Spliced building structure insulation board

By introducing reinforced corner columns and movable reinforced rod fixing rods into the building insulation board, the problem of lack of fixed connections and insufficient strength between the insulation boards is solved, and the stability and thermal insulation effect are improved.

CN116335300BActive Publication Date: 2025-08-05JIANGSU LIANHE DECORATION DESIGN CO LTD
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Patent Information

Application Number
CN202310528275.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-11
Publication Date
2025-08-05
Estimated Expiration
2043-05-11

AI Technical Summary

Technical Problem

The lack of fixed connection between existing building insulation boards leads to poor stability and insufficient strength of some boards, which are prone to deformation and damage due to external factors.

Method used

A spliced building structure insulation board is designed. By providing reinforcement corner columns between the first outer guard plate and the second outer guard plate, and horizontal and longitudinal reinforcement rods and fixing rods are arranged in the thermal insulation core, the movable structure of the reinforcement rods and the fixing rods is connected to form a hollow structure to improve stability and heat insulation effect.

Benefits of technology

It enhances the force strength and overall state stability of the insulation board, avoids damage caused by external factors, and improves the thermal insulation effect and use safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a spliced building structure insulation board, comprising a first outer guard plate and a second outer guard plate, a reinforcing corner column is provided between the first outer guard plate and the second outer guard plate, the inner side surface of the first outer guard plate is connected to a first inner lining plate, the inner side surface of the second outer guard plate is connected to a second inner lining plate, the inner sides of the first inner lining plate and the second inner lining plate are fixedly connected to a heat insulation core, the heat insulation core is provided with transverse through holes and longitudinal through holes, the heat insulation core is provided with a transverse reinforcing rod connecting groove, and the interior of the transverse reinforcing rod connecting groove is connected with a transverse reinforcing rod, and the heat insulation core is provided with a transverse fixing rod connecting groove. In the spliced building structure insulation board, the reinforcing rod and the fixing rod are arranged into a movable structure, so that the adjacent building structure insulation boards can be connected by moving the positions of the reinforcing rod and the fixing rod, so that the building structure insulation board can form a whole on the wall surface, ensuring the stability of its working state.
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Description

Technical Field

[0001] The invention relates to the technical field of building insulation boards, in particular to a spliced building structure insulation board. Background Art

[0002] Insulation panels, as the name suggests, are panels used for insulation. They are commonly used during construction. By taking measures on the building's exterior envelope, they reduce the amount of heat dissipated from the building's interior to the outdoors, thereby maintaining the building's indoor temperature. Building insulation materials play a crucial role in creating a suitable indoor thermal environment and conserving energy.

[0003] In existing residential buildings, the structural form of internal partition walls is no longer the previous red brick masonry, but is replaced by lightweight blocks and lightweight partition boards. Due to the requirements of energy saving and thermal insulation, the exterior walls are still built with aerated concrete blocks, hollow concrete blocks, hollow clay bricks, fly ash bricks and other blocks, and insulation boards are installed on the outside for thermal insulation.

[0004] Although there are building structure insulation boards made of various materials on the market, some boards still have certain problems during actual use. For example, most boards are used as a single combination and fixed on the wall, but some insulation boards do not have a fixed connection with each other, but are simply fixed to the wall. This cannot ensure the stability of the insulation boards during subsequent use, which in turn affects the normal operation of the insulation boards. Some insulation boards are not strong enough and are easily deformed on the wall due to external factors, resulting in damage to the boards. Therefore, we proposed a spliced building structure insulation board to solve the above problems. Summary of the Invention

[0005] The purpose of the present invention is to provide a spliced building structure insulation board to solve the problems raised in the above background technology that some insulation boards on the market are not fixedly connected to each other and some insulation boards are not strong enough.

