Energy-conserving roofing of assembled constructs accessory
Technical Field
The invention relates to the technical field of building construction accessories, in particular to an assembly type energy-saving roof structure accessory.
Background
Building components are the main part form of a house, including the structural component of form such as post, roof beam, board, wall, door and window, along with people's safety consciousness is higher and higher, the quality of house is the factor of leading consideration in people's house.
At present someone can plant green plant cultivated in a pot in order to afforest, but when raining, energy-conserving roofing of assembled can be because of not sheltering from too much rainwater for green plant cultivated in a pot, and lead to green plant cultivated in a pot to die because of water is crossed, and the energy-conserving roofing of assembled that has now also does not have environmental protection and energy saving's mechanism, so can't carry out fine utilization to the rainwater, so that the cost of water use is too big, and the energy-conserving roof of assembled carries out the accessory fixed to the drain pipe, most only has a fixed stay's mode, can't use in a flexible way.
Disclosure of Invention
The invention aims to provide an assembly type energy-saving roof structure fitting to solve the problems that rainwater is not shielded, is utilized and cannot be flexibly used in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: an assembly type energy-saving roof structure accessory comprises a roof, a rotating plate and a control circuit board, wherein the bottom end of the roof is fixedly connected with a wall body, water collecting openings are embedded and connected with two sides of the roof, a cross beam is fixedly connected with the middle of the top of the roof, placing grooves are embedded and connected with two sides of the top of the roof, wherein,
the middle of the placing groove is movably connected with a pot plant, the middle of two sides of the roof is fixedly connected with a large connecting piece, the top of the large connecting piece is movably connected with a lifting rod, the top of the lifting rod is movably connected with a small connecting piece, the top end of the small connecting piece is fixedly connected with a rotating plate, the tops of two sides of the roof are embedded and connected with a rainfall sensor, the middle of the lifting rod is fixedly connected with a telescopic cylinder, the periphery of the telescopic cylinder is fixedly connected with waterproof paint, and the middle of the telescopic cylinder is embedded and connected with an inner rod;
the middle of the bottom of the rotating plate is fixedly connected with a watering device, the bottom of the cross beam is fixedly connected with an arc-shaped groove, the top of the arc-shaped groove is connected with a coarse strainer in an embedded manner, the bottom of the arc-shaped groove is fixedly connected with a sewage discharge pipe, the middle of the interior of the roof is fixedly connected with a water storage cavity, the top of the water storage cavity is connected with a water suction pump in an embedded manner, the bottom of the water suction pump is fixedly connected with a water suction pipe, the right side of the water storage cavity is connected with a fine filter screen in an embedded manner, the top end of the water suction pump is connected with a control circuit board in an overlapped manner, the right end of the control circuit board is connected with a timer in an overlapped manner, and the periphery of the water storage cavity is fixedly connected with a waterproof double-layer plate;
the bottom of the water collecting opening is embedded and connected with a water discharge pipe, the right side of the water discharge pipe is fixedly connected with a first fixing ring, the left side of the drain pipe is fixedly connected with a second fixing ring, the left side of the second fixing ring is connected with a middle fixing rod in a nested manner, the top end of the middle fixing rod is connected with an inclined fixing rod in an overlapping way, the top end of the inclined fixing rod is connected with a top fixing plate in an overlapping way, the middle of the top fixing plate is connected with a screw in a penetrating way, the top of the drain pipe is fixedly connected with a limiting plate, two ends of the first fixing ring are connected with a first threaded hole in a penetrating way, two ends of the second fixing ring are connected with a second threaded hole in a penetrating way, two ends of the middle fixing rod are connected with a third threaded hole in a penetrating way, the right end of the middle fixing rod is fixedly connected with a binding plate, the left side of the top of the first fixing ring is connected with a bolt in an embedded mode, a nut is arranged on a movable side slope on the right side of the top of the middle fixing rod, and a fixing hole is connected between the two ends of the attaching plate in a penetrating mode.
Preferably, the roof and the rotor plate are connected through hinge columns, the lifting rod is of a rectangular structure with the top arc-shaped bottom plane, the telescopic cylinder and the inner rod are provided with circular holes and are respectively connected with the large connecting piece and the small connecting piece in a penetrating mode.
