CN213682714U - Heat-insulating energy-saving curtain wall template - Google Patents
Heat-insulating energy-saving curtain wall template Download PDFInfo
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- CN213682714U CN213682714U CN202022537889.0U CN202022537889U CN213682714U CN 213682714 U CN213682714 U CN 213682714U CN 202022537889 U CN202022537889 U CN 202022537889U CN 213682714 U CN213682714 U CN 213682714U
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Abstract
The utility model relates to a heat preservation and energy saving curtain wall form relates to the field of building wallboard, and it is including a plurality of wallboards of mutual concatenation, adjacent the mounting groove has all been seted up to wallboard looks terminal surface, the mounting groove runs through the relative both ends face of wallboard, and is adjacent the mounting groove of wallboard forms the installing port, it has the mounting bar to peg graft in the installing port, the interface has been seted up to the mounting groove lateral wall, the both sides wall that the mounting bar is relative corresponds the position of interface and has all seted up the mouth that slides, be provided with in the slide mouth and peg graft complex spigot joint piece with the interface, be provided with in the slide mouth and push into the intraoral elastic component of interface with the spigot joint. This application can be connected adjacent two sets of wallboards, improves the stability between the wallboard.
Description
Technical Field
The application relates to the field of building wallboards, in particular to a heat-insulating and energy-saving curtain wall template.
Background
The curtain wall is the outer wall enclosure of the building, does not bear the weight, hang like the curtain, so also called "curtain wall", it is the common light wall with decorative effect of modern large-scale and high-rise building, it is made up of wallboard and supporting structure system, can have certain displacement ability or self have certain deformability relative to the main structure, do not bear the building exterior enclosure structure or decorative structure that the main structure acts on.
In the related art, a supporting structure is generally fixed to a wall surface, and a wall panel is fixed to the outer side of the supporting structure through a fastening member, and the supporting structure supports and fixes the wall panel.
In view of the above-mentioned related art, the inventors consider that the wall panels and the supporting structural system are connected only by the fastening members, and the connection between the wall panels is not made, so that the stability between the wall panels is poor.
SUMMERY OF THE UTILITY MODEL
In order to improve the connection stability between two sets of adjacent wallboards, this application provides a heat preservation energy-saving curtain wall form.
The application provides a heat preservation energy-saving curtain wall template adopts following technical scheme:
the utility model provides a heat preservation and energy saving curtain wall formwork, is including a plurality of wallboards of mutual concatenation, and is adjacent the mounting groove has all been seted up to wallboard looks terminal surface, the mounting groove runs through the relative both ends face of wallboard, and is adjacent the mounting groove of wallboard forms the installing port, it has the mounting bar to peg graft in the installing port, the interface has been seted up to the mounting groove lateral wall, the opening that slides has all been seted up to the position that the both sides wall that the mounting bar is relative corresponds the interface, be provided with in the opening that slides and peg graft complex spigot joint piece with the interface, be provided with in the opening that slides and push into the intraoral elastic component.
Through adopting above-mentioned technical scheme, the mounting bar is pegged graft in the mounting hole that two sets of mounting groove formed for the mounting bar can be connected adjacent two sets of wallboards, when the mounting bar is pegged graft in the mounting hole completely, the elastic component can push the grafting piece in to the grafting mouth, makes the grafting piece peg graft in the grafting mouth, thereby plays the connection effect between adjacent two sets of wallboards, improves the connection stability between adjacent two sets of wallboards.
Optionally, a clamping interface is formed in the side wall of the insertion interface, a bayonet is formed in the outer side of the insertion block corresponding to the position of the clamping interface, a clamping block matched with the clamping interface in a clamping mode is connected in the bayonet in a sliding mode, and a clamping spring for pushing the clamping block into the clamping interface is arranged in the bayonet.
Through adopting above-mentioned technical scheme, when the grafting piece is pegged graft in the grafting mouth, the joint piece is aimed at with the joint interface, and under the effect of joint spring, the joint piece can be pushed to in the joint mouth, fixes between mounting bar and the wallboard to fix adjacent two sets of wallboards.
Optionally, the dovetail groove has all been seted up to the both sides wall that the mounting groove of wallboard is relative, the dovetail groove runs through the both ends face that the wallboard is relative, the length direction of dovetail is parallel with the length direction of mounting groove, the mounting bar outside is provided with and pegs graft complex dovetail block with the dovetail.
Through adopting above-mentioned technical scheme, when the mounting bar is pegged graft in the installing port, the forked tail piece is pegged graft in the dovetail, can improve the connection stability between mounting bar and the wallboard.
