CN202104005U - Electromagnetic shielding room - Google Patents

Electromagnetic shielding room Download PDF

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Publication number
CN202104005U
CN202104005U CN2011202053043U CN201120205304U CN202104005U CN 202104005 U CN202104005 U CN 202104005U CN 2011202053043 U CN2011202053043 U CN 2011202053043U CN 201120205304 U CN201120205304 U CN 201120205304U CN 202104005 U CN202104005 U CN 202104005U
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CN
China
Prior art keywords
electromagnetic shielding
room
radiation proof
electromagnetic
radiation
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Expired - Lifetime
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CN2011202053043U
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Chinese (zh)
Inventor
董占波
党连军
王洪波
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Beijing New Building Material Group Co Ltd
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Beijing New Building Material Group Co Ltd
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Priority to CN2011202053043U priority Critical patent/CN202104005U/en
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Publication of CN202104005U publication Critical patent/CN202104005U/en
Anticipated expiration legal-status Critical
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Abstract

The utility model discloses an electromagnetic shielding room, which overcomes the defects of high manufacture cost and unreasonable structure of the existing electromagnetic shielding room. The electromagnetic shielding room comprises a wall surface, a floor, a ceiling and an electromagnetic shielding door, wherein radiation protection gypsum boards with the electromagnetic signal shielding function are paved on the wall surface and the ceiling, radiation protection gypsum boards or metal boards are paved on the floor, and stripped materials with the electromagnetic signal shielding function are pasted in gaps between the adjacent radiation protection gypsum boards on the wall surface and the ceiling, the gaps between the radiation protection gypsum boards of the electromagnetic shielding door and the wall body, and the gaps between the radiation protection gypsum boards on the wall surface and the radiation protection gypsum boards on the floor or between the metal boards. Compared with the prior art, the embodiment of the utility model has the advantages that the price is low, the installation is convenient, the wall body structure cannot be damaged in maintenance and use, strong protection capability is realized on various kinds of electromagnetic radiation, and the defects of high manufacture cost and unreasonable structure of the existing electromagnetic shielding room are effectively overcome.

