Integrated ridge cover plate and fusion plate metal roof plate ridge structure
By adopting an integrated ridge cover plate and sealing filling structure in the metal roof panel ridge structure, the problems of complex construction, poor sealing and insufficient structural stability are solved, which simplifies construction, enhances sealing and structural stability, extends service life and improves aesthetics.
Patent Information
- Application Number
- CN202423005882.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-05
AI Technical Summary
Existing metal roofing ridge structures are complex to build, have poor sealing, and lack structural stability, especially at the joints and fixing points where problems are prone to occur.
An integrated ridge cover is used, and a sealing and filling structure is set between the metal roof panel and the ridge cover. At the same time, an integrated ridge cover is placed on the steel beam directly above the sealing and filling structure. The design includes components such as corrugated protrusions, TPO layer, foam rods and polyurethane foam layer.
It simplifies the construction process, improves construction efficiency, enhances sealing performance and structural stability, extends service life, and improves the building's aesthetics and overall image.
Smart Images

Figure CN223468954U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wallboard building technology field especially relates to a kind of integrated ridge cover plate and fusion plate metal roof panel ridge structure. BACKGROUND
[0002] In modern building structure, metal roof panel is widely used due to its light weight, high strength, good durability and other advantages. Especially in large public buildings, industrial plants and other places, metal roof panel has become the main roofing material. However, in the ridge structure design of metal roof panel, there are often problems such as complex construction, poor sealing, insufficient structural stability and so on.
[0003] Traditional ridge structure is usually composed of multiple cover plates. This structure not only has a complicated construction process, but also has joint gaps, which can cause rainwater leakage and other problems. In addition, since the ridge structure is located at the highest point of the roof, it is subjected to large wind pressure and snow pressure, so the structural stability is also an important factor to be considered in design.
[0004] In order to solve the above problems, people have begun to explore new ridge structure forms. Among them, integrated ridge cover plate gradually attracts attention due to its good integrity, strong sealing and simple construction. The integrated ridge cover plate is usually made of a complete plate with an arch structure, which can better adapt to the curvature of the roof, and the wave-shaped protrusions on it can enhance the strength and stiffness of the cover plate.
[0005] However, using only an integrated ridge cover plate cannot solve all problems. Especially at the connection between the metal roof panel and the ridge cover plate, and at the fixing between the ridge cover plate and the steel beam, a reasonable sealing and filling structure and support structure need to be designed to ensure the sealing effect and structural stability of the ridge structure. SUMMARY
[0006] The utility model aims at overcoming the problems in the prior art and proposes a new integrated ridge cover plate and fusion plate metal roof panel ridge structure. This structure not only uses an integrated ridge cover plate, but also sets a sealing and filling structure between the metal roof panel and the ridge cover plate. At the same time, an integrated ridge cover plate is provided above the corresponding sealing and filling structure on the steel beam. This design not only simplifies the construction process and improves the construction efficiency, but also ensures the sealing effect and structural stability of the ridge structure through multiple support and sealing structure design.
[0007] The utility model discloses a roof ridge cover plate, which comprises a roof ridge cover plate body, wherein the roof ridge cover plate body is arched, and a wave-peak-shaped protrusion is arranged on the roof ridge cover plate body along the length direction of the roof ridge at intervals.
[0008] In order to further optimize the utility model, the following technical solutions can be preferred:
[0009] Preferably, the wave-peak-shaped protrusion has a trapezoidal cross section.
[0010] A roof ridge structure of a fusion plate metal roof panel comprises a metal roof panel arranged on a steel beam, wherein the metal roof panel is distributed along both sides of the roof ridge, and a sealing filling structure is arranged between the metal roof panels on both sides.
[0011] Preferably, the sealing filling structure comprises a foam rod arranged between the two metal roof panels and a polyurethane foaming layer, wherein the polyurethane foaming layer is filled in the gap between the metal roof panel and the foam rod.
[0012] Preferably, a Z-shaped purline is arranged on the steel beam below the metal roof panel and close to one end of the roof ridge, and an inner ridge plate is arranged on the Z-shaped purline, wherein the inner ridge plate supports the metal roof panel from the bottom, and a TPO waterproof coiled material layer one is arranged on the outer surface of the metal roof panel.
[0013] Preferably, a TPO waterproof coiled material layer two is arranged between the integrated roof ridge cover plate and the metal roof panel, and the end of the TPO waterproof coiled material layer two is overlapped on the metal roof panel on both sides.
