A thermal insulation sloping roof tile panel

By adopting prefabricated insulation and thermally insulated slope roof tile panels, combined with polyurethane insulation boards, hanging tile strips and aluminum foil protective layer, the waterproof and insulation problems caused by the high water absorption rate of the existing slope roof structure are solved, and efficient insulation and the effect of reducing construction costs is achieved.

CN110616857BActive Publication Date: 2025-05-09TIANJIN RIVERSTONE PRUDENTIAL BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN201910755882.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-08-16
Publication Date
2025-05-09
Estimated Expiration
2039-08-16

AI Technical Summary

Technical Problem

When the water absorption rate of the existing waterproof and insulation slope roof structure is too high, the waterproof layer is difficult to ensure, and the heat transfer coefficient increases, resulting in unsatisfactory waterproofing effect. At the same time, the fine stone concrete protective layer increases the carrier and construction costs.

Method used

It adopts prefabricated insulation and insulated slope roof tile panels, including the polyurethane insulation board body, the embedded connected tile strips and aluminum foil protective layer. It adopts a right-angle stop or mortise and tenon structure with vertical and horizontal assembled junction parts. The tile strip design has an arch-high support part and ventilation holes to improve ventilation effect and thermal insulation performance.

Benefits of technology

It achieves efficient thermal insulation effect, reduces construction costs and cycles, improves earthquake resistance and waterproof and moisture-proofing capabilities, and is suitable for different environments and seasons.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a thermal insulation and heat-insulating sloping roof tile panel, comprising a thermal insulation board body, a tile hanging strip pre-embedded and connected to the thermal insulation board body, and an aluminum foil protective layer coated on the outer surface of the thermal insulation body; wherein, the two sides of the thermal insulation board body are provided with longitudinal assembly bite parts that cooperate with each other; the two ends of the thermal insulation board body are provided with transverse assembly bite parts that cooperate with each other; the tile hanging strip comprises a pre-embedded connecting plate, a support plate and an arch support part in an integrated structure; the support plate comprises a pre-embedded connecting plate connecting section and an arch support part connecting section, and the upper surface of the arch support part connecting section is provided with an arch support part; the above-mentioned pre-embedded connecting plate is pre-embedded in the thermal insulation board body, and the arch support part connecting section extends out of the outer side of the thermal insulation board body; the upper surface of the arch support part is provided with a roof tile fitting support surface. The present invention has the advantages of good thermal insulation effect, high assembly efficiency, localization, and reduced construction efficiency and construction cost.
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Description

Technical Field

[0001] The invention belongs to the field of building technology, and in particular relates to an assembled thermal insulation and heat insulating sloping roof tile panel. Background Art

[0002] In the field of construction, as people's requirements for building quality continue to increase, the current slope roof structure is required to have both thermal insulation and waterproofing functions. The existing waterproof and thermal insulation slope roof structure usually adopts the following structure, including reinforced concrete slabs, cement mortar leveling layers, waterproof layers, thermal insulation layers and fine stone concrete protective layers arranged from bottom to top. Although the above-mentioned existing slope roof structure also has a waterproof layer and a thermal insulation layer, that is, it has the functions of thermal insulation and waterproofing, but because the waterproof layer is at the bottom and the thermal insulation layer is at the top, once the thermal insulation layer absorbs too much water, the waterproof layer will be in a state of water accumulation for a long time, and the waterproof effect is difficult to guarantee; and the excessive water absorption rate of the thermal insulation layer increases the heat transfer coefficient, resulting in the entire slope roof structure. The thermal insulation and waterproofing effect is not ideal; in addition, the use of a fine stone concrete protective layer as the surface layer of the slope roof structure not only increases the carrier of the slope roof structure, but also has a high comprehensive cost and a long construction period.

