CN214329690U - Energy-saving building enclosure structure - Google Patents
Energy-saving building enclosure structure Download PDFInfo
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- CN214329690U CN214329690U CN202120487966.8U CN202120487966U CN214329690U CN 214329690 U CN214329690 U CN 214329690U CN 202120487966 U CN202120487966 U CN 202120487966U CN 214329690 U CN214329690 U CN 214329690U
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- bottom plate
- fixture block
- baffle
- saving building
- building envelope
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Abstract
The utility model relates to an energy-conserving building envelope belongs to building structure's technical field, including fix at the bottom plate on wall body surface, with the baffle that the bottom plate one-to-one set up and the fixed subassembly that is used for PMKD and baffle, the baffle is arranged in one side that the bottom plate deviates from the wall body, be equipped with the chamfer limit on the baffle, the chamfer limit on the adjacent baffle corresponds the butt and forms the draw-in groove, fixed subassembly is including setting up the fixture block inside the draw-in groove, the side of fixture block with chamfer limit butt, the fixture block with the connection can be dismantled to the bottom plate. This application has the effect of conveniently changing and maintaining envelope.
Description
Technical Field
The application relates to the technical field of building structures, in particular to an energy-saving building envelope structure.
Background
The enclosure structure refers to enclosures on all sides of buildings and rooms, and comprises walls, doors, windows and the like around the building space, so that the influence of adverse environment can be effectively resisted.
The utility model discloses a chinese utility model patent that grant publication number is CN206971461U discloses a heat preservation is decorated enclosure, heat preservation is decorated enclosure and is included composite wall board, bond the heat preservation on composite wall board and fix the decorative cover on the heat preservation through the adhesive linkage, composite wall board, heat preservation and decorative cover form an organic whole structure.
In view of the above-mentioned related technologies, the inventor believes that, in the above-mentioned enclosure wall, the heat preservation layer and the decorative surface layer are directly bonded on the wallboard, and when maintaining and replacing a part of the enclosure structure, the maintenance and the replacement can be performed only in a destructive manner, which is very inconvenient, and therefore, the improvement is needed.
SUMMERY OF THE UTILITY MODEL
In order to conveniently maintain and replace the enclosure structure of the wall body, the application provides an energy-saving building enclosure structure.
The application provides an energy-conserving building envelope adopts following technical scheme:
the utility model provides an energy-conserving building envelope, including fix on the bottom plate on wall body surface, with the baffle that the bottom plate one-to-one set up and the fixed subassembly that is used for PMKD and baffle, the baffle is arranged in one side that the bottom plate deviates from the wall body, be equipped with the chamfer limit on the baffle, the chamfer limit on the adjacent baffle corresponds the butt and forms the draw-in groove, fixed subassembly is including setting up the fixture block in the draw-in groove is inside, the side of fixture block with chamfer limit butt, the fixture block with the connection can be dismantled to the bottom plate.
Through adopting above-mentioned technical scheme, the bottom plate rolls fixed connection with the wall body, and the setting of baffle and bottom plate plays heat preservation and syllable-dividing effect to the wall body, simultaneously, can dismantle the baffle through the fixture block with baffle and bottom plate and be connected, conveniently takes off the baffle to the convenience is maintained and is changed the baffle.
Optionally, an abutting inclined surface is arranged on the chamfered edge, a pressing inclined surface is arranged on the fixture block, and the pressing inclined surface and the abutting inclined surface are in abutting fit after the fixture block is installed.
Through adopting above-mentioned technical scheme, set up the pressfitting inclined plane on the fixture block, set up the butt inclined plane on the baffle, pressfitting inclined plane and butt inclined plane cooperate, and the fixture block is fixed the baffle for the connection structure of fixture block and baffle is simple firm.
Optionally, a mounting hole is formed in the fixture block, a threaded hole is formed in the bottom plate, the mounting hole is communicated with the threaded hole, the fixing assembly further comprises a bolt, and the bolt is in threaded fit with the threaded hole.
By adopting the technical scheme, the bolt is in threaded fit with the threaded hole, so that the clamping block can be fixed with the bottom plate, and meanwhile, the clamping block is convenient to disassemble due to threaded connection,
optionally, the bolt includes a screw head and a stud, a placing hole is further formed in the partition plate, the placing hole is communicated with the mounting hole, and the placing hole is used for placing the screw head.
Through adopting above-mentioned technical scheme, place the hole and be used for placing the spiral shell head for the spiral shell head is hidden inside the fixture block, has guaranteed the planarization of baffle, places the hole simultaneously and protects the bolt, has reduced the wearing and tearing of bolt.
Optionally, the screw head is provided with a screwing port, and the screwing port is a cross-shaped port.
By adopting the technical scheme, the bolt can be detached by screwing the screwing port, and the design of the cross-shaped port is convenient to screw and reduce the possibility of dust accumulation of the screwing port.
