CN214658394U - Heat preservation, veneer, green building side fascia of electricity generation integration - Google Patents

Heat preservation, veneer, green building side fascia of electricity generation integration Download PDF

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Publication number
CN214658394U
CN214658394U CN202120853562.6U CN202120853562U CN214658394U CN 214658394 U CN214658394 U CN 214658394U CN 202120853562 U CN202120853562 U CN 202120853562U CN 214658394 U CN214658394 U CN 214658394U
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plate body
groove
sliding
driving
veneer
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CN202120853562.6U
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龚启航
金伟丰
付伟
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Zhejiang Xinzhongyuan Construction Co ltd
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Zhejiang Xinzhongyuan Construction Co ltd
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Abstract

The utility model relates to a heat preservation, veneer, the green building side fascia of electricity generation integration relates to the technical field of decorating the engineering, and it includes the plate body and inlays the connecting seat of establishing at the building surface, the connecting seat is kept away from building surface one side and has been seted up the inserting groove, the plate body is provided with the square column shape's grafting post towards building surface one side, the grafting post is pegged graft in the inserting groove, grafting post periphery side symmetry is provided with two sets of sliding blocks, every group the sliding block has a plurality ofly and evenly sets up along length direction, inserting groove inner wall symmetry is provided with the butt piece, the butt piece is close to plate body lopsidedness and has seted up the glide plane, the sliding block slides on the glide plane, the butt piece is kept away from plate body one side butt and is close to plate body one side at the sliding block. This application has the possible effect that the separation appears sticking fixed in-process to the reduction side fascia.