Description

A kind of electromagnetic shielding room
Technical field
The utility model relates to a kind of room, relates in particular to a kind of electromagnetic shielding room.
Background technology
Some concerning security matters fields like environment such as commerce, military affairs in, need the stronger environment of confidentiality and guarantee that concerning security matters meeting etc. is not disclosed or eavesdrops.The telecommunications eavesdropping is common eavesdropping means, so for the concerning security matters environment that this confidentiality is had relatively high expectations, need possess the ability of stronger anti-electromagnetic radiation.
Prior art has pair partial building sensitizing range to carry out electromagnetic shielding, and this shielding form mainly adopts heavy metal to realize.For the technology that whole room shields, generally be to adopt metallic plate or wire netting, the metal sheet type shielded enclosure that comes into operation is many perhaps to be assemblied to form by the steel plate welding, and the shielded enclosure of wire netting type then mainly adopts the double-level-metal net to lay and assembly unit.
The electromagnetic shielding room that adopts metallic plate or wire netting to make up; Actual is a cubicle of in the civil engineering room, building again, and the user has sense of depression in getting between shielding house, and does not utilize civil engineering structure well; Cost height and assembly work amount are big, have dwindled usage space.
The utility model content
The utility model technical problem to be solved is that a kind of electromagnetic shielding room need be provided, and overcomes the defective of existing electromagnetic shielding room cost height and unreasonable structure.
In order to solve the problems of the technologies described above, the utility model provides a kind of electromagnetic shielding room, comprises metope, ground and ceiling, also comprises electromagnetic shield door, wherein:
On said metope and ceiling, lay radiation proof plasterboard with shield electromagnetic signals function;
Lay said radiation proof plasterboard or metallic plate on the said ground;
The strip material with shield electromagnetic signals performance is posted in slit between slit between the radiation proof plasterboard on slit on said metope and the ceiling between the adjacent radiation proof plasterboard, said electromagnetic shield door and the said body of wall and the radiation proof plasterboard on the said metope and said ground radiation proof plasterboard or the metallic plate.
Preferably, this electromagnetic shielding room further comprises:
The electromagnetic shielding window be installed on body of wall or the said ceiling, and said strip material is posted in the slit between the radiation proof plasterboard on every side.
Preferably, this electromagnetic shielding room further comprises:
Filter; Be arranged on body of wall, said ceiling or the ground; And said strip material is posted in the slit between the radiation proof plasterboard of laying on said metope or the ceiling, and said strip material is posted in the radiation proof plasterboard of laying on the said ground or the slit between the metallic plate; Input inserts external electric energy, and output is in said house interior.
Preferably, said radiation proof plasterboard comprises the gypsum base material, sticks to the radiation protective layer with anti-electromagnetic radiation function on the said gypsum base material first surface.
Preferably, said radiation protective layer comprises the radiation proof cloth.
Preferably, between said gypsum base material first surface and the said radiation protective layer, further comprise mask paper.
Preferably, said radiation protective layer sticks on the said mask paper through viscose glue.
Preferably, said viscose glue comprises white glue with vinyl, wallpaper glue or conducting resinl.
Preferably, said strip material is attached on the various slits through conducting resinl.
Preferably, said strip material comprises metallic film or radiation proof cloth.
Compared with prior art; The embodiment of the utility model is cheap, easy for installation; Safeguard to use and can not destroy wall body structure, all kinds of electromagnetic radiation are all had very strong protective capacities, effectively overcome the defective of existing electromagnetic shielding room cost height and unreasonable structure.
Description of drawings
Fig. 1 is the structural representation of the utility model embodiment.
Fig. 2 is the structural representation of radiation proof plasterboard among the utility model embodiment.
Fig. 3 is the structural representation of another kind of radiation proof plasterboard among the utility model embodiment.
Embodiment
For the purpose, technical scheme and the advantage that make the utility model is clearer, hereinafter will combine accompanying drawing that the embodiment of the utility model is elaborated.Need to prove that under the situation of not conflicting, embodiment among the application and the characteristic among the embodiment be combination in any each other.
Fig. 1 is the structural representation of the utility model embodiment.As shown in Figure 1; The electromagnetic shielding room of present embodiment comprises metope 110, ground (not shown), ceiling (not shown) and electromagnetic shield door 120 (not shown)s; Equal laying structure radiation proof plasterboard 130 as shown in Figure 2 on metope 110, ground and ceiling; This radiation proof plasterboard 130 has the function of shield electromagnetic signals; Wherein metope and ceiling can adopt the metal keel to lay radiation proof plasterboard 130, and radiation plasterboard 130 can adopt keel and set up defences in the upper berth, ground, also can adopt concrete.The various slits of house interior; Such as the slit (not shown) between the radiation proof plasterboard 130 on the slit 131 between the adjacent radiation proof plasterboard 130, electromagnetic shield door 120 and the metope 110 on metope 110 and the ceiling, radiation proof plasterboard 130 and the slit between ground radiation proof plasterboard or the metallic plate or the like on the metope 110; All post strip material 140 with shield electromagnetic signals performance; This strip material 140 connects into the good conductor of the electricity of a sealing with whole room, prevents that electromagnetic signal from penetrating house interior through these slits.Strip material 140 can be that metallic film (illustrating for rolling metallic film on one side among the figure) like aluminium foil, also can be that gum is the radiation proof cloth (shielding cloth) of conducting resinl.Metallic film or conductive fabric can be to be attached to the place, slit through conducting resinl.Characteristics such as conducting resinl has good conductivity, adhesive strength is big and high temperature resistant and thermal diffusivity is good can shield the electromagnetic signal that penetrates the slit well.Shielding cloth is compared metallic film, has advantage with low cost.