[0003] In view of the defects of the above-mentioned existing waterproof and heat-insulating sloping roof structure, an assembled heat-insulating roof tile panel that can overcome the defects of the above-mentioned existing technologies in the field and can be localized is provided. Summary of the invention

[0004] In view of the problems existing in the prior art, the present invention provides an assembled thermal insulation and heat insulating sloping roof tile panel which has good thermal insulation effect, high assembly efficiency, can realize localization, and reduces construction efficiency and construction cost.

[0005] The present invention is implemented as follows: a thermal insulation and heat insulation sloping roof tile panel comprises an insulation board body, a tile hanging strip pre-embedded and connected to the insulation board body, and an aluminum foil protective layer coated on the outer surface of the insulation body; wherein, the two side surfaces of the insulation board body are provided with mutually matching longitudinal assembly bite parts; the two ends of the insulation board body are provided with mutually matching transverse assembly bite parts; the tile hanging strip is pre-embedded in one side of the insulation board body along the length direction of the insulation board body; the tile hanging strip comprises an embedded connecting plate, a support plate and an arch height support part in an integrated structure; the embedded connecting plate and the support plate are in a right-angle structure; the support plate comprises an embedded connecting plate connecting section and an arch height support part connecting section, and the upper surface of the arch height support part connecting section is provided with an arch height support part; the above-mentioned embedded connecting plate is embedded in the insulation board body, the embedded connecting plate connecting section of the support plate is sealed and fitted with the upper surface of the insulation board body, and the arch height support part connecting section extends out of the outer side surface of the insulation board body; the upper surface of the arch height support part is provided with a roof tile fitting support surface.

[0006] The present invention can also adopt the following technical solutions:

[0007] Using the above technical solution, preferably, the longitudinal assembly engaging portion adopts a right-angle stop structure that cooperates with each other.

[0008] Using the above technical solution, preferably, the longitudinal joint part adopts a mortise and tenon structure that cooperates with each other; it can not only withstand a large load, but also allow a certain deformation, and offset a certain amount of seismic energy through deformation under seismic load, thereby reducing the seismic response of the structure.

[0009] Using the above technical solution, preferably, the transverse assembly engaging portion adopts a right-angle stop structure that cooperates with each other.

[0010] With the above technical solution, preferably, the transverse joint part adopts a mortise and tenon structure that cooperates with each other, which can not only bear a large load, but also allow a certain deformation, offset a certain amount of seismic energy through deformation under seismic load, and reduce the seismic response of the structure.

[0011] With the above technical solution, preferably, the insulation board body is made of polyurethane insulation board or a composite of polyurethane insulation board and extruded board, rock wool, graphite, glass wool, phenolic resin board, polystyrene board, so as to be suitable for thermal insulation roof tile panels with different site environment requirements.

[0012] Using the above technical solution, preferably, the cross-section of the arch support portion is a trapezoidal structure or a T-shaped structure.

[0013] By adopting the above technical solution, preferably, ventilation holes are provided on the two waist plates of the arch support part of the trapezoidal structure or the supporting upright plates of the arch support part of the T-shaped structure. The design of the ventilation holes can make the whole roof connected, which is conducive to the flow of heat, and further use the outer layer of the ventilation interlayer to block the sunlight, so that the roof becomes a double heat transfer, avoiding the direct effect of solar radiation heat on the roof tile panel structure, and improving the thermal insulation effect of the roof.

