Green building insulation board
By designing cross-corresponding fixed blocks and through holes on the building insulation board, and combining structures such as fixing rods, connecting plates and springs, the problem of low splicing efficiency of existing building insulation boards is solved, and rapid splicing and efficient installation are achieved.
Patent Information
- Application Number
- CN202421667974.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-07-15
AI Technical Summary
Existing building insulation boards are less efficient when splicing, resulting in less installation efficiency.
A green building insulation board is designed. By setting the first and second fixing blocks corresponding crosswise at the front and rear ends of the insulation board, and opening a through hole in the center, movable fixing rods and connecting plates, and combining the structures such as rectangular grooves, rectangular rods, springs and slots to achieve rapid splicing and fixing.
Through this structural design, the splicing efficiency of the adjacent two groups of insulation boards can be significantly improved, and the installation efficiency of the insulation board can be improved.
Smart Images

Figure CN222962268U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to general structures; not limited to walls, for example, partition walls, or any one of the structures of floors, ceilings or roofs, and particularly relates to a green building thermal insulation board. Background Art
[0002] When in use, most building thermal insulation boards are directly spliced and fixed to adjacent two groups of thermal insulation boards through a plurality of bolts. However, when splicing, it takes a long time to align the threaded holes on adjacent two groups of thermal insulation boards. At the same time, when installing a plurality of bolts, it takes a lot of time, resulting in a relatively low splicing efficiency of adjacent two groups of thermal insulation boards, thus easily affecting the installation efficiency of the thermal insulation board. For this reason, a building thermal insulation board made of a new type of green energy-saving material is needed to solve the above problems. Summary of the Utility Model
[0003] The purpose of the utility model is to solve the problems such as relatively low splicing efficiency of adjacent two groups of thermal insulation boards in the prior art, and thus a green building thermal insulation board is proposed.
[0004] To achieve the above purpose, the utility model adopts the following technical scheme: a green building thermal insulation board, including a thermal insulation board body. A front end plate is fixedly arranged at the front end of one side of the thermal insulation board body. A plurality of first fixing blocks are fixedly arranged on the inner end face of the front end plate, and the plurality of first fixing blocks are arranged at equal intervals. A rear end plate is fixedly arranged at the rear end of the other side of the thermal insulation board body. A plurality of second fixing blocks are fixedly arranged on the inner end face of the rear end plate, and the plurality of second fixing blocks are arranged at equal intervals. The plurality of second fixing blocks and the plurality of first fixing blocks are arranged in a cross-corresponding manner. Through holes are formed in the centers of the plurality of second fixing blocks and the plurality of first fixing blocks, and fixing rods are movably arranged in the through holes. A connecting plate is fixedly arranged at the top of the fixing rods.
[0005] Further, a rectangular groove is horizontally formed in the center of the connecting block. Rectangular rods are slidably arranged on both sides inside the rectangular groove, and the outer ends of the rectangular rods are located outside the connecting block. A groove is formed at the top of one side of the thermal insulation board body, and the connecting block is located in the groove.
[0006] Further, a spring is fixedly connected between the two rectangular rods, and the spring is located in the rectangular groove. Card slots are formed at both sides of the upper end of the thermal insulation board body, and the outer ends of the two rectangular rods are respectively adapted to the two card slots.
[0007] Further, a limiting groove is horizontally formed on the top end face of the connecting block, and the limiting groove is communicated with the rectangular groove. Fixing plates are vertically and fixedly arranged at the top ends of the inner ends of the two rectangular rods, and the two fixing plates both extend outside the connecting block through the limiting groove.
[0008] Furthermore, sliders are fixedly arranged on both sides of the inner end of the rectangular rod. Transverse sliding grooves are formed in the connecting block on both sides of the rectangular groove, sliding rods are fixedly arranged inside the two sliding grooves, and the two groups of sliders are respectively arranged to slide on the two sliding rods.
