Aluminum sheet roof ridge for replacing roof lightning strip

By integrating the aluminum single-panel ridge structure with the roof of the antique-style building, and combining it with a dry and damp monitoring system, the problems of lightning protection strip installation damage and moisture growth have been solved, improving the waterproof and earthquake resistance of the antique-style building and ensuring the building's aesthetics and reliability.

CN116657811BActive Publication Date: 2026-04-14SINOHYRDO ENG BUREAU 3 CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-30
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The installation of lightning protection strips on the roof ridges of existing antique-style buildings requires drilling for fixation, which leads to surface damage and poor aesthetics. At the same time, in humid environments, moss and mold are prone to grow, affecting the waterproof performance and service life of the building.

Method used

The roof structure uses aluminum single-panel roofing, which is integrated with the antique building roof through aluminum casing, curved aluminum cover and curved aluminum single-panel roofing. Combined with the roof dryness and humidity monitoring mechanism, it avoids drilling for fixing, and prevents the growth of moss and mold through the drying mechanism.

Benefits of technology

The integration of lightning protection strips with the decorative structure of antique-style buildings has improved waterproofing and seismic performance, shortened the construction period, and prevented the growth of moss and mold through drying and monitoring mechanisms, thereby enhancing the reliability and aesthetics of the building.

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Abstract

The application belongs to the technical field of building, and particularly relates to an aluminum veneer roof ridge for replacing a roof lightning strip, comprising a V-shaped roof aluminum framework and a pseudo-classic building roof for mounting the V-shaped roof aluminum framework. The application integrates the lightning strip and the pseudo-classic building roof decoration structure into one by replacing the roof lightning strip with the aluminum veneer roof ridge, which not only facilitates the pseudo-classic building roof pseudo-classic decoration construction, but also improves the aesthetic property of the pseudo-classic building. Moreover, the aluminum veneer roof ridge can effectively reduce the total weight of the building, improve the anti-seismic performance and temperature deformation resistance, and has excellent fireproof function. Meanwhile, the aluminum veneer roof ridge for replacing the roof lightning strip also has the functions of pseudo-classic building roof moisture monitoring and roof drying, which can avoid moss and mildew breeding due to continuous moisture of the pseudo-classic building roof, further avoid the pseudo-classic building roof from being damaged by microorganisms, further avoid the occurrence of water seepage, and improve the reliability of the pseudo-classic building roof.
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Description

Technical Field

[0001] This invention belongs to the field of building technology, and in particular relates to an aluminum single-panel roof ridge for replacing roof lightning protection strips. Background Technology

[0002] Currently, many historical and cultural cities have planned and constructed ancient-style building complexes around their ancient districts and scenic spots. The styles of the roofs of these ancient-style buildings are very rich and distinctive, showcasing the beauty and diversity of ancient architecture. The gentle curves and prominent ridge ornaments play a crucial role in highlighting the characteristics and features of the entire building. In addition, most existing ancient-style buildings adopt brick and stone walls and cast-in-place concrete sloping roof structures for ease of construction. After the main structure of the ancient-style building is completed, decorative construction is carried out on the brick and stone walls and cast-in-place concrete sloping roof, referencing the appearance of ancient buildings. Finally, lightning protection strips are installed on the ridge of the ancient-style building, and these lightning protection strips are connected to the main lightning protection system for lightning protection measures.

[0003] Currently, the installation of lightning protection strips on the ridges of antique-style buildings requires drilling holes to place expansion bolts, and these holes are exposed on the outside of the ridge. Drilling also damages the surface of the antique-style building. During the spring season, rainwater seeps into the gaps in the holes in the lightning protection strips onto the roof of the antique-style building. Prolonged dampness causes moss to easily grow on the roof, and the moss secretes acidic substances that corrode the roof over time, potentially leading to leaks. Furthermore, the protruding lightning protection strips also affect the building's aesthetics.