Thus, metope, ground and ceiling form the confined space that can prevent that electromagnetic signal from penetrating, and can effectively shield outside electromagnetic signal.And present embodiment is directly to lay plasterboard (especially on metope and ceiling, laying plasterboard) with low cost and that weight is lighter on the existing building frame, reducing construction cost, beautifying environment in the room.Can directly construct on the rough house after civil engineering finishes, effectively and substantially utilize the space in room.
Fig. 2 is the structural representation of the radiation proof plasterboard 130 that adopted in embodiment illustrated in fig. 1.As shown in Figure 2; The radiation protective layer with anti-electromagnetic radiation function 220 that radiation proof plasterboard 130 mainly comprises gypsum base material 210, stick on gypsum base material 210 first surfaces (can be to stick on the gypsum base material 210 through viscose glue; Also can be directly to stick on the gypsum base material 210); In the present embodiment, radiation protective layer 220 is the radiation proof cloth.What adhere on gypsum base material 110 second surfaces is mask paper 230, can certainly be radiation protective layer or other materials.
The embodiment of the utility model also can adopt radiation proof plasterboard as shown in Figure 3.As shown in Figure 3, the radiation proof plasterboard mainly comprises gypsum base material 310, stick to the first mask paper 320 on gypsum base material 310 first surfaces, stick to the radiation protective layer with anti-electromagnetic radiation function 340 on the first mask paper 320 through viscose glue 330.Viscose glue 330 between the first mask paper 320 and the radiation protective layer 340 can be white glue with vinyl, wallpaper glue, also can be conducting resinl such as radiation proof white glues of having the anti-electromagnetic radiation function etc.This radiation protective layer 340 can be the radiation proof cloth.Can adhere to the second mask paper 350 on gypsum base material 310 second surfaces, can certainly be radiation protective layer.
In other embodiment of the utility model, the intensity that metallic plate strengthens ground also can be laid in ground, can place comparatively heavy tables and chairs and electric equipment etc. on ground.Whole ground metallic plate can be a block of metal plate (like steel plate), also can be the polylith metallic plate splicing (as the welding etc.).At the place, corner, strip material 140 is also posted in the slit between radiation proof plasterboard 130 on the metope and ground metallic plate or the radiation proof plasterboard, prevents that electromagnetic signal from penetrating house interior through the slit in corner.
In other embodiment of the utility model; Electromagnetic shielding window (such as on metope or ceiling, being provided with) can also be set; Strip material 140 is also posted in slit between electromagnetic shielding window and the radiation proof plasterboard on every side, prevents that electromagnetic signal from penetrating house interior through the slit around the electromagnetic shielding window.
In further embodiments, also can filter be set on body of wall, ceiling or ground, input is outside in the room, inserts external electric energy; Input is in house interior, to supply power to the room.The strip material with shield electromagnetic signals performance is posted in the slit that filter is laid between the radiation proof plasterboard on body of wall or the ceiling, prevents that electromagnetic signal from penetrating house interior through the slit around the filter; For filter is set on the ground, also can paste strip material in the slit between filter and metallic plate or the radiation proof plasterboard on every side with shield electromagnetic signals performance.Through this filter external power source is introduced equipment or the facility thought in the room in the room electric energy is provided.Because filter can be set specific operating frequency as required, therefore can guarantee the unexpected electromagnetic signal shielding of ac frequency can not entered in the room in the outside, room.
Need to prove; Among the various embodiment of the utility model; Viscose glue on the radiation proof plasterboard can be a conducting resinl, also can be that latex or wallpaper glue etc. do not have the viscose glue of electric conductivity, as long as can the radiation proof cloth be adhered on gypsum base material or the mask paper.But; The viscose glue of using on the various slits must be the conducting resinl with shield electromagnetic signals performance; So could guarantee with whole room it is the good conductor of the electricity of a sealing; Could effectively electromagnetic signal be shielded in outside, whole room well, not penetrate house interior and can not penetrate body of wall or ceiling etc.
Though the execution mode that the utility model disclosed as above, the execution mode that described content just adopts for the ease of understanding the utility model is not in order to limit the utility model.Technical staff under any the utility model in the technical field; Under the prerequisite of spirit that does not break away from the utility model and disclosed and scope; Can do any modification and variation what implement in form and on the details; But the scope of patent protection of the utility model still must be as the criterion with the scope that appending claims was defined.

