Thermal insulation waterproof roofing system
By introducing a combined structure of support and thermostatic devices into the waterproof roofing system, the problem of poor thermal insulation performance of the top structure is solved, excellent thermal insulation and waterproof performance is achieved, and the long-term stability and durability of the system are ensured.
Patent Information
- Application Number
- CN202310449584.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-24
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2043-04-24
AI Technical Summary
The existing waterproof roof system has poor thermal insulation performance on the top structure, making it difficult to effectively insulate.
A combination of a supporting device, a constant temperature device and a waterproof device is adopted. The supporting device includes a bottom mounting mechanism and a top supporting mechanism. The constant temperature device is installed on the bottom mounting mechanism to form an insulation layer. The waterproof device is fixed by the top supporting mechanism to enhance the waterproof performance and form an insulation layer underneath it.
It effectively improves the thermal insulation performance of the roof system, reduces the wear and aging of the thermostatic device, ensures the thermal insulation effect after long-term use, and enhances the structural stability and waterproof performance.
Smart Images

Figure CN116623884B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of roofing systems, and in particular to a thermal insulation waterproof roofing system. Background Art
[0002] A waterproof roofing system generally refers to a roof structure installed on the ground or on top of a building to provide waterproofing. In practice, this type of roofing system is mostly installed on the top of a building or at entrances and exits.
[0003] Most existing waterproof roofing systems consist of a mounting frame and multiple roof panels. The mounting frame is installed on the ground or on top of a building. The roof panels, which can be made of aluminum or steel, are assembled and connected and then fixed to the top of the mounting frame to form the roof system's top structure.
[0004] However, the top structure of ordinary roofing systems often has poor thermal insulation performance, which makes it difficult for the roofing system to insulate the covered area, so it needs to be improved. Summary of the Invention
[0005] In order to improve the problem of poor thermal insulation performance of the top structure of a conventional roofing system, the present application provides a thermal insulation waterproof roofing system.
[0006] The thermal insulation waterproof roofing system provided in this application adopts the following technical solutions:
[0007] A thermal insulation waterproof roofing system includes a supporting device, a constant temperature device and a waterproof device; the supporting device further includes a bottom mounting mechanism and a top supporting mechanism, the constant temperature device is arranged on a platform for installing the roofing system through the bottom mounting mechanism, and the waterproof device is arranged on the bottom mounting mechanism through the top supporting mechanism.
[0008] By adopting the above technical solution, the waterproof device is installed on the bottom-mounted mechanism through the top-supporting mechanism to ensure the waterproof performance of the roof system, and the constant temperature device is installed on the bottom-mounted mechanism to form an insulation layer under the waterproof device, thereby ensuring the thermal insulation performance of the roof system; in addition, the constant temperature device arranged under the waterproof device, thanks to the protection of the waterproof device above, can effectively reduce the phenomenon of damage and aging of the constant temperature device due to direct contact with foreign objects, thereby helping to ensure the thermal insulation performance of the roof system after long-term use.
[0009] In a specific possible implementation scheme, the bottom-mounted mechanism includes a bottom-mounted assembly and a touch-bearing assembly, and the constant temperature device includes a constant temperature mechanism and a locking mechanism; the touch-bearing assembly is arranged on a platform for installing the roofing system through the bottom-mounted assembly, the constant temperature mechanism is arranged on the touch-bearing assembly, and the locking mechanism is used to make the constant temperature mechanism press against the touch-bearing assembly and be connected to the bottom-mounted assembly.
[0010] By adopting the above technical solution, the bottom-mounted component supports the constant temperature mechanism through the contact-supporting component, which helps to improve the position stability of the constant temperature mechanism after installation. The locking mechanism is used to press the constant temperature mechanism against the contact-supporting component and connect it to the bottom-mounted component, thereby ensuring the application stability of the constant temperature mechanism and improving the structural strength and application stability of the roof system, so that the roof system can still have excellent thermal insulation performance after long-term use.