Optionally, two outer side surfaces of the mounting bar opposite to each other are provided with outer placing grooves, outer magnets are arranged in the outer placing grooves, inner placing grooves are arranged on the side walls of the mounting grooves corresponding to the outer magnets, inner magnets are arranged in the inner placing grooves, and the outer magnets are matched with the inner magnets.
Through adopting above-mentioned technical scheme, when the mounting bar is pegged graft in the installing port, outer standing groove aligns with interior standing groove for two sets of outer magnets on the mounting bar adsorb with the interior magnet on corresponding two sets of wallboards respectively, thereby improve the connection stability between mounting bar and the wallboard.
Optionally, two sets of fixed slots have been seted up at the mounting bar top, set screw is worn to be equipped with by the fixed slot lateral wall, set screw thread wears to locate in the mounting groove.
Through adopting above-mentioned technical scheme, set screw's setting can further improve the connection stability between mounting bar and the wallboard, and the fixed slot set up the dismouting of the set screw of being convenient for.
Optionally, a plurality of insertion grooves are formed in the lower end face of the wallboard, and insertion strips which are in insertion fit with the insertion grooves are arranged on the upper end face of the wallboard.
Through adopting above-mentioned technical scheme, connect through grafting piece and inserting groove between two sets of wallboards from top to bottom, can further improve the connection stability between the wallboard.
Optionally, the cross-section of the clamping block is trapezoidal, and one side of the clamping block, which is far away from the clamping spring, is set to be an inclined plane.
By adopting the technical scheme, the material for producing the clamping block can be saved, the cost is saved, and the economic benefit is improved.
Optionally, the elastic member is a telescopic spring.
Through adopting above-mentioned technical scheme, expanding spring's stability is better, and the cost is lower.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the mounting bars are inserted into the mounting holes formed by the two groups of mounting grooves, so that the mounting bars can connect the two adjacent groups of wallboards, and when the mounting bars are completely inserted into the mounting holes, the elastic pieces can push the insertion blocks into the insertion holes, so that the insertion blocks are inserted into the insertion holes, thereby connecting the two adjacent groups of wallboards and improving the connection stability of the two adjacent groups of wallboards;
2. when the grafting piece is pegged graft in the grafting mouth, the joint piece is aimed at with the joint interface, and under the effect of joint spring, the joint piece can be pushed to in the joint mouth, fixes between mounting bar and the wallboard to fix adjacent two sets of wallboards.
Drawings
FIG. 1 is a schematic view of a heat-insulating energy-saving curtain wall template;
FIG. 2 is a schematic view of a mounting bar of a heat-insulating energy-saving curtain wall template.
Description of reference numerals: 1. a wallboard; 2. mounting grooves; 3. an installation port; 4. mounting a bar; 5. an interface; 6. a first side wall; 7. a second side wall; 8. a sliding port; 9. an insertion block; 10. a tension spring; 11. a card interface; 12. a bayonet; 13. a clamping block; 14. clamping a spring; 15. an outer placement groove; 16. an external magnet; 17. an inner placing groove; 18. an inner magnet; 19. a third side wall; 20. a dovetail block; 21. a dovetail groove; 22. fixing grooves; 23. a set screw; 24. inserting grooves; 25. and (4) inserting strips.
Detailed Description
The present application is described in further detail below with reference to figures 1-2.
The embodiment of the application discloses a heat-preservation and energy-saving curtain wall template. Referring to fig. 1, energy-conserving curtain template of heat preservation is including splicing two sets of wallboards 1 of complex each other, and two sets of wallboards 1 are the level and arranges, and the equal vertical mounting groove 2 of having seted up of 1 looks terminal surfaces in two sets of wallboards, and mounting groove 2 runs through both ends face about wallboard 1, and the transversal T font of personally submitting of mounting groove 2. The mounting openings 3 are formed between the mounting grooves 2 of the two groups of wall plates 1 in a splicing mode, the cross sections of the mounting openings 3 are I-shaped, mounting strips 4 are inserted into the mounting openings 3, and the cross sections of the mounting strips 4 are also I-shaped.
