Sewage collecting and purifying device
Technical Field
The utility model relates to the field of sewage collection and purification, in particular to a sewage collection and purification device.
Background
The sewage treatment is a process for purifying sewage to meet the water quality requirement of being discharged into a certain water body or reused. The sewage treatment is widely applied to various fields of buildings, agriculture, traffic, energy sources, petrifaction, environmental protection, urban landscapes, medical treatment, catering and the like, and the sewage treatment is increasingly carried into the daily life of common people.
The rural population of China is numerous, and the construction of the beautiful rural environment is also valued by the national and local governments, and with the continuous promotion of new rural construction work, the living standard of rural people is continuously improved, and people have higher requirements on living environment, and meanwhile, the country also requires that the rural sewage discharge and farmland irrigation reach the discharge standard, so that the rural sewage needs to be purified for reuse.
However, most of the existing sewage purification devices only have one water source channel, and water source purification is carried out by adding additives such as a purifying agent, but sewage is also divided into a plurality of types, and when the water source which is only needed to be simply filtered is discharged, a part of additives can be consumed through the additive purification tank, so that the cost of water source purification is greatly increased.
Therefore, it is necessary to provide a sewage collection and purification device to solve the above technical problems.
Disclosure of utility model
The utility model provides a sewage collecting and purifying device, which solves the problem that most sewage purifying devices cannot be classified and purified.
In order to solve the technical problems, the sewage collecting and purifying device provided by the utility model comprises an injection pipe and a collecting box;
The rotary groove is formed in the injection pipe, a steering frame is rotationally connected to the rotary groove, a connecting groove is formed in the steering frame, a rotary cylinder is fixedly connected to the top of the steering frame, and a plurality of tooth grooves are formed in the rotary cylinder;
the gear is rotationally connected to the top of the injection pipe through a rotating shaft;
The mounting plate, mounting plate fixed connection is in the outside of injection pipe, the motor is installed at the top of mounting plate, the outside of motor output shaft passes through belt pulley and drive belt transmission with the outside of pivot and is connected, the gear meshes with the inside of tooth's socket mutually, the steering frame is provided with an opening for protruding style of calligraphy.
Preferably, the top fixedly connected with support section of thick bamboo of injection pipe, the outside of rotating a section of thick bamboo is located to support section of thick bamboo cover simultaneously, and is located the top of rotating a section of thick bamboo, support section of thick bamboo is used for docking the drain.
Preferably, the outside fixedly connected with filter tube of injection pipe, the outside of injection pipe just is located the one side fixedly connected with purge tube of filter tube, the inside of filter tube and purge tube all is linked together with the rotation groove.
Preferably, a filter frame is arranged below the opening of the filter pipe, a water receiving tank I is arranged inside the filter frame, a water draining tank I is arranged inside the filter frame and the water receiving tank I at the opposite side, and the top opening of the water receiving tank I is positioned at the bottom opening of the filter pipe correspondingly.
Preferably, the filter tube is internally provided with a first filter screen groove on one side of the first water receiving groove, the activated carbon groove is formed on one side of the first filter screen groove on the inner side of the filter tube, the fine filter grooves are formed on one side of the activated carbon groove on the inner side of the filter tube, and all grooves in the filter frame are communicated with each other.
Preferably, a purification frame is arranged below the opening of the purification pipe, a water receiving tank II is arranged inside the purification frame, and a water draining tank II is arranged inside the separation side of the filtration frame and the water receiving tank II.
Preferably, a filter screen groove II is formed in the purifying pipe and located on the side of the water receiving groove II, and an additive groove is formed in the purifying pipe and located on the side of the filter screen groove II.
Compared with the related art, the sewage collecting and purifying device provided by the utility model has the following beneficial effects:
The utility model provides a sewage collecting and purifying device, which is characterized in that a driving belt and a rotating shaft are driven to rotate by starting a motor, so that a rotating cylinder is driven to rotate by a gear and a tooth socket, and a steering frame is driven to rotate, so that an opening of the steering frame rotates to a corresponding water outlet, and when people discharge sewage, a sewage purifying mode can be selected according to the content of the discharged sewage, thereby reducing the consumption of unnecessary additives and lowering the sewage purifying cost.
Drawings
FIG. 1 is a schematic view of a sewage collection and purification device according to a preferred embodiment of the present utility model;
FIG. 2 is a schematic view of an injection tube according to the present utility model;
FIG. 3 is a schematic view of a rotary trough according to the present utility model;
Fig. 4 is an enlarged schematic view of a portion a shown in fig. 3.
In the figure, the reference numerals are 1, a support cylinder, 2, a rotating cylinder, 3, an injection pipe, 4, a connecting groove, 5, a filter pipe, 6, a motor, 7, a mounting plate, 8, a rotating groove, 9, a steering frame, 10, a purifying pipe, 11, a rotating shaft, 12, tooth grooves, 13, gears, 14, a driving belt, 15, a fine filter groove, 16, an active carbon groove, 17, a filter frame, 18, a drainage groove I, 19, a filter screen groove I, 20, a water receiving groove I, 21, a water receiving groove II, 22, a purifying frame, 23, a filter screen groove II, 24, an additive groove, 25, a drainage groove II, 26 and a collecting box.
