CN216766356U - Assembled energy-saving wall structure for green building - Google Patents
Assembled energy-saving wall structure for green building Download PDFInfo
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- CN216766356U CN216766356U CN202220024260.2U CN202220024260U CN216766356U CN 216766356 U CN216766356 U CN 216766356U CN 202220024260 U CN202220024260 U CN 202220024260U CN 216766356 U CN216766356 U CN 216766356U
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Abstract
The application discloses energy-conserving wall structure of assembled for green building belongs to green building technical field, including first wallboard, the second wallboard that is located first wallboard one side, the third wallboard that is located first wallboard top, the fourth wallboard that is located second wallboard top and four cardboards that are located between first wallboard, second wallboard, third wallboard and the relative one side of fourth wallboard. This an assembled energy-conserving wall structure for green building, utilize the cardboard to insert first wallboard, the second wallboard, in the draw-in groove on third wallboard and the fourth wallboard, recycle the gim peg with first wallboard, the second wallboard, third wallboard and fourth wallboard are fixed, later utilize spacing bolt to install the supporting shoe on first wallboard and second wallboard, thereby accomplished the equipment to the wall body, when the wall body does not use, can be with first wallboard, the second wallboard, third wallboard and fourth wallboard are dismantled, environmental protection and energy saving's purpose has been realized.
Description
Technical Field
The application belongs to the technical field of green building, especially, relate to an assembled energy-conserving wall structure for green building.
Background
In the whole life cycle, the method saves resources, protects the environment, reduces pollution, provides healthy, applicable and efficient use space for people, and realizes the harmonious symbiotic high-quality building of people and nature to the maximum extent.
In the process of implementing the application, the inventor finds that at least the following problems exist in the technology: the wall body of the existing green building is generally built by bricks, when the green building is dismantled, the wall body can be directly damaged, and at the moment, the wall body can not be used again, so that the resource waste is caused.
Therefore, the assembled energy-saving wall structure for the green building is provided to solve the problems.
SUMMERY OF THE UTILITY MODEL
The purpose of this application is in order to solve prior art, when green building demolishs, the wall body can be directly destroyed, and at this moment the wall body can't carry out use once more to cause the problem of wasting of resources, and the assembled energy-conserving wall structure who is used for green building that provides.
In order to achieve the purpose, the following technical scheme is adopted in the application:
an assembled energy-saving wall structure for green buildings comprises a first wallboard, a second wallboard positioned on one side of the first wallboard, a third wallboard positioned above the first wallboard, a fourth wallboard positioned above the second wallboard and four clamping plates positioned between opposite sides of the first wallboard, the second wallboard, the third wallboard and the fourth wallboard, wherein clamping grooves are formed in four side surfaces of the first wallboard, the second wallboard, the third wallboard and the fourth wallboard, the four clamping plates are movably clamped with the first wallboard, the second wallboard, the third wallboard and the fourth wallboard through the four clamping grooves respectively, fixing bolts are arranged on the first wallboard, the second wallboard, the third wallboard and the fourth wallboard respectively, the first wallboard, the second wallboard, the third wallboard and the fourth wallboard are fixedly connected with the clamping plates through the fixing bolts, and trapezoidal supporting blocks are attached to one sides of the first wallboard and the second wallboard, and the two supporting blocks are respectively provided with a limiting bolt and are fixedly connected with the first wallboard and the second wallboard through the two limiting bolts.
Through setting up draw-in groove, cardboard and gim peg, utilize the gim peg to fix first wallboard, second wallboard, third wallboard, fourth wallboard and cardboard, realized carrying out the purpose of assembling first wallboard, second wallboard, third wallboard and fourth wallboard.
Preferably, the bottoms of the first wallboard and the second wallboard are connected with a base block through clamping grooves in a sliding and clamping mode.
Through setting up the base block, install the base block in first wallboard and second wallboard bottom back, bury the base block inside the soil, realized reinforcing wall body stability's purpose.
Preferably, the round block is attached to the same side of the first wall plate, the second wall plate, the third wall plate and the fourth wall plate, the same side of the first wall plate, the second wall plate, the third wall plate and the fourth wall plate is fixedly connected with fixing columns, four mounting bolts are mounted on the round block, the round block is fixedly connected with the first wall plate, the second wall plate, the third wall plate and the fourth wall plate through the four mounting bolts, four pull ropes are fixedly connected to the outer side of the round block, and the four pull ropes are fixedly connected with the four fixing columns.
