Roof support
The double-sided support structure of the bottom plate and reinforced cross plate and the sliding bracket design solve the problem of sliding and tipping of the roof panel bracket in strong wind environment, achieve high strength and tightness of the locking seam of the bracket, and ensure the stability and safety of the roof system.
Patent Information
- Application Number
- CN202422719413.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-08
AI Technical Summary
Existing roof panel supports have insufficient wind-resistant capabilities in strong wind environments, which can easily cause the roof panels to slide and tip over, affecting the stability and safety of the roof system. Loose locking seams also increase the risk of water leakage.
The double-sided support structure of the bottom plate and the reinforced cross plate is adopted, combined with the sliding bracket and fixed hole design to enhance the support strength. The connection strength and friction coefficient are improved by reinforcing ribs and convex ridges to ensure the synchronous displacement of the sliding bracket and prevent sliding and tipping.
It significantly enhances the supporting strength and wind-resistant ability of the roof support, reduces the risk of loosening of the lock seams, reduces the risk of water leakage, and improves the stability and safety of the roof system.
Smart Images

Figure CN223343565U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of construction engineering, in particular to a roof support. Background Art
[0002] Roof panel supports are structural support systems used to support and install roof panels. These supports are typically installed on the roof structure of a building to support and secure the panels. The design and performance of roof panel supports are crucial to ensuring the stability, safety, and reliability of the entire roof system.
[0003] Existing roof panel brackets have insufficient wind-uplift resistance in strong wind environments, which can easily cause the roof panels to be blown away by the wind, thereby affecting the stability and safety of the roof system; the brackets are not strong enough and are prone to deformation when facing external pressure or load, affecting the structural stability of the entire roof system; existing roof panel bracket designs usually use a single-sided support method, which makes the roof panels prone to sliding and tipping during use, thereby loosening the locking seams and increasing the risk of water leakage in the roof system. Utility Model Content
[0004] In view of the above-mentioned shortcomings of the current roof bracket, the utility model provides a roof bracket, which prevents the roof bracket from tipping over through the double-sided support of the bottom plate and the reinforcing cross plate, increases the supporting strength of the roof bracket, can withstand strong winds and prevent sliding, and can also ensure the tightness of the locking seam, reduce the risk of water leakage, and ensure the safety of the BIPV system.
[0005] In order to achieve the above-mentioned purpose, the embodiments of the present invention adopt the following technical solutions:
[0006] The top end face of said sliding panel also is provided with a pair of lockhole that is formed on a pair of locking plate, and the locking plate is connected with a up-down knob. The locking plate is connected with a up-down knob. The two ends of said sliding panel also are connected with a up-down knob.
[0007] According to one aspect of the present invention, a support plate is provided on the vertical plate, and the support plate is bent upward to form a double-layer structure.
[0008] According to one aspect of the present invention, convex ridges are provided on the reinforcement portion.
[0009] According to one aspect of the present invention, the connector includes a first connector formed by bending the top of the first slide and a second connector formed by bending the top of the second slide.
[0010] According to one aspect of the present invention, the first connector and the second connector are both in a horizontal folding shape.
[0011] According to one aspect of the present invention, a first positioning hole is provided on the vertical plate, and second positioning holes are provided at positions of the first sliding plate and the second sliding plate corresponding to the first positioning hole, and an initial positioning pin of the brittle material fixedly connects the first positioning hole and the second positioning hole.
[0012] According to one aspect of the present invention, a plurality of screw holes are provided on the bottom plate.
[0013] According to one aspect of the present invention, a plurality of protrusions are provided on the bottom of the base plate.
[0014] According to one aspect of the present invention, the bottom plate is formed by bending the bottom of the vertical plate in a horizontal direction, and a plurality of reinforcing ribs are provided at the bending position.
