Anti-seismic assembly type building body of double Faraday cage structure
The prefabricated seismic-resistant building structure with double Faraday cage structure, using 0.8mm thick Faraday cage plates and lightweight concrete insulation layer, solves the problems of difficult construction and easy corrosion in existing technologies for lightning protection and electromagnetic interference suppression. It achieves efficient installation and strong lightning protection and electromagnetic interference suppression effects, while improving the seismic performance of the building.
Patent Information
- Application Number
- CN202422949500.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing lightning protection and electromagnetic interference suppression technologies for buildings are insufficient to meet the needs of modern technological development. Metal wire mesh and iron bars are prone to corrosion and are difficult to construct. Faraday cages require secondary construction and have many welding points.
The earthquake-resistant prefabricated building adopts a double Faraday cage structure. The prefabricated walls are connected to the frame. It uses 0.8mm thick Faraday cage plates and 20mm*20mm square holes, combined with a lightweight concrete insulation layer and honeycomb grooves, to achieve convenient installation and efficient lightning protection and electromagnetic interference resistance.
It achieves lightning protection and electromagnetic interference suppression with simple structure and efficient installation, reduces construction difficulty and material waste, and improves the building's compressive and impact resistance and seismic resistance.
Smart Images

Figure CN223781204U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building technical field, concretely relates to a kind of anti-seismic fabricated building of double Faraday cage structure. BACKGROUND
[0002] With the development of modern technology, the lightning protection and electromagnetic interference resistance requirements of microelectronic signal equipment machine room, base station, laboratory and large database construction to building body are higher and higher.The existing building lightning protection and electromagnetic interference resistance technology cannot keep up with the demand of technology development, such as metal wire mesh lightning protection is easy to process, but the lightning protection and electromagnetic interference resistance effect is general, and the construction difficulty of forming building body is large, the installation efficiency is low, and it is easy to corrode;Iron bar lightning protection technology is only suitable for ordinary lightning protection requirements, and is also easy to corrode;Faraday cage needs secondary construction and too many welding points in building.In order to solve the above problems, a kind of anti-seismic fabricated building of double Faraday cage structure with simple structure, light, high installation efficiency is provided, energy saving and environmental protection are realized, and excellent lightning protection and electromagnetic interference resistance effect is achieved. SUMMARY
[0003] In view of the deficiencies of the prior art, the utility model provides a kind of anti-seismic fabricated building of double Faraday cage structure.
[0004] The anti-seismic fabricated building of double Faraday cage structure of the utility model, a plurality of including fabricated wall and the frame for fixing fabricated wall, the fabricated wall includes shear frame, the both sides of shear frame are equipped with a plurality of Faraday cage plate, Faraday cage plate on the both sides of shear frame forms installation cavity, the inside of installation cavity is equipped with filler;A plurality of through holes are arranged in rectangular array on Faraday cage plate, and the side edge of through hole is upturned to form hole plate.
[0005] Further, the filler includes a moisture-proof and heat-insulating layer, and a first heat-insulating layer symmetrically arranged on both sides of the moisture-proof and heat-insulating layer;A second heat-insulating layer is installed on the other side of the Faraday cage plate without filler.
[0006] Further, the first heat-insulating layer and the second heat-insulating layer are both light weight concrete heat-insulating polymer base materials;Honeycomb grooves are formed on one side of the first heat-insulating layer close to the Faraday cage plate, so that the Faraday cage plate has the ability to absorb sound waves and signals.
[0007] Further, the shear frame includes two support columns, and lifting frames are fixedly connected to both ends of the two support columns, and lifting holes are formed in the lifting frames.
[0008] Further, the side of the Faraday cage plate provided with the hole plate is recessed downward to form a U-shaped groove, and flat connecting ears are formed on both side edges of the U-shaped groove close to the Faraday cage plate.
[0009] The connecting lug on the Faraday cage plate close to the support column is bolted to the support column, and the planar connecting lugs on the rest of the Faraday cage plates are overlapped and mounted together.