Through setting up circular block, fixed column, stay cord, fix the circular block on the wall body, then utilize the stay cord to fix fixed column and circular block, realized first wallboard, second wallboard, third wallboard and fourth wallboard and connected more firm purpose.
Preferably, the side walls of the first wall plate, the second wall plate, the third wall plate and the fourth wall plate are all communicated with each other to form a ventilation hole.
Through setting up the ventilation hole, wind can pass the ventilation hole, has realized the purpose that reduces the resistance that the wall body received in the wind.
Preferably, first wallboard, second wallboard, third wallboard and fourth wallboard all are through ventilation hole fixedly connected with annular slab, and are a plurality of the laminating of one side of annular slab has the filter screen, all installs the bolt on a plurality of filter screens, and a plurality of filter screens are respectively through a plurality of bolts and a plurality of annular slab fixed connection.
Through setting up the filter screen, realized avoiding the impurity in the wind to enter into the inside purpose in ventilation hole as far as possible.
Preferably, third wallboard and fourth wallboard all have stifled chock through draw-in groove activity joint, be provided with the atress module that conveniently extracts stifled chock from the draw-in groove on the stifled chock.
Through setting up the jam piece, will be located the third wallboard of the top and the draw-in groove at fourth wallboard top and block up, realized avoiding impurity to pile up the purpose in first wallboard and second wallboard top as far as possible.
Preferably, the atress module includes two handles, two the mounting groove has all been seted up at the top of jam piece, two the handle is respectively through two mounting grooves and third wallboard, fourth wallboard fixed connection.
Through setting up the handle, realized conveniently pulling out the purpose in third wallboard and fourth wallboard with the jam piece.
Preferably, the same side of first wallboard, second wallboard, third wallboard and fourth wallboard has all seted up the tye that is the U-shaped, the same side of first wallboard, second wallboard, third wallboard and fourth wallboard has all seted up the water service trough, and a plurality of the water service trough is linked together with a plurality of the tye.
By arranging the water flowing grooves and the water passing grooves, part of rainwater attached to the wall can be intercepted by the water flowing grooves in rainy days and enters the water flowing grooves to flow, and the water passing grooves are communicated with the water flowing grooves, so that the aims of reducing rainwater retention and reducing contact of the rainwater and the fixing bolts are fulfilled.
To sum up, the technical effect and the advantage of this application: the assembled energy-saving wall structure for the green building is characterized in that a clamping plate is inserted into clamping grooves in a first wall plate, a second wall plate, a third wall plate and a fourth wall plate to realize connection among the first wall plate, the second wall plate, the third wall plate and the fourth wall plate, a fixing bolt is used for fixing the first wall plate, the second wall plate, the third wall plate and the fourth wall plate, and a supporting block is mounted on the first wall plate and the second wall plate by using a limiting bolt, so that the wall body is assembled; in addition, in strong wind weather, strong wind can pass through the vent holes, so that the resistance on the wall body is reduced, the wall body is prevented from being blown away as much as possible, if in rainy days, part of rainwater can flow into the lower water flowing groove through the water flowing groove by intercepting of the water flowing groove, the contact between the rainwater and the fixing bolt is reduced, the stay of the rainwater on the surface of the wall body is reduced, the corrosion speed of the fixing bolt can be reduced, and the effect of prolonging the service life of the wall body is achieved.
Drawings
FIG. 1 is a perspective view of a first wall panel, a second wall panel, a third wall panel, and a fourth wall panel of the present application;
FIG. 2 is a perspective view of the present application showing a card board structure;
FIG. 3 is a perspective view of the present application showing a circular block structure;
FIG. 4 is an enlarged view taken at A in FIG. 1 of the present application;
FIG. 5 is a perspective view of the present application showing the structure of a plugging block;
fig. 6 is an enlarged view of fig. 1 at B.