[0014] The present invention has the following advantages and technical effects: since the present invention adopts a light, hard, high-density polyurethane insulation board insulation carrier, the thermal insulation property is good, and its advantage of light weight not only reduces the burden of the building itself, but also greatly reduces the impact of earthquakes on the building; at the same time, the polyurethane insulation board is also used as the main supporting component of the tile hanging strip, ensuring that the tile hanging strip is firmly installed, and the insulation board body can also be compounded with other insulation materials to form an insulation and heat-insulating roof tile hanging panel suitable for different on-site environment requirements; an aluminum foil protective layer is wrapped on the outer surface of the insulation board body to make it play a role in thermal insulation as a whole It has a moisture-proof effect, and thus has a long-lasting thermal insulation effect; the design of the tile strips is conducive to building a sloping roof with a ventilation effect, and further utilizes the outer layer of the ventilation interlayer to block the sunlight, so that the roof becomes a double heat transfer, avoiding the direct effect of solar radiation heat on the roof tile panel structure; on the other hand, the effect of wind pressure and heat pressure, especially natural ventilation, is utilized to take away the heat entering the interlayer, thereby reducing the impact of outdoor heat on the inner surface; in addition, the use of stoppers or mortise and tenon structures for splicing facilitates rapid assembly, ensures the consistency of installation, and at the same time ensures the firmness and sealing of the splicing seams. The above technical solution solves the defects of the existing waterproof and thermal insulation sloping roof structure, can overcome the defects of the existing technologies in the field as mentioned above, is not restricted by seasonal climate and geographical environment, and is suitable for all year round; it is easy to prefabricate in the factory and assemble on site, and the project cycle is significantly shortened, which not only speeds up the progress of the project, but also saves construction costs and reduces the overall cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a front view of Embodiment 1 of the present invention;

[0016] Figure 2 yes Figure 1 Right view of;

[0017] Figure 3 yes Figure 1 A top view of

[0018] Figure 4 yes Figure 3 Middle AA section view;

[0019] Figure 5 is a schematic diagram of the three-dimensional structure of Example 1;

[0020] Figure 6a It is a schematic diagram of the structure of the tile hanging strip;

[0021] Figure 6b It is a schematic diagram of the structure of the tile hanging strip with convex edges;

[0022] Figure 7 yes Figure 6a Left view of

[0023] Figure 8It is a schematic diagram of the three-dimensional structure of the tile hanging strip;

[0024] Fig. 9 This is a schematic diagram of the assembly structure of Example 1;

[0025] Fig.10 This is a schematic diagram of the longitudinal splicing structure of Example 1;

[0026] Fig.11 is a schematic diagram of the horizontal splicing structure of Example 1;

[0027] Fig.12 This is a schematic diagram of the structure of the horizontally assembled bite portion of Example 2 being a trapezoidal falcon;

[0028] Fig.13 This is a schematic diagram of the stopper structure of the horizontally assembled bite portion of Embodiment 2;

[0029] Fig.14 Structural schematic diagram of embodiment 3;

[0030] Fig.15 yes Fig.14 Middle BB section view;

[0031] Fig.16 is a schematic diagram of the three-dimensional structure of Example 3;

[0032] Fig.17 This is a schematic diagram of the assembly structure of Example 3;

[0033] Fig.18 Schematic diagram of the structure of embodiment 4;

[0034] Fig.19 yes Fig.18 A top view of

[0035] Fig. 20 yes Fig.19 Middle CC section view;

[0036] Fig.21 is a schematic diagram of the three-dimensional structure of Example 4;

[0037] Fig. 22 This is a schematic diagram of the assembly structure of Embodiment 4;

[0038] Fig.23 is a schematic diagram of the composite structure of Example 5;

[0039] Fig.24 This is a schematic diagram of the double-row tile hanging strip structure;

[0040] Fig.25 It is a schematic diagram of the structure of an application embodiment of the present invention.

[0041] In the figure, 1, insulation board body; 1-1, longitudinal assembly bite part; 1-2, transverse assembly bite part; 2, tile hanging strip; 2-1, embedded connection plate; 2-2, support plate; 2-20, embedded connection plate connection section; 2-21, arch support section; 2-3, arch support part; 2-4, convex ridge; 3, aluminum foil protective layer; 4, slope roof support; 5, roof tile; 6, ridge cover tile; 7, drainage trough; 8, starting edge banding strip; 9, eaves comb; 10, ridge cover tile support member; 11, ridge ventilation cloth. DETAILED DESCRIPTION

[0042] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention. The specific contents of the present invention are described in detail below in conjunction with the accompanying drawings.