[0010] Further, the assembly type wall further comprises a door frame, two hoisting frames in the assembly type wall extend to the bottom of the door frame and the top of the door frame on one side and are fixed by bolts to form the assembly type wall with the door frame.
[0011] Further, the frame comprises columns and frame beams, the columns are connected together through the frame beams, and cavities for filling the assembly type wall are formed between the columns and the frame beams; L-shaped mounting lugs are mounted on both sides of each column towards the adjacent column, and the assembly type wall is bolted to the L-shaped mounting lugs between the two columns.
[0012] Further, the Faraday cage plate has a thickness of 0.8 mm, and the through hole is a 20 mm*20 mm square hole.
[0013] Compared with the prior art, the utility model has the advantages as follows:
[0014] 1. The assembly type wall is assembled in the cavity of the frame, and the assembly type wall is connected with the frame through bolts, the Faraday cage plates in the assembly type wall form a Faraday cage, and the building after assembly has two Faraday cages because the assembly type wall comprises two Faraday cage plates, so that the assembly type building with the double Faraday cage structure has the advantage of being convenient to build.
[0015] 2. The Faraday cage plate has a thickness of 0.8 mm, and the through hole is a 20 mm*20 mm square hole, compared with the traditional Faraday cage which generally has a mesh of 80 mm*80 mm and the galvanized iron plate for electromagnetic shielding in the machine room which generally has a thickness of only 0.6 mm; according to the shielding coefficient of the space grid type shielding, the performance of lightning protection and electromagnetic interference resistance is stronger; because of the setting of the hole plate, when other thermal insulation materials are installed, the hole plate can be inlaid into the thermal insulation board, so that it is fixed more tightly, and it is convenient to install other materials on the Faraday cage assembly plate, and waste is avoided when the through hole is opened. BRIEF DESCRIPTION OF DRAWINGS
[0016] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application, the schematic embodiments of the present application and the description thereof are used to explain the present application, and do not constitute improper limitation on the present application. In the drawings:
[0017] Figure 1 It is a half-section structure schematic view of the assembly type wall of the utility model;
[0018] Figure 2 is a three-dimensional structure schematic view of the present utility model;
[0019] Figure 3 is a three-dimensional structure schematic view of the Faraday cage plate of the present utility model.
[0020] In the figure: 1, frame; 101, stand column; 102, frame beam; 103, L-shaped mounting lug; 2, fabricated wall; 21, support column; 22, hoisting frame; 23, hoisting hole;
[0021] 24, Faraday cage plate; 241, through hole; 242, hole plate; 243, U-shaped groove; 244, connecting lug;
[0022] 25, filler; 251, moisture-proof and heat-insulation layer; 252, first heat-insulation layer; 26, second heat-insulation layer; 27, door frame. DETAILED DESCRIPTION
[0023] In the following, multiple embodiments of the present utility model will be disclosed by means of figures. For the purpose of clear illustration, many details of the actual objects will be described in the following description. However, it should be understood that these details of the actual objects should not be used to limit the present utility model. That is, in some embodiments of the present utility model, these details of the actual objects are not necessary. In addition, for the purpose of simplifying the figures, some commonly used structures and components will be drawn in a simple schematic manner in the figures.
[0024] In addition, in the present utility model, the description such as "first", "second" and the like is only for the purpose of description, and does not mean to particularly indicate the order or sequence, nor to limit the present utility model. It is merely for the purpose of distinguishing components or operations described by the same technical terms, and should not be understood as indicating or implying relative importance of the indicated technical features or implying the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of various embodiments can be combined with each other, but it must be based on the realization of the ordinary skilled in the art. When the combination of technical solutions appears to be contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present utility model.