In the figure: 1. a first wall panel; 2. a second wall panel; 3. a third wall panel; 4. a fourth wall panel; 5. a card slot; 6. clamping a plate; 7. a fixing bolt; 8. a support block; 9. a limit bolt; 10. a base block; 11. a circular block; 12. installing a bolt; 13. fixing a column; 14. pulling a rope; 15. a vent hole; 16. an annular plate; 17. a filter screen; 18. a bolt; 19. a plugging block; 20. mounting grooves; 21. a handle; 22. a launder; 23. a water trough.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments.
Referring to fig. 1 and 2, an assembled energy-saving wall structure for green buildings comprises a first wall panel 1, a second wall panel 2 located on one side of the first wall panel 1, a third wall panel 3 located above the first wall panel 1, a fourth wall panel 4 located above the second wall panel 2, and four clamping panels 6 located between opposite sides of the first wall panel 1, the second wall panel 2, the third wall panel 3, and the fourth wall panel 4, wherein four side surfaces of the first wall panel 1, the second wall panel 2, the third wall panel 3, and the fourth wall panel 4 are respectively provided with a clamping groove 5, the four clamping panels 6 are respectively movably clamped with the first wall panel 1, the second wall panel 2, the third wall panel 3, and the fourth wall panel 4 through the four clamping grooves 5, the first wall panel 1, the second wall panel 2, the third wall panel 3, and the fourth wall panel 4 are respectively provided with a plurality of thread grooves, the first wall panel 1, the second wall panel 2, the third wall panel 3, and the fourth wall panel 4 do not have thread grooves, just set up the thread groove on first wallboard 1, second wallboard 2, third wallboard 3 and fourth wallboard 4 when installing first wallboard 1, second wallboard 2, third wallboard 3 and fourth wallboard 4, owing to avoid seting up the waterproof ability that influences the wall body of the unnecessary thread groove of department.
One side of first wallboard 1 and second wallboard 2 all laminates and is trapezoidal supporting shoe 8, the bottom of first wallboard 1 and second wallboard 2 all can laminate with ground, two screw holes have all been seted up on two supporting shoes 8, two supporting shoes 8 have four spacing bolts 9 through four screw hole threaded connection respectively, two supporting shoes 8 respectively through two spacing bolts 9 with first wallboard 1, 2 fixed connection of second wallboard, utilize spacing bolt 9 to fix supporting shoe 8 on first wallboard 1 and second wallboard 2, supporting shoe 8 is used for increasing the stability of wall body.
The bottom of first wallboard 1 and second wallboard 2 all has base block 10 through draw-in groove 5 slip joint, buries base block 10 inside the soil, and base block 10 is used for further reinforcing wall body stability this moment.
Referring to fig. 3, the laminating has round piece 11 between the same one side of first wallboard 1, second wallboard 2, third wallboard 3 and fourth wallboard 4, four screw holes have been seted up on round piece 11, round piece 11 has four erection bolts 12 through four screw hole threaded connection, utilize four erection bolts 12 to fix round piece 11 at first wallboard 1, second wallboard 2, the intersection of third wallboard 3 and fourth wallboard 4, round piece 11 and erection bolt 12 this moment have played the certain connection stability to first wallboard 1, second wallboard 2, third wallboard 3 and fourth wallboard 4.
Referring to fig. 1 and 4, the lateral walls of the first wall plate 1, the second wall plate 2, the third wall plate 3 and the fourth wall plate 4 are all penetrated through and provided with two ventilation holes 15, and in the strong wind weather, strong wind can pass through the ventilation holes 15, so that the resistance of the wall body in the wind is reduced, and the possibility that the wall body is blown away is reduced. First wallboard 1 and second wallboard 2 one side of carrying on the back mutually and third wallboard 3 and fourth wallboard 4 one side of carrying on the back mutually all through ventilation hole 15 fixedly connected with annular plate 16, the laminating of one side of a plurality of annular plates 16 has filter screen 17, filter screen 17 only installs the one side of keeping away from mutually at first wallboard 1 and second wallboard 2 and the one side of keeping away from mutually of third wallboard 3 and fourth wallboard 4 this moment, filter screen 17 is used for avoiding impurity to enter into the inside of ventilation hole 15 as far as possible, help avoiding ventilation hole 15 to be blockked up by impurity. A plurality of screw holes have all been seted up on a plurality of filter screens 17, and filter screen 17 has a plurality of bolts 18 through a plurality of screw hole threaded connection, has seted up a plurality of thread grooves on the annular plate 16, and a plurality of filter screens 17 are respectively through the corresponding thread groove threaded connection on a plurality of bolts 18 and a plurality of annular plate 16 to filter screen 17 fixed mounting's purpose has been realized.