Preferably, the irrigator and the water pump are connected through a hose, the mesh diameter of the fine filter screen is smaller than that of the coarse filter screen, and the drain pipe consists of two obliquely arranged water pipes.
Preferably, the first fixing ring and the second fixing ring are identical in appearance size, the first threaded hole and the second threaded hole are respectively provided with six threaded holes which are distributed symmetrically from top to bottom, one ends of the middle fixing rod, the oblique fixing rod and the top fixing plate are all provided with C-shaped shapes, and the length of the inner wall of the middle fixing rod is matched with the length of the outer wall of the fixing ring.
Compared with the prior art, the invention has the beneficial effects that:
(1) the assembled energy-saving roof structure accessory is characterized in that a protection mechanism is arranged, a user can plant green plants on a pot plant and place the pot plant in a placing groove after planting, the placing groove is inverted trapezoidal in shape, so that the user can sweep out residual garbage in the placing groove along the inclined edge, after the green plant pot plant is placed in the placing groove, a control circuit board can detect the size of rainwater through a rainfall sensor, when the rainwater is overlarge, the control circuit board can control a lifting rod to retract, a rotating plate connected with the lifting rod through a small connecting piece can also rotate along with the lifting rod, the top end of the green plant pot plant can be covered after the rotating plate rotates downwards along a hinge column, the phenomenon that the green plant pot plant is too dead due to overlarge rainwater is avoided, and meanwhile, the rainwater flowing into the placing groove from the roof can flow into the roof, the water flows into the water collecting opening from the placing groove and is discharged, wherein the surface of the lifting rod is provided with waterproof paint, so that rusting caused by excessive water on the surface of the lifting rod is avoided, and the lifting rod is arranged in an arc shape at the top, so that the rainwater is prevented from being accumulated at the top of the lifting rod, and the green potted plant can be shielded and protected by the protection mechanism through the rotating plate, so that the protection effect is greatly improved;
(2) the assembled energy-saving roof construction accessory is characterized in that an energy-saving mechanism is arranged, most rainwater on the top of the roof can flow into a water collecting opening in rainy days and then is discharged downwards through a water discharging pipe, and a small part of rainwater can flow into the arc-shaped groove along a cross beam, so that large sundries cannot flow into the arc-shaped groove due to the fact that openings on two sides of the top of the arc-shaped groove are small, an inclined coarse strainer is arranged on the top of the arc-shaped groove, the sundries can be better prevented from entering the arc-shaped groove, and due to the inclined arrangement of the coarse strainer, the sundries are not easy to block the top of the coarse strainer under the rainwater washing, when rainwater and small sundries enter the arc-shaped groove, the rainwater and the small sundries can flow into a sewage discharging pipe along the bottom of the arc-shaped groove, and because the sewage discharging pipe is inclined, the rainwater and the small sundries flow along the inner wall of the bottom of the sewage discharging pipe when flowing, and correspondingly when the rainwater and the small sundries flow, can pass through the fine filter screen, the mesh of the fine filter screen is smaller, only rainwater can pass through, thereby the effect of liquid-solid separation is achieved, the remained small sundries can gradually flow into the water collecting port along the inclination of the sewage discharge pipe and then flow into the drain pipe along with other rainwater to be discharged, when the rainwater flows into the water storage cavity through the filtration of the fine filter screen, the control circuit board can control the water suction pump to be started through the timer, after the water suction pump is started, the water in the water storage cavity can be extracted through the water suction pipe and is transmitted to the irrigator through the hose, then the green plant pot plants at the bottom are irrigated by the irrigator, so that the green plant pot plants can supplement water better, and when the control circuit board senses the rainwater through the rainfall sensor, the water suction pump can not be started, the condition that the water is too much when the rainwater is irrigated is avoided, the rainwater is filtered and utilized, and the rainwater is irrigated green plant at regular time, thereby achieving good effects of environmental protection and energy conservation;