[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a spliced building structure insulation board, comprising a first outer guard plate and a second outer guard plate, a reinforcing corner column is arranged between the first outer guard plate and the second outer guard plate, the inner side surface of the first outer guard plate is connected to the first inner lining plate, the inner side surface of the second outer guard plate is connected to the second inner lining plate, the inner sides of the first inner lining plate and the second inner lining plate are fixedly connected to an insulation core, the insulation core is provided with transverse through holes and longitudinal through holes in the vertical and horizontal directions, the insulation core is provided with a transverse reinforcement rod connecting groove, and the interior of the transverse reinforcement rod connecting groove is penetrated by the transverse reinforcement rod, the insulation core is provided with a transverse fixing rod connecting groove, and the interior of the transverse fixing rod connecting groove is penetrated by the transverse fixing rod, the insulation core is provided with a longitudinal reinforcement rod connecting groove, and the interior of the longitudinal reinforcement rod connecting groove is penetrated by the longitudinal reinforcement rod, the insulation core is provided with a longitudinal fixing rod connecting groove, and the interior of the longitudinal fixing rod connecting groove is penetrated by the longitudinal fixing rod.

[0007] Preferably, the first outer guard plate, the second outer guard plate and the reinforced corner columns are an integrated structure, and the reinforced corner columns are located at the four corners of the first outer guard plate and the second outer guard plate, and the outer edges of the reinforced corner columns are flush with the outer edges of the first outer guard plate and the second outer guard plate.

[0008] Preferably, the first outer guard plate, the second outer guard plate, the first inner lining plate, the second inner lining plate and the thermal insulation core are adhesively connected to each other to form a square structure.

[0009] Preferably, the transverse through holes and longitudinal through holes, transverse reinforcing rod connecting grooves, transverse fixing rod connecting grooves, longitudinal reinforcing rod connecting grooves, and longitudinal fixing rod connecting grooves are staggered vertically and evenly spaced through the insulation core, so that the insulation core forms a hollow structure.

[0010] Preferably, the positions between the transverse reinforcing rods and the transverse fixing rods, and the positions between the longitudinal reinforcing rods and the longitudinal fixing rods are all staggered with equal intervals, and the lengths of the transverse reinforcing rods, the transverse fixing rods, the longitudinal reinforcing rods and the longitudinal fixing rods are equal, and are also equal to the length and width of the insulation core.

[0011] Preferably, the transverse reinforcing rod is in the transverse reinforcing rod connecting groove, the transverse fixing rod is in the transverse fixing rod connecting groove, the longitudinal reinforcing rod is in the longitudinal reinforcing rod connecting groove, and the longitudinal fixing rod is in the longitudinal fixing rod connecting groove, all of which are movable structures.

[0012] Preferably, the transverse reinforcement rod and the longitudinal reinforcement rod have an outer shape of a quadrangular prism with the same size, and both ends of the transverse reinforcement rod and the longitudinal reinforcement rod are stepped structures.

[0013] Preferably, both ends of the transverse fixing rod and the longitudinal fixing rod are integrally provided with connecting lock buckles, the outer shape of the connecting lock buckles is L-shaped, and the connecting lock buckles can rotate and engage with each other.

[0014] Preferably, the thermal insulation core is made of one of rigid polyurethane foam board, expanded polystyrene board, extruded polystyrene board, phenolic board and cement foam insulation board.

[0015] Compared with the prior art, the beneficial effects of the present invention are: the spliced building structure insulation board;

[0016] (1) A first outer guard plate and a second outer guard plate are provided on the outside of the heat insulation core, which can improve the stress strength of the outer surface of the heat insulation board and avoid damage to the outer surface of the heat insulation board due to external factors. In addition, a reinforcing corner column is provided between the first outer guard plate and the second outer guard plate, which can not only protect the corners of the board but also ensure the stability of the overall state of the heat insulation board, thereby improving the safety of the use and working state of the heat insulation board;

[0017] (2) Reinforcement rods and fixing rods are arranged in the vertical and horizontal directions inside the insulation core, which can strengthen the stress strength of the insulation core and effectively prevent the insulation core from being damaged by deformation due to external factors. At the same time, the reinforcement rods and fixing rods are arranged into a movable structure. In this way, the adjacent building structure insulation boards can be connected by the position movement of the reinforcement rods and the fixing rods, so that the building structure insulation boards can form a whole on the wall surface, ensuring the stability of their working state;

[0018] (3) The thermal insulation core is provided with through holes and connecting grooves, so that the thermal insulation core can form a hollow structure, which can effectively improve the thermal insulation effect of the thermal insulation core. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the overall structure of the spliced building structure insulation board of the present invention;

[0020] Figure 2 This is a schematic diagram of the overall structure of the spliced building structure insulation board of the present invention;