[0043] Example 1, please refer to Figures 1 to 11 A thermal insulation and heat-insulating sloping roof tile panel comprises a thermal insulation board body 1, wherein the thermal insulation board body in this embodiment is a polyurethane thermal insulation board; a tile hanging strip 2 pre-buried and connected to the thermal insulation board body and an aluminum foil protective layer 3 coated on the outer surface of the thermal insulation body;

[0044] Wherein, the two sides of the insulation board body are provided with mutually matching longitudinal assembly bite parts 1-1; the two ends of the insulation board body are provided with mutually matching transverse assembly bite parts 1-2;

[0045] The tile hanging strip 2 is pre-buried on one side of the insulation board body along the length direction of the insulation board body;

[0046] The tile hanging strip 2 includes an embedded connecting plate 2-1, a supporting plate 2-2 and an arch support portion 2-3 in an integrated structure; the embedded connecting plate and the supporting plate are in a right-angle structure;

[0047] See also Figure 6a The support plate 2-2 includes a pre-embedded connecting plate connecting section 2-20 and an arch support part connecting section 2-21, and the upper surface of the arch support part connecting section is provided with an arch support part; the above-mentioned pre-embedded connecting plate is pre-embedded in the insulation board body, the pre-embedded connecting plate connecting section of the support plate is sealed and fitted with the upper surface of the insulation board body, and the arch support part connecting section extends out of the outer side surface of the insulation board body; the upper surface of the arch support part is provided with a roof tile fitting support surface.

[0048] In actual production and processing, in order to improve the firmness of the combination of the tile hanging strip and the insulation board body, convex edges 2-4 or protrusions are provided on the embedded connecting plate 2-1 and the supporting plate 2-2. Figure 6b , so as to increase the contact surface with the insulation board body and improve the connection strength between the two.

[0049] The longitudinal assembly bite portion adopts a right-angle stop structure that cooperates with each other; the transverse assembly bite portion adopts a triangular mortise and tenon structure that cooperates with each other.

[0050] The cross section of the arch support part is a trapezoidal structure, and ventilation holes 2-5 are arranged on the two waist plates of the arch support part of the trapezoidal structure. The design of the ventilation holes can make the whole roof connected, which is conducive to the flow of heat, and further use the outer layer of the ventilation interlayer to block the sunlight, so that the roof becomes a double heat transfer, avoiding the direct effect of solar radiation heat on the roof tile panel structure, and improving the thermal insulation effect of the roof.

[0051] In Example 2, the transverse jointing part adopts a mutually matching mortise and tenon structure. Since the width of the transverse joint is narrower than that of the longitudinal joint, the mortise and tenon structure here is preferably a triangular mortise and tenon structure, a trapezoidal mortise and tenon structure (see Fig.12 ), refers to the dovetail structure or dovetail structure. The transverse assembly bite portion also adopts a right-angle stop structure that cooperates with each other. Please refer to Fig.13 .

[0052] Example 3, please refer to Figures 14 to 17 The longitudinal joint part adopts a mutually matched mortise and tenon structure. Since the longitudinal joint length is relatively long, the mortise and tenon structure is preferably a tongue-and-groove tenon. The mortise groove and the tenon are both pulled through. This structure can not only withstand a large load, but also allow a certain deformation. Under the seismic load, the deformation offsets a certain amount of seismic energy and reduces the seismic response of the structure. The transverse joint part in this embodiment adopts a mutually matched triangular mortise and tenon structure.

[0053] Example 4, please refer to Figures 18 to 22 In this embodiment, the cross-section of the arch height support part is a T-shaped structure; ventilation holes are provided on the two waist plates of the arch height support part of the trapezoidal structure or the supporting vertical plates of the arch height support part of the T-shaped structure.

