CN204781641U - Connecting device and novel roof board for roof boarding - Google Patents

Connecting device and novel roof board for roof boarding Download PDF

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Publication number
CN204781641U
CN204781641U CN201520347592.4U CN201520347592U CN204781641U CN 204781641 U CN204781641 U CN 204781641U CN 201520347592 U CN201520347592 U CN 201520347592U CN 204781641 U CN204781641 U CN 204781641U
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China
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tabs
roof panel
hole
roof
plate
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CN201520347592.4U
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Chinese (zh)
Inventor
贺平
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ABC Building Systems China Co Ltd
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ABC Building Systems China Co Ltd
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Abstract

The utility model discloses a connecting device and novel roof board for roof boarding. Connecting device for the roof boarding, a serial communication port, including buckling the piece, the buckle shape phase -match at the edge of buckle shape and the roof boarding of piece, the piece flexible of buckling, the piece of buckling warp the back, will laminate respectively two roof boardings of piece both sides of buckling are connected. The utility model provides a connecting device for the roof boarding connects two roof boardings through the piece of buckling, improves joint strength and stability between the roof boarding, prevents to take place between the roof boarding to break away from. Support mounting for the roof boarding on the connecting device is on the purlin on roof to stabilize the roof boarding on the roofing, prevent that the roof boarding from droing from the roof.

