Building energy-saving outer vertical surface structure
Technical Field
The utility model relates to the technical field of building outer facades, in particular to an energy-saving building outer facade structure.
Background
Facade refers to the interface where an object and the external space of the object are in direct contact, as well as the way in which they appear. The building facade is all peripheral protection parts of the building except the roof, namely the structure and materials constituting the building facade, including but not limited to walls, doors and windows, roofs, decorations and the like. The design and the material selection of the building outer elevation structure have important influences on the aspects of the appearance effect, heat preservation, energy conservation, safety, reliability and the like of the building. Modern people have no need of shielding wind and rain, and have unique requirements on appearance, design concept and technological content. Under the rapid development of economy, the living standard of people is continuously improved, and the people can catch up for better life, so that an attractive building elevation can bring great economic value.
In the prior art, when the building outer vertical plate is installed, a fixed structure is generally adopted, namely after the building outer vertical plate is installed, the building outer vertical plate is inconvenient to adjust, and then the opening and closing of the building outer vertical plate cannot be flexibly controlled, so that natural ventilation cannot be reasonably utilized, energy loss is reduced, the use of the building outer vertical plate is not flexible enough, and therefore, in order to solve the problem, the building energy-saving outer vertical plate structure is provided.
Disclosure of utility model
The utility model aims to provide an energy-saving building outer vertical surface structure, which solves the problems that after the building outer vertical surface plate is installed, the building outer vertical surface plate is inconvenient to adjust and further can not be flexibly controlled to be opened or closed, so that natural ventilation can not be reasonably utilized, energy loss is reduced, and the use of the building outer vertical surface plate is not flexible.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the energy-saving building outer elevation structure comprises a wall body, wherein the wall body comprises a building wall body, a ventilation opening is formed in the inner side of the building wall body, and an outer elevation panel is arranged on the surface of the building wall body;
The surface of building wall body is provided with adjustment mechanism, adjustment mechanism includes the fixed plate, fixed plate fixed connection is at building wall body's surface, building wall body's inboard swing joint has the screw rod, the surface threaded connection of screw rod has the movable block, the surface swing joint of movable block has the connecting rod, the spout has been seted up to the surface of outer panel, the surface swing joint of spout has the slider.
Preferably, the adjusting mechanism further comprises a movable groove, the movable groove is formed in the inner side of the building wall, the screw is movably connected to the inner side of the movable groove, a motor is fixedly installed on the inner side of the movable groove, one end, away from the movable groove, of the screw is fixedly connected with the output end of the motor, and the movable block and the connecting rod are movably connected to the inner side of the movable groove.
Preferably, the outer vertical plate is movably connected with the fixed plate through a rotating shaft, the moving blocks are correspondingly connected with the screw rods in two groups, and the sliding grooves are formed in two groups and are formed in the surface of the outer vertical plate.
Preferably, one end of the connecting rod is movably connected with the moving block through a rotating shaft, and the other end of the connecting rod is movably connected with one end of the sliding block, which is far away from the sliding groove, through the rotating shaft.
Preferably, the surface of outer vertical panel is provided with heat preservation mechanism, heat preservation mechanism includes the mounting groove, the surface at outer vertical panel is seted up to the mounting groove, the inboard of mounting groove is provided with the installation piece, the fixed surface of installation piece is connected with the heated board, the inboard swing joint of outer vertical panel has the inserted bar, the slot has been seted up to the surface of installation piece, the fixed surface of inserted bar is connected with the spring.
Preferably, the inserted link is four groups and outer facade board swing joint, the one end and the outer facade board fixed connection of spring, the other end and the inserted link fixed connection of spring.
Compared with the prior art, the utility model has the beneficial effects that:
Through the rotation of screw rod, can realize that the movable block removes, and then the connecting rod moves under the effect of movable block to can drive the slider and slide at the surface of spout, thereby can realize that outer facade board moves through the pivot, reach the effect of adjusting to the angle of outer facade board, adjust through outer facade board, can control opening and closing of outer facade board, and then the use of outer facade board is more nimble, make when using, can the natural ventilation of rational utilization, be favorable to reducing energy loss and reduce the energy consumption of building, make the building can be more energy-conserving.
Through the setting of heated board, can protect outer riser panel for the outdoor climatic conditions change of adaptation that outer riser panel can be better can reduce thermal transmission simultaneously, can effectively prevent indoor heat to scatter and disappear outdoors through outer riser panel, and then can reduce the energy consumption and improve indoor comfort level, and through the cooperation of inserted bar and slot, can fix and remove fixedly the installation piece, and then be convenient for install and demolish the heated board, thereby be convenient for the heated board and change, be favorable to guaranteeing the result of use of heated board.
Drawings
FIG. 1 is a schematic elevational cross-sectional view of the structure of the present utility model;
FIG. 2 is a schematic side cross-sectional view of the structure of the present utility model;
FIG. 3 is a schematic side cross-sectional dynamic view of the structure of the present utility model;
FIG. 4 is a schematic elevational cross-sectional view of the construction of the building wall and vent of the present utility model;
fig. 5 is an enlarged schematic view of the structure of fig. 1 a according to the present utility model.
In the figure: 1. building a wall; 11. a vent; 12. an outer vertical panel; 2. a fixing plate; 21. a movable groove; 22. a screw; 23. a motor; 24. a moving block; 25. a connecting rod; 26. a chute; 27. a slide block; 3. a mounting groove; 31. a mounting block; 32. a thermal insulation board; 33. a rod; 34. a slot; 35. and (3) a spring.
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, an embodiment of the present utility model is provided:
The motor 23 used in the present application is a commercially available product, and its principle and connection are all well known to those skilled in the art, so that the description thereof will be omitted herein.