(3) the assembled energy-saving roof structure accessory is characterized in that a lap joint mechanism is arranged, when a drain pipe is to be fixed, a limiting plate fixed with the drain pipe is firstly placed at the bottom of a roof, then the roof is arranged at the top of the roof in sequence, after the roof is built, a user attaches a first fixing ring and a second fixing ring along the outer wall of the drain pipe, the latter is attached to the outer wall of the drain pipe, two (or four) bolts penetrate through a first threaded hole and a second threaded hole in the middle (or two sides) of the roof through the installation position, the bolts are screwed and fixed at the corresponding outer wall of the drain pipe through nuts after penetrating, one end of a middle fixing rod, an inclined fixing rod and a top fixing plate is arranged in a C shape, two third threaded holes are formed in the C shape, the top fixing plate is firstly nested at the outer wall of the first fixing ring and the second threaded hole, and the third threaded holes of the top fixing plate are aligned with the first threaded holes and the second threaded holes of the top of the fixing rings (the first fixing ring and the second fixing ring), after aligning, a bolt penetrates through a top threaded hole and a third threaded hole of the top fixing plate and is screwed and fixed through a nut, then a screw penetrates through a hole of the top fixing plate and a hole of the limiting plate to be fixed with the roof, another screw directly penetrates through a hole of the top fixing plate to be fixed with the roof, so that the drain pipe can be secondarily fixed through the screw and the top fixing plate under the limiting of the limiting plate, then the third threaded hole of the oblique fixing rod is aligned with a bottom threaded hole of the fixing ring, after aligning, the oblique fixing rod is fixed through the bolt and the nut, after fixing, the screw penetrates through a hole in the bottom of the oblique fixing rod and is embedded into the wall to be fixed, the bottom of the rear drain pipe is fixed or is aligned and fixed with a middle threaded hole of the fixing ring through the middle fixing rod, and then the screw penetrates through a fixing hole of the attaching plate to be fixed with the wall, and therefore a user can fix an accessory (the middle fixing rod) overlapped between the fixing ring and the roof (wall) according to actual conditions, Diagonal bracing and top fixing plate) for the user to use the accessory more flexibly.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is an enlarged schematic view of the structure at the position A of the present invention;
FIG. 3 is an enlarged view of the structure of the present invention at B;
FIG. 4 is a schematic view of a vertical surface of the retaining ring of the present invention;
FIG. 5 is a side elevation view of the lifter of the present invention.
In the figure: 1. a roof; 2. a wall body; 3. an arc-shaped slot; 4. a cross beam; 5. coarse filtration; 6. a blow-off pipe; 7. a rainfall sensor; 8. a rotating plate; 9. a watering device; 10. a lifting rod; 101. a telescopic cylinder; 102. an inner rod; 103. waterproof paint; 11. a placement groove; 12. potting; 13. a small connector; 14. a drain pipe; 15. a water storage cavity; 16. a first fixing ring; 17. a second fixing ring; 18. a water collection port; 19. a large connecting piece; 20. a water pump; 21. a fine filter screen; 22. a timer; 23. a waterproof double-layer plate; 24. a water pumping pipe; 25. a control circuit board; 26. a middle fixing rod; 27. a screw; 28. obliquely fixing the rod; 29. a limiting plate; 30. a top fixing plate; 31. attaching a plate; 32. a first threaded hole; 33. a second threaded hole; 34. a third threaded hole; 35. a fixing hole; 36. a bolt; 37. and (4) a nut.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: an assembly type energy-saving roof structural part, 1, a roof; 2. a wall body; 3. an arc-shaped slot; 4. a cross beam; 5. coarse filtration; 6. a blow-off pipe; 7. a rainfall sensor; 8. a rotating plate; 9. a watering device; 10. a lifting rod; 101. a telescopic cylinder; 102. an inner rod; 103. waterproof paint; 11. a placement groove; 12. potting; 13. a small connector; 14. a drain pipe; 15. a water storage cavity; 16. a first fixing ring; 17. a second fixing ring; 18. a water collection port; 19. a large connecting piece; 20. a water pump; 21. a fine filter screen; 22. a timer; 23. a waterproof double-layer plate; 24. a water pumping pipe; 25. a control circuit board; 26. a middle fixing rod; 27. a screw; 28. obliquely fixing the rod; 29. a limiting plate; 30. a top fixing plate; 31. attaching a plate; 32. a first threaded hole; 33. a second threaded hole; 34. a third threaded hole; 35. a fixing hole; 36. a bolt; 37. the bottom end of the roof 1 is fixedly connected with a wall body 2, the two sides of the roof 1 are embedded and connected with water collecting ports 18, the middle of the top of the roof 1 is fixedly connected with a cross beam 4, the two sides of the top of the roof 1 are embedded and connected with placing grooves 11, wherein,