Description

Roof panel linkage and roof boarding
Technical field
The utility model relates to a kind of roof panel linkage and roof boarding.
Background technology
As shown in Figure 1, be widely used roof panel on the market.As the enlarged drawing that Fig. 2 is I place in Fig. 1.As shown in Figure 2, this kind of roof panel is spliced to form by the roof panel of polylith small size.Wherein the edge of the roof panel 01 of one piece of small size is provided with the first flanging 011, and the edge of the roof panel 02 of another block small size is provided with the second flanging 012.Traditional joining method, be only fastened on the first flanging 011 by the second flanging 012, namely complete the connection of roof panel 01 and roof panel 02, bonding strength is low, and poor stability very easily departs from.
Utility model content
The purpose of this utility model is to overcome deficiency of the prior art, provides a kind of roof panel linkage.
For realizing above object, the utility model is achieved through the following technical solutions:
Roof panel linkage, is characterized in that, comprises bent sheet; The bending shape at the bending shape of described bent sheet and the edge of roof panel matches; Described bent sheet deformable; After described bent sheet distortion, two roof panel being fitted in described bent sheet both sides are respectively connected.
Preferably, also support is comprised; Described bent sheet is arranged on the bracket movably.
Preferably, described support is provided with installation sheet; Described installation sheet is provided with installing hole, inserts the purlin on roof after adopting the connector penetrating mounting holes of the routines such as bolt, thus by described support installing on roof.
Preferably, the guiding device for providing guiding for described bent sheet is also comprised; Described guiding device comprises at least one slide block and at least one slide rail; Described at least one, slide block is arranged on slide rail described in one of them, and can move along described slide rail; Described slide block is arranged on in described junction plate and described support, and described slide rail is arranged on another of described junction plate and described support.
Preferably, described slide rail is groove or the first through hole; Described slide block inserts described groove, and can move along described groove; Or described slide block runs through described first through hole, and can move along described first through hole.
Preferably, described slide block is bearing pin; Described slide rail is through hole; Described bearing pin runs through described first through hole, and one end and described bent sheet removably connect, and the other end is provided with block; The section area of described block is greater than the section area of described bearing pin; Described block and described bearing pin form first step; First step is used for described support to be blocked between described block and described bent sheet.
Preferably, described first step, against time on the bracket, leaves the first space between described bent sheet and described support.
Preferably, when described bearing pin is resisted against on one of them inwall of described first through hole, on described bearing pin and described first through hole and between the inwall that is oppositely arranged of this inwall, leave Second gap.
Preferably, described bent sheet comprises the first tabs, the second tabs and the 3rd tabs; One end of described first tabs is arranged on the bracket movably; Described second tabs starts to extend from the other end of described first tabs, and can rotate towards or away from the first tabs around this end; Described 3rd tabs starts from the end of described second tabs to extend, and can rotate towards or away from the second tabs around this end; Described first tabs, the second tabs and the 3rd tabs surround draw-in groove.
Preferably, described second tabs is provided with third through-hole; Fluid sealant is filled with in described third through-hole.
Preferably, also gripper shoe is comprised; Described gripper shoe is hooked on the bracket, for supporting roof panel; Described gripper shoe is provided with the second through hole; Described first tabs runs through described second through hole; Described second tabs and described support lay respectively at the both sides of described gripper shoe; Described gripper shoe can along the relatively described support-moving of described first tabs; Described first tabs is provided with second step, and described second step and described support lay respectively at the both sides of described gripper shoe; Described second step departs from described first tabs for stoping described gripper shoe.
Preferably, when described first tabs is resisted against on one of them inwall of described second through hole, on described first tabs and described second through hole and between the inwall that is oppositely arranged of this inwall, leave the 3rd space.
Preferably, described gripper shoe comprises the first plate, the second plate and the 3rd plate; Described second through hole is arranged on described first plate; Described second plate and described 3rd plate lay respectively at the both sides of described first plate, extend to described support side from one end of described first plate.
Preferably, the angle α of described first plate and described second plate is not less than 90 °; The angle β of described first plate and described second plate is not less than 90 °.
Preferably, also flange is comprised; Described flange extends to the both sides of described support from the end of described support; Described gripper shoe rides against on described flange.Described flange can improve gripper shoe and ride against stability on support.
Another object of the present utility model is to provide a kind of roof boarding.
For realizing above object, the utility model is achieved through the following technical solutions:
Roof boarding, is characterized in that, comprises two roof panel and the roof panel linkage described in any one of a claim 1-14 claim; Described in one of them, the edge of roof panel is provided with the first flanging, and described in another, the edge of roof panel is provided with the second flanging; Described first flanging and described second flanging are fitted in the both sides of described bent sheet respectively; After described bent sheet distortion, the first flanging and the second flanging that are fitted in described bent sheet both sides are respectively snapped together; Described gripper shoe contacts with the subregion on described two roof panel, for described two roof panel provide support power.
