Prefabricated thermal insulation wall with H-shaped glass fiber steel and prefabricated thermal insulation board of prefabricated thermal insulation wall

By setting H-shaped fiberglass steel and steel mesh for fixed connection inside the prefabricated insulation board, the manufacturing and transportation inconvenience caused by the protruding connectors or trusses on the side of the prefabricated insulation board is solved, thereby reducing costs and improving production efficiency.

CN223951988UActive Publication Date: 2026-02-27湖南言诚达科技有限公司
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Patent Information

Application Number
CN202423302307.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The protruding connectors or trusses on the sides of existing prefabricated insulation walls cause inconvenience in manufacturing and transportation, increasing construction costs.

Method used

H-shaped fiberglass steel is used to fix the connection with steel mesh. The second flange of the H-shaped fiberglass steel is flush with the side of the precast layer. The precast insulation board is connected to the cast-in-place wall through connectors, including anchor cables and anchor bolt assemblies, which simplifies the manufacturing and transportation process.

Benefits of technology

This reduces the weight and material cost of prefabricated insulation panels, improves production efficiency, reduces labor costs, and ensures reliable connections and convenient installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a prefabricated thermal insulation wall with H-shaped glass fiber steel, which comprises a prefabricated thermal insulation board, a cast-in-place wall body with a reinforcing mesh frame and a connecting piece connected between the prefabricated thermal insulation board and the cast-in-place wall body, and the prefabricated thermal insulation board comprises a prefabricated layer made of lightweight concrete, a reinforcing mesh pre-buried in the prefabricated layer and the H-shaped glass fiber steel arranged in the prefabricated layer. One side of the H-shaped glass fiber steel is fixedly connected with the reinforcing mesh, the other side of the H-shaped glass fiber steel is flush with the inner side face of the prefabricated layer, the H-shaped glass fiber steel is arranged in the vertical direction of the prefabricated insulation board, and the connecting piece is connected with the H-shaped glass fiber steel. The H-shaped glass fiber steel is arranged in the prefabricated layer, so that the material cost is reduced, meanwhile, the volume weight of the prefabricated insulation board is reduced, and the installation is more convenient; protruding steel bar trusses or connecting pieces are prevented from being arranged on the side faces of the prefabricated insulation board, production automation is improved, and manufacturing cost is reduced. The utility model further discloses the prefabricated heat preservation plate of the prefabricated heat preservation wall.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of fabricated building, especially relates to a prefabricated thermal insulation wall with H-shaped glass fiber steel and prefabricated thermal insulation board thereof. BACKGROUND

[0002] In order to improve the thermal insulation performance of the wall of the building, it is usually necessary to set a prefabricated thermal insulation board on the outer wall of the building. In the prior art, the prefabricated thermal insulation board of the outer wall is usually set on the outer surface of the outer wall by using the construction methods of bonding, anchoring and external hanging. The construction method of bonding is prone to cause hollowing between the prefabricated thermal insulation board and the structural outer wall, the construction method of anchoring is prone to cause the prefabricated thermal insulation board to separate from the building main body and fall off due to the aging deformation of the anchor nails, and the construction method of external hanging uses large-size prefabricated thermal insulation boards, which has low installation efficiency and is prone to water accumulation and frost cracking at the joint.

[0003] The utility model discloses a kind of prefabricated thermal insulation wall, including thermal insulation wall board body, steel bar truss and several connectors, the two ends of several connectors are connected to the thermal insulation wall board body and the steel bar truss respectively.

[0004] In addition, the utility model discloses a kind of prefabricated thermal insulation wall, by connecting piece such as anchor bolt, anchor cable, etc. being embedded in prefabricated thermal insulation board and extending to cast-in-place wall body, prefabricated thermal insulation board is reliably connected on the outside of cast-in-place wall body by connecting piece. This prefabricated thermal insulation board is produced in process, due to the height of embedded connecting piece exceeding the side of prefabricated thermal insulation board, it is not convenient to use machine to smooth after pouring, only manual smoothing, to avoid protruding connecting piece, resulting in that production efficiency is greatly reduced, manufacturing cost is greatly increased. While transporting prefabricated thermal insulation board, special protection connecting piece protruding from the side of prefabricated thermal insulation board needs to be set, resulting in that the manufacturing cost of entire prefabricated thermal insulation wall is greatly improved. UTILITY MODEL CONTENTS

[0005] The utility model solves the technical problem that prefabricated thermal insulation wall in prior art is inconvenient to manufacture and transport due to the protruding connecting piece or truss on the side of prefabricated thermal insulation board, and provides a prefabricated thermal insulation wall with H-shaped glass fiber steel, which makes the manufacture and transportation of prefabricated thermal insulation wall more convenient.