[0015] The advantages of the present invention are as follows: by providing a first slide and a second slide and setting fixing holes at corresponding positions, the first slide and the second slide are fixed by fixing bolts, so that the sliding bracket forms a double-layer bracket, which significantly enhances the support strength of the bracket and effectively reduces the risk of shrinkage joint loosening; by providing reinforcing ribs, the connection strength between the vertical plate and the base plate is strengthened, thereby improving the overall stability of the entire bracket; by providing a plurality of protrusions on the bottom surface of the base plate, the friction coefficient of the fixing seat is effectively increased, thereby improving the fixing reliability; by providing ridges on the reinforcing part, the strength of the reinforcing part is increased, effectively ensuring that the limit part does not deform during wind lifting, thereby improving the stability of the roof system; by providing a double-piece connector, the wind-proof ability of the roof bracket is improved, which helps to reduce or prevent the lifting of the roof panel in strong wind environments; by bending the support plate into a double-layer structure, the strength of the support plate is effectively enhanced, ensuring that the support plate does not deform during wind lifting, thereby improving the stability of the roof system. By installing initial positioning pins on the fixing seat and the sliding bracket, the sliding bracket is displaced synchronously after installation, reducing tension concentration and preventing damage to the sliding bracket. By strengthening the horizontal plate and the bottom plate to form a bilateral support structure, the fixed base can be prevented from tipping over, the supporting strength of the roof bracket is enhanced, the ability to withstand strong winds is improved, and the stability of the roof system is effectively guaranteed. The roof bracket provided by this utility model improves the safety of the entire roof system. It can not only withstand strong winds and prevent sliding, but also ensure the tightness of the locking seam, reduce the risk of water leakage, and ensure the safety of the BIPV system. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0017] Figure 1 This is a structural schematic diagram of a roof support described in the utility model;
[0018] Figure 2 This is a schematic structural diagram of a fixing base of a roof support according to the present utility model;
[0019] Figure 3 This is a schematic diagram of the sliding bracket structure of a roof bracket described in the utility model.
[0020] Numbers in the figure: 1. Fixed seat; 11. Bottom plate; 111. Screw hole; 112. Protrusion; 12. Vertical plate; 121. Slide groove; 122. First positioning hole; 123. Support plate; 13. Reinforcement part; 131. Protrusion; 14. Reinforced cross plate; 15. Reinforcement rib; 2. Sliding bracket; 21. Slide; 211. First slide; 212. Second slide; 213. Second positioning hole; 214. Fixed hole; 22. Connector; 221. First connector; 222. Second connector. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0022] In the description of the present invention, unless otherwise specified, the terms "upper," "lower," "left," "right," "inner," "outer," "front," "rear," "top," "bottom," and the like, indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings and are intended solely to facilitate the description of the present invention and simplify the description. They are not intended to indicate or imply that the devices or components referred to must have a specific direction, be constructed, or operate in a specific direction. Therefore, they should not be construed as limitations on the present invention. Those skilled in the art will understand the specific meanings of the above terms in the present invention in specific contexts.
[0023] like Figure 1 、 Figure 2 ,and Figure 3As shown, a roof bracket includes a fixing seat 1 and a sliding bracket 2, the fixing seat 1 is formed by bending an integral plate, the integral plate material can be a steel plate, an aluminum plate, etc., the fixing seat 1 includes a bottom plate 11, the bottom plate 11 is bent upward to form a vertical plate 12, the angle formed by the bottom plate 11 and the vertical plate 12 is about 90 degrees, a plurality of screw holes 111 are provided on the bottom plate 11, the screw holes 111 are used to fix the fixing seat 1 on the supporting column below, a slide groove 121 is provided in the middle of the vertical plate 12, a support plate 123 is provided in the middle of the vertical plate 12, the support plate 123 is bent upward (folded in half) to form a double-layer structure, preferably, the double-layer structure is symmetrically arranged at the front and rear ends of the vertical plate 12; the slide groove 121 is formed by the space after the support plate 123 is bent. Both sides of the vertical plate 12 are bent vertically to form a reinforcement portion 13. The upper and lower ends of the reinforcement portion 13 are bent inward to form a reinforcement transverse plate 14. The reinforcement transverse plate 14 can be used to limit the sliding travel of the sliding bracket 2. At the same time, the reinforcement transverse plate 14 and the bottom plate 11 form a bilateral support structure, which can prevent the fixed base from tipping over, enhance the support strength of the roof bracket, and improve the ability to withstand strong winds. In actual application, the reinforcement portion 13 is provided with a rib 131. The design of the rib 131 can increase the strength of the reinforcement portion 13, effectively ensuring that the reinforcement portion 13 does not deform during wind exposure, and improving the stability of the roof system.