Claims (10)

1. an electromagnetic shielding room comprises metope, ground and ceiling, it is characterized in that, also comprises electromagnetic shield door, wherein:
On said metope and ceiling, lay radiation proof plasterboard with shield electromagnetic signals function;
Lay said radiation proof plasterboard or metallic plate on the said ground;
The strip material with shield electromagnetic signals performance is posted in slit between slit between the radiation proof plasterboard on slit on said metope and the ceiling between the adjacent radiation proof plasterboard, said electromagnetic shield door and the said body of wall and the radiation proof plasterboard on the said metope and said ground radiation proof plasterboard or the metallic plate.
2. electromagnetic shielding according to claim 1 room is characterized in that, this electromagnetic shielding room further comprises:
The electromagnetic shielding window be installed on body of wall or the said ceiling, and said strip material is posted in the slit between the radiation proof plasterboard on every side.
3. electromagnetic shielding according to claim 1 room is characterized in that, this electromagnetic shielding room further comprises:
Filter; Be arranged on body of wall, said ceiling or the ground; And said strip material is posted in the slit between the radiation proof plasterboard of laying on said metope or the ceiling, and said strip material is posted in the radiation proof plasterboard of laying on the said ground or the slit between the metallic plate; Input inserts external electric energy, and output is in said house interior.
4. according to claim 1, described electromagnetic shielding rooms 2 or 3, it is characterized in that:
Said radiation proof plasterboard comprises the gypsum base material, sticks to the radiation protective layer with anti-electromagnetic radiation function on the said gypsum base material first surface.
5. electromagnetic shielding according to claim 4 room is characterized in that:
Said radiation protective layer comprises the radiation proof cloth.
6. electromagnetic shielding according to claim 4 room is characterized in that:
Between said gypsum base material first surface and the said radiation protective layer, further comprise mask paper.
7. electromagnetic shielding according to claim 6 room is characterized in that:
Said radiation protective layer sticks on the said mask paper through viscose glue.
8. electromagnetic shielding according to claim 7 room is characterized in that:
Said viscose glue comprises white glue with vinyl, wallpaper glue or conducting resinl.
9. according to claim 1, described electromagnetic shielding rooms 2 or 3, it is characterized in that:
Said strip material is attached on the various slits through conducting resinl.
10. electromagnetic shielding according to claim 9 room is characterized in that:
Said strip material comprises metallic film or radiation proof cloth.
CN2011202053043U 2011-06-17 2011-06-17 Electromagnetic shielding room Expired - Lifetime CN202104005U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011202053043U CN202104005U (en) 2011-06-17 2011-06-17 Electromagnetic shielding room

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Application Number Priority Date Filing Date Title
CN2011202053043U CN202104005U (en) 2011-06-17 2011-06-17 Electromagnetic shielding room

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104795778A (en) * 2015-04-03 2015-07-22 国家电网公司 Induced electricity reducing device for house around power transmission and transformation facility
CN105283058A (en) * 2015-11-24 2016-01-27 海南大学 Electromagnetic wave absorbing plate and preparation method thereof
CN105888105A (en) * 2016-06-01 2016-08-24 苏州金螳螂建筑装饰股份有限公司 Anti-radiation partition wall system
CN106211732A (en) * 2016-09-08 2016-12-07 河南民生特种装备有限公司 Graphene film makees the electromagnetic shielding chamber of window
CN107635390A (en) * 2017-06-19 2018-01-26 广州汇安科技有限公司 A kind of cold and hot separation data center with low-and high-frequency electro-magnetic screen function
CN114482391A (en) * 2016-10-18 2022-05-13 吉野石膏株式会社 Gypsum-based building material with magnetic layer, magnetic joint treatment material, and method for producing gypsum-based building material with magnetic layer

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104795778A (en) * 2015-04-03 2015-07-22 国家电网公司 Induced electricity reducing device for house around power transmission and transformation facility
CN105283058A (en) * 2015-11-24 2016-01-27 海南大学 Electromagnetic wave absorbing plate and preparation method thereof
CN105283058B (en) * 2015-11-24 2018-11-02 海南大学 A kind of electromagnetic wave absorption board and preparation method thereof
CN105888105A (en) * 2016-06-01 2016-08-24 苏州金螳螂建筑装饰股份有限公司 Anti-radiation partition wall system
CN106211732A (en) * 2016-09-08 2016-12-07 河南民生特种装备有限公司 Graphene film makees the electromagnetic shielding chamber of window
CN114482391A (en) * 2016-10-18 2022-05-13 吉野石膏株式会社 Gypsum-based building material with magnetic layer, magnetic joint treatment material, and method for producing gypsum-based building material with magnetic layer
CN107635390A (en) * 2017-06-19 2018-01-26 广州汇安科技有限公司 A kind of cold and hot separation data center with low-and high-frequency electro-magnetic screen function

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Granted publication date: 20120104

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