[0006] In order to achieve the above object, the technical scheme of the utility model is: construct a prefabricated thermal insulation wall with H type glass fiber steel, including prefabricated thermal insulation board, cast-in-place wall body with reinforcing mesh, connecting piece connected between the prefabricated thermal insulation board and the cast-in-place wall body, the prefabricated thermal insulation board includes prefabricated layer made of light weight concrete, reinforcing mesh embedded in the prefabricated layer, H type glass fiber steel arranged in the prefabricated layer, the H type glass fiber steel includes first flange and second flange parallel to each other and web arranged between the two flanges, the first flange of the H type glass fiber steel is fixedly connected with the reinforcing mesh, the second flange of the H type glass fiber steel is flush with the side of the prefabricated layer, the H type glass fiber steel is arranged along the vertical direction of the prefabricated thermal insulation board, and the connecting piece is connected with the H type glass fiber steel.

[0007] Further, the connecting piece includes an anchor cable, a first connecting hole is formed in the H type glass fiber steel, and the anchor cable passes through the first connecting hole and extends to the reinforcing mesh of the cast-in-place wall body.

[0008] Further, the connecting piece includes an anchor bolt assembly, a second connecting hole is formed in the H type glass fiber steel, the anchor bolt assembly includes a pre-buried sleeve fixed in the second connecting hole and a movable anchor bolt rod arranged in the cast-in-place wall body, the movable anchor bolt rod is detachably connected with the tail end of the pre-buried sleeve, and the tail end of the pre-buried sleeve is flush with the side of the prefabricated layer.

[0009] Further, the pre-buried sleeve includes a sleeve part and a plug rod part, the plug rod part is matched with the second connecting hole, and the tail end of the sleeve part is detachably connected with the movable anchor bolt rod.

[0010] Further, the movable anchor bolt rod includes a connecting rod detachably connected with the tail end of the sleeve part and an anchor rod fixed at the end of the connecting rod.

[0011] Further, the H type glass fiber steel is bound on one side of the reinforcing mesh through the connecting piece, and the connecting piece bypasses the first flange and the second flange.

[0012] Further, a third connecting hole is formed in the H type glass fiber steel, and the H type glass fiber steel is bound on one side of the reinforcing mesh through a flexible connecting piece, and the connecting piece passes through the third connecting hole.

[0013] Another technical problem to be solved by the utility model is that the prefabricated thermal insulation board of the prefabricated thermal insulation wall in the prior art is inconvenient to manufacture and transport due to the protruding connecting piece or truss on the side, and a prefabricated thermal insulation board of a prefabricated thermal insulation wall with H type glass fiber steel is provided, so that the prefabricated thermal insulation board is more convenient to manufacture and transport.

[0014] The technical scheme for solving another technical problem of the utility model is: construct a prefabricated thermal insulation wall prefabricated thermal insulation board with H type glass fiber steel, including prefabricated layer made of lightweight concrete, embedded in the reinforcing mesh in the prefabricated layer, H type glass fiber steel is arranged in the prefabricated layer, the H type glass fiber steel includes the first flange and the second flange that are parallel to each other and the web that is arranged between the two flanges, the first flange of the H type glass fiber steel is fixedly connected with the reinforcing mesh, the second flange of the H type glass fiber steel is flush with the side of the prefabricated layer, and the H type glass fiber steel is arranged along the vertical direction of the prefabricated thermal insulation board.

[0015] Further, the prefabricated layer includes an anchor cable, a first connecting hole is formed in the H type glass fiber steel, and the anchor cable extends to the reinforcing mesh frame in the cast-in-place wall through the first connecting hole.

[0016] Further, a second connecting hole is formed in the H type glass fiber steel, and a pre-buried sleeve is pre-buried in the second connecting hole, the tail end of the pre-buried sleeve is flush with the side of the prefabricated layer, and the pre-buried sleeve cooperates with the movable anchor bolt rod.

