CN215563888U - Knocking type ridge tile wind-resistant hasp - Google Patents

Knocking type ridge tile wind-resistant hasp Download PDF

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Publication number
CN215563888U
CN215563888U CN202122288197.1U CN202122288197U CN215563888U CN 215563888 U CN215563888 U CN 215563888U CN 202122288197 U CN202122288197 U CN 202122288197U CN 215563888 U CN215563888 U CN 215563888U
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plate surface
edge
ridge tile
led out
transition
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CN202122288197.1U
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赖延鹏
谢鑫
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Hubei Wade New Material Technology Co ltd
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Hubei Wade New Material Technology Co ltd
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Abstract

The utility model belongs to the technical field of construction fixing tools for concrete tiles for buildings, and particularly relates to a knocking type ridge tile wind-resistant hasp. The connecting structure is used for connecting ridge tiles and wood battens, is formed by stamping and bending an integral metal plate and comprises a supporting part, a transition connecting part, a transverse plate surface, a vertical plate surface and a buckling plate surface; the supporting part comprises a supporting plate surface, and a plurality of nail feet are arranged on the supporting plate surface; the transition connection portion includes: the transition plate surface and the connecting plate surface are perpendicular to each other; the transverse plate surface is led out from the edge of the connecting plate surface; the vertical board surface is led out from the edge of the transverse board surface; the buckling plate surface is led out from the edge of the vertical plate surface. The knocking type ridge tile wind-resistant hasp is simple in installation mode, does not need to be matched with a tile tool for punching, is suitable for fixing various ridge tiles, and does not need to change the original ridge tile installation structure.