[0021] Figure 3 This is a schematic diagram of the combined structure of the spliced building structure insulation board of the present invention;

[0022] Figure 4 This is a schematic diagram of the cross-sectional structure of the spliced building structure insulation board assembly of the present invention;

[0023] Figure 5 This is a schematic diagram of the overall cross-sectional structure of the spliced building structure insulation board of the present invention;

[0024] Figure 6 This is a schematic diagram of the cross-sectional structure of the thermal insulation core of the spliced building structure of the present invention;

[0025] Figure 7This is a schematic diagram of the outer protective plate structure of the spliced building structure insulation board of the present invention;

[0026] Figure 8 This is a schematic diagram of the heat insulation core structure of the spliced building structure insulation board of the present invention;

[0027] Figure 9 This is a schematic diagram of the locking structure of the spliced building structure insulation board according to the present invention;

[0028] Figure 10 It is a schematic diagram of the lock connection structure of the spliced building structure insulation board of the present invention.

[0029] In the figure: 1. First outer guard plate; 2. Second outer guard plate; 3. Reinforced corner column; 4. First inner lining plate; 5. Second inner lining plate; 6. Insulation core; 7. Transverse through hole; 8. Longitudinal through hole; 9. Transverse reinforcing rod connecting groove; 10. Transverse reinforcing rod; 11. Transverse fixing rod connecting groove; 12. Transverse fixing rod; 13. Longitudinal reinforcing rod connecting groove; 14. Longitudinal reinforcing rod; 15. Longitudinal fixing rod connecting groove; 16. Longitudinal fixing rod; 17. Connecting lock. DETAILED DESCRIPTION

[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0031] See also Figure 1-10 The present invention provides a technical solution: a spliced building structure insulation board, comprising a first outer guard plate 1 and a second outer guard plate 2, a reinforcing corner column 3 is arranged between the first outer guard plate 1 and the second outer guard plate 2, the inner side of the first outer guard plate 1 is connected to the first inner lining plate 4, the inner side of the second outer guard plate 2 is connected to the second inner lining plate 5, the inner sides of the first inner lining plate 4 and the second inner lining plate 5 are fixedly connected to the heat insulation core 6, the heat insulation core 6 is provided with transverse through holes 7 and longitudinal through holes 8, and the heat insulation core 6 is provided with transverse reinforcing rods for connecting Groove 9, and the interior of the transverse reinforcement rod connecting groove 9 is penetrated by a transverse reinforcement rod 10, a transverse fixing rod connecting groove 11 is provided on the insulation core 6, and the interior of the transverse fixing rod connecting groove 11 is penetrated by a transverse fixing rod 12, a longitudinal reinforcement rod connecting groove 13 is provided on the insulation core 6, and the interior of the longitudinal reinforcement rod connecting groove 13 is penetrated by a longitudinal reinforcement rod 14, a longitudinal fixing rod connecting groove 15 is provided on the insulation core 6, and the interior of the longitudinal fixing rod connecting groove 15 is penetrated by a longitudinal fixing rod 16.

[0032] The first outer guard plate 1, the second outer guard plate 2, and the reinforced corner columns 3 are an integrated structure, which can ensure the stable working state of the first outer guard plate 1 and the second outer guard plate 2, and the reinforced corner columns 3 are located at the four corners of the first outer guard plate 1 and the second outer guard plate 2, which can protect the four corners of the insulation board to avoid damage to the insulation board, and the outer edges of the reinforced corner columns 3 are flush with the outer edges of the first outer guard plate 1 and the second outer guard plate 2, which can ensure that the insulation board can be seamlessly connected with others in subsequent use.

[0033] The first outer protective plate 1, the second outer protective plate 2, the first inner lining plate 4, the second inner lining plate 5, and the insulation core 6 are adhesively connected to each other and form a square structure, which ensures the stability of the overall state of the insulation board. At the same time, the design of the square structure can also enable the insulation boards to be connected regardless of direction, thereby improving the use efficiency of the insulation board.

[0034] The transverse through holes 7 and the longitudinal through holes 8, the transverse reinforcing rod connecting grooves 9, the transverse fixing rod connecting grooves 11, the longitudinal reinforcing rod connecting grooves 13, and the longitudinal fixing rod connecting grooves 15 are staggered up and down at equal intervals and penetrate the insulation core 6, so that the insulation core 6 forms a hollow structure, which can effectively improve the thermal insulation effect of the insulation core 6.