[0024] The sliding bracket 2 is formed by bending a single plate. The material of the single plate can be steel, aluminum, or the like. The sliding bracket 2 includes a sliding plate 21. The sliding plate 21 passes through the sliding slot 121 on the fixed seat 1 and is bent upward at both ends to form a first sliding plate 211 and a second sliding plate 212 located on either side of the vertical plate 12 with staggered ends. The first sliding plate 211 and the second sliding plate 212 are bent into a V-shaped double-layer structure. This double-layer structure improves the overall strength of the sliding bracket 2, effectively reduces deformation, and significantly enhances its wind-resistant ability. Connectors 22 are connected to both ends of the sliding plate 21. The connectors 22 are used to attach the roof panel. The connectors 22 include a first connector 221 formed by bending the top of the first sliding plate 211 and a second connector 222 formed by bending the top of the second sliding plate 212. The connectors 22 and the sliding plate 21 form a U-shaped structure. The first connector 221 and the second connector 222 are both horizontally bent. This double connector structure improves the wind-resistant ability of the sliding bracket.
[0025] In actual application, in order to increase the strength of the bracket and improve the bracket's wind resistance, the positions corresponding to the non-offset parts of the first slide 211 and the second slide 212 are provided with matching fasteners to connect the first slide 211 and the second slide 212. The fixing holes 214, the fasteners pass through the fixing holes 214 to fix the first slide 211 and the second slide 212. The fasteners can be bolts, screws and other parts used for fixing.
[0026] In actual application, a plurality of reinforcing ribs 15 are provided at the bending portion of the bottom plate 11 and the vertical plate 12 to strengthen the connection strength between the vertical plate 12 and the bottom plate 11, thereby improving the overall stability of the entire bracket.
[0027] In practical applications, a plurality of protrusions 112 are provided on the bottom surface of the base plate 11 to enhance the friction coefficient of the fixing portion of the fixing seat 1 and improve the fixing reliability.
[0028] In actual application, the vertical plate 12 is provided with a first positioning hole 122, preferably, a position in the middle of the upper part of the vertical plate 12, and the first slide 211 and the second slide 212 are both provided with a second positioning hole 213 at positions corresponding to the first positioning hole 122. The initial positioning pins of the brittle material are fixed in the first positioning hole 122 and the second positioning hole 213. The initial positioning pins are used to fix the relative positions of the fixing seat 1 and the sliding bracket 2, so that the initial sliding positions of the sliding brackets 2 in the entire roof are the same. After being installed on the supporting structure of the metal roof panel, the thermal expansion and contraction of the metal roof panel drive all the sliding brackets 2 to move synchronously, causing the initial positioning pins of the brittle material to shear off. Multiple sliding brackets 2 located in the same expansion dimension have the same initial position and movement amount, and reach the maximum displacement synchronously, so that the problem of tension being concentrated on a single sliding bracket 2 will not occur, thereby preventing the sliding bracket 2 from being damaged.