[0011] In a specific feasible implementation scheme, the bottom mounting assembly includes a bottom mounting frame and multiple supporting square columns, all of the supporting square columns are spaced apart on a platform for installing the roofing system, and the bottom mounting frame is set on all the supporting square columns; the touch bearing assembly includes multiple touch bearing plates, multiple groups of touch bearing brackets and multiple bottom fixing bolts, one group of the touch bearing brackets is protruding between two adjacent touch bearing plates; the bottom fixing bolts are used to position the touch bearing plates on the bottom mounting frame, and all of the touch bearing brackets are used to jointly support the constant temperature mechanism; the constant temperature mechanism includes multiple groups of constant temperature components, each group of the constant temperature components includes an insulation block and two groups of water barriers; the two groups of water barriers are respectively arranged on two opposite sides of the insulation block, and the adjacent side walls of the insulation blocks are abutted against each other to be distributed on the touch bearing plate.
[0012] By adopting the above technical solution, multiple supporting square columns jointly and stably support the bottom frame, and the touch extension plate is fixed to the bottom frame by bottom fixing bolts, so that all touch support brackets and all touch extension plates are corrugated, thereby ensuring the structural stability of the touch support bracket and the stability of supporting the insulation block; the water barrier is used to make the insulation block waterproof, which helps to reduce the phenomenon that the insulation performance of the insulation block is reduced due to the contamination of moisture molecules in the air, thereby ensuring the insulation performance of the insulation block after long-term use.
[0013] In a specific possible implementation scheme, a plurality of clearance channels are provided at intervals on the touch support bracket, and an inward retraction channel is provided on the touch support extension plate.
[0014] By adopting the above technical solution, the retracting channel is used to provide abutment for the side of the insulation block, thereby reducing the sliding and offset of the insulation block relative to the touch support bracket, and ensuring the position stability and application stability of the insulation block on the touch support bracket; the retracting channel is used to make the touch support plate itself have a corrugated shape, thereby improving the structural strength and application stability of the touch support plate; in addition, the retracting channel can also reduce the amount of consumables used in the molding of the touch support plate, thereby saving the preparation cost of the touch support plate.
[0015] In a specific feasible implementation scheme, the locking mechanism includes a stop pressure plate, a plug-in screw, a locking nut and multiple contact plates; the plug-in screw and the multiple contact plates are arranged at intervals on the stop pressure plate, all of the touch plates pass through one set of water barriers and are plugged into the insulation block, the plug-in screw passes through the insulation block, two sets of water barriers, the contact support bracket and the bottom mounting frame, and the locking nut is threadedly connected to the plug-in screw, so that the insulation block is pressed against the contact support bracket and connected to the bottom mounting frame.
[0016] By adopting the above technical solution, the stop pressure plate abuts the insulation block against the contact support plate, and the contact plate is plugged into the insulation block to reduce the deviation of the stop pressure plate relative to the insulation block; the plug-in screw passes through the insulation block, the contact support bracket and the bottom mounting frame, and the locking nut is threadedly connected to the plug-in screw, so that the insulation block, the contact support bracket and the bottom mounting frame are fixedly connected as a whole, thereby ensuring the installation stability and application stability of the insulation block.
[0017] In a specific feasible implementation scheme, the locking mechanism includes a limiting pressure plate, a plug-in assembly, multiple locking support plates and multiple positioning assemblies; all the locking support plates are spaced apart on the limiting pressure plate, and the insulation block and one group of water-blocking parts are penetrated by a pre-clearance channel for the locking support plates to be pressed into; the positioning assembly is arranged in the side wall of the pre-clearance channel to position the locking support plate in the side wall of the pre-clearance channel; the plug-in assembly is used to make the limiting pressure plate press against the insulation block and be connected to the bottom frame.
[0018] By adopting the above technical solution, the limiting pressure plate is inserted into the inner cavity of the pre-allowance channel through the positioning support plate, so that the limiting pressure plate presses the insulation block tightly against the touch support bracket, and the positioning component positions the positioning support plate in the side wall of the pre-allowance channel to improve the connection stability between the limiting pressure plate and the insulation block; the positioning component fixedly connects the limiting pressure plate, the insulation block, the touch support bracket and the bottom mounting frame to ensure the structural stability of the limiting pressure plate, the insulation block, the touch support bracket and the bottom mounting frame after connection.