The energy-saving building outer elevation structure comprises a wall body, wherein the wall body comprises a building wall body 1, a ventilation opening 11 is formed in the inner side of the building wall body 1, an outer elevation panel 12 is arranged on the surface of the building wall body 1, and the outer elevation panel 12 is an important component of the appearance image and visual effect of a building;
The surface of building wall 1 is provided with adjustment mechanism, adjustment mechanism includes fixed plate 2, fixed plate 2 fixed connection is at the surface of building wall 1, the inboard swing joint of building wall 1 has screw rod 22, screw rod 22's surface threaded connection has movable block 24, movable block 24's surface swing joint has connecting rod 25, spout 26 has been seted up on the surface of outer vertical plate 12, spout 26's surface swing joint has slider 27, through the setting of fixed plate 2, outer vertical plate 12 of being convenient for moves about through the pivot, also can carry out certain shielding to the top of outer vertical plate 12 simultaneously, make when outer vertical plate 12 opens, the rainwater is difficult for infiltration through vent 11.
Further, adjustment mechanism still includes movable groove 21, the inboard at building wall 1 is seted up in movable groove 21, screw rod 22 swing joint is in the inboard of movable groove 21, the inboard fixed mounting of movable groove 21 has motor 23, the one end and the output fixed connection of motor 23 of movable groove 21 are kept away from to screw rod 22, movable block 24 and connecting rod 25 are all swing joint in the inboard of movable groove 21, through the rotation of screw rod 22, can realize that movable block 24 removes and drive connecting rod 25 activity, and then can realize adjusting to the angle of peripheral panel 12, make when peripheral panel 12 installs, can open and close to peripheral panel 12 as required, and then can rational utilization natural draft, be favorable to reducing energy loss, make the use of peripheral panel 12 more nimble, simultaneously also more energy-conserving.
Further, the outer vertical panel 12 is movably connected with the fixed plate 2 through a rotating shaft, the moving blocks 24 are correspondingly connected with the screw rods 22 in two groups, the sliding grooves 26 are formed in two groups on the surface of the outer vertical panel 12, and when the angle of the outer vertical panel 12 is adjusted through the sliding grooves 26, the sliding blocks 27 can slide on the surface of the sliding grooves 26 under the action of the connecting rods 25, so that the outer vertical panel 12 can be adjusted.
Further, one end of the connecting rod 25 is movably connected with the moving block 24 through a rotating shaft, the other end of the connecting rod 25 is movably connected with one end of the sliding block 27, which is far away from the sliding groove 26, through the rotating shaft, the moving block 24 is connected with the sliding block 27 through the connecting rod 25, so that when the connecting rod 25 moves, the sliding block 27 can be pulled to slide on the surface of the sliding groove 26, and the outer vertical surface plate 12 can move.
Further, the surface of outer vertical panel 12 is provided with heat preservation mechanism, heat preservation mechanism includes mounting groove 3, the surface at outer vertical panel 12 is offered to mounting groove 3, the inboard of mounting groove 3 is provided with installation piece 31, the fixed surface of installation piece 31 is connected with heated board 32, the inboard swing joint of outer vertical panel 12 has inserted bar 33, slot 34 has been offered to the surface of installation piece 31, the fixed surface of inserted bar 33 is connected with spring 35, through the setting of heated board 32, can reduce heat transmission, can prevent indoor heat to scatter and disappear outdoors through outer vertical panel 12, and then can reduce the energy consumption and improve indoor comfort level.
Further, the inserted link 33 is four groups and is movably connected with the outer vertical panel 12, one end of the spring 35 is fixedly connected with the outer vertical panel 12, the other end of the spring 35 is fixedly connected with the inserted link 33, the inserted link 33 can be reset through the arrangement of the spring 35, and then the inserted link 33 and the inserting slot 34 can be inserted, so that the installation block 31 is conveniently fixed, and the installation fixing and the replacement of the heat insulation board 32 are more convenient.
Working principle: when the movable vertical panel is used, the motor 23 is electrically connected by an external power supply, a worker starts the motor 23 through a press switch, the motor 23 runs to drive the screw 22 to rotate, the movable block 24 can vertically move at the inner side of the movable groove 21 under the action of the screw 22, the movable block 24 can vertically move on the surface of the screw 22, the connecting rod 25 can further move through the rotating shaft under the action of the movable block 24, the sliding block 27 slides on the surface of the sliding groove 26, the outer vertical panel 12 can move through the rotating shaft, the outer vertical panel 12 can be adjusted, the outer vertical panel 12 can be controlled to be opened and closed, and ventilation through the ventilation opening 11 or the ventilation opening 11 can be conveniently closed through the outer vertical panel 12;
Through pulling inserted link 33, make inserted link 33 move about in the inboard of outer facade board 12, spring 35 is tensile state this moment, then put into the inboard of mounting groove 3 with installation piece 31, loosen inserted link 33 again, inserted link 33 can reset under the state effect of spring 35, and then realize inserted link 33 and slot 34 and insert, realize the fixed to installation piece 31, can realize the installation to heated board 32, reach the effect that reduces heat transfer through heated board 32, when needs change heated board 32, through pulling inserted link 33, make inserted link 33 and slot 34 separate can.
The above is only a preferred embodiment of the present utility model, and is not intended to limit the present utility model in any way; those skilled in the art can smoothly practice the utility model as shown in the drawings and described above; however, those skilled in the art will appreciate that many modifications, adaptations, and variations of the present utility model are possible in light of the above teachings, without departing from the scope of the utility model; meanwhile, any equivalent changes, modifications and evolution of the above embodiments according to the essential technology of the present utility model still fall within the scope of the present utility model.