[0017] The prefabricated thermal insulation wall with H type glass fiber steel and the prefabricated thermal insulation board thereof have the following beneficial effects: by arranging the H type glass fiber steel in the prefabricated layer, the unit weight of the entire prefabricated thermal insulation board can be reduced on the basis of ensuring the strength of the prefabricated thermal insulation board, the use of special hoisting equipment such as tower crane is reduced, the weight of a single prefabricated thermal insulation board is greatly reduced by controlling the width size of the prefabricated thermal insulation board, manual carrying operation installation is realized, and the construction cost is greatly reduced. At the same time, the thermal expansion coefficient of the glass fiber steel is closer to the thermal expansion coefficient of the thermal insulation mortar or lightweight concrete used in the prefabricated thermal insulation board than that of the reinforcing steel bar, and the concrete is not easy to crack; at the same time, the rigidity of the glass fiber steel exceeds that of the reinforcing steel bar, so that the entire prefabricated thermal insulation board requires less amount under the requirement of basic rigidity, thereby reducing the material cost.

[0018] By arranging the H type glass fiber steel to be fixedly connected with the reinforcing mesh and arranging the second flange of the H type glass fiber steel to be flush with the side of the prefabricated layer, on the one hand, the prefabricated thermal insulation board side can be mechanically smoothed by using automatic machinery during the production of the prefabricated thermal insulation board in the flow line, avoiding the manual smoothing process, greatly improving the production efficiency, and saving the labor cost; on the other hand, the second flange is flush with the side of the prefabricated layer, and an operating interface of the connecting piece is reserved on the side of the prefabricated thermal insulation board, so as to connect the prefabricated thermal insulation board and the cast-in-place wall together through the connecting piece, such as flexible anchor cable.

[0019] In summary, by setting the H-shaped glass fiber steel in the prefabricated insulation board, the material cost is reduced, the volume weight of the prefabricated insulation board is reduced, the installation is more convenient, and the protruding steel bar truss or connecting piece on the side of the prefabricated insulation board is avoided, the production automation is improved, and the manufacturing cost is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0021] Figure 1 Fig. 1 is a schematic diagram of the three-dimensional structure of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application;

[0022] Figure 2 Fig. 2 is a schematic diagram of the three-dimensional structure of the prefabricated insulation board of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application;

[0023] Figure 2a Fig. 3 is an enlarged view of I part of the prefabricated insulation board of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application; Figure 2

[0024] Figure 3 Fig. 4 is a schematic diagram of the connection structure of the H-shaped glass fiber steel in the prefabricated insulation board of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application;

[0025] Figure 3a Fig. 5 is an enlarged view of II part of the prefabricated insulation board of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application; Figure 3

[0026] Figure 4 Fig. 6 is a schematic diagram of another direction connection structure of the H-shaped glass fiber steel in the prefabricated insulation board of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application;

[0027] Figure 4a Fig. 7 is an enlarged view of III part of the prefabricated insulation board of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application; Figure 4

[0028] Figure 5 Fig. 8 is a three-dimensional view of the H-shaped glass fiber steel in the prefabricated insulation board of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application;

[0029] Figure 5a Fig. 9 is an enlarged view of IV part of the prefabricated insulation board of the prefabricated insulation wall with H-shaped glass fiber steel according to the preferred embodiment of the present application; Figure 5

[0030] Figure 6 ​​​​The diagram shown is a structural schematic of the anchor bolt assembly in a preferred embodiment of the prefabricated insulation board of the prefabricated insulation wall with H-shaped fiberglass steel of this utility model. Detailed Implementation

[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0032] The prefabricated insulation wall with H-shaped fiberglass steel described in this utility model mainly includes a prefabricated insulation board, a cast-in-place wall with a steel mesh frame, and a connector connecting the prefabricated insulation board and the cast-in-place wall. The prefabricated insulation board includes a prefabricated layer, a steel mesh, and H-shaped fiberglass steel.

[0033] like Figure 1 , 2 As shown in Figures 2a, 3a, 4a, 4a, 5a, and 6, in a preferred embodiment of the precast insulation wall with H-shaped fiberglass steel of this utility model, the wall includes a precast insulation board 10, a cast-in-place wall 20 with a steel mesh frame 21, and a connector 30 connecting the precast insulation board 10 and the cast-in-place wall 20. The precast insulation board 10 includes a precast layer 11 made of lightweight concrete, a steel mesh 12 embedded in the precast layer 11, and H-shaped fiberglass steel 40 disposed within the precast layer 11. One or more H-shaped fiberglass steels can be disposed within the precast insulation board 10 as needed.