[0019] In a specific feasible implementation scheme, each group of the positioning components includes a deformable part and a positioning end block, and an inner recessed groove for installing the deformable part is provided in the side wall of the pre-passageway, and one end of the positioning end block is connected to the deformable part so that the positioning end block can completely enter the inner cavity of the inner recessed groove through the deformable part, or the other end of the positioning end block can be located outside the inner recessed groove; the positioning support plate is provided with a docking groove for the positioning end block to be pressed into.
[0020] By adopting the above technical solution, the positioning end block is installed in the side wall of the inner sink groove through the deformable part. The operator can compress the deformable part by applying pressure to the positioning end block until the positioning end block completely enters the inner cavity of the inner sink groove. At this time, the positioning support plate enters the inner cavity of the pre-allowance channel. When the docking groove and the inner sink groove are symmetrical to each other, the deformable part can be extended freely to push the positioning end block to the inner cavity of the docking groove, thereby positioning the positioning support plate in the side wall of the pre-allowance channel, ensuring the structural stability and application stability of the limit pressure plate, insulation block, contact support bracket and bottom mounting frame after connection.
[0021] In a specific feasible implementation scheme, the plug-in assembly includes a plug-in bolt and a retaining nut, and the plug-in bolt is simultaneously passed through the limiting pressure plate, the insulation block, two sets of water-blocking parts, the touch-bearing bracket and the bottom mounting frame, and is pressed against the limiting pressure plate; the retaining nut is threadedly connected to the plug-in bolt to connect the limiting pressure plate, the insulation block, the touch-bearing bracket and the bottom mounting frame.
[0022] By adopting the above technical solution, when the positioning support plate is inserted into the inner cavity of the pre-passageway in the horizontal direction, the connecting bolt can simultaneously pass through the limiting pressure plate, the insulation block, two sets of water-blocking parts, the touch support bracket and the bottom mounting frame in the vertical direction, thereby limiting the position stability and application stability of the limiting pressure plate and the insulation block on the touch support bracket and the bottom mounting frame.
[0023] In a specific feasible implementation scheme, the waterproof device includes multiple water-avoiding plates and multiple sets of side connection mechanisms, and the top supporting mechanism includes a top-mounted frame and multiple top-mounted plates; all the top-mounted plates are arranged on the bottom-mounted frame at intervals, and the top-mounted frame is arranged on all the top-mounted plates; all the water-avoiding plates are located on the top-mounted frame, and the side walls of adjacent water-avoiding plates are abutted against each other; the side connection mechanism is used to position the water-avoiding plates on the top-mounted frame.
[0024] By adopting the above technical solution, the water-shielding plates are placed on the top-mounted frame, and the side walls of adjacent water-shielding plates are abutted against each other to form a waterproof layer, thereby ensuring the waterproof performance of the roof system; the side connection mechanism connects the water-shielding plates to the top-mounted frame, thereby ensuring the connection strength and application stability of the water-shielding plates on the top-mounted frame.
[0025] In a specific possible implementation scheme, each group of the side connection mechanisms includes side connection side plates and side fixing bolts; the side connection side plates are arranged on the water-proof plates, and the side fixing bolts are used to position the side connection side plates on the top-mounted frame.
[0026] By adopting the above technical solution, the side-connected side panels increase the contact area between the water-proof plate and the top-mounted frame. After the side-connected side panels and the top-mounted frame are fixedly connected by the fixed edge bolts, the side-connected side panels and the top-mounted frame are fixedly connected as a whole, thereby ensuring the position stability and waterproof performance of the water-proof plate on the top-mounted frame.
[0027] In summary, this application has the following beneficial technical effects:
[0028] 1. The waterproof device is installed on the bottom mounting mechanism through the top supporting mechanism to ensure the waterproof performance of the roof system. The thermostatic device is installed on the bottom mounting mechanism to form an insulation layer under the waterproof device, thereby effectively ensuring the thermal insulation performance of the surface system.