[0029] The advantages of the present invention are as follows: by providing a first slide and a second slide and setting fixing holes at corresponding positions, the first slide and the second slide are fixed by fixing bolts, so that the sliding bracket forms a double-layer bracket, which significantly enhances the support strength of the bracket and effectively reduces the risk of shrinkage joint loosening; by providing reinforcing ribs, the connection strength between the vertical plate and the base plate is strengthened, thereby improving the overall stability of the entire bracket; by providing a plurality of protrusions on the bottom surface of the base plate, the friction coefficient of the fixing seat is effectively increased, thereby improving the fixing reliability; by providing ridges on the reinforcing part, the strength of the reinforcing part is increased, effectively ensuring that the limit part does not deform during wind lifting, thereby improving the stability of the roof system; by providing a double-piece connector, the wind-proof ability of the roof bracket is improved, which helps to reduce or prevent the lifting of the roof panel in strong wind environments; by bending the support plate into a double-layer structure, the strength of the support plate is effectively enhanced, ensuring that the support plate does not deform during wind lifting, thereby improving the stability of the roof system. By installing initial positioning pins on the fixing seat and the sliding bracket, the sliding bracket is displaced synchronously after installation, reducing tension concentration and preventing damage to the sliding bracket. By strengthening the horizontal plate and the bottom plate to form a bilateral support structure, the fixed base can be prevented from tipping over, the supporting strength of the roof bracket is enhanced, the ability to withstand strong winds is improved, and the stability of the roof system is effectively guaranteed. The roof bracket provided by this utility model improves the safety of the entire roof system. It can not only withstand strong winds and prevent sliding, but also ensure the tightness of the locking seam, reduce the risk of water leakage, and ensure the safety of the BIPV system.
[0030] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present invention should be included in the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.
Claims
1. A roof support, comprising a fixed base (1) and a sliding support (2), characterized in that: The fixing seat (1) includes a bottom plate (11), the bottom plate (11) is bent upward to form a vertical plate (12), a slide groove (121) is provided on the vertical plate (12), the sliding bracket (2) slides along the left and right sides of the slide groove (121), both sides of the vertical plate (12) are bent backward in the vertical direction to form a reinforcement part (13), the upper and lower ends of the reinforcement part (13) are bent inward to form a reinforcement transverse plate (14), the sliding bracket (2) includes a slide plate (21), the slide plate (2 1) The two ends of the slide groove (121) are bent upward obliquely to form a first slide (211) and a second slide (212) located on both sides of the vertical plate (12) and with staggered ends; the first slide (211) and the second slide (212) are provided with a fixing hole (214) for connecting the first slide (211) and the second slide (212) with a matching fastener at a position corresponding to the non-staggered portion; and the first slide (211) and the second slide (212) are provided with a connecting head (22) at both ends.
2. The roof support according to claim 1, characterized in that: A supporting plate (123) is provided on the vertical plate (12), and the supporting plate (123) is bent upward to form a double-layer structure.
3. The roof support according to claim 1, characterized in that: The reinforcement portion (13) is provided with convex ridges (131).
4. The roof support according to claim 1, characterized in that: The connector (22) comprises a first connector (221) formed by bending the top of the first slide (211) and a second connector (222) formed by bending the top of the second slide (212).
5. The roof support according to claim 4, characterized in that: The first connector (221) and the second connector (222) are both in a horizontal folded shape.
6. The roof support according to claim 1, characterized in that: A first positioning hole (122) is provided on the vertical plate (12); second positioning holes (213) are provided at positions of the first sliding plate (211) and the second sliding plate (212) corresponding to the first positioning hole (122); and an initial positioning pin made of a brittle material is fixedly connected to the first positioning hole (122) and the second positioning hole (213).
7. The roof support according to claim 1, characterized in that: The bottom plate (11) is provided with a plurality of screw holes (111).
8. The roof support according to claim 1, characterized in that: A plurality of protrusions (112) are provided at the bottom of the bottom plate (11).
9. The roof support according to claim 1, characterized in that: A plurality of reinforcing ribs (15) are provided at the bending portion between the bottom plate (11) and the vertical plate (12).