[0004] Therefore, we propose an aluminum single-panel roof ridge to replace the roof lightning protection strip and solve the above problems. Summary of the Invention

[0005] The purpose of this invention is to address the above-mentioned problems by providing an aluminum single-panel roof ridge that can replace the roof lightning protection strip.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: an aluminum single-panel roof ridge for replacing roof lightning protection strips, comprising a V-shaped roof aluminum frame and an antique-style building roof for installing the V-shaped roof aluminum frame. The bottom end of the V-shaped roof aluminum frame is fixedly connected to the antique-style building roof with bolts. The outer wall of the ridge of the antique-style building roof is fixedly connected to the ridge aluminum frame with bolts. The top ends of multiple ridge aluminum frames are jointly fixedly connected to a hollow aluminum crossbeam of the main ridge. Aluminum connecting frames are fixedly connected to both sides of the hollow aluminum crossbeam of the main ridge. The bottom end of the aluminum connecting frame is fixedly connected to the upper surface of the V-shaped roof aluminum frame with bolts. The outer wall of the connecting piece of two aluminum connecting frames is jointly fixedly connected to an aluminum... The aluminum casing has an arc-shaped aluminum cover fixedly connected to its top end. Multiple arc-shaped aluminum single protective plates are sequentially fixedly connected to the outer wall of the ridge aluminum frame. Imitation tile aluminum single panels are sequentially fixedly connected to the outer wall of the V-shaped roof aluminum frame. Arc-shaped aluminum guide plates are fixedly connected to the outer walls of both sides of the aluminum casing and the outer walls of the adjacent arc-shaped aluminum single protective plates and imitation tile aluminum single panels. A flexible hose is fixedly connected to the outer wall of one of the aluminum connecting frames. The top end of the flexible hose is connected to the internal cavity of the hollow aluminum crossbeam of the ridge. The bottom end of the flexible hose is fixedly connected to a roof drying mechanism. Multiple inclined air outlets are opened on the lower surface of the hollow aluminum crossbeam of the ridge. Roof moisture monitoring mechanisms are connected to the inner walls of the bottom ends of both sides of the V-shaped roof aluminum frame.

[0007] In the aforementioned aluminum single-panel ridge used to replace roof lightning protection strips, the roof drying mechanism includes a heat-insulating hollow block fixedly connected to the bottom end of a flexible hose. Multiple through holes are formed on the upper surface of the heat-insulating hollow block, and an electric heating tube is fixedly connected to the wall of each through hole. A drying cylinder is fixedly fitted onto the outer wall of the heat-insulating hollow block, and an air pump is fixedly connected to the inner wall of the drying cylinder. The output end of the air pump passes through the bottom inner wall of the heat-insulating hollow block. Two filter screens are fixedly connected to the inner wall of the drying cylinder, and a desiccant bag is movably connected to one side of each of the two filter screens. The desiccant bag is filled with a layer of drying particles. A rectangular through hole is formed on the outer wall of the drying cylinder, and a sealing assembly is movably connected to the wall of the rectangular through hole.

[0008] In the aforementioned aluminum single-panel ridge used to replace roof lightning protection strips, the sealing assembly includes a hollow iron cover plate, the outer wall of the drying cylinder is provided with a placement groove, and a strong magnetic block is fixedly connected to the groove wall, the outer wall of the strong magnetic block is in contact with the inner wall of the hollow iron cover plate.

[0009] In the aforementioned aluminum single-panel ridge used to replace roof lightning protection strips, the roof moisture monitoring mechanism includes an insulating rubber frame connected to the inner wall of the bottom end of the V-shaped roof aluminum frame. A water-absorbing sponge layer is fixedly connected to the inner wall of the insulating rubber frame. Multiple base plates are fixedly connected to the side opposite to the insulating rubber frame and the water-absorbing sponge layer. A moisture-sensitive variable resistive diaphragm is fixedly connected to the upper surface of the base plate. Two conductive sheets are fixedly connected to the outer wall of the moisture-sensitive variable resistive diaphragm. A protective cover is fixedly connected to the two conductive sheets and the outer wall of the base plate. Multiple vents are provided on the outer wall of the protective cover. An audible and visual indicator is fixedly connected to the outer wall of the drying cylinder.

[0010] In the aforementioned aluminum single-panel roof ridge used to replace the roof lightning protection strip, the outer wall of the insulating rubber frame has multiple openings, and the walls of the openings are fixedly connected to a flow guiding metal rod. The bottom ends of the flow guiding metal rod and the insulating rubber frame are in contact with the upper surface of the antique-style building roof.

[0011] In the aforementioned aluminum single-panel ridge used to replace the roof lightning protection strip, the outer walls of the two arc-shaped aluminum guide plates are provided with through holes, and the walls of the through holes are fixedly connected with connecting covers. The outer walls of the connecting covers are provided with multiple round holes, and the walls of the round holes are fixedly connected with exhaust one-way valves.