the roof 1 and the rotating plate 8 are connected through a hinge column, the lifting rod 10 is in a rectangular structure with an arc top and a plane bottom, the telescopic cylinder 101 and the inner rod 102 are provided with circular holes and are respectively connected with the large connecting piece 19 and the small connecting piece 13 in a penetrating way, the roof 1, the rainfall sensor 7, the rotating plate 8, the lifting rod 10, the placing groove 11 and the pot 12 jointly form a protection mechanism, a user can plant green plants on the pot 12 and place the pot 12 in the placing groove 11 after planting, the placing groove 11 is in an inverted trapezoid shape, so that the user can conveniently sweep out garbage remained in the placing groove 11 along the bevel edge, after the pot 12 is placed in the placing groove 11, the control circuit board 25 can detect the size of rainwater through the rainfall sensor 7, when the rainwater is too large, the control circuit board 25 can control the lifting rod 10 to retract, make the rotor plate 8 of being connected through little connecting piece 13 and lifter 10 also can be along with rotating together, will hide green 12 tops cultivated in a pot after rotor plate 8 rotates downwards along the hinge post, it is dead to have avoided the too big rainwater to lead to green cultivated in a pot 12 because of the rainwater that receives, simultaneously from roof 1 to the rainwater of inflow can flow in standing groove 11, it discharges to flow in 18 departments of catchmenting from standing groove 11 again, wherein the surface of lifter 10 is equipped with waterproof coating 103, avoided lifter 10 surface water too much to lead to rustting, and lifter 10 is top curved setting, avoided the rainwater to produce the condition of piling up at lifter 10 top, so protection mechanism just can shelter from the protection to green cultivated in a pot 12 through rotor plate 8, thereby the protection effect has been improved greatly.
Preferably, the irrigation device 9 and the water pump 20 are connected through a hose, the mesh diameter of the fine filter screen 21 is smaller than that of the coarse filter screen 5, the drain pipe 6 consists of two inclined water pipes, the arc-shaped groove 3, the coarse filter screen 5, the drain pipe 6, the irrigation device 9, the water pump 20, the fine filter screen 21 and the timer 22 jointly form an energy-saving mechanism, most rainwater on the top of the roof 1 can flow into the water collecting port 18 and then be discharged downwards through the drain pipe 14 in rainy days, a small part of rainwater can flow into the arc-shaped groove 3 along the cross beam 4, and large sundries cannot flow into the arc-shaped groove 3 due to the fact that ports on two sides of the top of the arc-shaped groove 3 are small, the top of the arc-shaped groove 3 is provided with the inclined coarse filter screen 5, so that the sundries are not easy to block at the top of the coarse filter screen 5 under the rain wash, when rainwater and small impurities enter the arc-shaped groove 3, the rainwater and the small impurities flow along the bottom of the arc-shaped groove 3 and flow into the sewage discharge pipe 6, and the sewage discharge pipe 6 is inclined, so that the rainwater and the small impurities flow along the inner wall of the bottom of the sewage discharge pipe 6 when flowing, correspondingly, the rainwater can pass through the fine filter screen 21, the meshes of the fine filter screen 21 are small, and the rainwater can only pass through the fine filter screen 21, so that the liquid-solid separation effect is achieved, the remaining small impurities gradually flow into the water collecting port 18 along the inclination of the sewage discharge pipe 6 and then flow into the drain pipe 14 along with other rainwater to be discharged, when the rainwater flows into the water storage cavity 15 after being filtered by the fine filter screen 21, the control circuit board 25 controls the water suction pump 20 to be started through the timer 22, after the water suction pump 20 is started, the water in the water storage cavity 15 is sucked through the water suction pipe 24 and is transmitted to the watering device 9 through the hose, then water by watering ware 9 green planting 12 cultivated in a pot to the bottom to green planting 12 cultivated in a pot can be better supply moisture, and control circuit board 25 is sensing when the rainwater through rainfall sensor 7, can not start suction pump 20, water when having avoided raining and lead to the too much condition of water, filter the utilization with the rainwater moreover, and water after will utilizing regularly waters green planting, thereby has played good environmental protection and energy saving effect.
