Roof rainwater collection and treatment device convenient to install
Technical Field
The utility model relates to the technical field of rainwater collection and treatment, in particular to a roof rainwater collection and treatment device convenient to install.
Background
The rainwater is collected, and after treatment, the water meeting a certain water quality index is recycled, so that the rainwater collecting and treating process can improve the utilization rate of rainwater, improve the utilization of water resources, relieve the pressure of the water resources, collect and treat the rainwater for use in daily life, and the rainwater collecting and treating device is energy-saving and environment-friendly, is widely popularized at present, can be actively used for collecting and treating the rainwater in many families and then is used in daily life, and is particularly needed for roof rainwater collecting and treating devices convenient to install.
But current roof rainwater collection and treatment device convenient to installation, most collection and treatment device, when collecting the rainwater, unable dead branch fallen leaves in the rainwater of talkbacking separate out, very troublesome like this when the follow-up rainwater that uses, the rainwater can't directly use, and secondly most collection department device, silt in the rainwater also can't filter out, and such rainwater availability is lower.
Disclosure of utility model
The utility model aims to provide a roof rainwater collecting and processing device convenient to install, which solves the problems that most of the existing roof rainwater collecting and processing devices convenient to install, when collecting rainwater, dead branches and fallen leaves in the rainwater cannot be separated, so that the subsequent rainwater use is troublesome, the rainwater cannot be directly used, and the sediment in the rainwater cannot be filtered out by most of collecting devices, so that the rainwater availability is low.
The roof rainwater collecting and treating device comprises a wall body, wherein mounting blocks are arranged on the surfaces of two sides of the wall body, a first bolt is arranged at one end of each mounting block, a water collecting plate is arranged at one end of each mounting block, a supporting plate is fixedly connected to the lower end of each water collecting plate, a second bolt is arranged at one end of each supporting plate, an isolating mechanism is arranged in each water collecting plate, and a filtering mechanism is arranged at the lower end of each water collecting plate;
The isolation mechanism comprises a separation plate, a water through hole, a protective shell, a motor, a bearing, a first screw rod, a pushing plate and a drain pipe, wherein the separation plate is fixedly installed in the water collecting plate, the water through hole is formed in one side surface of the separation plate, the protective shell is fixedly installed on one side surface of the water collecting plate, the motor is fixedly installed on one side surface of the water collecting plate, the bearings are arranged at two ends of the water collecting plate, one end of each bearing is provided with the first screw rod, one end of each first screw rod is connected with the pushing plate, and one side surface of the water collecting plate is fixedly connected with the drain pipe.
Preferably, the supporting plate is used for supporting the water collecting plate, so that overall stability is improved, and the first screw rod and the water collecting plate form a rotating structure through the bearing.
Preferably, the water through holes are formed in the surface of the partition plate at equal intervals, and the partition plate is used for separating out dead branches and fallen leaves in rainwater.
Preferably, the filter mechanism comprises a drain pipe, a chute, a slide block, a connecting plate, a filter screen, a connecting groove, a second screw rod and a nut, wherein the drain pipe is fixedly connected with the lower end of the water collecting plate, the chute is arranged at the two ends of the drain pipe, the slide block is slidingly connected with the inside of the chute, one side surface of the slide block is fixedly connected with the connecting plate, one end of the connecting plate is provided with the filter screen, the connecting groove is arranged on one side surface of the water collecting plate, the second screw rod is welded on one side surface of the slide block, and the nut is arranged at one end of the second screw rod.
Preferably, the sliding block and the water collecting plate form a sliding structure through a sliding groove, and one end of the second screw rod penetrates through the connecting groove to be in threaded connection with the nut.
Compared with the prior art, the roof rainwater collecting and treating device convenient to install has the beneficial effects that through the arrangement of the partition plate, the water through hole, the protective shell, the motor, the bearing, the first screw rod, the pushing plate and the drain pipe, rainwater enters the water collecting plate, when the rainwater flows downwards, the water flows downwards through the water through hole, the partition plate separates out dead branches and fallen leaves in the rainwater, when the dead branches and fallen leaves are cleaned, the motor is started to enable the first screw rod to rotate, the pushing plate in threaded connection with the first screw rod moves left and right to push the dead branches and fallen leaves on the partition plate into the drain pipe, so that the dead branches and fallen leaves can be discharged through the drain pipe, the collecting and cleaning of the dead branches and fallen leaves are facilitated, when the rainwater flows into the drain pipe, the downward rainwater flows into the filter screen, the sediment and other impurities in the rainwater can be filtered out through the filter screen, the filtered rainwater can be discharged into the water draining pipe through the drain pipe, and the drain pipe can be conveniently removed, and the filter screen can be quickly replaced through the drain pipe, and the filter screen can be quickly cleaned.
