Building roof heat insulation structure
By setting threaded rings and studs in the roof insulation structure, arbitrary adjustment of the ceiling height is achieved and the position is fixed by the nut, the problem that the ceiling height cannot be adjusted in the existing technology is solved, meeting the installation needs of different regions, and effectively removing snow blocks in snowy environments.
Patent Information
- Application Number
- CN202422063914.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-26
AI Technical Summary
The existing roof insulation structure cannot adjust the height of the ceiling arbitrarily and cannot meet the installation needs of different regions.
By setting up thread rings and studs, the studs are lifted and lowered by the rotation of the thread ring, thereby adjusting the height of the ceiling and fixing the position of the ceiling by the tightening of the nut.
Arbitrary adjustment of the ceiling height is achieved to meet the installation needs of different areas. At the same time, snow blocks on the ceiling are effectively removed in snowy environments through the design of snowboards.
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Figure CN222976201U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of construction engineering, and more specifically, the utility model relates to a building roof heat insulation structure. Background Art
[0002] The roof is the surface of the building roof. It mainly refers to the part between the ridge and the eaves. This part occupies a large area of the roof. Or rather, the roof is the part with a large area in the roof. In hot weather, heat will be transferred into the room from the roof. Therefore, a heat insulation structure is needed to block the heat. The existing heat insulation structures mostly block the heat through heat insulation boards and then install a ceiling to shield rain and snow.
[0003] The existing roof heat insulation structure cannot arbitrarily adjust the height of the ceiling, so it cannot meet the installation requirements in different regions. Therefore, in view of this problem, how to design a building roof heat insulation structure has become the problem that needs to be solved currently. Summary of the Utility Model
[0004] In order to overcome the above-mentioned defects of the prior art, an embodiment of the utility model provides a building roof heat insulation structure. By setting a threaded ring and a stud, by simultaneously rotating the threaded rings on both sides, the stud drives the ceiling to perform corresponding lifting and lowering, and the second nuts at the corresponding positions are tightened to further fix and limit the position of the ceiling, so as to solve the problems raised in the above background art.
[0005] To achieve the above object, the utility model provides the following technical solution: A building roof heat insulation structure, including a bottom plate, a limiting plate is fixedly installed on the top of the bottom plate, a heat insulation board is arranged on the top of the bottom plate, a fixing plate is arranged on the top of the heat insulation board, a sleeve is fixedly installed on the top of the fixing plate, a threaded ring is rotatably connected to the top of the sleeve, a stud is slidably connected to the inside of the sleeve, the threaded ring and the stud are arranged in a threaded connection, a ceiling is fixedly installed on the top of the stud, a fixing bolt is slidably connected to the inside of the bottom plate, the fixing bolt is inserted into the inside of the fixing plate, and a first nut is threadedly connected to the outside of the fixing bolt.
[0006] In a preferred embodiment, a limiting square frame is fixedly installed on the top of the fixing plate, and an inner sliding column is slidably connected to the inside of the limiting square frame.
[0007] In a preferred embodiment, a positioning bolt is inserted into the inside of the inner sliding column, the positioning bolt is slidably connected to the inside of the limiting square frame, and a second nut is threadedly connected to the outside of the positioning bolt.
[0008] In a preferred embodiment, a snow pusher is slidably connected to the outside of the ceiling. A collar is fixedly installed at the bottom of the snow pusher, and the collar is slidably connected to the inside of the ceiling.
[0009] In a preferred embodiment, a limiting square plate is fixedly installed inside the ceiling. The collar is slidably connected to the outside of the limiting square plate, and a shaft rod is fixedly installed inside the ceiling.
[0010] In a preferred embodiment, a coil spring is provided on the outside of the shaft rod. A winding roller is rotatably connected inside the ceiling, and the coil spring is fixedly installed inside the winding roller.
[0011] In a preferred embodiment, a connecting rope is wound around the outside of the winding roller. The connecting rope is fixedly installed inside the snow pusher, and a pulling rope is fixedly installed on one side of the snow pusher.