[0034] H-shaped fiberglass steel 40 is used, with an H-shaped cross-section. This improves the overall bending resistance of the fiberglass steel, reduces the amount of fiberglass steel used, and enhances the bonding strength between the fiberglass steel and the precast layer 11. Specifically, the H-shaped fiberglass steel 40 includes a first flange 40a and a second flange 40b that are parallel to each other, and a web 40c located between the first flange 40a and the second flange 40b. The first flange 40a is fixedly connected to the reinforcing mesh 12, and the second flange 40b is set to be flush with the inner side A of the precast layer. The inner side A of the precast layer is the side of the precast layer 11 facing the cast-in-place wall 20. The H-shaped fiberglass steel 40 is set along the vertical direction of the precast insulation board 10, that is, the length direction of the H-shaped fiberglass steel 40 is aligned with the vertical direction of the precast insulation wall. The connector 30 is connected to the H-shaped fiberglass steel 40.

[0035] In the preferred embodiment, the connecting member 30 comprises an anchor cable 31 made of flexible material, a first connecting hole 41 is formed on the H-shaped fiberglass steel 40, the anchor cable 31 is inserted through the first connecting hole 41 and extends to the steel mesh frame 21 of the cast-in-place wall, and the anchor cable 31 is tied with the steel mesh frame 21 during on-site construction, so as to connect the prefabricated insulation board 10 and the cast-in-place wall 20. Preferably, the first connecting hole 41 is arranged on the second flange 40b. Since the anchor cable 31 is made of flexible material, and the second flange 40b of the H-shaped fiberglass steel is flush with the inner side A of the prefabricated layer of the prefabricated insulation board, the inner side A of the prefabricated insulation board 10 can be mechanically smoothed by using an automatic smoothing machine after the material is laid during the manufacturing of the prefabricated insulation board 10, and the anchor cable 31 will not interfere with the smoothing machine. According to the needs, a plurality of first connecting holes 41 can be arranged on the second flange 40b, and the positions of the first connecting holes 41 are matched with the positions of the steel bars of the steel mesh frame 21, so that the anchor cable 31 can cooperate with the steel bars of the steel mesh frame 21 after being inserted through the first connecting holes 41.

[0036] In the preferred embodiment, the connecting member 30 preferably comprises an anchor bolt assembly 50, and a second connecting hole 42 is formed on the H-shaped fiberglass steel 40. Preferably, the anchor bolt assembly 50 comprises a pre-buried sleeve 51 fixed in the second connecting hole 42 and a movable anchor bolt rod 52 arranged in the cast-in-place wall 20, and the movable anchor bolt rod 52 is detachably connected with the tail end 51a of the pre-buried sleeve, and the tail end 51a of the pre-buried sleeve is arranged flush with the inner side A of the prefabricated layer. The detachable connection structure between the movable anchor bolt rod 52 and the pre-buried sleeve 51 can be a threaded connection, a buckle connection, etc. During the manufacturing of the prefabricated insulation board 10, the pre-buried sleeve 51 is first fixed in the second connecting hole 42, and a protective sleeve is arranged at the tail end 51a of the pre-buried sleeve to prevent concrete from entering the pre-buried sleeve 51 during the material laying, vibrating or smoothing processes. During the on-site installation, the protective sleeve is removed, the movable anchor bolt rod 52 is directly inserted into the tail end 51a of the pre-buried sleeve, and the movable anchor bolt rod 52 is fixedly connected with the tail end 51a of the pre-buried sleeve; and then the cast-in-place wall 20 is poured. In the preferred embodiment, the second connecting hole 42 is preferably arranged on the web 40c to enhance the bonding force between the anchor bolt assembly 50 and the H-shaped fiberglass steel 40. The second connecting hole 42 can also be arranged on the second flange 40b according to the needs. The number of the second connecting holes 42 can be determined according to the strength of the H-shaped fiberglass steel 40 and the bonding force between the prefabricated insulation board 10 and the cast-in-place wall 20.