[0012] In the aforementioned aluminum single-panel ridge used to replace roof lightning protection strips, the inner wall of the hollow iron cover plate is fixedly connected with a sealing gasket, and the outer wall of the hollow iron cover plate is sprayed with a rust-proof paint layer with a thickness of 0.1-0.15 mm.

[0013] In the aforementioned aluminum single-panel ridge used to replace roof lightning protection strips, two metal crossbeams are fixedly connected to the inner wall of the top of the arc-shaped aluminum cover, and the bottom end of the metal crossbeams is connected to the top of the aluminum connecting frame.

[0014] Compared with existing technologies, the advantages of an aluminum single-panel roof ridge for replacing roof lightning protection strips are:

[0015] 1. When installing antique-style decorations on the roof of an antique-style building, the process involves first fixing a V-shaped roof aluminum frame, ridge aluminum frame, hollow aluminum beams for the ridge, and aluminum connecting frames to the roof. These frame structures are connected to the main lightning protection system. Then, aluminum casings, arc-shaped aluminum covers, arc-shaped aluminum single-layer protective panels, imitation tile aluminum single-layer panels, and arc-shaped aluminum guide plates are installed on the V-shaped roof aluminum frame, ridge aluminum frame, hollow aluminum beams for the ridge, and aluminum connecting frames. The single protective panel, imitation tile aluminum single panel, and curved aluminum guide plate sections utilize the excellent conductivity of aluminum to integrate the lightning protection strip with the antique building roof decoration structure, avoiding the lightning protection strip protruding and affecting aesthetics. In addition, there is no need to drill holes to fix the lightning protection strip on the ridge surface, the entire ridge surface has a strong waterproof effect, and it can effectively reduce the total weight of the building, improve seismic performance and resistance to temperature deformation, and also has excellent fire resistance and can shorten the construction period of the building roof decoration.

[0016] 2. Through the installed roof drying mechanism and roof dampness monitoring mechanism, when the roof of the antique-style building becomes damp due to the rainy season in spring, the guide metal rod first liquefies the moisture in the surrounding air. Then, excess moisture on the roof and water droplets from the guide metal rod flow into the water-absorbing sponge layer at the bottom of the roof. Next, the audible and visual alert of the roof dampness monitoring mechanism alerts staff that the roof is damp and that failure to dry it promptly can easily lead to the growth of moss and mold, which can damage the roof. Staff then activate the roof drying mechanism via a control switch. The mechanism sprays dry, hot air along the surface of the roof to dry it, preventing the growth of moss and mold. This mechanism enables the aluminum single-panel roof ridge, which replaces the roof lightning rod, to have the functions of monitoring and drying the roof, preventing the growth of moss and mold due to continuous dampness, thus avoiding microbial damage and water seepage, and improving the reliability of the antique-style building roof. Attached Figure Description

[0017] Figure 1 This is a front view structural schematic diagram of an aluminum single-panel roof ridge used to replace roof lightning protection strips, provided by the present invention;

[0018] Figure 2 for Figure 1 A schematic diagram of the internal structure of an aluminum single-panel roof ridge used to replace roof lightning protection strips;

[0019] Figure 3 This is a schematic diagram of the roof drying mechanism in an aluminum single-panel roof ridge that can replace the roof lightning protection strip, provided by the present invention.

[0020] Figure 4This is a cross-sectional structural schematic diagram of the ridge section of an aluminum single-panel roof ridge that is used to replace the roof lightning protection strip, provided by the present invention.

[0021] Figure 5 This is a schematic diagram of a roof moisture monitoring mechanism in an aluminum single-panel roof ridge that can replace roof lightning protection strips, provided by the present invention.

[0022] Figure 6 for Figure 5 A partially enlarged structural diagram.

[0023] In the diagram: 1. V-shaped roof aluminum frame; 2. Antique-style roof; 3. Ridge aluminum frame; 4. Hollow aluminum beam for the main ridge; 5. Aluminum connecting frame; 6. Aluminum protective sleeve; 7. Roof drying mechanism; 71. Insulating hollow block; 72. Electric heating tube; 73. Drying cylinder; 74. Air pump; 75. Filter screen; 76. Dehumidifying bag; 77. Drying granule layer; 8. Roof moisture monitoring mechanism; 81. Insulating rubber frame; 82. Absorbent sponge layer; 83. Substrate; 84. Moisture-sensitive variable resistance diaphragm, 85 conductive sheet, 86 protective cover, 87 vent, 88 sound and light indicator, 9 sealing assembly, 91 hollow iron cover, 92 strong magnetic block, 10 arc-shaped aluminum cover, 11 arc-shaped aluminum single protective plate, 12 imitation tile aluminum single plate, 13 arc-shaped aluminum guide plate, 14 flexible hose, 15 metal crossbeam, 16 inclined vent, 17 guide metal rod, 18 connecting cover, 19 exhaust one-way valve, 20 sealing gasket. Detailed Implementation