Referring to fig. 1 and 5, the third wall plate 3 and the fourth wall plate 4 are movably clamped with a blocking block 19 through a clamping groove 5, the blocking block 19 is specifically a soft rubber block, the blocking block 19 is used for blocking the clamping groove 5 at the top of the wall body, rainwater is prevented from being accumulated in the clamping groove 5 as much as possible, and the rainwater corrosion to the wall body is reduced. Be provided with the atress module that conveniently will block up piece 19 and extract from draw-in groove 5 on the jam piece 19, the atress module includes two handles 21, and mounting groove 20 has all been seted up at two top of jam piece 19, and two handles 21 make things convenient for the operator to apply force through two mounting grooves 20 and third wallboard 3, 4 fixed connection of fourth wallboard respectively to plug piece 19 extracts from draw-in groove 5.
Referring to fig. 6, the same side of the first wall plate 1, the second wall plate 2, the third wall plate 3 and the fourth wall plate 4 is provided with a U-shaped gutter channel 22, the gutter channel 22 is used for intercepting rainwater on the upper portion of the wall body flowing from top to bottom, and the rainwater can enter the gutter channel 22 to flow. The same one side of first wallboard 1, second wallboard 2, third wallboard 3 and fourth wallboard 4 has all seted up water trough 23, and a plurality of water trough 23 are linked together with a plurality of tye 22, and water trough 23 is used for the intercommunication a plurality of tye 22 of vertical position for rainwater in the eminence tye 22 can flow downwards smoothly, finally discharges from the wall body.
The working principle is as follows: when the wall body is assembled, firstly, the clamping plate 6 is inserted into the clamping groove 5, the first wall plate 1 is utilized, the second wall plate 2, the third wall plate 3 and the fourth wall plate 4 are connected, then the first wall plate 1 is respectively inserted into the clamping groove 5 at the bottom of the first wall plate 1 and the second wall plate 2 by utilizing the fixing bolts 7, the third wall plate 3 and the fourth wall plate 4 are fixed with the clamping plate 6, so that the effect of assembling the wall body is achieved, then the base block 10 is inserted into the clamping groove 5 at the bottom of the first wall plate 1 and the second wall plate 2, then the base block 10 is embedded into the ground, the purpose of more stable placement of the wall body is further achieved, then the supporting block 8 is installed on the first wall plate 1 and the second wall plate 2, the effect of supporting the wall body is achieved, at the moment, the round block 11 is fixed on the rear sides of the first wall plate 1, the second wall plate 2, the third wall plate 3 and the fourth wall plate 4 by utilizing the pull rope 14, Fix between second wallboard 2, third wallboard 3, fourth wallboard 4 and the circular block 11, reached and installed more firm effect between first wallboard 1, second wallboard 2, third wallboard 3, the fourth wallboard 4.
When the wall is used, wind can pass through the inside of the vent hole 15, so that the resistance of the wall is reduced, meanwhile, the filter screen 17 can intercept impurities in the wind, the vent hole 15 is prevented from being blocked by the impurities to the greatest extent, if the wall meets rainy days, rainwater above the wall and rainwater on the surface can partially enter the water flowing groove 22 and flow to the water flowing groove 22 below from the upper side through the water flowing groove 23, and finally the wall is separated from the wall, so that the effects of reducing rainwater retention and reducing contact of the rainwater and the fixing bolt 7 are achieved, the corrosion speed of the fixing bolt 7 is favorably slowed down, and the service life of the wall is prolonged.
The above description is only for the preferred embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art should be considered to be within the scope of the present application, and all equivalent substitutions and changes according to the technical solutions and the inventive concepts of the present application should be covered by the scope of the present application.