Optionally, an isolation cavity is formed in the bottom plate, the isolation cavity is arranged on one side, away from the wall body, of the bottom plate, and the partition plate covers the isolation cavity.
Through adopting above-mentioned technical scheme, the setting of keeping apart the chamber has increased envelope's heat preservation effect, and the baffle lid is established and is protected the chamber on keeping apart the chamber.
Optionally, a filler is arranged in the isolation cavity, and the filler is a heat insulation material.
Through adopting above-mentioned technical scheme, set up the filler and further improved envelope's heat preservation effect.
Optionally, the filler is one of heat insulation materials such as foam, rock wool, expanded perlite and foamed cement.
By adopting the technical scheme, the heat-insulating material in the isolation cavity can be selected from one of heat-insulating materials such as foam, rock wool, expanded perlite and foamed cement.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the fixture block is detachably connected with the bottom plate through the abutting of the fixture block and the partition plate, so that the partition plate is convenient to replace and maintain;
2. the fixture block is provided with a pressing inclined plane, and the partition plate is provided with an abutting inclined plane, so that the connection structure of the fixture block to the partition plate is more stable;
3. the bottom plate is internally provided with the isolation cavity, the isolation cavity is internally provided with the filler, and the filler is made of a heat-insulating material, so that the heat-insulating effect of the enclosure structure is further improved.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present application.
Fig. 2 is a schematic diagram of an explosive structure according to an embodiment of the present application.
Fig. 3 is a partially enlarged schematic view of a portion a in fig. 2.
Reference numerals: 1. a base plate; 11. installing a frame; 111. a threaded hole; 12. an isolation chamber; 2. a partition plate; 21. chamfering edges; 211. abutting against the inclined plane; 22. a card slot; 3. a clamping block; 31. pressing the inclined plane; 32. mounting holes; 33. placing holes; 4. a bolt; 41. a screw head; 411. screwing ports; 42. a stud.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses an energy-saving building envelope. Referring to fig. 1, the energy-saving building envelope comprises a bottom plate 1, a partition plate 2 connected with the bottom plate 1 and a fixing assembly for connecting the bottom plate 1 and the partition plate 2, wherein the bottom plate 1 is fixedly connected with a wall of a building, and the partition plate 2 is detachably connected with the bottom plate 1 through the fixing assembly.
Referring to fig. 1 and 2, bottom plate 1 is laid on the wall, and bottom plate 1 is square, is provided with installing frame 11 on bottom plate 1 and sets up the inside isolation chamber 12 of bottom plate 1, and isolation chamber 12 is square equally, and keeps apart chamber 12 and set up in the one side that deviates from the wall at bottom plate 1, and installing frame 11 is arranged in one side that deviates from the wall in bottom plate 1 equally, and installing frame 11 is the style of calligraphy of mouth, keeps apart the center that installing frame 11 was arranged in chamber 12. The isolation cavity 12 has a heat insulation effect on the wall body, in order to make the heat insulation effect of the isolation cavity 12 better, a filler is filled in the isolation cavity 12, the filler is a heat insulation material in this embodiment, and the filler can be foam, rock wool, expanded perlite, foamed cement and the like, wherein the foam has the advantages of light weight, good workability, strong water resistance and good heat insulation effect, and therefore the foam is adopted as the filler in this embodiment. The foam is shaped to fit the shape of the isolated cavity 12, and the side of the partition plate 2 facing the base plate 1 abuts against the mounting frame 11, thereby fixing the foam inside the isolated cavity 12.
Referring to fig. 2 and 3, the partition boards 2 are square, the partition boards 2 and the bottom boards 1 are arranged in a one-to-one correspondence manner, the length and the width of each partition board 2 are equal to those of the bottom boards 1, the four corners of each partition board 2 are provided with chamfered edges 21, and the chamfered edges 21 of the four partition boards 2 correspond to form square clamping grooves 22. The fixing component comprises a clamping block 3 arranged in the clamping groove 22, the clamping block 3 is also square, and the shape of the clamping block 3 is matched with that of the clamping groove 22. In order to fix the partition board 2, the chamfered edge 21 of the partition board 2 is provided with an abutting inclined surface 211, correspondingly, the side surface of the fixture block 3 is provided with a pressing inclined surface 31, when the fixture block 3 is placed in the clamping groove 22, the abutting inclined surface 211 abuts against the pressing inclined surface 31, and the fixture block 3 clamps and fixes the partition board 2.
Referring to fig. 2 and 3, four mounting holes 32 have been seted up on fixture block 3, mounting hole 32 runs through fixture block 3 along the thickness direction of fixture block 3 and sets up, screw hole 111 has been seted up in the four corners department of installing frame 11, when fixture block 3 was arranged in draw-in groove 22, the same and coaxial setting of screw hole 111 internal diameter on mounting hole 32 on the fixture block 3 and the installing frame 11, fixed subassembly is still including setting up bolt 4 in mounting hole 32, bolt 4 and screw hole 111 screw-thread fit, bolt 4 fixes fixture block 3 and bottom plate 1, thereby make baffle 2 and bottom plate 1 fix. The bolt 4 comprises a screw head 41 and a stud 42 which are integrally arranged, a screwing port 411 is arranged on one side, away from the stud 42, of the screw head 41, the screwing port 411 can be a straight port, a cross-shaped port and an inner hexagonal port, and the screwing port 411 is the cross-shaped port in the embodiment of the application, so that the possibility of dust accumulation in the screwing port 411 is reduced while the installation is convenient.