[0024] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0025] like Figure 1-6As shown, an aluminum single-panel roof ridge for replacing roof lightning protection strips includes a V-shaped roof aluminum frame 1 and an antique-style roof 2 for installing the V-shaped roof aluminum frame 1. The bottom end of the V-shaped roof aluminum frame 1 is fixedly connected to the antique-style roof 2 by bolts. The outer wall of the ridge of the antique-style roof 2 is fixedly connected to the ridge aluminum frame 3 by bolts. The top ends of multiple ridge aluminum frames 3 are fixedly connected to the ridge hollow aluminum beam 4. Aluminum connecting frames 5 are fixedly connected to both sides of the ridge hollow aluminum beam 4. The bottom end of the aluminum connecting frame 5 is fixedly connected to the upper surface of the V-shaped roof aluminum frame 1 by bolts. The outer wall of the connecting piece of the two aluminum connecting frames 5 is fixedly connected to the aluminum protective tube 6 by bolts. The top end of the aluminum protective tube 6 is fixedly connected to the arc-shaped aluminum cover 10. The inner wall of the top end of the arc-shaped aluminum cover 10 is fixedly connected to two metal beam pieces 15. The bottom end of the metal beam pieces 15 is connected to the top end of the aluminum connecting frame 5. The metal beam pieces 15 can improve the structural strength of the arc-shaped aluminum cover 10.

[0026] Multiple curved aluminum single protective panels 11 are sequentially fixedly connected to the outer wall of the ridge aluminum frame 3. Imitation tile aluminum single panels 12 are sequentially fixedly connected to the outer wall of the V-shaped roof aluminum frame 1. Curved aluminum guide plates 13 are fixedly connected to both outer walls of the aluminum casing 6 and the outer walls of the adjacent curved aluminum single protective panels 11 and imitation tile aluminum single panels 12. The outer walls of the two curved aluminum guide plates 13 are provided with through holes, and the walls of the through holes are fixedly connected with connecting covers 18. The outer walls of the connecting covers 18 are provided with multiple round holes, and the walls of the round holes are fixedly connected with exhaust one-way valves 19. In winter, when it snows, hot air can melt the snow after being discharged through the connecting covers 18 and exhaust one-way valves 19, thus preventing the snow from accumulating and damaging the aluminum single panels. The outer wall of one of the aluminum connecting frames 5 is fixedly connected with a flexible hose 14. The top of the flexible hose 14 is connected to the internal cavity of the hollow aluminum crossbeam 4 of the ridge. Multiple inclined air outlets 16 are provided on the lower surface of the hollow aluminum crossbeam 4 of the ridge.

[0027] The bottom end of the flexible hose 14 is fixedly connected to the roof drying mechanism 7. The roof drying mechanism 7 includes a heat-insulating hollow block 71 fixedly connected to the bottom end of the flexible hose 14. The upper surface of the heat-insulating hollow block 71 has multiple through holes, and the walls of the through holes are fixedly connected to electric heating tubes 72. The outer wall of the heat-insulating hollow block 71 is fixedly sleeved with a drying cylinder 73. The inner wall of the drying cylinder 73 is fixedly connected to a vacuum pump 74. The output end of the vacuum pump 74 passes through the bottom inner wall of the heat-insulating hollow block 71. The inner wall of the drying cylinder 73 is fixedly connected to two filter screens 75. The opposite side of the two filter screens 75 is movably connected to a desiccant bag 76. The desiccant bag 76 is filled with a drying particle layer 77. This mechanism dries the roof by drying hot air, preventing the growth of moss and mold on the roof of the antique building 2 due to dampness, and ensuring the safety of the roof of the antique building 2.