Description

Knocking type ridge tile wind-resistant hasp
Technical Field
The utility model belongs to the technical field of construction fixing tools for concrete tiles for buildings, and particularly relates to a knocking type ridge tile wind-resistant hasp.
Background
The ridge tile is a special tile arranged at the edge of a tile layer at the top of various antique buildings, a middle boundary line and the like, most of the tiles at the top of the buildings are mutually hooked and locked, the ridge tiles positioned at the edge and the boundary line are important structures for ensuring the stability of the top structure, the traditional ridge tile is fixedly arranged on a wood tile hanging strip at the lower side in a rivet, gel and other modes, because the modes are mostly connected and fixed after penetrating the tiles from the top and downwards, the vertical connecting strength and the positioning of the tiles can be effectively ensured, but the ridge tile positioned at the edge or the end part is not perfect, because the end part and the edge tile bear the vertical gravity action, the ridge tile is more easily influenced by lateral wind, particularly, the phenomena of local strong convection and strong wind weather in recent years around the world are increased, and the phenomenon of 'lifting' of buildings including the tile top buildings continuously appears, resulting in substantial economic losses and personnel hazards. There is a need for further upgrades to existing ridge tile mounting structures.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a knock-type ridge tile wind resistance hasp which is used for installing and fixing a ridge tile, is particularly suitable for improving the wind resistance of the ridge tile, and is simple in installation mode, ingenious and durable.
In order to achieve the purpose, the utility model adopts the following technical scheme.
A knocking type ridge tile wind-resistant hasp is used for connecting ridge tiles 9 and a wood tile hanging strip 8, is formed by stamping and bending an integral metal plate, and comprises a supporting part 1, a transition connecting part 2, a transverse plate surface 3, a vertical plate surface 4 and a buckling plate surface 5 which are connected in sequence;
the supporting part 1 comprises a supporting plate surface 10 which is vertically arranged, the supporting plate surface 10 is tightly attached to the side surface of the wood battens 8, and a plurality of nail feet 11 are arranged on one side, facing the wood battens 8, of the supporting plate surface 10; the nail foot 11 is nailed into the wood battens 8;
the transition connection portion 2 includes: a transition plate surface 20 and a connecting plate surface 21 which are perpendicular to each other;
the transition plate surface 20 is led out from the edge of the support plate surface 10 and extends towards the side away from the wood battens 8; the connecting plate surface 21 is formed after being led out from the edge of the transition plate surface 20 and extending upwards;
the transverse plate surface 3 is led out from the edge of the connecting plate surface 21 and extends to the bottom of the positioning groove 9a on the side surface of the ridge tile 9;
The vertical plate surface 4 is led out from the edge of the transverse plate surface 3 and extends along the bottom of the positioning groove 9 a;
the buckling plate surface 5 is led out from the edge of the vertical plate surface 4, extends along the inner wall of the positioning groove 9a and is turned over to buckle the side edge of the ridge tile 9.
A further improvement or preferred embodiment of the knock-on ridge tile wind-resistant fastener described above is that the transition panel 20 extends horizontally outward from the upper edge of the support panel 10 to the side facing away from the wood battens 8.
A further improvement or a preferred embodiment of the knocking type ridge tile wind-resistant fastener is as follows, wherein the nail foot 11 is provided with an anti-falling thorn 11 a.
A further improvement or a preferred embodiment of the knocking type ridge tile wind-resistant buckle is that the connecting plate surface 21 is led out from the edge of one side of the transition plate surface 20 facing the ridge tile 9 and is formed after vertically extending upwards; the connecting plate surface 21 is perpendicular to the wood battens 8.
A further improvement or preferred embodiment of the knock-on ridge tile wind-resistant hasp is that the transition panel 20 is led out from the upper side edge of the support panel 10 and formed after extending towards the side facing away from the wood battens 8.
A further improvement or a preferred embodiment of the knocking type ridge tile wind-resistant buckle is that the transverse plate surface 3 is led out from the upper side edge of the connecting plate surface 21 and extends along the lower side inner wall of the positioning groove 9a on the side surface of the ridge tile 9 to the groove bottom;
The vertical plate surface 4 is led out from the edge of the transverse plate surface 3 close to the groove bottom and extends to the inner wall of the upper side of the positioning groove 9a along the groove bottom of the positioning groove 9 a;
the buckling plate surface 5 is led out from the edge of the upper side of the vertical plate surface 4, extends outwards along the inner wall of the upper side of the positioning groove 9a and then is turned over to buckle the edge of the side surface of the ridge tile 9.
The beneficial effects are that:
the knocking type ridge tile wind-resistant hasp is simple in installation mode, does not need to be matched with a tile tool for punching, is suitable for fixing various ridge tiles, and does not need to change the original ridge tile installation structure;
the hasp can be processed by stamping and shaping a metal sheet metal part, so that the manufacturing and using cost is low, the processing mode is simple and the efficiency is high;
the hasp and the tile are fixed by the self-locking metal, so that the tile cannot be damaged during installation, the side fixing strength of the tile is effectively enhanced on the premise of not influencing the functions of the tile, and the wind resistance of the tile is improved; is suitable for fixing various ridge tiles at the edge, the end part and the middle part,
drawings
FIG. 1 is a first structural view of a knock-type ridge tile wind-resistant buckle;
FIG. 2 is a second structural schematic view of the knocking type ridge tile wind-resistant buckle;
FIG. 3 is a third structural view of the knocking type wind-resistant buckle of the ridge tile;