Preferably, fluid sealant is filled with between described gripper shoe and described roof panel.
Two roof panel are connected by bent sheet by the roof panel linkage that the utility model provides, and improve the bonding strength between roof panel and stability, prevent from departing between roof panel.Roof panel on the purlin on roof, thus is stabilized on roofing by the support installing on roof panel linkage, prevents roof panel from coming off from roof.
The roof panel linkage structure that the utility model provides is simple, easy to use.
The roof boarding that the utility model provides, connects roof panel by roof panel with linkage and is formed, and installation stability is high.
Accompanying drawing explanation
Fig. 1 is the structural representation of the traditional roof plate in background technology;
Fig. 2 is the enlarged drawing at I place in Fig. 1;
Fig. 3 is the structural representation of the roof panel linkage in the utility model;
Fig. 4 for structure shown in Fig. 3 cut open along y-z direction after sectional view;
Fig. 5 for structure shown in Fig. 3 cut open along x-y direction after sectional view;
Fig. 6 for by structure shown in Fig. 3 gripper shoe remove after structural representation;
Fig. 7 is the process schematic of the roof boarding in processing the utility model;
Fig. 8 is the process schematic of the roof boarding in processing the utility model;
Fig. 9 is the structural representation of the roof boarding in the utility model.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described in detail:
As shown in Figures 3 and 4, roof panel linkage comprises bent sheet 1, and bent sheet 1 comprises the first tabs 11, second tabs 12 and the 3rd tabs 13.Second tabs 12 extends to the left side of the first tabs 11 from the upper end of the first tabs 11.3rd tabs 13 extends to the below of the second tabs 13 from the left end of the second tabs 12.First tabs 11, second tabs 12 and the 3rd tabs 13 surround a draw-in groove 14.Bent sheet 1 deformable.Under the effect of external force F1, the 3rd tabs 13 can rotate counterclockwise around the left end of the second tabs 12, and near the second tabs 12.Under the effect of external force F2, the second tabs 12 can rotate counterclockwise around the upper end of the first tabs 11, and near the first tabs 11.
As shown in figs. 3 and 6, roof panel linkage comprises and also comprises support 2.Support 2 is provided with installation sheet 21, and installation sheet 21 is provided with installing hole 22.Insert the purlin on roof after the connector penetrating mounting holes 22 adopting bolt etc. to commonly use, thus support 2 is arranged on roof.The lower end of the first tabs 11 can be connected relatively movably with support 2.Roof panel linkage also comprises the guiding device for providing guiding for the first tabs 11.Guiding device comprises at least one slide block and at least one slide rail.At least one slide block is arranged on one of them slide rail, and can move along slide rail.Slide block is arranged on in the first tabs 11 and support 2, and slide rail is arranged on another of the first tabs 11 and support 2.Slide rail is groove or the first through hole.Slide block inserts groove, and can move along groove.Or slide block runs through the first through hole, and can move along the first through hole.Preferred version as shown in the figure, guiding device comprises two slide blocks and a slide rail, and slide block is bearing pin 31, and slide rail is the first through hole 32 be arranged on support 2.Two bearing pins 31 run through the first through hole 32 respectively, and one end adopts conventional connected mode (as be threaded, riveted joint etc.) to removably connect with the first tabs 11, and the other end is provided with block 33.Block 33 is greater than the section area of bearing pin 31 along x-z direction in Fig. 6 along the section area in x-z direction in Fig. 6.As shown in Figure 4, block 33 and bearing pin 31 form first step 34, and first step 34 is resisted against on support 2, for stoping bearing pin 31 to depart from the first through hole 32, thus avoid the first tabs 11 to be separated with support 2.First through hole 32 extends, for the first tabs 1 provides the mobile guide along x direction in Fig. 6 along x direction in Fig. 6.
As shown in Figure 4, when first step 34 is resisted against on support 2, between the first tabs 11 and support 2, leave the first space 41.First space 41 provides space for the first tabs 11 moves along y direction opposite brackets 2 in Fig. 4, and namely the first tabs 11 can move along y direction opposite brackets 2 in Fig. 4.
When bearing pin 31 is resisted against on the below inwall 321 of the first through hole 32, between the upper inner wall 322 that bearing pin 31 and the first through hole 32 up and down side inwall 321 are oppositely arranged, leave Second gap 42.Second gap 42 provides space for the first tabs 11 moves along z direction opposite brackets 2 in Fig. 4, and namely the first tabs 11 can move along z direction opposite brackets 2 in Fig. 4.
As seen in figures 3-6, roof panel linkage also comprises gripper shoe 5.Gripper shoe 5 comprises the first plate 51, second plate 52 and the 3rd plate 53.First plate 51 is provided with the second through hole 510.First tabs 11 runs through through hole 510, and the second tabs 12 and support 2 lay respectively at the both sides of the first plate 51.First plate 51 rides against the upper end of support 2, and can move up and down along the bearing of trend of the first tabs 11.Gripper shoe 5 is movable to the position (as shown in Figure 4) of the upper end being resisted against support 2 downwards.First tabs 11 is provided with second step 15, and gripper shoe 5 moves up along the first tabs 11 and is resisted against on second step 15, and second step 15 departs from the first tabs 11 after stoping gripper shoe 5 to continue to move up.Second plate 52 is positioned at the left side of the first plate 51, extends to support 2 side (i.e. the below of the first plate 51) from the left end of the first plate 51.3rd plate 53 is positioned at the right side of the first plate 51, extends to support 2 side (i.e. the below of the first plate 51) from the right-hand member of the first plate 51.The angle α of the first plate 51 and the second plate 52 is not less than 90 °, and the angle β of the first plate 51 and the 3rd plate 53 is not less than 90 °.