[0037] In the preferred embodiment, the embedded sleeve 51 can include a plug rod part and a sleeve part, wherein the plug rod part is matched with the second connecting hole 42, and the tail end of the sleeve part is matched with the movable anchor rod 52. Preferably, the embedded sleeve 51 is set as a split type, i.e. the embedded sleeve 51 is set to include two components of a plug rod 53 and a sleeve 54, wherein one end of the plug rod 53 is provided with a positioning step 53a, and the other end of the plug rod 53 is fixedly connected with the sleeve 54. Specifically, the plug rod 53 can be inserted through the second connecting hole 42, so that the positioning step 53a of the plug rod is just clamped at the web 40c of the H-shaped glass fiber reinforced steel, and the other end of the plug rod 53 can be connected with the sleeve 54 through threads, or the sleeve 54 can be positioned on the plug rod 53 through a locking nut 55. The tail end 51a of the sleeve is set to be flush with the inner side A of the prefabricated insulation board, and the tail end 51a of the sleeve can be detachably connected with the movable anchor rod 52. Specifically, the movable anchor rod 52 can be set to include an anchor rod 52a and a connecting rod 52b, wherein one end of the connecting rod 52b is detachably connected with the tail end 51a of the sleeve, and the other end of the connecting rod 52b is fixedly connected with the anchor rod 52a. Specifically, the connecting rod 52b and the sleeve 51 can be provided with thread connection or buckle connection.

[0038] In the preferred embodiment, in order to fixedly connect the H-shaped glass fiber reinforced steel 40 with the steel mesh 12, a flexible connecting member 32 such as a wire can be used to directly bind the H-shaped glass fiber reinforced steel 40 on the steel mesh 12, and specifically the flexible connecting member 32 can be wound around the first flange 40a and the second flange 40b of the H-shaped glass fiber reinforced steel. Alternatively, a third connecting hole 43 can be formed on the H-shaped glass fiber reinforced steel 40, and the flexible connecting member 32 such as a wire can be inserted through the third connecting hole 43, so as to fixedly bind the H-shaped glass fiber reinforced steel 40 on one side of the steel mesh 12. Preferably, the third connecting hole 43 is formed on the first flange 40a of the H-shaped glass fiber reinforced steel, so that the length of the flexible connecting member 32 used is shorter, thereby saving materials. Alternatively, the flexible connecting member 32 can be inserted through the second connecting hole 42, so as to directly fixedly bind the H-shaped glass fiber reinforced steel 40 on one side of the steel mesh 12.

[0039] In the preferred embodiment, the vertical dimension of the prefabricated insulation board 10 is preferably matched with the vertical dimension of the cast-in-place wall 20, i.e. the vertical dimension of the prefabricated insulation board 10 is the same as the story height; and the prefabricated insulation board 10 is set to be matched with the horizontal dimension of the cast-in-place wall 20 through transverse tight splicing, i.e. a plurality of prefabricated insulation boards 10 are spliced in the horizontal direction according to the horizontal dimension of the cast-in-place wall 20. Specifically, the horizontal dimension of the prefabricated insulation board 10 is set according to the weight of a single prefabricated insulation board 10, so as to facilitate manual or simple hoisting equipment to carry.

[0040] In the above embodiment, the prefabricated insulation board 10 is preferably prefabricated by using lightweight concrete, wherein the aggregate of the lightweight concrete can be one or more of modified polystyrene particles, ceramsite, expanded perlite, modified vitrified microbeads, thermosetting polystyrene, and composite aluminum silicate.

[0041] As Figure 2 , 2a , 3, 3a, 4, 4a, 5, 5a, 6, in the prefabricated thermal insulation wall with H type glass fiber steel prefabricated thermal insulation board 10 of the preferred embodiment of the utility model, preferably set prefabricated thermal insulation board 10 includes prefabricated layer 11, steel mesh 12, H type glass fiber steel 40, also preferably set H type glass fiber steel 40 includes mutually parallel first flange 40a and second flange 40b and the web 40c set between first flange 40a and second flange 40b, the first flange 40a of H type glass fiber steel 40 is fixedly connected with the steel mesh 12, and the second flange 40b is flush with the inner side surface A of the prefabricated layer, and the H type glass fiber steel 40 is arranged along the vertical direction of the prefabricated thermal insulation board 10. Specifically, the structure of the prefabricated thermal insulation board 10 in the above embodiment of the prefabricated thermal insulation wall with H type glass fiber steel can be referred to for setting. As can be provided with first connecting hole 41 connected with anchor cable 31 on H type glass fiber steel 40; It can also be provided with second connecting hole 42 matched with pre-buried sleeve 51 of anchor bolt assembly 50; It can also be provided with third connecting hole 43 matched with flexible connecting piece 32.

[0042] Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor, any modification, equivalent replacement, improvement, etc. should be included in the protection scope of the utility model.