Referring to fig. 2 and 3, a placing hole 33 is further formed in the fixture block 3, the placing hole 33 is cylindrical, the shape of the placing hole 33 is matched with that of the screw head 41, when the fixture block 3 is placed inside the clamping groove 22, the placing hole 33 is placed in one side face, away from the bottom plate 1, of the mounting hole 32, the placing hole 33 is communicated with the mounting hole 32, the screw head 41 sinks into the placing hole 33 after the bolt 4 is installed, the flatness of the surface of the partition plate 2 is guaranteed, meanwhile, the bolt 4 is protected by the placing hole 33, abrasion of the bolt 4 is reduced, and therefore the service life of the bolt 4 is prolonged.
The implementation principle of the energy-saving building envelope structure of the embodiment of the application is as follows: when the heat insulation partition wall is installed, firstly, the bottom plate 1 is laid on the wall body, the isolation cavity 12 on the bottom plate 1 faces to the side away from the wall body, the partition plate 2 is covered on the bottom plate 1, and the partition plate 2 and the bottom plate 1 fix foam filled in the isolation wall to achieve the heat insulation effect on the wall body; the pressing inclined plane 31 on the fixture block 3 is abutted against the abutting inclined plane 211 on the partition plate 2, the partition plate 2 is fixed on the bottom plate 1 through the bolt 4, the partition plate 2 is convenient to install and replace, and therefore the later maintenance work of the enclosure structure can be conveniently unfolded.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. An energy-saving building envelope structure is characterized in that: including fixing bottom plate (1) on wall body surface, with baffle (2) that bottom plate (1) one-to-one set up and the fixed subassembly that is used for PMKD (1) and baffle (2), baffle (2) are arranged in bottom plate (1) deviates from one side of wall body, be equipped with chamfer limit (21) on baffle (2), chamfer limit (21) on adjacent baffle (2) correspond the butt and form draw-in groove (22), fixed subassembly is including setting up fixture block (3) inside draw-in groove (22), the side of fixture block (3) with chamfer limit (21) butt, fixture block (3) with the connection can be dismantled to bottom plate (1).
2. An energy saving building envelope as claimed in claim 1 wherein: the chamfering edge (21) is provided with an abutting inclined surface (211), the fixture block (3) is provided with a pressing inclined surface (31), and after the fixture block (3) is installed, the pressing inclined surface (31) and the abutting inclined surface (211) are in abutting fit.
3. An energy saving building envelope as claimed in claim 2 wherein: the fixture block (3) is provided with a mounting hole (32), the bottom plate (1) is provided with a threaded hole (111), the mounting hole (32) is communicated with the threaded hole (111), the fixing assembly further comprises a bolt (4), and the bolt (4) is in threaded fit with the threaded hole (111).
4. An energy saving building envelope as claimed in claim 3 wherein: the bolt (4) comprises a screw head (41) and a stud (42), a placing hole (33) is further formed in the partition plate (2), the placing hole (33) is communicated with the mounting hole (32), and the placing hole (33) is used for placing the screw head (41).
5. An energy saving building envelope as claimed in claim 4 wherein: the screw head (41) is provided with a screwing port (411), and the screwing port (411) is a cross-shaped port.
6. An energy saving building envelope as claimed in claim 1 wherein: the isolation cavity (12) is formed in the bottom plate (1), the isolation cavity (12) is arranged on one side, away from the wall body, of the bottom plate (1), and the partition plate (2) covers the isolation cavity (12).
7. An energy saving building envelope as claimed in claim 6 wherein: the insulating cavity (12) is internally provided with a filler, and the filler is a heat insulating material.
8. An energy saving building envelope as claimed in claim 7 wherein: the filler is one of heat-insulating materials such as foam, rock wool, expanded perlite, foamed cement and the like.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120487966.8U CN214329690U (en) | 2021-03-06 | 2021-03-06 | Energy-saving building enclosure structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120487966.8U CN214329690U (en) | 2021-03-06 | 2021-03-06 | Energy-saving building enclosure structure |
Publications (1)
Publication Number | Publication Date |
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CN214329690U true CN214329690U (en) | 2021-10-01 |
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Family Applications (1)
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CN202120487966.8U Active CN214329690U (en) | 2021-03-06 | 2021-03-06 | Energy-saving building enclosure structure |
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2021
- 2021-03-06 CN CN202120487966.8U patent/CN214329690U/en active Active
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