[0029] 2. All contact support brackets and all contact support extension plates are corrugated, ensuring the structural stability of the contact support brackets and the stability of the insulation blocks; the water barrier is used to make the insulation blocks waterproof, which helps to reduce the phenomenon of the insulation performance of the insulation blocks being contaminated by moisture molecules in the air and thus ensuring the insulation performance of the insulation blocks after long-term use. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 Schematic diagram of the structure of the thermal insulation waterproof roofing system in Example 1 of the present application;
[0031] Figure 2 Schematic diagram of the connection relationship between the water-proof plate, the constant temperature device and the bottom mounting frame in Example 1 of the present application;
[0032] Figure 3 This is a schematic diagram of the connection between the insulation block and the bottom mounting frame in Example 1 of the present application;
[0033] Figure 4 This is a schematic diagram used to illustrate the connection relationship between the limiting pressure plate, the insulation block, the contact support bracket and the bottom mounting frame in Example 2 of the present application;
[0034] Figure 5 2 is a schematic cross-sectional view along the vertical direction showing the connection relationship between the limiting pressure plate, the heat-insulating block, the contact support bracket and the bottom mounting frame in Example 2 of the present application;
[0035] Figure 6 yes Figure 5 Enlarged schematic diagram of part A.
[0036] Description of reference numerals:
[0037] 1. Support device; 11. Bottom mounting mechanism; 12. Top supporting mechanism; 121. Top mounting frame; 122. Top mounting plate; 2. Constant temperature device; 21. Constant temperature device; 22. Locking mechanism; 221. Stop pressure plate; 222. Insert screw; 223. Locking nut; 224. Contact plate; 3. Waterproof device; 31. Waterproof plate; 32. Side connection mechanism; 321. Side connection side plate; 322. Side fixing bolt; 4. Bottom mounting assembly; 41. Bottom mounting frame; 42. Support Square column; 5. Contact bearing assembly; 51. Contact bearing extension plate; 511. Inward retraction channel; 52. Contact bearing bracket; 521. Make way channel; 53. Bottom fixing bolt; 6. Constant temperature assembly; 61. Insulation block; 611. Pre-make way channel; 612. Inner sink trough; 62. Water barrier; 7. Limiting pressure plate; 8. Plug-in assembly; 81. Plug-in bolt; 82. Retaining nut; 9. Positioning support plate; 91. Docking groove; 10. Positioning assembly; 101. Deformable part; 102. Positioning end block. DETAILED DESCRIPTION
[0038] The embodiments of the present application disclose a thermal insulation waterproof roofing system.
[0039] The following is combined with Figure 1-6 This application is described in further detail.
[0040] Example 1
[0041] Reference Figure 1 The thermal insulation waterproof roofing system includes a support device 1, a thermostat 2, and a waterproof device 3. The support device 1 is mounted on a platform for mounting the roofing system, which can be the ground or the top of a building. The thermostat 2 and waterproof device 3 are both mounted on the support device 1, serving as the roof structure for waterproofing and thermal insulation.
[0042] Reference Figure 2 The support device 1 includes a bottom mounting mechanism 11, which in turn includes a bottom mounting assembly 4 and a contact bearing assembly 5. The bottom mounting assembly 4 comprises a bottom mounting frame 41 and a plurality of supporting square columns 42. In this embodiment, the bottom mounting frame 41 can be a frame formed by welding multiple steel bars. The supporting square columns 42 are vertically welded to the platform at their ends closest to the platform, and the bottom mounting frame 41 is welded to the ends of all supporting square columns 42 away from the platform.
[0043] Reference Figure 2 The contact support assembly 5 is arranged on the top wall of the bottom mounting frame 41 to receive the constant temperature device 2 .
[0044] Reference Figure 3The touch support assembly 5 includes multiple touch support plates 51, multiple sets of touch support brackets 52, and multiple bottom fixing bolts 53. In this embodiment, the touch support plates 51 can be steel plates, and the touch support brackets 52 can be trapezoidal steel structures. One touch support bracket 52 is welded between two touch support plates 51, and the touch support bracket 52 protrudes above the two adjacent touch support plates 51, so that the touch support bracket 52 and the adjacent touch support plates 51 have a corrugated shape.
[0045] Reference Figure 3 The bottom fixing bolt 53 passes through the touch extension plate 51 and is screwed onto the bottom mounting frame 41, so that the touch extension plate 51 and the bottom mounting frame 41 are fixedly connected as a whole, thereby helping to stably position all the touch extension plates 51 and all the touch support brackets 52 on the top wall of the bottom mounting frame 41.