Claims

1. A prefabricated thermal insulation wall with H-shaped glass fiber steel, comprising a prefabricated thermal insulation board, a cast-in-place wall body with a steel bar net rack, and a connecting piece connected between the prefabricated thermal insulation board and the cast-in-place wall body, characterized in that, The prefabricated insulation board comprises a prefabricated layer made of lightweight concrete, a steel mesh embedded in the prefabricated layer, and an H-shaped glass fiber steel arranged in the prefabricated layer, the H-shaped glass fiber steel comprises first and second flanges parallel to each other and a web arranged between the two flanges, the first flange of the H-shaped glass fiber steel is fixedly connected with the steel mesh, the second flange of the H-shaped glass fiber steel is flush with the inner side surface of the prefabricated layer, and the H-shaped glass fiber steel is arranged along the vertical direction of the prefabricated insulation board.

2. The prefabricated thermal insulation wall with H-shaped glass fiber reinforced steel according to claim 1, characterized in that, The connecting piece comprises an anchor cable, the H-shaped glass fiber steel is provided with a first connecting hole, and the anchor cable passes through the first connecting hole and extends to the steel mesh frame of the cast-in-place wall.

3. The prefabricated thermal insulation wall with H-shaped glass fiber reinforced steel according to claim 1, characterized in that, The connecting piece comprises an anchor bolt assembly, the H-shaped glass fiber steel is provided with a second connecting hole, the anchor bolt assembly comprises a pre-embedded sleeve fixed in the second connecting hole and a movable anchor rod arranged in the cast-in-place wall, the movable anchor rod is detachably connected with the tail end of the pre-embedded sleeve, and the tail end of the pre-embedded sleeve is flush with the side surface of the prefabricated layer.

4. The prefabricated thermal insulation wall with H-shaped glass fiber reinforced steel according to claim 3, characterized in that, The pre-embedded sleeve comprises a sleeve and a plug rod, one end of the plug rod is matched with the second connecting hole, and the other end of the plug rod is not fixed on the sleeve, and the tail end of the sleeve is detachably connected with the movable anchor rod.

5. The prefabricated thermal insulation wall with H-shaped glass fiber reinforced steel according to claim 4, characterized in that, The movable anchor rod comprises a connecting rod detachably connected with the tail end of the sleeve and an anchor rod fixed at the end of the connecting rod.

6. The prefabricated thermal insulation wall with H-shaped glass fiber steel according to any one of claims 1 to 5, characterized in that, The H-shaped glass fiber steel is bound to one side of the steel mesh through the connecting piece, and the connecting piece bypasses the first flange and the second flange.

7. The prefabricated thermal insulation wall with H-shaped glass fiber steel according to any one of claims 1 to 5, characterized in that, The H-shaped glass fiber steel is provided with a third connecting hole, and the H-shaped glass fiber steel is bound to one side of the steel mesh through a flexible connecting piece, and the connecting piece passes through the third connecting hole.

8. A prefabricated thermal insulation panel for prefabricated thermal insulation walls with H-shaped glass fiber reinforced steel according to claim 1, characterized in that, The prefabricated insulation board comprises a prefabricated layer made of lightweight concrete, a steel mesh embedded in the prefabricated layer, and an H-shaped glass fiber steel arranged in the prefabricated layer, the H-shaped glass fiber steel comprises first and second flanges parallel to each other and a web arranged between the two flanges, the first flange of the H-shaped glass fiber steel is fixedly connected with the steel mesh, the second flange of the H-shaped glass fiber steel is flush with the inner side surface of the prefabricated layer, and the H-shaped glass fiber steel is arranged along the vertical direction of the prefabricated insulation board.

9. The prefabricated thermal insulation panel of the prefabricated thermal insulation wall with H-shaped glass fiber steel according to claim 8, characterized in that, The prefabricated layer comprises an anchor cable, the H-shaped glass fiber steel is provided with a first connecting hole, and the anchor cable passes through the first connecting hole and extends to the steel mesh frame of the cast-in-place wall.

10. The prefabricated thermal insulation panel of the prefabricated thermal insulation wall with H-shaped glass fiber reinforced steel according to claim 8, characterized in that, The H-shaped glass fiber steel is provided with a second connecting hole, and further comprises a pre-embedded sleeve embedded in the second connecting hole, the tail end of the pre-embedded sleeve is flush with the side surface of the prefabricated layer, and the pre-embedded sleeve is matched with a movable anchor rod.

Citation Information

Patent Citations

  • Heat preservation structure integrated composite wallboard

    CN210713350U

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    CN222140381U