Composite fiber reinforced structure of energy-saving insulation board

By incorporating reinforcing grooves and threaded tension rods into the insulation board, the problem of loose connections was solved, enhancing the connection strength and impact resistance of the insulation board.

CN223805716UActive Publication Date: 2026-01-16JIANGSU JIANYUAN OUYE TECH CO LTD
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Patent Information

Application Number
CN202423059356.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2026-01-16
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing composite fiber reinforced insulation boards are prone to loosening and falling off after splicing, resulting in weak connections.

Method used

By employing a combination of reinforced grooves, threaded tension rods, and tension sleeves, and through the coordinated use of tensioning blocks and slots, a stable connection to the insulation board is achieved, reducing connection gaps and enhancing connection strength.

Benefits of technology

This effectively reduces the loosening and detachment of insulation board joints, and improves the impact resistance and overall stability of the insulation board.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223805716U_ABST
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Abstract

The utility model discloses a composite fiber reinforcement structure of an energy-saving insulation board, which comprises an insulation board A, one end of the insulation board A is combined and connected with an insulation board B, two ends of the insulation board A and the insulation board B are respectively provided with a strip-shaped combination block and a strip-shaped combination groove, and two sides of the upper end and the lower end of the insulation board A and the insulation board B are provided with reinforcement pull grooves. The thermal insulation board A and the thermal insulation board B are combined and connected through the strip-shaped combination blocks and the strip-shaped combination grooves, and due to the fact that gaps at the connecting positions are large and loose, tensioning reinforcing pieces are inserted into the reinforcing pull grooves in the thermal insulation board A and the thermal insulation board B; the tensioning insertion block is pulled to contract inwards through rotation of the tensioning sleeve piece to tension and reinforce the connecting position of the heat preservation plate A and the heat preservation plate B, so that a gap at the connecting position of the heat preservation plate A and the heat preservation plate B can be gradually reduced and jacked, and the connecting position can be effectively tensioned and fixed after the heat preservation plate A and the heat preservation plate B are combined; and the firmness of connection between the insulation board A and the insulation board B is further enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of insulation board, concretely relates to a composite fiber reinforced structure of energy-saving insulation board. BACKGROUND

[0002] Composite insulation board is an important factor affecting building energy saving, and the development and application of building insulation materials are attracting more and more attention from countries around the world. Since the 1970s, foreign countries have generally paid attention to the production and application of insulation materials in buildings, striving to significantly reduce energy consumption, thereby reducing environmental pollution and greenhouse effect. The foreign insulation material industry has a long history, and insulation materials for building energy saving account for the majority, while new insulation materials are constantly emerging: organic insulation materials or composite organic insulation materials. Organic insulation materials have poor fire resistance, and even if double-sided composite inorganic materials are used, it is difficult to achieve A-level fireproofing requirements, and the fire resistance of the insulation material itself cannot be changed, which poses a safety hazard. However, the existing composite insulation boards have the following shortcomings, such as insufficient thermal insulation performance, harmful deformation and damage caused by repeated effects of wind load and outdoor climate over a long period of time, insufficient impact resistance, and fixed installation during installation, which is time-consuming and labor-intensive and complicated to operate.

[0003] Therefore, the fiber-reinforced composite insulation board with publication number "CN216130365U" includes an insulation board body, characterized in that the top end of the insulation board body is fixedly connected with a clamping block, the bottom end of the insulation board body is provided with a clamping groove, the left end of the insulation board body is fixedly connected with a dovetail block, the right end of the insulation board body is provided with a dovetail groove, the insulation board body is composed of multiple layers of boards, and the inner core is a base board. The dovetail groove and the dovetail block enable the insulation board body to be horizontally spliced, the clamping block and the clamping groove enable the insulation board body to be vertically spliced, the operation is simple, the fixed connection is complicated, the thermal insulation performance of the insulation board body is significantly improved by the thermal insulation layer, the insulation board body does not deform or damage under the repeated effects of wind load and outdoor climate over a long period of time by the weather-resistant layer, and the impact resistance of the insulation board body is better by the impact-resistant layer.

[0004] However, for the above-mentioned fiber-reinforced composite insulation board, although the dovetail groove and the dovetail block enable the insulation board body to be horizontally spliced, the clamping block and the clamping groove enable the insulation board body to be vertically spliced, and the clamping connection enables the insulation board to be quickly spliced, the following relatively obvious defects still exist during use: however, after the combination of the dovetail groove and the dovetail block, a large combination gap is generated between the insulation boards, which easily causes the insulation boards to loosen and fall off during later use, thereby causing the insulation board connection to shake and be unstable. UTILITY MODEL CONTENTS

[0005] The utility model discloses a kind of composite fiber reinforced structures of energy-saving insulation board, to solve the problems presented in the above background art.