[0028] The outer wall of the drying cylinder 73 has a rectangular through hole, and the wall of the rectangular through hole is movably connected to a sealing assembly 9. The sealing assembly 9 includes a hollow iron cover plate 91. The outer wall of the drying cylinder 73 has a placement groove, and the wall of the placement groove is fixedly connected to a strong magnetic block 92. The outer wall of the strong magnetic block 92 is in contact with the inner wall of the hollow iron cover plate 91. A sealing gasket 20 is fixedly connected to the inner wall of the hollow iron cover plate 91. The outer wall of the hollow iron cover plate 91 is coated with a rust-proof paint layer with a thickness of 0.13 mm. The hollow iron cover plate 91 of this mechanism has the function of easy disassembly and assembly through the connection of the strong magnetic block 92, thereby enabling the replacement and maintenance of the dried particle layer 77.

[0029] The inner walls of the bottom ends of the V-shaped roof aluminum frame 1 are connected to roof moisture monitoring mechanisms 8. The roof moisture monitoring mechanism 8 includes an insulating rubber frame 81 connected to the inner walls of the bottom ends of the V-shaped roof aluminum frame 1. The outer wall of the insulating rubber frame 81 has multiple openings, and a guide metal rod 17 is fixedly connected to the wall of each opening. The bottom ends of both the guide metal rod 17 and the insulating rubber frame 81 are in contact with the upper surface of the antique-style roof 2. The guide metal rod 17 has a low surface temperature, which allows it to liquefy moisture in the surrounding air, causing the moisture to condense into water droplets on its surface. Excess moisture on the antique-style roof 2 and the water droplets from the guide metal rod 17 then flow into the absorbent sponge layer 8 at the bottom of the antique-style roof 2. In section 2, an absorbent sponge layer 82 is fixedly connected to the inner wall of the insulating rubber frame 81. Multiple substrates 83 are fixedly connected to the opposite side of the insulating rubber frame 81 and the absorbent sponge layer 82. The substrate 83 is a lithium chloride moisture-sensitive substrate. A moisture-sensitive variable resistance diaphragm 84 is fixedly connected to the upper surface of the substrate 83. Two conductive sheets 85 are fixedly connected to the outer wall of the moisture-sensitive variable resistance diaphragm 84. The two conductive sheets 85 and the outer wall of the substrate 83 are jointly fixedly connected to a protective cover 86. Multiple vents 87 are opened on the outer wall of the protective cover 86. An audible and visual indicator 88 is fixedly connected to the outer wall of the drying cylinder 73. This mechanism can monitor the humidity of the antique building roof 2 and prevent the antique building roof 2 from growing moss and mold due to moisture.

[0030] The operating principle of this invention is described as follows: When antique-style decorations need to be installed on the roof 2 of the antique-style building, firstly, a V-shaped roof aluminum frame 1, a ridge aluminum frame 3, a hollow aluminum beam 4 for the main ridge, and an aluminum connecting frame 5 are fixed on the roof 2. The above-mentioned frame structure is connected to the main lightning protection system. Then, aluminum protective cylinders 6, arc-shaped aluminum covers 10, arc-shaped aluminum single protective panels 11, imitation tile aluminum single panels 12, and arc-shaped aluminum guide plates 13 are fixed on the V-shaped roof aluminum frame 1, ridge aluminum frame 3, hollow aluminum beam 4 for the main ridge, and aluminum connecting frame 5. The excellent conductivity of the high-quality material integrates the lightning protection strip with the decorative structure of the antique-style roof, avoiding the lightning protection strip protruding and affecting the aesthetics. At the same time, there is no need to drill holes to fix the lightning protection strip on the ridge surface, and the entire ridge surface has a strong waterproof effect. In addition, the metal frame structure of the aluminum single-panel ridge has the characteristics of high connection strength, strong deformation resistance and light load per unit area, which can effectively reduce the total weight of the building, improve seismic performance and resistance to temperature deformation, and also has excellent fire protection function, and can shorten the construction period of the building roof decoration.