Referring to fig. 1 and 2, a side wall of the mounting groove 2 away from the mounting strip 4 is a first side wall 6, a socket 5 is formed in the middle of the first side wall 6, when the mounting strip 4 is plugged into the mounting opening 3, a group of side walls, which are attached to the first side wall 6, on the mounting strip 4 are second side walls 7, the mounting strip 4 has two groups of second side walls 7, and sliding openings 8 corresponding to the sockets 5 are formed in the middle of the two groups of second side walls 7; when the mounting bar 4 is fully inserted into the mounting opening 3, the sliding opening 8 is aligned with the insertion opening 5. An inserting block 9 is connected in the sliding opening 8 in a sliding mode, the sliding direction of the inserting block 9 is parallel to the opening direction of the sliding opening 8, and the inserting block 9 is in inserting fit with the inserting opening 5. An elastic piece is further installed in the sliding opening 8, in this embodiment, the elastic piece is an extension spring 10, the length direction of the extension spring 10 is parallel to the sliding direction of the insertion block 9, two ends of the extension spring 10 are respectively fixed with the insertion block 9 and the inner wall of the sliding opening 8, and the extension spring 10 is in a compressed state; when the mounting bar 4 is completely inserted into the mounting opening 3, the insertion block 9 can be pushed into the insertion opening 5 under the elastic force action of the telescopic spring 10, so that the mounting bar 4 and the wall plate 1 are connected.
Furthermore, the vertical section of the clamping block 13 is trapezoidal, and one side of the clamping block 13 away from the bayonet 12 is provided with an inclined surface. With such an arrangement, the material required for manufacturing the clamping block 13 can be reduced, so that the cost can be saved.
In order to further improve the connection strength between the mounting bar 4 and the wallboard 1, the two groups of second side walls 7 of the mounting bar 4 are provided with outer placing grooves 15, the outer placing grooves 15 are positioned right above the sliding opening 8, outer magnets 16 are arranged in the outer placing grooves 15, and one sides, far away from the outer placing grooves 15, of the outer magnets 16 are flush with the second side surfaces; an inner placing groove 17 is formed in the first side wall 6 of the wall board 1, the inner placing groove 17 is located right above the inserting port 5, an inner magnet 18 is installed in the inner placing groove 17, the inner magnet 18 is matched with the outer magnet 16, and one side, far away from the inner placing groove 17, of the inner magnet 18 is flush with the first side wall 6. When the mounting bar 4 is inserted in the mounting opening 3, the two groups of outer magnets 16 on the mounting bar 4 can be respectively adsorbed with the corresponding two groups of inner magnets 18, so that the connection strength between the mounting bar 4 and the wall plate 1 can be improved, and the connection stability between the two adjacent groups of wall plates 1 is further improved.
Two groups of side walls adjacent to the second side wall 7 on the mounting strip 4 are third side walls 19, the third side walls 19 are vertical to the ground, and dovetail blocks 20 are vertically fixed on the two groups of third side walls 19 on the mounting strip 4; dovetail grooves 21 are vertically formed in the positions, corresponding to the dovetail blocks 20, of two opposite side walls of the mounting groove 2, the dovetail grooves 21 penetrate through the upper end face and the lower end face of the wall plate 1, the length direction of the dovetail grooves 21 is parallel to the length direction of the mounting groove 2, and the dovetail blocks 20 are matched with the dovetail grooves 21 in an inserted mode; when the mounting bar 4 is inserted into the mounting opening 3, the dovetail block 20 can be inserted into the dovetail groove 21 at the corresponding position, so that the connection stability between the mounting bar 4 and the wall plate 1 can be improved.
Two sets of fixed slots 22 have been seted up to the 4 tops of mounting bar vertically, and two sets of fixed slots 22 correspond with the position of the mounting groove 2 of two sets of wallboards 1 respectively, and set screw 23 is installed to the 4 tops of mounting bar corresponding fixed slot 22's position, and set screw 23 wears to locate the fixed slot 22 lateral wall, and set screw 23 is the level setting, and set screw 23 screw thread wears to locate in mounting groove 2. So set up, can further improve the joint strength between mounting bar 4 and wallboard 1 to further improve the connection stability between adjacent two sets of wallboards 1.
Referring to fig. 1, in order to improve the connection stability between the upper and lower two sets of wall panels 1, two sets of insertion grooves 24 are vertically formed in the lower end surface of the wall panel 1, two sets of insertion strips 25 are vertically fixed on the upper end surface of the wall panel 1, and the insertion strips 25 are inserted into the insertion grooves 24. The arrangement of the inserting grooves 24 and the inserting strips 25 can improve the connection stability between two adjacent groups of wall boards 1 in the vertical direction.