Description

Heat preservation, veneer, green building side fascia of electricity generation integration
Technical Field
The application relates to the technical field of decoration engineering, in particular to a heat-preservation, veneer and power generation integrated green building external wall panel.
Background
The building external wall panel is that the wallboard is arranged on the outer surface of a building, so that the outer surface of the building is decorated, and different materials adopted by the external wall panel can also have different effects for the building.
At present, chinese utility model patent with publication number CN203201065U discloses a green building side fascia of heat preservation, veneer, electricity generation integration, include: high-efficient heated board, heated board have reserve threading hole and pre-buried reinforcement drawknot spare, heated board connection veneer surface course, and photovoltaic solar panel is connected to the veneer surface course.
With respect to the related art among the above, the inventors consider that the following drawbacks exist: the external wall panel is generally fixed to the outer surface of a building by cement paste, but after a structure having its function is added to the external wall panel, the weight of the external wall panel is increased, so that the external wall panel may be separated when fixed by cement paste.
SUMMERY OF THE UTILITY MODEL
In order to reduce the external wall panel and the possibility of breaking away from appears pasting fixed in-process, the application provides a heat preservation, veneer, green building external wall panel of electricity generation integration.
The application provides a pair of green building side fascia of heat preservation, veneer, electricity generation integration adopts following technical scheme:
the utility model provides a green building side fascia of heat preservation, veneer, electricity generation integration, includes the plate body and inlays the connecting seat of establishing at the building surface, the inserting groove has been seted up to the connecting seat on one side of keeping away from the building outer surface, the plate body is provided with the square column shape's inserting column towards building outer surface one side, the inserting column is pegged graft in the inserting groove, inserting column periphery side symmetry is provided with two sets of sliding blocks, every group the sliding block has a plurality ofly and evenly sets up along length direction, inserting groove inner wall symmetry is provided with the butt piece, the butt piece is close to plate body lopsidedness and has seted up the glide plane, the sliding block slides on the glide plane, the butt piece is kept away from plate body one side butt and is close to plate body one side at the sliding block.
Through adopting above-mentioned technical scheme, insert the inserting groove with the plug post during the installation plate body for the weight of plate body can transmit for the connecting seat through the plug post, and on transmitting the building through the connecting seat, reduce plate body paste, the fixed in-process because of the weight possibility that drops appear. The sliding block slides on the glide plane in the grafting process to along with continuous inserting of grafting post, the sliding block and the phase separation of glide plane, until the glide plane contacts with the next adjacent sliding block that is close to the plate body, when making the grafting post slide outside the inserting groove, the sliding block is close to plate body one side and keeps away from plate body one side looks butt with the butt piece, fixes the plate body, is favorable to promoting the steadiness of plate body laminating when the building surface.
Optionally, one side of the sliding block, which is far away from the plate body, is obliquely provided with a resistance reducing surface, and the resistance reducing surface slides on the sliding surface.
Through adopting above-mentioned technical scheme, the drag reduction face slides on the glide plane during the use, can reduce the resistance that the sliding block slided and meets when the glide plane to a certain extent.
Optionally, chutes extending along the axis direction are symmetrically formed in side walls of the insertion groove, two opposite sides of the abutting blocks are provided with sliding blocks, the connecting seat is provided with supporting grooves extending along the length direction, the supporting grooves and the chutes are far away from one side of the insertion groove and communicated, the sliding blocks slide in the chutes and protrude into the supporting grooves, the connecting seat is provided with elastic pieces which are installed in the chutes and used for pushing the sliding blocks towards the direction of keeping away from the plate body, the connecting seat is provided with supporting rods which are installed in the chutes and used for enabling the sliding blocks to compress the elastic pieces, the supporting rods slide in the supporting grooves along the diameter direction of the insertion grooves, the supporting rods are close to one side of the plate body and are far away from the plate body and abutted against the sliding blocks, and the connecting seat is provided with driving pieces which are used for driving the supporting rods to be separated from the sliding blocks when the insertion columns abut against the side walls of the plate body at the insertion grooves.