[0012] The technical effects and advantages of the present utility model:
[0013] 1. By providing a threaded ring and a stud, when it is necessary to adjust the height of the ceiling, by simultaneously rotating the threaded rings on both sides, the stud drives the ceiling to perform corresponding lifting and lowering. After the adjustment is completed, the second nuts at the corresponding positions are tightened to further fix and limit the position of the ceiling, thereby achieving the purpose of arbitrarily adjusting the height of the ceiling to meet the installation requirements in different areas.
[0014] 2. By providing a snow pusher, in a snowy environment, a large amount of snow blocks will accumulate on the top of the ceiling. To prevent the ceiling from being crushed by the snow blocks, the pulling ropes on both sides can be pulled to drive the snow pusher to slide, so as to push the snow blocks accumulated on the top of the ceiling off by the snow pusher. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0016] Figure 2 is of the present utility model Figure 1 an enlarged view of the structure of part A;
[0017] Figure 3 is of the present utility model Figure 1 an enlarged view of the structure of part B.
[0018] The reference numerals are: 1, bottom plate; 2, limit plate; 3, heat insulation plate; 4, fixing plate; 5, sleeve; 6, threaded ring; 7, stud; 8, ceiling; 9, fixing bolt; 10, first nut; 11, limit square frame; 12, inner sliding column; 13, positioning bolt; 14, second nut; 15, snow pusher; 16, collar; 17, limit square plate; 18, shaft rod; 19, coil spring; 20, winding roller; 21, connecting rope; 22, pulling rope. Detailed implementation manner
[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0020] Refer to the attached drawings of the specification Figures 1-3 , as Figure 1 shown, a building roof heat insulation structure according to an embodiment of the present invention includes a bottom plate 1. A limit plate 2 is fixedly installed on the top of the bottom plate 1. A heat insulation plate 3 is provided on the top of the bottom plate 1. A fixing plate 4 is provided on the top of the heat insulation plate 3. A sleeve 5 is fixedly installed on the top of the fixing plate 4. A threaded ring 6 is rotatably connected to the top of the sleeve 5. A stud 7 is slidably connected to the inside of the sleeve 5. The threaded ring 6 and the stud 7 are arranged in a threaded connection state. The top of the stud 7 is fixedly installed with a ceiling 8. As Figure 2 shown, a fixing bolt 9 is slidably connected to the inside of the bottom plate 1. The fixing bolt 9 is inserted into the inside of the fixing plate 4. A first nut 10 is threadedly connected to the outside of the fixing bolt 9. A limit square frame 11 is fixedly installed on the top of the fixing plate 4. An inner sliding column 12 is slidably connected to the inside of the limit square frame 11. A positioning bolt 13 is inserted into the inside of the inner sliding column 12. The positioning bolt 13 is slidably connected to the inside of the limit square frame 11. A second nut 14 is threadedly connected to the outside of the positioning bolt 13.
[0021] It should be noted that after the bottom plate 1 is fixedly installed on the top of the roof, the heat insulation plate 3 is placed on the top of the bottom plate 1, the limiting plate 2 limits the bottom plate 1, and the fixing plate 4 is fixed on the top of the heat insulation plate 3 through a plurality of fixing bolts 9 and first nuts 10, thus completing the fixation of the heat insulation plate 3. Heat insulation is achieved through the heat insulation plate 3. At the same time, the ceiling 8 increases the contact height with sunlight, separates the sunlight through the ceiling 8, and at the same time plays the role of blocking rain and snow. When it is necessary to adjust the height of the ceiling 8, by rotating the threaded rings 6 on both sides simultaneously, the stud 7 drives the ceiling 8 to perform corresponding lifting and lowering. At the same time, the inner sliding columns 12 at the four corners will slide up and down inside the limiting square frame 11. After the adjustment is completed, the second nuts 14 at the corresponding positions are tightened to further fix and limit the position of the ceiling 8, so as to achieve the purpose of arbitrarily adjusting the height of the ceiling 8 and meet the installation requirements of different areas.
[0022] Furthermore, as Figure 3 shown, a snow pushing plate 15 is slidably connected to the outside of the ceiling 8. A collar 16 is fixedly installed at the bottom of the snow pushing plate 15. The collar 16 is slidably connected inside the ceiling 8. A limiting square plate 17 is fixedly installed inside the ceiling 8. The collar 16 is slidably connected to the outside of the limiting square plate 17. A shaft rod 18 is fixedly installed inside the ceiling 8. A coil spring 19 is provided on the outside of the shaft rod 18. A winding roller 20 is rotatably connected inside the ceiling 8. The coil spring 19 is fixedly installed inside the winding roller 20. A connecting rope 21 is wound around the outside of the winding roller 20. The connecting rope 21 is fixedly installed inside the snow pushing plate 15. A pulling rope 22 is fixedly installed on one side of the snow pushing plate 15.