[0046] Reference Figure 3 The thermostat 2 is mounted on the bottom frame 41 via contact support brackets 52. The thermostat 2 includes a thermostat mechanism 21 and a locking mechanism 22. The thermostat mechanism 21 includes multiple sets of thermostat components 6. In this embodiment, three adjacent sets of contact support brackets 52 can jointly support one set of thermostat components 6.
[0047] Reference Figure 3 Each thermostatic assembly 6 comprises an insulation block 61 and two water barriers 62. In this embodiment, the insulation block 61 can be a hard foam glass plate, and the water barriers 62 can be a soft waterproof membrane. The water barriers 62 are glued to the sidewalls of the insulation block 61 along its thickness. This ensures that the insulation block 61 not only has thermal insulation properties but also has a certain degree of waterproofing, thereby helping to ensure the performance stability of the insulation block 61 after long-term use.
[0048] Reference Figure 3 The insulation block 61 is placed directly on the top wall of the contact support bracket 52 near the side wall of the bottom frame 41. In this embodiment, three adjacent groups of contact support brackets 52 can collectively support a single insulation block 61. To improve the positional stability of the insulation block 61 on the bottom frame 41, each side panel of the contact support bracket 52 is provided with a clearance channel 521. The clearance channel 521 is used to abut the side edge of the insulation block 61, thereby reducing the possibility of the insulation block 61 sliding or deflecting relative to the contact support bracket 52. The contact support plate 51 is also provided with an inward-retracting channel 511. The inward-retracting channel 511 not only reduces the material consumption during the molding of the contact support plate 51, thus saving costs, but also allows the contact support plate 51 to have a corrugated shape, thereby improving its compressive strength and operational stability.
[0049] Reference Figure 3The locking mechanism 22 is used to secure the insulation block 61 against the contact support bracket 52 and connect it to the bottom mounting frame 41. The locking mechanism 22 comprises a stop pressure plate 221, a plug screw 222, a locking nut 223, and multiple contact plates 224. In this embodiment, there are three contact plates 224, which are welded perpendicularly and spaced apart to the side wall of the stop pressure plate 221 facing the insulation block 61. One end of the plug screw 222 is welded to the side wall of the stop pressure plate 221 facing the insulation block 61, and the plug screw 222 can be located between any two adjacent contact plates 224.
[0050] Reference Figure 3 After the sidewall of the stop pressure plate 221 near the insulation block 61 abuts the sidewall of the insulation block 61 away from the contact support bracket 52, all contact plates 224 can be located on the water barrier 62 on the side of the insulation block 61 away from the contact support bracket 52 and inserted into the insulation block 61, preventing the stop pressure plate 221 from deflecting or shifting relative to the insulation block 61. The end of the plug screw 222 away from the stop pressure plate 221 simultaneously passes through the insulation block 61 with the two layers of water barrier 62, the contact support bracket 52, and the bottom mounting frame 41. Then, the locking nut 223 is threadedly connected to the plug screw 222 until the locking nut 223 abuts the sidewall of the bottom mounting frame 41 away from the contact support bracket 52. At this point, the stop pressure plate 221 presses the insulation block 61 tightly against the contact support bracket 52, and the insulation block 61, the contact support bracket 52, and the bottom mounting frame 41 are fixedly connected as a whole.
[0051] Reference Figure 2 The support device 1 also includes a top supporting mechanism 12, which is used to support the waterproof device 3 so that the waterproof device 3 is stably positioned above the bottom mounting frame 41. The top supporting mechanism 12 includes a top mounting frame 121 and multiple top mounting plates 122, and the top mounting plates 122 are welded to the top wall of the bottom mounting frame 41. The top mounting frame 121 is welded to the end of all the top mounting plates 122 away from the bottom mounting frame 41. In this embodiment, the top mounting frame 121 can be a frame plate formed by welding multiple steel bars. The top mounting frame 121 and the bottom mounting frame 41 are parallel to each other, and all the insulation blocks 61, the touch support brackets 52 and the touch support extension plates 51 are located between the top mounting frame 121 and the bottom mounting frame 41.