The implementation principle of the heat-preservation energy-saving curtain wall template in the embodiment of the application is as follows: installing two adjacent groups of wallboards 1, enabling the end surfaces of the two adjacent groups of wallboards 1 to be mutually attached, splicing the two groups of installation grooves 2 into an I-shaped installation opening 3, pressing a clamping block 13 into a bayonet 12, pressing an insertion block 9 into a sliding opening 8, then inserting an installation strip 4 into the installation opening 3, when the installation strip 4 is completely inserted into the installation opening 3, under the elastic force action of an expansion spring 10, the insertion block 9 can be inserted into an insertion opening 5, at the moment, under the elastic force action of a clamping spring 14, the clamping block 13 can be clamped into a clamping opening 11, so that the installation strip 4 and the wallboards 1 are fixed, and further the two adjacent groups of wallboards 1 are fixed; at the moment, the two groups of external magnets 16 on the mounting bar 4 can be respectively adsorbed with the corresponding two groups of internal magnets 18, so that the connection strength between the mounting bar 4 and the wallboard 1 is improved; and then fixing screws 23 are arranged in the fixing grooves 22, so that the fixing between the mounting strip 4 and the wall plate 1 is further carried out.
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 heat preservation energy-saving curtain wall formwork which characterized in that: including a plurality of wallboards (1) of splicing each other, it is adjacent wallboard (1) terminal surface in opposite directions has all seted up mounting groove (2), mounting groove (2) run through wallboard (1) relative both ends face, and is adjacent mounting groove (2) of wallboard (1) form installing port (3), it has mounting bar (4) to peg graft in installing port (3), interface (5) have been seted up to mounting groove (2) lateral wall, the position that the both sides wall that mounting bar (4) is relative corresponds interface (5) has all been seted up and has been slided mouthful (8), be provided with in the mouth that slides (8) and peg graft complex grafting piece (9) with interface (5), be provided with in the mouth that slides (8) and push the elastic component in interface (5) with grafting piece (9).
2. The heat-insulating energy-saving curtain wall formwork according to claim 1 is characterized in that: the plug-in connector is characterized in that a clamping interface (11) is formed in the side wall of the plug-in connector (5), a clamping opening (12) is formed in the position, corresponding to the clamping interface (11), of the outer side of the plug-in connector (9), a clamping block (13) in clamping fit with the clamping interface (11) is connected in the clamping opening (12) in a sliding mode, and a clamping spring (14) for pushing the clamping block (13) into the clamping interface (11) is arranged in the clamping opening (12).
3. The heat-insulating energy-saving curtain wall formwork according to claim 2 is characterized in that: dovetail (21) have all been seted up to the both sides wall that mounting groove (2) are relative of wallboard (1), dovetail (21) run through wallboard (1) relative both ends face, the length direction of dovetail (21) is parallel with the length direction of mounting groove (2), the mounting bar (4) outside is provided with and pegs graft complex dovetail block (20) with dovetail (21).
4. The heat-insulating energy-saving curtain wall formwork according to claim 1 is characterized in that: outer placing grooves (15) are formed in two opposite outer side faces of the mounting bar (4), outer magnets (16) are arranged in the outer placing grooves (15), inner placing grooves (17) are formed in the positions, corresponding to the outer magnets (16), of the side walls of the mounting groove (2), inner magnets (18) are arranged in the inner placing grooves (17), and the outer magnets (16) are matched with the inner magnets (18).
5. The heat-insulating energy-saving curtain wall formwork according to claim 1 is characterized in that: two sets of fixed slots (22) have been seted up at mounting bar (4) top, set screw (23) are worn to be equipped with by fixed slot (22) lateral wall, set screw (23) screw thread is worn to locate in mounting groove (2).
6. The heat-insulating energy-saving curtain wall formwork according to claim 1 is characterized in that: a plurality of inserting grooves (24) are formed in the lower end face of the wallboard (1), and inserting strips (25) which are matched with the inserting grooves (24) in an inserting mode are arranged on the upper end face of the wallboard (1).
7. The heat-insulating energy-saving curtain wall formwork according to claim 2 is characterized in that: the cross-section of joint piece (13) is trapezoidal, joint piece (13) keep away from one side of joint spring (14) and set up to the inclined plane.
8. The heat-insulating energy-saving curtain wall formwork according to claim 1 is characterized in that: the elastic piece is a telescopic spring (10).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022537889.0U CN213682714U (en) | 2020-11-05 | 2020-11-05 | Heat-insulating energy-saving curtain wall template |
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Application Number | Priority Date | Filing Date | Title |
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CN202022537889.0U CN213682714U (en) | 2020-11-05 | 2020-11-05 | Heat-insulating energy-saving curtain wall template |
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CN213682714U true CN213682714U (en) | 2021-07-13 |
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CN202022537889.0U Active CN213682714U (en) | 2020-11-05 | 2020-11-05 | Heat-insulating energy-saving curtain wall template |
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