Claims (8)
1. The utility model provides an assembled energy-conserving wall structure for green building, includes first wallboard (1), is located second wallboard (2) of first wallboard (1) one side, is located third wallboard (3) of first wallboard (1) top, is located fourth wallboard (4) of second wallboard (2) top and is located four cardboard (6) between first wallboard (1), second wallboard (2), third wallboard (3) and the relative one side of fourth wallboard (4), a serial communication port, draw-in groove (5) have all been seted up to four sides on first wallboard (1), second wallboard (2), third wallboard (3) and fourth wallboard (4), four draw-in groove (5) are respectively through four draw-in groove (5) and first wallboard (1), second wallboard (2), third wallboard (3), fourth wallboard (4) activity joint, first wallboard (1), All install gim peg (7) on second wallboard (2), third wallboard (3) and fourth wallboard (4), first wallboard (1), second wallboard (2), third wallboard (3) and fourth wallboard (4) all are through gim peg (7) and cardboard (6) fixed connection, one side of first wallboard (1) and second wallboard (2) is all laminated and is trapezoidal supporting shoe (8), two all install spacing bolt (9) on supporting shoe (8), two supporting shoe (8) are respectively through two spacing bolts (9) and first wallboard (1), second wallboard (2) fixed connection.
2. The assembled energy-saving wall structure for green buildings according to claim 1, wherein the bottom of the first wall panel (1) and the bottom of the second wall panel (2) are both slidably clamped with a base block (10) through clamping grooves (5).
3. The assembled energy-saving wall structure for green buildings according to claim 1, it is characterized in that round blocks (11) are attached to the same sides of the first wall plate (1), the second wall plate (2), the third wall plate (3) and the fourth wall plate (4), the same sides of the first wallboard (1), the second wallboard (2), the third wallboard (3) and the fourth wallboard (4) are fixedly connected with fixing columns (13), the round block (11) is provided with four mounting bolts (12), the round block (11) is respectively fixedly connected with the first wall plate (1), the second wall plate (2), the third wall plate (3) and the fourth wall plate (4) through the four mounting bolts (12), the outer side of the round block (11) is fixedly connected with four pull ropes (14), and the four pull ropes (14) are fixedly connected with four fixing columns (13) respectively.
4. The assembled energy-saving wall structure for green buildings according to claim 1, wherein the side walls of the first wall panel (1), the second wall panel (2), the third wall panel (3) and the fourth wall panel (4) are all perforated with vent holes (15).
5. The assembled energy-saving wall structure for green buildings according to claim 4, wherein the first wall plate (1), the second wall plate (2), the third wall plate (3) and the fourth wall plate (4) are fixedly connected with annular plates (16) through vent holes (15), a plurality of filter screens (17) are attached to one sides of the annular plates (16), bolts (18) are mounted on the plurality of filter screens (17), and the plurality of filter screens (17) are fixedly connected with the plurality of annular plates (16) through the plurality of bolts (18) respectively.
6. The assembled energy-saving wall structure for green buildings according to claim 1, wherein the third wall panel (3) and the fourth wall panel (4) are movably clamped with a plugging block (19) through a clamping groove (5), and a stress module for conveniently pulling the plugging block (19) out of the clamping groove (5) is arranged on the plugging block (19).
7. The assembled energy-saving wall structure for green buildings according to claim 6, wherein the stress module comprises two handles (21), the top of each of the two plugging blocks (19) is provided with a mounting groove (20), and the two handles (21) are respectively fixedly connected with the third wall plate (3) and the fourth wall plate (4) through the two mounting grooves (20).
8. The assembled energy-saving wall structure for green buildings according to claim 1, wherein the first wall panel (1), the second wall panel (2), the third wall panel (3) and the fourth wall panel (4) are provided with U-shaped water flowing grooves (22) on the same side, the first wall panel (1), the second wall panel (2), the third wall panel (3) and the fourth wall panel (4) are provided with water flowing grooves (23) on the same side, and the water flowing grooves (23) are communicated with the water flowing grooves (22).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220024260.2U CN216766356U (en) | 2022-01-06 | 2022-01-06 | Assembled energy-saving wall structure for green building |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220024260.2U CN216766356U (en) | 2022-01-06 | 2022-01-06 | Assembled energy-saving wall structure for green building |
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CN216766356U true CN216766356U (en) | 2022-06-17 |
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CN202220024260.2U Active CN216766356U (en) | 2022-01-06 | 2022-01-06 | Assembled energy-saving wall structure for green building |
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- 2022-01-06 CN CN202220024260.2U patent/CN216766356U/en active Active
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