[0031] When the roof of the antique-style building 2 becomes damp due to the rainy season in spring, the surface temperature of the guide metal rod 17 is relatively low, which allows it to liquefy the moisture in the surrounding air. This moisture condenses into water droplets on the surface of the guide metal rod 17. Then, excess moisture on the roof of the antique-style building 2 and the water droplets on the guide metal rod 17 flow into the water-absorbing sponge layer 82 at the bottom of the roof of the antique-style building 2. The conductive sheet 85 and the audible and visual indicator 88 of the roof dampness monitoring mechanism 8 are electrically connected to the public power supply in series via a power adapter. This electrical connection is existing technology and will not be described in detail here. After the water-absorbing sponge layer 82 becomes damp, the resistance of the nearby moisture-sensitive variable resistor diaphragm 84 changes after it becomes damp. Water molecules can increase the transport between conductive ions. The movement speed is increased, and the conductivity is improved, causing the resistance of the moisture-sensitive variable resistance diaphragm 84 on the substrate 83 to decrease, thereby reducing the voltage of the moisture-sensitive variable resistance diaphragm 84. This further increases the voltage of the sound and light indicator 88 in the next stage of the circuit. As the voltage of the sound and light indicator 88 increases, it can meet the requirements for the activation of the sound and light indicator 88, and the sound and light indicator 88 emits a sound and light prompt. At the same time, under the input voltage limit of the power adapter, the actual voltage of the sound and light indicator 88 in the circuit will not exceed the rated voltage and cause damage. The sound and light signal of the sound and light indicator 88 prompts the staff that the roof of the antique building 2 is relatively damp. If it is not dried in time, it is easy to grow moss and mold, which can easily damage the roof of the antique building 2.

[0032] Then, the staff starts the air pump 74 and the electric heating tube 72 by controlling the switch. The air pump 74 draws air from the drying cylinder 73, and the drying cylinder 73 is replenished by air drawn in through the bottom air inlet. The air is dehumidified as it passes through the drying particle layer 77. After drying, the air is delivered to the hollow heat insulation box by the air pump 74 and heated by the electric heating tube 72. The heated air is delivered to the hollow aluminum beam 4 of the ridge through the hose 14 and discharged through the inclined air outlet 16, and discharged along the surface of the antique building roof 2, thus drying the antique building roof 2. Moreover, in winter, when it snows, the hot air can melt the snow after being discharged through the connecting cover 18 and the exhaust one-way valve 19, preventing the accumulation of snow from damaging the aluminum panels, until the water-absorbing sponge layer 82 is reached. After drying, the resistance and voltage at the moisture-sensing diaphragm 84 of the roof moisture monitoring mechanism 8 increase, causing the voltage at the audible and visual indicator 88 to decrease accordingly. The low voltage cannot meet the normal start-up requirements of the audible and visual indicator 88, so it cannot issue a drying prompt. Then, the staff shuts down the roof drying mechanism 7 according to the signal from the roof moisture monitoring mechanism 8, thus completing the purpose of drying the antique building roof 2 to prevent the growth of moss and mold. This mechanism enables the aluminum single-panel ridge, which replaces the roof lightning protection strip, to have the functions of monitoring the moisture of the antique building roof 2 and drying the roof, preventing the growth of moss and mold on the antique building roof 2 due to continuous moisture, thereby preventing the antique building roof 2 from being damaged by microorganisms and preventing water seepage, thus improving the reliability of the antique building roof 2.

[0033] 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, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. An aluminum single-panel roof ridge for replacing roof lightning protection strips, comprising a V-shaped roof aluminum frame (1) and an antique-style building roof (2) for installing the V-shaped roof aluminum frame (1), characterized in that, The bottom end of the V-shaped roof aluminum frame (1) is fixedly connected to the antique building roof (2) by bolts. The outer wall of the ridge of the antique building roof (2) is fixedly connected to the ridge aluminum frame (3) by bolts. The top ends of multiple ridge aluminum frames (3) are fixedly connected to the ridge hollow aluminum beam (4). Aluminum connecting frames (5) are fixedly connected to both sides of the ridge hollow aluminum beam (4). The bottom end of the aluminum connecting frame (5) is fixedly connected to the upper surface of the V-shaped roof aluminum frame (1) by bolts. The outer wall of the connecting piece of two aluminum connecting frames (5) is fixedly connected to the aluminum sleeve (6) by bolts. The top end of the aluminum sleeve (6) is fixedly connected to the arc-shaped aluminum cover (10). Multiple arc-shaped aluminum frames (3) are fixedly connected to the outer wall of the ridge aluminum frame (3) in sequence. The V-shaped aluminum single protective panel (11) is connected to the outer wall of the V-shaped roof aluminum frame (1) in sequence with imitation tile aluminum single panels (12). The outer walls of the aluminum protective cylinder (6) on both sides and the outer walls of the adjacent arc-shaped aluminum single protective panel (11) and imitation tile aluminum single panels (12) are all connected to arc-shaped aluminum guide plates (13). The outer wall of one of the aluminum connecting frames (5) is connected to a flexible hose (14). The top of the flexible hose (14) is connected to the internal cavity of the hollow aluminum crossbeam (4) of the ridge. The bottom end of the flexible hose (14) is connected to a roof drying mechanism (7). The lower surface of the hollow aluminum crossbeam (4) of the ridge is provided with multiple inclined air outlets (16). The inner walls of the bottom ends of the two sides of the V-shaped roof aluminum frame (1) are connected to a roof moisture monitoring mechanism (8).