[0054] Example 5, please refer to Fig.23 The insulation board body is a polyurethane insulation board or a composite of a polyurethane insulation board and an extruded board, rock wool, graphite, glass wool, phenolic resin board, and polystyrene board. The thermal insulation roof tile panel is suitable for different site environment requirements. This embodiment is described by taking rock wool 1-3 as an example. When compounding, the part connecting the tile strips and the edge position are polyurethane foamed, and the rest are other insulation materials to ensure the connection strength of the tile strips.

[0055] Example 6, please refer to Fig.24 According to the implementation requirements, the width of the insulation board body can be increased, which is suitable for laying on large roofs. Two tile hanging strips are pre-embedded on the larger insulation board body.

[0056] The above technical solution has the following advantages:

[0057] 1. Thermal insulation, energy saving and consumption reduction:

[0058] The roof tile panel is made of polyurethane foam, which has excellent thermal insulation and flame retardant properties. Compared with traditional exterior wall insulation materials, it has excellent cold-resistant and heat-insulating properties, and is extremely light in weight, durable and thermally stable. It greatly reduces heating and cooling energy consumption, thereby saving energy expenditure. The product has a high cost-effectiveness and shows an absolute advantage in exterior wall insulation and decorative materials.

[0059] See Table 1 for thermal conductivity of different insulation materials

[0060]

[0061] 2. Comparison of different thermal conductivity and material thickness to achieve the same insulation effect: R = 5.45m 2 K / W (see Table 2)

[0062] Insulation Materials Required thickness Polyurethane with aluminum foil 120mm Polyurethane without aluminum foil protection layer 150mm Polystyrene 200mm Rockwool 210mm Natural cork 240mm Wood Fiber 260mm

[0063] 3. Thermal resistance and conductivity of different thicknesses of the present invention (see Table 3):

[0064] thickness 60mm 80mm 100mm 120mm 140mm 150mm Thermal resistance (R) 2.72 3.63 4.54 5.45 6.30 7.20 Conductivity (U) 0.37 0.27 0.22 0.18 0.16 0.14

[0065] 4. The bending strength / breaking load of the present invention depends on the thickness of the panel and the distance between the supports:

[0066] thickness Support spacing 600mm Support spacing 600mm Support spacing 600mm Support spacing 600mm 60mm 278 kg 245 kg 167 kg 152 kg 80mm 331 kg 298 kg 187 kg 158 kg 100mm 515 kg 384 kg 302 kg 282 kg 120mm 559 kg 500 kg 345 kg 300 kg

[0067] 5. Easy installation and cost saving:

[0068] The roof tile panel is light and small in size, weighing only 3.9 kg per square meter, which saves time and effort in transportation and installation.

[0069] The installation method is simple and quick, and is not restricted by seasonal climate and geographical environment, and is suitable for all year round. The significantly shortened construction period not only speeds up the progress of the project, but also saves construction costs and reduces the overall cost.

[0070] The roof tile panels not only achieve decorative and thermal insulation effects, but also minimize the load on the exterior walls and enhance the usability of space and land.

[0071] 6. Lightweight, space-saving, earthquake-resistant and crack-proof:

[0072] Roof tile panels are light, strong and impact resistant. The advantage of light weight not only reduces the burden on the building itself, but also greatly reduces the impact of earthquakes on the building. The panels are installed on light steel structure buildings, with strong integrity, earthquake resistance, crack resistance, and are solid and safe.

[0073] 7. Waterproof and moisture-proof

[0074] Traditional exterior wall decoration materials generally have the problem of base material degradation due to water and cold permeability, which leads to problems such as water seepage on indoor walls. The roof tile panels are compounded with aluminum foil. Through their excellent structure and compact concave-convex plug-in buckle groove installation between the panels, they avoid structural damage caused by rain, snow, freeze, thaw, dry and wet cycles. After installation, they eliminate the worry of water seepage on the wall and effectively avoid the phenomenon of mold on the indoor wall. Even in extremely cold areas, the stable performance of the roof tile panels does not have to worry about water seepage and deformation, which extends the service life of the building.