[0052] Reference Figure 2The waterproof device 3 includes a plurality of water-proof plates 31 and a plurality of side connection mechanisms 32. In this embodiment, the water-proof plates 31 can be aluminum plates. Each side connection mechanism 32 includes a side connection side plate 321 and a fixed side bolt 322. The side connection side plate 321 is welded to the side wall of the water-proof plate 31 in the horizontal direction. The bottom wall of the side connection side plate 321 is against the top wall of the top-mounted frame 121. The fixed side bolt 322 passes through the side connection side plate 321 and is screwed onto the top-mounted frame 121, so that the side connection side plate 321 and the top-mounted frame 121 are fixedly connected as a whole, thereby stably installing the water-proof plate 31 on the top-mounted frame 121. At this time, all the water-proof plates 31 form a waterproof layer on the top of the top-mounted frame 121, and all the insulation blocks 61 form an insulation layer below the waterproof layer formed by the water-proof plates 31 to ensure the waterproof and thermal insulation performance of the roof system.
[0053] The thermal insulation waterproof roofing system of this embodiment is implemented as follows: A plug-in screw 222 sequentially passes through the insulation block 61 with a water barrier 62, the contact support bracket 52, and the bottom mounting frame 41. A locking nut 223 is screwed onto the plug-in screw 222, securing the insulation block 61, the contact support bracket 52, and the bottom mounting frame 41 as a single unit. At this point, all insulation blocks 61 form an insulating layer on the bottom mounting frame 41, ensuring the thermal insulation performance of the area covered by the roofing system.
[0054] The fixing bolts 322 fix the side plates 321 and the top frame 121 to fix the waterproof plates 31 on the top frame 121, thereby forming a waterproof layer on the top frame 121 to ensure the waterproof performance of the roof system.
[0055] Example 2
[0056] The difference between the embodiment of the present application and embodiment 1 is that, referring to Figure 4 and Figure 5 The locking mechanism 22 includes a limiting pressure plate 7, a plug-in assembly 8, multiple locking support plates 9 and multiple positioning assemblies 10.
[0057] Reference Figure 4 and Figure 5 In this embodiment, the retaining support plate 9 can be a dovetail-shaped steel plate, and all retaining support plates 9 are welded at intervals to the side wall of the limiting pressure plate 7 facing the bottom mounting frame 41. A pre-clearance channel 611 is provided horizontally through the insulation block 61. The pre-clearance channel 611 is provided on both the insulation block 61 and the water barrier 62 located on the side of the insulation block 61 away from the bottom mounting frame 41. The inner diameter of the pre-clearance channel 611 is compatible with the outer circumference of the retaining support plate 9. The retaining support plate 9 is inserted into the inner cavity of the pre-clearance channel 611, so that the retaining support plate 9 abuts the side wall of the insulation block 61 away from the bottom mounting frame 41.
[0058] Reference Figure 5 and Figure 6The positioning assembly 10 is disposed within the sidewall of the pre-clearance passage 611 to position the retaining support plate 9 within the sidewall of the pre-clearance passage 611, thereby reducing slippage and deflection of the retaining support plate 9 relative to the insulation block 61. The positioning assembly 10 includes a deformable member 101 and a positioning end block 102, wherein the deformable member 101 can be a steel compression spring.
[0059] Reference Figure 6 An inner recessed groove 612 is provided within the sidewall of the pre-passageway 611. One longitudinal end of the deformable member 101 is welded to the inner bottom wall of the inner recessed groove 612, and the other longitudinal end of the deformable member 101 is also located within the inner recessed groove 612. A positioning end block 102 is welded to the deformable member 101. By pressing the positioning end block 102, the deformable member 101 is compressed and fully inserted into the inner recessed groove 612. When the deformable member 101 is in a freely extended state, the end of the positioning end block 102 that is away from the deformable member 101 is located outside the inner recessed groove 612.