[0009] The beneficial effects of the present utility model are as follows: Through the cooperative arrangement of structures such as the front end plate, rear end plate, first fixing block, second fixing block, through hole, fixing rod, connecting block, rectangular rod, spring, card slot, and fixing plate, by arranging a number of first fixing blocks on the front end plate and a number of second fixing blocks on the rear end plate in a cross manner, it is convenient to quickly align the through holes on a number of first fixing blocks with the through holes on a number of second fixing blocks, so as to conveniently insert the fixing rod into the through holes on a number of first fixing blocks and a number of second fixing blocks. By pulling the two fixing plates closer to each other, it is convenient to drive the two rectangular rods to move closer to each other, and then the two rectangular rods compress the spring in the rectangular groove, so that the connecting block can conveniently enter the groove. Then, release the two fixing plates, and the two rectangular rods move away from each other under the elastic force of the spring, so that the outer ends of the two rectangular rods leave the connecting block and are snapped into the two card slots, thus conveniently and quickly splicing and fixing two adjacent groups of insulation boards. At the same time, it does not require a lot of time, and the splicing efficiency of two adjacent groups of insulation boards is relatively high, thereby improving the installation efficiency of the insulation boards. Description of the Drawings
[0010] Figure 1 It is a schematic diagram of the overall structure of the present utility model;
[0011] Figure 2 It is a schematic diagram of the main cross-sectional structure of the present utility model;
[0012] Figure 3 Of the present utility model Figure 2 The enlarged structural schematic diagram at A in;
[0013] Figure 4 It is a schematic diagram of the side cross-sectional structure of the present utility model;
[0014] Figure 5 Of the present utility model Figure 4 The enlarged structural schematic diagram at B in;
[0015] Figure 6 It is a schematic diagram of the structure of the insulation board body in the present utility model;
[0016] Figure 7 It is a schematic diagram of the structure of the fixing rod in the present utility model;
[0017] Figure 8 It is a schematic diagram of the structure of the rectangular rod in the present utility model.
[0018] In the figure: 1 is the main body of the thermal insulation board, 2 is the front end plate, 3 is the rear end plate, 4 is the first fixing block, 5 is the second fixing block, 6 is the through hole, 7 is the fixing rod, 8 is the connecting block, 9 is the groove, 10 is the rectangular groove, 11 is the rectangular rod, 12 is the spring, 13 is the clamping groove, 14 is the limiting groove, 15 is the fixing plate, 16 is the sliding groove, 17 is the sliding rod, 18 is the slider. Specific embodiments
[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.
[0020] Referring to Figures 1 to 8 , this embodiment provides a green building thermal insulation board, which includes a main body 1 of the thermal insulation board. A front end plate 2 is fixedly arranged at the front end of one side of the main body 1 of the thermal insulation board. A plurality of first fixing blocks 4 are fixedly arranged on the inner end surface of the front end plate 2, and the plurality of first fixing blocks 4 are arranged at equal intervals. A rear end plate 3 is fixedly arranged at the rear end of the other side of the main body 1 of the thermal insulation board. A plurality of second fixing blocks 5 are fixedly arranged on the inner end surface of the rear end plate 3, and the plurality of second fixing blocks 5 are arranged at equal intervals. The plurality of second fixing blocks 5 and the plurality of first fixing blocks 4 are arranged in a cross-corresponding manner. Through holes 6 are opened at the centers of the plurality of second fixing blocks 5 and the plurality of first fixing blocks 4, and a fixing rod 7 is movably arranged in the through hole 6. A connecting plate 8 is fixedly arranged at the top of the fixing rod 7; preferably, by providing the main body 1 of the thermal insulation board, it is convenient to take measures for the building's exterior envelope structure to reduce the heat dissipation from the indoor of the building to the outdoor, thereby maintaining the indoor temperature of the building. By providing the front end plate 2, it is convenient to fixedly arrange a plurality of first fixing blocks 4 on one side of the main body 1 of the thermal insulation board. By providing the rear end plate 3, it is convenient to fixedly arrange a plurality of second fixing blocks 5 on the other side of the main body 1 of the thermal insulation board. By providing a plurality of first fixing blocks 4 and a plurality of second fixing blocks 5, it is convenient to quickly align two adjacent main bodies 1 of the thermal insulation board, thus facilitating subsequent splicing. By providing the through holes 6, it is convenient to insert the fixing rods 7 into the plurality of first fixing blocks 4 and the plurality of second fixing blocks 5. By providing the fixing rods 7, it is convenient to connect and fix the plurality of first fixing blocks 4 and the plurality of second fixing blocks 5, thus facilitating the quick splicing of two adjacent main bodies 1 of the thermal insulation board. By providing the connecting plate 8, it is convenient to pick up the fixing rod 7 and prevent the fixing rod 7 from falling downward between two adjacent main bodies 1 of the thermal insulation board.