[0014] Preferably, the TPO waterproof coiled material layer one is an L-shaped TPO waterproof coiled material, and the TPO waterproof coiled material layer two is an H-shaped waterproof coiled material.
[0015] The utility model has the following effects:
[0016] (1) Simplify the construction process and improve the construction efficiency:
[0017] The design of the integrated roof ridge cover plate reduces the cumbersome steps of splicing multiple cover plates in the traditional roof ridge structure, so that the construction process is more convenient and fast.
[0018] The combination of the fusion plate metal roof panel and the integrated roof ridge cover plate greatly shortens the construction period and reduces the labor cost through standardized components and simple installation methods.
[0019] (2) Enhance the sealing performance and prevent rainwater leakage:
[0020] The wave-shaped protrusions on the ridge cover plate body not only enhance the strength and rigidity of the cover plate, but also form natural drainage channels, facilitating the rapid drainage of rainwater.
[0021] The sealing and filling structure arranged between the metal roof panels on both sides and the covering of the ridge cover plate to the sealing and filling structure constitute a multiple sealing system, effectively preventing rainwater from leaking from the ridge.
[0022] (3) Improve structural stability and enhance wind pressure resistance:
[0023] The arched ridge cover plate body design allows the cover plate to better adapt to the curvature of the roof, enhancing the overall structural stability.
[0024] The wave-shaped protrusions and lap joints further enhance the wind pressure resistance of the cover plate, allowing the ridge structure to remain stable in severe weather conditions.
[0025] (4) Prolong service life and reduce maintenance costs:
[0026] The TPO layer covering the top of the ridge cover plate body has excellent weather resistance and corrosion resistance, effectively prolonging the service life of the cover plate.
[0027] The design of the sealing and filling structure and the multiple support structure reduces structural damage caused by rainwater leakage and wind force, reducing the maintenance costs in the later stage.
[0028] (5) Aesthetically pleasing, enhancing the overall image of the building:
[0029] The design of the integrated ridge cover plate and the fusion plate metal roof panel ridge structure is simple and elegant, with smooth lines that can be easily integrated into various architectural styles.
[0030] The wave-shaped protrusions and arched design of the ridge cover plate not only enhance the stability of the structure, but also give the building a more three-dimensional and dynamic aesthetic.
[0031] In summary, the integrated ridge cover plate and fusion plate metal roof panel ridge structure disclosed in the present utility model has brought significant beneficial effects in simplifying the construction process, enhancing sealing performance, improving structural stability, prolonging service life, and enhancing the overall image of the building, etc., with high practical value and promotional value. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1 is a three-dimensional structure diagram of an integrated ridge cover plate;
[0033] Figure 2 is a lap joint diagram of a fusion plate metal roof panel ridge structure node
[0034] Figure 3For the fusion plate metal roof panel roof ridge structure plan view;
[0035] Figure 4 For Figure 2 The structure at A in the middle is enlarged and shown schematically.
[0036] Wherein: 1 - one roof ridge cover plate; 2 - metal roof panel; 3 - foam stick; 4 - polyurethane foaming layer; 5 - Z-shaped purlin; 6 - inner ridge plate; 7 - TPO waterproof coiled material layer one; 8 - TPO waterproof coiled material layer two; 9 - steel beam; 101 - roof ridge cover plate body; 102 - wave-shaped protrusion; 103 - building part; 104 - TPO layer. DETAILED DESCRIPTION
[0037] In the description of the present application, it should be further explained that, unless otherwise explicitly specified and limited, the terms "set", "install", "connect", "connect" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0038] The technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary skilled in the art without creative labor are within the scope of protection of the present application.