[0035] The positions between the transverse reinforcing rods 10 and the transverse fixing rods 12, and the positions between the longitudinal reinforcing rods 14 and the longitudinal fixing rods 16 are all arranged at equal intervals and staggered with each other, which can ensure the uniformity of the force on the reinforcing rods and the fixing rods, and the lengths of the transverse reinforcing rods 10, the transverse fixing rods 12, the longitudinal reinforcing rods 14 and the longitudinal fixing rods 16 are equal, and are also equal to the length and width of the insulation core 6, which can ensure that the reinforcing rods and the fixing rods can be completely hidden in the insulation core 6 to avoid the adverse effects of the reinforcing rods and the fixing rods.

[0036] The transverse reinforcing rod 10 is in the transverse reinforcing rod connecting groove 9, the transverse fixing rod 12 is in the transverse fixing rod connecting groove 11, the longitudinal reinforcing rod 14 is in the longitudinal reinforcing rod connecting groove 13, and the longitudinal fixing rod 16 is in the longitudinal fixing rod connecting groove 15. They are all movable structures, which facilitates the position adjustment of the reinforcing rod and the fixing rod on the insulation core 6. This can facilitate the stable and efficient connection between the insulation boards, thereby improving the utilization efficiency of the insulation boards.

[0037] The transverse reinforcement rod 10 and the longitudinal reinforcement rod 14 have the shape of a quadrangular prism of the same size, which can ensure the stability of the reinforcement rod in the insulation core 6, and both ends of the transverse reinforcement rod 10 and the longitudinal reinforcement rod 14 are stepped structures, which facilitates the connection of the reinforcement rod to the reinforcement rod connecting groove.

[0038] Both ends of the transverse fixing rod 12 and the longitudinal fixing rod 16 are integrated with connecting locks 17. The connecting locks 17 are L-shaped, and the connecting locks 17 can rotate and engage with each other, which can ensure that the connection state between the fixing rods on different insulation cores 6 is stable, so that the connection state between the insulation boards can be locked.

[0039] The insulation core 6 adopts one of rigid polyurethane foam board, expanded polystyrene board, extruded polystyrene board, phenolic board, and cement foam insulation board; the first outer guard plate 1 and the second outer guard plate 2 adopt one of cement pressure plate, calcium silicate board, PVC plastic board, and metal panel; the first inner lining plate 4 and the second inner lining plate 5 adopt rock wool material.

[0040] In the present embodiment, during transportation, the transverse reinforcing rod 10 can be completely retracted into the transverse reinforcing rod connecting groove 9, the transverse fixing rod 12 can be completely retracted into the transverse fixing rod connecting groove 11, the longitudinal reinforcing rod 14 can be completely retracted into the longitudinal reinforcing rod connecting groove 13, and the longitudinal fixing rod 16 can be completely retracted into the longitudinal fixing rod connecting groove 15. In this way, the thermal insulation core 6, the first inner lining board 4, the second inner lining board 5, and the first outer guard board 1, the second outer guard board 2 can form a square plate as a whole, which can facilitate the stacking of the thermal insulation board and thus facilitate its transportation.

[0041] During the use of the insulation board, since the overall planar structure of both sides is the same, there is no difference between the front and back sides. As long as the reinforcing rod connection grooves or the fixing rod connection grooves on the insulation core 6 are properly aligned and connected, the insulation board can be fixed to the wall of the building structure. The specific fixing method can be operated according to the actual situation.

[0042] After the insulation board is fixed, the transverse reinforcing rod connecting groove 9, the transverse fixing rod connecting groove 11, the longitudinal reinforcing rod connecting groove 13, and the longitudinal fixing rod connecting groove 15 on the adjacent insulation cores 6 are all positioned relative to each other, so that the reinforcing rods and the fixing rods inside each connecting groove can be moved so that the reinforcing rods and the fixing rods can be inserted into the adjacent insulation cores 6, so that the adjacent insulation boards can be fixed. At the same time, when the fixing rods are docked, the fixing rods can be rotated, and the connecting lock buckles 17 on the fixing rods will be stuck with each other, so that the fixing rods on different insulation cores 6 form a whole, further strengthening the connection between the insulation boards. In this way, the insulation boards can be spliced into a main body.