FIG. 4 is a fourth schematic structural view of the knock-type ridge tile wind resistance hasp;
FIG. 5 is an assembled view of the knock-on ridge tile wind resistance hasp;
wherein the reference numerals include:
the wood batten comprises a supporting part 1, a supporting plate surface 10, nail feet 11, an anti-falling thorn 11a, a transition connecting part 2, a transition plate surface 20, a connecting plate surface 21, a transverse plate surface 3, a vertical plate surface 4, a buckling plate surface 5, a wood batten 8, a connecting ridge tile 9 and a positioning groove 9 a.
Detailed Description
The present invention will be described in detail with reference to specific examples.
The knocking type ridge tile wind-resistant hasp is mainly used for connecting ridge tiles 9 and wood tile hanging strips 8; particularly, the buckle is positioned in the roof connecting tile tool at the edge, the boundary line and other positions and is possibly subjected to the fixed connection of ridge tiles influenced by the impact of lateral strong wind, the buckle utilizes the side faces of the ridge tiles to be connected and fixed with adjacent ridge tiles and flat tiles of two wings to clamp and lock, and utilizes the lower side vertex angle to quickly nail in a tile hanging strip, so that the operation is simple and quick, and the fixing effect is good;
as shown in figures 1, 2, 3 and 4, the knock-type ridge tile wind-resistant hasp is manufactured by stamping and bending an integral metal plate, the integral structure is formed by stamping and bending a plate surface, the stability of the integral structure can be guaranteed, meanwhile, the integral structure can be quickly formed and processed by utilizing a cutting device, the batch production is facilitated, and the specific size and the bending angle of the integral structure can be obtained by simply measuring the shape of the ridge tile.
The main structure of the plate comprises a supporting part 1, a transition connecting part 2, a transverse plate surface 3, a vertical plate surface 4 and a buckling plate surface 5 which are connected in sequence; the concrete structure is as follows:
the supporting part 1 comprises a supporting plate surface 10 which is vertically arranged, the supporting plate surface 10 is tightly attached to the side surface of the wood battens 8, and a plurality of nail feet 11 are arranged on one side, facing the wood battens 8, of the supporting plate surface 10; the nail foot 11 is nailed into the wood battens 8;
the transition connection portion 2 includes: a transition plate surface 20 and a connecting plate surface 21 which are perpendicular to each other;
the transition panel 20 is drawn from the edge of the support panel 10 and extends towards the side facing away from the wood battens 8; the connecting plate surface 21 is formed after being led out from the edge of the transition plate surface 20 and extending upwards;
the transverse plate surface 3 is led out from the edge of the connecting plate surface 21 and extends to the bottom of the positioning groove 9a on the side surface of the ridge tile 9;
the vertical plate surface 4 is led out from the edge of the transverse plate surface 3 and extends along the bottom of the positioning groove 9 a;
the buckling plate surface 5 is led out from the edge of the vertical plate surface 4, extends along the inner wall of the positioning groove 9a and is folded back to cover the side edge of the ridge tile 9.
In the specific use process, the transverse plate surface 3, the vertical plate surface 4 and the fastening plate surface 5 are clamped in by aligning to the positioning groove 9a on the side surface of the ridge tile, so that the transverse plate surface 3 and the fastening plate surface 5 respectively abut against two side walls of the positioning groove 9a, the vertical plate surface 4 abuts against the bottom of the positioning groove 9a, the support plate surface 10 abuts against the tile hanging strip, and the nail foot 11 is knocked to enable the nail foot to drill into the wood tile hanging strip 8 to be connected with the wood tile hanging strip 8 so as to provide lateral and vertical support force.
For the convenience of implementation, conflict or bump with the hasp when preventing structures such as nearby tile utensil installation, during the concrete implementation, adopt following optimization structural design:
the transition panels 20 extend horizontally outwards from the upper side edge of the support panels 10 towards the side facing away from the wood battens 8.
The connecting plate surface 21 is led out from the edge of one side of the transition plate surface 20 facing the ridge tile 9 and is formed after vertically extending upwards; the connecting plate surface 21 is perpendicular to the wooden battens 8.
In specific implementation, the transition panel 20 is led out from the edge of the upper side of the support panel 10 and is formed after extending towards the side away from the wood battens 8.
The transverse plate surface 3 is led out from the upper side edge of the connecting plate surface 21 and extends to the bottom of the groove along the lower side inner wall of the positioning groove 9a on the side surface of the ridge tile 9;
the vertical plate surface 4 is led out from the edge of the transverse plate surface 3 close to the groove bottom and extends to the inner wall of the upper side of the positioning groove 9a along the groove bottom of the positioning groove 9 a;
based on above-mentioned structure, closely laminate with the corresponding surface of ridge tile during each face installation, can enough reduce the influence to original mounting structure, avoid receiving the interference conflict of epilogue construction structure, also more pleasing to the eye practical.
For improving the adhesive force of the buckle, and facilitating the assembly and positioning, the buckling plate surface 5 is led out from the edge of the upper side of the vertical plate surface 4, extends outwards along the inner wall of the upper side of the positioning groove 9a and then turns over to buckle the edge of the side surface of the ridge tile 9.
For the joint strength who improves the support face, prevent deviating from or swing, in this embodiment, be provided with anticreep thorn 11a on nail foot 11, anticreep thorn 11a is nailed into the inside anticreep barb structure that forms of wooden structure.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention, and not for limiting the protection scope of the present invention, although the present invention is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.