Preferably, the first fixing ring 16 and the second fixing ring 17 have the same size, the first threaded holes 32 and the second threaded holes 33 are respectively provided with six and are distributed symmetrically from top to bottom, one end of each of the first middle fixing rod 26, the second oblique fixing rod 28 and the top fixing plate 30 is provided with a C shape, the length of the inner wall of each of the first threaded holes 32 and the second threaded holes 33 is matched with the length of the outer wall of the second fixing ring 17, the first fixing ring 16, the second fixing ring 17, the middle fixing rod 26, the oblique fixing rods 28, the limiting plate 29, the top fixing plate 30 and the fitting plate 31 jointly form a lap joint mechanism, when the drainage pipe 14 is to be fixed, the limiting plate 29 fixed with the drainage pipe 14 is firstly placed at the bottom of the roof 1, then the top of the roof 1 is sequentially arranged, after the roof 1 is built, a user then fits the first fixing ring 16 and the second fixing ring 17 along the outer wall of the drainage pipe 14, and the latter fits through the first threaded holes 32 and the second threaded holes 33 in the middle (or on both sides) through two (or four) bolts 36, after the water pipe passes through the top fixing plate 30, the top fixing plate 30 is embedded at the outer wall of the second fixing ring 17, the threaded hole three 34 of the top fixing plate 30 is aligned with the top threaded holes (the threaded hole one 32 and the threaded hole two 33) of the fixing ring (the first fixing ring 16 and the second fixing ring 17), after the alignment, the bolt 36 passes through the top threaded hole and the threaded hole three 34 of the top fixing plate 30 and is screwed and fixed through the nut 37, then the bolt 27 passes through the hole of the top fixing plate 30 and the hole of the limiting plate 29 to be fixed with the roof 1, the other bolt 27 directly passes through the hole of the top fixing plate 30 to be fixed with the roof 1, so that the water pipe 14 is limited by the limiting plate 29, the fixing device can be fixed for the second time through the screw 27 and the top fixing plate 30, then the threaded hole three 34 of the oblique fixing rod 28 is aligned with the threaded hole at the bottom of the fixing ring, the fixing is carried out through the bolt 36 and the nut 37 after the alignment, the screw 27 penetrates through the hole at the bottom of the oblique fixing rod 28 after the fixing and is embedded into the wall body 2 for fixing, the bottom of the rear drain pipe 14 is fixed or the middle threaded hole of the fixing ring is aligned and fixed through the middle fixing rod 26, then the screw 27 penetrates through the fixing hole 35 of the attaching plate 31 to be fixed with the wall body 2, and therefore a user can replace and install the overlapped accessories (the middle fixing rod 26, the oblique fixing rod 28 and the top fixing plate 30) between the fixing ring and the roof 1 (the wall body 2) according to actual conditions, and the user can use the accessories flexibly.
The working principle is as follows: when roof 1 will be built, will fix at the drain pipe 14 top earlier, then build roof 1 top, it fixes between overlap joint mechanism and roof 1 and wall body 2 with drain pipe 14 again after building up, just can use energy-saving mechanism after fixing, at first store liquid in water chamber 15 through arc wall 3 and blow off pipe 6, carry out timing control suction pump 20 by control circuit board 25 through timer 22 after storing and start, can water green cultivated in a pot 12 through watering ware 9 when suction pump 20 starts, and when raining, energy-saving mechanism can collect the rainwater, and protection mechanism can detect the size of rainwater through rainfall sensor 7, so that shelter from green cultivated in a pot 12 according to actual conditions, it leads to dying to green cultivated in a pot 12 because of the water is too much to have avoided green cultivated in a pot 12.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.