[0043] The above completes the use process of the insulation board, and the contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field.

[0044] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A spliced building structure insulation board, comprising a first outer protective board (1) and a second outer protective board (2), characterized in that: A reinforcing corner column (3) is provided between the first outer guard plate (1) and the second outer guard plate (2); the inner side surface of the first outer guard plate (1) is connected to the first inner lining plate (4); the inner side surface of the second outer guard plate (2) is connected to the second inner lining plate (5); the inner sides of the first inner lining plate (4) and the second inner lining plate (5) are fixedly connected to a heat insulation core (6); the heat insulation core (6) is provided with transverse through holes (7) and longitudinal through holes (8) in the vertical and horizontal directions; the heat insulation core (6) is provided with a transverse reinforcing rod connecting groove (9), and the transverse reinforcing rod connecting groove (9) is fixed to the inner side surface of the first inner lining plate (4) and the second inner lining plate (5); A transverse reinforcing rod (10) is connected through the inside, a transverse fixing rod connecting groove (11) is provided on the heat insulation core (6), and a transverse fixing rod (12) is connected through the inside of the transverse fixing rod connecting groove (11), a longitudinal reinforcing rod connecting groove (13) is provided on the heat insulation core (6), and a longitudinal reinforcing rod (14) is connected through the inside of the longitudinal reinforcing rod connecting groove (13), and a longitudinal fixing rod (16) is connected through the inside of the longitudinal fixing rod connecting groove (15); The transverse through holes (7), the longitudinal through holes (8), the transverse reinforcing rod connecting grooves (9), the transverse fixing rod connecting grooves (11), the longitudinal reinforcing rod connecting grooves (13), and the longitudinal fixing rod connecting grooves (15) are staggered vertically and equidistantly through the heat insulation core (6), so that the heat insulation core (6) forms a hollow structure; The positions between the transverse reinforcing rods (10) and the transverse fixing rods (12), and the positions between the longitudinal reinforcing rods (14) and the longitudinal fixing rods (16) are all staggered and arranged at equal intervals, and the transverse reinforcing rods (10), the transverse fixing rods (12), the longitudinal reinforcing rods (14) and the longitudinal fixing rods (16) are equal in length and are also equal in length and width to the heat insulation core (6); The transverse reinforcing rod (10) is in the transverse reinforcing rod connecting groove (9), the transverse fixing rod (12) is in the transverse fixing rod connecting groove (11), the longitudinal reinforcing rod (14) is in the longitudinal reinforcing rod connecting groove (13), and the longitudinal fixing rod (16) is in the longitudinal fixing rod connecting groove (15), all of which are movable structures; The transverse reinforcing rod (10) and the longitudinal reinforcing rod (14) have an outer shape of a quadrangular prism with the same size, and both ends of the transverse reinforcing rod (10) and the longitudinal reinforcing rod (14) are stepped structures; Both ends of the transverse fixing rod (12) and the longitudinal fixing rod (16) are integrally provided with connecting lock buckles (17), the outer shape of the connecting lock buckle (17) is L-shaped, and the connecting lock buckles (17) can rotate and engage with each other.

2. The spliced building structure insulation board according to claim 1, characterized in that: The first outer guard plate (1), the second outer guard plate (2), and the reinforced corner columns (3) are an integrated structure, and the reinforced corner columns (3) are located at the four corners of the first outer guard plate (1) and the second outer guard plate (2), and the outer sides of the reinforced corner columns (3) are flush with the outer sides of the first outer guard plate (1) and the second outer guard plate (2).

3. The spliced building structure insulation board according to claim 1, characterized in that: The first outer protective plate (1), the second outer protective plate (2), the first inner lining plate (4), the second inner lining plate (5), and the heat insulation core (6) are connected to each other by adhesive bonding and form a square structure.

4. The spliced building structure insulation board according to claim 1, characterized in that: The heat insulation core (6) is made of one of a rigid polyurethane foam board, an expanded polystyrene board, an extruded polystyrene board, a phenolic board, and a cement foam insulation board.

Citation Information

Patent Citations

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