[0039] Example 1
[0040] As Figures 1-4As shown: an integrated roof ridge cover 1, including a roof ridge cover body 101, the roof ridge cover body is arched, and wave-shaped protrusions 102 are installed on the roof ridge cover body along the length direction of the roof ridge, and downwardly bent lap joints 103 are installed on both sides of the roof ridge cover body, and a TPO layer 104 is coated on the top of the roof ridge cover body; wherein, in the preferred design, the cross section of the wave-shaped protrusion 102 is trapezoidal. The beneficial effects of this design of integrated roof ridge cover mainly lie in the following aspects: (1) enhance structural strength and stability: the roof ridge cover body is designed in an arched shape, which itself can provide better structural strength and stability, and can resist pressure from above, such as snow, wind pressure, etc. The addition of wave-shaped protrusions further enhances the structural strength of the roof ridge cover. Especially when the cross section of the wave-shaped protrusion is designed as a trapezoid, this shape not only provides a larger contact area, increasing the firmness of the connection with the roof ridge cover body, but also more effectively disperses and resists external forces, making the entire roof ridge cover more stable. (2) Optimize drainage performance: the design of wave-shaped protrusions helps to form natural drainage channels, allowing rainwater to quickly flow along the grooves between the protrusions, avoiding the occurrence of water accumulation. The trapezoidal cross-sectional design makes the grooves between the protrusions more spacious, which is conducive to the rapid drainage of rainwater and reduces the risk of leakage due to water accumulation. (3) Improve sealing performance: the downwardly bent lap joints on both sides of the roof ridge cover body can closely fit with adjacent metal roof panels or wall structures, forming an effective sealing barrier. The coating of the TPO layer (thermoplastic polyolefin) not only provides good waterproof performance, but also enhances the adhesion between the roof ridge cover and the metal roof panel, further improving the sealing effect. (4) Prolong service life: the TPO layer has excellent weather resistance and corrosion resistance, and can resist the erosion of environmental factors such as ultraviolet rays, acids and bases, thereby prolonging the service life of the roof ridge cover. The design of wave-shaped protrusions also helps to reduce dust and dirt on the surface of the roof ridge cover, making cleaning and maintenance more convenient and further prolonging the service life of the roof ridge cover. (5) Improve aesthetics and practicality: the design of wave-shaped protrusions not only enhances the structural performance of the roof ridge cover, but also gives it a unique visual effect, improving the overall aesthetics of the building. At the same time, this design also takes into account the practicality, making it easier to install, maintain and replace the roof ridge cover. In summary, this design of integrated roof ridge cover, through the comprehensive application of arched body, wave-shaped protrusions (trapezoidal cross section), lap joints and TPO layer, realizes the overall improvement of structural strength, drainage performance, sealing performance, service life and aesthetics, has high practical value and promotion significance.
[0041] Further application of the integrated roof ridge cover plate, a kind of fusion plate metal roof panel ridge structure, comprising metal roof panel 2 installed on steel beam 9, metal roof panel 2 is distributed along the two sides of the ridge, sealing filling structure is installed between the metal roof panels on both sides, the steel beam is covered with an integrated roof ridge cover plate 1 corresponding to the sealing filling structure directly above the position;Wherein the sealing filling structure comprises a foam rod 3 installed between two metal roof panels, a polyurethane foaming layer 4, the polyurethane foaming layer 4 is filled in the gap between the metal roof panel and the foam rod.
[0042] The preferred scheme of the fusion plate metal roof panel ridge structure, especially its sealing filling structure, brings the following significant benefits:(1) Excellent sealing performance: By installing foam rods between metal roof panels and filling polyurethane foaming layer in the gap, a solid sealing barrier is formed. This double sealing design greatly reduces the possibility of rainwater, moisture and other external factors penetrating, ensuring the long-term stability and durability of the ridge structure.(2) Enhanced structural stability: Foam rods and polyurethane foaming layer not only play a sealing role, but also can absorb and disperse pressure from the roof to a certain extent, such as wind force, snow pressure, etc. This design enhances the overall stability of the ridge structure, making it better able to withstand the impact of adverse weather conditions.(3) Improve construction efficiency: Polyurethane foaming layer has the characteristics of fast curing and easy construction, which can greatly shorten the construction period. At the same time, the combination of foam rods and polyurethane foaming layer also simplifies the installation process of the sealing filling structure, reducing construction difficulty and cost.(4) Good thermal insulation performance: Polyurethane foaming layer is a high-quality thermal insulation material, which can effectively prevent heat transfer due to its low thermal conductivity. Therefore, this sealing filling structure not only improves the sealing performance of the ridge structure, but also improves the thermal insulation performance of the building to a certain extent, reducing energy consumption.(5) Environmental protection and sustainability: Polyurethane foaming layer is usually made of renewable or recyclable materials, meeting the requirements of environmental protection and sustainability. At the same time, this material does not produce harmful substances during use, harmless to the environment and human health.(6) Strong adaptability: This sealing filling structure is suitable for various types of metal roof panels and ridge structures, with good universality and adaptability. Whether it is a new building or an old building renovation, this design can be used to meet the sealing and stability requirements of the ridge structure.