[0025] Please refer to Figure 1 - Figure 3The utility model discloses a double Faraday cage structure's anti -seismic assembly type building body, a plurality of including assembly type wall 2 and be used for fixing assembly type wall 2's frame 1, including shear frame on assembly type wall 2, the both sides of shear frame all are equipped with a plurality of Faraday cage plate 24, and the Faraday cage plate 24 located the both sides of shear frame forms installation cavity, and the inside of installation cavity is equipped with filler 25, a plurality of through -hole 241 are seted up in rectangular alignment on Faraday cage plate 24, and the side edge of through -hole 241 is formed hole plate 242 by cocking up.
[0026] Filler 25 includes damp proof heat insulation layer 251 and the first heat preservation layer 252 that is symmetrically arranged on the both sides of damp proof heat insulation layer 251, and the second heat preservation layer 26 is installed on the other side of Faraday cage plate 24 without filler 25, and the hole plate 242 on Faraday cage plate 24 is embedded in the second heat preservation plate.
[0027] The first heat preservation layer 252 and the second heat preservation layer 26 are all lightweight concrete heat preservation polymer base materials, the side of first heat preservation layer 252 close to Faraday cage plate 24 is all seted up honeycomb groove, and it has certain absorption sound wave, signal ability through honeycomb groove, wherein, lightweight concrete heat preservation polymer base material can include cement, lightweight aggregate, organic macromolecular material such as polymer emulsion, resin and the like, and various components such as additive.
[0028] Shear frame includes two at least including two support columns 21, and the both ends of two support columns 21 are fixedly connected with hoisting frame 22, and hoisting hole 23 is formed in hoisting frame 22.
[0029] The side of Faraday cage plate 24 with hole plate 242 is formed U type recess 243 by concave, and the both side edges close to Faraday cage plate 24 are all formed plane connecting lug 244 of U type recess 243;
[0030] The connecting lug 244 on Faraday cage plate 24 close to support column 21 is installed with support column 21 through bolt, and the plane connecting lug 244 on the rest Faraday cage plate 24 is overlapped and installed together.
[0031] One assembly type wall 2 still includes door frame 27, and two hoisting frames 22 in one assembly type wall 2 extend to the bottom of door frame 27 and the top of door frame 27 to one side, and are fixed to form the assembly type wall 2 with door frame 27 through bolt.
[0032] Frame 1 includes stand 101 and frame beam 102, and stand 101 is connected together through frame beam 102, and the cavity for filling assembly type wall 2 is formed between stand 101 and frame beam 102, and the both sides of stand 101 towards adjacent stand 101 are all installed L shaped mounting lug 103, and assembly type wall 2 is installed on two L shaped mounting lug 103 between two stands 101 through bolt.
[0033] The thickness of the Faraday cage plate 24 is 0.8 mm, and the through hole 241 is a 20 mm*20 mm square hole.
[0034] When the utility model is used:
[0035] The assembled wall 2 is arranged in the cavity of the frame 1, and the assembled wall 2 is connected with the frame 1 through bolts; the Faraday cage plate 24 in the assembled wall 2 constitutes a Faraday cage, and the assembled wall 2 includes two layers of Faraday cage plates 24, so that the building after assembly has two Faraday cages, that is, the assembled building with the double Faraday cage structure has the advantage of being convenient to build.
[0036] The thickness of the Faraday cage plate 24 is 0.8 mm, and the through hole 241 is a 20 mm*20 mm square hole, which is smaller than the 80 mm*80 mm mesh of the traditional Faraday cage and the 0.6 mm thickness of the galvanized iron plate for electromagnetic shielding in the computer room; according to the shielding coefficient of the space grid type shielding, the performance of lightning protection and electromagnetic interference resistance is stronger; the hole plate 242 is arranged, so that when other thermal insulation materials are installed, the hole plate 242 can be inlaid into the thermal insulation plate to make the fixation more compact, facilitate the installation of other materials on the Faraday cage assembly plate, and avoid waste caused by the through hole 241; the U-shaped groove 243 is arranged to uniformly disperse the bearing capacity of the building and improve the compression resistance and impact resistance of the wall; the connecting lug 244 is arranged to facilitate the assembly of adjacent Faraday cage plates 24.