[0023] It should be noted that in a snowy environment, a large amount of snow blocks will accumulate on the top of the ceiling 8. To prevent the ceiling 8 from being crushed by the snow blocks, the pulling ropes 22 on both sides can be pulled to drive the snow pushing plate 15 to slide, so that the snow blocks accumulated on the top of the ceiling 8 are pushed off by the snow pushing plate 15. When the snow pushing plate 15 slides, the connecting rope 21 will be pulled to make the winding roller 20 rotate, so that the coil spring 19 is stretched. After the pulling ropes 22 are released, the coil spring 19 contracts to drive the winding roller 20 to wind up the connecting rope 21, thereby driving the snow pushing plate 15 to reset.
[0024] Finally, the following points should be noted: First, in the description of this application, it should be noted that unless otherwise specified and limited, the terms "installation", "connection", and "coupling" should be understood in a broad sense. It can be a mechanical connection or an electrical connection, or it can be the communication inside two components. It can be directly connected. "Up", "down", "left", "right", etc. are only used to represent relative position relationships. When the absolute position of the object being described changes, the relative position relationship may change;
[0025] Secondly: In the accompanying drawings of the disclosed embodiments of the present utility model, only the structures related to the disclosed embodiments are involved. For other structures, reference can be made to the general design. Without conflict, the same embodiment and different embodiments of the present utility model can be combined with each other;
[0026] Finally: The above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A building roof insulation structure, comprising a bottom plate (1), characterized in that: A limiting plate (2) is fixedly installed on the top of the base plate (1), a heat insulation plate (3) is provided on the top of the base plate (1), a fixing plate (4) is provided on the top of the heat insulation plate (3), a sleeve (5) is fixedly installed on the top of the fixing plate (4), a threaded ring (6) is rotatably connected to the top of the sleeve (5), a stud (7) is slidably connected to the inner side of the sleeve (5), the threaded ring (6) and the stud (7) are arranged in a threaded connection, a ceiling (8) is fixedly installed on the top of the stud (7), a fixing bolt (9) is slidably connected to the inside of the base plate (1), the fixing bolt (9) is inserted into the inside of the fixing plate (4), and a first nut (10) is threadedly connected to the outer side of the fixing bolt (9).
2. A building roof insulation structure according to claim 1, characterized in that: A limiting square frame (11) is fixedly mounted on the top of the fixed plate (4), and an inner sliding column (12) is slidably connected to the inner side of the limiting square frame (11).
3. A building roof insulation structure according to claim 2, characterized in that: A positioning bolt (13) is inserted into the interior of the inner sliding column (12), and the positioning bolt (13) is slidably connected to the interior of the limiting square frame (11). The outer side of the positioning bolt (13) is threadedly connected to a second nut (14).
4. A building roof insulation structure according to claim 3, characterized in that: A snow pusher (15) is slidably connected to the outer side of the roof (8), a collar (16) is fixedly installed at the bottom of the snow pusher (15), and the collar (16) is slidably connected to the inside of the roof (8).
5. A building roof insulation structure according to claim 4, characterized in that: A limiting square plate (17) is fixedly installed inside the ceiling (8), the collar (16) is slidably connected to the outside of the limiting square plate (17), and a shaft rod (18) is fixedly installed inside the ceiling (8).
6. A building roof insulation structure according to claim 5, characterized in that: A coil spring (19) is provided on the outer side of the shaft (18), and a winding roller (20) is rotatably connected inside the ceiling (8), and the coil spring (19) is fixedly installed on the inner side of the winding roller (20).
7. A building roof insulation structure according to claim 6, characterized in that: A connecting rope (21) is wound around the outer side of the winding roller (20), and the connecting rope (21) is fixedly mounted on the inner side of the snow pusher (15). A pull rope (22) is fixedly mounted on one side of the snow pusher (15).