Through adopting above-mentioned technical scheme, when the plug column butt was kept away from on the cell wall of plate body one side at the inserting groove, driving piece drive bracing piece circle slider for the elastic component promotes the butt piece towards keeping away from the plate body direction, makes the butt piece keep away from plate body one side butt and is close to plate body one side at the sliding block, steadiness when promoting the plate body installation.
Optionally, the driving member is a driving column, a driving groove communicated with the supporting groove is formed in a position, away from the plate body, of a groove wall on the peripheral side of the insertion groove, the driving column slides in the driving groove and is fixedly connected with the supporting rod, a driving surface is formed on one side, close to the plate body and away from the supporting rod, of the driving column, and the insertion column slides on the driving surface.
Through adopting above-mentioned technical scheme, the post that pegs graft slides on the drive face during the use, promotes the drive post, is favorable to driving the bracing piece towards keeping away from the inserting groove direction and slides until bracing piece and slider phase separation.
Optionally, a ball head structure is arranged on one side, away from the plate body, of the insertion column.
By adopting the technical scheme, the ball head structure of the insertion column slides on the driving surface during use, so that the resistance of the insertion column in sliding on the driving surface is reduced.
Optionally, the connecting seat is provided with a driving spring installed in the supporting groove, one end of the driving spring abuts against one side of the supporting rod, which is far away from the inserting groove, and the other end of the driving spring abuts against one side of the supporting rod, which is far away from the inserting groove.
Through adopting above-mentioned technical scheme, drive spring elasticity release during the use promotes the bracing piece towards the inserting groove direction, keeps the state of bracing piece and slider butt, reduces the possibility of bracing piece and slider phase separation when the connecting seat is installed.
Optionally, the elastic component is a pushing spring, a mounting groove is formed in one side, close to the plate body, of the sliding groove, the pushing spring is mounted in the mounting groove, one end of the pushing spring abuts against the sliding block, and the other end of the pushing spring abuts against the wall of the mounting groove.
Through adopting above-mentioned technical scheme, promote the spring mounting in the mounting groove, can restrict the promotion spring, reduce the possibility that promotes the spring and break away from the spout.
Optionally, the opposite side walls of the sliding groove in the length direction are communicated with each other to form limiting grooves, the sliding block is provided with a limiting block, and the limiting block slides in the limiting grooves.
By adopting the technical scheme, the limiting block slides in the limiting groove when in use, so that the position of the sliding block is limited, and the possibility that the sliding block is separated from the sliding groove is reduced.
In summary, the present application includes at least one of the following benefits:
1. when the plate body is installed, the plate body is supported in the insertion groove through the insertion of the insertion column, so that the weight of the plate body can be transferred to the connecting seat, and meanwhile, the plate body is fixed by abutting the abutting block through the sliding block, and the possibility of falling off of the plate body due to the weight during pasting and fixing is reduced;
2. the slider slides in the spout, promotes the butt of butt piece on the sliding block, is favorable to keeping the plate body laminating in the state of building surface.
Drawings
FIG. 1 is a schematic diagram of the external structure of an embodiment of the present application;
fig. 2 is a schematic cross-sectional view of the plate body according to the embodiment of the present application after being mounted;
FIG. 3 is an enlarged schematic view of section A of FIG. 2;
fig. 4 is a schematic view of a structure embodying an abutment block according to an embodiment of the present application.
Reference numerals: 1. a plate body; 2. a connecting seat; 3. inserting grooves; 4. inserting the column; 5. a slider; 501. a drag reduction surface; 6. a butting block; 601. a sliding surface; 7. a chute; 8. a slider; 9. a support groove; 10. a support bar; 11. a drive column; 111. a drive face; 12. a drive slot; 13. a drive spring; 14. a spring slot; 15. a push spring; 16. mounting grooves; 17. a limiting groove; 18. and a limiting block.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The utility model provides a green building side fascia of heat preservation, veneer, electricity generation integration that this application embodiment discloses, refer to fig. 1 and fig. 2, the green building side fascia of heat preservation, veneer, electricity generation integration includes plate body 1 and connecting seat 2. Plate body 1's area is great, a surface for to the building is decorated, every plate body 1 corresponds a connecting seat 2, set up the hole at the building outer surface earlier during the construction, fix the installation of connecting seat 2 in the hole after that, make connecting seat 2 inlay establish on the surface of building, and the surface of 2 protrusion buildings of connecting seat, concrete protrusion length pastes the thickness decision that needs to paint cement when fixed according to plate body 1, make cement paint the length that thickness is more than or equal to 2 protrusion building outer surfaces of connecting seat.