[0043] As a preferred design, the Z-shaped purlin 5 is installed on the steel beam 9 corresponding to the position below the metal roof panel near the ridge end, and the inner ridge board 6 is installed on the Z-shaped purlin. The inner ridge board supports the bottom of the metal roof panel, and the outer surface of the metal roof panel is paved with a layer of TPO waterproof roll material 7. A layer of TPO waterproof roll material 8 is also installed between the integrated ridge cover plate and the metal roof panel. The end of the TPO waterproof roll material layer 8 overlaps the metal roof panel on both sides. The specific selection is that the TPO waterproof roll material layer 1 is L-shaped TPO waterproof roll material, and the TPO waterproof roll material layer 2 is H-shaped waterproof roll material. The paving direction of the TPO waterproof roll material layer 1 is perpendicular to the ridge and adheres to the metal roof panel along the wave crest and wave trough. The TPO waterproof roll material layer 2 is laid flat along the ridge direction.
[0044] These designs have the following significant beneficial effects: (1) Enhanced structural support and stability: The installation of Z-shaped purlin provides stable support for the inner ridge board, thereby enhancing the load-bearing capacity of the metal roof panel at the ridge position. This design helps to disperse and resist various loads from the roof, such as wind force, snow pressure, etc., improving the overall stability of the ridge structure. (2) Excellent waterproof performance: The combination of L-shaped TPO waterproof roll material layer 1 and H-shaped TPO waterproof roll material layer 2 forms a complete waterproof barrier. TPO (Thermoplastic Polyolefin) material has excellent weather resistance, chemical corrosion resistance, and waterproof performance, which can effectively prevent water penetration and protect the building structure from water damage. The L-shaped design allows the roll material to better fit the outer surface of the metal roof panel, while the H-shaped design ensures the close connection of the roll material between the ridge cover plate and the metal roof panel, further improving the waterproof effect. (3) Improve construction efficiency and quality: TPO waterproof roll material is easy to cut, lay and weld, greatly simplifying the construction process. At the same time, its excellent physical properties and chemical stability ensure the reliability and long-term stability of construction quality. The standardized design of Z-shaped purlin and inner ridge board makes the installation process more convenient and fast, reducing the difficulty and cost of construction. (4) Enhance the durability of the building: The combination of TPO waterproof roll material layer 1 and layer 2 not only improves the waterproof performance of the building, but also to a certain extent, resists the erosion of environmental factors such as ultraviolet light, acid and alkali, prolonging the service life of the building. The solid support of Z-shaped purlin and inner ridge board also helps to reduce the risk of leakage caused by structural deformation, further enhancing the durability of the building. (5) Improve the appearance of the building: The flat laying of TPO waterproof roll material layer 1 and layer 2 makes the appearance of the roof more neat and beautiful. At the same time, the L-shaped and H-shaped design also gives the roll material a unique visual effect, improving the overall aesthetic of the building.
[0045] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.
Claims
1. An integrated roof sheathing characterized by: It includes a ridge cover plate body, which is arched, with wave-shaped protrusions arranged at intervals along the length direction of the ridge, and downward-bending overlapping parts are arranged on both sides of the ridge cover plate body. The top of the ridge cover plate body is covered with a TPO layer.
2. The integrated roof sheathing of claim 1, wherein: The cross section of the crest-shaped protrusion is trapezoidal.
3. A fusion panel metal roof panel ridge structure, characterized by: It comprises metal roof panels arranged on steel beams, the metal roof panels are distributed along both sides of the ridge, a sealing filling structure is arranged between the metal roof panels on both sides, and an integrated ridge cover plate as described in any one of claims 1-2 is provided on the steel beam at a position directly above the corresponding sealing filling structure.
4. A fusion panel metal roof panel ridge structure according to claim 3, wherein: The sealing filling structure comprises a foam rod and a polyurethane foam layer which are arranged between two metal roof panels. The polyurethane foam layer is filled in the gap between the metal roof panels and the foam rod.
5. A fusion panel metal roof panel ridge structure according to claim 3, wherein: A Z-shaped purlin is provided on the steel beam below the corresponding metal roof panel near one end of the ridge, and an inner ridge plate is provided on the Z-shaped purlin. The inner ridge plate supports the metal roof panel from the bottom, and the outer surface of the metal roof panel is paved with a TPO waterproof membrane layer.
6. A fusion panel metal roof panel ridge structure according to claim 5, wherein: A second TPO waterproofing membrane layer is further provided between the integrated roof ridge cover plate and the metal roof panel, and the ends of the second TPO waterproofing membrane layer are overlapped on the metal roof panels on both sides.
7. A fusion panel metal roof panel ridge structure according to claim 6, wherein: The first TPO waterproof membrane layer is an L-shaped TPO waterproof membrane, and the second TPO waterproof membrane layer is an H-shaped waterproof membrane.