[0037] The assembled wall 2 is arranged in the cavity of the frame 1, and the assembled wall 2 is connected with the frame 1 through bolts; the Faraday cage plate 24 in the assembled wall 2 constitutes a Faraday cage, and the assembled wall 2 includes two layers of Faraday cage plates 24, so that the building after assembly has two Faraday cages, that is, the assembled building with the double Faraday cage structure has the advantage of being convenient to build.
[0038] The above is only an embodiment of the utility model and is not used to limit the utility model. For those skilled in the art, the utility model can have various changes and variations. Any modification, equivalent replacement, improvement, etc. made in the spirit and principles of the utility model should be included in the scope of the claims of the utility model.
Claims
1. A seismic assembled building body of a double Faraday cage structure, several including an assembled wall body (2) and a frame (1) for fixing the assembled wall body (2), characterized in that: The assembly type wall (2) comprises a shear frame, the two sides of the shear frame are respectively provided with a plurality of Faraday cage plates (24), the Faraday cage plates (24) on the two sides of the shear frame are formed with mounting cavities, and the mounting cavities are internally provided with fillers (25); a plurality of through holes (241) are arranged in a rectangular array on the Faraday cage plate (24), and the side edge of the through hole (241) is upturned to form a hole plate (242).
2. The anti-seismic fabricated building body of a double Faraday cage structure according to claim 1, characterized in that: The filler (25) comprises a moisture-proof and heat-insulation layer (251) and first heat-insulation layers (252) symmetrically arranged on the two sides of the moisture-proof and heat-insulation layer (251); and the other side of the Faraday cage plate (24) without the filler (25) is provided with a second heat-insulation layer (26).
3. The anti-seismic fabricated building body of a double Faraday cage structure according to claim 2, characterized in that: The first heat-insulation layer (252) and the second heat-insulation layer (26) are both light-weight concrete heat-insulation polymer substrates; and the side of the first heat-insulation layer (252) close to the Faraday cage plate (24) is provided with a honeycomb-shaped groove, so that the first heat-insulation layer (252) has the ability to absorb sound waves and signals.
4. The anti-seismic fabricated building body of a double Faraday cage structure according to claim 1, characterized in that: The shear frame comprises two support columns (21), and the two ends of the two support columns (21) are fixedly connected with hoisting frames (22), and the hoisting frames (22) are provided with hoisting holes (23).
5. The anti-seismic fabricated building body of a double Faraday cage structure according to claim 4, characterized in that: The side of the Faraday cage plate (24) provided with the hole plate (242) is concave downward to form a U-shaped groove (243), and the two side edges of the U-shaped groove (243) close to the Faraday cage plate (24) are both formed with a planar connecting lug (244). The connecting lug (244) on the Faraday cage plate (24) close to the support column (21) is installed with the support column (21) through bolts, and the planar connecting lugs (244) on the remaining Faraday cage plates (24) are overlapped and installed together.
6. The dual Faraday cage structural building unit of claim 1, wherein: The assembly type wall (2) further comprises a door frame (27), and the two hoisting frames (22) in the assembly type wall (2) extend to the bottom of the door frame (27) and the top of the door frame (27) on one side and are fixed by bolts to form the assembly type wall (2) with the door frame (27).
7. The dual Faraday cage structural building unit of claim 1, wherein: The frame (1) comprises upright columns (101) and frame beams (102), the upright columns (101) are connected together through the frame beams (102), and the upright columns (101) and the frame beams (102) are formed with cavities for filling the assembly type wall (2); the two sides of the upright column (101) towards the adjacent upright column (101) are both provided with L-shaped mounting lugs (103), and the assembly type wall (2) is installed on the two L-shaped mounting lugs (103) between the two upright columns (101) through bolts.
8. The dual Faraday cage structural building unit of claim 1, wherein: The thickness of the Faraday cage plate (24) is 0.8mm, and the through hole (241) is 20mm 20mm square hole.