Drawings
FIG. 1 is a schematic diagram of a side view of the present utility model;
FIG. 2 is a schematic diagram of an isolation mechanism according to the present utility model;
FIG. 3 is a schematic diagram of a filtering mechanism according to the present utility model;
FIG. 4 is a schematic view of the mating structure of the mounting block and the first bolt of the present utility model;
Fig. 5 is an enlarged schematic view of the structure of fig. 3a according to the present utility model.
In the figure, 1, a wall body, 2, an installation block, 3, a first bolt, 4, a water collecting plate, 5, a supporting plate, 6, a second bolt, 7, an isolation mechanism, 701, a partition plate, 702, a water through hole, 703, a protective shell, 704, a motor, 705, a bearing, 706, a first screw rod, 707, a pushing plate, 708, a blow-off pipe, 8, a filtering mechanism, 801, a drain pipe, 802, a chute, 803, a sliding block, 804, a connecting plate, 805, a filter screen, 806, a connecting groove, 807, a second screw rod, 808 and a nut.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. 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.
Referring to fig. 1-5, the utility model provides a technical scheme that a roof rainwater collecting and treating device convenient to install comprises a wall body 1, wherein installation blocks 2 are arranged on the surfaces of two sides of the wall body 1, a first bolt 3 is arranged at one end of each installation block 2, a water collecting plate 4 is arranged at one end of each installation block 2, a supporting plate 5 is fixedly connected to the lower end of each water collecting plate 4, a second bolt 6 is arranged at one end of each supporting plate 5, an isolation mechanism 7 is arranged in each water collecting plate 4, and a filtering mechanism 8 is arranged at the lower end of each water collecting plate 4;
The isolation mechanism 7 comprises a partition plate 701, a water through hole 702, a protective shell 703, a motor 704, a bearing 705, a first screw 706, a pushing plate 707 and a drain pipe 708, wherein the partition plate 701 is fixedly arranged in the water collecting plate 4, the water through hole 702 is formed in one side surface of the partition plate 701, the protective shell 703 is fixedly arranged on one side surface of the water collecting plate 4, the motor 704 is fixedly arranged on one side surface of the water collecting plate 4, the bearings 705 are arranged at two ends of the water collecting plate 4, the first screw 706 is arranged at one end of the bearing 705, the pushing plate 707 is connected with the drain pipe 708 at one side surface of the water collecting plate 4, the drain pipe 708 is fixedly connected with the bearing 705 through the partition plate 701, the water through hole 702, the protective shell 703, the motor 704, the bearing 705, the first screw 706, the pushing plate 707 and the drain pipe 708, when collecting rainwater, the rainwater enters the water collecting plate 4, the rainwater 707 flows downwards through the water through hole 702, and sundries such as dead branches and fallen leaves in the rainwater can be separated by the partition plate 701, thus the treatment of the rainwater is facilitated, the utilization is improved, the utilization rate of the rainwater is improved, the utilization rate is improved, the first screw 706 is more convenient to clean the impurities can be removed by the rotation of the bearing 706, and the dry sundries can be separated by the rotation, and the dry sundries can move easily, and the impurities can move by the screw 706, and move, and the drain pipe 706 are more conveniently and can be conveniently and easily separated by the rotation and move by the screw and the screw.
Further, the supporting plate 5 is used for supporting the water collecting plate 4, overall stability is improved, the first screw 706 and the water collecting plate 4 form a rotating structure through the bearing 705, the first screw 706 rotates through the arrangement of the first screw 706, the pushing plate 707 in threaded connection with one end of the first screw 706 moves left and right, and the branches and leaves can be pushed into the drain pipe 708.