Claims (6)

1. A knocking type ridge tile wind-resistant hasp is used for connecting ridge tiles (9) and wood tile hanging strips (8), and is characterized by being formed by stamping and bending an integral metal plate and comprising a supporting part (1), a transition connecting part (2), a transverse plate surface (3), a vertical plate surface (4) and a buckling plate surface (5) which are connected in sequence;
the supporting part (1) comprises a supporting plate surface (10) which is vertically arranged, the supporting plate surface (10) is tightly attached to the side surface of the wood battens (8), and a plurality of nail feet (11) are arranged on one side, facing the wood battens (8), of the supporting plate surface (10); the nail foot (11) is nailed into the wood battens (8);
The transition connection portion (2) includes: a transition plate surface (20) and a connecting plate surface (21) which are vertical to each other;
the transition plate surface (20) is led out from the edge of the support plate surface (10) and extends towards one side departing from the wood battens (8); the connecting plate surface (21) is formed by leading out from the edge of the transition plate surface (20) and extending upwards;
the transverse plate surface (3) is led out from the edge of the connecting plate surface (21) and extends to the bottom of the positioning groove (9a) on the side surface of the ridge tile (9);
the vertical plate surface (4) is led out from the edge of the transverse plate surface (3) and extends along the bottom of the positioning groove (9 a);
the buckling plate surface (5) is led out from the edge of the vertical plate surface (4), extends along the inner wall of the positioning groove (9a) and is turned over to close the side edge of the ridge tile (9).
2. Knock-on ridge tile wind-resistant hasp according to claim 1 wherein said transition panel (20) extends horizontally outward from the side of the support panel (10) facing away from the wooden battens (8) after exiting from the upper side edge of the support panel.
3. The knock-type ridge tile wind-resistant hasp according to claim 1, wherein said nail foot (11) is provided with an anti-falling thorn (11 a).
4. The knock-type ridge tile wind-resistant hasp according to claim 1, wherein the connecting plate surface (21) is led out from the edge of one side of the transition plate surface (20) facing the ridge tile (9) and is formed after vertically extending upwards; the connecting plate surface (21) is perpendicular to the wood battens (8).
5. Knock-on ridge tile wind-resistant hasp according to claim 1 wherein said transition panel (20) is led out from the upper side edge of the support panel (10) and formed after extending towards the side facing away from the wooden battens (8).
6. The knock-type ridge tile wind-resistant hasp of claim 1, wherein said transverse plate surface (3) is led out from the upper side edge of the connecting plate surface (21) and extends along the lower inner wall of the positioning groove (9a) of the side surface of the ridge tile (9) to the bottom of the groove;
the vertical plate surface (4) is led out from the edge of the transverse plate surface (3) close to the bottom of the groove and extends to the inner wall of the upper side of the positioning groove (9a) along the bottom of the positioning groove (9 a);
the buckling plate surface (5) is led out from the edge of the upper side of the vertical plate surface (4), extends outwards along the inner wall of the upper side of the positioning groove (9a), and then is turned over to buckle the edge of the side surface of the ridge tile (9).
CN202122288197.1U 2021-09-22 2021-09-22 Knocking type ridge tile wind-resistant hasp Active CN215563888U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122288197.1U CN215563888U (en) 2021-09-22 2021-09-22 Knocking type ridge tile wind-resistant hasp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122288197.1U CN215563888U (en) 2021-09-22 2021-09-22 Knocking type ridge tile wind-resistant hasp

Publications (1)

Publication Number Publication Date
CN215563888U true CN215563888U (en) 2022-01-18

Family

ID=79851635

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122288197.1U Active CN215563888U (en) 2021-09-22 2021-09-22 Knocking type ridge tile wind-resistant hasp

Country Status (1)

Country Link
CN (1) CN215563888U (en)

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