As shown in Figure 5, when the first tabs 11 is resisted against on one of them inwall 511 of the second through hole 510, on the first tabs 11 and the second through hole 510 and between the inwall 512 that is oppositely arranged of this inwall 511, leave the 3rd space 43.3rd space 43 provides space for gripper shoe 5 moves along x direction in Fig. 5 relative to the first tabs 11, and namely gripper shoe 5 can move along x direction in Fig. 5 relative to the first tabs 11.
As shown in Figures 4 and 5, when the first tabs 11 is resisted against on one of them inwall 513 of the second through hole 510, on the first tabs 11 and the second through hole 510 and between the inwall 514 that is oppositely arranged of this inwall 513, leave the 3rd space 44.3rd space 44 provides space for gripper shoe 5 moves along y direction in Fig. 4 relative to the first tabs 11, and namely gripper shoe 5 can move along y direction in Fig. 4 relative to the first tabs 11.
As shown in Figure 6, also comprise flange 6, flange 6 extends to the left and right sides of support 2 from the upper end of support 2.First plate 51 rides against on flange 6.Flange 6 can improve the stability of gripper shoe 5.
As shown in Figure 7, roof boarding comprises two roof panel and an above-mentioned roof panel linkage.Two roof panel are respectively the first roof panel 01 and the second roof panel 02.The edge of the first roof panel 01 is provided with the first flanging 011.First flanging 011 embeds in draw-in groove 14, fits with draw-in groove 14 inner surface.The edge of the second roof panel 02 is provided with the second flanging 021.Second flanging 021 is fastened on the outside of draw-in groove 14, fits with the external surface of draw-in groove 14.Apply external force F1 to the second flanging 021, the second flanging 021 and the 3rd tabs 13 are together rotated counterclockwise, to the first flanging 011 in draw-in groove 14, until the first flanging 011 in the 3rd tabs 13 draw-in groove 14 is fitted (as described in Figure 8).External force F2 is applied again to the second flanging 021, the first flanging 011 in second flanging 021, second tabs 12 and draw-in groove 14 is together rotated counterclockwise, close to the first tabs 11 direction, until the second flanging 012 contacts (as shown in Figure 9) with the first roof panel 01, thus the first roof panel 01 and the second roof panel 02 are linked together.Insert the purlin on roof after the connector penetrating mounting holes 22 adopting bolt etc. to commonly use again, support 2 is arranged on roof, thus forms roof boarding on roof.Because the seam of the first roof panel 01 and the second roof panel 02 is covered by the bent sheet of roof panel linkage, can prevent rainwater from from the seam between the first roof panel 01 and the second roof panel 02, infiltrating roof, improve the water resistance of roof boarding.
Second tabs 12 also can offer multiple third through-hole 121.Before second flanging 012 of the second roof panel 02 is fastened on the outside of draw-in groove 14, fluid sealant (not shown) is applied on the second tabs 12, third through-hole 121 filled by fluid sealant, and infiltrate in the gap between the first flanging 011 in the second tabs 12 and draw-in groove 14, the first flanging 011 in second tabs 12 and draw-in groove 14 is bonded together, improves the adhesion of the first flanging 011 in the second tabs 12 and draw-in groove 14.Meanwhile, after the second flanging 021 of the second roof panel 02 edge is fastened on the outside of draw-in groove 14, the second flanging 012 and the second tabs 12 bond together by the fluid sealant on the second tabs 12, improve the adhesion of the second flanging 012 and the second tabs 12.
The left side of gripper shoe 5 contacts with the subregion of the first roof panel 01 soffit, the right side of gripper shoe 5 contacts with the subregion of the second roof panel 02 soffit, be that the first roof panel 01 and the second roof panel 02 provide support power by gripper shoe 5, improve the intensity of roof boarding to resist adverse circumstances, improve the application of roof boarding, extend application life.Gripper shoe 5 and the first roof panel 01, between gripper shoe 5 and the second roof panel 02, be filled with fluid sealant (not shown).By fluid sealant, gripper shoe 5 and the first roof panel 01, gripper shoe 5 and the second roof panel 02 are bonded together, improve gripper shoe 5 to the stability of strutting system of the first roof panel 01, second roof panel 02.
Also run through roof panel and gripper shoe 5 successively by screw 9, the adhesion of roof panel and gripper shoe 5 is provided, improve the wind loading rating of roof boarding.
If the temperature of environment changes residing for roof boarding, roof panel can be made to stretch in the x-direction, produce stress deformation.First tabs 11 can move by opposite brackets 2 in the x-direction, or gripper shoe 5 can move by opposite brackets 2 in the x-direction, make the size of the roof panel after roof panel linkage adaptation stress deformation, improve the connective stability of roof panel linkage and roof panel, improve the quality of roof boarding.
If the temperature of environment changes residing for roof boarding, roof panel can be made to stretch in the y-direction, produce stress deformation.First tabs 11 can move by opposite brackets 2 in the y-direction, or gripper shoe 5 can move by opposite brackets 2 in the y-direction, make the size of the roof panel after roof panel linkage adaptation stress deformation, improve the connective stability of roof panel linkage and roof panel, improve the quality of roof boarding.
If the temperature of environment changes residing for roof boarding, roof panel can be made to stretch in the z-direction, produce stress deformation.First tabs 11 can move by opposite brackets 2 in the z-direction, or gripper shoe 5 can move by opposite brackets 2 in the z-direction, make the size of the roof panel after roof panel linkage adaptation stress deformation, improve the connective stability of roof panel linkage and roof panel, improve the quality of roof boarding.
Upper and lower, left and right in the present embodiment, be all reference with Fig. 4 clockwise, counterclockwise, more clearly describe the relative concept that the utility model uses, do not form the restriction to right.
Embodiment in the utility model, only for being described the utility model, does not form the restriction to right, other equivalent in fact substituting, all in the utility model protection domain that those skilled in that art can expect.