Further, the water through holes 702 are formed in the surface of the partition plate 701 at equal intervals, the partition plate 701 is used for separating out dead branches and fallen leaves in rainwater, the partition plate 701 can be used for separating out the dead branches and fallen leaves in bar rainwater through the arrangement of the partition plate 701, separation treatment on the dead branches and fallen leaves is facilitated, and treatment on rainwater is also facilitated.
Further, filtering mechanism 8 includes drain pipe 801, spout 802, slider 803, connecting plate 804, filter screen 805, spread groove 806, second screw rod 807 and nut 808, drain pipe 801 is fixedly connected with to the lower extreme of water collecting plate 4, spout 802 has been seted up at the both ends of drain pipe 801, the inside sliding connection of spout 802 has slider 803, a side fixed surface of slider 803 is connected with connecting plate 804, the one end of connecting plate 804 is provided with filter screen 805, spread groove 806 has been seted up on one side surface of water collecting plate 4, the one side surface welding of slider 803 has second screw rod 807, the one end of second screw rod 807 is provided with nut 808, through drain pipe 801, spout 802, slider 803, connecting plate 804, filter screen 805, the setting of spread groove 806, second screw rod 807 and nut 808, rainwater inflow drain pipe 801, when the rainwater inflow filter screen 805 of downflow, filter out silt in the rainwater, the availability of rainwater has been improved, when clearance and change filter screen 805, loosen 808, outwards pulling connecting plate 804, the slider 807 moves in spout 802, the spread groove 807 moves in the spread groove 806, the connecting plate 804 is just so that the connecting plate 803 is moved on the connecting plate 803, the side of the drain pipe 801 is moved, the rainwater can be filtered out through the filter screen 801, the filter screen 801 is convenient to change, the rainwater can be filtered down, and the water can be filtered down, and the structure is convenient after the drain pipe is changed, and the rainwater can be filtered down, and the drain 801 has been changed, and the rainwater can be filtered.
Further, the sliding block 803 forms a sliding structure with the water collecting plate 4 through the sliding groove 802, one end of the second screw 807 penetrates through the connecting groove 806 to be in threaded connection with the nut 808, and through the arrangement of the sliding groove 802 and the sliding block 803, the sliding block 803 moves back and forth in the sliding groove 802 to drive the connecting plate 804 to move out of or enter the water discharging pipe 801, so that the filter screen 805 is convenient to clean and replace.
Working principle: when the water collecting plate 4 is installed, the water collecting plate 4 and the supporting plate 5 can be quickly and conveniently fixedly installed on the wall body 1 through the installation blocks 2, the first bolts 3 and the second bolts 6, the supporting plate 5 can support the water collecting plate 4, the overall stability is improved, when rainwater is collected, the rainwater enters the water collecting plate 4, the rainwater flowing downwards can flow downwards through the water through holes 702, sundries such as dead branches and fallen leaves in the rainwater can be isolated by the partition plates 701, the rainwater treatment is convenient, the rainwater utilization rate is improved, when sundries such as dead branches and fallen leaves are cleaned, the motor 704 is started, the bearing 705 is rotated by the motor 704, the first screw 706 starts to rotate, the pushing plate 707 in threaded connection with one end of the first screw 706 starts to move leftwards and rightwards, and the pushing plate 707 moving leftwards and rightwards can push sundries such as dead branches and fallen leaves into the sewage discharging pipe 708, the separation treatment of sundries such as dead branches, fallen leaves and the like is convenient, the cleaning is more convenient, the environment is protected, rainwater flows into the drain pipe 801, when the downward flowing rainwater flows into the filter screen 805, the filter screen 805 can filter out sediment in the rainwater, the utilization rate of the rainwater is improved, when the filter screen 805 is cleaned and replaced, the nut 808 is loosened, the connecting plate 804 is pulled outwards, the sliding block 803 moves in the sliding groove 802 at the moment, the second screw 807 moves in the connecting groove 806, the connecting plate 804 drives the filter screen 805 to move out of the drain pipe 801, the cleaning and replacement of the filter screen 805 are convenient, the connecting plate 804 is pushed back into the drain pipe 801 after the replacement, the nut 808 is screwed on to finish the fixation, the filter structure can well filter the rainwater, the utilization rate of the rainwater is improved, the filtered rainwater flows out of the drain pipe 801 downward and enters the reservoir, the rainwater can be conveniently collected and treated.
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.