[0060] Reference Figure 6 The positioning support plate 9 is provided with a docking groove 91, the inner diameter of which matches the outer circumference of the positioning end block 102. The operator uses the pressure plate to pre-press the positioning end block 102 into the inner cavity of the inner recessed groove 612. The positioning support plate 9 is inserted into the inner cavity of the pre-clearance passage 611 until the docking groove 91 and the inner recessed groove 612 are aligned. At this point, the deformable member 101 is freely extended, allowing the end of the positioning end block 102 away from the deformable member 101 to be inserted into the inner cavity of the docking groove 91, thereby positioning the positioning support plate 9 in the inner cavity of the pre-clearance passage 611, thereby improving the positioning stability of the limiting pressure plate 7 on the insulation block 61.
[0061] Reference Figure 4 The plug-in assembly 8 includes a plug-in bolt 81 and a retaining nut 82. The end of the plug-in bolt 81, distal from the end, passes sequentially through the limiting pressure plate 7, the thermal insulation block 61 with the water barrier 62, the contact support bracket 52, and the bottom mounting frame 41 until the end of the plug-in bolt 81 abuts against the limiting pressure plate 7. The operator then tightens the retaining nut 82 onto the plug-in bolt 81, securing the limiting pressure plate 7, the thermal insulation block 61, the contact support bracket 52, and the bottom mounting frame 41 as a single unit, thereby ensuring the stability of the thermal insulation block 61's position and application after installation.
[0062] The operating principle of the thermal insulation waterproof roofing system of the present embodiment is as follows: the retaining support plate 9 is inserted into the inner cavity of the corresponding pre-clearance passage 611, so that the limiting pressure plate 7 abuts the side wall of the insulation block 61 away from the bottom mounting frame 41 and is not easily deflected. The positioning end block 102 is inserted into the inner cavity of the docking groove 91, positioning the retaining support plate 9 within the side wall of the pre-clearance passage 611, thereby reducing the possibility of the retaining support plate 9 sliding within the inner cavity of the pre-clearance passage 611 and further improving the positional stability of the limiting pressure plate 7 against the insulation block 61.
[0063] The end of the connecting bolt 81, away from the end, passes through the limiting pressure plate 7, the insulation block 61 with the water barrier 62, the contact support bracket 52, and the bottom mounting frame 41 in sequence, until the end of the connecting bolt 81 abuts against the limiting pressure plate 7. The retaining nut 82 is screwed onto the connecting bolt 81, firmly connecting the limiting pressure plate 7, the insulation block 61, the contact support bracket 52, and the bottom mounting frame 41 as a whole. This ensures the stability of the position and application of the insulation block 61 after installation, improving the structural stability of the roof system and the thermal insulation performance after long-term use.
[0064] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. Thermal insulation waterproof roofing system, characterized by: The invention comprises a supporting device (1), a thermostat (2) and a waterproof device (3); the supporting device (1) further comprises a bottom mounting mechanism (11) and a top supporting mechanism (12); the thermostat (2) is arranged on a platform for installing a roofing system through the bottom mounting mechanism (11); the waterproof device (3) is arranged on the bottom mounting mechanism (11) through the top supporting mechanism (12); the bottom mounting mechanism (11) comprises a bottom mounting assembly (4) and a touch supporting assembly (5); the thermostat (2) comprises a thermostat (21) and a locking mechanism (22); the touch supporting assembly (5) is arranged on the platform for installing a roofing system through the bottom mounting assembly (4); the thermostat (21) is arranged on the touch supporting assembly (5); The locking mechanism (22) is used to make the thermostatic mechanism (21) press against the touch support component (5) and be connected to the bottom mounting component (4); the bottom mounting component (4) includes a bottom mounting frame (41) and a plurality of supporting square columns (42), all of the supporting square columns (42) are arranged at intervals on a platform for installing a roofing system, and the bottom mounting frame (41) is arranged on all the supporting square columns (42); the touch support component (5) includes a plurality of touch support extension plates (51), a plurality of groups of touch support brackets (52) and a plurality of bottom fixing bolts (53), a group of the touch support brackets (52) is protruded and arranged between two adjacent touch support extension plates (51); the bottom fixing bolts (53) are used to make The touch extension plate (51) is positioned on the bottom frame (41), and all the touch support brackets (52) are used to jointly support the constant temperature mechanism (21); the constant temperature mechanism (21) includes multiple groups of constant temperature components (6), and each group of the constant temperature components (6) includes an insulation block (61) and two groups of water-blocking members (62); the two groups of water-blocking members (62) are respectively arranged on the opposite sides of the insulation block (61), and the side walls of the adjacent insulation blocks (61) are abutted against each other to be distributed on the touch extension plate (51); the touch support bracket (52) is also provided with multiple clearance channels (521) at intervals, and the touch extension plate (51) is also provided with an inward retraction channel (511); the locking mechanism (22) includes The invention comprises a stop pressure plate (221), a plug-in screw rod (222), a locking nut (223) and a plurality of contact plates (224); the plug-in screw rod (222) and the plurality of contact plates (224) are arranged on the stop pressure plate (221) at intervals, and all the contact plates (224) pass through one group of water-blocking members (62) and are plugged into the heat-insulating block (61); the plug-in screw rod (222) passes through the heat-insulating block (61), two groups of water-blocking members (62), a contact support bracket (52) and a bottom mounting frame (41); the locking nut (223) is threadedly connected to the plug-in screw rod (222), so that the heat-insulating block (61) is pressed against the contact support bracket (52) and is connected to the bottom mounting frame (41).