Claims (15)

1. roof panel linkage, is characterized in that, comprises bent sheet; The bending shape at the bending shape of described bent sheet and the edge of roof panel matches; Described bent sheet deformable; After described bent sheet distortion, two roof panel being fitted in described bent sheet both sides are respectively connected.
2. roof panel linkage according to claim 1, is characterized in that, also comprise support; Described bent sheet is arranged on the bracket movably.
3. roof panel linkage according to claim 2, is characterized in that, also comprises the guiding device for providing guiding for described bent sheet; Described guiding device comprises at least one slide block and at least one slide rail; Described at least one, slide block is arranged on slide rail described in one of them, and can move along described slide rail; Described slide block is arranged on in described junction plate and described support, and described slide rail is arranged on another of described junction plate and described support.
4. roof panel linkage according to claim 3, is characterized in that, described slide rail is groove or the first through hole; Described slide block inserts described groove, and can move along described groove; Or described slide block runs through described first through hole, and can move along described first through hole.
5. roof panel linkage according to claim 4, is characterized in that, described slide block is bearing pin; Described slide rail is through hole; Described bearing pin runs through described first through hole, and one end and described bent sheet removably connect, and the other end is provided with block; The section area of described block is greater than the section area of described bearing pin; Described block and described bearing pin form first step; First step is used for described support to be blocked between described block and described bent sheet.
6. roof panel linkage according to claim 5, is characterized in that, described first step, against time on the bracket, leaves the first space between described bent sheet and described support.
7. roof panel linkage according to claim 5, is characterized in that, when described bearing pin is resisted against on one of them inwall of described first through hole, leaves Second gap on described bearing pin and described first through hole and between the inwall that is oppositely arranged of this inwall.
8. roof panel linkage according to claim 2, is characterized in that, described bent sheet comprises the first tabs, the second tabs and the 3rd tabs; One end of described first tabs is arranged on the bracket movably; Described second tabs starts to extend from the other end of described first tabs, and can rotate towards or away from the first tabs around this end; Described 3rd tabs starts from the end of described second tabs to extend, and can rotate towards or away from the second tabs around this end; Described first tabs, the second tabs and the 3rd tabs surround draw-in groove.
9. roof panel linkage according to claim 8, is characterized in that, described second tabs is provided with third through-hole; Fluid sealant is filled with in described third through-hole.
10. roof panel linkage according to claim 8, is characterized in that, also comprise gripper shoe; Described gripper shoe is hooked on the bracket, for supporting roof panel; Described gripper shoe is provided with the second through hole; Described first tabs runs through described second through hole; Described second tabs and described support lay respectively at the both sides of described gripper shoe; Described gripper shoe can along the relatively described support-moving of described first tabs; Described first tabs is provided with second step; Described second step and described support lay respectively at the both sides of described gripper shoe; Described second step departs from described first tabs for stoping described gripper shoe.
11. roof panel linkages according to claim 10, it is characterized in that, when described first tabs is resisted against on one of them inwall of described second through hole, on described first tabs and described second through hole and between the inwall that is oppositely arranged of this inwall, leave the 3rd space.
12. roof panel linkages according to claim 10, is characterized in that, described gripper shoe comprises the first plate, the second plate and the 3rd plate; Described second through hole is arranged on described first plate; Described second plate and described 3rd plate lay respectively at the both sides of described first plate, extend to described support side from one end of described first plate.
13. roof panel linkages according to claim 12, is characterized in that, the angle α of described first plate and described second plate is not less than 90 °; The angle β of described first plate and described second plate is not less than 90 °.
14. roof panel linkages according to claim 10, is characterized in that, also comprise flange; Described flange extends to the both sides of described support from the end of described support; Described gripper shoe rides against on described flange.
15. roof boardings, is characterized in that, comprise two roof panel and the roof panel linkage described in any one of a claim 1-14 claim; Described in one of them, the edge of roof panel is provided with the first flanging, and described in another, the edge of roof panel is provided with the second flanging; Described first flanging and described second flanging are fitted in the both sides of described bent sheet respectively; After described bent sheet distortion, the first flanging and the second flanging that are fitted in described bent sheet both sides are respectively snapped together; Described gripper shoe contacts with the subregion on described two roof panel, for described two roof panel provide support power.
CN201520347592.4U 2015-05-26 2015-05-26 Connecting device and novel roof board for roof boarding Active CN204781641U (en)

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Application Number Priority Date Filing Date Title
CN201520347592.4U CN204781641U (en) 2015-05-26 2015-05-26 Connecting device and novel roof board for roof boarding

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Application Number Priority Date Filing Date Title
CN201520347592.4U CN204781641U (en) 2015-05-26 2015-05-26 Connecting device and novel roof board for roof boarding

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107916755A (en) * 2017-11-16 2018-04-17 中冶建筑研究总院有限公司 Double 360 ° of undercuts connect metal pressing plate Roof system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107916755A (en) * 2017-11-16 2018-04-17 中冶建筑研究总院有限公司 Double 360 ° of undercuts connect metal pressing plate Roof system

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