Referring to fig. 2, an insertion groove 3 is formed in the middle of one side of the connecting base 2, which is far away from the outer surface of the building, and the insertion groove 3 extends along the length direction of the connecting base 2. Plate body 1 is towards the intermediate position fixedly connected with plug column 4 of building outer surface one side, and plug column 4 pegs graft in inserting groove 3 for plate body 1 obtains tentatively fixed, and plate body 1's weight can transmit for connecting seat 2 through plug column 4 this moment. The inserting column 4 can adopt a rectangular square column structure and the cross section of the end part is of a square structure, so that the possibility of rotation of the plate body 1 is favorably reduced, and the plate body 1 is convenient to install.
Referring to fig. 3, two sets of sliding blocks 5 are symmetrically fixed on the two opposite side walls of the length direction of the inserting column 4, and each set of sliding blocks 5 is provided with a plurality of sliding blocks and is arranged at even intervals along the length direction of the inserting column 4. The opposite side cell wall of inserting groove 3 is gone up the symmetry and is provided with butt joint piece 6, and sliding block 5 and butt joint piece 6 can adopt the plastic construction that has certain elasticity.
Referring to fig. 2 and fig. 3, a sliding surface 601 is obliquely formed on one side of the abutting block 6 close to the plate body 1, and a drag reduction surface 501 is obliquely formed on one side of the sliding block 5 away from the plate body 1. When the inserting column 4 is inserted into the inserting groove 3, the resistance-reducing surface 501 slides on the sliding surface 601, and with the continuous insertion of the inserting column 4, the sliding block 5 and the abutting block 6 are pressed against each other until the sliding surface 601 is in sliding contact with the next resistance-reducing surface 501 close to the plate body 1. When inserting column 4 slided outward towards inserting groove 3, the butt 6 was kept away from plate body 1 one side butt and is close to plate body 1 one side at sliding block 5, and restriction inserting column 4 slides outward towards inserting groove 3, is favorable to keeping plate body 1's state.
Referring to fig. 3 and 4, a sliding groove 7 extending along the length direction is formed in the groove wall of the insertion groove 3, a sliding block 8 is fixedly connected to one side, away from the central axis of the insertion groove 3, of the abutting block 6, and the sliding block 8 slides in the sliding groove 7. The relative both sides cell wall of 7 length directions of spout communicates respectively and has seted up spacing groove 17, and the corresponding both sides lateral wall of slider 8 is fixedly connected with stopper 18 respectively, and stopper 18 slides in spacing groove 17, reduces the possibility that slider 8 breaks away from spout 7. For the convenience of installing the sliding block 8, the connecting seat 2 can adopt a two-half structure, and the sliding block 8 is fixed through screws after being installed.
Referring to fig. 2 and 3, a supporting groove 9 extending along the length direction is formed in the connecting seat 2, a groove wall of the supporting groove 9 on one side far away from the plate body 1 and a groove wall of the inserting groove 3 on one side far away from the plate body 1 are located on the same plane, the supporting groove 9 is communicated with one side of the sliding groove 7 far away from the inserting groove 3, and the sliding block 8 protrudes into the supporting groove 9. The connecting seat 2 is provided with a support rod 10, the support rod 10 is arranged in the support groove 9, the support rod 10 can slide along the diameter direction of the insertion groove 3, and the distance between the slide block 8 and one side of the support groove 9 far away from the insertion groove 3 is larger than the width of the support rod 10. In the initial state, the side wall of the support bar 10 is abutted against the side wall of the support groove 9 close to the insertion groove 3, and one end of the support bar 10 close to the plate body 1 is abutted against one side of the slide block 8 far away from the plate body 1. The spout 7 is close to plate body 1 one side cell wall and has seted up mounting groove 16, and connecting seat 2 is provided with the elastic component, and the elastic component is for promoting spring 15, and promotion spring 15 installs in mounting groove 16, and the one end butt of promoting spring 15 is close to plate body 1 one side at slider 8, and the other end butt is on the mounting groove 16 is close to plate body 1 one side cell wall. When the device is used, the pushing spring 15 is elastically released, and the sliding block 8 is pushed towards the direction away from the plate body 1, so that the sliding block 8 can be abutted against the supporting rod 10 in the initial state, the state of the abutting block 6 is favorably kept, and the pushing spring 15 is in a compressed state at the moment.