Detailed Description
The utility model will be further described with reference to the drawings and embodiments.
Referring to fig. 1, fig. 2, fig. 3, and fig. 4 in combination, fig. 1 is a schematic structural diagram of a preferred embodiment of a sewage collecting and purifying device provided by the present utility model, fig. 2 is a schematic structural diagram of an injection pipe provided by the present utility model, fig. 3 is a schematic structural diagram of a rotating tank provided by the present utility model, and fig. 4 is an enlarged schematic view of a portion a shown in fig. 1. The sewage collecting and purifying device comprises an injection pipe 3 and a collecting box 26;
The rotary groove 8 is formed in the injection pipe 3, the steering frame 9 is rotationally connected to the inside of the rotary groove 8, the connecting groove 4 is formed in the steering frame 9, the rotary cylinder 2 is fixedly connected to the top of the steering frame 9, and a plurality of tooth grooves 12 are formed in the outside of the rotary cylinder 2;
A gear 13, wherein the gear 13 is rotatably connected to the top of the injection pipe 3 through a rotating shaft 11;
The mounting plate 7, mounting plate 7 fixed connection is in the outside of injection pipe 3, motor 6 is installed at the top of mounting plate 7, the outside of motor 6 output shaft passes through belt pulley and drive belt 14 transmission with the outside of pivot 11 and is connected, gear 13 meshes with the inside of tooth's socket 12, steering frame 9 is provided with an opening for protruding style of calligraphy, the inside of rotating cylinder 2 is linked together with the inside of spread groove 4.
The top fixedly connected with support section of thick bamboo 1 of injection pipe 3, support section of thick bamboo 1 overlaps simultaneously and locates the outside of rotating section of thick bamboo 2, and is located the top of rotating section of thick bamboo 2, support section of thick bamboo 1 is used for docking the drain.
The outside fixedly connected with filter tube 5 of injection pipe 3, the outside of injection pipe 3 just is located one side fixedly connected with purifying pipe 10 of filter tube 5, the inside of filter tube 5 and purifying pipe 10 all is linked together with rotary tank 8.
The filter comprises a filter pipe 5, and is characterized in that a filter frame 17 is arranged below the opening of the filter pipe 5, a water receiving tank I20 is arranged in the filter frame 17, a water draining tank I18 is arranged in the filter frame 17 at the side away from the water receiving tank I20, and the top opening of the water receiving tank I20 is positioned at the bottom opening of the filter pipe 5 and corresponds to the bottom opening of the filter pipe 5.
The filter tube is characterized in that a filter screen groove I19 is arranged in the filter tube 5 and positioned on one side of the water receiving groove I20, an activated carbon groove 16 is arranged in the filter tube 5 and positioned on one side of the filter screen groove I19, a fine filter groove 15 is arranged in the filter tube 5 and positioned on one side of the activated carbon groove 16, and all grooves in the filter frame 17 are communicated.
The purifying device is characterized in that a purifying frame 22 is arranged below the opening of the purifying pipe 10, a water receiving tank II 21 is arranged inside the purifying frame 22, a water draining tank II 25 is arranged inside the separating side of the filtering frame 17 and the water receiving tank II 21, and the top opening of the water receiving tank II 22 is positioned at the bottom opening of the purifying pipe 10 and corresponds to the bottom opening of the purifying pipe 10.
The inside of the purifying pipe 10 and one side of the second water receiving groove 21 are provided with a second filter screen groove 23, and the inside of the purifying pipe 10 and one side of the second filter screen groove 23 are provided with an additive groove 24.
The working principle of the sewage collecting and purifying device provided by the utility model is as follows:
When sewage is discharged, a person drives the transmission belt 14 and the rotating shaft 11 to rotate through the starting motor 6 according to the type of the discharged sewage, so that the rotating cylinder 2 is driven to rotate through the gear 13 and the tooth slot 12, and the steering frame 9 is driven to rotate, and the opening of the steering frame 9 is enabled to rotate to the corresponding water outlet;
When the sewage is required to be carefully treated, the steering frame 9 rotates to the corresponding opening of the purifying pipe 10, the sewage is discharged into the second water receiving tank 21, and then is filtered by the second filter screen tank 23 and the additive tank 24 and then is discharged;
When the discharged sewage impurities are less and do not need to be carefully treated, the steering frame 9 rotates to the corresponding opening of the filtering frame 17, and the discharged sewage is filtered by the first filtering screen groove 19, the active carbon groove 16 and the fine filtering groove.
Compared with the related art, the sewage collecting and purifying device provided by the utility model has the following beneficial effects:
Through the start motor 6, drive belt 14 and pivot 11 rotate to drive through gear 13 and tooth's socket 12 and rotate a section of thick bamboo 2, and drive steering frame 9 and rotate, thereby make the opening part of steering frame 9 rotate to corresponding outlet department, thereby when making personnel discharge sewage, can select the purification mode of sewage according to the sewage content of discharging, thereby reduce the consumption of unnecessary additive, reduced sewage purification's cost.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.