[0075] 8. Sound insulation, noise reduction, quiet and comfortable:

[0076] The core material in the middle of the roof tile panel is a heat-insulating and sound-insulating layer made of high-density polyurethane foam, and its interior is an independent closed bubble structure with good sound insulation effect. It is suitable for buildings such as apartments, hospitals, and schools near noise areas, effectively reducing outdoor noise from entering the room and keeping the indoor environment quiet and comfortable.

[0077] 9. Green, environmentally friendly and durable:

[0078] The roof tile panel has a stable chemical and physical structure, will not decompose and mildew, has no radiation, no pollution, and is green and environmentally friendly. The panel can also be flexibly disassembled and reused to install on other buildings, and the leftover scraps from the construction can also be recycled and reused, which greatly reduces construction waste during the construction process. It is a high-quality, high-performance environmentally friendly product; the roof tile panel is easy to clean, durable, and has a long service life.

[0079] 10. Suitable for factory production: The present invention is easy to prefabricate in the factory and assemble on site, which significantly shortens the project period, not only speeds up the project progress, but also saves construction costs and reduces the overall cost.

[0080] Application examples and construction methods: Use the present invention to build a ventilation, heat insulation and thermal insulation integrated roof system, please refer to Fig.25The roof system includes a slope roof support 4 installed on the wall, roof tiles 5, ridge cap tiles 6, and a drainage ditch 7 and a starting edge banding strip 8 set at the edge of the slope roof eaves, and also includes a thermal insulation layer fixedly installed above the roof support. The thermal insulation layer includes several roof tile panels that are laid horizontally and vertically from the eaves to the ridge on the roof support surface formed by the roof support; the roof tile panel adopts the roof tile panel of the above embodiment.

[0081] The construction method of the above-mentioned integrated ventilation, heat insulation and thermal insulation roof system comprises the following steps:

[0082] (1) Build a sloped roof support surface: Build rafters or panels between the beams or purlins of the roof to form a sloped roof support surface;

[0083] (2) Install the starting edge banding strip: install the starting edge banding strip horizontally and fixedly at the lower edge of the roof support surface at the eaves; after installation, the height of the upper surface of the starting edge banding strip from the roof support surface is the same as the thickness of the thermal insulation roof tile panel;

[0084] (3) Install the gutter: Fix the gutter on the edge sealing strips on the eaves side;

[0085] (4) Laying the thermal insulation layer: Lay the first row of the first roof tile panel on the roof support surface with the starting edge banding wood strip as the starting point, and set the tile strip side to fit with the starting edge banding wood strip; then use the anchor to fix the first roof tile panel to the roof support, and apply a sealant adhesive between the transverse splicing bite parts of the two before assembling the second roof tile panel. After applying, match the transverse splicing bite parts of the two adjacent roof tile panels, and stick a waterproof butyl tape at the joint after the sealant solidifies; after the anchor is anchored, stick a waterproof butyl tape at the anchor point. Base tape; then use anchors to fix the second roof tile panel to the roof support; lay the remaining roof tile panels of the first row in the same direction in sequence until the last roof tile panel is laid, cut it according to the actual length, and lay it after cutting, and cut the remaining roof tile panel as the first roof tile panel of the next row; after the first row of roof tile panels is laid, PU foam is filled between the starting edge banding strips to avoid thermal bridges; after the first row is laid, the remaining rows of roof tile panels are laid in sequence according to the method of laying the first panel until the ridge position;

[0086] When there is a valley or buttock on the roof support surface, first adjust the direction of the roof tile panel so that the roof tile strips adjacent to the valley or buttock fit closely to the edge of the valley or buttock. After splicing, fill it with PU foam and seal it with butyl tape;

[0087] If the length of the last row of roof tiles at the ridge position is different from the length of the roof slope, the last row of roof tiles must be cut in line with the ridge so that the last row of roof tiles fits the ridge; then the ridge tile support member is installed on the upper part of the ridge formed by the last row of roof tiles;

[0088] (5) Laying roof tiles: First, the eave comb 9 is fixedly installed on the tile strips of the first row of roof tile panels, and the first row of roof tiles is lifted by the eave comb; then the roof tiles are laid in sequence in one direction, and the roof tiles are fixed to the tile strips of the corresponding roof tile panels by fasteners;

[0089] (6) Ridge tile: After the roof tiles are laid, the ridge tile support structure 10 is adjusted according to the shape of the ridge, and then the ridge ventilation cloth 11 is laid. Then, the ridge tiles are laid one by one on the upper surface of the ridge ventilation cloth until the entire ridge is laid.