Referring to fig. 2 and 3, the connecting seat 2 is provided with a driving member, when the insertion column 4 is far away from the wall of the insertion groove 3 on one side of the plate body 1 due to the butt joint of the end of the plate body 1, the driving member drives the supporting rod 10 to slide in the direction of keeping away from the insertion groove 3, so that the supporting rod 10 and the sliding block 8 are separated in a staggered manner, the spring 15 is pushed to release elastically, the abutting block 6 is pushed in the direction of keeping away from the plate body 1, the abutting block 6 is far away from the wall of the sliding block 5 on one side of the plate body 1 due to the butt joint of one side of the plate body 1, and the state of the end of the plate body 1, which is far away from the wall of the groove 3 on one side of the plate body 1, is favorably maintained.
Referring to fig. 2 and 3, the driving member is a driving column 11, a driving groove 12 communicating with the insertion groove 3 is formed in a position of the supporting groove 9 close to a groove wall on one side of the insertion groove 3 and far away from the plate body 1, and a groove wall on one side of the driving groove 12 far away from the plate body 1 and a groove wall on one side of the insertion groove 3 far away from the plate body 1 are located on the same plane. Fixed connection between drive post 11 and bracing piece 10, and drive post 11 slides in drive groove 12, drive post 11 keeps away from bracing piece 10 and is close to the slope of plate body 1 one side and has offered drive face 111, peg graft post 4 keeps away from the in-process of plate body 1 one side cell wall at 3 keeping away from of peg graft groove of plate body, peg graft post 4 slides on drive face 111, 3 directions promotion of peg graft groove are kept away from towards bracing piece 10, when the wall looks butt of plate body 1 side cell wall is kept away from with peg graft groove 3 until peg graft post 4, bracing piece 10 and 8 dislocation separation of slider, it can promote slider 8 to keep away from 1 direction of plate body to promote spring 15 this moment. The ball head structure is arranged on one side of the inserting column 4 away from the plate body 1, and the ball head structure slides on the driving surface 111 during use, so that resistance encountered when the inserting column 4 pushes the driving column 11 is reduced.
Referring to fig. 3, a spring groove 14 is formed in a position of the support groove 9 away from the groove wall of one side of the insertion groove 3 and away from the plate body 1, the connecting seat 2 is provided with a driving spring 13, the driving spring 13 is installed in the spring groove 14, one end of the driving spring 13 abuts against one side of the support rod 10 away from the insertion groove 3, and the other end abuts against the groove wall of the spring groove 14. When the connecting base is used, the driving spring 13 is elastically released to push the supporting rod 10 towards the insertion groove 3, so that the supporting rod 10 can be kept in a state of abutting against the sliding block 8 when the connecting base 2 is installed. In order to facilitate the installation of the supporting rod 10, the driving spring 13 and other parts, the connecting seat 2 can adopt a two-half structure, and when the supporting rod 10, the driving spring 13 and other parts are installed, the two halves of the connecting seat 2 are fixed through screws.
The implementation principle of the green building external wall panel integrating heat preservation, facing and power generation of the embodiment is as follows:
during the installation earlier according to plate body 1's mounted position with connecting seat 2 installation inlay establish on the surface of building, smear cement on the surface of building after that, the convex length of connecting seat 2 is more than or equal to the thickness of cement, then insert inserting groove 3 through inserting post 4 and install plate body 1, keep away from plate body 1 one side butt when plate body 1 one side cell wall is kept away from at inserting groove 3 to inserting post 4, bracing piece 10 misplaces with slider 8, the separation, make butt piece 6 keep away from plate body 1 one side butt and be close to plate body 1 one side at slider 5, fix plate body 1, make plate body 1 be close to the state of laminating on cement of building outer surface one side and obtain keeping.
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. The utility model provides a green building side fascia of heat preservation, veneer, electricity generation integration, includes plate body (1) and inlays connection seat (2) of establishing at the building surface, its characterized in that: the connecting seat (2) is far away from one side of the outer surface of the building and is provided with an inserting groove (3), the plate body (1) is provided with a square column-shaped inserting column (4) facing one side of the outer surface of the building, the inserting column (4) is inserted in the inserting groove (3), two groups of sliding blocks (5) are symmetrically arranged on the outer peripheral side of the inserting column (4), each group of sliding blocks (5) are provided with a plurality of sliding blocks and are evenly arranged along the length direction, the inner wall of the inserting groove (3) is symmetrically provided with a butt-joint block (6), the butt-joint block (6) is close to one side of the plate body (1) and inclines to be provided with a sliding surface (601), the sliding blocks (5) slide on the sliding surface (601), and the butt-joint block (6) is far away from one side of the plate body (1) and is close to one side of the plate body (1) in the sliding blocks (5).