[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of composite fiber reinforced structures of energy-saving insulation board, comprising:

[0007] The insulation board A, the insulation board B is combined and connected at one end of the insulation board A, and the two ends of the insulation board A and the insulation board B are respectively provided with a strip-shaped combination block and a strip-shaped combination groove for combining and connecting the insulation boards.

[0008] The reinforcing pull plate is provided with a threaded tension rod movably penetrating to the outside of the two sides of the reinforcing pull plate in the groove on the upper surface of the reinforcing pull plate, and the threaded tension rod is provided with a tension sleeve piece with an external hexagonal surface at one end thereof corresponding to the threaded tension rod for tensioning the threaded tension rod.

[0009] Preferably, the reinforcing pull groove is provided with a tensioning groove on one side of the reinforcing pull groove for inserting the tensioning insert block to tension and fix the connection between the insulation boards.

[0010] Preferably, the reinforcing pull plate is provided with a strip-shaped groove at the end thereof, and the threaded tension rod penetrates from the inside of the strip-shaped groove to the outside and is fixedly connected to one side of the tensioning insert block, so as to tension and reinforce the connection between the combined insulation boards and ensure the stability of the combined insulation boards.

[0011] Preferably, the insulation board A and the insulation board B are combined and connected by the strip-shaped combination block and the strip-shaped combination groove, so as to facilitate the tensioning and reinforcing of the combined insulation boards.

[0012] Preferably, the insulation board A and the insulation board B each include two reinforcing layer plates, and a base layer plate is arranged between the inner sides of the two reinforcing layer plates.

[0013] Preferably, the two reinforcing layer plates are uniformly provided with reinforcing insertion columns on one side corresponding to the inner sides thereof, and the reinforcing insertion columns are inserted into one side of the weather-resistant layer plate and the impact-resistant fiber plate to be fixed, so that the insulation board has the effect of resisting impact under the action of impact force.

[0014] Compared with the prior art, the technical effects and advantages of the energy-saving insulation board are that: the composite fiber reinforced structure of the energy-saving insulation board is combined and connected by the strip-shaped combination blocks and the strip-shaped combination grooves, the gap at the connection part of the insulation board A and the insulation board B is gradually reduced and tightly pressed by inserting the tightening reinforcing part into the reinforcing pull groove on the insulation board A and the insulation board B, the connection part of the insulation board A and the insulation board B is effectively tightened and fixed after the combination of the insulation board A and the insulation board B, the firmness of the connection between the insulation board A and the insulation board B is further strengthened, and the phenomenon of loose and loose screwing leading to unfirm and shaking does not occur.

[0015] The two reinforcing layer plates arranged in the insulation board A and the insulation board B and the reinforcing insertion columns arranged on one side of the reinforcing layer plates are fixedly inserted into the weather-resistant layer plate and the impact-resistant fiber plate, so that the protection effect of the internal combination layer of the insulation board A and the insulation board B is strengthened during use, the reinforcing layer plates will not fall off in the case of side impact, the firmness of the outer layer plate of the insulation board is further strengthened, and the problem of internal structure layer delamination caused by impact is avoided, so that the impact resistance of the whole insulation board is enhanced. BRIEF DESCRIPTION OF DRAWINGS

[0016] Fig. 1 It is a structural schematic view of the utility model;

[0017] Fig. 2 It is a top view schematic view of the insulation board of the utility model;

[0018] Fig. 3 It is a side view schematic view of the insulation board of the utility model.

[0019] In the drawing: 1, insulation board A; 2, insulation board B; 3, strip-shaped combination block; 4, strip-shaped combination groove; 5, reinforcing pull groove; 6, reinforcing pull plate; 7, threaded tightening rod; 8, tightening sleeve part; 9, tightening plug; 10, tightening groove; 11, strip-shaped groove; 12, reinforcing layer plate; 13, base plate; 14, insulation layer plate; 15, moisture barrier plate; 16, weather-resistant layer plate; 17, impact-resistant fiber plate; 18, reinforcing insertion column. DETAILED DESCRIPTION

[0020] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0021] Please refer to Figs. 1-3 The present application provides a technical scheme: a composite fiber reinforced structure of an energy-saving insulation board, comprising:

[0022] The insulation board A1 is combined and connected with the insulation board B2 at one end, so that the insulation boards are combined and connected in sequence by the combined mode to the length and height used, and the two ends of the insulation board A1 and the insulation board B2 are respectively provided with a strip-shaped combination block 3 and a strip-shaped combination groove 4 for combining and connecting the insulation boards, which facilitates quick combination and extension of the insulation board A1 and the insulation board B2 and construction, and can increase the speed of the insulation board construction.