2. An aluminum single-panel roof ridge for replacing roof lightning protection strips according to claim 1, characterized in that, The roof drying mechanism (7) includes a heat-insulating hollow block (71) fixedly connected to the bottom end of a hose (14). The upper surface of the heat-insulating hollow block (71) is provided with multiple through holes, and an electric heating tube (72) is fixedly connected to the wall of the through hole. A drying cylinder (73) is fixedly sleeved on the outer wall of the heat-insulating hollow block (71). An air pump (74) is fixedly connected to the inner wall of the drying cylinder (73). The output end of the air pump (74) passes through the inner wall of the bottom end of the heat-insulating hollow block (71). Two filter screens (75) are fixedly connected to the inner wall of the drying cylinder (73). A desiccant bag (76) is movably connected to the opposite side of the two filter screens (75). The desiccant bag (76) is filled with a drying particle layer (77). A rectangular through hole is provided on the outer wall of the drying cylinder (73), and a sealing assembly (9) is movably connected to the wall of the rectangular through hole.

3. An aluminum single-panel roof ridge for replacing roof lightning protection strips according to claim 2, characterized in that, The sealing assembly (9) includes a hollow iron cover plate (91), and the outer wall of the drying cylinder (73) is provided with a placement groove, and a strong magnetic block (92) is fixedly connected to the groove wall. The outer wall of the strong magnetic block (92) is in contact with the inner wall of the hollow iron cover plate (91).

4. An aluminum single-panel roof ridge for replacing roof lightning protection strips according to claim 2, characterized in that, The roof moisture monitoring mechanism (8) includes an insulating rubber frame (81) connected to the inner wall of the bottom end of the V-shaped roof aluminum frame (1). An absorbent sponge layer (82) is fixedly connected to the inner wall of the insulating rubber frame (81). Multiple substrates (83) are fixedly connected to the side opposite to the insulating rubber frame (81) and the absorbent sponge layer (82). A moisture-sensitive variable resistance diaphragm (84) is fixedly connected to the upper surface of the substrate (83). Two conductive sheets (85) are fixedly connected to the outer wall of the moisture-sensitive variable resistance diaphragm (84). A protective cover (86) is fixedly connected to the outer wall of the two conductive sheets (85) and the substrate (83). Multiple vents (87) are opened on the outer wall of the protective cover (86). An audible and visual indicator (88) is fixedly connected to the outer wall of the drying cylinder (73).

5. An aluminum single-panel roof ridge for replacing roof lightning protection strips according to claim 4, characterized in that, The outer wall of the insulating rubber frame (81) has multiple openings, and the walls of the openings are fixedly connected to a flow guiding metal rod (17). The bottom ends of the flow guiding metal rod (17) and the insulating rubber frame (81) are in contact with the upper surface of the antique building roof (2).

6. An aluminum single-panel roof ridge for replacing roof lightning protection strips according to claim 1, characterized in that, Both of the arc-shaped aluminum guide plates (13) have through holes on their outer walls, and a connecting cover (18) is fixedly connected to the hole wall of the through hole. The connecting cover (18) has multiple round holes on its outer wall, and an exhaust check valve (19) is fixedly connected to the hole wall of the round hole.

7. An aluminum single-panel roof ridge for replacing roof lightning protection strips according to claim 3, characterized in that, The inner wall of the hollow iron cover plate (91) is fixedly connected with a sealing gasket (20), and the outer wall of the hollow iron cover plate (91) is sprayed with a rust-proof paint layer with a thickness of 0.1-0.15 mm.

8. An aluminum single-panel roof ridge for replacing roof lightning protection strips according to claim 1, characterized in that, Two metal crossbeams (15) are fixedly connected to the inner wall of the top of the arc-shaped aluminum cover (10), and the bottom end of the metal crossbeams (15) is connected to the top of the aluminum connecting frame (5).

Citation Information

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