided with a bearing platform, the outer side wall of the bearing platform is provided with a dewatering mechanism, the dewatering mechanism consists of a vertical plate, an electric hydraulic rod, a connecting rod, a pressure plate and a collecting box, the top of the bearing platform is provided with a set of symmetrical vertical plates, the outer side wall of the vertical plate is provided with the electric hydraulic rod, so that the connecting rod of the output end of the electric hydraulic rod can be driven to move by the electric hydraulic rod, the collecting box is arranged at the top of the bearing platform, the connecting rod penetrates through the outer side wall of the collecting box, so that the electric hydraulic rod can drive the connecting rod to move on the outer side wall of the collecting box, the other end of the connecting rod is provided with the pressure plate, the pressure plate is positioned in the collecting box, so that sludge is placed between the pressure plates, the pressure plate extrudes the sludge to dewater the sludge, the outer side wall of the collecting box is provided with a drain valve, the sewage is discharged through the drain valve, so that the sludge can be quickly dewatered, the production efficiency is increased;
2. the collecting mechanism is installed to the lateral wall of plummer, collecting mechanism is by the fixing base, collect the box, electric telescopic handle and closing plate combination constitute, the fixing base is installed at the top of plummer, the fixing base is used for fixing electric telescopic handle, because the closing plate is installed to electric telescopic handle's output, thereby electric telescopic handle can drive the closing plate removal of its output, because the closing plate runs through the lateral wall of collecting box, after sludge dewatering, electric telescopic handle drives the closing plate and removes, make the closing plate shift out from the inside wall of collecting box, because the collecting box is installed at the top of bottom plate, it is located the bottom of collecting box to collect the box, thereby sludge after the dehydration falls into in collecting the box, make things convenient for personnel to collect.
Drawings
Figure 1 is the utility model relates to a water conservancy BIM river course ecological management uses sludge dewatering device's overall structure schematic diagram.
Fig. 2 is the utility model relates to a water conservancy BIM river course ecological management uses sludge dewatering device's collection mechanism structural schematic.
In the figure: 1. a base plate; 2. a collection mechanism; 201. a fixed seat; 202. a collection box; 203. an electric telescopic rod; 204. a sealing plate; 3. a bearing table; 4. a dewatering mechanism; 401. a vertical plate; 402. an electro-hydraulic lever; 403. a connecting rod; 404. a pressurizing plate; 405. and a collection box.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1-2, a sludge dewatering device that water conservancy BIM river course ecological management used, including bottom plate 1, still include dewatering mechanism 4 and plummer 3, dewatering mechanism 4 is installed to the lateral wall of plummer 3, dewatering mechanism 4 comprises riser 401, electronic hydraulic stem 402, connecting rod 403, pressure plate 404 and collecting box 405 combination, a set of symmetrical riser 401 is installed at the top of plummer 3, electronic hydraulic stem 402 is installed to the lateral wall of riser 401, connecting rod 403 is installed to the output of electronic hydraulic stem 402, collecting box 405 is installed at the top of plummer 3, and connecting rod 403 runs through collecting box 405, pressure plate 404 is installed to the other end of connecting rod 403.
Wherein, still including collecting mechanism 2, collecting mechanism 2 is installed to the lateral wall of plummer 3, and collecting mechanism 2 conveniently collects the mud after the dehydration.
Wherein, collect mechanism 2 and constitute by fixing base 201, collection box 202, electric telescopic handle 203 and closing plate 204 combination, fixing base 201 is installed to the bottom of plummer 3, electric telescopic handle 203 is installed to the lateral wall of fixing base 201, closing plate 204 is installed to electric telescopic handle 203's output, and closing plate 204 runs through the lateral wall of collecting box 405, collection box 202 is installed at the top of bottom plate 1, and collection box 202 is convenient to be collected mud.
Wherein, the collection box 405 runs through the top of the bearing table 3, and the collection box 202 is positioned at the bottom of the collection box 405, so as to facilitate the collection of the sludge.
Wherein, plummer 3 is located the top of bottom plate 1, conveniently supports plummer 3.
It should be noted that, the utility model relates to a sludge dewatering device for water conservancy BIM river ecological management, in operation, the plummer 3 is installed at the top of bottom plate 1, dewatering mechanism 4 is installed to the lateral wall of plummer 3, dewatering mechanism 4 comprises riser 401, electronic hydraulic stem 402, connecting rod 403, pressure plate 404 and collecting box 405 combination, a set of symmetrical riser 401 is installed at the top of plummer 3, electronic hydraulic stem 402 is installed to the lateral wall of riser 401, thereby connecting rod 403 that can drive its output for electronic hydraulic stem 402 moves, collecting box 405 is installed at the top of plummer 3, connecting rod 403 runs through the lateral wall of collecting box 405, thereby electronic hydraulic stem 402 can drive connecting rod 403 to move at the lateral wall of collecting box 405, pressure plate 404 is installed to the other end of connecting rod 403, pressure plate 404 is located collecting box 405, thereby place mud between pressure plate 404, the pressurizing plate 404 extrudes sludge to dewater the sludge, the outer side wall of the collecting box 405 is provided with a drain valve, sewage is discharged through the drain valve, thereby the sludge can be quickly dewatered, the production efficiency is increased, the outer side wall of the bearing table 3 is provided with the collecting mechanism 2, the collecting mechanism 2 is composed of a fixed seat 201, a collecting box 202, an electric telescopic rod 203 and a sealing plate 204, the fixed seat 201 is arranged at the top of the bearing table 3, the fixed seat 201 is used for fixing the electric telescopic rod 203, the sealing plate 204 is arranged at the output end of the electric telescopic rod 203, thereby the electric telescopic rod 203 can drive the sealing plate 204 at the output end to move, because the sealing plate 204 penetrates through the outer side wall of the collecting box 405, after the sludge is dewatered, the electric telescopic rod 203 drives the sealing plate 204 to move, the sealing plate 204 is moved out from the inner side wall of the collecting box 405, because the collecting box 202 is arranged at the top of the bottom plate 1, the collection box 202 is positioned at the bottom of the collection box 405, so that the dewatered sludge falls into the collection box 202 for collection by personnel.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.