[0023] The reinforcing pull plate 6 is provided with a threaded tension rod 7 movably penetrating to the outside of the two sides of the reinforcing pull plate 6 in the groove on the upper end surface, the threaded tension rod 7 can tension the tension plug 9 to reinforce the connection of the insulation board, and the threaded tension rod 7 is provided with a tension sleeve 8 with an external hexagonal surface at the corresponding end for tensioning the threaded tension rod 7, the rotation of the tension sleeve 8 can shrink and pull the threaded tension rod 7, and the tension plug 9 is movably arranged on the two sides of the reinforcing pull plate 6, so that the shrinkage and pulling of the threaded tension rod 7 can tension and fix the insulation board.

[0024] The reinforcing pull groove 5 is provided with a tension groove 10 on one side inside the reinforcing pull groove 5 for inserting the tension plug 9 to tension and fix the connection of the insulation board, so that the tension plug 9 generates shrinkage tension to tighten and reinforce the gap of the insulation board, and the reinforcing pull plate 6 is provided with a strip-shaped groove 11 at the end, so that the tension sleeve 8 can rotate in the strip-shaped groove 11 to pull the threaded tension rod 7, and the threaded tension rod 7 penetrates from the two ends inside the strip-shaped groove 11 to the outside and is fixedly connected with one side of the tension plug 9, and the insulation board A1 and the insulation board B2 are combined and connected by the adaptive plug-in of the strip-shaped combination block 3 and the strip-shaped combination groove 4.

[0025] The heat preservation plate A1 and the heat preservation plate B2 each include two reinforcing layer plates 12, and a base layer plate 13 is arranged between the inner sides of the two reinforcing layer plates 12, the base layer plate 13 is made of fiber reinforced resin composite material, the fiber in the fiber reinforced resin composite material is glass fiber, carbon fiber, boron fiber or aramid fiber, the resin is unsaturated polyester, vinyl resin, polyurethane resin, epoxy resin or phenolic resin, two surfaces of the base layer plate 13 are respectively provided with a heat preservation layer plate 14 and a water vapor barrier layer plate 15, the water vapor barrier layer plate 15 is made of anti-bet plate material, the anti-bet plate is a plate material which is made by impregnating melamine resin in decorative color paper, and then laminating a plurality of layers of black or brown kraft paper impregnated with phenolic resin, and then pressing the plate material in a high temperature and high pressure environment by using a steel plate, the anti-bet plate has the functions of being strong, impact-resistant, waterproof, moisture-resistant and the like, the internal material of the heat preservation layer plate 14 is made of vitrified microbeads, EPS foam particles, lightweight concrete broken material and foamed cement board broken material, the vitrified microbead heat preservation mortar is A-grade fireproof, green and environmentally friendly, and has the same service life as the building.

[0026] One surface of the heat preservation layer plate 14 and the water vapor barrier layer plate 15 is respectively provided with a weather-resistant layer plate 16 and an impact-resistant fiber plate 17, and one surface of the two reinforcing layer plates 12 corresponding to each other is uniformly provided with a reinforcing insertion column 18 which is inserted into and fixed to one surface of the weather-resistant layer plate 16 and the impact-resistant fiber plate 17, the weather-resistant layer plate 16 is made of ASA material, the ASA material is a ternary polymer composed of acrylonitrile, styrene and acrylic rubber, has good chemical resistance, and belongs to impact-modified resin, the ASA material has good mechanical physical properties, high strength, good toughness, easy processing and molding performance advantages, good high temperature resistance, good low temperature resistance, good corrosion resistance, the impact-resistant fiber plate 17 is made of PC plate and glass fiber, and is processed from polycarbonate (PC) resin, has the characteristics of high transparency, light weight, impact resistance, sound insulation, heat insulation, flame resistance and aging resistance.