[0090] The ventilated roof after construction as mentioned above, based on the thermal insulation of the roof tile panel, uses the outer layer of the ventilation interlayer to block the sunlight, so that the roof becomes a double heat transfer, avoiding the direct effect of solar radiation heat on the enclosing structure; on the other hand, the effect of wind pressure and heat pressure, especially natural ventilation, is used to take away the heat entering the interlayer, thereby reducing the impact of outdoor heat on the inner surface, and the insulation effect is quite significant.

[0091] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A thermal insulation sloping roof tile panel, characterized in that: It includes a heat preservation board body, a tile hanging strip pre-buried and connected to the heat preservation board body, and an aluminum foil protective layer wrapped on the outer surface of the heat preservation body; Wherein, the two sides of the insulation board body are provided with mutually matching longitudinal assembly bite parts; the two ends of the insulation board body are provided with mutually matching transverse assembly bite parts; The tile hanging strip is pre-buried on one side of the insulation board body along the length direction of the insulation board body; The tile hanging strip comprises an embedded connecting plate, a supporting plate and an arch support part in an integrated structure; the embedded connecting plate and the supporting plate are in a right-angle structure; The support plate includes a pre-embedded connecting plate connecting section and an arch support part connecting section, and the upper surface of the arch support part connecting section is provided with an arch support part; the above-mentioned pre-embedded connecting plate is embedded in the insulation board body, the pre-embedded connecting plate connecting section of the support plate is sealed and fitted with the upper surface of the insulation board body, and the arch support part connecting section extends out of the outer side surface of the insulation board body; the upper surface of the arch support part is provided with a roof tile fitting support surface.

2. The thermal insulation and heat insulating sloping roof tile panel according to claim 1, characterized in that: The longitudinal assembly joint portion adopts a right-angle stop structure that cooperates with each other.

3. The thermal insulation sloping roof tile panel according to claim 1, characterized in that: The longitudinal assembly engaging portion adopts a mortise and tenon structure that cooperates with each other.

4. The thermal insulation and heat insulating sloping roof tile panel according to claim 1, characterized in that: The transverse assembly engaging portion adopts a right-angle stop structure that cooperates with each other.

5. The thermal insulation sloping roof tile panel according to claim 1, characterized in that: The transverse assembly engaging portion adopts a mortise and tenon structure that cooperates with each other.

6. The thermal insulation sloping roof tile panel according to claim 1, characterized in that: The insulation board body is made of polyurethane insulation board or a composite of polyurethane insulation board and extruded board, rock wool, graphite, glass wool, phenolic resin board and polystyrene board.

7. The thermal insulation sloping roof tile panel according to claim 1, characterized in that: The cross section of the arch support portion is a trapezoidal structure.

8. The thermal insulation and heat insulating sloping roof tile panel according to claim 7, characterized in that: Ventilation holes are arranged on the two waist plates of the arch height supporting part of the trapezoidal structure.

9. The thermal insulation sloping roof tile panel according to claim 1, characterized in that: The cross section of the arch support portion is a T-shaped structure.

10. The thermal insulation and heat insulating sloping roof tile panel according to claim 9, characterized in that: The supporting upright plate of the arch support portion of the T-shaped structure is provided with ventilation holes.

Citation Information

Patent Citations

  • Heat preservation and insulation sloping roof tile hanging panel

    CN211143510U