2. The thermal insulation waterproof roofing system according to claim 1, characterized in that: The locking mechanism (22) comprises a limiting pressure plate (7), a plug-in assembly (8), a plurality of positioning support plates (9) and a plurality of positioning assemblies (10); all the positioning support plates (9) are arranged at intervals on the limiting pressure plate (7); the heat preservation block (61) and one of the water-blocking members (62) are provided with a pre-clearance channel (611) for the positioning support plates (9) to be pressed into; the positioning assembly (10) is arranged in the side wall of the pre-clearance channel (611) to position the positioning support plates (9) in the side wall of the pre-clearance channel (611); the plug-in assembly (8) is used to make the limiting pressure plate (7) press against the heat preservation block (61) and be connected to the bottom mounting frame (41).
3. The thermal insulation waterproof roofing system according to claim 2, characterized in that: Each group of the positioning components (10) includes a deformable member (101) and a positioning end block (102); an inner sinking groove (612) for installing the deformable member (101) is provided in the side wall of the pre-passageway (611); one end of the positioning end block (102) is connected to the deformable member (101), so that the positioning end block (102) completely enters the inner cavity of the inner sinking groove (612) through the deformable member (101), or the other end of the positioning end block (102) is located outside the inner sinking groove (612); and a docking groove (91) for the positioning end block (102) to be pressed into is provided on the positioning support plate (9).
4. The thermal insulation waterproof roofing system according to claim 3, characterized in that: The plug-in assembly (8) includes a plug-in bolt (81) and a retaining nut (82). The plug-in bolt (81) is simultaneously passed through the limiting pressure plate (7), the heat-insulating block (61), two groups of water-blocking members (62), the contact support bracket (52) and the bottom mounting frame (41), and is pressed against the limiting pressure plate (7). The retaining nut (82) is threadedly connected to the plug-in bolt (81), so that the limiting pressure plate (7), the heat-insulating block (61), the contact support bracket (52) and the bottom mounting frame (41) are connected.
5. The thermal insulation waterproof roofing system according to claim 4, characterized in that: The waterproof device (3) comprises a plurality of water-avoiding plates (31) and a plurality of side connection mechanisms (32); the top supporting mechanism (12) comprises a top mounting frame (121) and a plurality of top mounting plates (122); all the top mounting plates (122) are arranged on the bottom mounting frame (41) at intervals, and the top mounting frame (121) is arranged on all the top mounting plates (122); all the water-avoiding plates (31) are located on the top mounting frame (121), and the side walls of adjacent water-avoiding plates (31) abut against each other; the side connection mechanism (32) is used to position the water-avoiding plates (31) on the top mounting frame (121).
6. The thermal insulation waterproof roofing system according to claim 5, characterized in that: Each set of the side connection mechanisms (32) includes a side connection side plate (321) and a side fixing bolt (322); the side connection side plate (321) is arranged on the water-proof plate (31), and the side fixing bolt (322) is used to position the side connection side plate (321) on the top mounting frame (121).
Citation Information
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