[0027] Specific, use, first, the heat preservation plate A1 is inserted to the heat preservation plate B2 with the strip-shaped combination groove 4 one end with the strip-shaped combination block 3 of one end, can the heat preservation plate A1, heat preservation plate B2 with the strip-shaped combination block 3 is inserted to the strip-shaped combination groove 4 and is inserted into the combination of one body, and this kind of combination mode is beneficial to the disassembly and replacement of later period, in order to strengthen the firmness of heat preservation plate A1, heat preservation plate B2 both connection, first, the tension plug 9 is installed in the two sides of the reinforcing plate 6 with the threaded tension rod 7, and the threaded tension rod 7 one end activity extends to the both ends in the tension recess 10 with the tension sleeve piece 8 is screwed to both ends, then makes the reinforcing plate 6 put into the strip-shaped groove 11, makes both ends tension plug 9 insert into the tension recess 10 in the reinforcing slot 5 of heat preservation plate A1, heat preservation plate B2, subsequently, the tension sleeve piece 8 of outer hexagonal surface is rotated with the wrench and lets both ends threaded tension rod 7 produce tension, the tension produced in the tension recess 10 of tension plug 9 is pulled and is tightened, the connection between heat preservation plate A1, heat preservation plate B2 is tightened to the middle part, so as to tighten the reinforcing of heat preservation plate A1, heat preservation plate B2 after connection, further improve the firmness of heat preservation plate after connection, so as to not appear the problem of large gap and loose separation.

[0028] Finally, it should be noted that: the above only for the preferred embodiments of the utility model have, and do not limit the utility model, although the utility model is described in detail with reference to the foregoing embodiments, for the person skilled in the art, it still can modify the technical scheme recorded in the foregoing each embodiment, or equivalent replacement to part of technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the utility model, should be included in the protection scope of the utility model.

Claims

1. A composite fiber reinforced structure of energy saving insulation board, characterized by, Include: The heat preservation plate A (1) is combined and connected with the heat preservation plate B (2) at one end, and the two ends of the heat preservation plate A (1) and the heat preservation plate B (2) are respectively provided with a strip-shaped combination block (3) and a strip-shaped combination groove (4) for combined connection of the heat preservation plate, and the two sides of the upper and lower ends of the heat preservation plate A (1) and the heat preservation plate B (2) are provided with a reinforcing pull groove (5) for tensioning and reinforcing after the heat preservation plate is combined; The reinforcing pull plate (6) is provided with a threaded tensioning rod (7) movably penetrating to the outside of the reinforcing pull plate (6) on both sides of the recess on the upper end surface, and the threaded tensioning rod (7) is provided with a tensioning sleeve piece (8) with an external hexagonal surface for tensioning the threaded tensioning rod (7) on the corresponding end, and the reinforcing pull plate (6) is movably provided with a tensioning plug (9) on both sides.

2. The composite fiber reinforced structure of claim 1, wherein: The reinforcing pull groove (5) is provided with a tensioning recess (10) on one side of the inside for inserting the tensioning plug (9) to tension and fix the heat preservation plate connection.

3. The composite fiber reinforced structure of claim 1, wherein: The reinforcing pull plate (6) is provided with a strip-shaped groove (11) at the end, and the threaded tensioning rod (7) penetrates from both ends of the inside of the strip-shaped groove (11) to the outside and is fixedly connected with one side of the tensioning plug (9).

4. The composite fiber reinforced structure of claim 1, wherein: The heat preservation plate A (1) and the heat preservation plate B (2) are combined and connected by the strip-shaped combination block (3) and the strip-shaped combination groove (4) of the corresponding adapter.

5. The composite fiber reinforced structure of claim 1, wherein: The heat preservation plate A (1) and the heat preservation plate B (2) each include two reinforcing layer plates (12), and a base layer plate (13) is arranged between the inner sides of the two reinforcing layer plates (12), the base layer plate (13) is provided with a heat preservation layer plate (14) and a water vapor separation layer plate (15) on both sides, and the heat preservation layer plate (14) and the water vapor separation layer plate (15) are respectively provided with a weather-resistant layer plate (16) and an impact-resistant fiber plate (17) on one side.

6. The composite fiber reinforced structure of claim 5, wherein: The inner sides of the two reinforcing layer plates (12) are uniformly provided with reinforcing insertion columns (18) on the corresponding side, and the reinforcing insertion columns (18) are inserted into one side of the weather-resistant layer plate (16) and the impact-resistant fiber plate (17) and fixed.

Citation Information

Patent Citations

  • Fiber reinforced composite insulation board

    CN216130365U