2. The integrated green building external wall panel with heat preservation, veneer and power generation as claimed in claim 1, wherein: one side of the sliding block (5) far away from the plate body (1) is obliquely provided with a resistance reducing surface (501), and the resistance reducing surface (501) slides on the sliding surface (601).
3. The integrated green building external wall panel with heat preservation, veneer and power generation as claimed in claim 1, wherein: sliding grooves (7) extending along the axis direction are symmetrically formed in the circumferential side of each insertion groove (3), sliding blocks (8) are arranged on the opposite sides of the two abutting blocks (6), supporting grooves (9) extending along the length direction are formed in the connecting seat (2), the supporting grooves (9) are communicated with one sides, away from the insertion grooves (3), of the sliding grooves (7), the sliding blocks (8) slide in the sliding grooves (7) and protrude into the supporting grooves (9), elastic pieces which are arranged in the sliding grooves (7) and used for pushing the sliding blocks (8) towards the direction away from the plate body (1) are arranged on the connecting seat (2), supporting rods (10) which are arranged in the sliding grooves (7) and used for enabling the sliding blocks (8) to compress the elastic pieces are arranged on the connecting seat (2), the supporting rods (10) slide in the supporting grooves (9) along the diameter direction of the insertion grooves (3), one sides, close to the plate body (1), of the supporting rods (10) are abutted to the sliding blocks (8), the connecting seat (2) is provided with a driving piece which is used for driving the supporting rod (10) and the sliding block (8) to be separated when the inserting column (4) is abutted against the groove wall of one side, far away from the plate body (1), of the inserting groove (3).
4. The integrated green building external wall panel with heat preservation, veneer and power generation as claimed in claim 3, wherein: the driving piece is a driving column (11), a driving groove (12) communicated with the supporting groove (9) is formed in the position, far away from the plate body (1), of the groove wall on the peripheral side of the insertion groove (3), the driving column (11) slides in the driving groove (12) and is fixedly connected with the supporting rod (10), a driving surface (111) is formed in one side, close to the plate body (1) and far away from the supporting rod (10), of the driving column (11), and the insertion column (4) slides on the driving surface (111).
5. The integrated green building external wall panel with heat preservation, veneer and power generation as claimed in claim 4, wherein: and a ball head structure is arranged on one side, away from the plate body (1), of the insertion column (4).
6. The integrated green building external wall panel with heat preservation, veneer and power generation as claimed in claim 4, wherein: the connecting seat (2) is provided with a driving spring (13) installed in the supporting groove (9), one end of the driving spring (13) is abutted against one side, far away from the inserting groove (3), of the supporting rod (10), and the other end of the driving spring is abutted against the groove wall, far away from the inserting groove (3), of the supporting groove (9).
7. The integrated green building external wall panel with heat preservation, veneer and power generation as claimed in claim 3, wherein: the elastic part is a pushing spring (15), a mounting groove (16) is formed in one side, close to the plate body (1), of the sliding groove (7), the pushing spring (15) is mounted in the mounting groove (16), one end of the pushing spring (15) is abutted to the sliding block (8), and the other end of the pushing spring is abutted to the wall of the mounting groove (16).
8. The integrated green building external wall panel with heat preservation, veneer and power generation as claimed in claim 7, wherein: limiting grooves (17) are formed in opposite side walls of the sliding groove (7) in the length direction in a communicated mode, a limiting block (18) is arranged on the sliding block (8), and the limiting block (18) slides in the limiting grooves (17).
CN202120853562.6U 2021-04-24 2021-04-24 Heat preservation, veneer, green building side fascia of electricity generation integration Active CN214658394U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120853562.6U CN214658394U (en) 2021-04-24 2021-04-24 Heat preservation, veneer, green building side fascia of electricity generation integration

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120853562.6U CN214658394U (en) 2021-04-24 2021-04-24 Heat preservation, veneer, green building side fascia of electricity generation integration

Publications (1)

Publication Number Publication Date
CN214658394U true CN214658394U (en) 2021-11-09

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CN202120853562.6U Active CN214658394U (en) 2021-04-24 2021-04-24 Heat preservation, veneer, green building side fascia of electricity generation integration

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CN (1) CN214658394U (en)

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