[0021] Further, a rectangular groove 10 is horizontally opened inside the center of the connecting block 8. On both sides inside the rectangular groove 10, rectangular rods 11 are slidably arranged. The outer ends of the rectangular rods 11 are located outside the connecting block 8. A groove 9 is opened at the top of one side of the insulation board body 1, and the connecting block 8 is located inside the groove 9. Preferably, the rectangular groove 10 is provided to facilitate the sliding arrangement of the rectangular rods 11 inside the connecting block 8. The rectangular rods 11 are provided to facilitate sliding inside the rectangular groove 10, thereby facilitating the sliding of the rectangular rods 11 inside and outside the connecting block 8. The groove 9 is provided to facilitate the arrangement of the connecting block 8 inside the insulation board body 1.
[0022] Further, a spring 12 is fixedly connected between the two rectangular rods 11, and the spring 12 is located inside the rectangular groove 10. Card slots 13 are opened on both sides of the upper end of the insulation board body 1. The outer ends of the two rectangular rods 11 are respectively adapted to the two card slots 13. Preferably, the two rectangular rods 11 slide closer to or away from each other inside the rectangular groove 10, thereby facilitating the compression or stretching of the spring 12 inside the rectangular groove 10, so as to facilitate the mutual approach or separation movement of the two rectangular rods 11 inside the connecting block 8. The card slots 13 are provided to facilitate the outer ends of the rectangular rods 11 to move out of the connecting block 8 and be inserted into the insulation board body 1, thereby facilitating the fixing of the connecting block 8 inside the insulation board body 1, and further facilitating the fixing of the fixing rod 7 between two adjacent insulation board bodies 1.
[0023] Further, a limiting groove 14 is horizontally opened on the top end face of the connecting block 8, and the limiting groove 14 is communicated with the rectangular groove 10. Vertically fixed on the top of the inner ends of the two rectangular rods 11 are fixing plates 15, and the two fixing plates 15 both extend outside the connecting block 8 through the limiting groove 14. Preferably, the limiting groove 14 is provided to facilitate the extension of the fixing plates 15 outside the connecting block 8, thereby facilitating the pulling of the two fixing plates 15 to move inside the groove 9. By pulling the two fixing plates 15 to move inside the limiting groove 14, it is convenient to drive the two rectangular rods 11 to move inside the rectangular groove 10.
[0024] Further, on both sides of the inner end of the rectangular rod 11, sliding blocks 18 are fixedly arranged. Inside the connecting block 8, sliding grooves 16 are horizontally opened on both sides of the rectangular groove 10. Inside the two sliding grooves 16, sliding rods 17 are fixedly arranged, and the two groups of sliding blocks 18 are respectively slidably arranged on the two sliding rods 17. Preferably, by the movement of the rectangular rod 11 inside the rectangular groove 10, it is convenient to drive the two sliding blocks 18 to move on the two sliding rods 17, thereby facilitating the driving of the two sliding blocks 18 to move inside the two sliding grooves 16, thus enhancing the stability of the movement of the rectangular rod 11 inside the rectangular groove 10, and further preventing the rectangular rod 11 from moving out of the rectangular groove 10.
[0025] In the present utility model, during use, by bringing two adjacent insulation board bodies 1 close to each other, the front end plate 2 and the rear end plate 3 respectively come into contact with the other side of the insulation board body 1, so that a number of first fixing blocks 4 on the front end plate 2 and a number of second fixing blocks 5 on the rear end plate 3 are arranged in a crosswise manner, thereby making the through holes on a number of first fixing blocks 4 correspond to the through holes 6 on a number of second fixing blocks 5, and then facilitating the rapid insertion of the fixing rod 7 into the through holes 6 on a number of first fixing blocks 4 and a number of second fixing blocks 5, thus facilitating the fixing of a number of first fixing blocks 4 and a number of second fixing blocks 5 together. Then, by pulling the two fixing plates 15 to move closer to each other within the limiting groove 14, the two rectangular rods 11 are driven to move closer to each other within the rectangular groove 10, so that the two rectangular rods 11 compress the spring 12 within the rectangular groove 10, causing the two rectangular rods 11 to move into the connecting block 8. Then, the connecting block 8 is placed at the bottom of the groove 9, and the two fixing plates 15 are released, causing the two rectangular rods 11 to move away from each other within the rectangular groove 10 under the rebounding force of the spring 12, so that the outer ends of the two rectangular rods 11 leave the connecting block 8 and snap into the two clamping grooves 13, thereby fixing the connecting block 8 within the groove 9, and further fixing the fixing rod 7 within the through holes on a number of first fixing blocks 4 and a number of second fixing blocks 5, thus facilitating the rapid splicing and fixing of two adjacent groups of insulation board bodies 1.
[0026] The above is only the preferred specific implementation manner of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present utility model.
Claims
1. A green building insulation board, comprising an insulation board body (1), characterized in that: A front end plate (2) is fixedly arranged at the front end of one side of the insulation board body (1), a plurality of first fixing blocks (4) are fixedly arranged on the inner end surface of the front end plate (2), and the plurality of first fixing blocks (4) are arranged at equal intervals, a rear end plate (3) is fixedly arranged at the rear end of the other side of the insulation board body (1), a plurality of second fixing blocks (5) are fixedly arranged on the inner end surface of the rear end plate (3), and the plurality of second fixing blocks (5) are arranged at equal intervals, the plurality of second fixing blocks (5) are arranged crosswise and correspondingly with the plurality of first fixing blocks (4), a through hole (6) is opened at the center of the plurality of second fixing blocks (5) and the plurality of first fixing blocks (4), a fixing rod (7) is movably arranged in the through hole (6), and a connecting block (8) is fixedly arranged at the top of the fixing rod (7).
2. The green building insulation board according to claim 1, characterized in that: A rectangular groove (10) is transversely provided in the center of the connecting block (8), rectangular rods (11) are slidably provided on both sides of the rectangular groove (10), and the outer ends of the rectangular rods (11) are located outside the connecting block (8), and a groove (9) is provided at the top of one side of the insulation board body (1), and the connecting block (8) is located in the groove (9).
3. The green building insulation board according to claim 2, characterized in that: A spring (12) is fixedly connected between the two rectangular rods (11), and the spring (12) is located in the rectangular groove (10). Slots (13) are provided on both sides of the upper end of the insulation board body (1), and the outer ends of the two rectangular rods (11) are respectively matched with the two slots (13).
4. The green building insulation board according to claim 3, characterized in that: A limit groove (14) is transversely formed on the top end surface of the connection block (8), and the limit groove (14) is connected to the rectangular groove (10). A fixing plate (15) is vertically fixed to the top of the inner ends of the two rectangular rods (11), and the two fixing plates (15) pass through the limit groove (14) and extend to the outside of the connection block (8).
5. The green building insulation board according to claim 4, characterized in that: Slide blocks (18) are fixedly arranged on both sides of the inner ends of the two rectangular rods (11), slide grooves (16) are transversely opened in the connecting block (8) on both sides of the rectangular groove (10), and slide bars (17) are fixedly arranged inside the two slide grooves (16), and two groups of slide blocks (18) are slidably arranged on the two slide bars (17) respectively.